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Inconel Fasteners

All types of inconel fasteners like nut , bolt , washers , srews , pins , studs , nails , as per standard and drawings can be made available for our customers.All grades available.
Inconel 601 Nuts Bolts Washers
  • Inconel 601 Nuts Bolts Washers
  • Inconel 601 Nuts Bolts Washers
  • Inconel 601 Nuts Bolts Washers
  • Inconel 601 Nuts Bolts Washers

Inconel 601 Nuts Bolts Washers

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Comprehensive Guide to Inconel 601 Nuts, Bolts, and Washers: International Standards and Equivalent Grades

Inconel 601 is a high-performance nickel-chromium alloy renowned for its exceptional resistance to oxidation and corrosion at high temperatures. This makes it a popular choice for applications in demanding environments such as aerospace, chemical processing, and heat treatment. When it comes to fasteners like nuts, bolts, and washers made from Inconel 601, understanding international standards and equivalent grades is crucial for ensuring compatibility and performance. In this guide, we'll delve into the standards, grades, and key considerations for Inconel 601 fasteners.

International Standards for Inconel 601 Fasteners:
ASTM Standards: ASTM International has established standards for various materials, including Inconel 601. ASTM B166 covers nickel-chromium-iron alloys (UNS N06601) in the form of rods, bars, wire, and wire rods. These standards ensure the quality and performance of Inconel 601 materials used in fasteners.
ASME Standards: The American Society of Mechanical Engineers (ASME) provides standards for the design, manufacture, and testing of materials, including Inconel 601. ASME Boiler and Pressure Vessel Code (BPVC) Section II Part D covers properties and requirements for nickel alloy materials like Inconel 601.
ISO Standards: The International Organization for Standardization (ISO) also offers standards relevant to Inconel 601 fasteners. ISO 9722 specifies requirements for nickel-chromium-iron alloys suitable for use in fasteners and bolting.

Equivalent Grades of Inconel 601:
UNS N06601: This is the unified numbering system designation for Inconel 601. It is widely accepted and used in various industries globally.
EN 2.4851: European Norm (EN) designation for Inconel 601. It indicates compliance with European standards and specifications.
NC23FeA: This is the French designation for Inconel 601, commonly used in France and other French-speaking regions.
XH60BT: Inconel 601's designation according to the Russian GOST standard. It is used in Russia and other countries following GOST specifications.

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In conclusion, choosing the right nuts, bolts, and washers made from Inconel 601 is essential for ensuring the integrity and reliability of critical applications in high-temperature and corrosive environments. By adhering to international standards and understanding equivalent grades, engineers and manufacturers can confidently select Inconel 601 fasteners that meet their specific requirements, providing longevity and performance under the most demanding conditions.
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Inconel Rivets
  • Inconel Rivets
  • Inconel Rivets
  • Inconel Rivets

Inconel Rivets

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Understanding the Strength and Versatility of Inconel Rivets: International Standards and Equivalent Grades Explained

Inconel rivets stand out in the world of fasteners for their exceptional strength, corrosion resistance, and high-temperature stability. As crucial components across industries like aerospace, automotive, and marine engineering, understanding their properties, international standards, and equivalent grades is essential. Let's delve deeper into the world of Inconel rivets.

What are Inconel Rivets?
Inconel is a family of nickel-chromium-based superalloys known for their outstanding resistance to corrosion, oxidation, and high temperatures. Inconel rivets, crafted from these alloys, provide unparalleled performance in demanding environments. They offer excellent strength and durability, making them ideal for critical applications where reliability is paramount.

Key Properties of Inconel Rivets:
Corrosion Resistance: Inconel rivets exhibit superb resistance to corrosion in harsh environments, including acidic and chloride-rich settings.
High Temperature Stability: They maintain their mechanical properties at elevated temperatures, making them suitable for applications exposed to extreme heat.
Strength and Toughness: With high tensile strength and toughness, Inconel rivets offer reliable fastening solutions for heavy-duty applications.
International Standards for Inconel Rivets:To ensure quality and compatibility, Inconel rivets adhere to various international standards. Some prominent ones include:
ASTM Standards: ASTM F468 and ASTM B166 outline specifications for Inconel rivets, covering dimensions, materials, and mechanical properties.
ISO Standards: ISO 4759 specifies dimensions and tolerances for rivets, ensuring interchangeability and consistency in global applications.
ASME Standards: ASME Boiler and Pressure Vessel Code Section II Part D provides guidelines for the selection and use of materials, including Inconel alloys, in pressure vessel construction.

Equivalent Grades of Inconel Rivets:
In addition to international standards, understanding equivalent grades is crucial for sourcing and compatibility. Some common equivalent grades of Inconel rivets include:
Inconel 600: Equivalent to DIN 2.4816 and UNS N06600, offering excellent resistance to corrosion and oxidation at high temperatures.
Inconel 625: Equivalent to DIN 2.4856 and UNS N06625, known for its superior strength and resistance to a wide range of corrosive environments.
Inconel 718: Equivalent to DIN 2.4668 and UNS N07718, featuring high tensile strength and excellent weldability, ideal for aerospace applications.

Conclusion:
Inconel rivets are indispensable components in various industries, offering unmatched performance in challenging conditions. Understanding international standards and equivalent grades is vital for ensuring quality, compatibility, and reliability in diverse applications. With their exceptional properties and adherence to stringent standards, Inconel rivets continue to be the preferred choice for critical fastening solutions worldwide.

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Inconel Nuts - Hex, Square, Round
  • Inconel Nuts - Hex, Square, Round
  • Inconel Nuts - Hex, Square, Round
  • Inconel Nuts - Hex, Square, Round

Inconel Nuts - Hex, Square, Round

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Everything You Need to Know About Inconel Nuts: Hex, Square, and Round Varieties

Inconel nuts, available in hex, square, and round shapes, are indispensable components in various industries due to their exceptional corrosion resistance and high temperature performance. Whether you're in aerospace, chemical processing, or marine engineering, understanding the nuances of Inconel nuts, along with international standards and equivalent grades, is crucial for ensuring optimal performance and compliance.
Properties of Inconel Nuts:
Inconel nuts are primarily composed of nickel, chromium, and iron, with additions of molybdenum, niobium, and other elements to enhance their mechanical properties. These alloys offer remarkable resistance to oxidation, corrosion, and high temperatures, making them ideal for demanding environments where conventional materials fail.

Types of Inconel Nuts:
Hex Nuts: Hexagonal nuts are the most common type, featuring six flat sides for easy tightening with a wrench. They are widely used in structural applications, machinery, and automotive sectors.
Square Nuts: Square nuts have a square shape and are often used in conjunction with square bolts to prevent rotation. They find applications in machinery and construction.
Round Nuts: Round nuts have a circular shape and are commonly employed in specialized equipment and assemblies where space is limited or aesthetics are important.

Applications of Inconel Nuts:
Inconel nuts are utilized in a myriad of industries due to their exceptional properties. They are extensively employed in aerospace for aircraft engines, gas turbines, and exhaust systems. In chemical processing plants, they resist corrosion from harsh chemicals and high temperatures. Additionally, marine applications benefit from their resistance to saltwater corrosion, making them suitable for offshore platforms and marine equipment.

International Standards and Equivalent Grades:
Inconel nuts are manufactured in compliance with various international standards to ensure quality and interchangeability. Some of the key standards include:
ASTM B166: This standard specifies the requirements for nickel-chromium-iron alloys (UNS N06600, N06601, N06603, N06690, N06693, N06025, N06045, and N06696) in the form of rod, bar, wire, etc.
AMS: Aerospace Material Specifications set guidelines for materials used in aerospace applications. AMS 5666, for instance, covers Inconel 718, a widely used alloy in aerospace components.
DIN: German Institute for Standardization (Deutsches Institut für Normung) provides standards for various industries. DIN EN 10204 specifies the types of inspection documents required for metallic products.
ISO: International Organization for Standardization ensures international standards across industries. ISO 9001 certification ensures quality management systems.

Equivalent Grades:
In addition to international standards, Inconel nuts may also be referenced by their equivalent grades, including:
UNS N06600: Inconel 600, renowned for its resistance to high temperatures and corrosive environments.
UNS N07718: Inconel 718, known for its high strength and excellent weldability, widely used in aerospace and gas turbine components.
UNS N06625: Inconel 625, valued for its exceptional resistance to corrosion, including pitting and crevice corrosion.

Conclusion:
Inconel nuts, available in hex, square, and round configurations, offer unmatched performance in demanding environments. Their resistance to corrosion, oxidation, and high temperatures makes them indispensable across industries such as aerospace, chemical processing, and marine engineering. By adhering to international standards and selecting the appropriate equivalent grades, manufacturers and engineers can ensure the reliability and longevity of their applications.

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Duplex & Super Duplex Steel Bolts
  • Duplex & Super Duplex Steel Bolts
  • Duplex & Super Duplex Steel Bolts
  • Duplex & Super Duplex Steel Bolts

Duplex & Super Duplex Steel Bolts

Product Price: Rs 55 / PieceGet Best Price

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We are amid the most prominent enterprises keenly affianced in offering a comprehensive collection of Duplex Bolts. This product is widely used for precise work in numerous industries. Quality is the symbol for our company hence we assure our patrons that this camera is exceptional in terms of quality and functioning. Our prestigious patrons can buy this product from us at most inexpensive rates. Features: • Compact design • Durable • Sturdy Our company is one of the pioneers engaged in offering the best quality range of Duplex and Super Duplex Steel Fasteners. Each piece of our duplex steel fasteners is developed in our sound infrastructure using top grade rust resistant steel to provide the clients long life service. Our range of stainless steel fasteners is used in various industrial operations. Specifications: • Standards: ASTM / ASME SA 790 • Grades: UNS NO. S 31803, S 32205, S 32550, S 32750, S 327 
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Stainless Steel A2 Countersunk /CSK Slot Machine Screw Bs 450
  • Stainless Steel A2 Countersunk /CSK Slot Machine Screw Bs 450
  • Stainless Steel A2 Countersunk /CSK Slot Machine Screw Bs 450
  • Stainless Steel A2 Countersunk /CSK Slot Machine Screw Bs 450

Stainless Steel A2 Countersunk /CSK Slot Machine Screw Bs 450

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Stainless Steel A2 Countersunk (CSK) Slot Machine Screw BS 450: All You Need to Know

Stainless steel A2 countersunk (CSK) slot machine screws, conforming to BS 450 standards, are pivotal components in various industries due to their durability, corrosion resistance, and versatility. In this article, we'll delve into the intricacies of these screws, including international standards, equivalent grades, and their applications.

Understanding Stainless Steel A2 Countersunk (CSK) Slot Machine Screws:
Stainless steel A2 countersunk (CSK) slot machine screws are engineered to perfection, offering exceptional strength and longevity. Their unique design, featuring a countersunk head and a slotted drive, makes them ideal for applications where a flush surface is desired. These screws are widely used in machinery, automotive, construction, and electronics industries, among others.

International Standards and Specifications:
Stainless steel A2 countersunk (CSK) slot machine screws adhere to various international standards to ensure quality and compatibility. Some of the notable standards include:
BS 450: This British Standard specifies the dimensions, materials, and tolerances for stainless steel A2 countersunk (CSK) slot machine screws, ensuring their reliability and interchangeability.
ISO 7045: This International Organization for Standardization (ISO) standard provides specifications for pan head screws with cross recessed heads, including A2 stainless steel screws, ensuring uniformity in design and performance.
DIN 963: The Deutsches Institut für Normung (DIN) standardizes the dimensions and technical specifications for countersunk flat head screws, including those made from A2 stainless steel, ensuring compatibility across various applications.

Equivalent Grades:
Stainless steel A2 countersunk (CSK) slot machine screws may have equivalent grades designated by different standards organizations. Some common equivalent grades include:
ASTM A193/A193M: Grade B8 (Class 1 and 2) - This ASTM standard specifies the requirements for stainless steel bolts, screws, studs, and other externally threaded fasteners made from A2 stainless steel, suitable for high-temperature and high-pressure applications.
EN 3506-1: Grade A2-70 - This European standard categorizes stainless steel fasteners based on their mechanical properties and chemical composition, ensuring their suitability for specific environments and applications.
JIS B 1176: SUS 304 - The Japanese Industrial Standards (JIS) designate stainless steel A2 screws under the SUS 304 classification, ensuring compliance with Japanese industry requirements.

Applications:
Stainless steel A2 countersunk (CSK) slot machine screws find widespread usage in various industries, including:
Machinery and equipment manufacturingAutomotive assembly and repairConstruction and architectural projectsElectrical and electronics installationsMarine and offshore applicationsAerospace and aviation industries

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In conclusion, stainless steel A2 countersunk (CSK) slot machine screws, conforming to BS 450 standards, offer unparalleled performance and reliability across diverse industrial applications. With adherence to international standards and equivalent grades, these screws remain a cornerstone in modern engineering and construction projects, ensuring durability and precision in fastening solutions.
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Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets
  • Stainless Steel 316H Sheets

Stainless Steel 316H Sheets

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Exploring Stainless Steel 316H Sheets: International Standards, Equivalent Grades, and Key Features

Introduction:
Stainless Steel 316H Sheets have become an integral part of various industries due to their exceptional corrosion resistance, high temperature strength, and versatile applications. In this article, we will delve into the international standards and equivalent grades of Stainless Steel 316H, highlighting its key features and benefits.

International Standards:
Stainless Steel 316H Sheets adhere to several international standards that ensure their quality and performance. The primary standards include:
ASTM A240/A240M: This standard specifies chromium and chromium-nickel stainless steel plate, sheet, and strip for pressure vessels and general applications. Stainless Steel 316H sheets comply with the specifications outlined in ASTM A240/A240M.
EN 10088-2: The European standard EN 10088-2 covers technical delivery conditions for stainless steel sheet/plate and strip for general purposes. Stainless Steel 316H Sheets meet the requirements set forth in this standard, ensuring their suitability for diverse applications.

Equivalent Grades:
Understanding the equivalent grades of Stainless Steel 316H Sheets is crucial for international trade and product compatibility. Some notable equivalent grades are:
UNS S31609: Stainless Steel 316H is often referred to as UNS S31609, which is a unified numbering system grade designation for this material.
W.Nr. 1.4401/1.4404: These Werkstoff Numbers (W.Nr.) are commonly associated with Stainless Steel 316H, representing its composition and characteristics.
JIS SUS 316H: Japanese Industrial Standards (JIS) designates Stainless Steel 316H as SUS 316H, aligning with its chemical composition and mechanical properties.

Key Features:
Stainless Steel 316H Sheets offer a myriad of features that make them sought after in various industries:
Corrosion Resistance: The high molybdenum content enhances the corrosion resistance of Stainless Steel 316H, making it suitable for harsh environments, including chemical and marine applications.
High Temperature Strength: Stainless Steel 316H maintains excellent strength and stability at elevated temperatures, making it ideal for applications involving heat and thermal cycling.
Versatility: With its versatile properties, Stainless Steel 316H is used in diverse industries such as chemical processing, pharmaceuticals, oil and gas, and more.
Easy Fabrication: Stainless Steel 316H Sheets are easily fabricated, allowing for efficient manufacturing processes and customization to meet specific project requirements.

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Conclusion:
Stainless Steel 316H Sheets, adhering to stringent international standards and boasting equivalent grades for global compatibility, offer a reliable solution for various industrial applications. With its outstanding corrosion resistance, high temperature strength, and versatile characteristics, Stainless Steel 316H continues to play a pivotal role in advancing modern engineering and construction.
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Stainless Steel A2 Allen CSK Screw BS 84
  • Stainless Steel A2 Allen CSK Screw BS 84
  • Stainless Steel A2 Allen CSK Screw BS 84
  • Stainless Steel A2 Allen CSK Screw BS 84

Stainless Steel A2 Allen CSK Screw BS 84

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Comprehensive Guide to Stainless Steel A2 Allen CSK Screw BS 84: International Standards and Equivalent Grades

Stainless steel fasteners are integral components in various industries, ensuring structural integrity and longevity in diverse applications. Among these, the A2 Allen CSK Screw BS 84 stands out for its exceptional quality, reliability, and adherence to international standards. In this comprehensive guide, we delve into the specifics of this fastener, covering its features, international standards, equivalent grades, and applications.

Features of Stainless Steel A2 Allen CSK Screw BS 84:
The A2 Allen CSK Screw BS 84 is crafted from stainless steel grade A2, also known as Type 304, which offers excellent corrosion resistance, durability, and aesthetic appeal. Its countersunk head and Allen socket drive make it ideal for applications requiring a flush finish and high torque transmission. These screws are available in various lengths and thread sizes to suit diverse requirements.

International Standards:
The A2 Allen CSK Screw BS 84 complies with several international standards to ensure quality and interchangeability. These include:
British Standard (BS): BS 84 specifies the dimensions, materials, and tolerances for slotted cheese head screws, countersunk head screws, and slotted raised countersunk head screws. The A2 Allen CSK Screw BS 84 aligns with these standards, ensuring compatibility and performance.
ISO Standards: The International Organization for Standardization (ISO) has established standards such as ISO 7046-2 and ISO 10642, which cover specifications for metric socket countersunk head screws. The A2 Allen CSK Screw BS 84 meets these ISO standards, facilitating global acceptance and usability.
European Norm (EN): EN 3506 defines the mechanical properties and chemical composition of stainless steel fasteners. As the A2 Allen CSK Screw BS 84 is made from stainless steel grade A2, it conforms to the requirements set forth by EN 3506, ensuring reliability and consistency.

Equivalent Grades:
While the A2 Allen CSK Screw BS 84 is widely recognized for its adherence to British standards, it also has equivalent grades in other international standards, including:
ASTM Standard: ASTM A193 B8 (Type 304) and ASTM A194 Grade 8 are equivalent grades to A2 stainless steel, ensuring compatibility with American standards and applications.
DIN Standard: In the German DIN system, A2 stainless steel corresponds to DIN 1.4301, offering interchangeability and compliance with German industrial norms.
JIS Standard: JIS G4303 SUS 304 is the Japanese equivalent grade to A2 stainless steel, meeting the requirements of Japanese industrial standards.

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Applications:
The versatility and reliability of the A2 Allen CSK Screw BS 84 make it suitable for a wide range of applications, including:
Construction and architecture
Automotive industry
Aerospace engineering
Marine and offshore installations
Electrical and electronics sector
Machinery and equipment manufacturing

In conclusion, the A2 Allen CSK Screw BS 84 exemplifies excellence in stainless steel fasteners, meeting stringent international standards and offering compatibility with equivalent grades worldwide. Its robust construction, corrosion resistance, and adherence to standards make it a preferred choice across diverse industries.

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Stainless Steel 304 A2 Long Hex Screw Is 1363 / Din 933
  • Stainless Steel 304 A2 Long Hex Screw Is 1363 / Din 933
  • Stainless Steel 304 A2 Long Hex Screw Is 1363 / Din 933
  • Stainless Steel 304 A2 Long Hex Screw Is 1363 / Din 933

Stainless Steel 304 A2 Long Hex Screw Is 1363 / Din 933

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Unveiling the Superiority of Stainless Steel 304 A2 Long Hex Screw: IS 1363 / DIN 933 Standards and Equivalent Grades

In the realm of fasteners, the Stainless Steel 304 A2 Long Hex Screw stands as a pinnacle of durability, resilience, and versatility. This article delves into the essence of this remarkable fastening solution, exploring its adherence to international standards, its myriad applications, and the equivalent grades that signify its global recognition.

Understanding Stainless Steel 304 A2 Long Hex Screw:
Stainless Steel 304, classified under the A2 grade according to the ISO 3506 standard, epitomizes excellence in fastening technology. Renowned for its exceptional corrosion resistance, this alloy is a preferred choice in industries ranging from construction to automotive and beyond. The Long Hex Screw variant, conforming to IS 1363 and DIN 933 standards, further accentuates the utility and reliability of this fastener.

Key Features and Benefits:
Corrosion Resistance: Stainless Steel 304 A2 Long Hex Screw exhibits remarkable resistance to corrosion, making it ideal for outdoor and marine applications.
High Strength: With its robust composition, this fastener ensures reliable fastening even in demanding environments, offering peace of mind to engineers and craftsmen alike.
Aesthetic Appeal: Beyond its functional superiority, Stainless Steel 304 A2 adds an element of elegance to structures and assemblies, owing to its lustrous finish and enduring beauty.

International Standards and Equivalents:
IS 1363: This Indian Standard specifies the properties and dimensions for hexagon head bolts, screws, and nuts of product grade 'C' for use in structural steelwork.
DIN 933: Devised by the Deutsches Institut für Normung (German Institute for Standardization), this standard governs fully threaded hexagon head screws made of stainless steel.
Equivalent Grades: Stainless Steel 304 A2 is globally recognized under various equivalent designations, including ASTM A193 Grade B8, BS 970 304S15, and AISI 304.

Applications Across Industries:
The versatility of Stainless Steel 304 A2 Long Hex Screw knows no bounds. From architectural marvels to industrial machinery, from household appliances to automotive assemblies, this fastener finds its place in a multitude of applications:
Construction: Used in structural steelwork, façade installations, and infrastructure projects.
Marine: Resistant to saltwater corrosion, making it indispensable in shipbuilding and dockyard applications.
Automotive: Ensures reliable fastening in engine components, chassis assemblies, and exterior trims.
Manufacturing: Facilitates assembly lines, machinery installations, and equipment maintenance with its strength and durability.

Conclusion:
The Stainless Steel 304 A2 Long Hex Screw, adhering to IS 1363 / DIN 933 standards and equivalent grades, embodies the epitome of excellence in fastening technology. Its corrosion resistance, high strength, and aesthetic appeal make it a preferred choice across industries worldwide. From the towering skyscrapers to the intricate machinery, this fastener plays a vital role in shaping the infrastructure of our modern world. Embrace the reliability and performance of Stainless Steel 304 A2 for your next project, and experience the difference firsthand.

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Stainless Steel A2 Allen Grub Screw BS 2470
  • Stainless Steel A2 Allen Grub Screw BS 2470
  • Stainless Steel A2 Allen Grub Screw BS 2470
  • Stainless Steel A2 Allen Grub Screw BS 2470

Stainless Steel A2 Allen Grub Screw BS 2470

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Everything You Need to Know About Stainless Steel A2 Allen Grub Screw BS 2470: International Standards and Equivalent Grades

Stainless steel fasteners play a crucial role in various industries, providing durability, corrosion resistance, and reliability. Among these, the Stainless Steel A2 Allen Grub Screw BS 2470 stands out as a top choice for many applications. In this article, we'll delve into its features, international standards, equivalent grades, and why it's a preferred option in the fastener market.

Features of Stainless Steel A2 Allen Grub Screw BS 2470:
The Stainless Steel A2 Allen Grub Screw BS 2470 is engineered to withstand demanding environments while ensuring secure fastening. Here are some key features:
Material Composition: It is crafted from high-quality stainless steel A2, which contains chromium and nickel, providing excellent corrosion resistance and strength.
Allen (Hex Socket) Drive: The hex socket drive allows for easy installation and removal using Allen keys, ensuring a tight grip and preventing slippage during fastening.
Grub Screw Design: The grub screw design enables precise tightening and adjustment, making it ideal for applications where frequent adjustments are required.
BS 2470 Compliance: This fastener adheres to the British Standard BS 2470, ensuring consistent quality and performance.

International Standards for Stainless Steel A2 Allen Grub Screw BS 2470:
The Stainless Steel A2 Allen Grub Screw BS 2470 complies with various international standards, including:
ISO 3506: This standard specifies the mechanical properties of corrosion-resistant stainless steel fasteners, including A2 grade, ensuring uniformity and quality.
DIN 913: The German standard DIN 913 defines the dimensions and technical specifications for socket set screws, ensuring compatibility and interchangeability.
ASTM F837: ASTM F837 outlines the requirements for stainless steel socket head cap screws, including A2 grade, ensuring suitability for various applications.

Equivalent Grades of Stainless Steel A2 Allen Grub Screw BS 2470:
Equivalent grades provide alternatives that meet similar performance requirements. Some equivalent grades of Stainless Steel A2 Allen Grub Screw BS 2470 include:
AISI 304: This American standard grade offers similar corrosion resistance and mechanical properties to stainless steel A2, making it a suitable alternative.
EN 1.4301: Equivalent to AISI 304, EN 1.4301 is a European standard grade with comparable properties, ensuring compatibility across different regions.
JIS SUS304: Japanese Industrial Standard SUS304 shares similar chemical composition and characteristics with stainless steel A2, making it a viable alternative.

In conclusion, the Stainless Steel A2 Allen Grub Screw BS 2470 combines superior corrosion resistance, durability, and precision engineering, making it an excellent choice for various industrial applications. Its compliance with international standards such as BS 2470, ISO 3506, and ASTM F837, along with equivalent grades like AISI 304 and EN 1.4301, ensures reliability and compatibility across global markets. Whether you're in construction, automotive, or manufacturing, choosing Stainless Steel A2 Allen Grub Screw BS 2470 guarantees optimal performance and longevity for your fastening needs.

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Stainless Steel A2 Allen Grub Screw DIN 916
  • Stainless Steel A2 Allen Grub Screw DIN 916
  • Stainless Steel A2 Allen Grub Screw DIN 916
  • Stainless Steel A2 Allen Grub Screw DIN 916

Stainless Steel A2 Allen Grub Screw DIN 916

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The Versatility and Reliability of Stainless Steel A2 Allen Grub Screw DIN 916: A Comprehensive Guide

In the ralm of fasteners, the Stainless Steel A2 Allen Grub Screw DIN 916 stands out for its exceptional durability, corrosion resistance, and versatility. These screws are a cornerstone in various industries, from automotive to construction, owing to their ability to securely fasten components in place. In this guide, we delve into the features, international standards, equivalent grades, and applications of the Stainless Steel A2 Allen Grub Screw DIN 916.

Understanding Stainless Steel A2 Allen Grub
Screw DIN 916:
The DIN 916 standard specifies the dimensions, materials, and mechanical properties of hexagon socket set screws with cone point. These screws are commonly referred to as Allen grub screws due to their hexagonal socket drive, which accommodates an Allen wrench for installation. The A2 designation signifies the use of austenitic stainless steel, offering excellent corrosion resistance, particularly in mildly corrosive environments.

Key Features and Benefits:
Corrosion Resistance: A2 stainless steel provides resistance to corrosion in various environments, including moisture-rich and mildly acidic conditions, making it suitable for both indoor and outdoor applications.
High Strength: Despite its corrosion resistance, A2 stainless steel retains sufficient strength for most applications, ensuring reliable fastening.
Ease of Installation: The hexagonal socket drive allows for easy installation and removal using standard Allen wrenches, facilitating efficient assembly and disassembly processes.
Versatility: Stainless Steel A2 Allen Grub Screws DIN 916 find applications in machinery, automotive, construction, and electronics, among other industries, where secure fastening is paramount.

International Standards and Equivalent Grades:
ISO: The Stainless Steel A2 Allen Grub Screw DIN 916 complies with ISO 4029 standards, ensuring uniformity in dimensions and performance across international markets.
ASTM Equivalent: ASTM F912 outlines the specifications for socket set screws, including those made from austenitic stainless steel, which aligns with the properties of DIN 916.
Equivalent Grades: Other international standards that are equivalent to DIN 916 include BS 4168, JIS B1177, and ASME B18.3, ensuring interchangeability and compatibility with components manufactured to these standards.

Applications:
Machinery: Used for securing shafts, gears, and pulleys in various mechanical systems.
Automotive: Critical for assembly in engines, transmissions, and chassis components.
Construction: Ideal for fastening structural elements, panels, and fixtures in buildings and infrastructure projects.
Electronics: Employed in electronic devices and equipment to secure components and housings.

Conclusion:
The Stainless Steel A2 Allen Grub Screw DIN 916 exemplifies reliability, durability, and versatility in fastening applications across diverse industries. Compliant with international standards and equivalent grades, these screws offer peace of mind in critical assemblies, ensuring longevity and performance. Whether in machinery, automotive, construction, or electronics, choosing DIN 916 ensures a secure and dependable fastening solution.

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Stainless Steel 304 Slotted CSK Wood Screw DIN 97
  • Stainless Steel 304 Slotted CSK Wood Screw DIN 97
  • Stainless Steel 304 Slotted CSK Wood Screw DIN 97
  • Stainless Steel 304 Slotted CSK Wood Screw DIN 97

Stainless Steel 304 Slotted CSK Wood Screw DIN 97

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QUALITYStainless Steel 304 Slotted CSK Wood Screw DIN 97
Unlocking the Strength and Versatility of Stainless Steel 304 Slotted CSK Wood Screw DIN 97: A Comprehensive Guide

Stainless steel 304 slotted countersunk (CSK) wood screws, compliant with DIN 97 standards, are indispensable components in various industries due to their exceptional durability, corrosion resistance, and versatility. These screws are engineered to provide robust fastening solutions for woodworking, construction, automotive, marine, and many other applications. In this comprehensive guide, we delve into the key features, international standards, equivalent grades, and the importance of stainless steel 304 slotted CSK wood screws in modern manufacturing.

Key Features of Stainless Steel 304 Slotted CSK Wood Screw DIN 97:
Material Strength: Stainless steel 304, known for its outstanding corrosion resistance and strength, ensures long-term reliability in diverse environments, including high-moisture and corrosive conditions.
Slotted Design: The slotted head design enables easy installation using flat-blade screwdrivers, offering convenience and efficiency during assembly processes.
Countersunk Head: The countersunk head ensures flush mounting, providing a neat and professional finish while reducing the risk of snagging or catching on surfaces.
Wood Screw Thread: The wood screw thread design facilitates secure fastening in wooden substrates, offering excellent grip and stability.
DIN 97 Compliance: Adhering to DIN 97 standards ensures consistency in dimensions, threading, and performance, meeting the stringent quality requirements of various industries.

International Standards and Equivalent Grades:
Stainless steel 304 slotted CSK wood screws conform to international standards such as:
ASTM A193/A193M: Standard Specification for Alloy-Steel and Stainless Steel Bolting for High Temperature or High Pressure Service and Other Special Purpose Applications.
ISO 7046-1: Cross-recessed countersunk (raised head) screws.BS EN ISO 2009: Slotted countersunk head screws (common head style) – Product grade A.
JIS B 1111: Cross recessed countersunk (raised countersunk) head screws.

Equivalent grades of stainless steel 304 include:
AISI 304: The American Iron and Steel Institute designation for stainless steel 304.
UNS S30400: Unified Numbering System designation for stainless steel 304.
EN 1.4301: European standard (EN) designation for stainless steel 304.
X5CrNi18-10: German designation for stainless steel 304.

Importance in Modern Manufacturing:
Stainless steel 304 slotted CSK wood screws play a pivotal role in modern manufacturing processes due to their numerous advantages:
Durability: With superior corrosion resistance, stainless steel 304 screws ensure longevity even in harsh environments, reducing maintenance costs and downtime.
Versatility: These screws are suitable for a wide range of applications, including woodworking, construction, furniture assembly, automotive, and marine industries, providing versatility in fastening solutions.
Reliability: Meeting international standards and equivalent grades ensures consistent quality and performance, instilling confidence in manufacturers and end-users alike.
Cost-Effectiveness: Despite initial higher costs, the longevity and reliability of stainless steel 304 screws offer long-term cost savings through reduced replacement and maintenance expenses.

In conclusion, stainless steel 304 slotted CSK wood screws, compliant with DIN 97 standards, embody strength, durability, and versatility, making them indispensable components in various industries worldwide. By adhering to international standards and equivalent grades, these screws ensure consistent quality and performance, driving efficiency and reliability in modern manufacturing processes.
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Stainless Steel 304 E-Clip
  • Stainless Steel 304 E-Clip
  • Stainless Steel 304 E-Clip
  • Stainless Steel 304 E-Clip

Stainless Steel 304 E-Clip

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Stainless Steel 304 E-Clip: A Comprehensive Guide to International Standards and Equivalent Grades

Stainless steel E-clips are vital components in various industrial applications, renowned for their durability, corrosion resistance, and reliability. Among the plethora of stainless steel grades available, Stainless Steel 304 stands out for its versatility and widespread use across industries.

Characteristics of Stainless Steel 304 E-Clip:
Stainless Steel 304, also known as 18-8 stainless steel, contains 18% chromium and 8% nickel, offering excellent corrosion resistance, even in demanding environments. Its low carbon content makes it suitable for welding applications without risk of carbide precipitation, ensuring the integrity of joints. Moreover, its superior formability and strength make it ideal for E-clip manufacturing, providing robust fastening solutions.

International Standards for Stainless Steel 304 E-Clip:
Stainless Steel 304 E-clips adhere to several international standards to ensure quality and interchangeability across borders. Prominent among these standards are:
ASTM A313/A313M: Standard Specification for Stainless Steel Spring Wire, ensuring the requisite mechanical properties and chemical composition of the material.
DIN 6799: German standard specifying retaining rings, including E-clips, with precise dimensions and tolerances for various applications.
ISO 8752: International standard governing E-clips, spring-type straight pins, and similar products, ensuring uniformity in design and performance.
BS 2873: British standard for spring steel wire, encompassing Stainless Steel 304 E-clips within its scope.
Compliance with these standards guarantees the reliability and compatibility of Stainless Steel 304 E-clips across diverse industries and applications.

Equivalent Grades of Stainless Steel 304:
Stainless Steel 304 E-clips have equivalent grades in various international standards, ensuring flexibility in sourcing and procurement. Some of the notable equivalent grades include:
AISI 304: American Iron and Steel Institute designation for Stainless Steel 304, widely used in North America and beyond.
SUS 304: Japanese equivalent grade denoting Stainless Steel 304, conforming to the standards set by the Japanese Industrial Standards (JIS).
X5CrNi18-10: European grade for Stainless Steel 304, as per the EN 10088 standard, widely utilized in European markets.
1.4301: Unified Numbering System (UNS) designation for Stainless Steel 304, simplifying international trade and cross-referencing.

Applications of Stainless Steel 304 E-Clip:
Stainless Steel 304 E-clips find applications across diverse industries, owing to their corrosion resistance, strength, and versatility. Some common applications include:
Automotive Industry: Used in automotive assemblies for securing various components, such as shafts, gears, and bearings.
Aerospace Sector: Employed in aircraft manufacturing for fastening critical components due to their high strength-to-
weight ratio and corrosion resistance.
Machinery and Equipment: Utilized in machinery and equipment manufacturing for securing shafts, pulleys, and other moving parts.
Electronics and Electrical Engineering: Essential for securing connections and components in electronic devices and electrical enclosures, ensuring reliability and longevity.

In conclusion, Stainless Steel 304 E-clips offer unparalleled performance, adhering to stringent international standards and boasting equivalent grades for seamless integration into diverse applications. Their robustness, corrosion resistance, and compatibility make them indispensable components across industries, ensuring reliable and durable fastening solutions.
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Stainless Steel Union DIN 11864 ,  DIN 11853
  • Stainless Steel Union DIN 11864 ,  DIN 11853
  • Stainless Steel Union DIN 11864 ,  DIN 11853
  • Stainless Steel Union DIN 11864 ,  DIN 11853

Stainless Steel Union DIN 11864 , DIN 11853

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Unveiling the Unmatched Versatility of Stainless Steel Union DIN 11864 & DIN 11853: Your Ultimate Guide

In the realm of fluid handling systems, precision, durability, and reliability are paramount. Enter Stainless Steel Union DIN 11864 and DIN 11853 – two cornerstones in the world of industrial fittings, renowned for their impeccable quality and adherence to international standards. Whether in pharmaceuticals, food processing, or chemical industries, these unions stand as stalwarts of efficiency and safety. Let's delve deeper into their attributes, international standards, equivalent grades, and why they reign supreme.

Understanding Stainless Steel Union DIN 11864 & DIN 11853
These unions epitomize excellence in design and functionality. Stainless Steel Union DIN 11864 is characterized by its standardized connections, ensuring seamless integration within complex systems. Its counterpart, DIN 11853, shares similar traits but is tailored for specialized applications, offering versatility in assembly configurations.

Key Features and Benefits
Corrosion Resistance: Crafted from high-grade stainless steel, these unions boast exceptional corrosion resistance, making them ideal for harsh operating environments.
Hygienic Design: Engineered to meet stringent hygiene standards, they facilitate easy cleaning and sterilization, crucial in industries with strict sanitary requirements.
Leak-Free Performance: Precision machining and tight tolerances ensure leak-free connections, safeguarding against product contamination and operational disruptions.
Versatile Applications: From dairy processing to pharmaceutical production, these unions find application across diverse industries, reflecting their adaptability and reliability.

International Standards and Equivalent Grades
ISO Standards: Both DIN 11864 and DIN 11853 conform to ISO 2037 and ISO 1127 standards, ensuring compatibility with a wide range of equipment.
EN Standards: Compliant with European standards EN 10357 and EN 10217-7, these unions meet the stringent requirements for quality and performance.
ASTM Equivalent: ASTM A270 and ASTM A312 serve as equivalents in the American standards, reflecting global recognition and acceptance.
JIS Equivalent: JIS G3447 and JIS G3459 align with Japanese industrial standards, reinforcing the universal applicability of these unions.

Applications Across Industries
Pharmaceuticals: In pharmaceutical manufacturing, where purity is paramount, these unions ensure contamination-free processes, meeting the strictest regulatory standards.
Food and Beverage: From breweries to dairy plants, DIN 11864 and DIN 11853 unions play a vital role in maintaining product integrity and hygiene, crucial for consumer safety.
Chemical Processing: Chemical industries rely on these unions for their resistance to corrosive substances, ensuring seamless operations and minimal downtime.

Conclusion
Stainless Steel Union DIN 11864 and DIN 11853 stand as epitomes of precision engineering and reliability. Their adherence to international standards, coupled with unmatched durability and versatility, makes them indispensable in various industrial sectors. As the cornerstone of fluid handling systems, these unions ensure optimal performance, safety, and compliance, setting the benchmark for excellence in the industry. Embrace the power of DIN 11864 and DIN 11853 unions for unparalleled efficiency and peace of mind in your operations.
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Titanium Jewellery Wire
  • Titanium Jewellery Wire
  • Titanium Jewellery Wire
  • Titanium Jewellery Wire

Titanium Jewellery Wire

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Unveiling the Brilliance of Titanium Jewellery Wire: Beauty and Durability Combined

Introduction

When it comes to crafting exquisite jewelry, every component, from the gemstones to the clasps, plays a crucial role in the overall design. One such component that often goes unnoticed but is indispensable for jewelry makers is titanium jewelry wire. Titanium wire offers a unique blend of beauty and durability that sets it apart from traditional materials. In this article, we'll delve into the world of titanium jewelry wire, exploring its qualities, uses, and why it's a top choice for both artisans and wearers alike.

The Allure of Titanium

Titanium, a lightweight and robust metal, has been widely used in various industries, and the world of jewelry making is no exception. Its natural silver-gray color and the ability to be easily anodized to create a stunning array of colors make it a favorite among jewelry designers

Durability Beyond Compare

One of the most outstanding features of titanium jewelry wire is its remarkable durability. Unlike traditional materials like gold or silver, titanium is highly resistant to corrosion, tarnish, and scratches. This means that jewelry made with titanium wire can withstand the test of time, retaining its beauty and luster for years to come.

Hypoallergenic Beauty

Another significant advantage of titanium wire is its hypoallergenic properties. People with sensitive skin often struggle to find jewelry that won't cause irritation. Titanium is an excellent choice because it doesn't contain nickel, a common allergen found in many other metals. This makes it an ideal option for those with metal allergies, ensuring they can enjoy stylish jewelry without discomfort.

Light as a Feather

Titanium's lightweight nature makes it comfortable to wear for extended periods. This quality is particularly appreciated in earrings, necklaces, and bracelets, as it ensures that the jewelry doesn't become a burden, even during all-day wear.

Endless Versatility

Titanium wire's versatility knows no bounds. It can be used to craft a wide range of jewelry pieces, from delicate chains to intricate pendants and bold statement rings. Its malleability allows artisans to shape it into various forms, making it an excellent choice for creating unique and one-of-a-kind jewelry.

Anodization: A Splash of Color

One of the most remarkable features of titanium is its ability to be anodized. Anodization is a process that adds color to the metal's surface, resulting in a stunning array of hues. From vibrant blues and greens to rich purples and golds, anodized titanium offers endless design possibilities. This technique allows jewelry makers to create pieces that match a customer's unique style or express their own artistic vision.

Conclusion

Titanium jewelry wire has earned its place in the world of jewelry making due to its exceptional combination of beauty and durability. Its lightweight, hypoallergenic, and corrosion-resistant properties make it a perfect choice for creating exquisite jewelry that stands the test of time. Whether you're an artisan looking to craft stunning pieces or a jewelry enthusiast seeking long-lasting, unique designs, titanium wire is a choice that won't disappoint. With its endless possibilities and timeless allure, titanium jewelry wire is a shining star in the world of jewelry craftsmanship.



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Stainless Steel 304 Button Head Screw ISO 7380
  • Stainless Steel 304 Button Head Screw ISO 7380
  • Stainless Steel 304 Button Head Screw ISO 7380
  • Stainless Steel 304 Button Head Screw ISO 7380

Stainless Steel 304 Button Head Screw ISO 7380

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Everything You Need to Know About Stainless Steel 304 Button Head Screw ISO 7380

In the realm of fasteners, stainless steel 304 button head screws ISO 7380 stand as a testament to durability, versatility, and reliability. These screws, with their distinctive design and material composition, are vital components in various industries worldwide. Understanding their specifications, international standards, and equivalent grades is crucial for ensuring seamless operations across diverse applications.

Introduction to Stainless Steel 304 Button Head Screw ISO 7380:
Stainless steel 304 button head screws ISO 7380 are engineered to meet stringent quality standards, offering exceptional corrosion resistance, high tensile strength, and aesthetic appeal. The button head design provides a smooth surface finish and allows for a low-profile installation, making them ideal for applications where appearance and space constraints are critical.

Specifications and Features:
Material: Stainless Steel 304, a versatile austenitic alloy renowned for its corrosion resistance and mechanical properties.
Standard: Conforms to International Organization for Standardization (ISO) 7380, ensuring uniformity and compatibility across global markets.
Head Style: Button Head, characterized by its rounded top and cylindrical shape, offering a visually appealing finish and enhanced security.
Drive Type: Hex Socket (Allen), facilitating easy installation with a hexagonal key or driver.
Thread Type: Metric Coarse Thread, providing secure fastening in a wide range of materials and applications.
Sizes: Available in various diameters and lengths to accommodate diverse requirements.
Application: Suitable for industries such as automotive, construction, electronics, and machinery, among others.

International Standards and Equivalent Grades:
ISO 7380: This standard specifies the dimensions, tolerances, materials, and mechanical properties for stainless steel button head screws, ensuring compatibility and interchangeability globally.
ASTM F738M: The ASTM F738M standard outlines the requirements for stainless steel metric button head cap screws, offering additional guidance for quality assurance and material composition.
DIN 7380: Equivalent to ISO 7380, the DIN standard is widely recognized in Europe, ensuring uniformity in design and performance across the region.
JIS B1177: The Japanese Industrial Standards (JIS) for button head screws provide specifications tailored to the requirements of the Japanese market, ensuring compliance with local regulations and standards.

Benefits of Stainless Steel 304 Button Head Screw ISO 7380:
Corrosion Resistance: Stainless steel 304 offers exceptional resistance to corrosion, making these screws suitable for both indoor and outdoor applications, even in harsh environments.
High Strength: With high tensile strength and excellent toughness, these screws provide reliable fastening under heavy loads and mechanical stress.
Aesthetic Appeal: The smooth, rounded head of button head screws enhances the visual appeal of installations, making them suitable for visible fastening applications.
Versatility: Stainless steel 304 button head screws ISO 7380 find applications across a wide range of industries, thanks to their compatibility with various materials and environments.

Conclusion:
Stainless steel 304 button head screws ISO 7380 are indispensable components in modern engineering and manufacturing. Their adherence to international standards, coupled with exceptional material properties, ensures reliable performance in diverse applications. Whether in construction, automotive, or electronics, these screws offer durability, versatility, and peace of mind for engineers and designers worldwide.

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  • Item Code: SsButtonHeadScrew
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Stainless Steel 316 Self Locking Nut DIN 982
  • Stainless Steel 316 Self Locking Nut DIN 982
  • Stainless Steel 316 Self Locking Nut DIN 982
  • Stainless Steel 316 Self Locking Nut DIN 982

Stainless Steel 316 Self Locking Nut DIN 982

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Exploring Stainless Steel 316 Self-Locking Nut DIN 982: A Comprehensive Guide

In the world of fasteners, Stainless Steel 316 Self-Locking Nut DIN 982 stands out as a reliable and versatile component. Renowned for its exceptional corrosion resistance and durability, this self-locking nut plays a crucial role in various industries, from automotive to construction and beyond. In this guide, we delve into the specifics of Stainless Steel 316 Self-Locking Nut DIN 982, including its international standards, equivalent grades, and key features.

Key Features of Stainless Steel 316 Self-Locking Nut DIN 982:
Material Composition: Stainless Steel 316, a high-grade austenitic stainless steel, is the primary material used in the manufacturing of DIN 982 self-locking nuts. This material offers superior corrosion resistance, even in harsh environments exposed to chemicals and saltwater.
Self-Locking Mechanism: The unique design of DIN 982 self-locking nuts incorporates a nylon insert that provides resistance against loosening due to vibration or torque. This feature ensures a secure and reliable fastening solution, reducing the need for frequent maintenance and tightening.
High Temperature Resistance: Stainless Steel 316 exhibits excellent performance at elevated temperatures, making it suitable for applications where heat resistance is essential. The self-locking nut retains its mechanical properties even under extreme heat, ensuring long-term reliability.
Wide Range of Applications: From marine equipment and automotive components to industrial machinery and construction projects, Stainless Steel 316 Self-Locking Nut DIN 982 finds extensive use across diverse sectors. Its versatility and durability make it a preferred choice for critical fastening applications.

International Standards and Equivalent Grades:
Stainless Steel 316 Self-Locking Nut DIN 982 complies with various international standards, ensuring quality and compatibility across different markets. Some of the key standards include:
DIN 982: This German standard specifies the dimensions, tolerances, and technical requirements for self-locking nuts made of stainless steel.
ISO 7040: An international standard that provides specifications for prevailing torque type hexagon nuts (with non-metallic insert), including dimensional requirements and performance criteria.
ASTM F594: This ASTM standard covers the requirements for stainless steel nuts in diameters ranging from 1/4 inch to 1-1/2 inches, including material grades and mechanical properties.

Equivalent Grades:
Stainless Steel 316 Self-Locking Nut DIN 982 may also be identified by equivalent grades, ensuring interchangeability and compatibility with alternative specifications. Some common equivalent grades include:
ASTM A194 Grade 8: A high-strength stainless steel nut suitable for use in high-pressure and high-temperature applications.
BS 6105 A4: British Standard specification for stainless steel nuts, similar in composition and properties to Stainless Steel 316.
JIS SUS316: Japanese Industrial Standard grade that corresponds to Stainless Steel 316, offering comparable corrosion resistance and mechanical properties.

Conclusion:
Stainless Steel 316 Self-Locking Nut DIN 982 combines superior corrosion resistance, self-locking capabilities, and high temperature resistance, making it an ideal choice for critical fastening applications. Compliant with international standards and available in equivalent grades, this versatile fastener ensures reliability and performance across diverse industries. Whether in marine environments, automotive assemblies, or industrial machinery, DIN 982 self-locking nuts deliver dependable fastening solutions that stand the test of time.
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Stainless Steel 304 Wing Nuts
  • Stainless Steel 304 Wing Nuts
  • Stainless Steel 304 Wing Nuts
  • Stainless Steel 304 Wing Nuts

Stainless Steel 304 Wing Nuts

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The Ultimate Guide to Stainless Steel 304 Wing Nuts: International Standards and Equivalent Grades

In the realm of fasteners, wing nuts play a crucial role, offering ease of assembly and disassembly in various applications. Among the myriad materials available, Stainless Steel 304 stands out for its exceptional properties and wide-ranging utility.

Stainless Steel 304 Wing Nuts: Unraveling Excellence
Stainless Steel 304, a versatile austenitic alloy, boasts an impeccable combination of corrosion resistance, durability, and formability. These traits make it a prime choice for applications across industries, ranging from construction to marine environments.

Key Features:
Corrosion Resistance: Stainless Steel 304 exhibits remarkable resistance to corrosion, making it suitable for use in harsh environments, including exposure to chemicals and moisture.
Strength and Durability: With high tensile strength and excellent toughness, SS 304 wing nuts ensure robust performance under varying loads and conditions.
Formability: Its malleability allows for easy fabrication into different shapes and sizes, catering to diverse fastening requirements.
Hygienic Properties: Stainless Steel 304 is non-porous and easy to clean, making it ideal for applications demanding strict hygiene standards, such as food processing and medical equipment.

International Standards for Stainless Steel 304 Wing Nuts
When it comes to standardization, Stainless Steel 304 wing nuts adhere to several international specifications, ensuring quality, compatibility, and interchangeability across global markets. Some prominent standards include:
ASTM Standards: ASTM A194/A194M covers carbon, alloy, and stainless steel nuts for high-pressure or high-temperature service. Within this standard, Type 304 is specified for austenitic stainless steel wing nuts.
ISO Standards: ISO 3506 specifies the mechanical and physical properties of stainless steel fasteners, categorizing them into several grades based on their chemical composition and corrosion resistance.

Stainless Steel 304 corresponds to Grade A2 within the ISO framework.
DIN Standards: DIN 315 outlines the dimensions and technical specifications for wing nuts, including those made from Stainless Steel 304. DIN 315 wing nuts are widely used in various mechanical and industrial applications.

Equivalent Grades of Stainless Steel 304
In addition to international standards, Stainless Steel 304 wing nuts may be referenced by equivalent grades under different naming conventions. Some common equivalents include:
AISI/SAE: The American Iron and Steel Institute (AISI) and the Society of Automotive Engineers (SAE) designate Stainless Steel 304 as AISI/SAE 304 or simply 304.
UNS: Unified Numbering System (UNS) assigns UNS S30400 to Stainless Steel 304, providing a unified identification for global trade and communication.
EN/DIN: European Norm (EN) standards often refer to Stainless Steel 304 as
X5CrNi18-10, aligning with the DIN standardization.

Conclusion
Stainless Steel 304 wing nuts stand as a testament to the exceptional versatility and performance of this alloy in fastening applications. With adherence to stringent international standards and availability in equivalent grades, these wing nuts offer reliability, durability, and compatibility across diverse industries and environments. Whether in construction, automotive, or marine sectors, Stainless Steel 304 wing nuts provide the reliability and longevity demanded by modern engineering challenges.

Keywords: Stainless Steel 304, wing nuts, international standards, equivalent grades, ASTM, ISO, DIN, AISI, UNS, EN, corrosion resistance, mechanical properties, durability.

Additional Information:

  • Item Code: STAINLESSSTEEL304WINGNUTS
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Inconel 718 Studs
  • Inconel 718 Studs
  • Inconel 718 Studs
  • Inconel 718 Studs

Inconel 718 Studs

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Unraveling the Strength of Inconel 718 Studs: A Comprehensive Guide

Inconel 718 studs have emerged as the backbone of various industrial applications, owing to their exceptional strength, corrosion resistance, and high-temperature stability. From aerospace to automotive and beyond, these studs play a pivotal role in ensuring structural integrity and reliability. In this comprehensive guide, we delve into the nuances of Inconel 718 studs, covering international standards, equivalent grades, and key attributes.

Understanding Inconel 718 Studs
Inconel 718 is a nickel-based superalloy renowned for its outstanding mechanical properties. When crafted into studs, it exhibits exceptional tensile strength, fatigue resistance, and creep rupture properties. These characteristics make it an ideal choice for critical applications subjected to extreme environments, including high temperatures and corrosive atmospheres.

International Standards
Inconel 718 studs adhere to stringent international standards to ensure consistency and quality across various industries. Some of the key standards include:
ASTM B637: This standard outlines the requirements for hot-finished and cold-finished Inconel 718 bars, including studs, for high-temperature applications.
AMS 5662: The Aerospace Materials Specifications set forth by AMS 5662 specify the chemical composition, mechanical properties, and heat treatment of Inconel 718 studs used in aerospace applications.
ISO 9723: This international standard governs the designation and chemical composition of nickel and nickel alloys, including Inconel 718 studs, ensuring global compatibility and quality assurance.

Equivalent Grades
In addition to international standards, Inconel 718 studs may also be classified according to equivalent grades, offering flexibility and interchangeability across different regions and industries. Some common equivalent grades include:
UNS N07718: This designation corresponds to the unified numbering system for nickel and nickel alloys, indicating the chemical composition and properties of Inconel 718 studs.
W.Nr. 2.4668: The Werkstoffnummer (W.Nr.) is a German standard for materials identification, with 2.4668 representing the alloy composition of Inconel 718 studs.

Key Attributes and Applications
Inconel 718 studs boast a myriad of key attributes that make them indispensable in various applications:
High Temperature Resistance: Inconel 718 studs retain their strength and integrity at elevated temperatures, making them suitable for aerospace propulsion systems, gas turbine components, and industrial furnaces.
Corrosion Resistance: The alloy composition of Inconel 718 studs imparts exceptional resistance to corrosion and oxidation, ensuring longevity and reliability in harsh environments such as chemical processing plants and marine applications.
Fatigue and Creep Resistance: Inconel 718 studs exhibit superior fatigue and creep resistance, minimizing the risk of mechanical failure under prolonged stress or cyclic loading conditions.
Weldability and Fabrication: Inconel 718 studs are readily weldable and machinable, facilitating ease of fabrication and customization for specific project requirements.

Keywords:
Inconel 718 studs
International standards
Equivalent grades
ASTM B637
AMS 5662
ISO 9723
UNS N07718
W.Nr. 2.4668
High temperature resistance
Corrosion resistance
Fatigue resistance
Creep resistance
Aerospace
Automotive
Industrial applications

In conclusion, Inconel 718 studs stand as a testament to the remarkable capabilities of nickel-based superalloys in demanding environments. By adhering to international standards and offering equivalent grades, these studs ensure reliability, performance, and peace of mind across diverse industries and applications.
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Inconel 825 Bar
  • Inconel 825 Bar
  • Inconel 825 Bar
  • Inconel 825 Bar

Inconel 825 Bar

Product Price: Rs 1,900 / PieceGet Best Price

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Inconel 825 is a nickel-iron-chromium alloy with added elements such as molybdenum, copper, and titanium. This alloy is renowned for its exceptional corrosion resistance, making it a preferred choice for various industrial applications. One of the key forms in which Inconel 825 is available is in the shape of bars. This article delves into the characteristics, applications, and frequently asked questions (FAQs) about Inconel 825 bars.

Characteristics of Inconel 825 Bar:

Corrosion Resistance:

Inconel 825 is highly resistant to corrosion, particularly in aggressive environments such as those containing sulfuric and phosphoric acids. This property makes it suitable for applications in chemical processing, pollution control, and oil and gas industries.

High Temperature Performance:

The alloy retains its strength even at elevated temperatures, making it suitable for applications in heat exchangers, furnace hardware, and nuclear engineering.

Excellent Mechanical Properties:

Inconel 825 exhibits impressive mechanical properties, including high tensile and yield strength. This makes it suitable for applications requiring robust and durable materials.

Weldability:

The alloy has good weldability, allowing for ease of fabrication and construction in various industries. Welded joints retain their corrosion resistance, contributing to the overall reliability of structures.

Applications of Inconel 825 Bar:

Chemical Processing Industry:

Inconel 825 bars find extensive use in the chemical industry for components like reactor vessels, heat exchangers, and piping systems due to their corrosion resistance.

Oil and Gas Sector:

The alloy's resistance to sour gas environments makes it valuable for applications in the oil and gas industry, including downhole equipment and piping systems.

Marine Engineering:

Inconel 825 is utilized in marine environments where corrosion resistance and durability are critical, such as in seawater heat exchangers and offshore platforms.

Nuclear Power Generation:

The high temperature and corrosion-resistant properties of Inconel 825 make it suitable for nuclear applications, including reactor core components and fuel element cladding.

FAQs about Inconel 825 Bar:

Q1: What sets Inconel 825 apart from other alloys?

A1: Inconel 825 stands out for its superior corrosion resistance, especially in harsh chemical environments, and its ability to maintain strength at high temperatures.

Q2: Can Inconel 825 bars be welded?

A2: Yes, Inconel 825 exhibits good weldability, allowing for the creation of robust structures through welding processes.

Q3: Where is Inconel 825 commonly used?

A3: This alloy finds applications in diverse industries, including chemical processing, oil and gas, marine engineering, and nuclear power generation.

Q4: What is the temperature range for Inconel 825's high-temperature performance?

A4: Inconel 825 maintains its strength at elevated temperatures, typically up to around 1,600°F (870°C).

In conclusion, Inconel 825 bars offer a combination of corrosion resistance, high-temperature performance, and mechanical strength, making them indispensable in a wide range of industries. Their versatility and reliability make them a preferred choice for challenging environments where durability and performance are paramount.

 

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Inconel 800 HT Round Bars
  • Inconel 800 HT Round Bars
  • Inconel 800 HT Round Bars
  • Inconel 800 HT Round Bars

Inconel 800 HT Round Bars

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Understanding the Superiority of Inconel 800 HT Round Bars: International Standards and Equivalent Grades Unveiled

Inconel 800 HT round bars stand as an epitome of excellence in the realm of high-temperature applications. Renowned for their exceptional strength, corrosion resistance, and heat tolerance, these round bars have become a cornerstone in various industries, including aerospace, chemical processing, and power generation.

Features and Advantages:
Inconel 800 HT round bars boast an impressive array of features that make them a preferred choice in demanding environments:
High Temperature Resistance: With a melting point of over 1400°C, Inconel 800 HT round bars exhibit remarkable stability and strength even at elevated temperatures, making them ideal for applications involving heat exposure.
Corrosion Resistance: These round bars offer exceptional resistance to corrosion, oxidation, and sulfidation, ensuring longevity and reliability in corrosive environments.
Excellent Mechanical Properties: Inconel 800 HT round bars maintain excellent mechanical properties, including high tensile and yield strength, along with good ductility and toughness, enabling them to withstand extreme conditions without compromising performance.
Versatility: From furnace components and petrochemical equipment to gas turbines and nuclear reactors, Inconel 800 HT round bars find applications across a diverse range of industries, owing to their versatility and reliability.

International Standards and Equivalent Grades:
Inconel 800 HT round bars adhere to stringent international standards to ensure quality, consistency, and compatibility across global markets. Some of the notable standards include:
ASTM B408/B408M: This standard specifies the requirements for nickel-iron-chromium alloy round bars (Inconel 800 HT) for high-temperature service.
AMS 5766: A specification by the Society of Automotive Engineers (SAE), AMS 5766 outlines the requirements for Inconel 800 HT round bars, emphasizing properties such as strength, hardness, and chemical composition.
EN/DIN 1.4876: European and German standards recognize Inconel 800 HT under the designation EN/DIN 1.4876, ensuring compliance with European regulations and specifications.
ISO 9723: The International Organization for Standardization (ISO) standardizes the chemical composition and mechanical properties of Inconel 800 HT round bars through ISO 9723, facilitating global acceptance and interoperability.
Equivalent Grades:
Inconel 800 HT round bars have equivalent grades across various international standards, ensuring seamless interchangeability and broadening their accessibility. Some notable equivalent grades include:
UNS N08811: Unified Numbering System (UNS) designates Inconel 800 HT with the identifier N08811, providing a unique identification code for international trade and reference.
Werkstoff 1.4876: This Werkstoff number corresponds to Inconel 800 HT in the German material classification system, enabling easy identification and specification in European markets.
JIS NCF 800: Japanese Industrial Standards (JIS) recognize Inconel 800 HT under the designation NCF 800, aligning with Japanese industry requirements and specifications.
BS NA 15: British Standards (BS) classify Inconel 800 HT as NA 15, ensuring compliance with British quality standards and regulations.

Conclusion:
Inconel 800 HT round bars epitomize excellence in high-temperature applications, offering unparalleled strength, corrosion resistance, and versatility. Compliant with stringent international standards and boasting equivalent grades across various specifications, these round bars ensure reliability, consistency, and compatibility across global markets.
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Inconel X-750 Bars
  • Inconel X-750 Bars
  • Inconel X-750 Bars
  • Inconel X-750 Bars

Inconel X-750 Bars

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Exploring Inconel X-750 Bars: Profile, International Standards, and Equivalent Grades

Inconel X-750 bars stand as stalwarts in the realm of high-performance alloys, revered for their exceptional properties and versatility across various industries. From aerospace to nuclear power, these bars exhibit remarkable resistance to high temperatures, corrosion, and mechanical stress, making them indispensable in critical applications. Let's delve into the profile of Inconel X-750 bars, elucidate international standards governing their quality, and unveil equivalent grades for global compatibility.

Profile of Inconel X-750 Bars:
Inconel X-750 bars are wrought nickel-chromium alloy components renowned for their excellent properties, primarily designed to endure extreme environments. These bars boast exceptional strength, oxidation resistance, and creep rupture properties at elevated temperatures, making them ideal for high-stress applications. The alloy composition typically includes nickel, chromium, and small additions of aluminum and titanium, enhancing its high-temperature capabilities and corrosion resistance.

Key Properties and Features:
High Temperature Resistance: Inconel X-750 bars retain their mechanical properties even at temperatures exceeding 700°C (1292°F), making them suitable for applications in demanding thermal environments.
Corrosion Resistance: These bars exhibit superb resistance to corrosion and oxidation in harsh chemical and atmospheric conditions, ensuring longevity and reliability.
Excellent Mechanical Strength: With its combination of nickel and chromium, Inconel X-750 bars offer exceptional mechanical strength, fatigue resistance, and ductility, crucial for withstanding heavy loads and stress.
Versatility: Inconel X-750 bars find extensive use in aerospace, gas turbines, nuclear reactors, and various industrial sectors where reliability and performance are paramount.

International Standards for Inconel X-750 Bars:
To ensure quality and interoperability across global markets, Inconel X-750 bars adhere to stringent international standards. Prominent among these standards are:
ASTM B637: This standard specifies the requirements for nickel alloy bars, including Inconel X-750, for high-temperature service.
AMS 5667: AMS standards outline specific requirements for Inconel X-750 bars, covering chemical composition, mechanical properties, and heat treatment procedures.
UNS N07750: Designated by the Unified Numbering System, UNS N07750 denotes the Inconel X-750 alloy, ensuring consistency in material identification and traceability.

Equivalent Grades:
Inconel X-750 bars may also be referred to by equivalent grades in different international standards, facilitating seamless integration into diverse applications. Some notable equivalents include:
ISO 15156/NACE MR0175: This standard specifies the use of specific materials, including Inconel X-750, for sour oil and gas production environments, ensuring compatibility with stringent industry requirements.
EN 2.4669: European standard EN 2.4669 corresponds to the chemical composition and properties of Inconel X-750 bars, ensuring compliance with European regulations and specifications.
JIS NCF 750: Japanese Industrial Standard (JIS) NCF 750 aligns with Inconel X-750's characteristics, enabling its utilization in Japanese industries while meeting local standards.

In conclusion, Inconel X-750 bars stand as epitomes of resilience and reliability, catering to diverse industries' demanding needs. With adherence to rigorous international standards and equivalence across global grades, these bars remain indispensable components in critical applications, ensuring superior performance and longevity in the face of extreme conditions.
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Inconel 718 Bar
  • Inconel 718 Bar
  • Inconel 718 Bar
  • Inconel 718 Bar

Inconel 718 Bar

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Understanding Inconel 718 Bar: Properties, Applications, and International Standards

Inconel 718 bar, a high-strength, corrosion-resistant nickel-chromium alloy, stands as a stalwart in demanding environments across various industries. This alloy, renowned for its exceptional properties, finds extensive applications in aerospace, oil and gas, marine, and chemical processing industries, among others. In this article, we delve into the intricacies of Inconel 718 bar, its properties, applications, and international standards, along with equivalent grades.

Properties of Inconel 718 Bar:
High Strength: With a yield strength of over 100 ksi (690 MPa) at room temperature and up to 1800°F (982°C), Inconel 718 bar exhibits exceptional strength properties.
Corrosion Resistance: Its resistance to corrosion and oxidation, even in high-temperature environments, makes it suitable for critical applications.
Heat Resistance: Inconel 718 maintains its mechanical properties in extreme temperature conditions, making it ideal for applications in aerospace and gas turbine engines.
Weldability: The alloy offers good weldability, allowing for ease of fabrication and assembly.
Fatigue Resistance: It shows excellent resistance to fatigue and stress corrosion cracking, ensuring longevity in service life.

Applications of Inconel 718 Bar:
Aerospace Industry: Inconel 718 is widely used in aircraft components, such as engine components, turbine discs, and rocket motors, owing to its high strength and temperature resistance.
Oil and Gas Sector: It finds application in downhole and surface gas-well components, as well as in equipment for sour gas service, due to its corrosion resistance and high strength.
Chemical Processing: Inconel 718 is utilized in chemical processing equipment, including reactors and vessels, where resistance to corrosive environments and high temperatures is crucial.
Marine Applications: Components subjected to marine environments benefit from the corrosion resistance of Inconel 718, making it suitable for marine propulsion systems and offshore platforms.

International Standards and Equivalent Grades:
Inconel 718 conforms to various international standards, ensuring uniformity in quality and performance across different regions. Some of the key standards include:
ASTM B637: This standard specifies the requirements for hot- and cold-worked precipitation-hardenable nickel alloy rod, bar, forgings, and forging stock.
AMS 5662, AMS 5663: These Aerospace Material Specifications detail the requirements for Inconel 718 bars and forgings, respectively, for use in aerospace applications.
UNS N07718: Unified Numbering System (UNS) designation for Inconel 718, indicating its chemical composition and properties.

Equivalent Grades:
European: 2.4668 (NiCr19Fe19Nb5Mo3)
British: NA 51
Japanese: NC19FeNb

Conclusion:
Inconel 718 bar stands as a versatile material with unparalleled properties, making it indispensable in critical industries worldwide. Its high strength, corrosion resistance, and heat resistance properties enable its use in a wide range of applications, from aerospace to chemical processing. With adherence to international standards and availability of equivalent grades, Inconel 718 ensures consistency and reliability in performance across global markets. As industries continue to push the boundaries of performance and reliability, Inconel 718 remains a trusted ally in their quest for excellence.
By incorporating the keywords "Inconel 718 bar," "international standards," "equivalent grades," and related terms strategically throughout the article, we ensure optimal visibility and relevance in search engine results, enhancing the reach and impact of the content within target audiences.
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Inconel Flange Wnrtj
  • Inconel Flange Wnrtj
  • Inconel Flange Wnrtj
  • Inconel Flange Wnrtj
  • Inconel Flange Wnrtj

Inconel Flange Wnrtj

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Comprehensive Guide to Inconel Flange WNRTJ: International Standards, Equivalent Grades, and Key Features

Inconel flanges, specifically the WNRTJ (Weld Neck Raised Face Tongue and Groove) type, are indispensable components in various industrial applications, prized for their exceptional resistance to high temperatures, corrosion, and pressure. These flanges find extensive use in critical environments like chemical processing, aerospace, marine, and oil and gas sectors, where reliability and performance are paramount.

International Standards:
ASTM (American Society for Testing and Materials): ASTM specifications like ASTM B564 outline the requirements for nickel alloy forgings, including Inconel flanges, ensuring their suitability for high-temperature and corrosive environments.
ASME (American Society of Mechanical Engineers): ASME standards such as ASME B16.5 govern the dimensions, tolerances, materials, and testing requirements for pipe flanges and flanged fittings, providing guidelines for manufacturing and installation.
ANSI (American National Standards Institute): ANSI standards, particularly ANSI B16.5, specify the dimensions and pressure ratings of flanges, ensuring compatibility and interchangeability in piping systems.
EN (European Norm): EN standards like EN 1092-1 cover flanges and their jointing, offering guidelines for design, materials, dimensions, and testing, ensuring conformity to European regulations.
DIN (Deutsches Institut für Normung): DIN standards, including DIN 2630 and DIN 2633, provide specifications for flanges in various industries, ensuring consistency and quality in manufacturing and usage.

Equivalent Grades:
Inconel 600: Equivalent to UNS N06600, Inconel 600 offers excellent resistance to corrosion, oxidation, and high temperatures, making it suitable for applications involving acids, alkalis, and cryogenic environments.
Inconel 625: Equivalent to UNS N06625, Inconel 625 exhibits superior strength and toughness, along with resistance to chloride-induced stress corrosion cracking, making it ideal for marine and chemical processing applications.
Inconel 718: Equivalent to UNS N07718, Inconel 718 combines high strength, corrosion resistance, and ease of fabrication, making it suitable for aerospace, nuclear, and gas turbine components subjected to extreme conditions.
Inconel 825: Equivalent to UNS N08825, Inconel 825 offers excellent resistance to sulfuric and phosphoric acids, as well as pitting and crevice corrosion in acidic environments, making it ideal for chemical processing and pollution control equipment.

Key Features:
Inconel flange WNRTJ offer several key features that contribute to their widespread adoption and reliability in demanding applications:
High Temperature Resistance: Inconel alloys withstand elevated temperatures, retaining their mechanical properties and corrosion resistance even at extremes.
Corrosion Resistance: Inconel flanges exhibit exceptional resistance to corrosion, including oxidation, pitting, and crevice corrosion, ensuring longevity in harsh environments.
Pressure Integrity: Designed to withstand high pressures, Inconel flanges maintain tight seals, preventing leakage and ensuring the integrity of piping systems.
Versatility: Available in various sizes, pressure ratings, and configurations, Inconel flanges offer versatility to suit diverse application requirements, enhancing flexibility in design and installation.

In conclusion, Inconel flange WNRTJ conform to rigorous international standards, offer equivalent grades for material selection flexibility, and boast key features such as high temperature and corrosion resistance, making them indispensable components in critical industrial applications.
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Inconel Flange WNRF
  • Inconel Flange WNRF
  • Inconel Flange WNRF
  • Inconel Flange WNRF
  • Inconel Flange WNRF

Inconel Flange WNRF

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Understanding Inconel Flange WNRF: International Standards and Equivalent Grades

Inconel flanges are integral components in high-temperature and corrosive environments, renowned for their exceptional strength and resistance properties. Among the various types, the Weld Neck Raised Face (WNRF) flange stands out for its reliability and suitability across industries.

Introduction to Inconel Flange WNRF:
Inconel, a family of austenitic nickel-chromium-based superalloys, exhibits outstanding resistance to oxidation, corrosion, and high temperatures. Inconel flange WNRF, characterized by its extended neck and raised face, ensures superior strength and tight sealing, making it ideal for critical applications in aerospace, chemical processing, marine, and other demanding sectors.

International Standards for Inconel Flange WNRF:
ASTM Standards: Inconel flange WNRF adheres to ASTM standards, particularly ASTM B564 for nickel alloy forgings. This standard ensures the flanges meet stringent quality requirements for composition, mechanical properties, and performance in varied environments.
ASME Standards: The American Society of Mechanical Engineers (ASME) outlines standards such as ASME B16.5 for pipe flanges and flanged fittings, which include specifications for Inconel WNRF flanges regarding dimensions, tolerances, and pressure ratings.
EN Standards: European Standards (EN) like EN 1092-1 govern flanges and their jointing dimensions, including WNRF flanges made of materials like Inconel. Compliance with EN standards ensures compatibility and interchangeability in global markets.
DIN Standards: Deutsches Institut für Normung (DIN) standards, particularly DIN 2633 and DIN 2634, prescribe dimensions and technical specifications for WNRF flanges, ensuring uniformity and reliability in installations.

Equivalent Grades of Inconel Flange WNRF:
Inconel 600 (UNS N06600): Known for its excellent resistance to a wide range of corrosive media, Inconel 600 offers high strength and stability at elevated temperatures, making it suitable for WNRF flanges in chemical and petrochemical industries.
Inconel 625 (UNS N06625): With superior resistance to chloride-induced stress corrosion cracking and excellent weldability, Inconel 625 WNRF flanges find applications in marine environments, offshore platforms, and chemical processing facilities.
Inconel 718 (UNS N07718): Renowned for its exceptional strength and oxidation resistance at high temperatures, Inconel 718 WNRF flanges are prevalent in aerospace applications, gas turbines, and cryogenic storage tanks.
Inconel 825 (UNS N08825): Offering enhanced corrosion resistance in acidic environments, Inconel 825 WNRF flanges are favored in chemical processing, pollution control, and sour gas applications.

Key Specifications and Features:
Pressure Ratings: Inconel flange WNRF conforms to various pressure classes, ranging from 150 to 2500 lbs, ensuring suitability for diverse operating conditions.
Sizes and Dimensions: Available in a wide range of sizes and dimensions as per standard specifications, ensuring compatibility with piping systems and equipment.
Surface Finish: Raised face design facilitates improved sealing and alignment, while options for surface finishes like serrated or smooth enhance performance in different applications.
Welding Compatibility: Inconel WNRF flanges are weldable using conventional methods, ensuring ease of installation and maintenance.

Conclusion:
Inconel flange WNRF exemplifies reliability and durability in demanding environments, meeting stringent international standards and offering equivalent grades tailored to specific application requirements. Understanding these standards, equivalent grades, and key specifications is crucial for selecting the right Inconel WNRF flange for optimal performance and longevity in critical operations.
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Inconel 660 Bars
  • Inconel 660 Bars
  • Inconel 660 Bars
  • Inconel 660 Bars

Inconel 660 Bars

Product Price: Rs 1,900 / PieceGet Best Price

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Unveiling the Strength of Inconel 660 Bars: A Comprehensive Guide

Inconel 660 bars stand tall as one of the most robust and versatile materials in the realm of engineering and manufacturing. Renowned for their exceptional resistance to corrosion, heat, and oxidation, these bars find extensive applications across diverse industries, from aerospace to chemical processing. Let's delve into the intricacies of Inconel 660 bars, exploring their properties, international standards, equivalent grades, and key applications.

Properties of Inconel 660 Bars:
Inconel 660, also known as Alloy 660 or UNS S66286, boasts remarkable mechanical properties, making it a preferred choice for demanding environments. Its high strength at elevated temperatures, excellent corrosion resistance, and exceptional ductility make it ideal for critical applications.

International Standards for Inconel 660 Bars:
Inconel 660 bars adhere to stringent international standards to ensure quality and reliability. Some of the prominent standards include:
ASTM B637: This standard specifies the requirements for nickel alloy bars, including Inconel 660, for high-temperature service.
AMS 5731: It outlines the chemical composition and mechanical properties of Inconel 660 bars, ensuring consistency and performance.
NACE MR0175: In environments where sour gas is present, compliance with this standard is essential to prevent corrosion, ensuring the integrity of the material.

Equivalent Grades of Inconel 660 Bars:
Understanding equivalent grades facilitates seamless integration into global supply chains. Some equivalent grades of Inconel 660 bars include:
DIN 1.4980
W.Nr. 1.4980
UNS S66286
ASTM A638 Grade 660
EN 1.4980
These equivalent grades ensure compatibility and interchangeability, enabling manufacturers to meet diverse project requirements with confidence.

Key Applications of Inconel 660 Bars:
Inconel 660 bars find application in various industries due to their exceptional properties:
Aerospace: Inconel 660 bars are used in aircraft engine components, such as turbine discs and fasteners, where high strength and corrosion resistance are crucial.
Chemical Processing: They are employed in chemical processing equipment, including reactors and vessels, where resistance to corrosive environments is paramount.
Power Generation: Inconel 660 bars play a vital role in power generation applications, such as turbine blades and shafts, ensuring reliable performance under extreme conditions.
Oil and Gas: Inconel 660 bars find usage in oil and gas exploration and production equipment, including downhole components and offshore platforms, where resistance to high temperatures and aggressive media is essential.

Keywords:
Inconel 660 bars, Alloy 660, UNS S66286, international standards, ASTM B637, AMS 5731, NACE MR0175, equivalent grades, aerospace, chemical processing, power generation, oil and gas.

In conclusion, Inconel 660 bars epitomize excellence in engineering materials, offering unparalleled strength, corrosion resistance, and versatility. With adherence to international standards and a range of equivalent grades, these bars continue to be indispensable in critical applications across various industries.
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Inconel 660 Fasteners
  • Inconel 660 Fasteners
  • Inconel 660 Fasteners
  • Inconel 660 Fasteners

Inconel 660 Fasteners

Product Price: Rs 250 / PieceGet Best Price

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Inconel 660, a high-strength, corrosion-resistant nickel-chromium-iron alloy, has gained widespread acclaim in various industries for its exceptional properties. One crucial application of this alloy is in the manufacturing of fasteners, where reliability and durability are paramount.

Introduction: The Power of Inconel 660 Fasteners

Inconel 660 fasteners exhibit remarkable resistance to oxidation and carburization in high-temperature environments, making them ideal for critical applications in aerospace, petrochemical, and marine industries. These fasteners are renowned for their ability to withstand extreme conditions, ensuring structural integrity and safety.

Key Advantages of Inconel 660 Fasteners:

High Temperature Resistance: Inconel 660 fasteners maintain their mechanical properties even at elevated temperatures, making them suitable for applications involving intense heat.

Corrosion Resistance: The alloy's composition provides excellent resistance to corrosion, making it a preferred choice in corrosive environments, such as chemical processing plants.

High Strength: With a high nickel content, Inconel 660 fasteners offer exceptional strength, ensuring reliability in demanding structural applications.

Fatigue Resistance: The alloy's unique composition contributes to its fatigue resistance, prolonging the lifespan of fasteners under cyclic loading conditions.

Versatility: Inconel 660 fasteners find applications in a wide range of industries, from power generation to oil and gas, showcasing their versatility.

FAQs About Inconel 660 Fasteners:

1. What makes Inconel 660 an ideal choice for fasteners in high-temperature environments?

Inconel 660's alloy composition, including nickel and chromium, imparts excellent resistance to oxidation and carburization, crucial for maintaining performance in high-temperature conditions.

2. How does Inconel 660 contribute to corrosion resistance?

The combination of nickel, chromium, and iron in Inconel 660 forms a protective oxide layer, preventing corrosive attacks and ensuring longevity in corrosive environments.

3. Are Inconel 660 fasteners suitable for marine applications?

Yes, Inconel 660's corrosion resistance makes it well-suited for marine environments where exposure to saltwater and other corrosive elements is a concern.

4. Can Inconel 660 fasteners be used in chemical processing plants?

Absolutely. The alloy's resistance to corrosion and chemicals makes it an excellent choice for fasteners in chemical processing plants.

5. How does the fatigue resistance of Inconel 660 benefit structural applications?

Inconel 660's fatigue resistance ensures that fasteners maintain their structural integrity over extended periods, even under cyclic loading conditions, reducing the risk of failure.

Conclusion: Unleashing the Potential of Inconel 660 Fasteners

Inconel 660 fasteners stand as a testament to the advancements in material science, offering unparalleled performance in challenging environments. Their high temperature resistance, corrosion resistance, and overall durability make them indispensable in critical applications across industries. By understanding the advantages and addressing common queries, users can harness the full potential of Inconel 660 fasteners, ensuring the reliability and longevity of their projects.

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Inconel Grub Screw
  • Inconel Grub Screw
  • Inconel Grub Screw
  • Inconel Grub Screw

Inconel Grub Screw

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Comprehensive Guide to Inconel Grub Screws: International Standards, Equivalent Grades, and Applications

Inconel grub screws are vital components in various industries due to their exceptional resistance to extreme environments, high temperatures, and corrosion. Renowned for their strength and durability, Inconel grub screws find applications in aerospace, chemical processing, marine, and oil & gas industries, among others. In this article, we delve into the international standards, equivalent grades, and applications of Inconel grub screws, ensuring you have a thorough understanding of this indispensable fastening solution.

International Standards for Inconel Grub Screws:
Inconel grub screws adhere to several international standards to ensure quality, compatibility, and performance across different applications. Some prominent standards include:
ASTM Standards: ASTM F738 and ASTM B637 outline the specifications for Inconel grub screws concerning material composition, dimensions, mechanical properties, and testing methods.
ISO Standards: ISO 3506 specifies the mechanical and physical properties of stainless steel fasteners, including Inconel grub screws, ensuring consistency and reliability in global applications.
DIN Standards: DIN 933 and DIN 931 provide guidelines for hexagon head screws, including Inconel variants, ensuring uniformity and interchangeability in European markets.
ASME Standards: ASME B18.3 covers socket set screws, including Inconel grub screws, ensuring compatibility and performance in critical engineering applications.

Equivalent Grades of Inconel Grub Screws:
Inconel grub screws are available in various grades, each offering specific properties tailored to diverse applications. Some common equivalent grades include:
Inconel 600: Equivalent to UNS N06600, Inconel 600 offers excellent resistance to oxidation, corrosion, and high temperatures, making it suitable for furnace components, chemical processing, and nuclear engineering.
Inconel 625: Equivalent to UNS N06625, Inconel 625 exhibits superb strength, corrosion resistance, and weldability, making it ideal for marine engineering, aerospace components, and chemical processing.
Inconel 718: Equivalent to UNS N07718, Inconel 718 offers exceptional tensile strength, fatigue resistance, and creep properties, making it suitable for gas turbine components, rocket motors, and cryogenic applications.
Inconel 825: Equivalent to UNS N08825, Inconel 825 provides excellent corrosion resistance in acidic environments, making it suitable for chemical processing, pollution control, and marine applications.

Applications of Inconel Grub Screws:
Inconel grub screws find widespread applications across diverse industries, including:
Aerospace: Used in aircraft engines, structural components, and landing gear assemblies due to their high strength, heat resistance, and corrosion resistance.
Chemical Processing: Employed in reactors, heat exchangers, and piping systems handling corrosive chemicals and high temperatures.
Marine: Utilized in offshore platforms, seawater desalination plants, and marine propulsion systems due to their resistance to seawater corrosion.
Oil & Gas: Applied in downhole drilling equipment, wellhead components, and pipeline systems exposed to harsh environments and high pressures.

In conclusion, Inconel grub screws, conforming to international standards and available in various equivalent grades, offer unparalleled performance in demanding environments across multiple industries. Their superior strength, corrosion resistance, and reliability make them indispensable components in critical applications, ensuring safety, efficiency, and longevity.

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Inconel grub screws, international standards, equivalent grades, ASTM, ISO, DIN, ASME, aerospace, chemical processing, marine, oil & gas.
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Inconel Alloy U Bolts
  • Inconel Alloy U Bolts
  • Inconel Alloy U Bolts
  • Inconel Alloy U Bolts

Inconel Alloy U Bolts

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The Ultimate Guide to Inconel Alloy U Bolts: International Standards and Equivalent Grades

Inconel alloy U bolts are indispensable components in various industries, renowned for their exceptional corrosion resistance, high temperature stability, and robust mechanical properties. As a staple in critical applications across aerospace, chemical processing, marine, and more, understanding their international standards and equivalent grades is paramount. In this comprehensive guide, we delve into the world of Inconel U bolts, exploring their standards, grades, and applications.

Understanding Inconel Alloy U Bolts
Inconel, a family of nickel-chromium-based superalloys, boasts remarkable resistance to oxidation, corrosion, and high temperatures. Inconel U bolts, specifically, are widely utilized for their ability to withstand extreme environments, including those with corrosive chemicals, high pressures, and elevated temperatures. Their U-shaped design provides stability and support in various mechanical and structural applications.

International Standards for Inconel Alloy U Bolts
ASTM Standards: ASTM International sets the standard specifications for various materials, including Inconel alloys. ASTM standards relevant to Inconel U bolts include ASTM B166 for nickel-chromium-iron alloys (UNS N06600, N06601, N06603, N06690, N06693, N06025, N06045, and N06696) and ASTM B637 for precipitation-hardening nickel alloy bars, forgings, and forging stock for high-temperature service.
ASME Standards: The American Society of Mechanical Engineers (ASME) regulates the design, fabrication, and inspection of pressure vessels and piping systems. Inconel U bolts may adhere to ASME standards, such as ASME Boiler and Pressure Vessel Code (BPVC) Section VIII for pressure vessel applications and ASME B18.31.3 for dimensional requirements of metric bolts.
ISO Standards: The International Organization for Standardization (ISO) establishes globally recognized standards for various industries. While specific ISO standards for Inconel U bolts may not exist, adherence to ISO 9001 for quality management systems ensures consistent product quality and performance.

Equivalent Grades of Inconel Alloys
Inconel 600: Equivalent grades include UNS N06600 and W.Nr. 2.4816. Known for its excellent resistance to chloride-ion stress-corrosion cracking, Inconel 600 U bolts find applications in chemical processing and nuclear engineering.
Inconel 625: With equivalents like UNS N06625 and W.Nr. 2.4856, Inconel 625 U bolts offer outstanding resistance to pitting, crevice corrosion, and aqueous corrosion. They are commonly used in marine engineering, aerospace, and oil and gas industries.
Inconel 718: Equivalents include UNS N07718 and W.Nr. 2.4668. Inconel 718 U bolts exhibit high strength and corrosion resistance at elevated temperatures, making them suitable for aerospace components and gas turbine engine parts.

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In conclusion, Inconel alloy U bolts play a crucial role in demanding environments where corrosion, high temperatures, and pressure are prevalent. By adhering to international standards and understanding equivalent grades, industries can ensure the reliability and performance of their U bolt applications, contributing to safer and more efficient operations.
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Inconel 625 U Bolts
  • Inconel 625 U Bolts
  • Inconel 625 U Bolts
  • Inconel 625 U Bolts

Inconel 625 U Bolts

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Exploring the Strength and Versatility of Inconel 625 U Bolts: International Standards and Equivalent Grades

Inconel 625 U bolts stand as a testament to engineering excellence, offering unparalleled strength, corrosion resistance, and durability in demanding environments. These specialized fasteners play a crucial role in various industries, from aerospace to marine, where reliability and performance are non-negotiable. In this comprehensive guide, we delve into the properties, applications, international standards, and equivalent grades of Inconel 625 U bolts, ensuring you're equipped with the knowledge needed to make informed decisions.

Understanding Inconel 625 U Bolts
Inconel 625, a nickel-based superalloy, serves as the foundation for these U bolts. Renowned for its exceptional resistance to corrosion and high temperatures, Inconel 625 is the ideal material for applications subjected to harsh conditions. U bolts, characterized by their U-shaped design, provide secure fastening in structural applications, piping systems, and more.

Key Properties of Inconel 625 U Bolts
Corrosion Resistance: Inconel 625 U bolts exhibit outstanding resistance to a wide range of corrosive media, including acids, alkaline solutions, and seawater, making them suitable for marine and chemical processing industries.
High Temperature Performance: With a melting point of over 1350°C (2460°F), Inconel 625 U bolts maintain their mechanical properties even at elevated temperatures, ensuring reliability in extreme environments.
Strength and Toughness: These U bolts boast high tensile strength and excellent fatigue resistance, contributing to their longevity and reliability in critical applications.

Applications of Inconel 625 U Bolts
Aerospace: Inconel 625 U bolts are utilized in aircraft engines, exhaust systems, and structural components where lightweight, high-strength fastening is essential.
Oil and Gas: These fasteners play a vital role in offshore drilling rigs, subsea equipment, and downhole applications, withstanding corrosive environments encountered in oil and gas exploration.
Chemical Processing: Inconel 625 U bolts are favored in chemical plants for their resistance to a variety of corrosive chemicals and solutions, ensuring the integrity of piping and equipment.

International Standards and Equivalent Grades
To ensure consistency and interoperability across global markets, Inconel 625 U bolts adhere to international standards such as:
ASTM B446: This standard specifies the requirements for nickel-chromium-molybdenum-columbium (Ni-Cr-Mo-Cb) alloys (UNS N06625) in the form of hot-finished and cold-worked rods, bars, and wire.
AMS 5666: The Aerospace Materials Specifications (AMS) outlines the requirements for nickel-alloy bars, forgings, and rings in various heat treatment conditions for aerospace applications.
Equivalent grades of Inconel 625 U bolts include:
UNS N06625 (USA): This unified numbering system designation corresponds to Inconel 625 and ensures compatibility with American standards and specifications.
2.4856 (Europe): Inconel 625 is designated as 2.4856 in European standards (EN), ensuring compliance with European regulations and requirements.

Conclusion
Inconel 625 U bolts represent a pinnacle of engineering ingenuity, offering unmatched performance in demanding applications where strength, corrosion resistance, and reliability are paramount. By adhering to stringent international standards and equivalent grades, these fasteners ensure seamless integration into diverse industrial sectors, providing peace of mind to engineers and designers worldwide. Invest in the reliability and performance of Inconel 625 U bolts for your next project and experience the difference firsthand.
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ASTM F468 Inconel 625 Carriage Bolts
  • ASTM F468 Inconel 625 Carriage Bolts
  • ASTM F468 Inconel 625 Carriage Bolts
  • ASTM F468 Inconel 625 Carriage Bolts

ASTM F468 Inconel 625 Carriage Bolts

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Understanding ASTM F468 Inconel 625 Carriage Bolts: International Standards and Equivalent Grades

Inconel 625 carriage bolts, compliant with ASTM F468 specifications, stand out in the realm of fasteners due to their exceptional corrosion resistance, high strength, and durability. These bolts find extensive applications in industries such as aerospace, chemical processing, marine, and more. Let's delve into the details of ASTM F468 Inconel 625 carriage bolts, exploring international standards and equivalent grades.

ASTM F468 Inconel 625 Carriage Bolts: Key Features
ASTM F468 outlines the requirements for the chemical composition, mechanical properties, dimensions, and other pertinent characteristics of Inconel 625 carriage bolts. These bolts are manufactured from a nickel-chromium-molybdenum alloy known for its superb resistance to corrosion and oxidation, even in extreme environments. The inclusion of niobium provides exceptional strength, making these bolts suitable for high-stress applications.

International Standards for Inconel 625 Carriage Bolts
ISO Standards: Inconel 625 carriage bolts also conform to ISO standards, ensuring their compatibility and acceptance on a global scale. ISO 3506 specifies the mechanical properties and chemical composition of stainless steel fasteners, including bolts, nuts, and screws, which align with the requirements of ASTM F468.
EN Standards: European Standards (EN) offer another set of guidelines for fasteners. EN 10269 covers the requirements for stainless and heat-resisting steel bolts, screws, and studs, which can be applicable to Inconel 625 carriage bolts, especially in European markets.

Equivalent Grades of ASTM F468 Inconel 625 Carriage Bolts
UNS N06625: Inconel 625 is designated by the Unified Numbering System (UNS) as N06625, indicating its specific composition and properties. This designation is widely accepted across industries and serves as a reference for the material used in ASTM F468 bolts.
Werkstoff Number 2.4856: Inconel 625 is also recognized by its Werkstoff Number, 2.4856, which is commonly used in European contexts. This provides a standardized reference for the alloy, facilitating procurement and interchangeability.

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In conclusion, ASTM F468 Inconel 625 carriage bolts offer a reliable solution for demanding applications requiring corrosion resistance and high strength. Understanding international standards and equivalent grades ensures compliance and facilitates procurement processes across diverse markets, making these bolts a preferred choice in various industries.
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Inconel Alloy UNS N06625 Threaded Inserts
  • Inconel Alloy UNS N06625 Threaded Inserts
  • Inconel Alloy UNS N06625 Threaded Inserts
  • Inconel Alloy UNS N06625 Threaded Inserts

Inconel Alloy UNS N06625 Threaded Inserts

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Introduction:

In the realm of high-performance alloys, Inconel Alloy UNS N06625 stands as a testament to exceptional engineering. Manufacturers worldwide are increasingly turning to this superalloy for its unparalleled strength, corrosion resistance, and heat tolerance. This article delves into the world of Inconel Alloy UNS N06625 Threaded Inserts, shedding light on their manufacturing prowess, equivalent grades, and adherence to ASTM standards.

Manufacturing Excellence:

At the heart of every Inconel Alloy UNS N06625 Threaded Insert is a meticulous manufacturing process that combines advanced metallurgical techniques with precision engineering. The alloy, primarily composed of nickel and chromium, exhibits remarkable resistance to oxidation and corrosion in extreme environments. This makes it an ideal choice for threaded inserts subjected to harsh conditions.

Equivalent Grades:

Understanding the equivalent grades of Inconel Alloy UNS N06625 is crucial for manufacturers seeking optimal performance and compatibility. The alloy shares similarities with various counterparts, including Inconel 625 and Nickel Alloy 625. These equivalents ensure that the threaded inserts maintain their structural integrity and functionality across diverse applications.

ASTM Standards:

To guarantee the quality and reliability of Inconel Alloy UNS N06625 Threaded Inserts, adherence to ASTM standards is paramount. The American Society for Testing and Materials (ASTM) has established rigorous specifications for materials, ensuring consistency and reliability in various industries. Inconel Alloy UNS N06625 Threaded Inserts conform to ASTM B446, ASTM B564, and ASTM B446/B564 standards, among others.

ASTM B446 outlines the requirements for nickel-chromium-molybdenum-columbium alloys, including Inconel Alloy UNS N06625, in various forms such as bars, rods, and wire. Meanwhile, ASTM B564 specifies the nickel alloy forgings suitable for high-temperature and corrosive service. This standard ensures that Inconel Alloy UNS N06625 Threaded Inserts meet the stringent criteria for durability and performance.

Applications:

The versatility of Inconel Alloy UNS N06625 Threaded Inserts extends to a myriad of applications across industries. From aerospace engineering to chemical processing, these inserts provide a reliable solution for fastening components in environments where ordinary materials falter. The alloy's resistance to pitting, crevice corrosion, and high temperatures positions it as a material of choice in critical applications.

Conclusion:

Inconel Alloy UNS N06625 Threaded Inserts represent a pinnacle in metallurgical engineering, offering manufacturers a reliable and durable solution for demanding applications. With equivalent grades ensuring compatibility and adherence to ASTM standards guaranteeing quality, these inserts stand as a testament to precision manufacturing and material excellence. As industries continue to evolve, the demand for robust and corrosion-resistant materials like Inconel Alloy UNS N06625 will undoubtedly persist, driving innovation and pushing the boundaries of what is achievable in engineering.

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Monel 400 Serrated Flange Nuts
  • Monel 400 Serrated Flange Nuts
  • Monel 400 Serrated Flange Nuts
  • Monel 400 Serrated Flange Nuts

Monel 400 Serrated Flange Nuts

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Monel 400 Serrated Flange Nuts: Ensuring Durability and Performance in Critical Applications

In industrial sectors where corrosion resistance, strength, and reliability are paramount, Monel 400 serrated flange nuts stand out as essential components. These nuts, made from a nickel-copper alloy renowned for its exceptional properties, offer unparalleled performance in demanding environments. Let's delve into the features, international standards, equivalent grades, and applications of Monel 400 serrated flange nuts.

Features of Monel 400 Serrated Flange Nuts:
Corrosion Resistance: Monel 400, comprising nickel (over 60%) and copper, exhibits outstanding resistance to corrosion by various agents, including seawater, acids, and alkalines. This resistance makes it ideal for marine and chemical processing applications.
High Strength: Despite its excellent corrosion resistance, Monel 400 retains impressive mechanical strength across a wide temperature range. This attribute ensures the integrity and reliability of assemblies even in challenging conditions.
Temperature Stability: Monel 400 maintains its mechanical properties at both sub-zero and elevated temperatures, making it suitable for use in cryogenic and high-temperature environments.
Ease of Fabrication: Monel 400 can be easily machined, welded, and fabricated, facilitating the manufacturing process and allowing for customization according to specific requirements.

International Standards for Monel 400:
ASTM B164: Standard Specification for Nickel-Copper Alloy Rod, Bar, and Wire.
ASME SB164: Standard Specification for Nickel-Copper Alloy Rod, Bar, and Wire.
UNS N04400: Unified Numbering System designation for Monel 400.
EN 2.4360: European standard designation for Monel 400.

Equivalent Grades of Monel 400:
NA13 (UK)
NiCu30Fe (Germany)
CuNi30Fe (France)
Monel R405 (USA)
NC15FE (France)

Applications of Monel 400 Serrated Flange Nuts:
Marine Engineering: Due to its resistance to seawater corrosion, Monel 400 serrated flange nuts are extensively used in shipbuilding, offshore platforms, and other marine structures.
Chemical Processing: Monel 400 nuts find applications in chemical processing plants where resistance to acids, alkalis, and other corrosive substances is critical.
Oil and Gas Industry: In oil rigs, pipelines, and refineries, where harsh environmental conditions prevail, Monel 400 nuts ensure the integrity of critical connections.
Aerospace: The combination of high strength and corrosion resistance makes Monel 400 suitable for aerospace applications, including aircraft engines and components.

Conclusion:
Monel 400 serrated flange nuts offer a combination of corrosion resistance, strength, and reliability that is unmatched by many other materials. With adherence to international standards such as ASTM B164 and ASME SB164, and with equivalent grades recognized globally, Monel 400 assures quality and performance in diverse industrial applications. From marine engineering to aerospace, these nuts play a vital role in ensuring the durability and safety of critical assemblies. Invest in Monel 400 serrated flange nuts for unparalleled performance in your applications.
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Button Head Screw Iso 7380
  • Button Head Screw Iso 7380
  • Button Head Screw Iso 7380
  • Button Head Screw Iso 7380

Button Head Screw Iso 7380

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Understanding Button Head Screw ISO 7380: 

Button head screws play a crucial role in various industries, offering a secure fastening solution with their unique design and construction. Among these, the ISO 7380 standard stands out for its globally recognized specifications, ensuring uniformity and reliability across applications.

Introduction to Button Head Screw ISO 7380
Button head screws, conforming to ISO 7380 standards, are characterized by their low-profile, rounded head with a cylindrical outer edge. These screws feature a recessed hex socket drive, facilitating easy installation with hex wrenches or Allen keys. Designed for precision and stability, they find extensive use in industries like automotive, electronics, machinery, and construction.

Key Specifications and International Standards
ISO 7380 establishes the dimensional and performance requirements for button head screws, ensuring interchangeability and compatibility across different manufacturers. The standard covers parameters such as thread diameter, length, head diameter, and head height, among others.
Moreover, button head screws may adhere to equivalent standards set by other organizations, including:
DIN 7380: German standardization body DIN (Deutsches Institut für Normung) provides specifications similar to ISO 7380, ensuring consistency in design and functionality.
BS EN ISO 7380: The British Standards Institution (BSI) aligns with ISO standards, offering BS EN ISO 7380 as its equivalent for button head screws.
ASTM F835: The American Society for Testing and Materials (ASTM) provides standards like ASTM F835 for socket button head cap screws, which closely align with ISO 7380 specifications.
These international standards uphold quality, performance, and compatibility, enabling seamless integration into diverse industrial applications.

Equivalent Grades and Material Specifications
Button head screws are available in various grades and materials to suit specific application requirements. Commonly used materials include stainless steel, carbon steel, and alloy steel, each offering unique properties such as corrosion resistance, strength, and durability.

Equivalent grades of Button Head Screw ISO 7380 include:
A2-70 / A4-70: Stainless steel grades conforming to ISO 3506, offering excellent corrosion resistance and suitable for applications demanding high durability.
10.9 / 12.9: Alloy steel grades characterized by their high tensile strength and superior mechanical properties, ideal for heavy-duty applications in automotive and machinery industries.
Selecting the appropriate grade and material ensures optimal performance and longevity of button head screws in various operating conditions.

Applications and Usage Scenarios
Button head screws find wide-ranging applications across industries, owing to their versatility and reliability. Some common usage scenarios include:
Electronics Assembly: Used in circuit boards, electronic enclosures, and consumer electronics for secure fastening and assembly.
Automotive Manufacturing: Employed in engine components, interior trims, and chassis assembly, contributing to vehicle stability and safety.
Machinery and Equipment: Utilized in machinery construction, equipment installation, and maintenance for robust and precise fastening solutions.
Furniture and Fixtures: Integrated into furniture assembly, cabinetry, and fixture installation, providing aesthetic appeal and structural support.

Conclusion
Button Head Screw ISO 7380, with its adherence to international standards and equivalent grades, serves as a reliable fastening solution across diverse industries. By understanding its specifications, material options, and applications, manufacturers and engineers can make informed decisions to optimize performance, durability, and reliability in their projects.
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Astm F2281 Grub Screw
  • Astm F2281 Grub Screw
  • Astm F2281 Grub Screw
  • Astm F2281 Grub Screw

Astm F2281 Grub Screw

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Understanding ASTM F2281 Grub Screw: International Standards and Equivalent Grades

Introduction:

ASTM F2281 is a widely recognized standard that governs the specifications for grub screws, also known as set screws. Grub screws play a crucial role in various applications, providing a secure and efficient method for fastening components together. In this article, we will delve into the specifics of ASTM F2281, its international standards, and equivalent grades, offering comprehensive insights for those seeking a deeper understanding of these essential fasteners.

ASTM F2281 Overview:

ASTM F2281, titled "Standard Specification for Stainless Steel and Nickel Alloy Bolts, Hex Cap Screws, and Studs, for Heat Resistance and High Temperature Applications," focuses on the requirements for hexagon socket set screws made from stainless steel and nickel alloys. These materials exhibit excellent resistance to high temperatures, corrosion, and other harsh environmental conditions, making them suitable for a wide range of industries.

Key Features of ASTM F2281 Grub Screws:

Material Composition:
ASTM F2281 specifies the chemical composition requirements for stainless steel and nickel alloy grub screws, ensuring the components' corrosion resistance and high-temperature performance.

Mechanical Properties:
The standard outlines the mechanical properties such as tensile strength, yield strength, and elongation, providing guidelines for manufacturers to produce grub screws with the necessary strength and durability.

Dimensional Requirements:
ASTM F2281 establishes precise dimensional specifications for grub screws, including thread pitch, diameter, and length, ensuring uniformity and compatibility in various applications.

International Standards for Grub Screws:

ASTM F2281 has international counterparts that set similar standards for grub screws. Notable standards include:

ISO 4026:
The International Organization for Standardization (ISO) has its equivalent standard, ISO 4026, which covers hexagon socket set screws with flat point and is widely accepted globally.

BS EN ISO 4026:The British Standards Institution (BSI) has adopted the ISO standard, issuing BS EN ISO 4026, aligning with international practices for grub screws.

Equivalent Grades:

AISI 304 and 316 Stainless Steel:ASTM F2281 often involves stainless steel grades like AISI 304 and 316. These grades are commonly used for their corrosion resistance and are equivalent to European standards like EN 1.4301 and EN 1.4401, respectively.

Nickel Alloys:Nickel alloys specified in ASTM F2281, such as Inconel and Hastelloy, have counterparts like Alloy 600 (EN 2.4816) and Alloy C276 (EN 2.4819) in the European standards.

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Conclusion:

Understanding the specifications outlined in ASTM F2281 is crucial for selecting the right grub screws for high-temperature applications. Recognizing the international standards and equivalent grades ensures compatibility and compliance with industry requirements. Whether you are a manufacturer or end-user, having a comprehensive knowledge of ASTM F2281 and its global counterparts is essential for successful and reliable fastening solutions.
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Incoloy UNS N08800 Carriage Bolts
  • Incoloy UNS N08800 Carriage Bolts
  • Incoloy UNS N08800 Carriage Bolts
  • Incoloy UNS N08800 Carriage Bolts

Incoloy UNS N08800 Carriage Bolts

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Enhance Structural Integrity with Incoloy UNS N08800 Carriage Bolts: International Standards and Equivalent Grades Explained

Incoloy UNS N08800 carriage bolts are indispensable components in various industries where robust fastening solutions are crucial. Renowned for their exceptional corrosion resistance and high-temperature performance, these bolts ensure structural integrity even in the harshest environments. Understanding their international standards and equivalent grades is imperative for optimal utilization and compatibility across diverse applications.

Incoloy UNS N08800 Carriage Bolts: Key Features
Incoloy UNS N08800, also known as Alloy 800, is a solid solution nickel-chromium alloy renowned for its remarkable properties. Carriage bolts made from this alloy exhibit excellent resistance to oxidation, carburization, and other forms of high-temperature corrosion. This makes them ideal for applications in industries such as chemical processing, petrochemicals, power generation, and aerospace.

International Standards for Incoloy UNS N08800 Carriage Bolts
Adhering to international standards ensures the quality, reliability, and interoperability of Incoloy UNS N08800 carriage bolts across global markets. Some of the key standards include:
ASTM B408: Specifies the requirements for nickel-iron-chromium alloy rods, bars, and wires.
ASTM B564: Outlines the standard specifications for nickel alloy forgings.
ASME SB408: Similar to ASTM B408, this standard is adopted by the American Society of Mechanical Engineers (ASME) for nickel-iron-chromium alloy rods, bars, and wires.
ASME SB564: Equivalent to ASTM B564, this ASME standard pertains to nickel alloy forgings.

Equivalent Grades of Incoloy UNS N08800
In addition to the standard specifications, understanding equivalent grades helps users identify suitable alternatives for specific applications. Some common equivalent grades of Incoloy UNS N08800 include:
Incoloy 800: Essentially the same material as UNS N08800, this grade offers similar properties and performance.
Alloy 800: Another designation for Incoloy UNS N08800, denoting its composition of nickel, chromium, and iron.
W.Nr. 1.4876: This Werkstoff Number (W.Nr.) is used to identify Incoloy UNS N08800 in
European standards, ensuring compliance with regional requirements.
X10NiCrAlTi32-20: A designation used in some European standards, providing a systematic way to refer to Incoloy UNS N08800 in engineering specifications.

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In summary, Incoloy UNS N08800 carriage bolts offer unparalleled performance and durability in demanding environments. By adhering to international standards and understanding equivalent grades, industries can ensure seamless integration and reliable operation of these essential components in their applications.
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ASTM F468 Gr. 625 Wheel Nuts
  • ASTM F468 Gr. 625 Wheel Nuts
  • ASTM F468 Gr. 625 Wheel Nuts
  • ASTM F468 Gr. 625 Wheel Nuts

ASTM F468 Gr. 625 Wheel Nuts

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Product Details:
GradeASTM F468 Gr. 625 Wheel Nuts
DELIVERYALL OVER INDIA AND EXPORT
DIMENSIONSTANDARD AND CUSTOMISED
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
Understanding ASTM F468 Gr. 625 Wheel Nuts: International Standards and Equivalent Grades

In the realm of industrial fasteners, ASTM F468 Grade 625 wheel nuts stand out as a reliable choice for critical applications in various industries. These nuts are meticulously designed to ensure optimal performance, durability, and safety, making them indispensable components in automotive, aerospace, marine, and other heavy-duty sectors. Let's delve into the intricacies of ASTM F468 Gr. 625 wheel nuts, explore their international standards, equivalent grades, and key features.

ASTM F468 Gr. 625 Wheel Nuts: Key Features
ASTM F468 Grade 625 wheel nuts are manufactured from a nickel-based alloy known for its exceptional corrosion resistance, high strength, and excellent weldability. These nuts exhibit superb mechanical properties even at elevated temperatures, making them suitable for demanding environments where reliability is paramount.

International Standards for ASTM F468 Gr. 625 Wheel Nuts
ASTM F468/F468M: This standard specifies the requirements for nonferrous alloy nuts for general use, including those made from Inconel 625 (Grade 625). It covers dimensions, mechanical properties, chemical composition, and other essential characteristics.
ASME B18.16.6: This American Society of Mechanical Engineers (ASME) standard pertains to dimensional requirements for hex flange nuts, including those made from materials like ASTM F468 Gr. 625. Compliance with ASME standards ensures uniformity and interchangeability of fasteners across different applications.
ISO 4032: Although not specifically for ASTM F468 Gr. 625 nuts, ISO 4032 provides general specifications for hexagon regular nuts (style 1) made from various materials, including non-ferrous alloys. While ISO standards may not directly correlate with ASTM specifications, they offer additional guidelines for quality assurance and compatibility.

Equivalent Grades of ASTM F468 Gr. 625 Wheel Nuts
UNS N06625: Unified Numbering System (UNS) designation for ASTM F468 Grade 625, indicating its chemical composition and metallurgical properties. This designation ensures global recognition and interoperability across different standards.
EN 2.4856: European standard designation for Inconel 625, aligning with ASTM F468 Grade 625 specifications. EN standards provide a framework for consistency in materials used across diverse industries within the European Union.
BS NA21: British Standard designation for nickel-chromium-molybdenum alloy, which corresponds to ASTM F468 Gr. 625. British standards ensure compatibility with fasteners sourced or manufactured in the United Kingdom and Commonwealth countries.

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In conclusion, ASTM F468 Gr. 625 wheel nuts offer unparalleled performance and reliability in critical applications across various industries. Understanding international standards and equivalent grades ensures seamless integration and compliance with regulatory requirements, underscoring the importance of meticulous material selection in engineering and construction projects.
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ASTM F468 Gr. 625 Nuts & Washers
  • ASTM F468 Gr. 625 Nuts & Washers
  • ASTM F468 Gr. 625 Nuts & Washers
  • ASTM F468 Gr. 625 Nuts & Washers
  • ASTM F468 Gr. 625 Nuts & Washers

ASTM F468 Gr. 625 Nuts & Washers

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GradeASTM F468 Gr. 625 Nuts & Washers
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
Understanding ASTM F468 Gr. 625 Nuts & Washers: International Standards and Equivalent Grades

Introduction:
ASTM F468 Grade 625 is a high-performance nickel-chromium-molybdenum alloy renowned for its exceptional corrosion resistance and high strength at elevated temperatures. This alloy finds extensive use in various industrial applications, especially in environments prone to corrosion, such as marine and chemical processing industries. In this article, we delve into the specifications of ASTM F468 Gr. 625 nuts and washers, along with international standards and equivalent grades.

ASTM F468 Gr. 625 Nuts & Washers Specifications:
ASTM F468 Gr. 625 sets the standard for nuts and washers made from Inconel 625 alloy. These components are primarily used in high-temperature and corrosive environments where ordinary materials would fail. The specifications outline the dimensions, mechanical properties, and testing requirements to ensure the quality and performance of these fasteners.

Key Features of ASTM F468 Gr. 625 Nuts & Washers:
Corrosion Resistance: ASTM F468 Gr. 625 nuts and washers exhibit exceptional resistance to a wide range of corrosive media, including acids, alkalis, and seawater.
High Temperature Strength: These fasteners retain their mechanical properties even at elevated temperatures, making them suitable for high-temperature applications.
Oxidation Resistance: The alloy's composition provides excellent resistance to oxidation, prolonging the lifespan of the fasteners in demanding environments.
Strength and Durability: ASTM F468 Grade 625 nuts and washers offer high tensile strength, fatigue resistance, and toughness, ensuring reliable performance under extreme conditions.

International Standards for ASTM F468 Gr. 625 Nuts & Washers:
ISO 4014/4017: These international standards define the dimensions and mechanical properties of hexagon head bolts and screws, which are equivalent to ASTM F468 Grade 625 nuts in certain applications.
DIN 933/931: German standards for hexagon head bolts and screws that correspond to ASTM F468 Grade 625 nuts.
EN 2.4856: European standard designation for nickel-chromium-molybdenum alloys, including ASTM F468 Grade 625, ensuring compatibility with European manufacturing practices and specifications.

Equivalent Grades of ASTM F468 Gr. 625 Nuts & Washers:
Inconel 625: This is the trade name for ASTM F468 Grade 625 alloy, widely recognized in the industry for its superior corrosion resistance and high temperature performance.
UNS N06625: Unified Numbering System designation for ASTM F468 Grade 625, ensuring uniformity in international trade and compatibility with various standards.
Werkstoff 2.4856: This is the German Werkstoffnummer (material number) for ASTM F468 Grade 625, facilitating identification and specification in German-speaking regions.

Conclusion:
ASTM F468 Gr. 625 nuts and washers offer unparalleled corrosion resistance, high temperature strength, and durability, making them indispensable in demanding industrial applications. Understanding international standards and equivalent grades ensures seamless integration of these fasteners into global supply chains, providing reliability and performance across diverse environments. As industries continue to evolve, ASTM F468 Grade 625 remains a trusted choice for critical fastening applications where reliability is paramount.
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329 LN Washer
  • 329 LN Washer
  • 329 LN Washer
  • 329 LN Washer
  • 329 LN Washer

329 LN Washer

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GRADE329 LN washer
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
Comprehensive Guide to 329 LN Washer: International Standards and Equivalent Grades

In the realm of fasteners and hardware, the 329 LN washer holds a significant place for its versatility and reliability. From industrial machinery to everyday applications, this small component plays a crucial role in ensuring structural integrity and longevity. In this article, we delve into the specifics of the 329 LN washer, exploring its international standards, equivalent grades, and essential features.

Understanding the 329 LN Washer:
The 329 LN washer is a type of flat washer crafted from high-quality stainless steel. Its composition predominantly consists of chromium, nickel, and molybdenum, rendering it exceptionally corrosion-resistant and durable even in harsh environments. This makes it ideal for applications where exposure to moisture, chemicals, or extreme temperatures is a concern.

International Standards:
ASTM A240/A240M: This standard covers chromium, chromium-nickel, and chromium-manganese-nickel stainless steel plate, sheet, and strip for pressure vessels and for general applications, including the manufacturing of washers.
EN 10028-7: For flat products made of steels for pressure purposes - Stainless steels, this standard specifies requirements for flat products for pressure purposes made of stainless steels, including washers.

Equivalent Grades:
UNS S32900: This grade is a duplex stainless steel characterized by its excellent corrosion resistance and high strength, suitable for a wide range of applications including washers.
X3CrNiMoN27-5-2 (1.4460): This European grade offers similar properties to the 329 LN, making it a suitable alternative in various applications where washers are required.

Key Features of 329 LN Washer:
Corrosion Resistance: Thanks to its high chromium and molybdenum content, the 329 LN washer exhibits exceptional resistance to corrosion, making it ideal for outdoor and marine applications.
High Strength: The duplex structure of 329 LN imparts high mechanical strength, ensuring reliable performance even under heavy loads or in challenging operating conditions.
Temperature Stability: With its balanced composition, the 329 LN washer maintains its mechanical properties across a wide temperature range, making it suitable for both cryogenic and high-temperature applications.

Applications:
Marine Industry: The corrosion-resistant nature of the 329 LN washer makes it indispensable in marine environments where exposure to saltwater and moisture is constant.
Chemical Processing: In chemical plants where exposure to corrosive substances is common, the 329 LN washer ensures longevity and reliability in critical connections.
Oil & Gas Sector: From offshore platforms to onshore pipelines, the 329 LN washer plays a vital role in ensuring the integrity of structural assemblies in the oil and gas industry.

Conclusion:
The 329 LN washer stands as a testament to the advancements in material engineering, offering a blend of corrosion resistance, strength, and versatility. Compliant with international standards such as ASTM A240/A240M and EN 10028-7, and with equivalent grades like UNS S32900 and X3CrNiMoN27-5-2, it meets the stringent requirements of various industries. Whether in marine environments, chemical processing plants, or the oil and gas sector, the 329 LN washer proves its worth as a reliable and durable component, ensuring the integrity and longevity of critical structures.
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Inconel 625lcf Plate
  • Inconel 625lcf Plate
  • Inconel 625lcf Plate
  • Inconel 625lcf Plate

Inconel 625lcf Plate

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GRADEINCONEL 625LCF PLATE
DIMENSIONSTANDARD AND CUSTOMISED
A nickel-chromium-molybdenum alloy that was developed as a fatigue-resistant bellows-quality version of INCONEL alloy 625. Alloying, melting and processing of this alloy are specially designed and controlled to provide a sheet product with optimum resistance to low-cycle and thermal fatigue at temperatures up to 1200°F (650°C).Used in Aircraft exhaust and automotive flexible coupling bellows and expansion joints in various types of process or transport piping.

STANDARD PRODUCT FORMSSheet and strip.

MAJOR SPECIFICATIONS
UNS N06625, N06626
ASTM B 443
ASME SB-443
SAE AMS 5879
ASME Code Case 2276
W.Nr. 2.4856
BS 3072 (NA21)

LIMITING CHEMICAL COMPOSITION, %
Ni...........58.0 min.
Cr......20.0 – 23.0
Mo....... 8.0 – 10.0
Nba....3.15 – 4.15
aPlus Co.
Fe........... 5.0 max.
C...........0.03 max.
Si..........0.15 max.
N...........0.02 max.
Mn........0.50 max.
S........ 0.015 max.
Al..........0.40 max.
Ti..........0.40 max.
P........ 0.015 max.
Co........... 1.0 max.

PHYSICAL CONSTANTS AND THERMAL PROPERTIES
Density, Ib/in3.........................................................................0.305
g/cm3......................................................................... 8.44
Melting Range, °F....................................................2350 – 2460
°C....................................................1290 – 1350
Specific Heat, Btu/lb•°F.....................................................0.098
J/kg•°C............................................................ 410
Curie Temperature, °F.........................................................<-320
°C........................................................<-196
Permeability at 200 Oersted (15.9 kA/m).................. 1.0006
Coefficient of Expansion, 70 – 200°F, 10-6 in/in •°F........ 7.1
20 – 100°C, μm/m •°C.......... 12.8
Thermal Conductivity, Btu • in/ft2•h•°F...............................68
W/m •°C..............................................9.7
Electrical Resistivity, ohm •circ mil/ft................................ 776
μΩ•m................................................. 1.29
TYPICAL MECHANICAL PROPERTIES
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Inconel 718 Hexagon Bar
  • Inconel 718 Hexagon Bar
  • Inconel 718 Hexagon Bar
  • Inconel 718 Hexagon Bar

Inconel 718 Hexagon Bar

Product Price: Rs 4,000 / KgGet Best Price

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EMAILPRASHAANTSTEEL@GMAIL.COM
GRADEINCONEL 718 HEXAGON BAR
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
Inconel alloy 718 is a precipitation-hardenable nickel-chromium alloy also containing significant amounts of iron, niobium and molybdenum along with lesser amounts of aluminum and titanium. It combines corrosion resistance and high strength with outstanding weldability, including resistance to post-weld cracking. The alloy has excellent creep-rupture strength at temperatures to 1300°F (700°C). Used in gas turbines, rocket motors, spacecraft, nuclear reactors, pumps and tooling. INCONEL alloy 718SPF is a special version designed for superplastic forming.

STANDARD PRODUCT FORMS
Pipe, tube, sheet, strip, plate, round bar, flat bar, forgingstock, hexagon, wire and extruded section.

MAJOR SPECIFICATIONS
UNS N07718, N07719
ASTM B 637, B 670
ASME SB-637, SB-670
DIN 17744, 17750-17754
SAE AMS 5589, 5590, 5596,
5597, 5662 – 5664, 5832,
5914, 5950, 5962
Werkstoff Nr. 2.4668
ASME Code Cases 1993, 2206,
2222, N-62, N-208, N-253
NACE MR-0175/ISO 15156
AECMA Pr EN 2404,
2405, 2407, 2408,
2952, 2961, 3219, 3666
ISO 6208, 9723 – 9725

LIMITING CHEMICAL COMPOSITION, %
Nia......50.0 – 55.0
Cr....... 17.0 – 21.0
Fe.......Remainder
Nbb.....4.75 – 5.50
Mo......2.80 – 3.30
aPlus Co. bPlus Ta.
Ti.......0.65 – 1.15
Al.......0.20 – 0.80
Coc......... 1.0 max.
C...........0.08 max.
Mn........0.35 max.
cIf determined.
Si..........0.35 max.
P......... 0.015 max.
S........ 0.015 max.
B........ 0.006 max.
Cu........0.30 max.

PHYSICAL CONSTANTS AND THERMAL PROPERTIES
Density, Ib/in3..........................................................................0.296
g/cm3......................................................................... 8.19
Melting Point, °F......................................................2300 – 2437
°C......................................................1260 – 1336
Specific Heat, Btu/lb •°F.....................................................0.104
J/kg •°C........................................................... 435
Curie Temperature, °F........................................................... -170
°C.......................................................... -112
Permeability at 200 Oersted (15.9 kA/m).................. 1.0011
Coefficient of Expansion, 70 – 200°F, 10-6 in/in •°F........ 7.2
21 – 93°C, μm/m •°C............. 13.0
Thermal Conductivity, Btu • in/ft2•h•°F...............................79
W/m•°C........................................... 11.4
Electrical Resistivity, ohm • circmil/ft.............................. 751
μΩ•m.................................................1.25
TYPICAL MECHANICAL PROPERTIES
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