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Ss Weld Neck Flange

Our range of products include stainless steel 904l weld neck flanges, invar 36 weld neck flange, duplex steel uns s32760 weld neck flanges, sus 304 socket weld flanges, nimonic 80a strip and nimonic 90 round bar.
Stainless Steel 904L Weld Neck Flanges
  • Stainless Steel 904L Weld Neck Flanges
  • Stainless Steel 904L Weld Neck Flanges
  • Stainless Steel 904L Weld Neck Flanges
  • Stainless Steel 904L Weld Neck Flanges
  • Stainless Steel 904L Weld Neck Flanges

Stainless Steel 904L Weld Neck Flanges

Product Price: Rs 37 / PieceGet Best Price

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GradeStainless Steel 904L Weld Neck Flanges
EMAILPRASHAANTSTEEL@GMAIL.COM
DIMENSIONSTANDARD AND CUSTOMISED
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CONTACT+91-9167418473
Stainless Steel 904L Weld Neck Flanges: A Comprehensive Guide with International Standards and Equivalent Grades

Introduction:
Stainless Steel 904L weld neck flanges are critical components in various industries due to their corrosion resistance and high performance. This article will delve into the specifications, international standards, equivalent grades, and key features of Stainless Steel 904L weld neck flanges.

Specifications:
Stainless Steel 904L is a high-alloy austenitic stainless steel designed for use in corrosive environments. The weld neck flanges made from this material offer exceptional resistance to corrosion, particularly in harsh chemical and acidic conditions. These flanges are characterized by their durability, strength, and stability, making them ideal for demanding applications.

International Standards:
Stainless Steel 904L weld neck flanges adhere to several international standards to ensure product quality and compatibility. The most commonly referenced standards include ASTM A182/A182M, ASME B16.5, and ASME B16.47. These standards specify the dimensions, tolerances, materials, and testing criteria for Stainless Steel 904L weld neck flanges, ensuring they meet global industry requirements.

Equivalent Grades:
Understanding equivalent grades is crucial for global trade and ensures that Stainless Steel 904L weld neck flanges can seamlessly replace materials in different regions. Some equivalent grades include DIN 1.4539, UNS N08904, and X1NiCrMoCu25-20-5. Recognizing these equivalents allows for easy cross-referencing and enhances the global applicability of the flanges.

Key Features:
Corrosion Resistance: Stainless Steel 904L weld neck flanges exhibit exceptional resistance to corrosion, making them suitable for applications in aggressive chemical environments, such as the petrochemical and pharmaceutical industries.

High Temperature Resistance: These flanges maintain their structural integrity at elevated temperatures, providing reliability in applications where heat resistance is crucial.

Weldability: Stainless Steel 904L is easily weldable, allowing for efficient fabrication and construction. Weld neck flanges ensure a secure and robust connection, minimizing the risk of leakage.

Durability and Longevity: The high-alloy composition of Stainless Steel 904L contributes to the flanges' durability, longevity, and low maintenance requirements, reducing overall operational costs.

Versatility: Stainless Steel 904L weld neck flanges find applications in a wide range of industries, including oil and gas, chemical processing, and water treatment, showcasing their versatility.

Keywords for SEO:
Stainless Steel 904L
Weld Neck Flanges
International Standards
Equivalent Grades
ASTM A182
ASME B16.5
ASME B16.47
Corrosion Resistance
High Temperature Resistance
Weldability
Durability
Longevity
Versatility
UNS N08904
DIN 1.4539

Conclusion:
Stainless Steel 904L weld neck flanges are integral components in industries requiring corrosion resistance, high temperature resistance, and durability. Adhering to international standards and recognizing equivalent grades ensures the seamless integration of these flanges globally. With their exceptional features and versatility, Stainless Steel 904L weld neck flanges continue to play a vital role in various critical applications.
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Invar 36 Weld Neck Flange
  • Invar 36 Weld Neck Flange
  • Invar 36 Weld Neck Flange
  • Invar 36 Weld Neck Flange

Invar 36 Weld Neck Flange

Product Price: Rs 4,600 / PieceGet Best Price

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GradeInvar 36 Weldneck Flange
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DIMENSIONSTANDARD AND CUSTOMISED
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All You Need to Know About Invar 36 Weld Neck Flange: International Standards and Equivalent Grades

Invar 36 weld neck flanges are essential components in various industries due to their unique properties and wide range of applications. In this article, we will delve into the specifics of Invar 36 weld neck flanges, highlighting their international standards, equivalent grades, and key features.

Introduction to Invar 36 Weld Neck Flange:
Invar 36, also known as Alloy 36, is a low coefficient of thermal expansion (CTE) nickel-iron alloy renowned for its exceptional dimensional stability at temperatures ranging from cryogenic to elevated levels. This unique characteristic makes it ideal for applications where thermal expansion needs to be minimized, such as in aerospace, electronics, and precision instrumentation.

Key Features of Invar 36 Weld Neck Flanges:
Low Thermal Expansion: Invar 36 weld neck flanges exhibit minimal thermal expansion over a wide temperature range, ensuring dimensional stability in extreme conditions.High Strength: Despite its low CTE, Invar 36 maintains excellent mechanical strength and toughness, making it suitable for demanding industrial environments.
Corrosion Resistance: These flanges offer good resistance to corrosion, enhancing their longevity and reliability in harsh operating environments.
Weldability: Invar 36 weld neck flanges are easily weldable using conventional methods, allowing for seamless integration into various systems and structures.

International Standards for Invar 36 Weld Neck Flanges:
Invar 36 weld neck flanges conform to several international standards to ensure quality, compatibility, and interchangeability across different applications. Some of the prominent standards include:
ASTM F1684: Standard Specification for Iron-Nickel and Iron-Nickel-Cobalt Alloys for Low Thermal Expansion Applications
ASTM B564: Standard Specification for Nickel Alloy Forgings
DIN 17752: Nickel Alloys

Equivalent Grades of Invar 36:
Invar 36 is often compared to other nickel-iron alloys with similar properties. Some equivalent grades include:
Nilo® 36: A registered trademark of Special Metals Corporation, Nilo® 36 is essentially the same alloy as Invar 36, offering comparable performance characteristics.
Pernifer® 36: Another trade name for Invar 36, Pernifer® 36 is widely used in European markets for its exceptional dimensional stability.
UNS K93600: This unified numbering system designation is assigned to Invar 36 by ASTM International, providing a standardized reference for the alloy worldwide.

Keywords:
Invar 36 weld neck flange
Invar 36 properties
Invar 36 applications
International standards for Invar 36
Equivalent grades of Invar 36
ASTM F1684
ASTM B564
DIN 17752
Nilo® 36
Pernifer® 36
UNS K93600

In conclusion, Invar 36 weld neck flanges offer exceptional thermal stability, mechanical strength, and corrosion resistance, making them indispensable components in various industrial sectors. By adhering to international standards and understanding equivalent grades, manufacturers and end-users can ensure optimal performance and compatibility in their applications.
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DUPLEX STEEL UNS S32760 WELD NECK FLANGES
  • DUPLEX STEEL UNS S32760 WELD NECK FLANGES
  • DUPLEX STEEL UNS S32760 WELD NECK FLANGES
  • DUPLEX STEEL UNS S32760 WELD NECK FLANGES
  • DUPLEX STEEL UNS S32760 WELD NECK FLANGES

DUPLEX STEEL UNS S32760 WELD NECK FLANGES

Product Price: Rs 3,700 / PieceGet Best Price

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QUALITYDUPLEX STEEL UNS S32760 WELD NECK FLANGES
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DUPLEX STEEL UNS S32760 WELD NECK FLANGES MANUFACTURERS

Unlocking the Potential of Duplex Steel UNS S32760 Weld Neck Flanges: A Comprehensive Guide
Introduction:
In the dynamic landscape of industrial applications, the demand for robust and corrosion-resistant materials is ever-growing. Duplex stainless steels have emerged as a preferred choice, and among them, UNS S32760 stands out for its exceptional properties. As manufacturers specializing in this alloy, we delve into the intricacies of Duplex Steel UNS S32760 Weld Neck Flanges, exploring equivalent grades and adhering to ASTM standards.
I. Understanding Duplex Steel UNS S32760:
Duplex stainless steels are characterized by a two-phase microstructure, combining the benefits of both austenitic and ferritic stainless steels. UNS S32760, also known as Super Duplex, is renowned for its high corrosion resistance, strength, and durability. These properties make it ideal for applications in aggressive environments such as chemical processing, oil and gas, and marine engineering.
II. Equivalent Grades of Duplex Steel UNS S32760:
ASTM A182 F55: This is a widely recognized equivalent grade to UNS S32760. It conforms to the ASTM A182 standard and exhibits comparable mechanical and corrosion-resistant properties.
EN 1.4501: In accordance with European standards, EN 1.4501 is an equivalent grade known for its strength and corrosion resistance, making it suitable for various industrial applications.
Zeron 100: With similar composition and characteristics, Zeron 100 is often considered interchangeable with UNS S32760. It is commonly used in aggressive chemical and corrosive environments.
III. ASTM Standards for Duplex Steel UNS S32760 Weld Neck Flanges:
ASTM A182/A182M: This standard covers forged or rolled alloy and stainless steel pipe flanges, forged fittings, and valves and parts for high-temperature service. For UNS S32760 Weld Neck Flanges, ASTM A182/A182M outlines the chemical composition, mechanical properties, and heat treatment requirements.
ASTM A815/A815M: Focusing on duplex and super duplex steel fittings, ASTM A815/A815M provides specifications for UNS S32760 Weld Neck Flanges, ensuring they meet the required dimensional and mechanical properties.
ASTM A240/A240M: Addressing chromium and chromium-nickel stainless steel plate, sheet, and strip for pressure vessels and for general applications, ASTM A240/A240M sets the standards for the raw materials used in manufacturing UNS S32760 Weld Neck Flanges.
IV. Advantages of Duplex Steel UNS S32760 Weld Neck Flanges:
Corrosion Resistance: Resistant to a wide range of corrosive environments, making it suitable for chemical processing and offshore applications.
High Strength: Superior mechanical properties, providing high tensile and yield strength.
Durability: Long-lasting performance, reducing the frequency of maintenance and replacements.
Weldability: Good weldability with proper precautions, allowing for flexibility in fabrication.
Conclusion:
As manufacturers committed to quality and precision, we take pride in producing Duplex Steel UNS S32760 Weld Neck Flanges that not only meet but exceed industry standards. With a focus on equivalent grades and adherence to ASTM standards, our products ensure reliability and longevity in diverse industrial applications. Invest in the strength and corrosion resistance of UNS S32760 for a robust and enduring solution in your projects.
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SUS 304 Socket Weld Flanges
  • SUS 304 Socket Weld Flanges
  • SUS 304 Socket Weld Flanges
  • SUS 304 Socket Weld Flanges
  • SUS 304 Socket Weld Flanges

SUS 304 Socket Weld Flanges

Product Price: Rs 2,400 / PieceGet Best Price

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GRADESUS 304 Socket Weld Flanges
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
Exploring SUS 304 Socket Weld Flanges: International Standards, Equivalent Grades, and Key Considerations

Introduction:
SUS 304 socket weld flanges play a crucial role in piping systems across various industries, offering robust connections and reliable performance. Understanding the international standards, equivalent grades, and key considerations associated with these flanges is essential for ensuring seamless integration into diverse applications.

International Standards:
SUS 304 socket weld flanges adhere to several international standards, ensuring compatibility and quality assurance. Among the prominent standards are:
ASTM International (American Society for Testing and Materials): ASTM A182/A182M specifies forged or rolled alloy and stainless steel pipe flanges, forged fittings, and valves and parts for high-temperature service.
ASME (American Society of Mechanical Engineers): ASME B16.5 covers dimensions and tolerances for pipe flanges in sizes NPS 1/2 through NPS 24, including material specifications such as SUS 304.
DIN (Deutsches Institut für Normung): DIN 2633 and DIN 2635 provide specifications for socket weld flanges, including dimensions, materials, and pressure ratings, ensuring compliance with German standards.
JIS (Japanese Industrial Standards): JIS B2220 outlines dimensions and pressure ratings for steel pipe flanges, including SUS 304 socket weld flanges, conforming to Japanese industry standards.

Equivalent Grades:
Equivalent grades offer compatibility across international markets, facilitating seamless integration and interchangeability. Some equivalent grades to SUS 304 include:
AISI/SAE designation: 304 stainless steel corresponds to AISI/SAE designation 304 and is widely recognized in North America.
EN (European Norm) designation: X5CrNi18-10 is the EN designation for SUS 304, aligning with European standards.
GB (Chinese National Standard) designation: 06Cr19Ni10 is the GB designation for SUS 304, ensuring compatibility with Chinese industry requirements.

Key Considerations:
When selecting SUS 304 socket weld flanges for specific applications, several key considerations come into play:
Corrosion Resistance: SUS 304 offers excellent resistance to corrosion, making it suitable for applications in chemical, food processing, and marine industries where exposure to corrosive environments is common.
Temperature Stability: With its high chromium and nickel content, SUS 304 exhibits good temperature stability, maintaining mechanical properties even at elevated temperatures, making it ideal for high-temperature applications.
Weldability: SUS 304 socket weld flanges are readily weldable, allowing for easy fabrication and installation, enhancing efficiency and reducing assembly time.
Pressure Ratings: Understanding the pressure ratings specified by international standards is crucial for ensuring the flanges can withstand the operating conditions within a given system, preventing leaks and ensuring safety.
Compatibility: Confirming compatibility with other components within the piping system, such as pipes, valves, and fittings, is essential for seamless integration and optimal performance.

Conclusion:
SUS 304 socket weld flanges offer a combination of durability, corrosion resistance, and versatility, making them indispensable components in various industrial applications. By adhering to international standards, understanding equivalent grades, and considering key factors such as corrosion resistance and pressure ratings, stakeholders can confidently select and integrate SUS 304 flanges into their piping systems, ensuring reliable performance and longevity.
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NIMONIC 80A STRIP
  • NIMONIC 80A STRIP
  • NIMONIC 80A STRIP
  • NIMONIC 80A STRIP

NIMONIC 80A STRIP

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DimensionSTANDARD AND CUSTOMISED
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CONTACT+91-9167418473
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GRADENIMONIC 80A STRIP
A nickel-chromium alloy similar to NIMONIC alloy 75 but made precipitation hardenable by additions of aluminum and titanium. The alloy has good corrosion and oxidation resistance and high tensile and creep-rupture properties at temperatures to 1500°F (815°C). Used for gas-turbine components (blades, rings and discs), bolts, tube supports in nuclear steam generators, die-casting inserts and cores, and exhaust valves in internal-combustion engines.

STANDARD PRODUCT FORMS
Sheet, round bar, flat bar, forging stock, hexagon, wire,extruded section and plate.

MAJOR SPECIFICATIONS
UNS N07080
BS 3076 (NA20), HR1,
HR201, HR401, HR601
ASTM B 637
AIR 9165-37
DIN 17742
Werkstoff Nr. 2.4952, 2.4631
AECMA Pr EN 2188 – 2191,
2396, 2397

LIMITING CHEMICAL COMPOSITION, %
Ni........Remainder
Cr.......18.0 – 21.0
Ti............1.8 – 2.7
Al............1.0 – 1.8
C...........0.10 max.
Si............ 1.0 max.
Cu.......... 0.2 max.
Fe........... 3.0 max.
Mn.......... 1.0 max.
Co........... 2.0 max.
B........ 0.008 max.
Zr..........0.15 max.
S........ 0.015 max.

PHYSICAL CONSTANTS AND THERMAL PROPERTIES
Density,Ib/in3.........................................................................0.296
g/cm3.........................................................................8.19
Melting Range,°F...................................................2410 –2490
°C...................................................1320– 1365
Specific Heat,Btu/lb•°F.....................................................0.107
J/kg•°C............................................................448
Permeability at 200 Oersted (15.9kA/m).................. 1.0006
Coefficient of Expansion, 68 – 212°F, 10-6in/in •°F........ 7.1
20 – 100°C, μm/m • °C.......... 12.7
Thermal Conductivity, Btu •in/ft2•h•°F............................77.7
W/m • °C.......................................... 11.2
Electrical Resistivity, ohm •circmil/ft................................ 746
μΩ•m.................................................1.24
TYPICAL MECHANICAL PROPERTIES
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Nimonic 90 Round Bar
  • Nimonic 90 Round Bar
  • Nimonic 90 Round Bar
  • Nimonic 90 Round Bar

Nimonic 90 Round Bar

Product Price: Rs 4,000 / KgGet Best Price

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DimensionSTANDARD AND CUSTOMISED
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CONTACT+91-9167418473
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GRADENimonic 90 Round Bar
A precipitation-hardenable nickel-chromiumcobalt alloy having high stress-rupture strength and creep resistance at temperatures to about 1700°F (920°C). The alloy also has good resistance to high-temperature corrosion and oxidation. Used for blades and discs in gas turbines, hot-working tools and springs.

STANDARD PRODUCT FORMS
Sheet, strip, plate, round bar, flat bar, forging stock, wire and extruded section.

MAJOR SPECIFICATIONS
UNS N07090, BS HR2, HR202, HR402,,HR501 – HR503, Werkstoff Nr. 2.4632
AECMA Pr EN 2295 – 2299, 2400, 2401,2669, 2670

LIMITING CHEMICAL COMPOSITION, %
Limiting
Ni .......Remainder
Cr ......18.0 – 21.0
Co .....15.0 – 21.0
Ti ...........2.0 – 3.0
Al ...........1.0 – 2.0
C ..........0.13 max.
Si ...........1.0 max.
Cu..........0.2 max.
Fe ..........1.5 max.
Mn .........1.0 max.
B ..........0.02 max.
S .......0.015 max.
Zr .........0.15 max.

PHYSICAL CONSTANTS AND THERMALPROPERTIES
Density, Ib/in3........................................................................0.296
g/cm3.........................................................................8.18
Melting Range, °F...................................................2390 –2500
°C ...................................................1310– 1370
Specific Heat, Btu/lb • °F....................................................0.107
J/kg • °C...........................................................446
Permeability at 200 Oersted (15.9 kA/m).................1.0706
Coefficient of Expansion, 68 – 212°F, 10-6in/in • °F........7.1
20 – 100°C, µm/m • °C .........12.7
Thermal Conductivity, Btu • in/ft2 • h • °F..........................79.7
W/m • °C..........................................11.5
Electrical Resistivity, ohm • circ mil/ft...............................710
µ Ω• m................................................1.18
TYPICAL MECHANICAL PROPERTIES
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Nimonic 105 Strip
  • Nimonic 105 Strip
  • Nimonic 105 Strip
  • Nimonic 105 Strip

Nimonic 105 Strip

Product Price: Rs 4,000 / KgGet Best Price

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DimensionSTANDARD AND CUSTOMISED
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
GRADENIMONIC 105 STRIP
DELIVERYALL OVER INDIA AND EXPORT
A precipitation-hardenable nickel-cobaltchromium alloy with an addition of molybdenum for solid-solution strengthening. The relatively high aluminum content enhances both strength (through greater precipitation hardening) and oxidation resistance. The alloy has high creep-rupture properties at temperatures to about 1740°F (950°C). Used in gas turbines for blades, discs and shafts.

STANDARD PRODUCT FORMS
Round and extruded section.

MAJOR SPECIFICATIONS
BS HR3, Werkstoff Nr. 2.4634, AECMA Pr EN2179 – 2181

LIMITING CHEMICAL COMPOSITION, %
Ni .......Remainder
Co .....18.0 – 22.0
Cr ......14.0 – 15.7
Mo .........4.5 – 5.5
Ti ...........0.9 – 1.5
Al ...........4.5 – 4.9
C ..........0.12 max.
Si ...........1.0 max.
Cu..........0.2 max.
Fe ..........1.0 max.
Mn .........1.0 max.
S .......0.010 max.
B ...0.003 – 0.010
Zr .........0.15 max.

PHYSICAL CONSTANTS AND THERMAL PROPERTIES
Density, Ib/in3........................................................................0.289
g/cm3.........................................................................8.01
Melting Range, °F...................................................2350 –2450
°C ...................................................1290– 1345
Specific Heat, Btu/lb • °F....................................................0.100
J/kg • °C...........................................................419
Permeability at 200 Oersted (15.9 kA/m).................1.0007
Coefficient of Expansion, 68 – 212°F, 10-6in/in • °F........6.8
20 – 100°C, µm/m • °C .........12.2
Thermal Conductivity, Btu • in/ft2 • h • °F........................75.51
W/m • °C ........................................10.89
Electrical Resistivity, ohm • circ mil/ft...............................788
µ Ω• m................................................1.31
TYPICAL MECHANICAL PROPERTIES
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Nimonic 115 Strip
  • Nimonic 115 Strip
  • Nimonic 115 Strip
  • Nimonic 115 Strip

Nimonic 115 Strip

Product Price: Rs 4,000 / KgGet Best Price

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DimensionSTANDARD AND CUSTOMISED
GRADENIMONIC 115 STRIP
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
A precipitation-hardenable nickel-chromiumcobalt alloy with an addition of molybdenum for solid-solution strengthening. It is similar to NIMONIC alloy 105 but has higher levels of aluminum and titanium for increased strengthening by precipitation hardening. The alloy has high strength and creep resistance at temperatures to about 1850°F (1010°C). Used for turbine blades in aircraft gas turbines.

STANDARD PRODUCT FORMS
Round and extruded section.

MAJOR SPECIFICATIONS
BS HR4, Werkstoff Nr. 2.4636, AECMA Pr EN2196, 2197

LIMITING CHEMICAL COMPOSITION, %
Ni .......Remainder
Cr ......14.0 – 16.0
Co .....13.0 – 15.5
Mo .........3.0 – 5.0
Ti ...........3.5 – 4.5
Al ...........4.5 – 5.5
C .........0.12 – 0.2
Si ...........1.0 max.
Cu..........0.2 max.
Fe ..........1.0 max.
Mn .........1.0 max.
S .......0.015 max.
B ....0.01 – 0.025
Zr .........0.15 max.

PHYSICAL CONSTANTS AND THERMAL PROPERTIES
Density, Ib/in3........................................................................0.284
g/cm3..........................................................................7.85
Melting Range, °F...................................................2300 –2400
°C ...................................................1260– 1315
Specific Heat, Btu/lb • °F....................................................0.106
J/kg • °C...........................................................444
Coefficient of Expansion, 68 – 212°F, 10-6in/in • °F........6.7
20 – 100°C, µm/m • °C .........12.0
Thermal Conductivity, Btu • in/ft2 • h • °F..........................73.5
W/m • °C..........................................10.6Electrical Resistivity, ohm • circ mil/ft...............................836
µ Ω• m................................................1.39
TYPICAL MECHANICAL PROPERTIES
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Monel 400 Socket Weld Flange
  • Monel 400 Socket Weld Flange
  • Monel 400 Socket Weld Flange
  • Monel 400 Socket Weld Flange

Monel 400 Socket Weld Flange

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Product Details:
GRADEMonel 400 Socket Weld Flange
EMAILPRASHAANTSTEEL@GMAIL.COM
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
Understanding Monel 400 Socket Weld Flange: International Standards and Equivalent Grades

Monel 400 socket weld flanges are integral components in various industries, known for their exceptional corrosion resistance and durability. These flanges, made from a nickel-copper alloy, are widely utilized in applications demanding robust performance in harsh environments. Understanding the international standards and equivalent grades of Monel 400 socket weld flanges is crucial for ensuring compatibility and compliance in diverse engineering projects.

Key Features of Monel 400 Socket Weld Flange:
Monel 400 socket weld flanges exhibit outstanding properties that make them preferred in numerous industrial settings:
Corrosion Resistance: Monel 400 demonstrates remarkable resistance to corrosion, particularly in acidic and alkaline environments, making it suitable for marine and chemical processing applications.
High Strength: Despite its corrosion resistance, Monel 400 maintains considerable strength and toughness, ensuring reliability under demanding conditions.
Thermal Stability: These flanges retain their mechanical properties across a wide range of temperatures, enhancing their suitability for both high and low-temperature applications.
Easy Fabrication: Monel 400 is readily weldable and machinable, allowing for easy fabrication into various shapes and sizes to meet specific project requirements.

International Standards for Monel 400 Socket Weld Flanges:
Monel 400 socket weld flanges adhere to several international standards to ensure quality and interoperability. Some of the prominent standards include:
ASTM B564: This standard specifies the requirements for forged fittings, including socket weld flanges, made from nickel alloy materials such as Monel 400.
ASME/ANSI B16.5: ASME/ANSI B16.5 outlines the dimensions, tolerances, and material requirements for pipe flanges and flanged fittings, including Monel 400 socket weld flanges.
EN 1092: The EN 1092 standard covers flanges and their joint connections, providing specifications for materials, dimensions, and testing requirements applicable to Monel 400 socket weld flanges in European markets.
DIN 2633: DIN 2633 specifies the dimensions and technical conditions of flanges made from nickel alloy materials, including Monel 400, for pressure ratings ranging from PN 10 to PN 100.

Equivalent Grades of Monel 400:
Understanding equivalent grades helps in identifying alternative materials that offer similar properties and performance. Some equivalent grades of Monel 400 include:
UNS N04400: Unified Numbering System (UNS) N04400 is the designation for Monel 400, indicating its composition of approximately 67% nickel and 33% copper, along with small amounts of iron, manganese, and silicon.
ASTM B127: ASTM B127 is the specification for nickel-copper alloy (Monel) plate, sheet, and strip, encompassing Monel 400 among its designated materials.
JIS NW4400: Japanese Industrial Standards (JIS) NW4400 corresponds to Monel 400, meeting the requirements set forth by JIS for nickel-copper alloys.
BS NA13: British Standard (BS) NA13 is the British designation for Monel 400, aligning with its composition and properties as defined by British standards.

In conclusion, Monel 400 socket weld flanges offer unparalleled corrosion resistance, strength, and thermal stability, making them indispensable in various industrial applications. Adhering to international standards and understanding equivalent grades ensures seamless integration and performance in engineering projects worldwide.
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Nimonic 80a Flanges
  • Nimonic 80a Flanges
  • Nimonic 80a Flanges
  • Nimonic 80a Flanges

Nimonic 80a Flanges

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DIMENSIONSSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
CONTACT+91-9167418473
EMAILPRASHAANTSTEEL@GMAIL.COM
GRADENIMONIC 80A FLANGES
Understanding NIMONIC 80A Flanges: International Standards, Equivalent Grades, and Key Considerations

NIMONIC 80A is a high-performance nickel-chromium alloy renowned for its exceptional strength, corrosion resistance, and heat resistance properties. In various industrial applications, NIMONIC 80A flanges play a crucial role, ensuring reliability and longevity in critical environments. Let's delve into the details of NIMONIC 80A flanges, covering international standards, equivalent grades, and key considerations.

International Standards for NIMONIC 80A Flanges:
ASTM Standards:
ASTM B637: This standard specifies the requirements for nickel-chromium-iron alloys (UNS N06600, N06601, N06603, N06690, N06693, N06025, N06045, and N06696), including NIMONIC 80A, in the form of hot or cold finished bars, rods, and wire.
British Standards (BS):
BS 3076: This standard covers the specifications for nickel alloy bars, forgings, and extruded sections like those made from NIMONIC 80A.
European Standards (EN):
EN 10204:2004: This standard specifies the different types of inspection documents for metallic products, including NIMONIC 80A flanges, ensuring traceability and quality control.

Equivalent Grades of NIMONIC 80A:UNS Equivalent:
UNS N07080: This is the UNS designation for NIMONIC 80A, indicating its chemical composition and properties.Other Equivalent Grades:
Haynes 80A
W. Nr. 2.4952
AFNOR NiCr20Ti

Key Considerations for NIMONIC 80A Flanges:
Temperature Resistance:
NIMONIC 80A flanges exhibit excellent resistance to high temperatures, making them suitable for applications in gas turbines, aerospace components, and industrial furnaces.
Corrosion Resistance:
These flanges offer exceptional corrosion resistance in harsh environments, including those with exposure to oxidation, sulfidation, and carburization.
Mechanical Properties:
NIMONIC 80A maintains its mechanical strength at elevated temperatures, ensuring reliability under demanding conditions.
Weldability:
While NIMONIC 80A is generally weldable, precautions must be taken to avoid hot cracking and brittleness, ensuring proper welding procedures are followed.
Machinability:
Machining NIMONIC 80A requires appropriate techniques due to its high strength and work hardening tendencies.

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In conclusion, NIMONIC 80A flanges offer exceptional performance in high-temperature and corrosive environments, meeting stringent industry requirements. Understanding international standards, equivalent grades, and key considerations is essential for ensuring the proper selection and utilization of NIMONIC 80A flanges in various applications.
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Titanium Weld Neck Flanges
  • Titanium Weld Neck Flanges
  • Titanium Weld Neck Flanges
  • Titanium Weld Neck Flanges

Titanium Weld Neck Flanges

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GradeTitanium Weld Neck Flanges
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CONTACT+91-9167418473
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Titanium Weld Neck Flanges: Essential Components Meeting International Standards

In the realm of industrial applications demanding unparalleled strength and corrosion resistance, titanium emerges as a prime choice. Among its myriad applications, titanium weld neck flanges stand out as crucial components in various sectors, from aerospace to chemical processing. These flanges serve as connectors in piping systems, ensuring leak-free and secure connections under extreme conditions.

Understanding Titanium Weld Neck Flanges:
Titanium weld neck flanges are integral parts of piping systems, particularly in environments where corrosion poses a significant threat. These flanges boast exceptional corrosion resistance, making them ideal for industries handling corrosive substances or operating in harsh environments. Their design incorporates a raised neck, which facilitates smooth transition from pipe to flange, reducing stress concentration and enhancing structural integrity.

International Standards for Titanium Weld Neck Flanges:
Adherence to international standards is imperative to ensure the quality, compatibility, and safety of titanium weld neck flanges. 
ASTM B381: This standard outlines the requirements for titanium forgings, including weld neck flanges. It covers aspects such as chemical composition, mechanical properties, dimensions, and tolerances.
ASME B16.5: ASME B16.5 provides specifications for pipe flanges and flanged fittings, including weld neck flanges. It delineates dimensions, tolerances, marking, and materials for flanges used in pressure piping systems.
ISO 9227: ISO 9227 specifies the salt spray test method for assessing the corrosion resistance of metallic materials, including titanium. Compliance with this standard ensures the corrosion resistance of titanium weld neck flanges in various environments.

Equivalent Grades of Titanium:
Equivalent grades serve as reference points for identifying titanium materials with similar properties from different specifications.
Grade 2 (ASTM B381, ASTM B348): Commercially pure titanium offering excellent weldability, corrosion resistance, and formability. It finds widespread use in chemical processing, marine, and aerospace industries.
Grade 5 (ASTM B381, ASTM B348): Also known as Ti-6Al-4V, this alloy combines titanium with aluminum and vanadium, imparting high strength, toughness, and heat resistance. It is favored in aerospace, medical implants, and automotive applications.
Grade 7 (ASTM B381, ASTM B348): A titanium alloy containing palladium, Grade 7 exhibits enhanced corrosion resistance, particularly in reducing environments. It is utilized in chemical processing, desalination, and marine applications.

Key Features and Benefits:
Corrosion Resistance: Titanium weld neck flanges offer unparalleled resistance to corrosion, ensuring longevity and reliability in corrosive environments.
High Strength-to-Weight Ratio: Titanium’s exceptional strength-to-weight ratio enables the fabrication of lightweight yet robust weld neck flanges, reducing installation costs and enhancing structural integrity.
Excellent Weldability: Titanium weld neck flanges can be easily welded using various techniques, facilitating seamless integration into piping systems.
Wide Application Range: From chemical processing plants to offshore platforms, titanium weld neck flanges find applications across diverse industries where corrosion resistance and reliability are paramount.

In conclusion, titanium weld neck flanges emerge as indispensable components in industries requiring superior corrosion resistance and structural integrity. Adhering to international standards and utilizing equivalent grades ensure the quality and performance of these critical components, making them a preferred choice for demanding applications worldwide.
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Hastelloy Socket Welding Flange
  • Hastelloy Socket Welding Flange
  • Hastelloy Socket Welding Flange
  • Hastelloy Socket Welding Flange

Hastelloy Socket Welding Flange

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GRADEHastelloy Socket Welding Flange
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DELIVERYALL OVER INDIA AND EXPORT
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Exploring the Versatility of Hastelloy Socket Welding Flanges: International Standards, Equivalent Grades, and Applications

In the realm of industrial piping systems, Hastelloy alloy has emerged as a frontrunner due to its exceptional resistance to corrosion, high temperature, and various aggressive chemicals. Among the diverse range of Hastelloy products, Hastelloy socket welding flanges stand out for their reliability and adaptability in critical applications across industries.

Understanding Hastelloy Socket Welding Flanges:
Hastelloy socket welding flanges are integral components in piping systems, facilitating easy assembly and disassembly. These flanges feature a socket-like structure that accommodates the pipe end, providing a robust connection through welding. The design ensures enhanced strength and leak-proof joints, making them suitable for high-pressure and high-temperature environments.

International Standards for Hastelloy Socket Welding Flanges:
Adhering to international standards is paramount for ensuring quality and compatibility in industrial operations. Hastelloy socket welding flanges conform to various standards such as:
ASTM B564: This standard covers nickel alloy flanges, including Hastelloy grades, specifying dimensions, tolerances, materials, and marking requirements.
ASME B16.5: Hastelloy socket welding flanges comply with ASME B16.5 standards, which outline dimensions, tolerances, materials, testing, and marking for pipe flanges and flanged fittings.
DIN 2.4602: Also known as Hastelloy C-22, DIN 2.4602 specifies the chemical composition, mechanical properties, and heat treatment requirements for this specific grade of Hastelloy alloy.

Equivalent Grades of Hastelloy Socket Welding Flanges:
Cross-referencing equivalent grades is crucial for global procurement and compatibility. Some common equivalent grades of Hastelloy socket welding flanges include:
UNS N06022: Hastelloy C-22, often used interchangeably with DIN 2.4602, offers superior corrosion resistance in oxidizing and reducing environments.
UNS N10276: Known as Hastelloy C-276, this grade exhibits excellent resistance to pitting, crevice corrosion, and stress corrosion cracking in a wide range of corrosive media.
UNS N06002: Hastelloy B-2, with its resistance to hydrochloric acid at all concentrations and temperatures, is an ideal choice for chemical processing applications.

Applications of Hastelloy Socket Welding Flanges:
The versatility of Hastelloy socket welding flanges finds application across various industries, including:
Chemical Processing: Hastelloy flanges are preferred in chemical processing plants for handling corrosive acids, alkalis, and organic chemicals.
Oil and Gas: In offshore and onshore facilities, Hastelloy socket welding flanges withstand the harsh conditions of oil and gas exploration and production.
Pharmaceuticals: These flanges ensure the integrity of pharmaceutical manufacturing processes by resisting contamination and corrosion from reactive substances.
Power Generation: From nuclear power plants to conventional power generation facilities, Hastelloy flanges contribute to the reliability of piping systems in demanding environments.

Conclusion:
Hastelloy socket welding flanges exemplify excellence in design, performance, and reliability, making them indispensable components in critical industrial applications. By adhering to international standards and offering a range of equivalent grades, Hastelloy flanges provide engineers and procurement professionals with the flexibility and assurance needed for successful project execution. Embracing Hastelloy socket welding flanges ensures the longevity and efficiency of piping systems in the face of corrosive challenges, safeguarding operations across diverse industries.
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Hastelloy Weld Neck Flange
  • Hastelloy Weld Neck Flange
  • Hastelloy Weld Neck Flange
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Hastelloy Weld Neck Flange

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GradeHastelloy Weld Neck Flange
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DELIVERYALL OVER INDIA AND EXPORT
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EMAILPRASHAANTSTEEL@GMAIL.COM
Exploring Hastelloy Weld Neck Flanges: International Standards and Equivalent Grades

In the realm of industrial piping systems, Hastelloy weld neck flanges stand out as crucial components known for their exceptional corrosion resistance and durability. These flanges play a pivotal role in connecting pipes, valves, and other equipment, particularly in environments where resistance to extreme temperatures, chemicals, and corrosive media is paramount.

Introduction to Hastelloy Weld Neck Flanges:
Hastelloy is a trademarked alloy renowned for its outstanding performance in aggressive environments. Hastelloy weld neck flanges, specifically, are designed with a long tapered hub, facilitating smooth transition from pipe to flange and minimizing stress concentration. These flanges are welded to the pipe, ensuring a strong, leak-proof connection suitable for high-pressure applications.

Key Features and Benefits:
Corrosion Resistance: Hastelloy weld neck flanges excel in corrosive environments containing sulfuric acid, hydrochloric acid, phosphoric acid, and other harsh chemicals.
High Temperature Resistance: These flanges maintain their mechanical properties even at elevated temperatures, making them ideal for applications involving heat exchangers, reactors, and furnaces.
Strength and Durability: Hastelloy alloys offer exceptional strength and toughness, ensuring reliable performance in demanding industrial settings.
Versatility: Hastelloy weld neck flanges find applications across various industries including chemical processing, petrochemical, pharmaceutical, and oil and gas.

International Standards for Hastelloy Weld Neck Flanges:
Several international standards govern the manufacturing and specifications of Hastelloy weld neck flanges. Among the most prominent are:
ASTM B564: This standard covers nickel alloy forgings, including Hastelloy, for high-temperature and corrosive environments.
ASME B16.5: ASME B16.5 provides dimensions and tolerances for pipe flanges in various materials, including Hastelloy.
EN 1092: The European standard for flanges, including weld neck flanges, specifies dimensions and pressure ratings for use in
Europe and other regions.

Equivalent Grades of Hastelloy:
Hastelloy alloys come in various grades, each tailored for specific applications and environments. Some common equivalent grades include:
Hastelloy C276 (UNS N10276): Known for its exceptional corrosion resistance in reducing and oxidizing environments.
Hastelloy C22 (UNS N06022): Offers superior resistance to pitting, crevice corrosion, and stress corrosion cracking.
Hastelloy B2 (UNS N10665): Resistant to hydrochloric acid at all concentrations and temperatures.

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In conclusion, Hastelloy weld neck flanges offer a reliable solution for industries requiring corrosion-resistant, high-temperature piping systems. Adhering to stringent international standards and available in various grades, these flanges provide unmatched performance and longevity in challenging environments. Whether in chemical processing, petrochemical, or pharmaceutical applications, choosing Hastelloy weld neck flanges ensures durability and safety in critical operations.
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Stainless Steel 309 Weld Neck Flange
  • Stainless Steel 309 Weld Neck Flange
  • Stainless Steel 309 Weld Neck Flange
  • Stainless Steel 309 Weld Neck Flange

Stainless Steel 309 Weld Neck Flange

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GradeSTAINLESS STEEL 309 WELD NECK FLANGE
CONTACT+91-9167418473
DIMENSIONSTANDARD AND CUSTOMISED
DELIVERYALL OVER INDIA AND EXPORT
EMAILPRASHAANTSTEEL@GMAIL.COM
Stainless Steel 309 Weld Neck Flange: International Standards, Equivalent Grades, and Applications

Stainless Steel 309 weld neck flanges are pivotal components in various industries due to their superior corrosion resistance and high-temperature strength properties. Designed for critical applications where leak-free and reliable connections are essential, these flanges offer exceptional performance in demanding environments. In this article, we delve into the specifics of Stainless Steel 309 weld neck flanges, highlighting their international standards, equivalent grades, and applications.

International Standards:
Stainless Steel 309 weld neck flanges adhere to several international standards to ensure quality, compatibility, and interchangeability across global markets. Some prominent standards include:
ASTM A182/A182M: Standard Specification for Forged or Rolled Alloy and Stainless Steel Pipe Flanges, Forged Fittings, and Valves and Parts for High-Temperature Service. ASTM A182 outlines the chemical and mechanical properties required for Stainless Steel 309 weld neck flanges.
ANSI/ASME B16.5: This standard covers dimensions and tolerances for pipe flanges in nominal sizes from 1/2" to 24". It provides specifications for Stainless Steel 309 weld neck flanges' dimensions, ratings, and facings, ensuring compatibility with various piping systems.
EN 1092: European standard for flanges, specifying requirements for steel flanges in terms of dimensions, tolerances, materials, and testing. Stainless Steel 309 weld neck flanges manufactured in compliance with EN 1092 ensure consistency and reliability in European markets.
JIS B2220: Japanese Industrial Standards for pipe flanges, detailing dimensions, materials, and pressure-temperature ratings. Stainless Steel 309 weld neck flanges meeting JIS B2220 standards are widely used in Japan and other Asian markets.

Equivalent Grades:
Stainless Steel 309 weld neck flanges may have equivalent grades across various international standards, providing flexibility in material selection and sourcing. Some common equivalent grades include:
UNS S30900: This is the Unified Numbering System designation for Stainless Steel 309, indicating its chemical composition and properties.
1.4828: This is the EN numeric designation for Stainless Steel 309, commonly used in European standards.
SUS 309: The Japanese equivalent grade for Stainless Steel 309, conforming to JIS standards.
X15CrNiSi20-12: This is the DIN standard equivalent grade for Stainless Steel 309, widely used in Germany and other European countries.

Applications:
Stainless Steel 309 weld neck flanges find applications in a myriad of industries, including:
Chemical Processing: Used in chemical plants for handling corrosive fluids and high-temperature processes.
Petrochemical Industry: Employed in refineries and petrochemical plants for connecting pipelines and equipment subjected to extreme conditions.
Power Generation: Utilized in power plants for connecting piping systems in boilers, turbines, and heat exchangers.
Oil and Gas: Critical for offshore and onshore oil and gas installations where resistance to harsh environments is paramount.
Food Processing: Suitable for food and beverage processing industries due to their corrosion resistance and hygienic properties.

In conclusion, Stainless Steel 309 weld neck flanges are indispensable components in industries requiring robust and reliable piping connections. Adhering to international standards and available in equivalent grades, these flanges offer versatility, durability, and performance across diverse applications, making them a preferred choice for engineers and industry professionals worldwide.
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Stainless Steel 310 Socket Weld Flange
  • Stainless Steel 310 Socket Weld Flange
  • Stainless Steel 310 Socket Weld Flange
  • Stainless Steel 310 Socket Weld Flange

Stainless Steel 310 Socket Weld Flange

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GRADESTAINLESS STEEL 310 SOCKET WELD FLANGE
DIMENSIONSTANDARD AND CUSTOMISED
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CONTACT+91-9167418473
Exploring the Versatility and Standards of Stainless Steel 310 Socket Weld Flange

In the realm of industrial applications, Stainless Steel 310 emerges as a reliable and versatile material, especially in the form of socket weld flanges. These components play a crucial role in connecting pipes or valves efficiently and securely. In this article, we delve into the intricacies of Stainless Steel 310 socket weld flanges, highlighting their international standards, equivalent grades, and key features.

Understanding Stainless Steel 310:
Stainless Steel 310, a high-chromium nickel alloy, offers remarkable resistance to high temperatures and corrosive environments. Its composition includes 25% chromium and 20% nickel, making it suitable for applications demanding elevated temperature operations. Furthermore, the addition of elements like manganese and silicon enhances its mechanical properties, ensuring durability and longevity.

Features of Stainless Steel 310 Socket Weld Flanges:
High Temperature Resistance: Stainless Steel 310 socket weld flanges exhibit exceptional resistance to high temperatures, making them ideal for applications in heat exchangers, furnaces, and other thermal processing equipment.
Corrosion Resistance: With its chromium content, SS 310 provides excellent resistance to corrosion, oxidation, and sulfidation, ensuring longevity even in harsh environments.
Strength and Durability: The alloy's composition lends it high strength and toughness, making it suitable for demanding industrial applications where reliability is paramount.

International Standards for Stainless Steel 310 Socket Weld Flanges:
When it comes to standardization, Stainless Steel 310 socket weld flanges adhere to various international standards to ensure quality and compatibility across different regions. Some prominent standards include:
ASTM A182: This standard covers forged or rolled alloy and stainless steel pipe flanges, forged fittings, and valves and parts for high-temperature service.
ASME B16.5: ASME B16.5 specifies the dimensions, tolerances, material requirements, and markings for pipe flanges and flanged fittings.
ANSI B16.47: ANSI B16.47 provides guidelines for large diameter steel flanges from NPS 26 through NPS 60.

Equivalent Grades of Stainless Steel 310:
In various regions across the globe, Stainless Steel 310 might be referred to by different designations. Some common equivalent grades include:
UNS S31000: This is the Unified Numbering System designation for Stainless Steel 310.
DIN 1.4841: In the European system, Stainless Steel 310 is often denoted by DIN 1.4841.
JIS SUS310: Japanese Industrial Standards (JIS) use the designation SUS310 for Stainless Steel 310.

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In conclusion, Stainless Steel 310 socket weld flanges stand as indispensable components in various industries, owing to their remarkable properties and adherence to stringent international standards. Understanding their features, standards, and equivalent grades is crucial for ensuring optimal performance and compatibility in diverse applications.
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Stainless Steel A286 Socket Weld Flange
  • Stainless Steel A286 Socket Weld Flange
  • Stainless Steel A286 Socket Weld Flange
  • Stainless Steel A286 Socket Weld Flange

Stainless Steel A286 Socket Weld Flange

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GRADESTAINLESS STEEL A286 SOCKET WELD FLANGE
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The Ultimate Guide to Stainless Steel A286 Socket Weld Flanges: International Standards and Equivalent Grades

Stainless steel A286 socket weld flanges are integral components in various industries, renowned for their exceptional durability, corrosion resistance, and high-temperature stability. In this comprehensive guide, we delve into the intricate details of A286 socket weld flanges, exploring their international standards, equivalent grades, and key features.

Understanding Stainless Steel A286 Socket Weld Flanges
Stainless steel A286 is a precipitation-hardened alloy with a unique combination of properties, making it ideal for demanding applications in aerospace, chemical processing, marine engineering, and more. A286 socket weld flanges are specifically designed for high-pressure piping systems, offering reliable sealing and easy installation.

Key Features of Stainless Steel A286 Socket Weld Flanges
Corrosion Resistance: A286 alloy exhibits excellent resistance to corrosion in various environments, including harsh chemicals and high-temperature steam.
High Temperature Stability: These flanges maintain their mechanical properties even at elevated temperatures, making them suitable for applications involving extreme heat.
Precipitation Hardening: A286 undergoes precipitation hardening, enhancing its strength and durability for long-term performance in challenging conditions.
Machinability: While A286 is relatively difficult to machine compared to some other stainless steels, it can be machined using appropriate techniques and tooling.

International Standards for A286 Socket Weld Flanges
Stainless steel A286 socket weld flanges adhere to several international standards to ensure quality, compatibility, and safety in various industries. Some of the prominent standards include:
ASTM A182/A182M: Standard Specification for Forged or Rolled Alloy and Stainless Steel Pipe Flanges, Forged Fittings, and Valves and Parts for High-Temperature Service. This standard covers A286 socket weld flanges, outlining their dimensions, material requirements, and testing procedures.
ASME B16.5: Pipe Flanges and Flanged Fittings standardize the dimensions, pressure-temperature ratings, materials, and testing requirements for flanges used in piping applications. A286 socket weld flanges manufactured according to ASME B16.5 ensure compatibility and interchangeability with other ASME-compliant components.

Equivalent Grades of Stainless Steel A286
While A286 is a unique alloy, there are equivalent grades that offer similar properties and performance. Some of the equivalent grades include:
UNS S66286: The Unified Numbering System (UNS) designates A286 as UNS S66286, providing a standardized identification for this alloy across different countries and industries.
1.4980: This European grade designation is equivalent to A286 and is commonly used in European standards and specifications.
X6NiCrTiMoVB25-15-2: Another alternative designation for A286, this grade is recognized in some international standards and specifications.

Conclusion
Stainless steel A286 socket weld flanges play a crucial role in high-pressure piping systems across various industries. Understanding their international standards, equivalent grades, and key features is essential for ensuring reliable performance and compatibility in demanding applications. By adhering to recognized standards and selecting the appropriate grade, industries can leverage the exceptional properties of A286 socket weld flanges for enhanced efficiency and durability in their operations.

Keywords:
Stainless steel A286, socket weld flanges, international standards, equivalent grades, ASTM A182, ASME B16.5, UNS S66286, 1.4980, X6NiCrTiMoVB25-15-2, corrosion resistance, high temperature stability.
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Stainless Steel A286 Flanges
  • Stainless Steel A286 Flanges
  • Stainless Steel A286 Flanges
  • Stainless Steel A286 Flanges

Stainless Steel A286 Flanges

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Stainless Steel A286 Flanges: A Comprehensive Guide to International Standards and Equivalent Grades

Stainless steel A286 flanges are essential components in various industrial applications due to their exceptional corrosion resistance, high strength, and temperature resistance properties. These flanges play a crucial role in connecting pipes, valves, and other equipment in industries such as aerospace, automotive, chemical processing, and oil and gas. In this guide, we'll delve into the international standards, equivalent grades, and key features of stainless steel A286 flanges.

International Standards for Stainless Steel A286 Flanges:
ASTM Standards: The American Society for Testing and Materials (ASTM) has established standards for stainless steel A286 flanges, such as ASTM A182 for forged or rolled alloy and stainless steel pipe flanges, forged fittings, and valves and parts for high-temperature service.
ASME Standards: The American Society of Mechanical Engineers (ASME) provides codes and standards for the design, fabrication, and inspection of stainless steel A286 flanges, ensuring their reliability and performance in various industrial applications.
DIN Standards: The Deutsches Institut für Normung (DIN) standards, such as DIN 1.4980, specify the requirements for stainless steel A286 flanges, ensuring their compatibility and interchangeability with equipment manufactured to DIN standards.

Equivalent Grades of Stainless Steel A286 Flanges:
AMS Standards: The Aerospace Materials Specifications (AMS) standards include AMS 5731, AMS 5732, and AMS 5737, which cover the requirements for stainless steel A286 flanges used in aerospace applications, ensuring their compliance with stringent industry standards.
UNS Standards: The Unified Numbering System (UNS) assigns a unique designation to stainless steel alloys, including A286 (UNS S66286), facilitating cross-referencing and identification of equivalent grades across international standards.
EN Standards: The European Norm (EN) standards, such as EN 1.4980, provide specifications for stainless steel A286 flanges, ensuring their conformity with European regulatory requirements and standards.

Key Features of Stainless Steel A286 Flanges:
Corrosion Resistance: Stainless steel A286 flanges exhibit excellent corrosion resistance in various environments, including harsh chemicals and high-temperature conditions, making them suitable for demanding industrial applications.
High Strength: A286 stainless steel offers exceptional strength and durability, allowing flanges to withstand high-pressure and high-stress conditions without deformation or failure, ensuring long-term reliability and performance.
Temperature Resistance: A286 flanges retain their mechanical properties at elevated temperatures, making them suitable for applications requiring exposure to extreme heat or thermal cycling, such as turbine engines and exhaust systems.
Weldability: Stainless steel A286 flanges can be readily welded using conventional welding techniques, enabling ease of fabrication and installation in diverse industrial settings.
Versatility: A286 stainless steel flanges find applications in various industries, including aerospace, automotive, chemical processing, and oil and gas, due to their versatility, reliability, and performance.

In conclusion, stainless steel A286 flanges adhere to stringent international standards and equivalent grades, ensuring their quality, reliability, and compatibility with diverse industrial applications. With their exceptional corrosion resistance, high strength, and temperature resistance properties, A286 flanges play a critical role in connecting piping systems and equipment in demanding environments, making them indispensable components in modern engineering.
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