Austenitic stainless steel

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Austenitic stainless steel

Austenitic stainless steel is one of the five classes of stainless steel by crystalline structure. Its primary crystalline structure is austenite (face-centered cubic) and it prevents steels from being hardenable by heat treatment and makes them essentially non-magnetic.

Standard: ASTM, DIN, EN, GB, JIS

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This is a picture of ASTM 31805 Stainless Steel Bar SUS31805 EN1.4462
ASTM 31805 Stainless Steel Bar SUS31805 EN1.4462

31805 stainless steel bar, also known as UNS S31805 or Duplex 2205, is a duplex stainless steel that offers an outstanding balance of strength, corrosion resistance, and durability. This alloy features a unique microstructure consisting of roughly equal parts austenite and ferrite, which provides it with twice the yield strength of conventional austenitic stainless steels like 304 and 316. 

This is a picture of ASTM 347H Stainless Steel Bar SUS347H EN1.4961
ASTM 347H Stainless Steel Bar SUS347H EN1.4961

347H stainless steel bar is a high-performance austenitic stainless steel alloy that is specifically engineered for high-temperature applications. The "H" designation indicates a higher carbon content, which enhances the alloy's strength and creep resistance at elevated temperatures. Additionally, the alloying element niobium (columbium) stabilizes the material, preventing the formation of chromium carbides that can cause intergranular corrosion. 

This is a picture of ASTM 310S Stainless Steel Bar SUS310S EN1.4845
ASTM 310S Stainless Steel Bar SUS310S EN1.4845

310S stainless steel bar is a high-performance austenitic stainless steel that is specifically designed to excel in extreme temperatures and highly corrosive environments. With its high chromium and nickel content, 310S offers exceptional resistance to oxidation, sulfidation, and other forms of corrosion that can occur at elevated temperatures. 

This is a picture of ASTM 309S Stainless Steel Bar SUS309S EN1.4833
ASTM 309S Stainless Steel Bar SUS309S EN1.4833

309S stainless steel bar is a high-performance austenitic stainless steel designed for use in environments that demand excellent resistance to heat and oxidation. As a variant of the standard 309 stainless steel, 309S features a lower carbon content, which enhances its weldability and reduces the risk of carbide precipitation during welding. 

This is a picture of ASTM 316L Stainless Steel Bar SUS316L EN1.4404
ASTM 316L Stainless Steel Bar SUS316L EN1.4404

316L stainless steel bar is a premium-grade material known for its exceptional corrosion resistance, high strength, and outstanding durability. As a low-carbon variant of 316 stainless steel, 316L offers enhanced weldability and greater resistance to intergranular corrosion, making it an ideal choice for applications in demanding environments. 

This is a picture of ASTM 321 Stainless Steel Bar SUS321 EN1.4541
ASTM 321 Stainless Steel Bar SUS321 EN1.4541

321 stainless steel bar is a high-performance material specifically designed for applications that require superior resistance to high temperatures and intergranular corrosion. As part of the austenitic stainless steel family, 321 stainless steel contains titanium, which enhances its stability and resistance to carbide precipitation, especially during welding or exposure to high temperatures.

This is a picture of ASTM 304 Stainless Steel Bar SUS304 EN1.4301
ASTM 304 Stainless Steel Bar SUS304 EN1.4301

304 stainless steel bar is one of the most popular and versatile stainless steel products available, known for its excellent combination of strength, corrosion resistance, and ease of fabrication. As an austenitic stainless steel, 304 is made from a blend of chromium and nickel, which gives it its outstanding resistance to rust and corrosion in a wide variety of environments. 

This is a picture of ASTM 303 Stainless Steel Bar SUS303 EN1.4305
ASTM 303 Stainless Steel Bar SUS303 EN1.4305

303 stainless steel bar is a free-machining austenitic stainless steel that is specifically designed to offer superior machinability while maintaining good corrosion resistance and strength. As part of the 300 series stainless steels, 303 is widely known for its excellent ease of fabrication, making it the preferred choice for manufacturing components that require extensive machining operations. 

This is a picture of ASTM 301 Stainless Steel Bar SUS301 EN1.4310
ASTM 301 Stainless Steel Bar SUS301 EN1.4310
301 stainless steel bar is a highly versatile and durable material that offers excellent mechanical properties, making it ideal for a wide range of applications. As part of the austenitic stainless steel family, 301 stainless steel is known for its high strength, corrosion resistance, and exceptional formability.
This is a picture of ASTM 201 Stainless Steel Bar SUS201 EN1.4372
ASTM 201 Stainless Steel Bar SUS201 EN1.4372

201 stainless steel bar is a versatile and cost-effective material that combines excellent mechanical properties with good corrosion resistance. As part of the austenitic stainless steel family, 201 stainless steel is characterized by its high manganese content, which allows it to maintain strength and durability while reducing the amount of nickel.

This is a picture of ASTM 31805 Stainless Steel Coil SUS31805 EN1.4462
ASTM 31805 Stainless Steel Coil SUS31805 EN1.4462

31805 stainless steel coil, also known as UNS S31805, is a duplex stainless steel grade that offers an exceptional combination of strength, corrosion resistance, and durability. It is particularly well-suited for applications that require superior resistance to stress corrosion cracking, pitting, and crevice corrosion, especially in environments with high chloride content. 

This is a picture of ASTM 347H Stainless Steel Coil SUS347H EN1.4961
ASTM 347H Stainless Steel Coil SUS347H EN1.4961

347H stainless steel coil is a high-performance austenitic stainless steel that is specially designed for high-temperature applications. This alloy is a variant of 347 stainless steel but with a higher carbon content, enhancing its creep resistance and strength at elevated temperatures. The addition of columbium (niobium) stabilizes the alloy, preventing the formation of chromium carbides and ensuring long-term performance in high-stress environments. 

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