Nakamura Stainless, located in Pulau Ujong, Singapore, is a top manufacturer and supplier of high-quality stainless steel products, including stainless steel 310 flanges. These flanges are designed for high-temperature and corrosive environments. They offer excellent resistance to oxidation, scaling, and thermal fatigue. Stainless steel 310, with its high chromium and nickel content, provides great strength and durability under extreme heat conditions. Nakamura Stainless ensures precise manufacturing and strict quality control, making 310 flanges a great choice for industries like petrochemical, power generation, furnace manufacturing, and heat treatment systems.
Stainless steel 310 flanges contain 24–26% chromium and 19–22% nickel, giving them excellent resistance to high-temperature oxidation and corrosion. They typically have tensile strength between 520 and 750 megapascals and maintain their mechanical integrity at temperatures up to 1100°C. The alloy’s composition ensures durability and stability during long exposure to heat and harsh environments.
| Standard | ASTM A182 / ASME SA182 |
| Dimensions | ANSI/ASME B16.5, B 16.47 A & B, B16.48, BS4504, BS 10, EN-1092, DIN |
| Standard | ANSI Flanges, ASME Flanges, BS Flanges, DIN Flanges, EN Flanges |
| Size | 1/2″ (15 NB) to 48″ (1200NB) |
| Class/Pressure | 150#, 300#, 600#, 900#, 1500#, 2500#, PN6, PN10, PN16, PN25, PN40, PN64 |
| Flange Face Type | Flate Face (FF), Raised Face (RF), Ring Type Joint (RTJ) |
| Grade | Density | Tensile Strength | Yield Strength (0.2%Offset) | Elongation |
| 310 | 7.9 g/cm3 | Psi – 75000 , MPa – 515 | Psi – 30000 , MPa – 205 | 40 % |
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We provides Stainless Steel 310 Flanges- Nakamura Stainless,which has undergone intense testing to produce top quality and performance. The flange is thoroughly tested for meeting international standards and specifications. Products supplied by us are certified by recognized authorities for traceability and reliability in each batch. With modern technology and strict quality control, we ensure durability, corrosion resistance, and good mechanical properties. Nakamura Stainless stands by the delivery of flanges with the highest level of industry standards in functionality and safety.
SS 310 slip-on flanges are stainless steel fittings designed for easy attachment to pipes. They offer excellent resistance to high temperatures and corrosion, making them ideal for demanding industrial applications.
SS 310 weld neck flanges are high-performance stainless steel components used for welding onto pipes. They provide strong, durable connections with excellent resistance to extreme temperatures and harsh environments.
SS 310 blind flanges are stainless steel plates used to seal the end of a pipeline. They offer robust resistance to high temperatures and corrosion, ensuring secure, long-lasting closures in harsh conditions.
SS 310 socket weld flanges are stainless steel components designed for secure, high-strength connections in piping systems. They provide excellent resistance to high temperatures and corrosive environments, ensuring durability and reliability.
SS 310 ring-type joint flanges are stainless steel fittings featuring a precision-machined groove for high-pressure sealing. They provide exceptional resistance to high temperatures and corrosive environments, ensuring reliable, leak-proof connections.
SS 310 forged flanges are robust stainless steel components manufactured through forging for enhanced strength and durability. They offer excellent resistance to high temperatures and corrosive environments, ensuring reliable performance in demanding applications.
Stainless steel 310 flanges are commonly used in applications that need secure, heat-resistant connections. You can find them in piping systems for boilers, heat exchangers, furnace assemblies, chemical processing units, and exhaust systems. Their ability to withstand thermal cycling, scaling, and corrosive conditions ensures long-lasting performance and reliable sealing in crucial industrial operations. These flanges are a preferred choice for maintaining system integrity in high-temperature environments.







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