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309S

Stainless Steel 309S Mandrel Bend Pipe Fittings are a highly corrosion-resistant type of pipe fitting made with austenitic stainless steel that contains roughly 20-30% chromium and up to 34% nickel. In addition to the nickel, these fittings contain small amounts of manganese, silicon, nitrogen and carbon. Combining these elements creates a balance between tensile strength and flexibility in SS 309S Mandrel Bend Pipe Fittings. This makes them ideal for many water piping applications, ranging from residential irrigation systems to oil refinery components.

Stainless Steel Mandrel Bend Pipe Fittings 309S are highly durable and often used in commercial, industrial and residential settings. The pipe fittings are made from robust stainless steel construction and offer high strength with good corrosion resistance. They are suitable for fabrication and piping applications in harsh environments such as petrochemical and marine industries. The 309S alloy offers excellent oxidation, creep and stress rupture properties, making the fittings ideal for pressure vessels, boilers, condensers and piping systems. Furthermore, these pipe fittings are easy to install because of their bendable characteristic that eliminates stress concentration with minimal wall thinning compared to standard pipes. With their distinct advantages when it comes to corrosion resistance and strength at elevated temperatures, Stainless Steel 309S Mandrel Bend Pipe Fittings could be an ideal choice if you're looking for durable and long-lasting pipe fittings.

FAQ's for Stainless Steel 309S Mandrel Bend Pipe Fittings

The density of stainless steel 309S is approximately 7,900 kilograms per cubic meter or 491 pounds per cubic foot.

Stainless steel 309S is generally considered to be non-magnetic. However, some small magnetic response may occur, depending on the specific composition and processing of the material.

Stainless steel 309S is known for its high resistance to corrosion and oxidation, making it a popular choice for applications in harsh or corrosive environments. However, the level of corrosion resistance can vary depending on factors such as the specific composition, surface finish, and the presence of contaminants.

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