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317LN

Stainless Steel 317LN Seamless Pipes offer superior corrosion resistance because of their chemical composition. The pipes are made from nickel, molybdenum, nitrogen, chromium, and silicon. This combination gives the lines extra strength and the ability to withstand extreme temperatures and resist pitting and chloride-ion stress cracking corrosion. Chemical compositions also affect a stainless steel’s resistance to stress in various environmental conditions. By choosing the correct chemical composition for Stainless Steel 317LN seamless pipes, you can ensure your project has the essential components to withstand the elements while maintaining lasting durability.

SS 317Ln Seamless Pipes are best suited for highly high-temperature and corrosive environments. Due to its superior corrosion resistance, this material is frequently used in the petrochemical and fertilizer industries. Other applications include oil refineries, sewage systems, pipelines, and chemical processing plants where chloride ions can severely threaten materials. Additionally, these pipes exhibit better creep strength than stainless steel 304, making them an ideal candidate for various domestic and industrial applications. The utmost advantage of SS 317Ln Seamless Pipes is their exceptional stress corrosion properties, enabling them to be safely used even in marine environments. Moreover, these pipes offer excellent features such as excellent weldability and toughness under both low and high-temperature conditions. Stainless steel 317Ln seamless pipes offer unmatched performance characteristics that make them a superior choice for many projects.

FAQ's for Stainless Steel 317LN Seamless Pipes

Stainless Steel 317Ln Seamless Pipes Start From Rs. 350/Kilogram To Rs. 400/Kilogram.

Stainless steel 317Ln seamless pipes are not magnetic when in the annealed condition. This is due to the lower nickel content which prevents the formation of a heavily ferromagnetic fraction. The higher molybdenum content ensures highly corrosion-resistant properties for various kinds of chemicals over a wide range of temperatures.

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