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Stainless Steel 317 2 5D Bend Pipe Fittings are a steel compound made from chromium, nickel, molybdenum, copper, and nitrogen. Chromium is the primary element of this alloy, and it helps the mixture resist rust and pit corrosion. Also, nickel helps increase the compound's tensile strength, while molybdenum helps to further resist corrosion by strengthening austenitic steel molecules. Copper is added as a protective layer against pitting caused by chloride stress corrosion cracking. Lastly, nitrogen is included in the composition as it can act as carbon replacement and help to reduce losses due to intergranular corrosion. Overall, this combination of elements works together to make Stainless Steel 317 2 5D Bend Pipe Fittings highly resistant to corrosion and long-lasting for many industrial applications.

Stainless steel 317 2 5D Bend Pipe Fittings are a durable option for many plumbing projects. Thanks to their non-corrosive properties, they are ideal for indoor and outdoor use, withstanding extreme temperatures and unpredictable weather conditions. In addition to being corrosion resistant, these fittings offer more excellent hygiene benefits than other metal options, as they have an extremely smooth surface finish. This allows them to be used in food processing applications without harboring bacteria or other contaminants that would otherwise contaminate food or drinks. Furthermore, stainless steel is easy to clean and maintain since it does not need to be polished and remains shiny over time. Overall, the many uses of Stainless Steel 317 2 5D Bend Pipe Fittings make them an invaluable asset in various industries.

FAQ's for Stainless Steel 317 2.5D Bend Pipe Fittings

Stainless Steel 317 2.5D Bend Pipe Fittings are made from high-quality stainless steel, which provides excellent corrosion resistance and durability.

A 2D bend has a radius equal to twice the diameter of the pipe, while a 2.5D bend has a radius equal to two and a half times the diameter of the pipe.

Yes, these fittings can be used in high-pressure applications as they are designed to withstand extreme pressure and temperature conditions without compromising their structural integrity.

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