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347

Stainless steel 347, also known as UNS S34703, is a type of austenitic stainless steel containing 18% chromium and 11% nickel. It is also alloyed with columbium, titanium, and aluminium to optimise corrosion resistance and thermal stability. Regarding its main chemical components, SS347 pipe fittings generally contain 0.08% carbon, 2.0% manganese, 0.75% silicon, and trace amounts of phosphorous and sulfur. This chemical composition improves resistance to pitting and stress-corrosion cracking in acidic environments. It is an optimal alloy for long stub end pipe fittings typically used in the nuclear engineering and petroleum industries with highly corrosive liquids or gas systems.

Stainless Steel 347 Long Stub End Pipe Fittings are high-performance components used in piping systems to provide excellent functionality, ease of installation and robust construction. These fittings are made from 347-grade stainless steel alloy, which offers superior corrosion and high-temperature resistance. Additionally, the 347 grade's utility in welding applications makes it ideal for the manufacture of Stainless Steel 347 Long Stub Ends. Using these fittings can save time and cost as quick connections can be made for branch connections without complex welding techniques. The pipe fittings also place minimal stress on connected pipes as they absorb any forces generated from differing expansion rates between materials.

FAQ's for Stainless Steel 347 Long Stub end Pipe Fittings

Welding stainless steel 347-long stub end pipe fittings can be done using various methods such as gas-shielded arc welding, submerged arc welding and resistance spot welding. It is important to use the right shielding gas, filler metal and procedure to ensure a strong, durable weld joint.

No, stainless steel 347 long stub end pipe fittings are not magnetic due to the alloy's low carbon content levels. However, they may become magnetized if exposed to a strong external magnetic field.

Yes, stainless steel 347 long stub end pipe fittings are highly corrosion resistant due to their high chromium and nickel content, which form an invisible layer over the material's surface. This layer protects the material from exposure to corrosive elements such as acids and alkalis.

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