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Stainless steel pipe flanges are used in many industrial applications and offer distinct advantages over other materials, mainly due to their excellent corrosion resistance. One particular alloy, Stainless Steel 347 Bs 10 Table H Flanges, comprises iron, chromium, nickel, and other metals. Though the exact chemical composition may differ depending on the purpose of the flange and its method of manufacture, typically, it is made up of 18-20% chromium; 13-14% nickel; 2-3% molybdenum; 0.75% columbium (niobium); 5-7% titanium; 0.35 max manganese; 0.04% phosphorous; 0.03% sulfur; and balance iron. Therefore, this variation of stainless steel flanges offers excellent mechanical properties and increased resistance to various corrosion and environmental degradation, making them ideal for many commercial purposes.

347 Stainless Steel Bs 10 Table H flanges are versatile and have many potential applications. They are beneficial for their ability to withstand high temperatures, making them ideal for positions comprised of parts that come in contact with hot liquids or vapors, such as boilers and steam systems. The material is also highly corrosion-resistant due to its chromium content, so environments exposed to harsh chemicals can benefit from its use. Additionally, stainless steel 347 Bs 10 Table H flanges have great strength and are suitable for ductile service applications, providing good connection integrity and reliable sealing when appropriately used. Overall these flanges offer reliability, functionality and the ability to endure extreme temperatures and corrosive conditions - an inspiring combination of benefits!

FAQ's for Stainless Steel 347 BS 10 Table H Flanges

The HSN Code for Stainless Steel 347 Bs 10 Table H Flanges is 73071910.

To weld Stainless Steel 347 Bs 10 Table H Flanges, it is essential to use the TIG welding process with the correct shielding gas and keep the optimum temperature during cool-down.

Stainless Steel 347 Bs 10 Table H Flanges are not magnetic as they contain minimal amounts of ferrous material.

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