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347

347 Stainless Steel Plate Flanges contain several chemical elements, including chromium, nickel, molybdenum, silicon, aluminum, and titanium. Chromium provides increased corrosion resistance, while nickel and molybdenum make the alloy resistant to reducing environments. Silicon increases strength at elevated temperatures and improves the alloy's free machining properties. Aluminum increases strength but reduces hardenability. Titanium further strengthens the alloy by forming niobium carbides in a solid solution. This careful balance of chemical elements makes 347 stainless steel ideal for industrial applications requiring high strength and corrosion resistance.

347 SS Plate Flanges are widely used in industries such as food processing, chemical processing, and pharmaceutical manufacturing. The alloy's excellent corrosion resistance and high strength at elevated temperatures make it an ideal choice for applications that involve frequent or extreme exposure to corrosive agents or hot working environments. 347 stainless steel plate flanges also boast excellent free machining properties and can easily be cut, joining welded, and cold formed. Its austenitic structure also adds another layer of value, as it prevents the material from becoming magnetized even under extreme conditions.

FAQ's for Stainless Steel 347 Plate Flanges

Generally, Stainless Steel 347 Plate Flanges Price Ranges From INR 225/Kg To INR 350/Kg.

Yes, 347 stainless steel plate flanges are highly resistant to corrosion and oxidation. Its resistance to corrosion is due in part to its high chromium content, which creates a protective layer on the surface of the metal. The addition of nickel and molybdenum further strengthens this protective layer while helping the alloy resist reducing agents such as sulfuric acid and hydrochloric acid. Its austenitic structure also makes it highly resistant to stress corrosion cracking, making 347 stainless steel plate flanges suitable for use in even the most corrosive environments.

No,347 stainless steel plate flanges are non-magnetic. This is due to its austenitic structure, which prevents the material from becoming magnetized even under extreme conditions. The chromium and nickel levels found in the alloy also contribute to this property by creating a passive layer that further inhibits magnetic attraction.

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