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DIN 1.4835

SS Din 1.4835 Valves is a type of austenitic stainless steel with a specific chemical composition. It contains chromium as the primary alloying element, typically in a range of 17-19%, providing excellent corrosion and rust resistance. It also contains nickel in a range of 9-11%, enhancing the steel's overall toughness and strength. Manganese is also present in a small amount, typically around 1%, which contributes to the overall stability of the steel. In addition, Din 1.4835 may contain other elements, such as molybdenum, nitrogen, and silicon, in trace amounts, which can affect its properties and performance characteristics. This combination of features provides Din 1.4835 with a high corrosion resistance, strength, and toughness, making it suitable for various industrial applications, including valves.

Stainless Steel DIN 1.4835 valves are used in various industrial applications due to their high corrosion resistance and ability to withstand high temperatures. The material is also known for its good mechanical properties, making it an ideal choice for increased strength and durability applications. Additionally, 1.4835 stainless steel is resistant to pitting, crevice corrosion, and stress corrosion cracking, making it a perfect choice for use in harsh environments. The valves made from this material also have good dimensional stability, making them suitable for precision applications. The non-magnetic properties of 1.4835 stainless steel also make it ideal for electronic and medical applications where magnetic fields may cause issues.

FAQ's for Stainless Steel DIN 1.4835 Valves

Stainless Steel DIN 1.4835 Valves are metal.

The HSN code for Stainless Steel DIN 1.4835 Valves is 7412.

It is not possible to determine if Stainless Steel DIN 1.4835 Valves are eco-friendly without more information about the specific use or manufacturing process. In general, stainless steel is a recyclable material and can have a lower environmental impact compared to other materials, but it still requires energy and resources to produce. The overall eco-friendliness of a product depends on many factors including production methods, end-of-life disposal, and energy consumption.

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