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C17200

Beryllium copper alloy C17200 Bars are commonly used for their superior stress and electrical conductivity. This material contains beryllium, copper, and a small amount of nickel and iron in its chemical composition. It provides exceptional strength even at high temperatures while maintaining shock resistance and formability. It has excellent corrosion and fatigue resistance, making these bars ideal for industrial applications such as aircraft engines and nuclear reactor components. As a material, it proved to be more versatile than conventional stainless steel or aluminum alloys with its unique properties, allowing for its use in industrial settings where those other materials may not meet the durability requirements of the projects.

Made from a combination of copper and beryllium, C17200 Beryllium Copper alloy bars are widely used across multiple industries. They have excellent electrical and thermal conductivity and are highly corrosion-resistant, making them an ideal choice for marine applications. Furthermore, this copper alloy is tough and rising resistant, making it perfect for tooling and machinery that require durability and strength. Lastly, its springiness makes it popular for constructing springs on machinery or vehicles with limited space. C17200 Beryllium Copper alloy bars provide the perfect blend of utility and reliability necessary for working in sometimes challenging industrial environments.

FAQ's for Beryllium Copper Alloy C17200 Bars

Beryllium Copper Alloy C17200 Bars Start From Rs. 250/Kilogram To Rs. 300/Kilogram.

The HSN code for Beryllium Copper Alloy C17200 Bars is 7505.22.00. This HSN code denotes nickel, chromium, or other alloyed wire with a maximum cross-sectional dimension of 0.15mm and an alloy content of over 25%.

No, Beryllium Copper Alloy C17200 Bars are highly resistant to corrosion and do not rust. The alloy's superior properties mean that it is considered a low-maintenance material suitable for a variety of industrial applications. It is also very wear-resistant, making it ideal for tools and components used in high-wear applications.

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