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Aluminum bronze C63000 fasteners are composed of several different types of metals, mainly aluminum, nickel, and copper. This highly corrosion-resistant alloy is comprised of around 95% copper and 5% aluminum, with a trace amount of nickel added to ensure superior strength and ductility. It is also classified as a “high-strength” alloy due to its ability to hold up under extreme pressure or temperature without suffering any permanent damage. Another benefit of this type of alloy is its ability to retain nonmagnetic properties even after repeated bending or strain. Aluminum bronze C63000 fasteners can be used in many industries ranging from aerospace to food processing due to their impressive combination of strength and malleability.

C63000 Aluminium Bronze Fasteners are incredibly durable, making them ideal for use in a wide range of industries. They have high tensile strength and great resistance to seawater, rust, and other forms of corrosion, allowing them to be used in marine applications or even in areas prone to extreme weather conditions. They also offer good electrical conductivity and an impressive fatigue life which makes them well-suited for use in the construction of bridges or other structures needing long-term reliability. Aluminium Bronze C63000 Fasteners are easy to install and maintain due to their low weight, and they can also be used in a variety of different applications, including plumbing systems and automotive components. In conclusion, Aluminium Bronze C63000 Fasteners offer excellent durability and performance that span a number of applications.

FAQ's for Aluminium Bronze C63000 Fasteners

Aluminium Bronze C63000 Fasteners Starts At Rs 10/Piece To Rs 15/Piece.

No, Aluminium Bronze C63000 Fasteners are not magnetic. Though they may have some magnetism due to their copper content, it is typically too small to be detectable by most magnets.

Yes, Aluminium Bronze C63000 Fasteners are heat resistant. This is due to their high copper content which gives them superior temperature and oxidation resistance.

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