C17510 beryllium nickel copper plate with high wear resistance and corrosion resistance
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C17510 beryllium nickel copper plate with high wear resistance and corrosion resistance

Specification: Thickness 0.1 - 80mm

Forming process: Extrusion

Surface treatment process: Polishing

Tolerance range: ±0.05mm

Inventory status: In stock / Custom order


  • Description

Spark beryllium-copper plate, beryllium copper block, conductive parts, elastic elements, beryllium-copper plate

Type: Copper sheet

Material: C17510

Specification: Thickness 0.1 - 80mm

Forming process: Extrusion

Surface treatment process: Polishing

Tolerance range: ±0.05mm

Inventory status: In stock / Custom order

The advantages of the corrosion-resistant C17510 beryllium-nickel-copper plate include excellent corrosion resistance, good plasticity and high strength. It is used for manufacturing copper sleeves, shaft sleeves, gears, worm wheels, valves, pump bodies, bearing shells, wear-resistant parts, forgings, fasteners, instruments, elastic elements, automotive parts, power equipment, sand casting, etc.

Electrical conductivity: Bezel bronze C17510 exhibits excellent electrical conductivity and can effectively conduct current in numerous electrical and electronic applications.

Thermal conductivity: Its thermal conductivity is relatively high, making beryllium bronze suitable for use in high-temperature environments.

Strength: The tensile strength of beryllium bronze can reach 800 - 900 MPa. After heat treatment, the strength is further enhanced.

Toughness: This alloy maintains high strength while also ensuring good toughness, making it suitable for applications under stress conditions.

The corrosion-resistant C17510 beryllium-nickel-copper plate is made with precisely controlled alloy ratios: the beryllium content is strictly controlled within 0.38% to 0.4%, while the nickel content remains at 2.4% to 2.8%, with the rest being mainly high-purity copper. This composition design achieves precipitation hardening through heat treatment processes, forming fine and uniform strengthening phases, thereby significantly enhancing the overall strength and hardness of the material, while also ensuring excellent elasticity and fatigue resistance.


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