High strength C17000 alloy beryllium copper plate wear resistance
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High strength C17000 alloy beryllium copper plate wear resistance

Specifications: Φ5.0 * 1000mm

Tensile strength (MPa): ≤ 1000

Yield strength (MPa): ≤ 1035

Thermal conductivity (%): ≤ 105

Elastic modulus (GPa): 128

Hardness before quenching (HV): 200 - 250


  • Description

Product specifications: Φ5.0 * 1000mm

Tensile strength (MPa): ≤ 1000

Yield strength (MPa): ≤ 1035

Thermal conductivity (%): ≤ 105

Elastic modulus (GPa): 128

Hardness before quenching (HV): 200 - 250

Quenching temperature (℃): 315 - 600

Processing method: Machining

 

The high-strength C17000 alloy beryllium copper plate has excellent mechanical properties, integrating physical and chemical properties. After heat treatment (solution treatment and aging treatment), the high-strength C17000 alloy beryllium copper plate possesses the same high strength limit, elastic limit, yield limit and fatigue limit as special steel, while also having high electrical conductivity, thermal conductivity, high hardness, corrosion resistance, wear resistance, good casting performance, non-magnetic property and spark-free impact characteristics. It is widely used in industries such as mold manufacturing, machinery, and electronics.

The high-strength C17000 alloy beryllium copper plate has no sand holes or pores, uniform hardness, dense structure, high strength, good thermal conductivity, good electrical conductivity, corrosion resistance, wear resistance, good processing performance under high pressure conditions, stable performance under high pressure, non-magnetic property, good polishing performance, good anti-adhesion performance.

Applications of high-strength C17000 alloy beryllium copper plate

Injection molds and high-pressure blow molding molds, mold inserts, rapid cooling, aluminum alloy mold inserts, increasing strength, wear resistance and shortening injection cycle, heat flow channel nozzles, electrodes and punch materials, non-magnetic molds, non-magnetic tools, high thermal conductivity bearings, capable of manufacturing surfaces with high precision mirror finish.


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