High wear-resistant C17200 beryllium copper plate with non-magnetic and non-sparking
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High wear-resistant C17200 beryllium copper plate with non-magnetic and non-sparking

Grade: C17200

Hardness: Semi-hard / Full-hard

Type: Copper alloy

Name: Beryllium copper plate

Copper content: Excess

Softening temperature: 870~980℃


  • Description

High wear-resistant C17200 beryllium copper plate, non-magnetic and non-sparking beryllium copper plate available in stock

Grade: C17200

Hardness: Semi-hard / Full-hard

Type: Copper alloy

Name: Beryllium copper plate

Copper content: Excess

Softening temperature: 870~980℃

Impurity content: Trace

Main metal content: Be: 1.80~2.00%

Is it a hazardous chemical? No

Specific gravity: (g/cm³) 8.36

Electrical conductivity (IACS%): ≥18

Thermal conductivity (W/m.k 20℃): 105

Elastic modulus (GPa): 131

Product Specifications: Regular specifications are available in stock / Special specifications can be customized

Application Fields: Aviation, aerospace, ships, military industry, metallurgy, electronics, mechanical and electrical, transportation, chemical industry.

Product features

High elasticity High hardness

High wear resistance High intensity

Anti-fatigue

 

The high wear-resistant C17200 beryllium copper plate has excellent wear resistance. Its wear resistance is attributed to several factors.

The internal structure of the high wear-resistant C17200 beryllium copper plate is relatively uniform, with no obvious weak areas. This ensures that during the wear process, there will be no rapid local wear. Moreover, the beryllium copper plate can to some extent form a surface self-protection mechanism. When subjected to friction, the atomic layers on the surface will undergo certain adjustments and reorganization, thereby reducing the rate of wear. In some mechanical structures requiring wear-resistant components, the high wear-resistant C17200 beryllium copper plate can perform well due to its wear resistance. For example, in some mechanical connection parts with relative movement, it can effectively reduce component damage caused by wear and extend the service life of the components.


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