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Optimization of current-carrying friction and wear properties of copper-carbon composite materials based on damage

Zhenghai Yang, Yingjian Song, Jinlong Jiao, Wenbo Li,Bao Shangguan,Yongzhen Zhang

TRIBOLOGY INTERNATIONAL(2024)

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Abstract
This study investigated the friction and wear properties and current-carrying properties of copper-graphite composites paired with brass C28000 on a self-made current-carrying friction test machine. The results indicate that the current-carrying properties of the copper-graphite gradient composite materials are excellent, the core factor limiting its service properties is its wear rate. With the increase in the thickness of the Cu-5 wt% graphite layer, the unevenness of the damage improves. The composite material with a Cu-5 wt% graphite layer thickness of 8/5 mm exhibits friction and current-carrying properties close to that of the composite material with a Cu-5 wt% graphite layer thickness of 4 mm. It has a higher electrical conductivity by approximately 20 % and a higher hardness.
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Key words
Distribution of damage,Copper-graphite gradient composites,Current-carrying properties,Friction and wear properties
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