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首页> 外文期刊>Journal of Friction and Wear >Electrical and tribological properties of composite material with copper matrix reinforced by superelastic hard carbon
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Electrical and tribological properties of composite material with copper matrix reinforced by superelastic hard carbon

机译:超弹性硬碳增强铜基复合材料的电学和摩擦学性能

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摘要

Electrical and tribological properties of a copper-based composite material reinforced by superelastic hard carbon particles are studied. Composite material specimens have been produced using the hightemperature pressing of mixtures of copper and fullerene powders. Electrical and tribological reciprocal tests carried out using the plane-on-plane arrangement have shown that the coefficient of friction of the composite material-Ni pair is lower than that of the reference L63 brass-Ni pair at similar values of contact electrical resistance. The abrasive wear resistance of the composite material is 40 times higher than that of brass. The developed copper-based composite materials reinforced by superelastic carbon particles hold promise for use in sliding electrical contacts.
机译:研究了由超弹性硬碳颗粒增强的铜基复合材料的电学和摩擦学性能。复合材料样品是使用铜和富勒烯粉末混合物的高温压制而成的。使用面对面布置进行的电学和摩擦学互易测试显示,在相似的接触电阻值下,复合材料-Ni对的摩擦系数低于参考L63黄铜-Ni对的摩擦系数。复合材料的耐磨性比黄铜高40倍。由超弹性碳颗粒增强的已开发的铜基复合材料有望在滑动电触点中使用。

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