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Influence of the contact parameters and several graphite materials on the tribological behaviour of graphite/copper two-disc electrical contacts

机译:接触参数的影响和几种石墨材料对石墨/铜双盘电触点的摩擦学行为

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摘要

This paper reports on the performance and tribological mechanisms in a newly developed design for an electrical sliding contact in terms of sliding velocity, normal force and electrical current during 24-h experiments. Copper discs were run against hard-carbon graphite, electrographite and polymer-bonded graphite. The average wear rates of the copper discs against the three graphite materials were reduced to 10(-8) and 10(-7) mm(3)/Nm, and the graphite discs to 10(-6) mm(3)/Nm, which is for 1 and 1-2 orders of magnitude less, than copper slip-rings and carbon brushes in conventional systems, respectively. The coefficient of friction was 0.2-0.4, depending on the conditions, which is comparable to the values of conventional electrical sliding contact. Tribofilms are generated in almost all contacts, and crucially determine the contact performance. The polymer-bonded-graphite/Cu formed the most compliant tribofilms that unify and decrease the local contact pressures and temperatures, and have the largest surface coverage that reduces the wear and contact resistance, which in turn reduces the contact instabilities and so the friction.
机译:本文报告了在24-H实验期间的滑动速度,法向力和电流方面的新开发设计中的性能和摩擦学机制。铜盘对硬碳石墨,电动印象和聚合物键合石墨进行。铜盘的平均磨损率与三石墨材料的平均磨损率降至10(-8)和10(-7)mm(3)/ nm,并且石墨盘至10(-6)mm(3)/ nm (分别比常规系统中的铜套环和碳刷)少于1和1-2的数量级。根据条件,摩擦系数为0.2-0.4,这与传统的电滑动接触的值相当。 Tribofilms在几乎所有触点中产生,并且大致确定接触性能。聚合物 - 粘结的石墨/ Cu形成最柔顺的呋喃酚,统一和降低局部接触压力和温度,并具有最大的表面覆盖,可降低磨损和接触电阻,这反过来减少了接触不稳定性和摩擦力。

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