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Influence of the electrical sliding speed on friction and wear processes in an electrical contact copper-stainless steel

机译:电滑动速度对电接触铜不锈钢中摩擦和磨损过程的影响

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Among the various parameters that influence the friction and wear behaviour of a copper-stainless steel couple crossed by an electrical current and in a dry contact is the sliding speed. The tests were carried out under ambient environment and the sliding speed was in the range of 0.2-8 ms~(-1). The electrical current intensity was varied from 0 to 40 A and held constant during each experiment. The normal load was maintained constant corresponding to an average Hertzian stress of 10~7 Pa. It appears that the friction coefficient and the wear rate increase at first with the speed, reach their maximums, then slowly decrease and tend to constant values. Over the entire range of sliding speeds two types of wear are observed. These latters are essentially mild wear as long as hard debris do not appear at the interface and severe wear when debris consisting of oxides or oxide metal mixture become big enough, they are removed from the surface and have abrasive effect. The results are discussed in terms of observations of wear debris size and composition, wear track study, metallographic study of worn surfaces and friction and electrical contact resistance records.
机译:滑动速度是影响电流流经干接触的铜-不锈钢对的摩擦和磨损行为的各种参数之一。试验是在周围环境下进行的,滑动速度在0.2-8ms〜(-1)的范围内。电流强度在0至40 A之间变化,并在每个实验中保持恒定。法向载荷保持恒定,对应于10〜7 Pa的平均赫兹应力。看来,摩擦系数和磨损率首先随着速度增加而增大,达到最大值,然后缓慢减小并趋于恒定值。在整个滑动速度范围内,观察到两种磨损。只要它们在界面处不出现坚硬的碎屑,这些磨屑基本上是轻度磨损,而当由氧化物或氧化物金属混合物组成的碎屑变得足够大,从表面上去除并具有研磨作用时,则严重磨损。将根据观察到的磨损碎片大小和组成,磨损轨迹研究,磨损表面的金相研究以及摩擦和电接触电阻记录来讨论结果。

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