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Third bodies in electrical contacts — Wear and electrical performance

机译:电触头中的第三体—磨损和电性能

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Silver is a widely used protective coating material in electrical connectors, since it has good resistance to oxidation and thus is not affected by corrosion and fretting corrosion. The dominating mechanism for failure in silver coated electrical contacts is fretting wear. Recently, wear between silver-silver contacts has been analyzed and adhesion is recognized as the dominating mechanism during the wear process. According to our experiments, the distribution of third bodies in the contact area also has great influence on the lifetime of electrical contacts, since it can greatly influence the condition of contact surfaces. In this paper, two arrangements of samples, namely "sphere on plate" and "plate on sphere" are used to generate different distribution of third bodies. Depending on the arrangement of electrical contacts, the amount of remaining debris in the contact area produced by fretting of electrical contacts varies largely. As a result, should a large amount of debris remain in the contact area, the third bodies (the debris) change the tribological conditions significantly. This leads to a marked increase in the wear of the coating which in turn reduces the lifetime of electrical contacts considerably. A model of the mechanism of the influence of third bodies is introduced and verified by experiments. This paper provides indications for design, characterization and fretting corrosion measurements. The arrangement of samples has to be specified and "sphere on plate" is the more critical case.
机译:银是电连接器中广泛使用的保护性涂层材料,因为它具有良好的抗氧化性,因此不受腐蚀和微动腐蚀的影响。镀银电触点故障的主要机理是微动磨损。近来,已经分析了银-银触点之间的磨损,并且在磨损过程中粘附力被认为是主要机制。根据我们的实验,第三体在接触区域中的分布对电触点的寿命也有很大的影响,因为它可以极大地影响接触表面的状况。在本文中,样本的两种排列方式,即“板上的球体”和“板上的球体”用于生成第三体的不同分布。取决于电触头的布置,通过电触头的微动产生的在接触区域中残留的碎屑的数量变化很大。结果,如果在接触区域中残留大量碎屑,则第三体(碎屑)会显着改变摩擦学条件。这导致涂层的磨损显着增加,这反过来大大缩短了电触点的寿命。引入了第三体影响机理的模型,并通过实验进行了验证。本文为设计,表征和微动腐蚀测量提供了指示。必须指定样品的排列方式,“板球”是更为关键的情况。

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