首页> 外文会议>Proceedings of the Forty-First IEEE holm conference on electrical contacts(Electrical Contacts-1995) >Conduction Through Corrosion Films on Silver Plated Copper in Power Contacts
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Conduction Through Corrosion Films on Silver Plated Copper in Power Contacts

机译:电源触点中镀银铜上腐蚀膜的传导

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It is well known that the presence of a corrosion film affects the conduction through an electrical contact. This paper presents a study on the influence of corrosion films on contact resistance and contact deterioration of silver plated copper contacts for power applications.rnThe model contact consisted of two crossed copper cylinders (0=10 mm) electroplated with silver. The normal force was varied from 10 to 60 N and the direct current from 10 to 200 A. Only stationary conditions were studied. Corrosion films were produced prior to testing by exposure to a mixed flowing gas atmosphere, i.e. Battelle class III. All tests were performed in room atmosphere. The deterioration mechanisms were identified by scanning electron microscopy (SEM) and energy dispersive x-ray analysis (EDX).rnThe contact resistance, which generally decreased throughout the tests, was found to be strongly influenced by the corrosion film thickness, while the silver coating thickness was of minor importance. Furthermore, the current load was found to strongly affect the contact resistance and the size of the contact areas, i.e. the contact resistance was lowered with increasing current load. It was concluded that electrolytic silver ion transport from the anode to the cathode surface was the mechanism causing this self-healing. However, in some cases this ion transport was detrimental for the silver coating, which could be completely transferred from the anode to the cathode.
机译:众所周知,腐蚀膜的存在会影响通过电接触的传导。本文研究了腐蚀膜对电力应用镀银铜触点的接触电阻和触点劣化的影响。rn该模型触点由两个交叉的铜圆柱体(0 = 10 mm)镀银组成。法向力在10到60 N之间变化,直流电在10到200 A之间变化。仅研究了静态条件。在测试之前,通过暴露在混合流动的气体气氛(即Battelle III级)中来生产腐蚀膜。所有测试均在室内大气中进行。通过扫描电子显微镜(SEM)和能量色散X射线分析(EDX)确定了劣化机理。rn在整个测试过程中,通常降低的接触电阻受到腐蚀膜厚度的强烈影响,而镀银层厚度不太重要。此外,发现电流负载强烈影响接触电阻和接触区域的尺寸,即,接触电阻随着电流负载的增加而降低。可以得出结论,电解银离子从阳极到阴极表面的运输是导致这种自我修复的机制。但是,在某些情况下,这种离子传输对银涂层有害,该涂层可能会从阳极完全转移到阴极。

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