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Understanding Field Experience of Contact Performance from Lab Fretting Tests of Model Contacts

机译:通过模型接触的实验室微动测试了解接触性能的现场经验

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Silver and copper are key materials for sliding electrical contacts in tap-changer applications, where low contact resistance is crucial. Such contacts must function for at least 500 000 mating operations, why relatively small contact forces are used. Besides the sliding motion when mating the contacts, small-amplitude vibrations may introduce relative motion at the contact interface when mated. In this study the performance of solid silver against three different counter materials is evaluated in a lab set-up, simulating electrical contacts subjected to fretting. The three counter materials are solid copper, silver plated copper, and silver plated copper with a top layer of silver iodide. The study has three objectives: 1. To reveal the lab test performance of the different material combinations, in terms of friction and contact resistance. 2. To increase the understanding of the fretting process and its effect in real applications. 3. To correlate field experience of contact performance with the experimental results. From the study it is found that there are significant differences in performance and behavior between the different contact materials, and that lab test conditions can be attributed to real life contact performance.
机译:银和铜是分接开关应用中滑动电触点的关键材料,在这些应用中,低接触电阻至关重要。这种触点必须至少执行500 000次配合操作,为什么要使用相对较小的接触力。除了配合触点时的滑动运动外,配合时,小振幅振动还会在触点界面处引入相对运动。在这项研究中,在实验室设置中模拟了经受微动的电触点,评估了固态银对三种不同的计数器材料的性能。三种计数器材料是固态铜,镀银铜和带有碘化银顶层的镀银铜。该研究具有三个目标:1.从摩擦和接触电阻方面揭示不同材料组合的实验室测试性能。 2.加深对微动过程及其在实际应用中的影响的理解。 3.将接触性能的现场经验与实验结果相关联。从研究中发现,不同的接触材料之间在性能和行为上存在显着差异,并且实验室测试条件可以归因于现实生活中的接触性能。

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