润滑油对小功率镀金滑环和银钯电刷系统降解过程的影响

K. Sawa, Yasunori Suzuki, N. Morita, T. Ueno, K. Endo
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引用次数: 5

摘要

对镀金滑环和银钯电刷体系的降解过程进行了研究。在几乎所有情况下,滑动系统的使用寿命结束,当镀金层磨损时,环表面被氧化成黑色,接触电阻变得非常高。然而,不同情况下,寿命变化很大,而没有润滑剂的寿命很短。在过去的实验中,即使使用润滑剂,寿命也从大约1000小时到近7000小时不等。这种差异从何而来是一个重要的问题。本文主要研究了润滑油对接触电阻退化过程的影响。在过去的试验中,润滑油只在试验前供应一次。在本试验中,润滑油几乎每900个运行小时定期供应一次。以下是可以明确的。在注入润滑剂后,接触电阻下降了很短的时间,但又恢复到注入润滑剂前的相似值。但实现了8000小时以上的运行。此外,接触电压降逐渐增加,直到2600小时,之后几乎保持在70mV左右。这可能意味着在压降升高阶段,镀Au层逐渐磨损,而在压降恒定阶段,镀Ni基层完全暴露。长时间运行的原因似乎是润滑油不仅减少了磨损,而且抑制了Ni层的氧化。
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Effect of Lubricant on Degradation Process of Au-Plated Slip-Ring and Ag-Pd Brush System for Small Electric Power
The authors have been investigating degradation process of Au plated slip ring and Ag-Pd brush system. In almost all cases the lifetime of the sliding system ends, when Au plating layer is worn out, the ring surface is oxidized to be black in color and contact resistance becomes very high. However, the lifetime is greatly changed case by case, while it is very short without lubricant. Even with lubricant the lifetime is varied from about 1000 hours to almost 7000 hours in the past experiments. It is an important issue where such variation comes from. In this paper the effect of lubricant on degradation process of contact resistance is focused on. In the past tests the lubricant is supplied only once before the test. In this test the lubricant is regularly supplied almost every 900 operation hours. The followings can be made clear. Just after the supply of the lubricant the contact resistance fall down just for a short time, but it comes back to the similar value before the supply. However the operation more than 8000 hours is realized. In addition the contact voltage drop increase gradually until 2600 hours and after that it stays almost constant around 70mV. It probably means that the Au plating layer is gradually worn out at the stage of increasing voltage drop, while the Ni base plating layer is totally exposed at the stage of constant voltage drop. The reason of long operation seems to be that the lubricant not only decreases wear but also suppresses oxidation of the Ni layer.
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