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首页> 外文期刊>電子情報通信学会技術研究報告. 機構デバイス. Electromechanical Devices >A Study on Contact Voltage Waveform and its Relation with Deterioration Process of AgPd Brush and Au-plated Slip-ring System with Lubricant
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A Study on Contact Voltage Waveform and its Relation with Deterioration Process of AgPd Brush and Au-plated Slip-ring System with Lubricant

机译:润滑油磨削刷和Au镀滑环系统劣化过程的接触电压波形及其关系研究

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摘要

The authors have been investigating the deterioration process of Au-plated slip-ring and Ag-Pd brush system with lubricant to realize stable and long lifetime. Through the past tests, it can be made clear that lubricant is very important for long lifetime, and a simple model of the deterioration process was proposed. However, it is still an issue how the lubricant is deteriorated and also what the relation between lubricant deterioration and contact voltage change is. In this paper, the contact voltage waveforms were regularly recorded during the test, and analyzed to obtain the time change of peak voltage and standard deviation during one rotation. Based on these results, it is discussed what happens at the interface between ring and brush with the lubricant. And the following results are made clear. The fluctuation of voltage waveforms, especially peaks of pulse-like fluctuation more easily occurs for minus rings than for plus rings. Further, peak values of the pulse-like fluctuation rapidly decreases and disappear at lower rotation speed as mentioned in the previous works. In addition, each peals of the pulse-like fluctuation is identified at each position of the ring periphery. From these results, it can be assumed that lubricant film exists between brush and ring surface and electric conduction is realized by tunnel effect. In other words, it can be made clear that the fluctuation would be caused by the lubricant layer, not only by the ring surface. Finally, an electric conduction model is proposed and the above results can be explained by this model.
机译:作者一直研究了润滑剂的渗流滑环和AG-PD刷系统的劣化过程,实现稳定和长寿命。通过过去的测试,可以清楚地清楚的是,润滑剂对于长寿命非常重要,提出了一种简单的劣化过程模型。但是,润滑剂如何恶化以及润滑剂劣化和接触电压变化之间的关系是一个问题。在本文中,在测试期间定期记录接触电压波形,并分析以在一次旋转期间获得峰值电压和标准偏差的时间变化。基于这些结果,讨论了在带润滑剂之间的界面和刷子之间发生的情况。和以下结果明确。电压波形的波动,尤其是脉冲状波动的峰值,对于较大的环而不是加上环。此外,如先前的作品中提到的,脉冲状波动的峰值快速降低并且在较低的旋转速度下消失。另外,在环形周边的每个位置处识别脉冲样波动的每个PEAL。根据这些结果,可以假设刷子和环表面之间存在润滑剂膜,通过隧道效应实现电导。换句话说,可以清楚地清楚的是,波动是由润滑剂层引起的,而不仅仅是由环表面引起的。最后,提出了一种电导模型,并且可以通过该模型解释上述结果。

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