老化对小电流触点电热状态的影响

Gideon-Gwanzuwang Dankat, A. Dobre, L. Dumitran
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引用次数: 2

摘要

电触点的主要功能是安全地关闭在整个触点表面传输电流的电路。根据使用情况,电触点的电流范围从高、中、低不等。传输电触点的电力被期望传输一个显著强度的电流,而传输电触点的信号通常传输低电流。然而,由于温度、腐蚀、振动引起的机械不连续等因素的作用,电触点在界面处发生逐渐的变化,所有这些干扰因素都会导致触点的老化和退化。在某些情况下,由于电损耗,接触电阻增加,局部温度可能升高,从而加速接触退化。本文采用COMSOL Multiphysics软件的有限元方法,对界面处有氧化膜层作为老化因素的简单低电流接触模型的温度变化进行了数值分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of Ageing on Electrothermal Condition of Low Current Contact
Electrical contacts’ main function is to close an electrical circuit securely transporting current throughout the contact surface. Electrical contacts range from high, medium to low current depending on their usage. Power transmitting electrical contacts are expected to transmit a current of a significant intensity whereas the signal transmitting electrical contacts usually transmit low currents. However, electrical contacts undergo gradual change at the interface due to the action of temperature, corrosion, mechanical discontinuities induced by vibration etc. all these disturbing factors lead to the aging and degradation of the contact. In some cases where the contact resistance increases due to electrical loses, the local temperature may increase, thereby accelerating contact degradation. This paper presents a numerical analysis on the variation of temperature of a simple low current contact model having a thin oxide film layer at the interface which serves as the ageing factor using finite element method (FEM) in COMSOL Multiphysics.
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