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Characteristics of electric charges carried by dust particles and their effects on electrical contact failures

机译:尘埃颗粒携带的电荷的特性及其对电接触故障的影响

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摘要

Dust contamination is one of the major causes of electrical contact failure. The deposition of dust and adhesion of particles are affected by the electric charges carried by the dust particles. This paper describes characteristics of electric charges carried by dust particles and their effects on electrical contact failure. A Millikan testing method was used for measuring the electric charges. The results show that the variation of electric charges carried by dust particles is located in a band region, the trend of charges can be expressed as a third order equation, the results obtained for positive and negative charge are similar. The morphology and surface seem to be the major factors which influence the electric charge. The relative humidity of the environment greatly affects the amount of electric charge. It is found that dust particles carry negative charges or positive charges, those particles will be attracted to both electric contact surfaces respectively, and thereby the probability of causing electrical contact failure is greatly increased. The selective deposition of particle takes place on electrical contact surface. The failed connectors were characterized by using SEM/EDS. Serious contaminants were detected at the contact interfaces, and the contaminants contained the major elements of dust, namely Si, and Al. Dust particles depositing at contact sports can cause electrical contact failure. They can also result in forming tiny holes in the Au film during plating process as well as influencing Au film adhesion. Appropriately controlling the environmental humidity during operation of the electro-mechanical components and protecting the contact interface from dust can effectively lower electrical contact failure.
机译:灰尘污染是电接触故障的主要原因之一。灰尘的沉积和颗粒的附着受到灰尘颗粒携带的电荷的影响。本文介绍了灰尘颗粒携带的电荷的特性及其对电接触故障的影响。使用密立根测试方法来测量电荷。结果表明,尘埃颗粒所带电荷的变化位于一个能带区域,电荷的趋势可以表示为三阶方程,正负电荷的计算结果相似。形态和表面似乎是影响电荷的主要因素。环境的相对湿度会极大地影响电荷量。发现尘埃颗粒带有负电荷或正电荷,这些颗粒将分别被吸引到两个电接触表面,从而大大增加了引起电接触故障的可能性。颗粒的选择性沉积发生在电接触表面上。通过使用SEM / EDS对出现故障的连接器进行了表征。在接触界面处检测到严重的污染物,该污染物包含灰尘的主要元素,即Si和Al。接触运动时沉积的灰尘颗粒可能导致电接触故障。它们还可能导致在电镀过程中在Au膜上形成微小的孔,并影响Au膜的附着力。在机电组件运行期间适当地控制环境湿度并保护触点界面不受灰尘影响,可以有效地降低电触点故障。

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