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The Effects of Relative Humidity on the Fretting Wear Behavior of Silver-plated Electrical Contacts

机译:相对湿度对镀银电触头微动磨损行为的影响

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The use of connectors in electrical devices for automotive has significantly increased during the last decades. These connectors need to keep a low and stable electrical contact resistance (ECR) otherwise disconnect may occur, inducing critical failures. Close to the engine, these connectors are subjected to vibrations inducing fretting in the contact (i.e. wear damage induced by small oscillating sliding). This phenomenon induces surface wear and the formation of oxide debris (third body) which, being trapped within the interface, can drastically increase the electrical contact resistance. The aim of this study is to investigate the effects of the relative humidity (RH) on the fretting wear rate and the Electrical Contact Resistance (ECR) of a silver plated electrical contact. The analysis shows that an increase of RH tends to increase the ECR fretting endurance Nc related to the failure condition (ΔR > ΔRth=4 mΩ). However, a discontinuous evolution is observed. Below a RH threshold, RH=50%, the endurance increase is rather slow and can be related to a decrease of the friction work imputed in the interface. Above RH=50%, the high humidity conditions modify the rheological properties of the debris layer. The wear rate is becoming smaller and a larger wear volume is required to reach the ECR failure. This induces a fast linear increase of Nc. Whatever the wear processes, the investigation confirms that ECR failure is reached when the silver concentration in the inner part of the contact is becoming lower than [Ag]th=5%.
机译:在过去的几十年中,连接器在汽车电子设备中的使用已大大增加。这些连接器需要保持较低且稳定的电接触电阻(ECR),否则可能会断开连接,从而导致严重故障。这些连接器在靠近发动机的地方会受到振动的影响,从而在触点中产生微动(即,由于小的振荡滑动而引起的磨损损坏)。这种现象会引起表面磨损,并形成氧化物碎片(第三体),这些氧化物碎片被截留在界面内,会大大增加电接触电阻。这项研究的目的是研究相对湿度(RH)对镀银电触点的微动磨损率和电触点电阻(ECR)的影响。分析表明,RH的增加往往会增加与故障条件相关的ECR微动耐力Nc(ΔR>ΔRth= 4mΩ)。但是,观察到不连续的演变。低于RH阈值RH = 50%时,耐力增加相当缓慢,并且可能与界面中的摩擦功降低有关。高于RH = 50%时,高湿度条件会改变碎屑层的流变性。磨损率越来越小,需要更大的磨损量才能达到ECR故障。这引起Nc的快速线性增加。无论磨损过程如何,研究都证实,当触点内部的银浓度变得低于[Ag] th = 5%时,就会达到ECR失效。

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