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Thermally induced mechanical degradation of contact spots in aluminum interfaces

机译:热诱导铝界面接触点的机械降解

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摘要

Deterioration of an electric contact is closely related to phenomena occurring in the microscopic contact spots in the contact interface. Contact spots in idealized aluminum/aluminum contact interfaces, that have passed heavy alternating currents, have been carefully examined by scanning electron microscopy and metallographic imaging techniques. Small cracks are observed in the contact spot regions, and have to a great extent impaired the current-carrying ability of the area. The temperature in the contact spots cycles with twice the power frequency, and in heavily stressed contacts the maximum temperature reaches several hundred degrees centigrade. The associated local thermal expansion and contraction in and around the immediate vicinity of the contact spot generates cyclic mechanical forces of substantial magnitudes. Indications that this repetitive stress causes the observed cracks are found. It is suggested that the resistance increase observed in practical aluminum connectors being subjected to short-circuit currents can have a similar origin.
机译:电接触的劣化与在接触界面中的微观接触点中发生的现象密切相关。已通过扫描电子显微镜和金相成像技术仔细检查了经过大交流电的理想化铝/铝接触界面中的接触点。在接触点区域观察到小裂纹,并且在很大程度上削弱了该区域的载流能力。接触点的温度以两倍的功率频率循环,而在压力很大的接触点中,最高温度达到几百摄氏度。接触点附近及其附近的相关局部热膨胀和收缩会产生相当大的循环机械力。发现这种重复应力会导致观察到的裂纹。建议在经受短路电流的实际铝连接器中观察到的电阻增加可能有相似的起因。

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