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Investigation on contact surface damage of automotive connector by fretting corrosion

机译:气体连接器电动连接器接触表面损坏的研究

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The main cause of electrical contact resistance degradation by corrosion is the vibration of contact interfaces. The purpose of this paper is to analyse the change of contact resistance under vibration test for uncoated sphere/plane contact made of new high copper alloys. The influence of electrical and mechanical properties of materials and mainly the hardness on contact resistance was studied in this work. During the fretting test, contact point was submitted to 16000 vibration cycles under fretting amplitude of 50 μm and 1 Hz frequency. The sphere part was fixed, while the plane part was submitted to a relative motion. At the end of the test, the fretted surfaces and the wear debris were analysed by scanning electron microscope and energy dispersive X-ray spectroscopy to evaluate damage, oxidation and elemental composition present in the wear surfaces. In addition, the measurement of the wear track profile using a 3D surface scanning system was introduced. Increases contact resistance and contact temperature has been examined during the fretting test. The results showed that the contact resistance for the harder alloy was higher than those obtained for the other materials. In addition, topographic measurement showed that the small wear track corresponds to the harder material. Finally, depending on the hardness and the resistivity, these uncoated materials influence fretting apparition and its level.
机译:通过腐蚀的电接触电阻降解的主要原因是接触界面的振动。本文的目的是分析由新型高铜合金采用的未涂层球/平面触点下的振动试验下接触电阻的变化。在这项工作中研究了材料的电气和力学性能的影响以及主要是对接触电阻的硬度。在微动检测期间,接触点在50μm和1 Hz频率的振幅下提交到16000振动周期。球体部分是固定的,而平面部分被提交给相对运动。在测试结束时,通过扫描电子显微镜和能量分散X射线光谱分析稀释表面和磨损碎片,以评估磨损表面中存在的损伤,氧化和元素组合物。另外,介绍了使用3D表面扫描系统的耐磨轨道轮廓的测量。提高接触电阻和接触温度已在微动检测期间检查。结果表明,较硬合金的接触电阻高于其他材料所获得的接触电阻。此外,地形测量表明,小磨损轨道对应于较硬的材料。最后,根据硬度和电阻率,这些未涂层的材料会影响烦恼幻觉及其水平。

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