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Modeling Early Stage Fretting of Electrical Connectors Subjected to Random Vibration

机译:对随机振动下电连接器的早期微动建模

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Fretting corrosion induced by vibration is a topic of major concern for automotive applications, often leading to increased contact resistance and connector failure. Presently, modeling of the behavior of connectors during fretting corrosion is a difficult matter, requiring many parameters, and is generally highly nonlinear in nature. Experimental testing of sample connectors is currently the only practical method of evaluating connector performance; however, testing can be a time-consuming and inexact task. Prior work by the authors studied the fretting behavior of connectors subjected to single frequency vibration. Correlation of experimental results with simulated behavior showed that, for the primary mode of connector interface motion observed (rocking-type motion), the relative moment at the interface was a good indicator of the observed fretting rate. It was also shown that the moment applied as the result of a given excitation level and frequency could reasonably be predicted via simulation. The current work extends this approach to random vibration profiles, which are a more realistic representation of the connector application environment. A simple model is developed which relates the early stage fretting corrosion rate to the threshold vibration levels for the connector, the dynamic characteristics of the connector/wiring configuration, and the vibration profile. A high degree of consistency between this model and the experimental data was demonstrated. Interestingly, regardless of the excitation profile applied to the overall system, the existence of a characteristic vibration threshold at the connector interface was observed.
机译:振动引起的微动腐蚀是汽车应用中的主要问题,通常会导致接触电阻增加和连接器故障。当前,在微动腐蚀期间对连接器的行为进行建模是一件困难的事情,需要许多参数,并且本质上通常是高度非线性的。样品连接器的实验测试是目前评估连接器性能的唯一实用方法。但是,测试可能是一项耗时且不精确的任务。作者的先前工作研究了承受单频振动的连接器的微动行为。实验结果与模拟行为的相关性表明,对于观察到的连接器界面运动的主要模式(摇摆型运动),界面处的相对力矩是观察到的微动率的良好指标。还表明,通过给定的激励水平和频率施加的力矩可以通过仿真合理地预测。当前的工作将这种方法扩展到随机振动曲线,这是连接器应用环境的更真实的表示。开发了一个简单的模型,该模型将早期微动腐蚀速率与连接器的阈值振动水平,连接器/接线配置的动态特性以及振动曲线相关联。该模型与实验数据之间具有高度一致性。有趣的是,无论应用于整个系统的激励曲线如何,都观察到连接器界面处存在特征振动阈值。

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