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Influence of gravity and thermodynamics on the sliding electrical contact

机译:重力和热力学对滑动电触点的影响

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The motivation behind this work is to develop a dynamical systems understanding of the wear processes. We present a model for wear particle detachment from a surface of electric brushes and slip ring (collector) in the commutator-and-brush assembly. The geometry of the contact area is analysed and debris shape modification is estimated. The investigation accounts for the dependence of the properties of the sliding contact layer on the deviation of this layer from land contour under Earth's gravity and on the Joule Thomson effect. With stochastic simulations we demonstrate that analytical model of the third body may explain the different lifetime of the electrical brush depending on it position relative to the slip ring axis, and we predict their durabilities.
机译:这项工作的动机是发展对磨损过程的动力学系统理解。我们提出了换向器和电刷组件中电刷和滑环(集电体)表面磨损颗粒分离的模型。分析接触区域的几何形状,并估计碎片形状的变化。研究表明,滑动接触层的性质取决于该层在地球重力作用下与陆地轮廓的偏离以及焦耳·汤姆森效应。通过随机模拟,我们证明了第三主体的分析模型可以根据其相对于滑环轴的位置来解释电刷的不同寿命,并预测其耐用性。

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