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Finite Element Simulation on Temperature Field Couple under Contact Resistor Thermal and Friction Thermal in Friction and Wear

机译:电阻电阻热和摩擦热膜下温度场耦合的有限元模拟

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Based on finite element simulation, the temperature field model for the frictional pair of third rail and collector shoe under the coupling of contact resistor thermal and friction thermal was established. The method of coupling the two kinds of thermal was given in detail, the temperature field was calculated, and the maximum coupled temperature changing under different electric current, velocity, and displacement of the model was studied. The results show that the temperature raising effect of friction thermal and contact resistor thermal is different. In the process of mechanical friction without electric current, the highest temperature is in the contact center line, the temperature distribution expands around the contact zone in descending tendency. But in couple condition, the temperature distribution with electric current expands around the contact point in descending tendency. In the two conditions, the temperature gradients are all becoming smaller. The maximum coupled temperature increases with the increasing of the electric current, and decreases with the increasing of the velocity under the constant displacement and normal force. The maximum coupled temperature increases linearly with the increasing of displacement under constant electric current, velocity and normal force.
机译:基于有限元仿真,建立了接触电阻热和摩擦热耦合下摩擦摩擦对第三轨和集电极鞋的温度场模型。详细给出了耦合两种热的方法,研究了温度场,研究了在不同电流,速度下改变的最大耦合温度和模型的位移。结果表明,摩擦热和接触电阻热的温度提高效果是不同的。在没有电流的机械摩擦过程中,最高温度在接触中心线中,温度分布在下降趋势中围绕接触区膨胀。但是对于夫妻条件,电流的温度分布在下降趋势中围绕接触点膨胀。在两个条件下,温度梯度都变小。随着电流的增加而增加,最大耦合温度随着恒定位移和正常力下的速度增加而降低。最大耦合温度随着恒定电流,速度和正常力下的位移而导致线性增加。

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