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Temperature characteristics of sliding friction pair under high-speed and strong-current conditions

机译:高速和强电流条件下滑动摩擦对的温度特性

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To reduce the influence of temperature distribution of pantograph-catenary system on the electrical contact characteristics, a temperature field simulation model was established with COMSOL Multiphysics software. The validity of the model was verified with temperature experiments. Both thermal time constant and steady temperature rise of contact wire were simulated under flexible contact pressure conditions. The thermal time constant decreases gradually and the steady temperature rise firstly decreases then increases with the increase of sliding speed. The thermal time constant are kept constant and steady temperature rise changes slightly with the increase of contact current. When sliding speed and contact current are kept constant, both the thermal time constant and steady temperature rise under flexible contact pressure conditions are smaller than that of under rigid contact pressure conditions. The transient temperature field was also analyzed and the high temperature trailing phenomenon was found and discussed. The conclusions can be used to further research the temperature characteristics of pantograph-catenary system.
机译:为了减少容量触摸扰乱系统的温度分布对电接触特性的影响,建立了COMSOL多体软件的温度场仿真模型。通过温度实验验证了模型的有效性。在柔性接触压力条件下模拟接触线的热时间恒定和稳定的温度升高。热时间常数逐渐降低,并且稳定的温度升高首先降低随着滑动速度的增加而增加。随着接触电流的增加,热时间常数保持恒定且稳定的温度升高。当滑动速度和接触电流保持恒定时,柔性接触压力条件下的热时间恒定和稳定的温度均小于刚性接触压力条件下的温度升高。还分析了瞬态温度场,并发现并讨论了高温尾随现象。结论可用于进一步研究Pantograph-catenary系统的温度特性。

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