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Thermal optimization of a tubular permanent magnet linear synchronous motor

机译:管状永磁直线同步电动机的热优化

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摘要

For motor working in high load condition, such as electromagnetic launch motor, the phenomenon of the local overheating exists easily. It makes the thermal capacity of the motor itself reduce, and the efficiency of the traditional water cooling or forced air cooling systems in the iron decline. Against the issue, this paper researched a small proportion of tubular permanent magnet linear synchronous motor (TPMLSM). The temperature calculation model was established combing the methods of thermal circuit and temperature field. The heating and cooling process and their regularity were analyzed. And the optimization of thermal conductivity was obtained by optimizing the insulation to reduce the temperature gradient inside the motor and improve the cooling rate. The temperature rises of the TPMLSM when the methods of the optimization of thermal conductivity, forced cooling and reducing the loss were used. And the effect of reducing temperature rise were comparing, which were expected to be useful for the thermal optimization and reasonable application for the motor in different working condition.
机译:对于在高负载条件下工作的电动机(例如电磁发射电动机),很容易出现局部过热的现象。它使电动机本身的热容量降低,并且传统的水冷却或强制空气冷却系统中的铁效率降低。针对这一问题,本文研究了小比例的管状永磁直线同步电动机(TPMLSM)。结合热回路法和温度场法建立了温度计算模型。分析了加热和冷却过程及其规律。通过优化绝缘层来降低电机内部的温度梯度并提高冷却速度,从而获得了最佳的导热系数。当采用优化导热系数,强制冷却和减少损耗的方法时,TPMLSM的温度会升高。比较了降低温升的效果,有望对不同工况下的电机进行热优化和合理应用。

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