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Evaluation of Impregnation Materials for Thermal Management of Liquid-Cooled Electric Machines

机译:液冷电机热管理用浸渍材料的评价

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摘要

In this paper, the thermal impact of using different impregnation materials on high-performance liquid-cooled electric machines is studied. In this regard, varnish, Epoxylite, and a silicone-based thermally conductive material are considered. To study thermal effects of using different impregnation materials in theory, an advanced lumped-parameter thermal model of the studied electric machines is developed. In addition to the simulation studies, three identical induction machines using the aforementioned materials are manufactured and evaluated. Experimental tests are carried out at a wide range of current magnitudes and cooling conditions. A good agreement between the temperature measurements and corresponding simulation results is observed. It is demonstrated that using innovative thermally conductive materials in the stator slots and the end winding bodies of liquid-cooled electric machines results in a significant reduction in the winding hot spot temperature. Additionally, the influence of the critical parameters on the impregnation material performance, e.g., impregnation goodness and slot fill factor, is studied.
机译:本文研究了使用不同浸渍材料对高性能液冷电机的热影响。在这方面,考虑了清漆,环氧树脂,和基于硅的导热材料。为了从理论上研究使用不同浸渍材料的热效应,建立了所研究电机的高级集总参数热模型。除了模拟研究之外,还制造并评估了使用上述材料的三台相同的感应电机。实验测试是在各种电流幅度和冷却条件下进行的。观察到温度测量结果和相应的模拟结果之间的良好一致性。事实证明,在液冷电机的定子槽和端部绕组体中使用创新的导热材料可显着降低绕组热点温度。另外,研究了关键参数对浸渍材料性能的影响,例如浸渍良
度和缝隙填充率。

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