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Modelling the Mechanical and Thermal Properties of Compressed Stator Windings

机译:建模压缩定子绕组的机械和热性能

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This paper discusses coil pressing through which stator windings are compressed at high pressures to enhance the slot fill factor of electrical machines. Deterioration of insulation in compressed windings is investigated by performing quasistatic explicit dynamics finite element simulations. The results obtained from the proposed method are further investigated experimentally to validate the durability of the compressed coils. It is shown that stator windings can be compressed to a certain degree without observing material failure. In order to demonstrate the thermal advantages of densely packed stator windings, both steady state thermal finite element analysis (FEA) simulations and semi-analytical methods have also been studied. A good agreement between analytical and FEA simulations is obtained. It is noted that steady state thermal finite element modeling could be used to predict effective thermal conductivity of stator windings for different slot fill factors.
机译:本文讨论了线圈压制,定子绕组在高压下压缩,以增强电机的槽填充因子。通过执行Quasistatic显式动态有限元模拟来研究压缩绕组中绝缘的劣化。从实验研究中进一步研究了从所提出的方法获得的结果以验证压缩线圈的耐久性。结果表明,定子绕组可以压缩到一定程度而不观察材料故障。为了证明密集包装定子绕组的热优势,还研究了稳态热有限元分析(FEA)模拟和半分析方法。获得分析和FEA模拟之间的良好一致性。应注意,稳态热有限元建模可用于预测定子绕组的有效导热率,用于不同的槽填充因子。

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