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Rotor Stress Analysis of a High-Speed Permanent Magnet Machine Considering Multi-Layer and Multi-Angle Winding of Carbon Fiber Sleeve

机译:考虑多层和多角度绕组碳纤维套管的高速永磁机的转子应力分析

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For the design of high-speed permanent magnet (PM) machines (HSPMMs), the first consideration is whether the rotor can meet the stress requirements. In this paper, considering multi-layer and multi-angle winding of carbon fiber sleeve (CFS), the stress of a bread-type rotor of an HSPMM with 80 kW, 60000 rpm is studied in detail. First, the optimization analysis of the rotor stress is carried out to determine the PM material, rotor diameter, CFS thickness, and interference between the CFS and the PM. Then, the temperature field calculation of the HSPMM is performed to analyze the rotor thermal stress more precisely. Finally, the detailed stress analysis of the rotor with multi-layer and multi-angle winding CFS is carried out based on the thermal-stress coupling, and the PM rotors suitable for mass and prototype production are designed respectively.
机译:对于高速永磁体(PM)机器(HSPMMS)的设计,首先考虑是转子是否可以满足应力要求。 本文考虑了多层和多角度绕组碳纤维套管(CFS),详细研究了具有80 kW,60000 rpm的Hspmm的面包型转子的应力。 首先,进行转子应力的优化分析,以确定PM材料,转子直径,CFS厚度和CFS和PM之间的干扰。 然后,进行HSPMM的温度场计算,以更精确地分析转子热应力。 最后,基于热应力耦合执行具有多层和多角度绕组CF的转子的详细应力分析,并且分别设计适合质量和原型生产的PM转子。

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