High-Speed Electric Machine with a Speed of 1.2 million rpm

F. Ismagilov, V. Vavilov, D. Gusakov
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引用次数: 5

Abstract

This paper presents the study of microsize high-speed electric machine with a speed of 1.2 million rpm with a power of 100–150 W. The topology of machine is a synchronous electric machine with permanent magnets. The design of the rotor was chosen and calculation of the mechanical strength of the rotor by the finite element method was made. The most suitable type of bearing supports was determined. Dependence of aerodynamic losses on frequency and on radius of the rotor was revealed. Materials of the stator magnetic core and the stator conductors were selected. Electric machine losses were calculated. To evaluate the efficiency of the developed computer models and the calculation algorithm, the experimental verification of the machine (the motor mode) with a rotation speed of 500,000 rpm and a power of 100 W was carried out. The discrepancy between the developed models and experimental data does not exceed 5-7%.
高速电机,转速120万转/分
本文研究了转速为120万转/分,功率为100-150瓦的微型高速电机。机器的拓扑结构是带有永磁体的同步电机。选择了转子的设计方案,并用有限元法对转子的机械强度进行了计算。确定了最合适的轴承支承类型。揭示了气动损失与频率和转子半径的关系。对定子磁芯和定子导体的材料进行了选择。计算了电机损耗。为了评估所建立的计算机模型和计算算法的效率,对转速为50000rpm,功率为100w的机器(电机模式)进行了实验验证。所建立的模型与实验数据的差异不超过5-7%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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