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Analysis for electromagnetic performance of PM motor with different metal nano-material bars

机译:不同金属纳米材料棒的永磁电动机电磁性能分析

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With the appearance of high-performance permanent magnet (PM) materials as well as the development of computer technology and nanotechnology and electricity machine theory, scholars have done a lot of research on the self-starting permanent magnet synchronous motor and have made many achievements. Although the starting permanent magnet synchronous motor has many advantages compared with the induction motor, there are also many problems. Since the self-starting motor needs to realise the self-starting and maintaining the synchronous speed operation, its rotor structure design is more complex. The rotor requires the starting winding and the magnets coexist, so there is 'space competition', especially the small motors with high power density. Nowadays, nano-materials are applied on a motor to improve its electromagnetic performance. In this paper, the electromagnetic performance of a PM motor with different metal nano-material bars is researched by finite element analysis (FEA). In this paper, the electromagnetic performance of a PM motor is researched when the rotor bars are with different sizes metal nano-palladium by FEA. The magnetic field distribution, the dynamic speed and torque variation and the eddy current losses are analysed respectively.
机译:随着高性能永磁材料的出现以及计算机技术和纳米技术以及电机理论的发展,学者们对自启动永磁同步电动机进行了大量研究,并取得了许多成就。尽管起动永磁同步电动机与感应电动机相比具有许多优点,但也存在许多问题。由于自启动电动机需要实现自启动并保持同步速度运行,因此其转子结构设计更加复杂。转子需要启动绕组和磁体共存,因此存在“空间竞争”,特别是功率密度高的小型电动机。如今,将纳米材料应用于电动机以改善其电磁性能。通过有限元分析(FEA),研究了具有不同金属纳米材料棒的永磁电动机的电磁性能。本文通过有限元分析研究了不同尺寸的金属纳米钯转子棒的永磁电动机的电磁性能。分别分析了磁场分布,动态速度和转矩变化以及涡流损耗。

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