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Optimization Design of Rotor Structure for High Speed Permanent Magnet Machines

机译:高速永磁电机转子结构的优化设计

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Permanent magnet (PM) machine is especially being employed in high speed machines due to its simple structure and high power density. Nowadays, the sintered neodymium-iron-boron (Nd-Fe-B) material is used in most of PM machines. This kind of PM material has large compression strength but small tensile strength, and can not withstand the large centrifugal force due to the high rotation speed. A nonmagnetic steel enclosure is needed to cover the PM material. The tensile press of PM can be reduced by pre-pressure applied to the outer surface of the PM through shrink-fitting into the enclosure. In this paper, the comprehensive optimization design of PM rotor structure is introduced with multiple constraints, such as deformation, stress and critical speed. The capacity of enclosure is the optimal goal. By finite element non-linear contact and optimization analysis, the optimized result for a high speed PM machine with rated speed of 60 000rpm is presented.
机译:由于其简单的结构和高的功率密度,永磁(PM)机器特别用于高速机器。如今,大多数PM机器都使用烧结钕铁硼(Nd-Fe-B)材料。这种PM材料的抗压强度大,抗拉强度小,并且由于转速高而不能承受较大的离心力。需要使用非磁性钢外壳来覆盖PM材料。可以通过热缩配合到外壳中来对PM的外表面施加预压力,从而降低PM的拉伸压力。本文介绍了永磁转子结构在变形,应力和临界转速等多个约束条件下的综合优化设计。外壳的容量是最佳目标。通过有限元非线性接触和优化分析,给出了额定转速为60 000rpm的高速永磁电机的优化结果。

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