Design and Performance Analysis of Permanent Magnet Claw Pole Machine with Hybrid Cores

Chengcheng Liu;Zheng Chao;Shaopeng Wang;Youhua Wang
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Abstract

Permanent magnet claw pole machine (PMCPM) is a special kind of transverse flux permanent magnet machine. Compared with other electrical machines, it has the advantages of high torque density and high efficiency for high speed operation. However, because of its complex irregular structure, the manufacturing process using silicon sheets is complicated. Soft magnetic composite material (SMC) is manufactured by powder metallurgy technology, which can produce various shapes of stator core structures, so it is easier to produce various irregular shapes of the stator core. However, the raw SMC material is relatively expensive, and the mechanical strength of SMC is weak. In this paper, a PMCPM with hybrid cores is proposed. With the adoption of hybrid silicon sheet - SMC cores and amorphous alloy - SMC cores, the torque ability of PMCPM can be improved greatly and it can have higher efficiency for more wide operation frequency. Meanwhile, its mechanical strength has been improved and it can be designed for high torque direct drive applications as it is a modular machine. Furthermore, three methods are proposed to reduce the additional eddy current loss which resulted from the employment of hybrid cores in PMCPM.
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混合铁心永磁爪极电机的设计与性能分析
永磁爪极机是一种特殊的横向磁通永磁电机。与其他电机相比,它具有转矩密度高、高速运行效率高的优点。然而,由于其复杂的不规则结构,使用硅片的制造过程是复杂的。软磁复合材料(SMC)采用粉末冶金技术制造,可以生产各种形状的定子铁芯结构,因此更容易生产各种不规则形状的定子铁心。然而,SMC原材料相对昂贵,并且SMC的机械强度较弱。本文提出了一种具有混合核心的PMCPM。采用硅片-SMC芯和非晶合金-SMC芯的混合材料,可以大大提高PMCPM的转矩能力,并且可以在更宽的工作频率下具有更高的效率。同时,它的机械强度得到了提高,可以设计用于高扭矩直接驱动应用,因为它是一种模块化机器。此外,提出了三种方法来减少PMCPM中使用混合芯所产生的额外涡流损耗。
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