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Optimal Design of an Axial-Flux Switched Reluctance Motor With Grain-Oriented Electrical Steel

机译:方向性电磁钢轴流开关磁阻电机的优化设计

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摘要

This paper employs grain-oriented electrical steel (GOES) in an axial-flux switched reluctance motor (AFSRM) to improve its torque characteristic, taking advantages of the material's excellent magnetic properties in the rolling direction. Based on the study on the parameter and switching characteristics of an AFSRM, GOES can be divided into pieces and arranged in the rotor and stator teeth so that the magnetic flux mainly travels along the rolling direction of the material. AFSRMs with different lamination shapes and deviation angles between the magnetic flux and rolling direction of the GOES have been studied to further improve the output performance; the maximum electromagnetic torque of the proposed design shows a 20.5% increase in comparison with that of the conventional nonoriented electrical steel motors under identical conditions. The rotor retaining ring is composed of epoxy resin lamination to constrain the rotor teeth modules. Thermal and stress analyses under fault conditions are analyzed to verify the reliability of the retaining ring. Furthermore, an AFSRM prototype is built and experiments are conducted to validate the calculated data.
机译:本文在轴向磁通开关磁阻电机(AFSRM)中采用了取向电工钢(GOES),以改善其转矩特性,从而充分利用了材料在轧制方向上的出色磁性能。在对AFSRM的参数和开关特性进行研究的基础上,GOES可以分为几部分并布置在转子和定子齿中,从而磁通量主要沿着材料的轧制方向传播。为了进一步提高输出性能,研究了具有不同叠片形状和GOES的磁通量与轧制方向之间的偏离角度的AFSRM。在相同的条件下,与传统的无方向性钢制电动机相比,所提出的设计的最大电磁转矩显示出20.5%的增长。转子固定环由环氧树脂层压制成,以约束转子齿模块。对故障条件下的热应力分析进行分析,以验证挡圈的可靠性。此外,建立了AFSRM原型,并进行了实验以验证计算的数据。

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