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Low-Cost BLDC Claw-Pole Motor Design for Fan Applications with Reduced Cogging Torque and Balanced Axial Forces

机译:用于风扇应用的低成本BLDC爪极电机设计,具有减小的齿槽转矩和平衡的轴向力

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The implementation of skewing to reduce the cogging torque of brushless permanent-magnet motors usually induces axial magnetic forces which can not only cause noise but also decrease the bearing system’s lifetime. This paper proposes an unconventional outer-rotor BLDC claw-pole motor design for sub-fractional horsepower fan applications. Owing to the proposed V-shaped claw-poles, the cogging torque can be reduced through skewing but, at the same time, the axial magnetic forces are balanced. As opposed to other cogging torque reduction and axial force compensation techniques, the proposed design improvements can be included at no increase to the manufacturing cost since they can be implemented at the stage of punching and deep-drawing the stator steel sheet parts. This is essential for cost-driven automotive auxiliary drive applications such as LED headlight fans, sensor blowers, or seat ventilations. The proposed designs are investigated by means of 3-D finite element analyses and measurements using a rheometer. The findings show that the proposed claw-pole shapes can achieve both cogging torque reduction of about 50% and axial force compensation. This is illustrated for a 5500rpm 1W example case motor as part of a low-cost fan application.
机译:为降低无刷永磁电动机的齿槽转矩而实施的偏斜通常会产生轴向磁力,这不仅会产生噪声,还会缩短轴承系统的使用寿命。本文提出了一种适用于小功率马力风扇的非常规外转子BLDC爪极电动机设计。由于提出了V型爪极,可以通过偏斜减小齿槽转矩,但同时平衡了轴向磁力。与其他齿槽转矩减小和轴向力补偿技术相反,由于可以在冲孔和深冲定子钢板零件的阶段实施建议的设计改进,因此不会增加制造成本。这对于成本驱动的汽车辅助驱动应用至关重要,例如LED前灯风扇,传感器鼓风机或座椅通风装置。通过使用流变仪进行3-D有限元分析和测量,对提出的设计进行了研究。研究结果表明,提出的爪极形状可以同时实现约50%的齿槽转矩减小和轴向力补偿。举例说明了在5500rpm 1W的示例壳电机中作为低成本风扇应用的一部分。

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