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Analysis of axial field magnetic gears with Halbach arrays

机译:用Halbach阵列分析轴向磁场齿轮

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Magnetic gears can scale the torque and speed of rotary systems, while avoiding problems associated with transferring torque through physical contact. This work uses 3D finite element analysis to parametrically characterize the performance benefits which can be obtained from applying Halbach magnet arrays to axial field magnetic gears. It is found that Halbach arrays decrease the flux density in the adjacent back iron, allowing the thickness of these yokes to be reduced. Also, using Halbach arrays increases the magnitude of the desired magnetic flux spatial frequencies in the air gaps, increasing torque, and decreases the magnitude of undesired spatial frequencies, decreasing torque ripple. Additionally, the use of Halbach arrays on both rotors increased the torque volumetric torque density for two different design points by 43.6% and 65.7% to 183.9 and 155.8 kN???m/m3, respectively, and decreased the cogging torque on both rotors.
机译:电磁齿轮可以调节旋转系统的扭矩和速度,同时避免与通过物理接触传递扭矩相关的问题。这项工作使用3D有限元分析来参数化表征性能优势,这可以通过将Halbach磁体阵列应用于轴向磁场磁力齿轮获得。发现哈尔巴赫阵列降低了相邻背铁中的磁通密度,从而减小了这些磁轭的厚度。而且,使用哈尔巴赫阵列增加了气隙中期望的磁通空间频率的大小,从而增加了转矩,并且减小了不期望的空间频率的大小,从而减少了转矩脉动。另外,在两个转子上使用Halbach阵列使两个不同设计点的转矩体积转矩密度分别增加了43.6%和65.7%,分别为183.9和155.8kN·m / m3,并减小了两个转子上的齿槽转矩。

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