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首页> 外文期刊>Magnetics, IEEE Transactions on >Evaluation of Magnetic Force Distribution and Torque Due to Smooth Interaction Body Force Density in Permanent-Magnet Materials
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Evaluation of Magnetic Force Distribution and Torque Due to Smooth Interaction Body Force Density in Permanent-Magnet Materials

机译:永磁材料中光滑相互作用体力密度引起的磁力分布和转矩的评估

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摘要

A smooth interaction body force density and torque were evaluated in permanent-magnet (PM) systems by using the virtual air-gap scheme coupled with the finite-element method. The virtual air-gap method has been successfully applied to soft magnetic materials for evaluating the force density, global contact force, and optimal shape design. These force-calculating methods employing the virtual air-gap scheme have been called generalized methods. Unlike the soft magnetic materials, there have been few research works related to force density and global force in PMs. We evaluated the interaction body force density, which represents the smooth and pure interacting force field between PMs and other magnetic components, by withdrawing the self-body force density from the total body force density. From this result, the smooth interaction body force density can explicitly show the trend of resulting mechanical torque. The torque by the self-body force density, of course, was zero and the torque, here, was evaluated by using the total body force density. From the previous results, the torque by total body force density shows some numerical instability, and we used edge-force components in each element for removing the numerical instability. Finally, the global quantities, such as global force from the smooth interaction body force density and torque from the total body force density, were successfully evaluated and verified by the conventional force calculating methods, such as the Maxwell stress tensor method and the virtual work principle method.
机译:通过使用虚拟气隙方案结合有限元方法,在永磁(PM)系统中评估了平滑的相互作用体力密度和扭矩。虚拟气隙方法已成功应用于软磁材料,以评估力密度,整体接触力和最佳形状设计。这些采用虚拟气隙方案的力计算方法被称为通用方法。与软磁材料不同,关于永磁体中的力密度和整体力的研究很少。我们通过从整体体力密度中提取自身体力密度来评估相互作用体力密度,该相互作用体力密度表示PM与其他磁性组件之间的平滑且纯净的相互作用力场。根据此结果,平滑的相互作用体力密度可以明确显示出产生的机械转矩的趋势。当然,基于人体力密度的扭矩为零,并且这里的扭矩通过使用总人体力密度进行评估。从先前的结果来看,通过整体力密度得出的扭矩显示出一些数值不稳定,我们在每个元素中使用了边缘力分量来消除数值不稳定。最后,通过麦克斯韦应力张量法和虚拟工作原理等传统的力计算方法,成功地评估和验证了整体量,例如来自平滑相互作用体力密度的全局力和来自总体力密度的扭矩。方法。

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