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Sinusoidal Shaped Surface Permanent Magnet Motor Using Cold Spray Additive Manufacturing

机译:使用冷喷涂增材制造的正弦形表面永磁电动机

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With the global trend towards electrification of transport, the interest in various configurations of electric motors is growing. Several applications require low torque pulsations as it can lead to mechanical vibrations and acoustic noise. Optimization of the shape of the rotor permanent magnet (PM) has been the most effective technique for reducing torque pulsations. Unfortunately, the low versatility of the motor magnet fabrication technologies limits the development of new motor geometries. Cold spray additive manufacturing is used for shaping PMs for the direct fabrication of electric motor parts without the need for additional assembly steps. This fabrication technique allows an increase in the design flexibility of electrical machine geometries targeting improved performance. This paper presents rotor PM shaping design for radial flux inner rotor surface permanent magnet synchronous machines (SPMSM). PMs being shaped according to a sinusoid along the axial direction while the thickness of the magnet is kept uniform along the radial direction. The performance of the machine with sinusoidal shaped rotor PM (Model-B) is compared against a conventional rectangular shaped rotor PM (Model-A) design. The effect of sinusoidal shaped rotor PM shape on flux linkage, load torque, cogging torque and back EMF is analyzed and simulated using the 3-D finite-element method for both models. Also, the magnetization current magnitude required to completely magnetize the rotor PM fabricated using cold spray additive manufacturing is calculated.
机译:随着运输电气化的全球趋势,人们对各种配置的电动机的兴趣与日俱增。一些应用场合要求低转矩脉动,因为它会导致机械振动和声音噪声。优化转子永磁体(PM)的形状已成为减少转矩脉动的最有效技术。不幸的是,电动机磁体制造技术的低通用性限制了新电动机几何形状的发展。冷喷涂增材制造用于使PM成型,以直接制造电动机零件,而无需额外的组装步骤。这种制造技术允许提高针对改进性能的电机几何形状的设计灵活性。本文介绍了用于径向磁通内转子表面永磁同步电机(SPMSM)的转子PM成形设计。在沿磁体的厚度沿径向保持均匀的同时,永磁体沿轴向根据正弦形状成形。将具有正弦形转子PM(型号B)的机器的性能与常规的矩形转子PM(型号A)的设计进行了比较。使用3-D有限元方法对两种模型的正弦形转子PM形状对磁链,负载转矩,齿槽转矩和反电动势的影响进行了分析和模拟。而且,计算出完全磁化使用冷喷涂增材制造法制造的转子PM所需的磁化电流大小。

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