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Concentrated Winding Axial Flux Permanent Magnet Motor with Plastic Bonded Magnets and Sintered Segmented Magnets

机译:具有塑料粘合磁铁和烧结分段磁铁的集中绕组轴向磁通永磁电机

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Direct drive axial flux permanent magnet (PM) motors are a cost effective and an energy saving choice for industrial use. Open slots make concentrated winding machines a favourable configuration with respect to manufacturing. However, open slots expose rotor surface magnets to large flux pulsations and the losses of sintered magnets may not be neglected. Plastic bonded magnets have very low eddy current losses but other magnetic properties of such magnet materials are not satisfactory at the moment. Divided sintered neodymium iron boron (NdFeB) may be used instead but the magnet configuration must be carefully analyzed to attain an acceptable eddy current losses level in the magnets. This paper addresses permanent magnet rotor constructions, which eliminate or remarkably reduce eddy-current losses in the magnets of a 2500 min~(-1)/3000 min~(-1), 37 kW permanent magnet synchronous motor with concentrated windings. Different magnet materials, such as plastic-bonded Neo-magnets and sintered segmented NdFeB-magnets are evaluated. Also a prototype motor with plastic bonded magnets has been built. Analytical Matlab- and finite-element-method-based (Flux2D/3D by Cedrat) programs are used in the calculations. The permanent magnets should be segmented into many small sections in the Machine which the flux pulsations in the magnets are high.
机译:直接驱动轴向磁通永磁体(PM)电机是一种成本效益,工业用量的节能选择。开放式插槽使集中的绕线机相对于制造有利的配置。然而,开口槽将转子表面磁体暴露于大的磁通脉动,并且烧结磁体的损耗可能不会被忽略。塑料粘合磁铁具有非常低的涡流损耗,但此时,这种磁体材料的其他磁性性能也不令人满意。可以使用分开的烧结钕铁硼(NDFEB),但必须仔细分析磁体配置以获得磁体中可接受的涡流损耗水平。本文涉及永磁转子结构,消除了2500分钟〜(-1)/ 3000分钟〜(-1),37 kW永磁同步电动机的磁体中的磁体中的磁铁中的涡流损耗,具有集中绕组。评估不同的磁体材料,例如塑料粘合的新磁体和烧结分段的NdFeB-磁体。此外,建造了具有塑料粘合磁铁的原型电机。基于分析MATLAB和有限元方法(CEDRAT的FLUX2D / 3D)程序用于计算中。永磁体应在机器中分段成许多小部分,磁体中的磁通脉动高。

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