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Low-Field Alignment of Anisotropic Bonded Magnets for Additive Manufacturing of Permanent Magnet Motors

机译:各向异性粘合磁体的低场对准,用于永磁电动机的添加剂制造

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摘要

Additive manufacturing techniques for fabricating bonded magnets have the potential to reduce manufacturing cost and time-to-market of products and address the criticality of rare-earth elements (REEs), which is a concern for economic design of dependent applications such as permanent magnet machines. We investigated the magnetic alignment of anisotropic bonded magnet material comprising 65vol.% Nd-Fe-B in nylon-12 produced by extrusion in a 20-W brushless direct current surface permanent magnet motor for submersible water pump application using finite element analysis. The results predict that sufficient alignment for this application could be obtained at low alignment fields ((0)H1T) with a reduction in the volume of critical materials by up to 40% compared with isotropic permanent magnets. This demonstrates the economic feasibility of incorporating a magnetic alignment field source into additive manufacturing systems for bonded magnets, and the potential of aligned anisotropic bonded magnets to address REE criticality.
机译:用于制造粘合磁体的添加剂制造技术有可能降低产品的制造成本和市场上市,并解决稀土元素(REES)的临界性,这是永久磁铁机等依赖应用的经济设计的关注。我们研究了通过在20-W无刷直流表面永磁电动机中挤出的尼龙-12制备的尼龙-12中的各向异性粘合磁体材料的磁对准,用于使用有限元分析。结果预测该申请的足够的对准可以在低对准场((0)H1T)中获得,与各向同性永磁体相比,临界材料的体积减少至多40%。这证明了将磁对准场源掺入添加到粘合磁体的添加剂制造系统中的经济可行性,以及对准各向异性键合磁体的电位,以解决重新关键性。

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