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首页> 外文期刊>Journal of Materials Processing Technology >Near net shape production of radially oriented NdFeB ring magnets by backward extrusion
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Near net shape production of radially oriented NdFeB ring magnets by backward extrusion

机译:通过向后挤压生产径向取向NdFeB环形磁体的近最终形状

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Anisotropic NdFeB magnets find application in electric motors where high flux densities combined with high coercivities are required. Such magnets can be produced by hot deformation of nanocrystalline NdFeB alloys. In particular, the backward extrusion process results in radially oriented ring magnets. The hot working process can be carried out in such a way that the ring magnets obtained after cutting off the top and the bottom are suited for direct use on the rotor in an electric motor. This is possible for a wide range of dimensions, which means that the ring magnets can be produced in a near net shape. Especially, smaller wall depths of the rings are realizable compared with sintered magnets. Major benefits are the simpler rotor construction, a greatly reduced rotor assembly time and simpler magnet retention on the rotor due to greater mechanical integrity of the magnetic structure. After a brief explanation of the backward extrusion process, the used dies and the corresponding rings are presented. Finally, the homogeneity of the magnetic properties and of the deformation process are discussed.
机译:各向异性NdFeB磁体可用于需要高通量密度和高矫顽力的电动机中。可以通过纳米晶NdFeB合金的热变形来生产此类磁体。特别地,向后挤压过程产生径向定向的环形磁体。可以以如下方式进行热加工过程,即,在切除顶部和底部之后获得的环形磁体适合于直接用在电动机的转子上。这对于较大的尺寸范围是可能的,这意味着环形磁体可以制成接近最终的形状。特别地,与烧结磁体相比,可以实现环的较小的壁深度。主要优点是转子结构更简单,转子组装时间大大减少,并且由于磁性结构的机械完整性更高,磁体在转子上的保留也更简单。在对后向挤出过程进行了简要说明之后,将介绍使用过的模具和相应的环。最后,讨论了磁特性和变形过程的均匀性。

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