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Improvetnent of the magnetic properties of injection molded polymer bonded magnets

机译:改善注模聚合物粘结磁体的磁性能

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Polymer bonded, injection molded magnets show great potential in their application in electric drives. Compared to conventional sintered magnets, the advantages of injection molded polymer bonded magnets are the freedom of design to produce complex shapes and complex magnetizing structures, as well as the option of integrating other functional parts such as shafts, bushings or gears directly in one processing step during injection molding. However, in comparison to conventional sintered magnets, polymer bonded magnets have lower magnetic properties due to the content of the polymer matrix. In order to improve the properties of polymer bonded magnets generally the filler content and the orientation degree of the particles must be increased. However, the magnetic properties of polymer bonded magnets depend on many factors with complex interactions such as the filler content, the orientability of the filler particles, the properties of the magnetic filler itself, processing parameters and the magnetic field inside of the cavity. The magnetic field in the cavity can be improved by guiding the magnetic flux in an optimal way by using tool materials with defined magnetic properties. This paper deals with the improvement of the magnetic properties of polymer bonded magnets. Thereby, the improvement of the tool design and thus, the characterization of the magnetic properties of different tool materials are of particular importance.
机译:聚合物粘结的注模磁铁在电驱动中的应用显示出巨大的潜力。与传统的烧结磁体相比,注模聚合物粘结磁体的优点是设计自由,可以生产复杂的形状和复杂的磁化结构,并且可以选择在一个处理步骤中直接集成其他功能部件,例如轴,衬套或齿轮在注塑过程中。然而,与常规的烧结磁体相比,由于聚合物基体的含量,聚合物粘结磁体具有较低的磁性能。为了改善聚合物粘结磁体的性能,通常必须增加颗粒的填料含量和取向度。然而,聚合物粘结磁体的磁性取决于许多因素之间的复杂相互作用,例如填料含量,填料颗粒的定向性,磁性填料本身的性质,加工参数和空腔内部的磁场。通过使用具有定义的磁性的工具材料以最佳方式引导磁通量,可以改善空腔中的磁场。本文致力于改善聚合物粘结磁体的磁性能。因此,工具设计的改进以及因此不同工具材料的磁性能的表征特别重要。

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