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Laser Beam Melting of NdFeB for the production of rare-earth magnets

机译:NdFeB的激光束熔化用于生产稀土磁体

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Concerning rare-earth materials additive techniques like hollow cathode discharging or magnetron sputtering have been used to produce thin films, e.g. for the application in microelectromechanical systems (MEMS). In this paper our investigations in additively processing NdFeB-powder materials by means of laser beam melting in a powder bed (LBM) in order to produce macroscopic, three-dimensional specimens are presented. In this context we explain the advantages of additively manufactured magnets in comparison to conventional production methods. Furthermore different rare-earth-material powders were characterized with respect to their suitability for the LBM process. We describe a melting or sintering of the material at varying process parameters to obtain test cubes. Those specimens were magnetized and their magnetic field was analyzed. Additionally the density and microstructure of the samples was investigated. Subsequently we conclude this paper by presenting future steps of our research.
机译:关于稀土材料,诸如空心阴极放电或磁控溅射之类的添加剂技术已被用于生产薄膜,例如薄膜。适用于微机电系统(MEMS)。在本文中,我们对通过在粉末床(LBM)中进行激光束熔化来对NdFeB粉体材料进行增材加工以产生宏观的三维试样的研究进行了介绍。在这种情况下,我们解释了与常规生产方法相比,增材制造的磁体的优势。此外,就其对LBM工艺的适用性,对不同的稀土材料粉末进行了表征。我们描述了在不同的工艺参数下材料的熔融或烧结以获得测试立方体。这些样品被磁化,并分析了它们的磁场。另外,研究了样品的密度和微观结构。随后,我们通过介绍我们研究的未来步骤来结束本文。

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