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Additive Manufacturing of Neodymium-Iron-Boron Permanent Magnets

机译:添加剂制造钕 - 铁 - 硼永磁体

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Additive Manufacturing (AM) process technologies gain increased degree of technical maturity through the implementation of quality control mechanisms, fully automated production systems as well as increasing knowledge about the effects during the build-up processes. Nevertheless, the main focus of current research and development activities is set on the processing of conventional construction materials with sufficient mechanical properties. The implementation of additional, mechatronic features, e.g. optic or magnetic functions, is not well investigated yet. But as already demonstrated with printed electronics, which are decisive for manufacturing antenna structures in modern consumer electronics like smartphones, additional functionality can lift the potentials of AM to a new level. Mechatronic functionalities require a smart combination of different functional materials that are not commercially available for AM processes yet. Within this paper, a survey of the possibilities of printing rare earth permanent magnets with different process technologies is presented. The technology with the highest magnetic performance is presented more in detail and a concept for further increasing the magnetic performance is outlined.
机译:添加剂制造(AM)过程技术通过实施质量控制机制,全自动生产系统以及增加了对积累过程中的效果的知识来增加技术成熟程度。尽管如此,目前研究和开发活动的主要重点是在具有足够的机械性能的传统建筑材料的加工方面设立了常规建筑材料。实施额外的机电特征,例如,光学或磁性功能尚未得到很好的研究。但是已经用印刷电子产品展示,这是在智能手机等现代消费电子产品中制造天线结构的决定性的决定性,额外的功能可以将AM的潜力提升到一个新的水平。机电统计功能需要不同的不同功能材料的智能组合,其不可用于AM过程。在本文中,提出了一种用不同工艺技术印刷稀土永磁体的可能性调查。概述了具有最高磁性性能的技术,并概述了进一步提高磁性性能的概念。

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