软磁硅铁FeSi 6.5激光熔化性能评价

N. Urban, Lukas Bauch, Rouven Armbruster, J. Franke
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引用次数: 3

摘要

软磁材料的电磁特性对电动机的效率、运行特性和性能有着决定性的影响。为了尽可能顺利地达到目标标准,对软磁材料的加工技术在准确性、可重复性和质量方面提出了很高的要求。通过不断改进,新型增材制造工艺也能够满足这些要求。在传统工艺达到其技术或经济极限的地方,它们已经可以成为一种实用的替代方案。在粉末床中激光熔化金属是用未成形的金属粉末制造工件的一种工艺。由于其生成特性,新的设计元素可以用来制造轻型电机或以经济的方式小批量生产。然而,该工艺不允许生产层压软磁部件,这会导致涡流损耗增加。为了抵消这些,必须使用具有高比电阻的材料。本出版物介绍了适合该应用的材料的选择,同时考虑到当前的技术状况和在激光束熔化过程中确定材料的程序。这使得增材制造的潜在用户能够估计定制合金的资格所需的努力,并将其用于自己的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Soft Magnetic Ferrosilicon FeSi 6.5 for Laser Beam Melting
The electromagnetic properties of soft magnetic materials are of decisive importance for the efficiency, running characteristics and performance of electric motors. To fulfil the target criteria as favorably as possible, high requirements are placed on the processing techniques of soft magnetic materials with regard to accuracy, reproducibility and quality. Through continuous improvements, novel additive manufacturing processes are also able to meet these requirements. They can already be a pragmatic alternative, where conventional processes reach their technological or economical limits. Laser beam melting of metals in a powder bed is one of the processes in which a workpiece is created from shapeless metal powder. Due to its generative character, new design elements can be utilized to build lightweight motors or to manufacture them economically in small quantities. However, the process does not allow the production of a laminated soft magnetic part, which leads to increased eddy current losses. To counteract these, a material with a high specific electrical resistance has to be used. This publication presents the selection of a material suitable for this application, taking into account the state of the art and the procedure for qualifying the material in the laser beam melting process. This enables potential users of additive manufacturing to estimate the effort for the qualification of a tailor-made alloy and to use it for their own applications.
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