Towards Fully Additively-Manufactured Permanent Magnet Synchronous Machines: Opportunities and Challenges

F. Wu, A. El-Refaie
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引用次数: 14

Abstract

With the growing interest in electrification and as hybrid and pure electric powertrains are adopted in more applications, electrical machine design is facing challenges in terms of meeting very demanding performance metrics for example high specific power, harsh environments, etc. This provides clear motivation to explore the impact of advanced materials and manufacturing on the performance of electrical machines. This paper provides an overview of additive manufacturing (AM) approaches that can be used for constructing permanent magnet (PM) machines, with a specific focus on additively-manufactured iron core, winding, insulation, PM as well as cooling systems. Since there has only been a few attempts so far to explore AM in electrical machines (especially when it comes to fully additively-manufactured machines), the benefits and challenges of AM have not been comprehensively understood. In this regard, this paper offers a detailed comparison of multiple multi-material AM methods, showing not only the possibility of fully additively-manufactured PM machines but also the potential significant improvements in their mechanical, electromagnetic and thermal properties. The paper will provide a comprehensive discussion of opportunities and challenges of AM in the context of electrical machines.
迈向全增材制造永磁同步电机:机遇与挑战
随着人们对电气化的兴趣日益浓厚,越来越多的应用采用了混合动力和纯电动动力系统,电机设计在满足非常苛刻的性能指标方面面临着挑战,例如高比功率、恶劣环境等。这为探索先进材料和制造对电机性能的影响提供了明确的动机。本文概述了可用于构建永磁(PM)机器的增材制造(AM)方法,特别关注增材制造的铁芯,绕组,绝缘,PM以及冷却系统。由于到目前为止只有少数尝试探索增材制造在电机中(特别是当涉及到完全增材制造的机器时),增材制造的好处和挑战尚未得到全面理解。在这方面,本文提供了多种多材料增材制造方法的详细比较,不仅显示了完全增材制造的PM机器的可能性,而且还显示了其机械,电磁和热性能的潜在显着改进。本文将全面讨论在电机背景下AM的机遇和挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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