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Design and Fabrication of Magnetic System Using Multi-Material Topology Optimization

机译:使用多材料拓扑优化设计和制造磁系统

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This paper presents the design and fabrication schemes of a magnetic system consisting of segmented permanent magnet (PM) blocks, back-iron and frame structures. Here, a frame structure aims to bind PM blocks and iron structure. Non-intuitive design of segmented PMs and back-iron are obtained using multi-material topology optimization formulation. Subsequently, a non-magnetic frame structure is designed through a post-processing procedure, which is proposed using the smoothed fields of optimized PM and back-iron densities. Final design results are converted into computer-aided design (CAD) models and fabricated using conventional or additive manufacturing techniques. Segmented PM blocks, and back-iron structures are processed using water-jet cutting and wire electrical discharge machining, respectively. A frame structure is fabricated by additive manufacturing using a multi-jet printing machine. Using the proposed schemes, two magnetic systems are successfully designed and fabricated, respectively, for maximizing the magnetic field inside a rectangular cavity, and maximizing the magnetic force generated with a C-core electromagnet.
机译:本文介绍了由分段的永磁体(PM)块,背铁和框架结构组成的磁系统的设计和制造方案。这里,框架结构旨在结合PM块和铁结构。通过多材料拓扑优化配方获得分段PMS和背铁的非直观设计。随后,通过后处理过程设计了非磁框架结构,其使用优化PM和背铁密度的平滑领域提出。最终设计结果被转换为计算机辅助设计(CAD)模型,并使用常规或添加剂制造技术制造。分段PM块和背铁结构分别使用水射流切割和电线电放电加工处理。通过使用多喷射印刷机的添加剂制造制造框架结构。使用所提出的方案,分别成功地设计和制造了两个磁系统,用于最大化矩形腔内的磁场,并最大化用C芯电磁铁产生的磁力。

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