材料科学
表征(材料科学)
融合
牵引(地质)
环面
机械工程
复合材料
合金
工作(物理)
巴(单位)
磁性合金
冶金
材料性能
磁铁
磁场
激光器
压缩(物理)
工程制图
电动机
粉末冶金
作者
Gabriele Puccio,Giampaolo Devito,Viviana La Russa,Giulia Colombini,Elena Bassoli,Davide Barater,Stefano Nuzzo
标识
DOI:10.1109/tte.2026.3671445
摘要
This work presents a comprehensive experimental characterization of a FeSi 2.9 soft magnetic alloy produced by Laser Powder Bed Fusion (L-PBF), aimed at assessing its state-of-the-art and evaluating its suitability for electrical machine cores. Toroidal and bar specimens are fabricated with two build orientations (0° and 90°) and analyzed in both as-built and heat-treated conditions through microstructural, magnetic, and electrical measurements. The experimentally derived magnetic properties were implemented in a finite-element model (FEM) of a traction motor for a Formula Student racing car. Despite expected limitations, the results demonstrate encouraging performance and highlight the potential of FeSi 2.9 for future additively manufactured cores, provided that further improvements in material formulation, printing process, and loss-mitigation strategies are achieved.
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