磁铁
扭矩
定子
材料科学
功率(物理)
机械工程
转矩密度
计算机科学
汽车工程
表面贴装技术
功率密度
工程类
电磁线圈
芯(光纤)
控制理论(社会学)
电感
功率损耗
磁选
有限元法
机器控制
电子工程
作者
Ren Tsunata,Masatsugu Takemoto,Jun Imai,Tatsuya Saito,Tomoyuki Ueno
标识
DOI:10.1109/tie.2025.3629360
摘要
This article proposes a novel transverse- and axial-flux permanent magnet machine (T-AFPM) using a C-type stator core for reducing system size via an ultra-flat shape. With an axial length of only 19.7 mm, this ultra-flat shape contributes markedly to reducing system size in industrial applications such as water pumps. In general, AFPMs are suitable for a flat shape because of their high torque density with a short axial length. However, it is difficult to use conventional AFPMs to achieve an ultra-flat shape because of structural problems and insufficient performance. By contrast, the proposed T-AFPM achieves a highly manufacturable structure, high efficiency, and the required output power despite its extremely short axial length. Herein, the T-AFPM is compared with conventional AFPMs with various configurations by means of three-dimensional finite-element analysis, and experiments on a T-AFPM prototype are reported. From the simulation and experimental results, the proposed T-AFPM shows high efficiency (IE5 class), the required output power, and suitable structural properties for an ultra-flat shape.
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