Investigation of magnetic performance on the cylinder-shaped PM type linear Halbach array assembled by 45 degree rotating arrangement

Toshiki Itasaka, Y. Ishiguro, Kotaroh Shinozaki, J. Watanabe, Daichi Wakamatsu, A. Ito, Haruhiko Suzuki
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引用次数: 2

Abstract

The purpose of this study is to investigate high performance of non-contact drive using the novel linear Halbach array composed of cylinder-shaped PMs with characteristics of magnetic field slide and constructive flexibility. The structural feature of Halbach arrangement using cylinder-shaped PM is that the arranged permanent magnets are not in contact with each other. In case of the dimensions and magnetic properties of the cylinder-shaped PM are identical, the characteristic of the magnetic field of the novel linear Halbach array depends on the clearance of the arrayed cylinder-shaped PMs. Furthermore, since this model can configure not only the typical 90-degree rotating arrangement but also 45-degree and 60-degree rotating arrangements, the characteristics of the magnetic field due to these parameters are also of interest. In this paper, we show some complicated magnetic field characteristics and features in a 45- and 60-degree rotating arrangement model compared to the magnetic characteristics of a typical 90-degree arrangement in a flat model of a cylinder-shaped PM linear Halbach array. On these simulation results, from the viewpoint of non-contacting magnetic suspension due to the pinning effect of the flux of bulk HTS, we consider a feature of the magnetic field formation depending on the magnetic pole rotational angle arrangement.
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45度旋转组合圆柱形PM型线性哈尔巴赫阵列的磁性能研究
本研究的目的是利用具有磁场滑动和结构柔性特性的圆柱形永磁元件组成的新型线性Halbach阵列来研究非接触驱动的高性能。采用圆柱形永磁材料的哈尔巴赫排列的结构特点是排列的永磁体彼此不接触。在圆柱形永磁材料的尺寸和磁性能相同的情况下,新型线性哈尔巴赫阵列的磁场特性取决于阵列圆柱形永磁材料的间隙。此外,由于该模型不仅可以配置典型的90度旋转排列,还可以配置45度和60度旋转排列,因此这些参数引起的磁场特性也很有趣。在本文中,我们展示了在45度和60度旋转排列模型中的一些复杂的磁场特性和特征,并与典型的90度排列的圆柱形PM线性Halbach阵列的平面模型中的磁场特性进行了比较。在这些模拟结果的基础上,从体高温超导磁通量钉钉效应导致的非接触式磁悬浮角度出发,考虑了磁极旋转角排列对磁场形成的影响。
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