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首页> 外文期刊>IEEE Transactions on Applied Superconductivity >Rotational Test of an Integrated Magnetic Bearing Using Multiple HTS Cubic Bulk Units
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Rotational Test of an Integrated Magnetic Bearing Using Multiple HTS Cubic Bulk Units

机译:使用多个HTS立方体散装单元的集成磁轴承的旋转试验

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摘要

For magnetic bearings combining multiple cubic superconducting bulks, placement is a crucial factor. In this paper, the magnetic bearing surface constructed by arrangement optimization was composed of eight superconducting cubic bulk units. The combined arrangement of cubic superconducting bulks was determined by optimizing the spatial uniformity of the magnetic bearing;s trapped magnetic flux distribution. We constructed a physical model in which a permanent magnet in the form of a floating rotor was sandwiched from above and below by an integrated magnetic bearing surface. Using rotation test equipment and an encoder, we investigated the influence of an optimal arrangement index on rotation loss that occurs due to magnetic flux distribution nonuniformity. In addition, the rotation axis tilt angle due to nonuniform magnetic flux distribution was measured using a laser displacement meter. The advantage of the method proposed in this research is that the magnetic distribution can be controlled optimally depending on the arrangement of the cubic bulk when it is incorporated in various bulk applications, not limited to SMB.
机译:对于组合多个立方超导块的磁轴承,放置是一个关键因素。在本文中,由布置优化构成的磁轴承表面由八个超导立方体单元组成。通过优化磁轴承的空间均匀性来确定立方超导块的组合布置; S捕获的磁通量分布。我们构造了一种物理模型,其中浮动转子形式的永磁体由集成的磁轴承表面夹在上方和下方。使用旋转测试设备和编码器,我们研究了最佳布置指数对由于磁通量分布不均而发生的旋转损耗的影响。另外,使用激光位移计测量由于不均匀磁通量分布引起的旋转轴倾斜角度。本研究中提出的方法的优点在于,当在各种散装应用中结合时,可以根据立方体批量的布置来最佳地控制磁性分布,而不限于SMB。

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