首页> 外文会议>Advances in Cryogenic Engineering Vol.45, Pt.B >USE OF HIGH-TEMPERATURE SUPERCONDUCTING FILMS IN SUPERCONDUCTING BEARINGS
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USE OF HIGH-TEMPERATURE SUPERCONDUCTING FILMS IN SUPERCONDUCTING BEARINGS

机译:高温超导膜在超导轴承中的使用

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We have investigated the effect of high-temperature superconductor (HTS) films deposited on substrates that are placed above bulk HTSs in an attempt to reduce rotational drag in superconducting bearings composed of a permanent magnet levitated above the film/bulk HTS combination. According to the critical state model, hysteresis energy loss is inversely proportional to critical current density J_c, and because HTS films typically have much higher J_c values than those of bulk HTSs, the film/bulk combination was expected to reduce rotational losses by at least one order of magnitude in the coefficient of friction, which in turn is a measure of the hysteresis losses. We measured rotational losses of a superconducting bearing in a vacuum chamber and compared the losses with and without a film present. The experimental results showed that contrary to expectation, the rotational losses are increased by the film. These results are discussed in terms of flux drag through the film, as well as of the critical state model.
机译:我们已经研究了高温超导体(HTS)薄膜沉积在散装HTS上方的基板上的影响,以试图减少由悬浮在薄膜/本体HTS组合上方的永磁体组成的超导轴承的旋转阻力。根据临界状态模型,磁滞能量损失与临界电流密度J_c成反比,并且由于HTS膜的J_c值通常比整体HTS的J_c值高得多,因此预期膜/本体组合将旋转损耗减少至少一个摩擦系数的数量级,这又是磁滞损耗的量度。我们测量了真空室内超导轴承的旋转损耗,并比较了有无膜的情况下的损耗。实验结果表明,与预期相反,薄膜增加了旋转损耗。根据通过薄膜的磁通量以及临界状态模型讨论了这些结果。

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