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The Characteristics of the Normal-Zone Propagation of the HTS Coils With Inserted Cu Tape Instead of Electrical Insulation

机译:插入铜带而不是电绝缘的高温超导线圈的正区传播特性

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摘要

In the case of motors and generators, the benefits of using superconductors could be represented by the reduction of 50% in both losses and sizes compared to the conventional machines of the same rating. The high temperature superconducting (HTS) coils wound with HTS conductors have very low normal zone propagation velocity (NZPV) and complicated quench behaviors because the conductors have a low thermal conductivity and large specific heat. According to these reasons, in case of HTS coils and magnets, it is difficult to expect the self-protection like as low temperature superconducting (LTS) coils. In this paper, we suggest a method which inserts the Cu tape between turn-turn winding in the HTS coil instead of electrical insulation to improve the self-protection ability of HTS coils. Because the thermal and electrical contacts along the transverse direction are enhanced by inserted Cu tape instead of insulator and the whole thermal stability of HTS coils would be increased. To clarify the quench behavior of this suggested coil, we investigate the normal-zone propagation properties of the fabricated HTS pancake coils wound with 2G conductor and Cu tape under the cryocooled operation using GM cryocooler. The effects of inserted Cu tape and the improved the self-protection ability for the suggested HTS coil will be discussed.
机译:对于电动机和发电机,与具有相同额定值的常规机器相比,使用超导体的好处可以体现为损耗和尺寸减少50%。缠绕有HTS导体的高温超导(HTS)线圈具有非常低的法向区传播速度(NZPV)和复杂的淬火行为,因为导体的导热系数低且比热大。基于这些原因,在HTS线圈和磁体的情况下,很难像低温超导(LTS)线圈一样实现自我保护。在本文中,我们提出了一种在HTS线圈的匝间绕组之间插入铜带而不是电绝缘的方法,以提高HTS线圈的自保护能力。因为通过插入铜带代替绝缘体可以增强沿横向的热和电接触,并且可以提高高温超导线圈的整体热稳定性。为了阐明该建议线圈的淬火行为,我们研究了使用GM低温冷却器在2G导体和铜带缠绕下制造的HTS煎饼线圈的正常区域传播特性。将讨论插入铜带的影响以及建议的HTS线圈的改进的自保护能力。

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