Performance Test of HTS Superconducting Joint for Persistent Current Operation of REBCO Coil

Kohki Takahashi, S. Awaji
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Abstract

Synopsis: The superconducting joint is a key technology to achieve persistent current operation for MRI and NMR magnets, thereby enabling to obtain higher resolution and sensitivity. A persistent current system including a superconducting joint, a persistent current switch and a double pancake coil fabricated with a REBCO tape was prepared by Furukawa Electric Co., Ltd. The magnetic-field decay behaviors during persistent current operation were observed in external fields of 0 and 1 T at 20 K. In a self-field, the decay rate of the persistent current excited up to 170 A reached 1.2 ppm/h after operating for five days, corresponding to a resistance of 5.1  10-13 . From the current–voltage characteristics obtained from the magnetic field decay, it was found that the decay behavior of the persistent current is dominated by joint resistance in the case of high-load operation, but dominated by the shielding current in the case of low-load region of the operating current.
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REBCO线圈持续电流运行的高温超导接头性能试验
摘要:超导接头是实现MRI和NMR磁体持续电流运行的关键技术,从而获得更高的分辨率和灵敏度。由古川电机株式会社研制的恒流系统包括超导接头、恒流开关和用REBCO胶带制作的双煎饼线圈。在20 K、0和1 T的外场条件下,观察了持续电流工作时的磁场衰减行为。在自场中,工作5天后,激发至170 a的持续电流的衰减率达到1.2 ppm/h,对应的电阻为5.110-13从磁场衰减得到的电流-电压特性来看,在高负载工作时,持续电流的衰减行为主要受联合电阻的影响,而在工作电流的低负载区域,则主要受屏蔽电流的影响。
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