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内/外部励磁方式下高温超导环的俘获场特性*
0
(华北电力大学)
摘要:
高温超导磁体在闭环运行时,可以提供稳定磁场,但是由于高温超导带材无法实现无阻焊接,成为高温超导磁体闭环运行的技术瓶颈。本文利用第二代高温超导带材制备闭环超导环,采用内部励磁和外部励磁对超导环进行励磁,在液氮温度中(77 K)测量超导环的中心俘获磁场。结果表明超导环在内部励磁俘获的磁场值比外部励磁俘获的磁场值高;外部励磁中,超导环中插入铁芯柱能提高俘获场;内部励磁中,超导环在螺线管闭环运行俘获的磁场值比开环运行俘获的磁场值高。结果对于高温超导闭环磁体励磁和高温超导带材磁通动力学研究具有很重要参考价值。
关键词:  超导环,内部励磁,外部励磁,场冷,零场冷
DOI:
投稿时间:2019-07-01修订日期:2020-02-12
基金项目:国家自然科学基金
Trapped Field Characteristics of A High Temperature Superconducting Ring under Inner/Outer Excitation*
QIAO Yukai1, WANG Yinshun1, KANG QiangQiang1, YUAN Xi2, PI Wei2
(1.State Key Laboratory of New Energy Renewable Power System,North China Electric Power University;2.Beijing Key Laboratory of HV and EMC,North China Electric Power University)
Abstract:
High temperature superconducting (HTS) magnets provide a stable magnetic field when operating in persistent current mode (PCM). However, due to immature joint technique without resistance, it becomes the technical bottleneck of HTS magnet to operate in PCM. In this paper, the second-generation HTS tape is used to prepare for the closed-loop superconducting ring. The superconducting ring is energized by inner excitation and outer excitation respectively. During outer excitation, two excitation methods, FC and ZFC excitation, were used to magnetize superconducting ring. In order to further study characteristics of trapped field, an iron core was inserted into superconducting ring. In terms of inner excitation, the coil section a solenoid. A vertical solenoid and a closed-loop solenoid were used to magnetize superconducting ring respectively. Meanwhile, the central trapped magnetic field of the superconducting ring is measured by Gaussmeter at liquid nitrogen temperature (77 K). The results show that the the trapped field of the superconducting ring in inner excitation is higher than that of the outer excitation. For the outer excitation, the insertion of an iron core in the superconducting ring can increase the trapped field. For the inner excitation, the trapped field magnetized by the closed-loop solenoid is higher than that of the trapped field magnetized by the vertical operation. The results have significant reference value for magnetizing HTS magnet and HTS flux dynamics.
Key words:  superconducting ring, internal excitation, external excitation, field cooling (FC), zero field cooling (ZFC)

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