上海交通大学学报(自然版) ›› 2017, Vol. 51 ›› Issue (9): 1090-1096.doi: 10.16183/j.cnki.jsjtu.2017.09.011
杨平1,盛杰1,王禹程2,李柱永1,金之俭1,洪智勇1
出版日期:
2017-09-20
发布日期:
2017-09-20
基金资助:
YANG Ping1,SHENG Jie1,WANG Yucheng2,LI Zhuyong1,JIN Zhijian1,HONG Zhiyong1
Online:
2017-09-20
Published:
2017-09-20
Supported by:
摘要: 采用具有点缺陷含铜稳定层、域缺陷不含铜稳定层和域缺陷含铜稳定层的YBa2Cu3O7δ(YBCO) 高温超导带材,在自场温度77K的液氮环境下通过试验研究了YBCO的非均匀性对其失超传播特性的影响规律,分析了非均匀性YBCO的失超传播特性与缺陷临界电流的关系,对比了具有点缺陷与域缺陷含铜稳定层的YBCO的失超传播特性,探讨了含铜稳定层对YBCO失超传播速度的影响,并将试验结果与其模型计算结果进行对比.结果表明:当具有点缺陷含铜稳定层的YBCO带材传输电流低于缺陷临界电流时,YBCO带材能够正常工作而未发生失超;当具有点缺陷含铜稳定层的YBCO带材传输电流高于缺陷临界电流且小于原带材的临界电流时,点缺陷区域发生失超,但其热点未扩散.
中图分类号:
杨平1,盛杰1,王禹程2,李柱永1,金之俭1,洪智勇1. YBa2Cu3O7δ超导带材非均匀性
对失超传播特性的影响[J]. 上海交通大学学报(自然版), 2017, 51(9): 1090-1096.
?YANG Ping1,SHENG Jie1,WANG Yucheng2,LI Zhuyong1,JIN Zhijian1,HONG Zhiyong1. Quench Propagation Characteristics Influenced by NonUniform Properties of
YBa2Cu3O7δ High Temperature Superconducting Tape
[J]. Journal of Shanghai Jiaotong University, 2017, 51(9): 1090-1096.
[1]林良真, 肖立业.超导电力技术[J].科技导报, 2008, 26(1): 5358. LIN Liangzhen, XIAO Liye.Super conducting power technology[J]. Science & Technology Review, 2008, 26(1): 5358. [2]金建勋, 郑陆海.高温超导材料与技术的发展及应用[J].电子科技大学学报, 2006, 35(4): 612627. JIN Jianxun, ZHENG Luhai. Development and applications of high temperature superconducting material[J].Journal of University of Electronic Science and Technology of China, 2006, 35(4): 612627. [3]肖立业.超导电力技术的现状和发展趋势[J].电网技术, 2004, 28(9): 3337. XIAO Liye.Present station and development trend of superconducting power technology[J].Power System Technology, 2004, 28(9): 3337. [4]唐跃进, 李敬东, 潘垣, 等.超导旋转电机发电机和电动机的研究现状[J].电力系统自动化, 2001, 25(4): 7276. TANG Yuejin, LI Jingdong, PAN Yuan, et al. Development of superconducting rotating machinesgenerator and motor[J].Automation of Electric Power Systems, 2001, 25(4): 7276. [5]WANG Y, WEN J, LI Z Y, et al. Design of a HTS magnet with iron core for DC induction heater[J].IEEE Trans Appl Supercond, 2014, 24(3): 15. [6]WANG X, TROCIEWITZ U P, SCHWARTZ J. Nearadiabatic quench experiments on short YBa2Cu3O7δ coated conductors[J]. J Appl Phys, 2007, 101(5): 110. [7]瞿青云, 马媛媛, 刘华军, 等.YBCO高温超导带材失超传播特性研究[J].低温与超导, 2014, 42(9): 3943. QU Qingyun, MA Yuanyuan, LIU Huajun, et al. Study on the quench propagation properties of YBCO HTS tapes[J]. Cryogenics & Superconductivity, 2014, 42(9): 3943. [8]吴春俐, 白质明, 杨刚, 等.散热环境对高温超导带材失超传播速度的影响[J].稀有金属材料与工程, 2008, 37(4): 6770. WU Chunli, BAI Zhiming, YANG Gang, et al. Effect of heat dissipation medium on quench propagation velocity in high temperature superconducting tapes[J]. Rare Metal Materials and Engineering, 2008, 37(4): 6770. [9]周义刚, 肖立业, 张国民, 等.钇钡铜氧超导带材不均匀性对其过流特性的影响[J]. 中国电机工程学报, 2009, 29(33): 124125. ZHOU Yigang, XIAO Liye, ZHANG Guomin, et al. Influence of inhomogeneous superconducting properties of YBCO HTS tape on overcurrent characteristics[J], Proceedings of the CSEE, 2009, 29(33): 124125. [10]瞿青云, 刘华军, 陈敬林, 等.HTS双饼线圈的加工工艺及实验研究[J].低温与超导, 2013, 41(9): 4246. QU Qingyun, LIU Huajun, CHEN Jinglin, et al. Processing techniques and experimental study on HTS doublepancake coils[J].Cryogenics & Superconductivity, 2013, 41(9): 4246. [11]刘大千, 张志丰, 郭腾炫, 等.一种YBCO带材及其单饼线圈的失超传播特性分析[J]. 低温与超导, 2014, 43(3): 2832. LIU Daqian, ZHANG Zhifeng, GUO Tengxuan, et al. Quench propagation characteristics of YBCO tapes and pancake coils[J].Cryogenics & Superconductivity, 2014, 42(3): 2832. [12]吴春俐, 肖景魁.高温超导体热稳定性的数值仿真及实验[J].东北大学学报, 2008, 29(3): 347350. WU Chunli, XIAO Jingkui. Numerical simulation and experiment on thermal stability of high temperature superconductors[J].Journal of Northeastern University (Natural Science), 2008, 29(3): 347350. [13]WANG X, TROCIEWITZ U P, SCHWARTZ J. Selffield quench behavior of YBa2Cu3O7δ coated conductors with different stabilizers[J]. Supercond Sci Technol, 2009, 22(8): 2124. [14]WILSON M N. Superconducting magnets[M]. Oxford: Clarendon Press, 1983. [15]IWASA Y. Case studies in superconducting magnets[M]. New York: SpringerVerlag, 2009. [16]LACROIX C, LAPIERRE Y, COULOMBEM J, et al. High normal zone propagation velocity in second generation hightemperature superconductor coated conductors with a current flow diverter architecture[J]. Supercond Sci Technol, 2014, 27(5): 055013055019. |
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