22–27 Sept 2019
Hyatt Regency Hotel Vancouver
Canada/Pacific timezone

Wed-Af-Or14-08: Fabrication and Test of ϕ35 mm Iron-Based Superconductor Coils

25 Sept 2019, 17:45
15m
Regency CD

Regency CD

Speaker

Dr Zhan Zhang (IHEP, Chinese Academy of Sciences (CAS) )

Description

Iron-based superconductor (IBS) is expected to be the next generation high temperature superconductor with their potential good properties for the high-field application. This study focus on exploration of the characteristics of IBS coils at high field and development of the IBS coil fabrication technology. A series of ϕ35 mm IBS coils including single pancake (SPC) and double pancakes (DPC) were designed and winded with the 7-filamentary Ba1-xKxFe2As2 (Ba122) tape which was produced by the Institute of Electrical Engineering, Chinese Academy of Sciences (IEE-CAS). The IBS coils were divided into 3 groups according to the different fabrication processes. The tests of the IBS coils were firstly carried out at 4.2 K and 10 T background field. The highest quench current of the coils at 10 T is 68.4 A, which is about 79% of the quench current at self-field and about 90% of the critical current of the short sample at 10 T. Then, two SPCs were selected and tested at 4.2 K at 24 T. The highest quench current of the coils at 24 T is 25.6 A, which is about 39% of the quench current at self-field. The test results were presented and analyzed with respect to the different fabrication processes.

Authors

Dr Zhan Zhang (IHEP, Chinese Academy of Sciences (CAS) ) Dongliang Wang (Institute of Electrical Engineering, CAS) Dr Shaoqing Wei (IHEP, Chinese Academy of Sciences (CAS) )

Co-authors

Dr Lingling Gong Dr Donghui Jiang Fang Liu (CAS Technical Institute of Physics and Chemistry) Huajun Liu (Chinese Academy of Sciences) Prof. Quanling Peng Mrs Chao Tian Mrs Yingzhe Wang Mr Xiangchen Yang Xianping Zhang (Institute of Electrical Engineering, Chinese Academy of Science) Mr Zhen Zhang Yanwei Ma (Institute of Electrical Engineering, Chinese Academy of Sciences) Qingjin Xu (IHEP)

Presentation materials