Design, construction, and operation of a 2 T 240 mm conduction-cooled defect-irrelevant winding (RE) Ba2Cu3O7−x magnet

Author:

Bong Uijong1ORCID,Choi Kibum1,Kim Jaemin1ORCID,Bang Jeseok1ORCID,Lee Jung Tae1ORCID,Im Chaemin1ORCID,Park Jeonghwan1ORCID,Yoon Jonghoon1ORCID,Kim Geonyoung1ORCID,Ku Hwanmo2ORCID,Kang Wonkook2,Hahn Seungyong1ORCID

Affiliation:

1. Department of Electrical and Computer Engineering, Seoul National University, Gwanak-ro 1, Gwanak-gu, Seoul 08826, South Korea

2. Hanmi Techwin Co., Ltd., 45, Gongdan 1-daero 195 beon-gil, Siheung-si, Gyeonggi-do 15083, South Korea

Abstract

In order to explore the applicability of superconducting magnets in a magnetic field range of 3 T or less, where superconducting magnets have not been much used so far, a prototype magnet development project has been launched in collaboration with Hanmi Techwin Corporation and Seoul National University. As a result of the project, here we report the design, construction, and operation results of a 2 T 240 mm defect-irrelevant winding (DIW) (RE) Ba2Cu3O7− x (REBCO) magnet. First, design goals were set considering its potential usage in industrial fields, and a 2 T 240 mm-bore multi-width no-insulation high-temperature superconductor magnet was designed accordingly. Based on the design, a total of 15 double pancake (DP) coils were wound, regardless of defects in REBCO tapes, and assembled together. After being installed in a conduction cooling system, the magnet was tested at a temperature of <20 K, and a magnetic field of 2 T at the magnet center was successfully generated with a total of four DP coils containing multiple defects. Based on the experimental results, the additional considerations required for the DIW approach at the magnet level are discussed.

Funder

National Research Foundation of Korea

Ministry of SMEs and Startups

Publisher

AIP Publishing

Subject

Instrumentation

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