Superconducting Joint for REBCO-Coated Conductors without Oxidization Annealing via Low-temperature Synthesis Reaction Using Potassium Hydroxide

Author:

FUNAKI Shuhei1,MIYACHI Yugo12,YAMADA Yasuji1

Affiliation:

1. Department of Physics and Materials engineering, Shimane University

2. Japan Society for Promotion of Science

Publisher

Cryogenic Association of Japan

Reference19 articles.

1. 1) L. Goodrich and J. Ekin: “Lap joint resistance and intrinsic critical current measurements on a NbTi superconducting wire,” IEEE Trans. Magn. 17 (1981) 69–72

2. 2) Y.J. Park, M.W. Lee, Y.K. Oh and H.G. Lee: “Laser drilling: enhancing superconducting joint of GdBa2Cu3O7−δ coated conductors,” Supercond. Sci. Technol. 27 (2014) 085008

3. 3) K. Ohki, T. Nagaishi, T. Kato, D. Yokoe, T. Hirayama, Y. Ikuhara, T. Ueno, K. Yamagishi, T. Takao, R. Piao, H. Maeda and Y. Yanagisawa: “Fabrication, microstructure and persistent current measurement of an intermediate grown superconducting (iGS) joint between REBCO-coated conductors,” Supercond. Sci. Technol. 30 (2017) 115017

4. 4) K. Hiramatsu, R. Teranishi, K. Yamada, Y. Sato and K. Kaneko: “Joint of REBa2Cu3O7−δ coated conductors using metal organic deposition,” Phys. Procedia 81 (2016) 109–112

5. 5) T. Miyajima, R. Teranishi, S. Yasuyama, Y. Sato, K. Kaneko, T. Maeda, M. Ochi, K. Hiramatsu, M. Nakamura, V. Petrykin, S. Lee, T. Okada and S. Awaji: “Microstructures of superconducting joint between GdBa2Cu3O7−y-coated conductors via additionally deposited precursor films,” Jpn. J. Appl. Phys. 58 (2019) 020913

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