Development of high Ic long REBCO tapes with high production rate by PLD method

A. Ibi, S. Miyata, T. Taneda, M. Yoshizumi, N. Chikumoto, Y. Yamada, T. Izumi, K. Tanabe, Y. Shiohara, A. Yamamoto, K. Okumura, K. Higashikawa, T. Kiss

研究成果: ジャーナルへの寄稿Conference article

1 引用 (Scopus)

抄録

We have been developing long REBa2Cu3O 7-δ coated conductors with high performance by the combination of the IBAD and the PLD methods. To realize the low production cost for REBa2Cu3O7-δ coated conductors, growth conditions were optimized for long tape fabrication in the in-plume PLD method . As a result, the Ic performance was confirmed with a high production rate under the high oxygen gas pressure and high laser energy density of > 800 mTorr and > 3 J/cm2, respectively. We successfully fabricated a 35 m long GdBa2Cu3O7-δ coated conductor with high Ic value of 619 A/cm-w by the production rate of 30 m/h.

元の言語英語
ページ(範囲)145-148
ページ数4
ジャーナルPhysics Procedia
45
DOI
出版物ステータス出版済み - 1 1 2013
イベント25th International Symposium on Superconductivity, ISS 2012 - Tokyo, 日本
継続期間: 12 3 201212 5 2012

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tapes
conductors
production costs
gas pressure
plumes
flux density
fabrication
oxygen
lasers

All Science Journal Classification (ASJC) codes

  • Physics and Astronomy(all)

これを引用

Development of high Ic long REBCO tapes with high production rate by PLD method. / Ibi, A.; Miyata, S.; Taneda, T.; Yoshizumi, M.; Chikumoto, N.; Yamada, Y.; Izumi, T.; Tanabe, K.; Shiohara, Y.; Yamamoto, A.; Okumura, K.; Higashikawa, K.; Kiss, T.

:: Physics Procedia, 巻 45, 01.01.2013, p. 145-148.

研究成果: ジャーナルへの寄稿Conference article

Ibi, A, Miyata, S, Taneda, T, Yoshizumi, M, Chikumoto, N, Yamada, Y, Izumi, T, Tanabe, K, Shiohara, Y, Yamamoto, A, Okumura, K, Higashikawa, K & Kiss, T 2013, 'Development of high Ic long REBCO tapes with high production rate by PLD method', Physics Procedia, 巻. 45, pp. 145-148. https://doi.org/10.1016/j.phpro.2013.04.073
Ibi A, Miyata S, Taneda T, Yoshizumi M, Chikumoto N, Yamada Y その他. Development of high Ic long REBCO tapes with high production rate by PLD method. Physics Procedia. 2013 1 1;45:145-148. https://doi.org/10.1016/j.phpro.2013.04.073
Ibi, A. ; Miyata, S. ; Taneda, T. ; Yoshizumi, M. ; Chikumoto, N. ; Yamada, Y. ; Izumi, T. ; Tanabe, K. ; Shiohara, Y. ; Yamamoto, A. ; Okumura, K. ; Higashikawa, K. ; Kiss, T. / Development of high Ic long REBCO tapes with high production rate by PLD method. :: Physics Procedia. 2013 ; 巻 45. pp. 145-148.
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abstract = "We have been developing long REBa2Cu3O 7-δ coated conductors with high performance by the combination of the IBAD and the PLD methods. To realize the low production cost for REBa2Cu3O7-δ coated conductors, growth conditions were optimized for long tape fabrication in the in-plume PLD method . As a result, the Ic performance was confirmed with a high production rate under the high oxygen gas pressure and high laser energy density of > 800 mTorr and > 3 J/cm2, respectively. We successfully fabricated a 35 m long GdBa2Cu3O7-δ coated conductor with high Ic value of 619 A/cm-w by the production rate of 30 m/h.",
author = "A. Ibi and S. Miyata and T. Taneda and M. Yoshizumi and N. Chikumoto and Y. Yamada and T. Izumi and K. Tanabe and Y. Shiohara and A. Yamamoto and K. Okumura and K. Higashikawa and T. Kiss",
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AU - Ibi, A.

AU - Miyata, S.

AU - Taneda, T.

AU - Yoshizumi, M.

AU - Chikumoto, N.

AU - Yamada, Y.

AU - Izumi, T.

AU - Tanabe, K.

AU - Shiohara, Y.

AU - Yamamoto, A.

AU - Okumura, K.

AU - Higashikawa, K.

AU - Kiss, T.

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AB - We have been developing long REBa2Cu3O 7-δ coated conductors with high performance by the combination of the IBAD and the PLD methods. To realize the low production cost for REBa2Cu3O7-δ coated conductors, growth conditions were optimized for long tape fabrication in the in-plume PLD method . As a result, the Ic performance was confirmed with a high production rate under the high oxygen gas pressure and high laser energy density of > 800 mTorr and > 3 J/cm2, respectively. We successfully fabricated a 35 m long GdBa2Cu3O7-δ coated conductor with high Ic value of 619 A/cm-w by the production rate of 30 m/h.

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