Bronze Processed Nb3Sn Multifilamentary Wires Using Various Cu-Sn-Zn Solid Solution Strengthened Bronze Alloy Matrices
Author:
Affiliation:
1. National Institute for Fusion Science
2. Osaka Alloying Works Co., Ltd
3. National Institute for Materials Science
Publisher
Japan Institute of Metals
Subject
Materials Chemistry,Metals and Alloys,Mechanics of Materials,Condensed Matter Physics
Link
https://www.jstage.jst.go.jp/article/jinstmet/80/7/80_JC201607/_pdf
Reference14 articles.
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2. 2) M. N. Martovetsky, D. R. Hatfield, J. R. Miller, P. Bruzzone, B. Stepanov and B. Seeber: IEEE Trans. Appl. Supercond. 20(2010) 466–469.
3. 3) T. Hemmi, S. Harjo, T. Ito, K. Matsui, Y. Nunoya, N. Koizumi, Y. Takahashi, H. Nakajima, K. Aizawa, H. Suzuki, S. Machiya, H. Oguro, Y. Ysuchiya and K. Osamura: IEEE Trans. Appl. Supercond. 21(2011) 2028–2031.
4. 4) T. Hemmi, S. Harjo, Y. Nunoya, H. Kajitani, N. Koizumi, K. Aizawa, S. Machiya and K. Osamura: Supercond. Sci. Technol. 26(2013) 084002.
5. 5) Y. Murakami, T. Miyazaki, T. Hase, M. Shimada, Y. Kawate, T. Kiyoshi, K. Itoh, T. Takeuchi, S. Matsumoto and H. Wada: “Dependence of superconducting and mechanical properties of Ta-reinforced Nb3Sn superconductor on heat treatment condition,” Proc. 59th Meeting on Cryogenics and Superconductivity (1998) pp. 156–159.
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1. Low-temperature superconductors: Nb3Sn, Nb3Al, and NbTi;Superconductivity;2023-06
2. Sn Diffusion Behavior and Microstructure in Nb<sub>3</sub>Sn Wires with Third Elemental Addition;TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan);2023-05-20
3. Mechanical Strength Evaluation of the Internal Matrix Reinforced Nb3Sn Multifilamentary Wires Using Cu–Sn–In Ternary Alloy Matrix;IEEE Transactions on Applied Superconductivity;2020-06
4. Changes of Superconducting Properties Due to the Unidirectional Tensile Deformation on Bronze-Processed Nb3Sn Multifilamentary Wires Using Various Cu–Sn–Zn Ternary Alloy Matrices;IEEE Transactions on Applied Superconductivity;2018-04
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