Affiliation:
1. University of Toyama
2. National Institute for Fusion Science
Abstract
Our co-worker, Hishinuma et. al. has established a new route Powder-In-Tube (PIT) process using a high Ga content Cu-Ga compound in order to improve the superconducting property of the V3Ga compound wire. In this study, we investigated microstructure of this high Ga content Cu-Ga/V composite superconducting wire. The different contrasts of matrix, V-Ga phase and Cu-Ga core were observed by SEM observation in cross section of 19 multifilamentary wire. And V-Ga phase was confirmed by SEM mapping. The area fraction of V-Ga phase increased when Ga content increased from 30% to 50%. Thin film sample with V-Ga phase for TEM was fabricated by FIB and observed by TEM in detail. Selected area diffraction pattern was obtained for V matrix, V-Ga phase and Cu-Ga core. The ratio of V to Ga for V-Ga phase was probably V3Ga according to the EDS result. There was a linear interface between V matrix and V-Ga phase, while the interface between Cu-Ga core and V-Ga phase was not linear. On the other hand, there were some granular grains observed in V-Ga phase wear Cu-Ga core.
Publisher
Trans Tech Publications, Ltd.
Subject
Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science
Reference3 articles.
1. T. Noda, T. Takeuchi and M. Fujita: Journal of Nuclear Materials 329-333 Part. 2 (2004) 1590.
2. Y. Hishinuma, A. Kikuchi, Y. Iijima, T. Takeuchi, A. Nishimura :J. Japan Inst. Metals, Vol. 71 (2007) 959.
3. Y. Hishinuma, A. Nishimura, A. Kikuchi, Y. Iijima, T. Takeuchi : TML Annual report 2006 (2007) 69.