Title :
Fabrication and Superconducting Properties of the Bronze-Processed
Multifilamentary Wire Using Cu–Sn–Zn Alloy Matrix
Author :
Hishinuma, Y. ; Kikuchi, A. ; Taniguchi, H. ; Sugimoto, M. ; Takagi, A. ; Mizuta, T. ; Mito, T. ; Tachikawa, K.
Author_Institution :
Nat. Inst. for Fusion Sci., Toki, Japan
Abstract :
We developed several new Cu-Sn-Zn-(Ti) alloys, which are so-called “CSZ alloy,” for practical bronze-processed Nb3Sn wires. Several CSZ alloys were fabricated via the Mizuta method. The Zn was uniformly dissolved in the α phase of the Cu-Sn alloy, and the Zn-Ti compounds were not found in the CSZ alloy. Various 19 Nb-filament CSZ Nb3Sn precursor wires were fabricated using CSZ matrices with different Sn and Zn nominal compositions. We also found that the CSZ/Nb composites showed excellent workability at room temperature. In this paper, changes in microstructure and superconducting properties of Nb3Sn wires with different CSZ matrices as a function of the heat treatment condition were investigated. We clearly observed that the amount of Zn in the matrix remained constant after the Nb3Sn formation. Thicker Nb3Sn layers were formed by the Zn addition. Tc transitions of about 18 K have been obtained. Finally, we have succeeded in fabricating multifilamentary wires using CSZ matrices through the restacking method. The number of Nb filaments is 7771 with a diameter of 3.4 μm. The effect of the Zn addition on microstructures and superconducting property of the CSZ wires are also reported.
Keywords :
copper alloys; heat treatment; niobium alloys; superconducting materials; tin alloys; wires; workability; zinc alloys; CSZ alloy; CuZnSn; Mizuta method; Nb3Sn; bronze processing; heat treatment condition; microstructure; multifilamentary wire; restacking method; workability; Heat treatment; Niobium-tin; Wires; Zinc; $mbox{Nb}_{3}mbox{Sn}$; Bronzed process; Cu-Sn-Zn alloy; Cu???Sn???Zn alloy; Nb3Sn; Zn addition; multifilamentary wires;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2014.2387053