DocumentCode
843201
Title
Fabrication of V-based Laves phase compound multifilamentary wires by applying a rapidly-heating/quenching process to PIT precursors and using a V tube
Author
Hishinuma, Y. ; Kikuchi, A. ; Iijima, Y. ; Yoshida, Y. ; Takeuchi, T. ; Nishimura, A. ; Inoue, K.
Author_Institution
Fusion Eng. Res. Center, Nat. Inst. for Fusion Sci., Toki, Japan
Volume
15
Issue
2
fYear
2005
fDate
6/1/2005 12:00:00 AM
Firstpage
3536
Lastpage
3539
Abstract
We fabricated V-based Laves phase compound such as V2(Hf,Zr) multifilamentary wire by applying a rapidly-heating/quenching (RHQ) process. Pure Hf and Zr metal powders were mixed and it put in high pure V tube composed with tantalum (Ta), and it was drawn in order to make wire (powder-in-tube (PIT) method). The wires were heat-treated by RHQ process, and some were annealed additionally in vacuum. Since Ta has a higher melting point than V, it is expected that the alloying prevents from breakage of the precursor wire during RHQ treatment because the maximum temperature exceeds 2500 K. SEM observation confirmed that the thick reaction layer within about 10 microns was formed on the boundary of the powder mixture filament and the V matrix after the RHQ. Tc values of the as-quenched samples increased with increasing maximum temperature during RHQ process, and the maximum mid point Tc value was about 8.0 K. The transport Jc properties under magnetic fields were also investigated.
Keywords
critical current density (superconductivity); hafnium alloys; multifilamentary superconductors; powder metallurgy; quenching (thermal); rapid solidification; rapid thermal annealing; superconducting transition temperature; type II superconductors; vanadium alloys; zirconium alloys; PIT precursors; V matrix; V tube; V-based laves phase compound multifilamentary wires; V2(HfZr); heat treatment; powder mixture filament; powder-in-tube method; rapidly-heating/quenching; vacuum annealing; Alloying; Annealing; Fabrication; Hafnium; Magnetic fields; Magnetic properties; Powders; Temperature; Wires; Zirconium; Multifilamentary wire; RHQ process; V-based Laves (C15) phase; superconducting properties;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2005.849353
Filename
1440435
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