DocumentCode :
842938
Title :
Superconducting properties and thermal stability of high-strength Nb3Sn wire with Ta-reinforced filaments
Author :
Nishijima, Gen ; Watanabe, Kazuo ; Murase, Satoru ; Katagiri, Kazumune ; Iwaki, Genzo
Author_Institution :
High Field Lab. for Supercond. Mater., Tohoku Univ., Sendai, Japan
Volume :
15
Issue :
2
fYear :
2005
fDate :
6/1/2005 12:00:00 AM
Firstpage :
3442
Lastpage :
3445
Abstract :
Superconducting properties of high-strength Nb3Sn wires with Ta-reinforced filaments were evaluated at various temperatures and magnetic fields. Mechanical properties were also investigated at 4.2 K. The critical current was measured at temperatures up to 14 K and in magnetic fields up to 15 T. The data were well scaled by using empirical scaling laws. The stress-strain curve showed that the stress corresponding to 0.5% strain was 284 MPa. The value is twice as large as that of conventional Nb3Sn wires, indicating that the high-strength Ta reinforcement enhances the mechanical property of the wire. Furthermore, the wire was sufficiently ductile. To evaluate the thermal stability, minimum quench energy and normal zone propagation velocity were measured under a cryocooled condition. The Ta reinforced Nb3Sn wire shows relatively high stability and large propagation velocity. The results suggest that the Ta reinforced Nb3Sn wire has sufficient applicability for cryocooled superconducting magnet windings.
Keywords :
critical current density (superconductivity); multifilamentary superconductors; niobium alloys; superconducting tapes; tantalum; tensile testing; thermal stability; tin alloys; Nb3Sn; Nb3Sn wire; Ta; Ta-reinforced filaments; critical current; cryocooling; magnetic fields; mechanical property; propagation velocity; quench energy; stress-strain curve; superconducting magnet windings; superconducting property; thermal stability; Magnetic field induced strain; Magnetic field measurement; Magnetic properties; Mechanical factors; Niobium; Superconducting filaments and wires; Superconducting magnets; Temperature measurement; Thermal stability; Tin; Critical current; Ta-reinforcement; cryocooled condition; mechanical property; thermal stability; upper critical field;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2005.849051
Filename :
1440412
Link To Document :
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