DocumentCode :
1241607
Title :
Critical current limiting factors in post annealed (Bi,Pb)2Sr2Ca2Cu3Ox tapes
Author :
Jiang, J. ; Cai, X.Y. ; Chandler, J.G. ; Patnaik, S. ; Polyanskii, A.A. ; Yuan, Y. ; Hellstrom, E.E. ; Larbalestier, D.C.
Author_Institution :
Appl. Supercond. Center, Univ. of Wisconsin, Madison, WI, USA
Volume :
13
Issue :
2
fYear :
2003
fDate :
6/1/2003 12:00:00 AM
Firstpage :
3018
Lastpage :
3021
Abstract :
Processing (Bi,Pb)2Sr2Ca2Cu3Ox (Bi-2223) tape by the oxide-powder-in-tube technique normally includes two heat treatments and one intermediate rolling. A three-step heat treatment was applied for the second heat treatment (HT2). Experimental procedures were designed for understanding the roles of each processing step in HT2 and the post anneal. It was found that post annealing improved the critical temperature Tc, critical current density Jc and flux pinning characteristic field Hp. The midpoint Tc was raised from 103 to 109 K by post anneal, while Hp was increased from 126 to 183 mT. Post anneal at about 790°C precipitated Pb from Bi-2223 phase to form a Pb-rich phase, thus the microstructure looked worse but Tc, Jc and Hp were raised. Jc was raised as the Bi-2212 phase signature in the Tc trace decreased. The most important observation is that raising Tc and minimizing residual Bi-2212 are decisive factors for increasing Jc at 77 K in Bi-2223 tapes.
Keywords :
annealing; bismuth compounds; calcium compounds; critical current density (superconductivity); flux pinning; high-temperature superconductors; lead compounds; powder technology; precipitation; strontium compounds; superconducting tapes; superconducting transition temperature; (Bi,Pb)2Sr2Ca2Cu3Ox tapes; (BiPb)2Sr2Ca2Cu3O; 109 K; 183 mT; 77 K; 790 degC; Bi-2223 tape; annealing; critical current density; critical current limiting factors; flux pinning characteristic field; heat treatment; powder-in-tube method; precipitation; rolling; superconducting critical temperature; Annealing; Bismuth; Cooling; Critical current; Critical current density; Flux pinning; Heat treatment; Powders; Strontium; Temperature;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2003.812057
Filename :
1212258
Link To Document :
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