DocumentCode :
973839
Title :
Critical Current Degradation of Bi-2223 Composite Tapes Induced byCyclic Deformation and Fatigue-Related Effects
Author :
Shigue, Carlos Y. ; Baldan, Carlos A. ; Oliveira, Ulisses R. ; Carvalho, Francisco J H, Jr. ; Filho, E. Ruppert
Author_Institution :
DEMAR/FAENQUIL, Lorena
Volume :
16
Issue :
2
fYear :
2006
fDate :
6/1/2006 12:00:00 AM
Firstpage :
1027
Lastpage :
1030
Abstract :
Application of high temperature superconductor Bi2Sr 2Ca2Cu3Ox (Bi-2223) compound embedded in an Ag matrix requires the knowledge of critical current as a function of mechanical properties. Commercial tapes available in different types have been developed in industrial production scale in which a combination of small diameter filaments, long tape lengths and a ductile matrix results in a conductor with low crack formation and good tolerance against strain. The measurement of critical current and the evaluation of n-index from V-I characteristic curves of Bi-2223/Ag composite tapes subjected to an initial bending strain as a function of number of thermal cycles were done for two types of Bi-2223/Ag composite tapes: with and without steel tape reinforcement. The results showed that tapes with reinforcement presented small critical current degradation as a function of the number of thermal cycles whereas tapes without reinforcement exhibited steadily critical current degradation caused by the propagation of cracks. The n-index followed the same critical current behavior
Keywords :
bending strength; bismuth compounds; calcium compounds; cracks; critical currents; deformation; ductility; fatigue; high-temperature superconductors; silver; strontium compounds; superconducting tapes; Bi-2223 composite tapes; Bi2Sr2Ca2Cu3Ox -Ag; bending strain; crack formation; crack propagation; critical current degradation; cyclic deformation; ductile matrix; fatigue; high temperature superconductor; industrial production; mechanical properties; tolerance; Bismuth; Capacitive sensors; Conductors; Critical current; High temperature superconductors; Mechanical factors; Production; Strain measurement; Strontium; Thermal degradation; Bending strain; Bi-2223 tapes; critical current; degradation; fatigue; thermal shock;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/TASC.2006.876585
Filename :
1643023
Link To Document :
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