DocumentCode
784813
Title
Thermal stability of oxide superconductor at various temperatures
Author
Nishijima, Gen ; Awaji, Satoshi ; Murase, Satoru ; Shimamoto, Susumu ; Watanabe, K.
Author_Institution
Inst. of Mater. Res., Tohoku Univ., Sendai, Japan
Volume
12
Issue
1
fYear
2002
fDate
3/1/2002 12:00:00 AM
Firstpage
1155
Lastpage
1158
Abstract
Quench properties of Bi2Sr2CaCu2O8/AgMg tape were experimentally investigated under a cryocooled condition in high magnetic fields. The critical current (Ic), quench current (Iq), and minimum quench energy (MQE) were measured at various initial temperatures of 4.2 K, 10 K, and 20 K and at magnetic fields of 7 T and 9 T. MQE was the minimum disturbance energy enough to make thermal quench and was evaluated from the input energy by a resistive heater. It was found that MQE exhibited the minimum value around 20 K. The temperature margin, difference between the initial temperature and the thermal runaway temperature, decreased monotonously with increase at the operating temperature. Since the temperature dependence of MQE did not agree with that of temperature margin, we focused on the internal energy calculated by integrating specific heat of the sample. The temperature dependence of the internal energy was in agreement with that of MQE qualitatively.
Keywords
bismuth compounds; calcium compounds; critical currents; high-temperature superconductors; magnesium alloys; multifilamentary superconductors; quenching (thermal); silver alloys; specific heat; strontium compounds; superconducting tapes; thermal stability; 10 K; 20 K; 4.2 K; 7 T; 9 T; Bi2Sr2CaCu2O8-AgMg; critical current; cryocooled condition; high magnetic fields; internal energy; minimum quench energy; multifilamentary superconducting tape; quench current; specific heat; temperature dependence; temperature margin; thermal runaway temperature; thermal stability; Bismuth; Critical current; Current measurement; Energy measurement; Magnetic field measurement; Magnetic properties; Strontium; Superconducting films; Temperature dependence; Thermal stability;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2002.1018606
Filename
1018606
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