DocumentCode
1434260
Title
Estimation of the Critical Current Density From the Measured Values of Perpendicular Magnetization Losses in HTS Coated Conductors
Author
Lee, Ji-Kwang ; Kim, Yungil ; Lee, Seyeon ; Kim, Woo-Seok ; Park, Chan ; Choi, Kyeongdal
Author_Institution
Fire Protection & Safety Dept., Woosuk Univ., Wanju, South Korea
Volume
21
Issue
3
fYear
2011
fDate
6/1/2011 12:00:00 AM
Firstpage
2345
Lastpage
2348
Abstract
Stacking of conductors for large current capacity and striation for low loss are needed in large scale power applications of HTS superconductor. It, however, was difficult to measure superconducting properties of the HTS coated conductor non-destructively. Instead of direct measurement of the critical current of HTS coated conductor, indirect estimation from the measured magnetization loss can be used for the practical estimation of the critical current. The magnetization loss of a superconductor can be affected by the full penetrating magnetic field, and it tends to show an inflection point at the full penetrating magnetic field in the plot of magnetization loss vs. external magnetic field. The full penetrating magnetic field depends on the shape of the conductor and its critical current density, and so the effective critical current density can be estimated from the measured magnetization loss. In this paper, to prove the effectiveness of this indirect estimation of the critical current, we measured the perpendicular magnetization losses in short samples of 2G HTS coated conductors with different shapes which includes striated coated conductors were measured, and the estimated critical current densities were compared with those directly measured.
Keywords
critical current density (superconductivity); high-temperature superconductors; magnetisation; HTS coated conductors; critical current density; perpendicular magnetization losses; Conductors; Critical current; Current measurement; Loss measurement; Magnetic losses; Magnetization; Yttrium barium copper oxide; Critical current density; full penetrating magnetic field; perpendicular magnetization loss;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2010.2101039
Filename
5699948
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