期刊
SUPERCONDUCTOR SCIENCE & TECHNOLOGY
卷 23, 期 1, 页码 -出版社
IOP PUBLISHING LTD
DOI: 10.1088/0953-2048/23/1/014014
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资金
- US Department of Energy [DE-AC05-00OR22725]
The influence of Zr doping in (Gd, Y)-Ba-Cu-O ((Gd, Y)BCO) tapes made by metal-organic chemical vapor deposition has been studied with a specific objective of uniform and reproducible enhancement in in-field critical current (I(c)) over long lengths. 50 m long tapes with 7.5 and 10 at.% Zr doping in 1 mu m thick (Gd, Y) BCO films have been found to exhibit a sharply enhanced peak in I(c) in the orientation of field parallel to the c-axis and retain 28% of their self-field I(c) value at 77 K and 1 T. BaZrO(3) (BZO) nanocolumn density in the cross-sectional microstructure was found to increase with increasing Zr addition. The end segments of the 50 m long tapes were found to display nearly identical angular dependence of critical current at 77 K and 1 T, indicative of the uniformity in in-field performance over this length. A 610 m long tape was fabricated with 10% Zr doping and a 130 m segment showed a 3.2% uniformity in critical current measured every meter in the orientation of B parallel to c-axis. A retention factor of 36% of the zero-field I(c) value measured at 0.52 T over the 130 m is consistent with that obtained in short samples.
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