Superconductor technology: apparatus – material – process – High temperature – per se – Having tc greater than or equal to 150 k
Patent
1990-01-12
1992-04-14
Ryan, Patrick J.
Superconductor technology: apparatus, material, process
High temperature , per se
Having tc greater than or equal to 150 k
505701, 505702, 505703, 505704, 428 68, 428 76, 428209, 428426, 428432, 428457, 428688, 428901, 428930, B32B 900
Patent
active
051048493
ABSTRACT:
An oxide superconductor having oxide superconductor layers and metal material layers, which are alternately laminated on each other by a desired number of times, and a method of manufacturing the same.
REFERENCES:
Japanese Journal of Applied Physics, vol. 27, No. 9, 1988, pp. L1715-L1717, Tokyo, Japan; M. Okada et al., "Neutron Diffraction Study on Preferred Orientation of Ag-Sheathed Y-Ba-Cu-O Superconductor Tape with Jc-1000-3000A/cm.sup.2 ".
Japanese Journal of Applied Physics, vol. 26, No. 6, Jun., 1987, pp. L1043-L1045.
Japanese Journal of Applied Physics, vol. 26, No. 7, Jul., 1987, pp. L1168-L1171.
R. Bruzzese et al., "Improved Critical Current Densities in Nb.sub.3 Al Based Conductors", IEEE Transactions on Magnetics, vol. Mag-23, No. 2, Mar. 1987.
W. K. McDonald et al., "Manufacture and Evaluation of Nb.sub.3 Sn Conductors Fabricated by the MJR Method", 1982 Applied Superconductivity Conference, Nov. 30-Dec. 3, 1982.
Enomoto Noritsugu
Kikuchi Hiroyuki
Shiga Shoji
Uno Naoki
Ryan Patrick J.
The Furukawa Electric Co. Ltd.
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