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实用Bi系高温超导带材 被引量:19

Practical BSCCO high temperature superconducting tapes
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摘要 介绍了(Bi,Pb)2Sr2Ca2Cu3Ox(BSCCO)带材产业化生产技术,并就几个关键环节如前驱粉制备与预处理、导线的机械加工以及带材的形变热处理等作了详尽的阐述,比较了世界各国的发展现状。针对特定的高温超导应用方向如超导电缆、超导磁体和电流引线等,研究了提高长导线均匀性的关键技术,进行BSCCO导线的多样化设计以降低导线的交流损耗、热导率和临界弯曲半径,并对导线进行表面改性处理如涂镀绝缘漆和镀锡等。结合已有的研究基础,从提高BSCCO带材的性能和降低生产成本出发,指出了BSCCO带材产业化技术今后的发展方向。 The commercial manufacturing technology of BSCCO high temperature superconducting(HTS) tapes was introduced, with emphases on synthesis and pre-treatment of the precursor, mechanical deformation and thermo-mechanical treatment. Comparison were made on the development status of several companies over the world. In order to meet the requirements of special application such as HTS transmission cable, HTS magnet and current leads, tremendous research efforts was made not only in enhancing the performance uniformity along the whole length of the BSCCO tapes, but also in carrying out diversified tape-design to improve their application properties, which include reducing AC losses and thermal conductivity, increasing insulation properties and so on. Several research directions were put forward, based on improving the performance and lowering the manufacturing cost of BSCCO tapes.
出处 《中国有色金属学报》 EI CAS CSCD 北大核心 2004年第F01期341-346,共6页 The Chinese Journal of Nonferrous Metals
基金 国家"八六三"计划资助项目(2002AA306113)
关键词 BI系高温超导带材 产业化 PIT法 BSCCO 性能 BSCCO tapes commercial manufacturing technology PIT method practical performance
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  • 1Arndt T J, Aubele A, Fisher B, et al. Bi-2223 tapes for application at high temperatures and high fields[J].Physica C, 2002, 372-376: 887-890.
  • 2Kellers J, Masur L J. Reliable commercial HTS wires for power applications[J]. Physica C, 2002, 372 -376: 1040- 1045.
  • 3Fujikami J, Kaneko T, Ayai N, et al. Development of the industrial scale Ag/Bi-2223 tapes[J]. Physica C,2002, 372 -376:1061 - 1064.
  • 4Balachandran U, Selvamanickam V, Haldar P, et al.Development of Ag-clad Bi-2223 superconductors fpr electric power applications[J]. Supercond Sci Technol, 1998, 11: 978-981.
  • 5Yuan Y, Jiang J, Cai X Y, et al. Microstructure and Je improvements in overpressure processed Agsheathed Bi-2223 tapes[J]. IEEE Trans Appl Supercond, 2003, 13:2921-2925.
  • 6Vase P, Flukiger R, Leghissa M, et al. Fabrication of Ag-sheathed Bi-2223 tapes[J]. Supercond Sci Technol, 2000, 13: R82-89.
  • 7Flukiger R, Giannini E. Bi, Pb(2223) tapes: present and future[J]. Scent Newsletter April, 2003, 3: 7-10.
  • 8Yavuz M, Maeda H, Vance L, et al. Powder production methods of BSCCO superconductors[J]. Supercond Sci Technol, 1998, 11: 1166-1172.
  • 9Dorris S E, Prorok B C, Poeppel R B. Synthesis of highly pure Bi-2223 by a two-powder process [J].Physica C, 1993, 212:66 -74.
  • 10Wang Y I, Bian W, Zhu Y, et al. Fabrication of Agsheathed Bi-2223 tapes using powders produced by aerosol spray pyrolysis[J]. Journal of Electronic Materials, 1995, 12: 1817-1820.

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