Conductors with controlled grain boundaries: An approach to the next generation, high temperature superconducting wire

被引:153
作者
Goyal, A
Norton, DP
Kroeger, DM
Christen, DK
Paranthaman, M
Specht, ED
Budai, JD
He, Q
Saffian, B
List, FA
Lee, DF
Hatfield, E
Martin, PM
Klabunde, CE
Mathis, J
Park, C
机构
[1] OAK RIDGE NATL LAB,DIV SOLID STATE,OAK RIDGE,TN 37831
[2] OAK RIDGE NATL LAB,DIV CHEM & ANALYT SCI,OAK RIDGE,TN 37831
[3] UNIV TENNESSEE,KNOXVILLE,TN 37996
[4] OAK RIDGE INST SCI & EDUC,OAK RIDGE,TN 37831
基金
美国能源部;
关键词
D O I
10.1557/JMR.1997.0387
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Much of the conductor development effort in the last decade has focused on optimizing the processing of (Bi, Pb)(2)Sr2Ca2Cu3Ox oxide-powder-in-tube conductors and (Bi,Pb)(2)Sr2CaCu2O8 (Bi-2212) and TlBa2Ca2Cu3Ox thick film conductors. It is demonstrated that in each of these conductors, critical current densities are dictated by the grain boundary misorientation distributions (GBMD's). Percolative networks of low-angle boundaries with fractions consistent with the active cross-sectional area of the conductor exist in each of these conductors, Further enhancements in the properties require increased numbers of small-angle grain boundaries. Given the processing methods used to fabricate these materials, no clear route employing a simple modification of the established processing method is apparent. To address this need, conductors with controlled or predetermined GBMD's are necessary. Development of biaxial texture appears to be the only possible way to increase the number of small-angle boundaries in a practical and controllable manner, We summarize in this paper recent results obtained on epitaxial superconducting films on rolling-assisted-biaxially-textured-substrates (RABiTS). This technique uses well established, industrially scalable, thermomechanical processes to impart a strong biaxial texture to a base metal. This is followed by vapor deposition of epitaxial buffer layers (metal and/or ceramic) to yield structurally and chemically compatible surfaces. Epitaxial YBa2Cu3O7-delta films grown using laser ablation on such substrates have critical current densities exceeding 10(6) A/cm(2) at 77 K in zero field and have a field dependence similar to epitaxial films on single crystal ceramic substrates. Deposited conductors made using this technique offer a potential route for the fabrication of the next generation high temperature superconducting (HTS) wire capable of carrying high currents in high magnetic fields and at elevated temperatures.
引用
收藏
页码:2924 / 2940
页数:17
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