Nickel base substrate tapes for coated superconductor applications

被引:29
作者
Bhattacharjee, Pinaki P.
Ray, Ranjit Kumar [1 ]
Upadhyaya, Anish
机构
[1] Indian Inst Technol, Dept Mat & Met Engn, Kanpur 208016, Uttar Pradesh, India
[2] TATA Steel, R&D Div, Jamshedpur 831001, Bihar, India
关键词
D O I
10.1007/s10853-006-1416-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The development and status of Ni base alloy substrate tapes for coated superconductor applications have been reviewed. Rolling assisted Biaxially Textured Substrates or RABiTS (TM) method comprising cold rolling and annealing of Ni gives rise to sharp cube texture ({100} < 100 >) component which is required for subsequent epitaxial growth of the buffer and YBCO layers. However, pure Ni seems to be rather unsuitable for this purpose since its mechanical strength as well as the stability of the cube texture deteriorate at the deposition temperature of YBCO. Refractory metals, particularly, W and Mo hold the potential to be used as micro-alloying element to impart strength as well as to preserve the cube texture and maintain its stability at high temperatures. Cr and V at higher alloying level are suited for non-magnetic applications. Recent works have suggested the possibility of using substrates with multilayer architecture and this needs to be investigated further.
引用
收藏
页码:1984 / 2001
页数:18
相关论文
共 55 条
[11]   Highly cube textured Ni-W-RABiTS tapes for YBCO coated conductors [J].
Eickemeyer, J ;
Selbmann, D ;
Opitz, R ;
Wendrock, H ;
Maher, E ;
Miller, U ;
Prusseit, W .
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2002, 372 (PART 2) :814-817
[12]   Effect of nickel purity on cube texture formation in RABiT-tapes [J].
Eickemeyer, J ;
Selbmann, D ;
Opitz, R ;
Maher, E ;
Prusseit, W .
PHYSICA C, 2000, 341 :2425-2426
[13]   Nickel-refractory metal substrate tapes with high cube texture stability [J].
Eickemeyer, J ;
Selbmann, D ;
Opitz, R ;
de Boer, B ;
Holzapfel, B ;
Schultz, L ;
Miller, U .
SUPERCONDUCTOR SCIENCE & TECHNOLOGY, 2001, 14 (03) :152-159
[14]   Influence of nickel substrate grain structure on YBa2Cu3O7-x supercurrent connectivity in deformation-textured coated conductors [J].
Feldmann, DM ;
Reeves, JL ;
Polyanskii, AA ;
Kozlowski, G ;
Biggers, RR ;
Nekkanti, RM ;
Maartense, I ;
Tomsic, M ;
Barnes, P ;
Oberly, CE ;
Peterson, TL ;
Babcock, SE ;
Larbalestier, DC .
APPLIED PHYSICS LETTERS, 2000, 77 (18) :2906-2908
[15]   Grain boundary misorientation and thermal grooving in cube-textured Ni and Ni-Cr tape [J].
Gladstone, TA ;
Moore, JC ;
Wilkinson, AJ ;
Grovenor, CRM .
IEEE TRANSACTIONS ON APPLIED SUPERCONDUCTIVITY, 2001, 11 (01) :2923-2926
[16]   Texture formation and grain boundary networks in rolling assisted biaxially textured substrates and in epitaxial YBCO films on such substrates [J].
Goyal, A ;
Ren, SX ;
Specht, ED ;
Kroeger, DM ;
Feenstra, R ;
Norton, D ;
Paranthaman, M ;
Lee, DF ;
Christen, DK .
MICRON, 1999, 30 (05) :463-478
[17]   Strengthened, biaxially textured Ni substrate with small alloying additions for coated conductor applications [J].
Goyal, A ;
Feenstra, R ;
Paranthaman, M ;
Thompson, JR ;
Kang, BY ;
Cantoni, C ;
Lee, DF ;
List, FA ;
Martin, PM ;
Lara-Curzio, E ;
Stevens, C ;
Kroeger, DM ;
Kowalewski, M ;
Specht, ED ;
Aytug, T ;
Sathyamurthy, S ;
Williams, RK ;
Ericson, RE .
PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS, 2002, 382 (2-3) :251-262
[18]   Conductors with controlled grain boundaries: An approach to the next generation, high temperature superconducting wire [J].
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 .
JOURNAL OF MATERIALS RESEARCH, 1997, 12 (11) :2924-2940
[19]   High critical current density superconducting tapes by epitaxial deposition of YBa2Cu3Ox thick films on biaxially textured metals [J].
Goyal, A ;
Norton, DP ;
Budai, JD ;
Paranthaman, M ;
Specht, ED ;
Kroeger, DM ;
Christen, DK ;
He, Q ;
Saffian, B ;
List, FA ;
Lee, DF ;
Martin, PM ;
Klabunde, CE ;
Hartfield, E ;
Sikka, VK .
APPLIED PHYSICS LETTERS, 1996, 69 (12) :1795-1797
[20]  
GOYAL A, 2001, Patent No. 6180570