Method of forming biaxially textured alloy substrates and device

Metal treatment – Stock – Nickel base

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148427, 148428, 148429, 420441, 420442, 420445, 420447, 420460, G22C 1903

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059649666

ABSTRACT:
Specific alloys, in particular Ni-based alloys, that can be biaxially textured, with a well-developed, single component texture are disclosed. These alloys have a significantly reduced Curie point, which is very desirable from the point of view of superconductivity applications. The biaxially textured alloy substrates also possess greatly enhanced mechanical properties (yield strength, ultimate tensile strength) which are essential for most applications, in particular, superconductors. A method is disclosed for producing complex multicomponent alloys which have the ideal physical properties for specific applications, such as lattice parameter, degree of magnetism and mechanical strength, and which cannot be fabricated in textured form. In addition, a method for making ultra thin biaxially textured substrates with complex compositions is disclosed.

REFERENCES:
patent: 3770497 (1973-11-01), Hassler et al.
patent: 5212148 (1993-05-01), Roas et al.
patent: 5248662 (1993-09-01), Yoshida et al.
patent: 5290761 (1994-03-01), Keating et al.
patent: 5312804 (1994-05-01), Petitbon et al.
patent: 5372089 (1994-12-01), Yoshida et al.
patent: 5432151 (1995-07-01), Russo et al.
patent: 5529981 (1996-06-01), Holloway
patent: 5739086 (1998-04-01), Goyal et al.
patent: 5741377 (1998-04-01), Goyal et al.
K. Sato, et al., "High-J.sub.c Silver-Sheathed Bi-Based Superconducting Wires", IEEE Transactions on Magnetics, 27 (1991) 1231.
K. Heine, et al., "High-Field Critical Current Densities in Bl.sub.2 Sr.sub.2 Ca.sub.1 Cu.sub.2 O.sub.8 +x/Ag Wires", Applied Physics Letters, 55 (1989) 2441.
R. Flukiger, et al., "High Critical Current Densities in Bi(2223)/Ag Tapes", Superconductor Science & Technology, 5 (1992) S61.
D. Dijkkamp, et al., "Preparation of Y-Ba-Cu Oxide Superconducting Thin Films Using Pulsed Laser Evaporation from High Te Bulk Material", Applied Physics Letters, 51, 619 (1987).
S. Mahajan, et al., "Effects of Target and Template Layer on the Properties of Highly Crystalline Superconducting a-Axis Films of YBa.sub.2 -Cu.sub.3 -O.sub.7 by DC-Sputtering", Physica C., 213, 445 (1993).
A. Inam, et al., "A-axis Oriented Epitaxial YBa.sub.2 -Cu.sub.3 -O.sub.7 -PrBa.sub.2 Cu.sub.3 O.sub.7 Heterostructures", Applied Physics Letters, 57, 2484 (1990).
R.E. Russo, et al., "Metal Buffer Layers and Y-Ba-Cu-O Thin Films on Pt and Stainless Steel Using Pulsed Laser Deposition", Journal of Applied Physics, 68, 1354 (1990).
E. Narumi, et al., "Superconducting YBa.sub.2 Cu.sub.3 O.sub.6.8 Films on Metallic Substrates Using In Situ Laser Deposition", Applied Physics Letters, 56, 2684 (1990).
J.D. Budai, et al."In-Plane Epitaxial Alignment of YBa2-Cu.sub.3 -O.sub.7-x Films Grown on Silver Crystals and Buffer Layers", Applied Physics Letters, 62, 1836 (1993).
T.J. Doi, et al., "A New Type of Superconducting Wire; Biaxially Oriented Tl.sub.1 (Ba.sub.0.8 Sr.sub.0.2).sub.2 Ca.sub.2 Cu.sub.3 O.sub.9 on [100]<100> Textured Silver Tape", Proceedings of 7th International Symposium on Superconductivity, Fukuoka, Japan, Nov. 8-11, 1994.
D. Forbes, Executive Editor, "Hitachi Reports 1-meter Tl-1223 Tape Made by Spray Pyrolysi", Superconductor Week, vol. 9, No. 8, Mar. 6, 1995.
Recrystallization Grain Growth and Textures, Papers presented at a seminar of the American Society for Metals, Oct. 16 and 17, 1965, American Society for Metals, Metals Park Ohio. (List of titles=Table of Contents only).
A. Goyal et al., "High Critical Current Density Superconducting Tapes by Epitaxial of YBa.sub.2 Cu.sub.3 Ox Thick Films on Biaxially Textured Metal Substrates", Appl. Phys. Lett., 69, 1795 (1996).
D. P. Norton et al., "Epitaxial YBa.sub.2 Cu.sub.3 O.sub.x on Biaxially Textured Biaxially Textured (001) Ni: An Approach to High Critical Current Density Superconducting Tape", Science, 274, 755 (1996).
M. Paranphaman et al., "Growth of Biaxially Textured Buffered Layers on Rolled Ni Substrates by Electron Beam Evaporation", Physica C., 275, 266 (1997).
R.P. Reade et al., "Laser Deposition of Biaxially Textured Yttria-stabilized Zirconia Buffer Layers on Polycrystalline Metallic Alloys for High Critical Current Y-Ba-Cu-O Thin Films", Applied Physical Letters, 61, 2231-233 (1992).
D. Dimos et al., "Orientation Dependence of Grain-Boundary Critical Currents in Yba.sub.2 Cu.sub.3 O.sub.7-.cedilla. Bicrystals", Physical Review Letters, vol. 61, No. 2 (Jul. 11, 1988).
D. Dimos et al., "Superconducting Transport Properties of Grain Boundaries in Yba.sub.2 Cu.sub.3 O.sub.7 Bicrystals", Physical Review B, 41, 4038 (1990).
Y. Iijima, et al., "Structural and Transport Properties of Biaxially Aligned YBa.sub.2 Cu.sub.3 O.sub.7-x Films on Polycrystaline Ni-Based Alloy with Ion-Beam Modified Buffer Layers", Journal of Applied Physics, 74, 1905 (1993).
A. Ginsbach et al., "Growth of C-Axis Oriented YbaCuO Films on Oxidized Textured Ni Sheets and on (100) and (110) Oriented NiO Single Crystals", IEEE Treansactions on Magnetics, vol. 27, 1410 (1991).

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