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Title: Structures having enhanced biaxial texture and method of fabricating same

Patent ·
OSTI ID:871472

A biaxially textured article includes a rolled and annealed, biaxially textured substrate of a metal having a face-centered cubic, body-centered cubic, or hexagonal close-packed crystalline structure; and an epitaxial superconductor or other device epitaxially deposited thereon.

Research Organization:
Oak Ridge National Laboratory (ORNL), Oak Ridge, TN (United States)
DOE Contract Number:
AC05-84OR21400
Assignee:
Lockheed Martin Energy Systems, Inc. (Oak Ridge, TN)
Patent Number(s):
US 5739086
OSTI ID:
871472
Country of Publication:
United States
Language:
English

References (12)

In‐plane epitaxial alignment of YBa 2 Cu 3 O 7− x films grown on silver crystals and buffer layers journal April 1993
High‐field critical current densities in Bi 2 Sr 2 Ca 1 Cu 2 O 8+ x /Ag wires journal December 1989
Laser deposition of biaxially textured yttria‐stabilized zirconia buffer layers on polycrystalline metallic alloys for high critical current Y‐Ba‐Cu‐O thin films journal November 1992
Preparation of Y‐Ba‐Cu oxide superconductor thin films using pulsed laser evaporation from high Tc bulk material journal August 1987
High critical current densities in Bi(2223)/Ag tapes journal January 1992
Metal buffer layers and Y‐Ba‐Cu‐O thin films on Pt and stainless steel using pulsed laser deposition journal August 1990
a ‐axis oriented epitaxial YBa 2 Cu 3 O 7− x ‐PrBa 2 Cu 3 O 7− y heterostructures journal December 1990
High-J/sub c/ silver-sheathed Bi-based superconducting wires journal March 1991
Growth of C-axis oriented YBaCuO films on oxidized textured Ni sheets and on journal March 1991
Effects of target and template layer on the properties of highly crystalline superconducting a-axis films of Y1Ba2Cu3O7−x by DC-sputtering journal August 1993
Structural and transport properties of biaxially aligned YBa 2 Cu 3 O 7− x films on polycrystalline Ni‐based alloy with ion‐beam‐modified buffer layers journal August 1993
Superconducting YBa 2 Cu 3 O 6.8 films on metallic substrates using in situ laser deposition journal June 1990