DocumentCode
1242542
Title
Transverse compressive stress effect in Y-Ba-Cu-O coatings on biaxially textured Ni and Ni-W substrates
Author
Cheggour, N. ; Ekin, J.W. ; Clickner, C.C. ; Verebelyi, D.T. ; Thieme, C.L.H. ; Feenstra, R. ; Goyal, A. ; Paranthaman, M.
Author_Institution
Nat. Inst. of Stand. & Technol., Boulder, CO, USA
Volume
13
Issue
2
fYear
2003
fDate
6/1/2003 12:00:00 AM
Firstpage
3530
Lastpage
3533
Abstract
Electromechanical properties of yttrium-barium-copper-oxide (YBCO) coatings on both pure Ni and Ni-5at.%W alloy rolling-assisted, biaxially-textured substrates (RABiTS) were investigated. The effect of transverse compressive stress on transport critical-current densities (Jc) was measured on samples at 76 K and self magnetic field. Transverse compressive stress can significantly degrade Jc in YBCO deposited on pure Ni RABiTS unless sufficient frictional support is provided to the sample or the substrate is given a work-hardening treatment. On the other hand, results obtained for YBCO on Ni-5at.%W alloy RABiTS show that the tolerance to transverse stress of these conductors is significantly improved. These electromechanical properties are interpreted with scanning-electron micrographs of the microstructure of the samples after electromechanical testing, as well as stress-strain characteristics measured on RABiTS substrates at 76 K. The tensile yield strength, Young´s modulus, and proportional limit of elasticity of candidate RABiTS substrate materials are tabulated and compared.
Keywords
Young´s modulus; barium compounds; critical current density (superconductivity); elastic limit; electromechanical effects; high-temperature superconductors; scanning electron microscopy; stress effects; stress-strain relations; superconducting thin films; yield strength; yttrium compounds; 76 K; Ni; Ni-W; RABiTS material; Y-Ba-Cu-O; YBCO coating; Young modulus; elastic limit; electromechanical properties; frictional support; high temperature superconductor; microstructure; rolling-assisted biaxially-textured substrate; scanning electron microscopy; self-magnetic field; stress-strain characteristics; tensile yield strength; transport critical current density; transverse compressive stress effect; work hardening; Coatings; Compressive stress; Conducting materials; Degradation; Density measurement; Magnetic field measurement; Nickel alloys; Stress measurement; Tensile stress; Yttrium barium copper oxide;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/TASC.2003.812390
Filename
1212390
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