Title :
Delamination Characteristics in Wide REBCO Coated Conductor Tapes Under Transverse Loading
Author :
Gorospe, A. ; Dedicatoria, M.J. ; Hyung-Seop Shin
Author_Institution :
Dept. of Mech. Design Eng., Andong Nat. Univ., Andong, South Korea
Abstract :
Superior characteristics and great potential of coated conductor (CC) tapes are some of the promises in pursuit of energy efficient application in electrical field. However, in electric device applications, the coefficient of thermal expansion (CTE) mismatch of each constituent layer, screening current, excessive radial tensile stresses during operation, and other coil fabrication related reasons might cause delamination damage in CC tapes. It was reported that the delamination among its constituent layers resulted to the degradation of its electromechanical properties on coil application. Therefore, the investigation on its delamination behavior is necessary for device application design. In this study, using the anvil test method, the delamination behaviors in 12-mm-wide Cu stabilized and brass laminated GdBa2Cu3Oy CC tapes with stainless steel substrate were investigated. The mechanical delamination strength of the CC tapes for differently assembled upper anvil and CC tape configurations about widthwise direction was investigated by using a 4 mm × 8 mm size upper anvil. Mechanical delamination strength of the CC tape was not enhanced by the addition of brass laminate and showed no significant difference depending on the superconducting side or the substrate side. Furthermore, both CC tapes exhibited similar delamination mechanisms and sites but showed different fracture morphologies.
Keywords :
barium compounds; brass; delamination; electromechanical effects; fracture; gadolinium compounds; high-temperature superconductors; laminates; mechanical strength; superconducting tapes; thermal expansion; Cu stabilized coated conductor tape; GdBa2Cu3Oy-CuZn; anvil test method; brass laminate addition; brass laminated coated conductor tape; coated conductor tape configurations; coil fabrication; constituent layer; delamination damage; electric device applications; electrical field; electromechanical properties; energy efficient application; excessive radial tensile stresses; fracture morphologies; mechanical delamination strength; screening current; size 12 mm; stainless steel substrate; thermal expansion coefficient mismatch; transverse loading; wide REBCO coated conductor tapes; widthwise direction; Coils; Conductors; Delamination; Stress; Substrates; Superconducting epitaxial layers; Superconducting films; Coated conductors (CCs); coated conductors; delamination; mechanical delamination strength; mechanical delamination strength,; transverse loading; wide width;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2014.2366074