Title :
Delamination Characteristics of Single Layer and Stacked HTS Coated Conductor for Conduction Cooling Application
Author :
Heecheol Park ; Hwanjun Jung ; Seokho Kim ; Minwon Park ; Sangjin Lee ; Hong-Soo Ha ; Seung-Hyun Moon ; Sangkwon Jeong
Author_Institution :
Sch. of Mechatron. Eng., Changwon Nat. Univ., Changwon, South Korea
Abstract :
For the conduction cooling of HTS magnets using coated conductor, the coils are either wet-wound or vacuum impregnated by cryogenic epoxy after dry winding. It is known that the magnet can be degraded after cool down due to delamination of the conductor. There have been several experimental investigations on the weak c-axis strength of the coated conductor. The structural delamination characteristics of the stacked conductor are also important for the design of mechanically stable conductively cooled HTS coil such as HTS generators, HTS motors, and SMES. C-axis tension experiments were performed with narrow soldering anvils to investigate the different delamination strengths at the edge and center of the conductor. FEM analysis was carried out to investigate the thermal stress caused by the different thermal expansion coefficients of several components of HTS coil for conduction cooling. The results of our analysis suggest possible coil configuration changes to avoid excess tensile stress at the edge of the conductor.
Keywords :
cooling; delamination; finite element analysis; high-temperature superconductors; mechanical strength; superconducting coils; superconducting magnets; thermal expansion; thermal stresses; FEM analysis; HTS coil components; HTS generators; HTS magnets; HTS motors; SMES; c-axis tension; coil configuration; conduction cooling application; conductor center; conductor delamination; conductor edge; cryogenic epoxy; delamination strengths; dry winding; excess tensile stress; mechanically stable conductively cooled HTS coil design; narrow soldering anvils; single layer; stacked HTS coated conductor; structural delamination characteristics; thermal expansion coefficients; thermal stress; weak c-axis strength; Coils; Conductors; Delamination; High temperature superconductors; Tensile stress; Thermal stresses; Conduction cooled; delamination; strain; stress; thermal contraction;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2012.2236142