Title :
Influence of Filament Number on Workability and Critical Current Density of Bi-2212/Ag Superconducting Wires
Author :
Ha, Dong-Woo ; Kim, Sang-Cheol ; Oh, Jae-Gun ; Ha, Hong-Soo ; Lee, Nam-Jin ; Song, Kyu-Jeong ; Kim, Tae-Hyung ; Ko, Rock-Kil ; Kim, Ho-Sup ; Park, Seong-Kuk ; Lee, Sang-Kil ; Roh, Yu-Mi ; Oh, Sang-Soo
Author_Institution :
Korea Electrotechnol. Res. Inst., Changwon
fDate :
6/1/2007 12:00:00 AM
Abstract :
The important merit of Bi-2212/Ag high Tc superconducting wire is to apply cable as round wire geometry. Bi-2212/Ag wires were fabricated in order to develop Rutherford cable for SMES near the future. Various Ag ratio and various numbers of filaments for PIT (powder-in-tube) process were applied to investigate the workability during drawing and to improve critical current property of the wires. In order to find proper working process, we investigated the variation of drawing stress during working. Post-annealing of Bi-2212/Ag wires at various atmospheres was carried out after main heat-treatment in order to increase critical current density. The results of post-annealing in nitrogen were better than that of post-annealing in oxygen. Jc of Bi-2212/Ag wire was increased as increased maximum temperature,Tm , for partial melting until 890degC, and highest Jc was over than 2000 A/mm2. The shape of grain was observed by SEM to investigate Bi-2212 phase formation in filaments. The critical current density increased in proportion to the increase of Bi-2212/Ag wire´s filaments number.
Keywords :
annealing; bismuth compounds; calcium compounds; critical current density (superconductivity); drawing (mechanical); high-temperature superconductors; multifilamentary superconductors; scanning electron microscopy; silver; strontium compounds; workability; Bi2Sr2CaCu2O-Ag; Rutherford cable; SEM; SMES; critical current density; drawing stress; filament number; grain shape; heat treatment; high Tc superconducting wire; post annealing; powder-in-tube process; temperature 890 degC; workability; Atmosphere; Critical current; Critical current density; Geometry; Nitrogen; Samarium; Stress; Superconducting cables; Superconducting filaments and wires; Workability; Bi-2212/Ag HTS wire; critical current; multi-filamentary wire; workability;
Journal_Title :
Applied Superconductivity, IEEE Transactions on
DOI :
10.1109/TASC.2007.897987