DocumentCode
1478646
Title
Comparative studies on “sandwich” rolling and flat rolling in processing Ag/Bi-2223 tapes
Author
Chen, Wu M. ; Guo, Yuan C. ; Fu, Xue K. ; Liu, Hua K. ; Dou, Shi X. ; Apperley, Miles
Author_Institution
Dept. of Phys., Nanjing Univ., China
Volume
11
Issue
1
fYear
2001
fDate
3/1/2001 12:00:00 AM
Firstpage
3752
Lastpage
3755
Abstract
The normal rolling method is commonly used for intermediate mechanical deformation in the powder-in-tube process to make Ag-clad Bi-based superconducting tapes. To compare the effects of different reduction processing on the superconducting properties of Ag/Bi-2223 tapes, the reduction rate dependence of the critical current densities J c of tapes processed by three methods, including normal rolling, pressing and “sandwich” rolling, has been systematically studied. Experimental results show that Jc dependence on the reduction rate for the three processes follows the same law. There is an optimal reduction rate in each case, which gives the highest physical density and the highest Jc. When the reduction rate increases, Jc initially increases, reaches a maximum and then diminishes. The density-reduction rate follows a corresponding trend. However, the maximum Jc of the Ag/Bi-2223 tapes made using “sandwich” rolling is 35% higher than is the case for normal rolling even though the tapes in both cases have the same density of the oxide core. XRD analysis shows that the significant difference in Jc of tapes processed using the three different intermediate deformation procedures cannot be attributed to the phase composition. SEM images show that normally rolled tapes have much higher density of microcracks than “sandwich” rolled tapes. It is evident that the Jc of a tape is strongly dependent on oxide core density and deformation procedure
Keywords
X-ray diffraction; bismuth compounds; calcium compounds; critical current density (superconductivity); deformation; high-temperature superconductors; microcracks; multifilamentary superconductors; powder technology; rolling; scanning electron microscopy; silver; strontium compounds; superconducting tapes; Ag; Ag-clad Bi-based superconducting tapes; Ag/Bi-2223 tapes; BiSrCaCuO; HTSC; SEM images; XRD analysis; critical current densities; flat rolling; intermediate mechanical deformation; microcracks; normally rolled tapes; oxide core; phase composition; powder-in-tube process; pressing; processing; reduction rate; reduction rate dependence; sandwich rolling; superconducting properties; Australia; Critical current; Critical current density; Employment; Multifilamentary superconductors; Pressing; Superconducting films; Superconducting materials; Telephony; X-ray scattering;
fLanguage
English
Journal_Title
Applied Superconductivity, IEEE Transactions on
Publisher
ieee
ISSN
1051-8223
Type
jour
DOI
10.1109/77.919880
Filename
919880
Link To Document