DocumentCode :
1441219
Title :
The use of the Bi-2223 superconducting tubes
Author :
Plechacek, V. ; Hejtmanek, J. ; Sima, V.
Author_Institution :
Inst. of Phys., Praha, Czech Republic
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
703
Lastpage :
706
Abstract :
The work is mainly devoted to the possibility of the use of the BPSCCO tubes as permanent superconducting magnets, i.e. to the increase of the critical current density J/sub c/ and the trapped magnetic flux density B/sub tr/. The obtained results are also applied for the superconducting current leads and fault current limiters. The Bi-2223 tubes were prepared by the isostatic pressing using a pressing mandrel and they were thermomechanically processed several times. It was shown that the texture formed during the process and favorably influencing J/sub c/ is more pronounced in tubes with thinner walls. With regard to this fact, a superconducting magnet composed of many thinner tubes was prepared. The trapped magnetic flux density in the hole of the magnet reached up to 0.5 T at 20 K and, after cooling the magnet at 15 K, the B/sub tr/ value of 0.5 T was maintained seemingly without relaxation for five days. This multi tubes magnet was also compared with one composed of two tubes of thicker walls. The J/sub c/ of about 1000 A/cm/sup 2/ (at 77 K and under self field of about 20 mT) achieved for the single tubes indicates an advantage of the use of relatively thin Bi-2223 tubes for the superconducting current leads and fault current limiters.
Keywords :
bismuth compounds; calcium compounds; copper compounds; current limiters; electron device manufacture; high-temperature superconductors; lead compounds; strontium compounds; superconducting cables; superconducting magnets; 0.5 T; 15 K; 20 K; 20 mT; 77 K; Bi-2223 superconducting tubes; BiPbSrCaCuO; critical current density; fault current limiters; isostatic pressing; permanent superconducting magnets; pressing mandrel; superconducting current leads; trapped magnetic flux density; Fault current limiters; Heat treatment; Magnetic flux; Magnetic materials; Permanent magnets; Pressing; Shape; Superconducting films; Superconducting magnets; Superconducting materials;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.614601
Filename :
614601
Link To Document :
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