DocumentCode :
1529141
Title :
Effect of sample geometry on levitation force in seeded-melt-grown single-domain YBa/sub 2/Cu/sub 3/O/sub x/
Author :
Sagar, S. ; Lahiri, K. ; Shi, D. ; Yang, J.Z.
Author_Institution :
Dept. of Mater. Sci. & Eng., Cincinnati Univ., OH, USA
Volume :
7
Issue :
2
fYear :
1997
fDate :
6/1/1997 12:00:00 AM
Firstpage :
1929
Lastpage :
1932
Abstract :
Magnetic levitation force is a key factor that influences energy loss in flywheel energy storage applications. Experiments on the relationships between levitation force and YB/sub 2/Cu/sub 3/O/sub x/ sample geometry have been conducted. The levitation force has been conducted. The levitation force has been measured for single-domain YBa/sub 2/Cu/sub 3/O/sub x/ samples with different thicknesses and diameters. It has been found that the thickness dependence agrees well with a current model. However, the measured levitation force that was found only within the linear regime. The levitation force in fact increases as the diameter decreases until a threshold value is reached. As the diameter of HTS sample is reduced smaller than the testing magnet (d=12 mm) the force experiences a rather rapid fall. This behaviour can be qualitatively described by a magnetic dipole model based on Meissner currents. Other factors that dominate levitation force are also discussed.
Keywords :
Meissner effect; barium compounds; high-temperature superconductors; magnetic levitation; yttrium compounds; 12 mm; HTS sample; Meissner current; YB/sub 2/Cu/sub 3/O/sub x/ sample geometry; YBa/sub 2/Cu/sub 3/O; diameter dependence; energy loss; flywheel energy storage applications; levitation force; linear regime; magnetic dipole model; magnetic levitation force; sample geometry; seeded-melt-grown single-domain YBa/sub 2/Cu/sub 3/O/sub x/; single-domain YBa/sub 2/Cu/sub 3/O/sub x/ samples; testing magnet; thickness; thickness dependence; threshold value; Energy loss; Energy storage; Flywheels; Force measurement; Geometry; High temperature superconductors; Magnetic levitation; Magnetic materials; Materials science and technology; Superconducting magnetic energy storage;
fLanguage :
English
Journal_Title :
Applied Superconductivity, IEEE Transactions on
Publisher :
ieee
ISSN :
1051-8223
Type :
jour
DOI :
10.1109/77.620963
Filename :
620963
Link To Document :
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