Published May 1983 | Version v1
Journal article

Reduction of a.c. losses by decrease of the surface barrier

  • 1. Physics Dept, Univ. of Ottawa, Ottawa, Ontario, K1N6N5

Description

The authors report on an extensive computational investigation of the effect of the surface barrier on hysteresis losses. These model calculations reveal that the losses can be substantially diminished by lowering the height of the surface barrier. The calculations were carried out for planar (ribbon) and for cylindrical (wire) geometry with the applied magnetic field directed along the surface(s) of the sample and swept between (i) O and H /SUB max/ (half-wave cycle) and (ii) + or - H /SUB max/ (full-wave cycle). The authors examined the behavior for amplitudes below and above that required for full penetration of the flux disturbance to the center of the specimen. They explored the phenomena for two extremal types of bulk pinning, namely the Bean-London (j /SUB c/ = α1) and the Kim-Anderson (j /SUB c/ = α /SUB o/ /B) approximations. They have, for simplicity, assumed that the barrier height is field independent and either symmetric (opposing flux entry and exit equally) or asymmetric (opposing flux entry only)

Additional details

Publishing Information

Journal Title
IEEE Trans. Magn.
Journal Volume
19
Journal Issue
3
Series
IEEE Trans. Magn.
Journal Page Range
256-260
ISSN
0018-9464