Internal Demagnetizing Factor in Ferrous Metals

Author:

Takács Jenő1,Kovács György2,Varga Lajos K.3

Affiliation:

1. Department of Engineering Science, University of Oxford, Parks Road, Oxford OX1 3PJ, UK

2. Department of Materials, Physics of Eotvos Lorand University, P.O. Box 32, Budapest 1518, Hungary

3. Research Institute for Solid State Physics and Optics, P.O. Box 49, Budapest 1525, Hungary

Abstract

Modelling the saturation major loop of a ferrous metal produces the intrinsic magnetization parameters; fitting the measured commutation curve, however, can yield different results. The relation of the intrinsic loci of the vertices of the minor loops (ND=0) to the experimental curve (ND0) is investigated. The two-way transformation between the two curves is formulated in closed mathematical form with the help of the internal demagnetization factor, ND. The method is applied to four ferrous metals, with widely different intrinsic properties (soft nonoriented Fe-Si steel, normalized low carbon steel, and Finemet in nanocrystalline and amorphous state) supporting the predictions of the proposal. The developed relationship is model independent and it is shown that the ND factor depends linearly on coercivity based on experimental evidence.

Publisher

Hindawi Limited

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