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Modeling plastic deformation effect on magnetization in ferromagnetic materials

Based on the Sablik-Landgraf model, an integrated model has been developed which provides a description of the effect of plastic deformation on magnetization. The modeling approach is to incorporate the effect of plastic deformation on the effective field and that on the model parameters. The effect...

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Bibliographic Details
Published in:Journal of applied physics 2012-03, Vol.111 (6), p.063909-063909-4
Main Authors: Li, Jianwei, Xu, Minqiang, Leng, Jiancheng, Xu, Mingxiu
Format: Article
Language:English
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Summary:Based on the Sablik-Landgraf model, an integrated model has been developed which provides a description of the effect of plastic deformation on magnetization. The modeling approach is to incorporate the effect of plastic deformation on the effective field and that on the model parameters. The effective field incorporates the contributions of residual stress, stress demagnetization term, and the plastic deformation. We also consider the effect of plastic deformation on the model parameters: pinning coefficient, the scaling constant and the interdomain coupling coefficient. The computed magnetization exhibits sharp change in the preliminary stage of plastic deformation, and then decreases slowly with the increase of plastic strain, in agreement with experimental results.
ISSN:0021-8979
1089-7550
DOI:10.1063/1.3695460