Modelling the Anisotropic Properties of Grain-Oriented Materials

Authors

Floran Martin
Aalto University, Department of Electrical Engineering and Automation
https://orcid.org/0000-0001-7153-9677
Julien Taurines
Aalto University, Department of Electrical Engineering and Automation
https://orcid.org/0000-0001-5525-8576
Anouar Belahcen
Aalto University, Department of Electrical Engineering and Automation
https://orcid.org/0000-0003-2154-8692

Synopsis

Grain oriented material presents highly anisotropic properties involving both the magnetocrystalline anisotropy and shape anisotropy. Whereas the former is generally well known for iron silicon alloys, the later involves a complex domain decomposition. In this paper, we propose to model the anhysteretic vector properties of grain-oriented steel sheet with a multiscale model. The complexity of the domain decomposition is simplified by a simple shape anisotropy term. The general trend of the measured anhysteretic flux density components can be reproduced by the model.

Author Biographies

Floran Martin, Aalto University, Department of Electrical Engineering and Automation

Aalto, Finland. E-mail: floran.martin@aalto.fi

Julien Taurines, Aalto University, Department of Electrical Engineering and Automation

Aalto, Finland. E-mail: julien.taurines@g2elab.grenoble-inp.fr

Anouar Belahcen, Aalto University, Department of Electrical Engineering and Automation

Aalto, Finland. E-mail: anouar.belahcen@aalto.fi

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Published

May 14, 2025

How to Cite

Modelling the Anisotropic Properties of Grain-Oriented Materials. (2025). In XXVIII. Symposium Electromagnetic Phenomena in Nonlinear Circuits (EPNC 2024): Conference Proceedings (pp. 165-170). University of Maribor Press. https://press.um.si/index.php/ump/catalog/book/963/chapter/475