Micromagnetic Hysteresis Model Dealing With Magnetization Flip Motion for Grain-Oriented Silicon Steel
Atsushi Furuya, Jun Fujisaki, Yuji Uehara, Koichi Shimizu, Hirotaka Oshima, Tetsuji Matsuo
Abstract
Atsushi Furuya, Jun Fujisaki, Yuji Uehara, Koichi Shimizu, Hirotaka Oshima, Tetsuji Matsuo
Abstract
This paper presents a vector hysteresis model based on micromagnetic theory. In this model, a magnetization state of a magnetic material is described by a collection of single-domain particles, and magnetic reversal processes due to domain-wall motions are treated approximately as a magnetization flip. The present model is applied to calculation of hysteresis properties of grain-oriented silicon steel. The simulation results show that the anisotropic hysteresis properties and iron loss can be reproduced accurately by the present model.
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This paper presents a vector hysteresis model based on micromagnetic theory. In this model, a magnetization state of a magnetic material is described by a collection of single-domain particles, and magnetic reversal processes due to domain-wall motions are treated approximately as a magnetization flip. The present model is applied to calculation of hysteresis properties of grain-oriented silicon steel. The simulation results show that the anisotropic hysteresis properties and iron loss can be reproduced accurately by the present model.
Key concepts: Magnetization, Hysteresis, Micromagnetics, Condensed matter physics, Stoner–Wohlfarth model, Magnetic hysteresis, Materials science, Magnetic domain