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考虑具有轴向各向异性材料的旋转和饱和状态的三维磁导率张量模型

Model of a 3D Magnetic Permeability Tensor Considering Rotation and Saturation States in Materials with Axial Anisotropy.

作者信息

Kopala Dominika, Ostaszewska-Liżewska Anna, Råback Peter, Szewczyk Roman

机构信息

Institute of Metrology and Biomedical Engineering, Faculty of Mechatronics, Warsaw University of Technology, sw. A. Boboli 8, 02-525 Warsaw, Poland.

CSC-IT Center for Science, P.O. Box 405, FI-02101 Espoo, Finland.

出版信息

Materials (Basel). 2023 Apr 29;16(9):3477. doi: 10.3390/ma16093477.

Abstract

The paper proposes a 3D extension of the linear tensor model of magnetic permeability for axially anisotropic materials. In the proposed model, all phases of a magnetization process are considered: linear magnetization, magnetization rotation, and magnetic saturation. The model of the magnetization rotation process is based on the analyses of both anisotropic energy and magnetostatic energy, which directly connect the proposed description with physical phenomena occurring during a magnetization process. The proposed model was validated on the base of previously presented experimental characteristics. The presented extension of the tensor description of magnetic permeability enables the modelling of inductive devices with cores made of anisotropic magnetic materials and the modelling of magnetic cores subjected to mechanical stresses. It is especially suitable for finite element modelling of the devices working in a magnetic saturation state, such as fluxgate sensors.

摘要

本文提出了一种适用于轴向各向异性材料的磁导率线性张量模型的三维扩展。在所提出的模型中,考虑了磁化过程的所有阶段:线性磁化、磁化旋转和磁饱和。磁化旋转过程的模型基于对各向异性能量和静磁能量的分析,这直接将所提出的描述与磁化过程中发生的物理现象联系起来。所提出的模型在先前给出的实验特性基础上得到了验证。所给出的磁导率张量描述的扩展使得能够对由各向异性磁性材料制成磁芯的电感装置进行建模,以及对承受机械应力的磁芯进行建模。它特别适用于对处于磁饱和状态下工作的装置进行有限元建模,如磁通门传感器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a831/10180293/7967d1c5230e/materials-16-03477-g001.jpg

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