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Modeling the Influence of a Magnetomechanical Effect on the Permeability Tensor of a Tensductor Core

机译:磁机械效应对张量铁芯磁导率张量的影响建模

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摘要

This paper presents a new method of modeling the influence of mechanical stresses on a magnetic permeability tensor of soft magnetic materials. The proposed method utilizes the principal stresses concept to compensate the influence of shear stresses. As a result, the stress dependence of a magnetic permeability tensor may be assessed with only the knowledge about the influence of axial stresses on magnetic properties of isotropic material. The proposed method was used for a finite element method based model of a tensductor designed for measurements of tensile forces. Due to the fact that 2D stresses distribution occurs in a tensductor, simplification of both principal stresses and a magnetic permeability tensor rotation procedure was proposed. As a result, good agreement was reached between the results of modeling and the results of experimental tests. This result validates the possibility of utilization of the proposed modeling method for the design of magnetomechanical devices.
机译:本文提出了一种对机械应力对软磁材料的磁导率张量进行建模的新方法。所提出的方法利用主应力概念来补偿剪切应力的影响。结果,可以仅利用关于轴向应力对各向同性材料的磁性能的影响的知识来评估导磁率张量的应力依赖性。所提出的方法用于基于张量传感器的有限元方法模型,该张量模型用于测量拉力。由于在张量中会出现2D应力分布,因此建议简化主应力并简化磁导率张量旋转过程。结果,在建模结果与实验测试结果之间达成了良好的一致性。该结果证实了所提出的建模方法用于磁机械装置设计的可能性。

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