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3-D Magneto-Mechanical Finite Element Analysis of Galfenol-Based Energy Harvester Using an Equivalent Stress Model

机译:3-D磁机械有限元分析使用等效应力模型的加仑酚类能源收割机

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摘要

This article presents the implementation of an equivalent stress model to analyze a Galfenol-based magneto-mechanical energy harvesting concept device. The equivalent stress approach can transform any arbitrary stress tensor into a uniaxial stress acting along the direction of the magnetic flux density. Unlike multiaxial magneto-mechanical phenomenological models, it offers simple implementation to predict the permeability change by interpolation from uniaxial measurements. For the first time, the proposed model is implemented in a 3-D finite element solver using COMSOL Multiphysics software to analyze an energy harvesting setup, where the effect of mechanical preload and magnetic bias on the output power can be studied. The model is tested under different compressive loading cases ranging 20–80 MPa, and the simulated results are compared with the measurement results for validation. The results show that the approach can successfully be used as a tool to analyze the behavior of the harvester device and to determine the optimal design parameters.
机译:本文介绍了等效应力模型的实施,以分析基于加仑的磁性机械收割概念装置。等效应力方法可以将任何任意应力张量转换成沿磁通密度方向作用的单轴应力。与多轴磁力机械现象学模型不同,它提供了简单的实现,以预测通过单轴测量的插值来预测渗透性。首次,所提出的模型在使用COMSOL MultiphySics软件中实现在3D有限元件求解器中,以分析能量收集设置,其中可以研究机械预载和磁偏压对输出功率的影响。该模型在不同的压缩加载案例下进行测试,范围为20-80MPa,并将模拟结果与测量结果进行比较。结果表明,该方法可以成功用作分析收割机装置的行为的工具,并确定最佳设计参数。

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