扩展Steinmetz方程:将机械应力效应纳入铁氧体铁芯损耗计算

IF 5 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC
Jannik Schäfer;Gwendolin Rohner;Johann W. Kolar
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引用次数: 0

摘要

本文扩展了广义Steinmetz方程(GSE)来解释机械应力对铁氧体铁芯损耗的影响。实验测量了压应力和拉应力对不同铁氧体材料相对磁导率和铁芯损耗的影响。机械应力对铁芯损耗有显著影响,这取决于磁通密度的相对方向和施加的机械应力。具体而言,当通量和压应力向量平行时,损失单调增加,而垂直向量导致更复杂的响应,这取决于机械应力的水平。测量到的损耗特性被转换为GSE的扩展(X-GSE),该方法在不同的铁氧体材料中得到验证,并为机械应力下铁芯损耗的首次粗略估计提供了有用的工具。最后,有限元模拟证明了铁氧体磁芯中热诱导的机械应力如何重新分配磁通量,从而影响磁芯损耗,这强调了考虑铁氧体磁芯损耗的应力依赖性的重要性,特别是在开发不可压缩材料封装的磁性元件时。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Extending the Steinmetz Equation: Incorporating Mechanical Stress Effects in Ferrite Core Loss Calculations
This paper extends the Generalized Steinmetz Equation (GSE) to account for the influence of mechanical stress on ferrite core losses. Experimental measurements are used to quantify the effects of compressive and tensile stresses on the relative permeability and the core losses of different ferrite materials. Mechanical stress is found to significantly affect the core losses, depending on the relative orientation of the magnetic flux density and the applied mechanical stress. Specifically, the losses monotonically increase when the flux and compressive stress vectors are parallel, while perpendicular vectors lead to a more complex response depending on the level of mechanical stress. The measured loss characteristics are translated in an extension of the GSE (X-GSE), which is validated for different ferrite materials, and provides a useful tool for a first rough estimation of the core losses under mechanical stresses. Finally, FEM simulations demonstrate how thermally induced mechanical stresses in a ferrite core can redistribute the magnetic flux and therefore impact the resulting core losses, which underlines the importance of considering the stress dependence of core losses in ferrite, especially in the development of magnetic components to be encapsulated in incompressible materials.
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CiteScore
8.60
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