组合电工钢磁芯的数值建模

COMPEL Pub Date : 2024-04-08 DOI:10.1108/compel-11-2023-0581
Oussama-Ali Dabaj, Ronan Corin, Jean-Philippe Lecointe, Cristian Demian, Jonathan Blaszkowski
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引用次数: 0

摘要

本文旨在研究晶粒取向电工钢(GOES)牌号的组合对单相磁芯内比铁损耗和磁通密度分布的影响。本文介绍了有限元法(FEM)模拟的结果,研究了混合两种不同的 GOES 牌号对单相磁芯损耗的影响。作者使用了不同的模型:一个具有高度详细几何结构(包括饱和度和各向异性)的三维模型,以及一个简化的二维模型,以节省计算时间。分析了混合磁芯中磁通量分布的行为。结果混合磁芯的比铁损耗与损耗最低的 GOES 磁级相比呈现非线性下降。使用二维和三维有限元分析磁芯行为表明,GOES 磁种的滚动方向对比损耗的非线性变化起着关键作用。 原创性/价值这项研究的创新之处在于,通过在单相磁芯中结合传统和高性能 GOES 磁种,实现了制造成本和磁芯效率之间的最佳平衡。
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Numerical modeling of magnetic cores with combined electrical steel grades

Purpose

This paper aims to investigate the impact of combining grain-oriented electrical steel (GOES) grades on specific iron losses and the flux density distribution within a single-phase magnetic core.

Design/methodology/approach

This paper presents the results of finite-element method (FEM) simulations investigating the impact of mixing two different GOES grades on losses of a single-phase magnetic core. The authors used different models: a 3D model with a highly detailed geometry including both saturation and anisotropy, as well as a simplified 2D model to save computation time. The behavior of the flux distribution in the mixed magnetic core is analyzed. Finally, the results from the numerical simulations are compared with experimental results.

Findings

The specific iron losses of a mixed magnetic core exhibit a nonlinear decrease with respect to the GOES grade with the lowest losses. Analyzing the magnetic core behavior using 2D and 3D FEM shows that the rolling direction of the GOES grades plays a critical role on the nonlinearity variation of the specific losses.

Originality/value

The novelty of this research lies in achieving an optimum trade-off between the manufacturing cost and the core efficiency by combining conventional and high-performance GOES grade in a single-phase magnetic core.

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