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A Scalar Hysteresis Model of Ferromagnetic Materials Based on the Elemental Operators

机译:基于元素算符的铁磁材料标量磁滞模型

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This paper introduces an elemental operator with biaxial anisotropy to simulate the scalar hysteresis phenomenon of the ferromagnetic materials. The equilibrium position of the magnetization for the elemental operator can be determined by energy minimization. To directly describe the magnetic properties of each operator, an improved analytical expression is deduced by the partial approximate substitutions. Moreover, this approach utilizes the concept of distribution function density in order to consider the interaction field and the coercive force of the elemental operators. To verify the presented model, the magnetic hysteresis of two different magnetic materials under alternating excitations is measured by the magnetic property measurement system and calculated by this elemental operator method, respectively. The comparisons suggest that this elemental operator is effective and can be a useful tool to simulate the scalar magnetic properties of ferromagnetic materials.
机译:本文引入具有双轴各向异性的元素算子来模拟铁磁材料的标量磁滞现象。对于元素算子,磁化的平衡位置可以通过最小化能量来确定。为了直接描述每个算子的磁特性,通过局部近似替换推导了改进的分析表达式。此外,该方法利用分布函数密度的概念来考虑元素算子的相互作用场和矫顽力。为了验证所提出的模型,通过磁性能测量系统测量了两种不同磁性材料在交替激励下的磁滞,并分别通过该元素算子方法进行了计算。比较表明该元素算子是有效的,并且可以用作模拟铁磁材料的标量磁性能的有用工具。

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