用一种新的数学模型绘制环形铁磁磁芯磁化曲线和表征的低成本磁滞图

Tarcísio Oliveira de Moraes, R. Freire, Isaias de Sousa Barbosa, C. P. de Souza
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引用次数: 1

摘要

铁磁材料的特征是磁偶极子,它们与外加磁场的方向一致,显示出高和正的磁化率。许多基于磁性的测量设备都是基于其组成材料的铁磁性,这些材料的适当磁性表征是必不可少的。迟滞仪是一种测量迟滞回线作为频率和磁场函数的仪器,但通常情况下,它是非常昂贵的。因此,本文提出了一种低成本的磁滞图,用于实时绘制环形铁磁磁芯的磁滞回线和磁化曲线。所提出的磁滞图使用大学或研究实验室中常见的仪器和一种新的简单数学模型来获得磁性能(例如磁导率、剩余密度和矫顽力)和磁化曲线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A low-cost hysteresigraph for plotting magnetization curve and characterizing of toroidal ferromagnetic cores using a new mathematical modeling
Ferromagnetic materials are characterized by magnetic dipoles that align themselves to the direction of an applied external magnetic field showing high and positive values of magnetic susceptibility. Many magnetic-based measurement devices are based on the ferromagnetic properties of its constituent materials and the proper magnetic characterization of these materials is essential. A hysteresigraph is an instrument for measuring hysteresis loops as a function of frequency and magnetic field, but, in general, it is very expensive. Thus, this paper presents a low-cost hysteresigraph for plotting hysteresis loops and magnetization curve of toroidal ferromagnetic cores in real time. The proposed hysteresigraph uses common instruments present in universities or research laboratories and a new simple mathematical modeling to obtain the magnetic properties (permeability, residual density and coercivity, for example) and magnetization curve.
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