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Unique correlation between non-linear distortion of tangential magnetic field and magnetic excitation voltage - Unexplored ferromagnetic phenomena and their application for ferromagnetic materials evaluation

机译:切向磁场的非线性畸变与励磁电压之间的独特关联-未探明的铁磁现象及其在铁磁材料评估中的应用

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Unexplored ferromagnetic phenomena of non-linear distortion of tangential magnetic field (H_T) and that of excitation voltage (V_E) across the electromagnetic (EM) yoke, in the presence of a ferromagnetic material between the poles of the EM yoke, have been uniquely correlated in this study. Both the H_T and V_E show similar distortion behaviour, but in the opposite direction, with unique shape for each ferromagnetic sample with different microstructural conditions. Interestingly unique correlation between (dV_E/dr) and (dH_T/dt) profiles and their ability to distinguish different magnetisation behaviour of ferromagnetic material with different microstructures have also been discussed in this study. One to one correlation between the distortion of H_T and V_E shown in this study is clear evidence that both these parameters are strongly influenced by the same mechanism of magnetisation process, but in different ways. The systematic changes in the height and position of the peak and the trough on the time derivative profiles of V_E and H_T reflect the subtle differences in the magnetisation process for each micro-structural condition of the steel. This study reveals the new scientific insight and good potential of this novel as well as very simple approach of distortion analysis of H_T and V_E for understanding the influence of material properties on the mechanism of magnetisation process and also their suitability for variety of applications related to materials evaluation of ferromagnetic components and structures.
机译:在EM磁轭的极之间存在铁磁材料的情况下,切向磁场(H_T)的非线性畸变和电磁(EM)磁轭上的激发电压(V_E)的非线性畸变的未探明的铁磁现象已被唯一关联在这个研究中。 H_T和V_E都显示相似的畸变行为,但方向相反,对于具有不同微结构条件的每个铁磁样品,其形状都是唯一的。有趣的是,(dV_E / dr)和(dH_T / dt)轮廓之间的独特关联以及它们区分具有不同微结构的铁磁材料的不同磁化行为的能力也已在本研究中进行了讨论。这项研究中显示的H_T和V_E畸变之间的一对一相关性清楚地表明,这两个参数都受到相同的磁化过程机制的强烈影响,但方式不同。 V_E和H_T的时间导数曲线上峰高和谷低的系统变化,反映了每种钢的微观结构条件下磁化过程中的细微差异。这项研究揭示了该小说的新科学见解和良好潜力,以及H_T和V_E畸变分析的非常简单的方法,用于了解材料特性对磁化过程机理的影响以及它们对与材料相关的各种应用的适用性。铁磁元件和结构的评估。

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