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Investigation of scaling laws in frequency-dependent minor hysteresis loops for ferromagnetic steels

机译:铁磁钢随频率变化的磁滞回线的定标规律研究

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Scaling laws in dynamical magnetic minor hysteresis loops have been investigated in the magnetizing frequency range of 0.05-300 Hz for various steels including Cr-Mo-V steel subjected to creep, cold rolled steels, and plastically deformed Ni. Although scaling laws in the medium magnetization range found previously fail in the high magnetization frequency regime owing to a significant contribution of eddy currents, a scaling power law of the relation between remanence and remanence work of minor loops, associated with a constant exponent of approximately 1.9, holds true in a very low magnetization regime, irrespective of magnetization frequency and investigated materials. The coefficient of the law is proportionally related to Vickers hardness over the wide frequency range. These observations demonstrate that the scaling analysis of dynamical minor loops enables us to evaluate materials degradation in a short measurement time with low measurement field and high sensitivity to defect density.
机译:对于各种钢,包括经受蠕变的Cr-Mo-V钢,冷轧钢和可塑性变形的Ni,已经研究了动态磁微小磁滞回线的缩放定律,磁化频率范围为0.05-300 Hz。尽管由于涡电流的显着贡献,以前发现的中等磁化范围的缩放定律由于高涡流而无法在高磁化频率范围内失效,但是小环的剩磁和剩磁功之间关系的缩放幂律与大约1.9的恒定指数相关,无论磁化频率和研究材料如何,在极低的磁化状态下都是如此。该定律系数在很宽的频率范围内与维氏硬度成正比相关。这些观察结果表明,动态小环的缩放分析使我们能够在较短的测量时间内以较低的测量场和较高的缺陷密度敏感性评估材料的退化。

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