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A Low-Field Scaling Rule of Minor Hysteresis Loops in Plastically Deformed Steels

机译:塑性变形钢中小磁滞回线的低场缩放定律

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A scaling rule of magnetic minor hysteresis loops at low applied fields has been examined in plastically deformed low carbon steel and pure Ni. It was found that a power law between hysteresis loss and remanence of a minor loop holds true over the wide range of magnetization from the very low to intermediate range unlike the well-known Steinmetz law. The power-law exponent was an almost constant value of 1.35 being independent of the types of magnetic materials, the level of plastic deformation, and sample shape. The coefficient of the scaling rule increases with deformation and is in linear proportion to coercivity. This behavior was qualitatively explained on the basis of the Rayleigh law and NÉel theory.
机译:在塑性变形的低碳钢和纯镍中,研究了低磁场下磁微小磁滞回线的缩放规则。已发现,与众所周知的斯坦梅茨定律不同,磁滞损耗与较小环路的剩磁之间的幂定律在从极低到中等范围的宽磁化范围内都成立。幂律指数几乎是恒定值1.35,与磁性材料的类型,塑性变形的水平和样品的形状无关。缩放规则的系数随变形而增加,并且与矫顽力成线性比例。根据瑞利定律和Néel理论定性地解释了这种行为。

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