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首页> 外文期刊>Journal of Physics. Condensed Matter >Thermo-magnetic history effects in the giant magnetostriction across the first-order transition and minor hysteresis loops modeling in Fe _(0.955)Ni _(0.045)Rh alloy
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Thermo-magnetic history effects in the giant magnetostriction across the first-order transition and minor hysteresis loops modeling in Fe _(0.955)Ni _(0.045)Rh alloy

机译:Fe _(0.955)Ni _(0.045)Rh合金的一阶跃迁和微小磁滞回线模型中的大磁致伸缩中的热磁历史效应

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摘要

Results of temperature- and magnetic field-dependent strain measurements across the first-order antiferromagnetic to ferromagnetic phase transition in Fe _(0.955)Ni _(0.045)Rh are presented. Distinct thermal and magnetic field hystereses are observed in the measured strain across the phase transition. The minor hysteresis loops inside the hysteretic regime across the temperature-driven transition are modeled using the Preisach model of hysteresis. The applicability of the Preisach model to explain the general features of minor hysteresis loops is discussed for a disorder influenced first-order transition. The minor hysteresis loops show the property of retaining the memory of the starting or end point of the temperature cycle followed within the hysteretic region. A larger temperature excursion within the hysteretic region wipes out the memory of a smaller temperature cycle which contains one of the extrema of the larger cycle. The end-point memory and the wiping-out property of the minor hysteresis loops can be described quite well within the Preisach model, irrespective of the temperature history followed to reach a particular starting point. Thermo-magnetic history effects across the magnetic field-induced transition are explained, which will enable the choice of the starting point of an experimental cycle in the fieldtemperature phase space so as to achieve the desired functionality. Our results highlight the necessity to understand the influence of disorder on a first-order phase transition so as to achieve a repeatable performance of materials whose functionalities are based on such a transition.
机译:给出了在Fe _(0.955)Ni _(0.045)Rh中一阶反铁磁到铁磁相变的温度和磁场相关应变测量结果。在整个相变中测得的应变中观察到了明显的热和磁场滞后现象。使用磁滞的Preisach模型对整个温度驱动的过渡过程中的磁滞范围内的微小磁滞回线进行建模。对于影响无序一阶跃迁的问题,讨论了Preisach模型用于解释较小磁滞回线的一般特征的适用性。较小的磁滞回线显示了在磁滞区域内保留温度循环起点或终点的记忆的特性。滞后区域内较大的温度偏移会抹去较小温度循环的记忆,其中较小的温度循环包含较大循环的极值之一。在Preisach模型中,可以很好地描述较小的磁滞回线的端点记忆和擦除特性,而与达到特定起点的温度历史无关。解释了磁场诱导的跃迁上的热磁历史效应,这将使得能够在场温度相空间中选择实验周期的起点,从而实现所需的功能。我们的结果强调了必须了解无序对一阶相变的影响,以便获得其功能基于这种相变的材料的可重复性能。

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