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首页> 外文期刊>Journal of Physics. Condensed Matter >Avalanche criticality in thermal-driven martensitic transitions: the asymmetry of the forward and reverse transitions in shape-memory materials
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Avalanche criticality in thermal-driven martensitic transitions: the asymmetry of the forward and reverse transitions in shape-memory materials

机译:热驱动马氏体转变中的雪崩临界性:形状记忆材料的前向和反转的不对称性

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摘要

Martensitic transitions take place intermittently as a sequence of avalanches which are accompanied by the emission of acoustic waves. The study of this acoustic emission (AE) reveals the scale-free nature of the avalanches. In a number of shape memory materials undergoing a martensitic transition it has been found that, in spite of relatively low hysteresis, the dynamics of forward and reverse transitions are different, which may explain the fact that the AE activity is different in both forward and reverse transitions. The asymmetry could be a consequence of the fact that, while nucleation is required for the transition from the parent to martensitic phase to take place, reverse transition occurs by fast shrinkage of martensitic domains. We have analysed in detail the distribution of avalanches in cooling and heating runs in Fe-Pd and Cu-Zn-Al shape-memory alloys. In the former, the martensitic transition is weakly first order while it shows a significant first order character in the latter. We have found that in Fe-Pd the distributions are power law for the forward and reverse transitions characterized by the same critical exponents. For Cu-Zn-Al the distribution of avalanches is critical in forward transitions but exponentially damped in the reverse transition. It is suggested that this different behaviour could originate from the different dynamic mechanisms in forward and reverse transitions.
机译:马氏体转变间歇地作为一系列雪崩伴随着声波的发射。对这种声学发射(AE)的研究揭示了雪崩的无垢性质。在经历的一些形状的记忆材料中,已经发现,尽管存在相对低的滞后,前向和反转过渡的动态不同,这可以解释AE活动在前进和反向方面的AE活动不同的事实过渡。不对称可能是这样的事实,而在从父母到马氏体相到发生成核的同时,通过马氏体结构域的快速收缩发生反转转变。我们详细分析了Fe-Pd和Cu-Zn-Al形记忆合金中冷却和加热中的雪崩的分布。在前者中,马氏体过渡是弱第一的顺序,而在后者上显示了一个重要的第一阶性格。我们发现,在FE-PD中,分布是由相同关键指数的前进和反转转换的权力法。对于Cu-Zn-Al,雪崩的分布在前向转换中是至关重要的,但在反转过渡中呈指数抑制。建议这种不同的行为可能来自前向和反转的不同动态机制。

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