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Avalanche criticality in the martensitic transition of Cu67.64 Zn16.71 Al15.65 shape-memory alloy: A calorimetric and acoustic emission study

机译:Cu67.64 Zn16.71 Al15.65形状记忆合金马氏体转变中的雪崩临界:量热和声发射研究

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摘要

The first-order diffusionless structural transition in Cu67.64 Zn16.71 Al15.65 is characterized by jerky propagation of phase fronts related to the appearance of avalanches. In this paper, we describe a full analysis of this avalanche behavior using calorimetric heat-flux measurements and acoustic emission measurements. Two different propagation modes, namely, smooth front propagation and jerky avalanches, were observed in extremely slow measurements with heating and cooling rates as low as a few 10-3 K/h. Avalanches show criticality where each avalanche leads to a spike in the heat flux. Their statistical analysis leads to a power law [P (E) ∼ E-ε, where P (E) dE is the probability to observe an avalanche with energy E in an interval between E and E+dE] with an energy exponent of ε=2.15±0.15 in excellent agreement with the results of acoustic emission measurements. Avalanches appear to be more common for heating rates faster than 5× 10-3 K/h whereas smooth front propagation occurs in all calorimetric measurements and (almost) exclusively for slower heating rates. Repeated cooling runs were taken after a waiting time of 1 month (and an intermediate heating run). Correlations between the avalanche sequences of the two cooling runs were found for the strongest avalanche peaks but not for the full sequence of avalanches. The memory effect is hence limited to strong avalanches.
机译:Cu67.64 Zn16.71 Al15.65中的一阶无扩散结构转变的特征在于与雪崩的出现有关的相前锋的急速传播。在本文中,我们使用量热通量测量和声发射测量来描述这种雪崩行为的完整分析。在极其缓慢的测量中,观察到两种不同的传播模式,即平滑的正面传播和生涩的雪崩,加热和冷却速率低至10-3 K / h。雪崩显示出临界点,其中每个雪崩都会导致热通量峰值。他们的统计分析得出了幂律[P(E)〜E-ε,其中P(E)dE是在E和E + dE之间的间隔内观察到能量为E的雪崩的概率],能量指数为ε = 2.15±0.15,与声发射测量结果非常吻合。雪崩似乎比5×10-3 K / h更快的加热速率更常见,而在所有量热测量中(几乎)专门针对较慢的加热速率,发生平滑的正面传播。在等待了1个月的时间后进行了多次冷却运行(并进行了中间加热运行)。发现两个冷却运行的雪崩序列之间的相关性最强的雪崩峰,而不是整个雪崩序列。因此,记忆效应仅限于强雪崩。

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