论文标题

金属合金中的塑性变形带作为关键雪崩

Propagating bands of plastic deformation in a metal alloy as critical avalanches

论文作者

Mäkinen, Tero, Karppinen, Pasi, Ovaska, Markus, Laurson, Lasse, Alava, Mikko J.

论文摘要

金属合金的塑性变形位于Portevin中 - LE Chatelier效果在不同类型的频带中,包括传播或类型的“ A”带,通常以其宽度和典型的繁殖速度为特征。这种塑性不稳定性源于与移动溶质原子相互作用的脱位的集体动力学,但对应变率的敏感性缺乏基本理解。在这里,我们通过在铝合金的拉伸变形实验中采用高分辨率成像来表明,带速度表现出很大的波动。每个频段都会产生一个速度信号,让人联想到在许多驱动的雪崩系统中观察到的crack绕噪声爆发,从裂缝的传播裂纹到铁磁体中的barkhausen效应。这些速度爆发的统计特征,包括它们的平均形状和尺寸分布遵守关键雪崩动力学的简单均值模型的预测。因此,我们的结果揭示了变形本地化的新颖范围。

The plastic deformation of metal alloys localizes in the Portevin--Le Chatelier effect in bands of different types, including propagating, or type 'A' bands, usually characterised by their width and a typical propagation velocity. This plastic instability arises from collective dynamics of dislocations interacting with mobile solute atoms but the resulting sensitivity to the strain-rate lacks fundamental understanding. Here we show, by employing high-resolution imaging in tensile deformation experiments of an aluminum alloy, that the band velocities exhibit large fluctuations. Each band produces a velocity signal reminiscent of crackling noise bursts observed in numerous driven avalanching systems from propagating cracks in fracture to the Barkhausen effect in ferromagnets. The statistical features of these velocity bursts including their average shapes and size distributions obey predictions of a simple mean-field model of critical avalanche dynamics. Our results thus reveal a novel paradigm of criticality in the localization of deformation.

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