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铁弹性纳米结构中的热与非热噼啪噪声

Thermal and athermal crackling noise in ferroelastic nanostructures.

作者信息

Zhao Z, Ding X, Sun J, Salje E K H

机构信息

Department of Earth Sciences, University of Cambridge, Cambridge CB2 3EQ, UK. State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, People's Republic of China.

出版信息

J Phys Condens Matter. 2014 Apr 9;26(14):142201. doi: 10.1088/0953-8984/26/14/142201. Epub 2014 Mar 20.

Abstract

The evolution of ferroelastic microstructures under external shear is determined by large-scale molecular dynamics simulations in two and three dimensions. Ferroelastic pattern formation was found to be almost identical in two and three dimensions, with only the ferroelastic transition temperature changing. The twin patterns generated by shear deformation depend strongly on temperature, with high wall densities nucleating under optimized temperature conditions. The dynamical tweed and mobile kink movement inside the twin walls is continuous and thermally activated at high temperatures, and becomes jerky and athermal at low temperatures. With decreasing temperature, the statistical distributions of dynamical tweed and kinks vary from a Vogel-Fulcher law P(E)exp-(E/(T-TVF)) to an athermal power-law distribution P(E)E-E. During the yield event, the nucleation of needles and kinks is always jerky, and the energy of the jerks is power-law distributed. Low-temperature yield proceeds via one large avalanche. With increasing temperature, the large avalanche is thermally broken up into a multitude of small segments. The power-law exponents reflect the changes in temperature, even in the athermal regime.

摘要

通过二维和三维大规模分子动力学模拟确定了外部剪切作用下铁弹性微结构的演变。发现二维和三维中的铁弹性图案形成几乎相同,只是铁弹性转变温度发生了变化。剪切变形产生的孪晶图案强烈依赖于温度,在优化的温度条件下会形成高密度的壁。孪晶壁内的动态花呢和移动扭结运动在高温下是连续且热激活的,而在低温下变得不连续且非热激活。随着温度降低,动态花呢和扭结的统计分布从Vogel-Fulcher定律P(E)exp-(E/(T-TVF))变为非热幂律分布P(E)E-E。在屈服事件期间,针状和扭结的成核总是不连续的,且不连续的能量呈幂律分布。低温屈服通过一次大的雪崩进行。随着温度升高,大的雪崩热分解为许多小片段。幂律指数反映了温度的变化,即使在非热区域也是如此。

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