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非晶态塑性介观模型中的雪崩、前兆和有限尺寸涨落

Avalanches, precursors, and finite-size fluctuations in a mesoscopic model of amorphous plasticity.

作者信息

Talamali Mehdi, Petäjä Viljo, Vandembroucq Damien, Roux Stéphane

机构信息

Laboratoire PMMH, UMR 7636 CNRS/ESPCI/Université Paris 6 UPMC/Université Paris 7 Diderot, Paris, France.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2011 Jul;84(1 Pt 2):016115. doi: 10.1103/PhysRevE.84.016115. Epub 2011 Jul 29.

Abstract

We discuss avalanche and finite-size fluctuations in a mesoscopic model to describe the shear plasticity of amorphous materials. Plastic deformation is assumed to occur through series of local reorganizations. Yield stress criteria are random while each plastic slip event induces a quadrupolar long-range elastic stress redistribution. The model is discretized on a regular square lattice. Shear plasticity can be studied in this context as a depinning dynamic phase transition. We show evidence for a scale-free distribution of avalanches P(s) ∝ S(-κ) with a nontrivial exponent κ≈1.25 significantly different from the mean field result κ=1.5. Finite-size effects allow for a characterization of the scaling invariance of the yield stress fluctuations observed in small samples. We finally identify a population of precursors of plastic activity and characterize its spatial distribution.

摘要

我们在一个介观模型中讨论雪崩和有限尺寸涨落,以描述非晶材料的剪切可塑性。假定塑性变形通过一系列局部重排发生。屈服应力准则是随机的,而每次塑性滑移事件都会引起四极长程弹性应力重新分布。该模型在规则的正方形晶格上离散化。在这种情况下,剪切可塑性可作为脱钉动态相变来研究。我们给出了雪崩的无标度分布P(s) ∝ S(-κ)的证据,其中非平凡指数κ≈1.25,与平均场结果κ = 1.5有显著差异。有限尺寸效应使得能够表征在小样本中观察到的屈服应力涨落的标度不变性。我们最终识别出塑性活动的前驱体群体并表征其空间分布。

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