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非晶态固体剪切转变区模型中的应变局部化

Strain localization in a shear transformation zone model for amorphous solids.

作者信息

Manning M L, Langer J S, Carlson J M

机构信息

Department of Physics, University of California, Santa Barbara, California 93106, USA.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Nov;76(5 Pt 2):056106. doi: 10.1103/PhysRevE.76.056106. Epub 2007 Nov 13.

Abstract

We model a sheared disordered solid using the theory of shear transformation zones (STZs). In this mean-field continuum model the density of zones is governed by an effective temperature that approaches a steady state value as energy is dissipated. We compare the STZ model to simulations by Shi [Phys. Rev. Lett. 98, 185505 (2007)], finding that the model generates solutions that fit the data, exhibit strain localization, and capture important features of the localization process. We show that perturbations to the effective temperature grow due to an instability in the transient dynamics, but unstable systems do not always develop shear bands. Nonlinear energy dissipation processes interact with perturbation growth to determine whether a material exhibits strain localization. By estimating the effects of these interactions, we derive a criterion that determines which materials exhibit shear bands based on the initial conditions alone. We also show that the shear band width is not set by an inherent diffusion length scale but instead by a dynamical scale that depends on the imposed strain rate.

摘要

我们使用剪切转变区(STZ)理论对剪切无序固体进行建模。在这个平均场连续体模型中,区域密度由一个有效温度控制,随着能量耗散,该有效温度趋近于一个稳态值。我们将STZ模型与Shi的模拟结果[《物理评论快报》98, 185505 (2007)]进行比较,发现该模型生成的解能够拟合数据、表现出应变局部化,并捕捉到局部化过程的重要特征。我们表明,由于瞬态动力学中的不稳定性,有效温度的扰动会增长,但不稳定系统并不总是会形成剪切带。非线性能量耗散过程与扰动增长相互作用,以确定材料是否表现出应变局部化。通过估计这些相互作用的影响,我们得出了一个仅基于初始条件就能确定哪些材料会出现剪切带的判据。我们还表明,剪切带宽度不是由固有的扩散长度尺度设定的,而是由一个取决于所施加应变速率的动态尺度设定的。

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