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The coupled effects of plastic strain gradient and thermal softening on the dynamic growth of voids

机译:塑性应变梯度和热软化对空隙动态增长的耦合作用

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摘要

This paper examines the combined effects of temperature, strain gradient and inertia on the growth of voids in ductile fracture. A dislocation-based gradient plasticity theory [J. Mech. Phys. Solids 47 (1999) 1239, J. Mech. Phys. Solids 48 (2000) 99] is applied, and temperature effects are incorporated. Since a strong size-dependence is introduced into the dynamic growth of voids through gradient plasticity, a cut-off size is then set by the stress level of the applied loading. Only those voids that are initially larger than the cut-off size can grow rapidly. At the early stages of void growth, the effects of strain gradients greatly increase the stress level. Therefore, thermal softening has a strong effect in lowering the threshold stress for the unstable growth of voids. Once the voids start rapid growth, however, the influence of strain gradients will decrease, and the rate of dynamic void growth predicted by strain gradient plasticity approaches that predicted by classical plasticity theories. (C) 2003 Elsevier Ltd. All rights reserved. [References: 33]
机译:本文研究了温度,应变梯度和惯性对延性断裂中空洞生长的综合影响。基于位错的梯度可塑性理论[J.机甲。物理Solids 47(1999)1239,J.Mech。物理应用了Solids 48(2000)99],并引入了温度效应。由于通过梯度可塑性将强的尺寸依赖性引入到空隙的动态生长中,因此,通过施加的载荷的应力水平来设置截止尺寸。只有最初大于临界尺寸的空隙才能快速增长。在空隙生长的早期,应变梯度的影响会大大增加应力水平。因此,热软化对于降低空隙的不稳定生长的阈值应力具有强烈的作用。但是,一旦空隙开始快速增长,应变梯度的影响就会减小,应变梯度可塑性预测的动态空隙生长速率将接近经典可塑性理论所预测的速度。 (C)2003 Elsevier Ltd.保留所有权利。 [参考:33]

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