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首页> 外文期刊>Journal of the Mechanics and Physics of Solids >Interaction of rate- and size-effect using a dislocation density based strain gradient viscoplasticity model
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Interaction of rate- and size-effect using a dislocation density based strain gradient viscoplasticity model

机译:使用基于位错密度的应变梯度粘塑性模型进行速率和尺寸效应的相互作用

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Size effects occur in non-uniform plastically deformed metals confined in a volume on the scale of micrometer or sub-micrometer. Such problems have been well studied using strain gradient rate-independent plasticity theories. Yet, plasticity theories describing the time-dependent behavior of metals in the presence of size effects are presently limited, and there is no consensus about how the size effects vary with strain rates or whether there is an interaction between them. This paper introduces a constitutive model which enables the analysis of complex load scenarios, including loading rate sensitivity, creep, relaxation and interactions thereof under the consideration of plastic strain gradient effects. A strain gradient viscoplasticity constitutive model based on the Kocks-Mecking theory of dislocation evolution, namely the strain gradient Kocks-Mecking (SG-KM) model, is established and allows one to capture both rate and size effects, and their interaction. A formulation of the model in the finite element analysis framework is derived. Numerical examples are presented. In a special virtual creep test with the presence of plastic strain gradients, creep rates are found to diminish with the specimen size, and are also found to depend on the loading rate in an initial ramp loading step. Stress relaxation in a solid medium containing cylindrical microvoids is predicted to increase with decreasing void radius and strain rate in a prior ramp loading step.
机译:尺寸效应发生在以微米或亚微米为单位的体积内的不均匀塑性变形金属中。使用与应变梯度无关的可塑性理论已经很好地研究了此类问题。然而,描述存在尺寸效应时金属随时间变化行为的可塑性理论目前受到限制,关于尺寸效应如何随应变速率变化或它们之间是否存在相互作用尚无共识。本文介绍了一个本构模型,该模型可以分析复杂的载荷情况,包括考虑塑性应变梯度效应的载荷率敏感性,蠕变,松弛及其相互作用。建立了基于位错演化的Kocks-Mecking理论的应变梯度粘塑性本构模型,即应变梯度Kocks-Mecking(SG-KM)模型,该模型可以捕获速率和尺寸效应及其相互作用。得出了在有限元分析框架中模型的公式。给出了数值示例。在存在塑性应变梯度的特殊虚拟蠕变测试中,蠕变速率随样品尺寸而减小,并且还取决于初始坡道加载步骤中的加载速率。在先前的斜坡加载步骤中,预计在包含圆柱形微孔的固体介质中的应力松弛会随着空隙半径和应变率的减小而增加。

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