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MULTI-SLIP FORMULATION FOR MODELING LOCALIZATION IN GRANULAR MATERIALS

机译:粒状材料局部化建模的多滑动公式

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摘要

This paper presents a higher order gradient multi-slip formulation to model the effect of inhomogeneous deformation in granular materials. In most current formulations, the flow stress in the plastic constitutive equation is modified with a higher order gradient term of the effective plastic strain as a means of modeling the effect of inhomogeneous deformation. Granular material consists of discrete particles and associated voids. Therefore, a higher order gradient constitutive model must explicitly account for its gradients in terms of the heterogeneous granular microstructure. The effect microstructure is accounted for by considering the mobilized friction coefficient in the model to be a function of a higher gradient porosity distribution. The double-slip version of the model has been implemented in a standard finite element code and used to simulate biaxial shear tests on dry sand. The effect of the two new formulations and the current formulations using effective plastic strain on the prediction of strain localization are examined.
机译:本文提出了一种高阶梯度多滑移公式,以模拟颗粒材料中不均匀变形的影响。在大多数当前的公式中,塑性本构方程中的流动应力通过有效塑性应变的高阶梯度项进行修改,以此作为对非均匀变形影响建模的一种手段。颗粒材料由离散的颗粒和相关的空隙组成。因此,高阶梯度本构模型必须根据非均质颗粒微观结构明确考虑其梯度。通过考虑模型中的动员摩擦系数作为较高梯度孔隙率分布的函数来解释影响微观结构。该模型的双滑版本已通过标准有限元代码实现,并用于模拟在干砂上的双轴剪切测试。研究了两种新配方和使用有效塑性应变的当前配方对应变局部化预测的影响。

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