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A new method for establishing elastic-viscoplastic constitutive model of clay

机译:一种建立粘土弹性粘弹性本构模型的新方法

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In this paper, three existing elastoplastic constitutive models, i.e. Cam-clay model, subloading surface model and superloading surface model, are improved to predict the time-dependent behavior of clay. In the new models, the yield function of the original elastoplastic constitutive model is used as a static yield surface, which is regarded as a reference dynamic yield surface at the strain rate of common tests (10~(-7)-10~(-5)s~(-1)). A relative overstress relation is used to obtain the dynamic loading surface at any strain rate based on the static yield surface. Therefore, a dynamic equilibrium condition, using stress, viscoplastic strain and viscoplastic strain rate as state variables, is adopted as a convergence criteria. Two material parameters about the rate sensitivity are added into the original models, which can be determined by triaxial compression tests with different strain rates. Each original elastoplastic constitutive model can be regarded as a special case of the corresponding elastic-viscoplastic model in a certain strain rate. The new models have been implemented into ABAQUS by a stress integration algorithm using Newton-Raphson iteration. The numerical results show that the models can reproduce the time-dependent behavior of clays such as rate sensitivity and creep in addition to the deformation behavior as predicted by the original elastoplastic models.
机译:在本文中,三个现有的弹性塑料本构模型,即CAM-CLAY模型,颠加载表面模型和超载表面模型,得到改进,以预测粘土的时间依赖性行为。在新模型中,原始弹塑性本构模型的屈服功能用作静态屈服表面,其被认为是常见测试应变率(10〜(-7)-10〜( - 5)S〜(-1))。相对过度反应关系用于基于静态屈服表面以任何应变速率获得动态加载表面。因此,采用动态平衡条件,使用应力,粘液菌株和粘液应变率作为状态变量,作为收敛标准。关于速率灵敏度的两种材料参数被添加到原始模型中,可以通过具有不同应变率的三轴压缩测试来确定。每个原始弹塑性本构模型可以被认为是以某种应变速率的相应弹性粘性模型的特殊情况。通过使用Newton-Raphson迭代的应力集成算法已经实现了新模型的ABAQUS。数值结果表明,除了由原始弹塑性模型预测的变形行为之外,该模型还可以再现诸如速率灵敏度和蠕变的粘土的时间等行为。

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