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首页> 外文期刊>International Journal of Damage Mechanics >A Plastic-damage Model for Stress-Strain Behavior of Soils
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A Plastic-damage Model for Stress-Strain Behavior of Soils

机译:土的应力应变行为的塑性损伤模型

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摘要

This paper presents a constitutive model for soil, which combines elements of plasticity with damage mechanics to simulate the stress-strain behavior. The model is primarily suitable for soil types that exhibit a postpeak strain-softening behavior, such as dense sand and stiff clay. The postpeak stress drop is captured by the elasto-damage formulation, while the plasticity is superimposed beyond the elastic range. The total strain increment is composed of an elasto-damage strain increment and a plastic strain increment. The elasto-damage strain increment is found using the elasto-damage formulation, while the plastic strain increment is found using either the Drucker-Prager classical plasticity model or as a function of damage strain. To implement this model, an experimental program was conducted on local cohesive and cohesionless soils. Various physical and mechanical properties of these soils were determined. Both triaxial tests and hydrostatic tests were performed under different confining pressures, in order to obtain the model parameters. These parameters were used to calibrate the model, which was coded in computer programs to simulate the stress-strain behavior of soils. The model was verified and found to be a good predictor of the geomaterial response for the selected stress path.
机译:本文提出了一种土的本构模型,该模型将可塑性元素与损伤力学相结合,以模拟应力应变行为。该模型主要适用于表现出峰值后应变软化行为的土壤类型,例如稠密的沙子和坚硬的粘土。峰后应力下降由弹性损伤配方捕获,而可塑性却超出了弹性范围。总应变增量由弹性损伤应变增量和塑性应变增量组成。弹性损伤应变增量是使用弹性损伤公式计算的,而塑性应变增量是使用Drucker-Prager经典塑性模型或损伤应变的函数求出的。为了实施该模型,对本地粘性和无粘性土壤进行了实验程序。确定了这些土壤的各种物理和机械性能。为了获得模型参数,在不同的围压下进行了三轴试验和静水压试验。这些参数用于校准模型,该模型在计算机程序中编码以模拟土壤的应力应变行为。对该模型进行了验证,发现该模型可以很好地预测所选应力路径的土工材料响应。

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