首页> 外文期刊>Journal of Engineering Mechanics >Coupled Directional Dilation-Damage Approach to Model the Cyclic-Undrained Response of Soft Clay under Pure Principal Stress Axes Rotation
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Coupled Directional Dilation-Damage Approach to Model the Cyclic-Undrained Response of Soft Clay under Pure Principal Stress Axes Rotation

机译:耦合方向扩张损伤方法以模拟纯主应力轴下软粘土的循环 - 不换响应旋转

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摘要

This study presents a directional constitutive model to predict the nonproportional cyclic behavior of undrained soft clay. A novel strategy consisting of a combination of directional dilation and the damage microplane model is used. Inherent cross-anisotropy is addressed via the modification of the integrated stress through an initial fabric tensor. The evolution of material microstructure is considered using the strain-dependent damage functions at the scale of microplanes. The variation of material stiffness is considered as a function of effective hydrostatic stress. The results were verified with available experimental data. The model accurately accounts for the effects of contributing factors, including the intermediate principal stress parameter.
机译:该研究呈现了定向本构模型,以预测未染色的软粘土的非储循环行为。 使用了由定向扩张和损伤微板模型组成的新型策略。 通过初始织物张量的综合应力来解决固有的交叉各向异性。 认为材料微观结构的演变是使用微观的应变依赖性损伤函数的。 材料刚度的变化被认为是有效静压应力的函数。 结果用可用的实验数据验证。 该模型准确地占贡献因素的影响,包括中间主应力参数。

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