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Constitutive modeling of anisotropic sand behavior in monotonic and cyclic loading

机译:单调和循环荷载下各向异性砂岩本构模型

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摘要

An anisotropic plasticity model is proposed to describe the fabric effect on sand behavior under both monotonic and cyclic loading conditions within the framework of anisotropic critical state theory. The model employs a cone-shaped bounding surface in the deviatoric stress space and a yield cap perpendicular to the mean stress axis to describe sand behavior in constant-mean-stress shear and constant-stress-ratio compression, respectively. The model considers a fabric tensor characterizing the internal structure of sand associated with the void space system and its evolution with plastic deformation. The fabric evolution law is assumed to render the fabric tensor to become co-directional with the loading direction tensor and to reach a constant magnitude of unit at the critical state. In constant-stress-ratio compression, the final degree of anisotropy is proportional to a normalized stress ratio. An anisotropic variable defined by a joint invariant of the fabric tensor and loading direction tensor is employed to describe the fabric effect on sand behavior in constant-mean-stress monotonic and cyclic shear. A systematic calibrating procedure of the model parameters is presented. Satisfactory comparison is found between the model simulations and test results on Toyoura sand in both monotonic and cyclic loadings with a single set of parameters. The important role of fabric and fabric evolution in capturing the sand behavior is highlighted. Limitations and potential improvement of the model in describing cyclic mobility of very dense sand and sand behavior in non-proportional loading have been discussed.
机译:在各向异性临界状态理论的框架下,提出了各向异性可塑性模型来描述织物在单调和循环载荷条件下对砂土行为的影响。该模型在偏应力空间中使用圆锥形边界表面,并在垂直于平均应力轴的方向上使用屈服顶,分别描述了在恒定平均应力剪切和恒定应力比压缩下的砂土行为。该模型考虑了织物张量,该织物张量表征了与空隙空间系统相关的沙子的内部结构及其随塑性变形的演化。假定织物演化定律可使织物张量与加载方向张量同向,并在临界状态下达到恒定的单位强度。在恒应力比压缩中,各向异性的最终程度与归一化应力比成正比。由织物张量和载荷方向张量的联合不变性定义的各向异性变量用于描述织物在恒定平均应力单调和循环剪切作用下对砂土行为的影响。介绍了模型参数的系统校准过程。使用单组参数,在单调和循环载荷下,Toyoura砂的模型仿真与测试结果之间的比较令人满意。强调了织物和织物演变在捕获沙粒行为中的重要作用。讨论了模型在描述高密度砂土的周期性运动和非比例载荷下砂土行为方面的局限性和潜在的改进。

著录项

  • 作者

    Gao, Zhiwei; Zhao, Jidong;

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  • 年度 2015
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  • 原文格式 PDF
  • 正文语种 en
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