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Effects of inherent fabric anisotropy and intermediate principal stress on constitutive behavior of uncemented and cemented sands

机译:固有织物各向异性和中间主应力对非胶结和胶结砂本构行为的影响

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Sand response changes with intensity of cementation bonds between sand grains, magnitude of intermediate principal stress and with fabric anisotropy. First a critical state bounding surface plasticity model is presented in this paper. In this constitutive model, the loading surface always passes through the current stress state regardless of location or position of the stress path. Second to simulate hollow cylinder tests which represent different modes of shearing including triaxial compression and triaxial extension, the fabric anisotropy and b-parameter are incorporated in the model. Simultaneous integration of cohesion, non-associated flow rule, fabric anisotropy, kinematic hardening, critical state and state parameter makes the proposed model unique compared to previous proposed bounding surface models. Comparison of model outcomes and hollow cylinder experimental tests shows great predictive capability of the proposed model. Sensitivity analysis also suggests that triaxial compression and triaxial extension are respectively strongest and weakest modes of shearing. (C) 2016 Elsevier Ltd. All rights reserved.
机译:砂响应随砂粒之间胶结键的强度,中间主应力的大小以及织物各向异性而变化。首先,本文提出了一种临界状态边界表面可塑性模型。在此本构模型中,加载表面始终通过当前应力状态,而不管应力路径的位置或位置如何。其次,为了模拟表示不同剪切模式(包括三轴压缩和三轴延伸)的空心圆柱体测试,将织物各向异性和b参数纳入模型。与先前提出的边界曲面模型相比,内聚力,非关联流规则,织物各向异性,运动硬化,临界状态和状态参数的同时集成使该模型具有独特性。模型结果与空心圆柱体试验结果的比较表明,该模型具有很好的预测能力。敏感性分析还表明,三轴压缩和三轴延伸分别是最强和最弱的剪切模式。 (C)2016 Elsevier Ltd.保留所有权利。

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