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Softening Behavior and Volumetric Deformation of Rocks

机译:岩石的软化行为和体积变形

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摘要

In this study, a constitutive model and numerical analysis were conducted on various types of rocks under triaxial compression to determine their softening response and volumetric strain. Experimental data sets corresponding to different types of rocks were used to determine the elastoplastic material parameters and disturbance parameters of the proposed model. The disturbed state concept was utilized based on the response of the material in two states. Relatively intact (RI) and fully adjusted (FA) responses were interpolated using a state function called a disturbance. The RI and FA parts were modeled based on nonlinear finite element analysis (NFEA) and the residual strength of the corresponding material, respectively. For the RI state, the elastoplastic behavior was simulated using a hierarchical single surface (HISS) plasticity model to account for factors such as continuous yielding, volumetric change and the stress path dependence of rock. The failure surfaces used for different types of rocks were extracted from a computer program and represented in this investigation. Furthermore, the contours of disturbance (D) were depicted and the failure pattern of corresponding rock was estimated based on the distribution of disturbance values. Verification of the numerical results with experimental data sets showed a good accuracy for various types of rocks under different confining pressures. (C) 2018 American Society of Civil Engineers.
机译:在该研究中,在三轴压缩下的各种类型的岩石上进行组成型模型和数值分析,以确定其软化响应和体积菌株。对应于不同类型的岩石的实验数据组用于确定所提出的模型的弹性塑料材料参数和干扰参数。基于两种状态的材料的响应使用受扰动的状态概念。使用称为干扰的状态函数来插值相对完整(RI)和完全调整(FA)响应。基于非线性有限元分析(NFEA)和相应材料的剩余强度分别进行建模RI和FA部件。对于RI状态,使用分层单表面(HISS)塑性模型进行模拟弹性塑料行为,以考虑连续屈服,体积变化和岩石应力路径依赖性的因素。用于不同类型岩石的故障表面从计算机程序中提取,并在本研究中表示。此外,描绘了干扰(d)的轮廓,并且基于干扰值的分布估计了相应岩石的故障模式。通过实验数据集对数值结果的验证显示出不同类型的岩石下的各种岩石的良好准确性。 (c)2018年美国土木工程学会。

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