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Experimental Investigation and Micromechanical Modeling of Elastoplastic Damage Behavior of Sandstone

机译:砂岩弹塑性损伤行为的实验研究与微观力学建模

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摘要

The mechanical behavior of the sandstone at the dam site is important to the stability of the hydropower station to be built in Southwest China. A series of triaxial compression tests under different confining pressures were conducted in the laboratory. The critical stresses were determined and the relationship between the critical stress and confining pressure were analyzed. The Young’s modulus increases non-linearly with the confining pressure while the plastic strain increment and the dilation angle showed a negative response. Scanning electron microscope (SEM) tests showed that the failure of the sandstone under compression is a coupled process of crack growth and frictional sliding. Based on the experimental results, a coupled elastoplastic damage model was proposed within the irreversible thermodynamic framework. The plastic deformation and damage evolution were described by using the micromechanical homogenization method. The plastic flow is inherently driven by the damage evolution. Furthermore, a numerical integration algorithm was developed to simulate the coupled elastoplastic damage behavior of sandstone. The main inelastic properties of the sandstone were well captured. The model will be implemented into the finite element method (FEM) to estimate the excavation damaged zones (EDZs) which can provide a reference for the design and construction of such a huge hydropower project.
机译:坝址砂岩的力学行为对于水电站建造在中国西南部的稳定性是重要的。在实验室进行了在不同限制压力下进行的一系列三轴压缩测试。确定了临界应力,分析了临界应力和限制压力之间的关系。杨氏模量随着狭窄的压力而非线性地增加,而塑性应变增量和扩张角度显示出负响应。扫描电子显微镜(SEM)试验表明,压缩下砂岩的故障是裂纹生长和摩擦滑动的耦合过程。基于实验结果,在不可逆热力学框架内提出了一种耦合的弹性损伤模型。通过使用微机械均化方法描述了塑性变形和损伤进化。塑料流动是由损伤的进化驱动的。此外,开发了一种数值积分算法以模拟砂岩的耦合弹性损伤行为。砂岩的主要内弹性特性很好地捕获。该模型将实现为有限元方法(FEM)以估计挖掘损坏的区域(EDZ),其可以为这种巨大的水电项目的设计和构造提供参考。

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