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Damage evolution mechanism and constitutive model of freeze- thaw yellow sandstone in acidic environment

机译:酸性环境下冻融黄砂岩的损伤演化机理及本构模型

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The study on the damage evolution mechanism of freeze-thaw of rock sample in acidic environment is of great theoretical and practical significance to the analysis and prevention of freeze-thaw disasters in cold area. Taking the yellow sandstone as the research object, the freeze-thaw cycle experiments, the NMR system experiments, the chemical composition analysis experiments and the uniaxial compression experiments under acidic environments with different pH are carried out to analyze the physical and chemical characteristics of the yellow sandstone. The damage evolution equation and constitutive model of rock are studied based on statistical strength theory, Lemaitre strain equivalent assumption and damage mechanics. In this paper, the damage evolution equation of chemical freeze-thaw sandstone under load is established. The damage correction coefficient is introduced to modify the total damage of chemical freeze-thaw sandstone under load. The constitutive model is deduced and the model parameters are deduced by the combination of theoretical derivation and experiment. The results show that the rock damage is the result of the coupling of freeze-thaw cycles and acid erosion, and the freeze-thaw cycle is the main reason and acidic erosion is the secondary reason. The experimental parameters are brought into the constitutive model, and the reliability of the model under uniaxial stress is verified by comparing with the experimental curve.
机译:研究酸性环境下岩样冻融的破坏演化机理,对于分析和预防寒区冻融灾害具有重要的理论和现实意义。以黄砂岩为研究对象,在不同pH的酸性环境下进行了冻融循环实验,核磁共振系统实验,化学成分分析实验和单轴压缩实验,对黄砂岩的理化特性进行了分析。砂岩。基于统计强度理论,Lemaitre应变当量假设和损伤力学,研究了岩石的损伤演化方程和本构模型。建立了化学冻融砂岩在载荷作用下的损伤演化方程。引入损伤修正系数以修正化学冻融砂岩在载荷作用下的总损伤。理论推导与实验相结合,推导了本构模型,推导了模型参数。结果表明,岩石破坏是冻融循环与酸蚀耦合的结果,冻融循环是主要原因,酸蚀是次要原因。将实验参数引入本构模型,通过与实验曲线比较,验证了模型在单轴应力下的可靠性。

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