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Micromechanical analysis of frozen silty clay-sand mixtures with different sand contents by triaxial compression testing combined with real-time CT scanning

机译:三轴压缩试验与实时CT扫描相结合对含沙量不同的冻结粉质黏土砂混合物进行细观力学分析

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Frozen soil-rock mixtures are widely used as geological materials in engineering construction in cold regions. In this paper, a silty clay-sand mixture was selected to simulate the mechanical properties of a frozen soil-rock mixture. A series of triaxial compression tests on frozen silty clay-sand mixtures with different sand contents of 0%, 10%, 20%, and 40% under confining pressures of 0.5 MPa, 1 MPa, 2 MPa and 3 MPa at -6 degrees C, respectively, was conducted in combination with real-time computed tomography (CT) scanning. The test results indicate that under the same sand content, the strength of the frozen silty clay-sand mixture is maximized when the confining pressure is within the range of approximately 0.5 to 1.0 MPa. By calculating the CT values of all the samples with different sand contents before axial loading, the relationships between the average CT values of the whole samples and the sand contents were determined. In addition, vertical section CT images of the silty clay-sand mixture were collected during the loading process. Based on homogenization theory, a macroscopic yield criterion was formulated to describe the nonlinear behavior of the frozen silty clay-sand mixture considering the influence of the sand content. The evolution laws of the mean CT values of the whole samples with different sand contents were explored throughout the loading process. The CT value of a whole sample decreases linearly with increasing axial strain. By applying a nonassociated flow rule, an elastoplastic constitutive model was established to consider the influence of sand content. The simulation results of the deviatoric stresses versus axial strains and volumetric strains versus axial strains obtained with the proposed model are in good agreement with the experimental results.
机译:冻土岩石混合物被广泛用作寒冷地区工程建设中的地质材料。在本文中,选择了一种粉质粘土-砂混合物来模拟冻结的土壤-岩石混合物的力学性能。在-6摄氏度,0.5 MPa,1 MPa,2 MPa和3 MPa的围压下,对含沙量分别为0%,10%,20%和40%的冷冻粉质粘土-砂混合物进行一系列三轴压缩试验分别与实时计算机断层扫描(CT)扫描结合进行。试验结果表明,在相同的含砂量下,当围压在0.5〜1.0 MPa范围内时,冷冻粉质粘土砂混合物的强度最大。通过计算轴向载荷前砂含量不同的所有样品的CT值,确定了整个样品的平均CT值与砂含量的关系。此外,在加载过程中还收集了粉质粘土-砂混合物的垂直截面CT图像。基于均质化理论,制定了宏观屈服准则,考虑了含砂量的影响,描述了粉质黏土-冻土混合料的非线性行为。在整个加载过程中,探索了不同砂含量的整个样品的平均CT值的演变规律。整个样品的CT值随着轴向应变的增加而线性减小。通过应用非关联流规则,建立了考虑沙子含量影响的弹塑性本构模型。用该模型得到的偏应力与轴向应变,体积应变与轴向应变的仿真结果与实验结果吻合良好。

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