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Experimental and Theoretical Investigation on Dynamic Performance of Cemented Sand and Gravel Material

机译:水泥砂砾石料动态性能的试验与理论研究

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In order to investigate dynamic characteristics of Cemented Sand and Gravel (CSG) material, cyclic loading tests have been carried out conducted on a large scale dynamic triaxial apparatus. The dynamic stress-strain relationship, the hysteresis phenomenon, the failure model, dynamic elastic modulus, damping ratio, and the relationship between the axial energy consumption per unit volume and the cycle numbers on these mechanical characteristics during the whole load-unload process had been studied. From the results of tests, with the increasing of the CPs and the cement content, the value of compressive strength and dynamic elastic modulus increase, but the damping ratio decrease. The shape of the hysteresis loop likes a crescent, the axial energy consumption per unit volume increases linearly at first and then increases nonlinearly. There were two dividing points in the evolution process of dynamic modulus and damping ratio, the relationship curves between dynamic modulus, damping ratio and strain were all divided three phases by the dividing points. It was confirmed that CSG material clearly showed elasto-plasticity and the damage was shear failure and had an angle of 48 degrees similar to 53 degrees under cyclic loading. In addition the mathematical models were established to describe the evolution process of the above parameters.
机译:为了研究水泥砂和砾石(CSG)材料的动力特性,已经在大型动力三轴设备上进行了循环载荷试验。在整个加载-卸载过程中,动态应力-应变关系,滞后现象,破坏模型,动态弹性模量,阻尼比以及单位体积的轴向能耗与循环次数之间的关系已与这些力学特性有关。研究。从试验结果看,随着CP和水泥含量的增加,抗压强度和动弹性模量值增加,但阻尼比减小。磁滞回线的形状像月牙形,单位体积的轴向能量消耗首先线性增加,然后非线性增加。动模量和阻尼比的变化过程中有两个划分点,动模量,阻尼比和应变的关系曲线均被划分为三相。证实了CSG材料清楚地显示出弹塑性,并且破坏是剪切破坏,并且在循环载荷下具有类似于53度的48度角。此外,建立了描述上述参数演变过程的数学模型。

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