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Small Strain Stiffness of Artificially Cemented Soft Clay: Modelling the Effect of Structure Degradation

机译:人工胶结软土的小应变刚度:模拟结构退化的影响

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This paper presents a study on the evolution of small strain stiffness (G_(max)) along vertical and horizontal directions for lightly cemented clay. Soft clays have historically been a subject for studying the evolution of stiffness anisotropy under varying loading conditions. These studies have focused on stress history (overconsolidation) effects as well. However, for lightly cemented clays, such studies are limited and their main scope has primarily been on the evolution of vertically aligned stiffness (GVH) at varying effective confining stresses. This study investigates the effect of isotropic loading on uncemented and lightly cemented kaolin clay. Kaolin clay mixed with 10% cement is used in this study. Stiffness measurements have been conducted using bender elements for obtaining GVH and GHH hence resulting in the measurement of vertical and horizontal stiffness values respectively. By comparing the behaviour of both samples, the influence of bonding and fabric due to cementation on the evolution of stiffness and anisotropy is studied. In order to characterize the behavior of structure in cemented soil with confining stress, a modelling equation is applied for the cemented sample to predict the variation of Gmax before and after yielding.
机译:本文研究了轻质黏土沿垂直和水平方向的小应变刚度(G_(max))的演变。从历史上看,软粘土一直是研究在变化的载荷条件下刚度各向异性演化的主题。这些研究也集中在压力历史(过度固结)效应上。但是,对于轻质黏土,这种研究是有限的,其主要范围主要是在有效有效围压变化的情况下垂直排列刚度(GVH)的演变。本研究研究了各向同性载荷对未胶结和轻胶结的高岭土的影响。本研究中使用了高岭土与10%的水泥混合。已经使用弯曲元件进行了刚度测量以获得GVH和GHH,因此分别测量了垂直和水平刚度值。通过比较两个样品的行为,研究了粘结和胶结造成的织物对刚度和各向异性演变的影响。为了表征具有约束应力的胶结土壤中结构的行为,对胶结样品应用了建模方程,以预测屈服前后的Gmax变化。

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