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Effect of anisotropic consolidation stress paths on the undrained shear behavior of reconstituted Wenzhou clay

机译:各向异性固结应力路径对重建温州粘土不良剪切行为的影响

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摘要

Naturally deposited clays are generally K-0 consolidated. In some cases such as embankment construction and foundation pit excavation, the loading or unloading will lead to the re-consolidation of clays, which can be simulated by a simplified consolidation stress path with a certain ratio of vertical to horizontal consolidation stresses. In this study, a series of triaxial shear tests was conducted on a reconstituted Wenzhou clay, to investigate the effects of consolidation stress paths on the stress-strain, pore water pressure-strain, and effective stress path behaviors of overconsolidated samples. Based on the test results, the shear strength and pore water pressure coefficient at failure are found to grow and reduce linearly with the increase of the ratio of vertical to horizontal consolidation stresses, respectively. More strain softening and shear dilation are observed for the anisotropically consolidated samples compared to isotropically consolidated ones. The slope of failure line is approximately 1.25 for all specimens tested in this study.
机译:天然沉积的粘土通常是K-0固结。在散路结构和基坑开挖的某些情况下,装载或卸载将导致粘土的重新固结,这可以通过简化的固结应力路径模拟,其具有与水平固结应力的一定比例的具有一定比例。在该研究中,在重构的温州粘土上进行了一系列三轴剪切试验,以研究固结应力路径对过核样品的应力 - 菌株,孔隙水压力和有效应激路径行为的影响。基于测试结果,发现剪切强度和孔隙水压力系数分别随着垂直与水平固结应力的比率的增加而导致和线性减少。与各向同性固结的样品相比,对各向异性固结的样品观察到更多的应变软化和剪切扩张。对于本研究测试的所有标本,故障线的斜率约为1.25。

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