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Comparison of Deformation Behavior of Saturated Sand under Constant and Variable Deviatoric Stress

机译:恒定和可变偏应力下饱和砂土变形行为的比较

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摘要

The cyclic triaxial tests were carried out on Fujian standard sand under two stress paths, the constant deviatoric stress path (CDS) and constant stress-ratio path (variable deviatoric stress, VDS), and the influence of cyclic deviatoric stress on the development characteristics of saturated sand was preliminarily discussed. Under the condition of the same consolidation stress state and amplitude of cyclic spherical stress, the amplitude of deviatoric stress under the two stress paths was different. The test results indicated that cyclic deviatoric stress had significant effect on the volumetric and shear strain in soil. When the consolidation deviatoric stress was relatively small, the volumetric and shear strain curves under these two stress paths almost coincided. However, the cyclic deviatoric stress had a stronger effect with an increase in the consolidation deviatoric stress. During the loading and unloading stages, the slope of the volumetric strain curve under the VDS path was smaller than that under the CDS path. The accumulated volumetric strain under the VDS path was greater than that under the CDS path. In the loading stage, the growth rate of shear strain under the VDS path was greater than that under the CDS path, but the opposite relationship was observed in the unloading stage. The presence of cyclic deviatoric stress accelerated or slowed down the accumulation of shear strain. These phenomena were related to the positional relationship between the stress state of soil and the critical state line.
机译:在福建标准砂土的两个应力路径下进行了循环三轴试验,即恒定偏应力路径(CDS)和恒定应力比路径(可变偏应力,VDS),以及循环偏应力对砂岩发育特性的影响。初步讨论了饱和砂。在固结应力状态相同且循环球形应力幅值相同的情况下,两条应力路径下的偏应力幅值不同。试验结果表明,循环偏应力对土壤的体积应变和剪切应变有显着影响。当固结偏向应力较小时,在这两个应力路径下的体积和剪切应变曲线几乎重合。但是,循环偏应力随着固结偏应力的增加而具有更强的作用。在加载和卸载阶段,VDS路径下的体积应变曲线的斜率小于CDS路径下的体积应变曲线的斜率。 VDS路径下的累积体积应变大于CDS路径下的累积体积应变。在加载阶段,VDS路径下的剪切应变增长率大于CDS路径下的剪切应变增长率,但在卸载阶段却观察到相反的关系。周期性偏应力的存在加速或减慢了剪切应变的积累。这些现象与土壤的应力状态和临界状态线之间的位置关系有关。

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