ISSN 1000-3665 CN 11-2202/P

    不同应力路径和加卸速率下的红黏土力学特性

    Mechanical properties of red clay under different stress paths and loading and unloading rates

    • 摘要: 基坑开挖过程中土体受多种影响因素而表现出独特的破坏特性,而仅考虑单一影响因素已无法完全掌握土体的力学特性。因此本文采用昆明地区的天然红黏土进行K0固结条件下不排水三轴剪切试验,探究不同应力路径和加卸速率下的应力-应变曲线及孔压曲线的变化规律,分析红黏土的初始切线模量和强度极限变化规律。试验结果表明:(1)红黏土在三种应力路径下的应力-应变曲线呈双曲线型,红黏土强度大小表现为轴向压缩试验>平均主应力为常数三轴压缩试验>侧向卸荷试验;(2)加卸速率对应力-应变曲线影响分三个阶段,当εaε0时,加卸速率对土体抗剪强度影响较小,当ε0<εaε1时,加卸速率越快,其对应的剪应力增长也越快,当εa>ε1时,不同加卸速率下的剪应力基本保持不变;(3)不同应力路径下的孔隙水压力变化规律存在明显差异,剪切初期阶段,加卸速率对孔压影响不明显,而随着剪切过程的进行,孔压值随加卸速率的增大而增加;(4)通过邓肯-张模型,建立K0固结的红黏土在不同路径下的应力-应变双曲线预测方程,并将预测结果与试验值对比,应力-应变预测结果较为准确。研究成果可为红黏土在不同应力路径及加卸速率下的变形参数和本构关系研究提供参考。

       

      Abstract: During foundation pit excavation, soils are subjected to multiple coupled factors and present complex failure characteristics, making it difficult to capture their mechanical behavior through single-factor analysis. In this study, the natural red clay in Kunming area was used to carry out the undrained triaxial shear test under K0 consolidation conditions, and the variation of the stress-strain curve and pore pressure curve under different stress paths and loading/unloading rates were explored. The initial tangent modulus and strength limit variation of red clay were then analyzed. The test results show that the stress-strain curves of red clay under three stress paths were hyperbolic type, with strength ranking as axial compression > constant mean principal stress compression > lateral unloading. The influence of the loading/unloading rate on the stress-strain curve is divided into three stages: when εaε0, the loading/unloading rate has limit influence on the shear strength of the soil; when ε0<εaε1, the faster the loading/unloading rate, the faster the corresponding shear stress increases; when εa>ε1, the shear stress under different loading/unloading rates remains unchanged. Pore pressure evolution varies significantly with stress path, with rate effects being minor at the early stage of shearing but becoming more pronounced as shear progresses The Duncan-Zhang model was used to establish the stress-strain hyperbola prediction equation of K0 consolidated red clay under different paths, and the prediction results were compared with the experimental values yielding good agreement with experimental results. This study can provide basic information for understanding the deformation parameters and constitutive relationship of red clay under different stress paths and loading/unloading rates.

       

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