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Effect of Cyclic Rotation of Principal Stresses on Liquefaction Resistance of Sands

机译:主应力循环旋转对砂土液化阻力的影响

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Liquefaction susceptibility of loose sand subjected to different magnitudes of principal stress rotation under different initial stress states is evaluated. Hollow cylinder torsional shear tests were carried out on water pluviated Fraser River sand specimens hydrostatically consolidated to two different effective confining stresses. Cyclic loading was applied with constant amplitude cyclic deviator stress, but along stress paths which impose different magnitudes of principal stress rotation. Both axisymmetric and approximately plane strain loading conditions were simulated by fixing the intermediate principal stress parameter, b_σ=(σ_2-σ_3)/(σ_1-σ_3) at 0 or 0.4 respectively. Tests results show that weakest cyclic resistance is manifested when the principal stress direction is cyclically rotated between ±45° with respect to the axis of deposition. Irrespective of the different initial effective confining stress and intermediate principal stress parameter, the combination of high shear stress on the horizontal plane and the orientation of the plane of maximum shear stress with the bedding plane are found to be responsible for the weakest cyclic resistance.
机译:评价了在不同初始应力状态下承受不同主应力旋转大小的疏松砂的液化敏感性。空心圆柱体扭转剪切试验是在水化的弗雷泽河砂试样上进行静水压固以形成两个不同的有效约束应力的。循环载荷施加恒定振幅的循环偏应力,但沿着施加不同主应力旋转幅度的应力路径。通过将中间主应力参数b_σ=(σ_2-σ_3)/(σ_1-σ_3)分别固定为0或0.4来模拟轴对称和近似平面应变的加载条件。测试结果表明,当主应力方向相对于沉积轴在±45°之间循环旋转时,最弱的循环电阻表现出来。不管初始有效约束应力和中间主应力参数如何不同,水平面上的高剪切应力以及最大剪切应力的平面与层理面的方向的组合都被认为是最弱的循环阻力。

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