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Shear wave velocity of sands subject to large strain triaxial loading

机译:三轴大应变作用下砂土的剪切波速度

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Shear wave velocities of three selected sandy soils subject to drained triaxial compression test were continuously measured using the bender elements. The shear wave velocity during isotropic compression, as widely recognized, increased as confining pressure increased and they were correlated well. However, during drained shearing, the mean effective stress could no further provide a suitable correlation. The shear wave velocity during this stage was almost constant with respect to the mean effective stress. The vertical stress was found to be more favorable at this stage (since confining stress was kept constant). When sample was attained its peak stress, the shear wave velocity reduced and deviated from the previously existed trend line. This was probably caused by the nonuniformity induced by the formation of shear band. Subsequently, void ratios computed based on external measurements could not provide reasonable fitting to the initial stage of post-peak shear wave velocity. At very large strain levels after shear band formation, the digital images revealed that sample may internally re-arrange itself to be in a more uniform loose stage. This final stage void ratio estimated based on the proposed correlation derived during pre-peak state was close to the value of the maximum void ratio.
机译:使用弯曲元件连续测量了三个经过排水三轴压缩试验的选定砂土的剪切波速度。众所周知,各向同性压缩过程中的剪切波速度随着围压的增加而增加,并且它们之间具有很好的相关性。但是,在排水剪切过程中,平均有效应力无法进一步提供合适的相关性。在此阶段,剪切波速度相对于平均有效应力几乎是恒定的。发现垂直应力在此阶段更为有利(因为限制应力保持恒定)。当样品达到其峰值应力时,剪切波速度降低并偏离先前存在的趋势线。这可能是由于剪切带的形成引起的不均匀性引起的。随后,基于外部测量结果计算出的空隙率无法合理地拟合峰后剪切波速度的初始阶段。剪切带形成后,在非常大的应变水平下,数字图像表明样品可能会在内部进行自我重新排列,从而处于更均匀的松散阶段。基于在峰前状态期间得出的拟议相关性估算的最终阶段空隙率接近最大空隙率的值。

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