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BEHAVIOR OF LIQUEFIED SANDS UNDER EXTREMELY LARGE STRAIN LEVELS IN CYCLIC TORSIONAL SHEAR TESTS

机译:循环扭剪试验中最大应变水平下液化砂土的行为

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References(22) Cited-By(2) In order to study the cyclic behavior of liquefied sands at extremely large strain levels up to double amplitude shear strain of about 100%, a series of undrained cyclic torsional shear tests while keeping the specimen height constant was performed on saturated Toyoura sand under different densities, two kinds of in-situ frozen sandy samples and their reconstituted specimens. Due correction was made for the effect of membrane force on the measured shear stress. After exceeding a certain level of overall shear strain, the specimen deformation became non-uniform, which is called as “strain localization” in the present study. The initiation of such localization was associated with the changes in the cyclic amplitude of deviator stress and the increment of shear strain. In the case of Toyoura sand, the limiting value of shear strain to initiate strain localization was found to increase with decrease in the relative density, and such a trend was consistent with the empirical correlation of soil liquefaction when the relative density is higher than 30%. In the case of in-situ frozen sandy samples, their limiting shear strain values were smaller than those of the reconstituted specimens, suggesting that their soil structures were different from each other under different degrees of natural aging effects.
机译:参考文献(22)Cited-By(2)为了研究液化砂在高达100%的双振幅剪切应变的极大应变水平下的循环行为,在保持试样高度恒定的同时进行了一系列不排水的循环扭转剪切试验实验是在不同密度的饱和Toyoura砂,两种原位冷冻的沙质样品及其重构样品上进行的。对膜力对测得的剪切应力的影响进行了适当的校正。在超过一定水平的总剪切应变后,试样变形变得不均匀,在本研究中称为“应变局部化”。这种局部化的开始与偏应力的循环振幅的变化和剪切应变的增加有关。在丰谷砂的情况下,发现引起应变局部化的剪切应变极限值随相对密度的降低而增加,并且这种趋势与相对密度高于30%时土壤液化的经验相关性一致。 。在原位冷冻的沙质样品中,其极限剪切应变值小于重构样品的极限剪切应变值,表明在不同程度的自然老化作用下,它们的土壤结构互不相同。

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