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MECHANICAL BEHAVIOR OF BENTONITE-SAND MIXTURES AS BUFFER MATERIALS

机译:膨润土-砂混合物作为缓冲材料的机械性能

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References(17) Cited-By(1) For the purpose of establishing the method for estimating in-situ mechanical behavior of artificial buffer materials, stress-deformation behavior of bentonite-sand mixtures were investigated through oedometer test, consolidated undrained triaxial compression test and expansive stress-strain measuring test by changing the clay content as 30, 50, 70 and 100%, and by changing the range of initial dry density of mixture from 1.4 to 1.8 g/cm3. Oedometer test results suggest that the magnitude of consolidation yield stress almost coincides with the maximum expansive stress (p′s)max irrespective of bentonite-sand mix proportion, initial density of mixture and the magnitude of molding stress at the specimen making. Strong correlation between consolidation stress and initial tangent modulus during undrained triaxial compression test is observed, and it is found that the reduction rate of rigidity is hardly dependent on the specimen making method, molding stress and the consolidation stress. From the two series of expansive stress-strain measuring tests, it is recommended to perform the measurement of expansive stress by feed back system with the load cell installed at the base of the specimen. A unique relationship is found between the maximum expansive stress (p′s)max versus bentonite specific volume vb, which is defined as the specific volume calculated by excluding the volume of sand particles. The line showing the unique log vb versus log (p′s)max relationship can be recognized as the state boundary line prescribing one-dimensional expansive stress-strain behavior of the bentonite-sand mixtures.
机译:参考文献(17)引用(1)为了建立一种估计人造缓冲材料的原位力学行为的方法,膨润土-砂混合物的应力变形行为通过里程表试验,固结不排水三轴压缩试验和通过将粘土含量更改为30%,50%,70%和100%,并将混合物的初始干密度范围从1.4 g / cm3更改为膨胀应力-应变测试。里程表测试结果表明,固结屈服应力的大小几乎与最大膨胀应力(p's)max一致,而与膨润土-砂子的混合比例,混合物的初始密度和制样时的成型应力的大小无关。在不排水的三轴压缩试验中,固结应力与初始切线模量之间存在很强的相关性,发现刚度的降低速率几乎不受试样制造方法,成型应力和固结应力的影响。从这两个系列的膨胀应力-应变测量测试中,建议通过将样品传感器安装在样品底部的反馈系统进行膨胀应力的测量。在最大膨胀应力(p'smax)与膨润土比容vb之间发现了一种独特的关系,膨比土比容vb定义为通过排除砂粒体积而计算出的比容。表示唯一的log vb与log(p's)max关系的线可以视为指示膨润土-砂混合物的一维膨胀应力-应变行为的状态边界线。

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