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Bounding Surface Cam-Clay Model with Cohesion for Cement-Admixed Clay

机译:水泥混合黏土有粘结力的边界面凸轮黏土模型

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摘要

This paper proposes a constitutive model for cement-admixed soil based on the concept that the effect of cementitious bonding can be accounted for by incorporating a cohesion term into the Cam-clay flow rule. The cohesion is not a constant; instead, it is allowed to decrease during loading to simulate the loss of bonding. The loss of bonding during loading is assumed to be related to the plastic work done against the structure. In other words, yielding and postyield behavior are mechanistically rather than phenomenologically based. This allows the shape of the yield surface to evolve from a nonelliptical shape to an elliptical shape as cohesion is lost during loading. Comparison with experimental results of undrained triaxial shearing tests over a range of mix proportions and confining pressures shows that the behavior of undrained specimens is well represented. Comparison with experimental results of drained triaxial shearing tests shows that the behavior of drained specimens is well represented up to the peak strength. The gradual yielding up to the defined initial yield point can also be captured by introducing a bounding surface.
机译:本文提出了一种基于水泥混合土的本构模型,其概念是可以通过将内聚项纳入凸轮-黏土流动规律来解释胶结作用。内聚力不是一个常数。取而代之的是,允许它在加载过程中减少以模拟粘结损失。假定在加载过程中粘结的损失与对结构的塑性功有关。换句话说,屈服和后屈服行为是基于机理而非基于现象学的。这允许屈服面的形状从非椭圆形演变成椭圆形,因为在加载过程中失去了内聚力。在一系列混合比例和围压下,与不排水三轴剪切试验的实验结果进行比较,结果表明不排水试样的性能得到了很好的体现。与排水三轴剪切试验的实验结果比较表明,排水试样的行为在峰值强度之前都得到了很好的体现。还可以通过引入边界曲面来捕获达到定义的初始屈服点的逐渐屈服。

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