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The stiffness of natural London Clay

机译:天然伦敦粘土的刚度

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摘要

An investigation of natural London Clay is reported involving advanced triaxial, hollow cylinder apparatus (HCA) and dynamic testing techniques. Significant aniso-tropy was revealed at all scales of deformation, and the framework of cross-anisotropic elasticity was found to apply broadly to the initial elastic behaviour. The stiffness parameters obtained by independent techniques generally exhibited good agreement, with the greatest deviation being seen in the Poisson's ratios, which fell far from the values usually assumed in conventional foundation analysis. Probing tests established the limits to the elastic domain over a range of depths, showing that these scaled in proportion to the mean effective stress level, as did those of a second kinematic surface that surrounded the elastic domain. Once engaged, this second surface signified a new pattern of strain increment directions, faster elastic-plastic stiffness decay with strain, and also a greater dependence of behaviour on recent stress history. However, the two kinematic surfaces cover a relatively small proportion of the admissible stress space, and behaviour at larger strains is both anisotropic and strongly non-linear, features that affect profoundly the soil displacements induced by geotechnical construction in this deposit.
机译:据报道,对天然伦敦粘土的研究涉及先进的三轴,空心圆柱体装置(HCA)和动态测试技术。在所有变形尺度上都显示出显着的各向异性,并且发现各向异性各向异性的框架广泛应用于初始弹性行为。通过独立技术获得的刚度参数通常显示出良好的一致性,其中最大的偏差体现在泊松比中,与常规地基分析通常假定的值相去甚远。探测测试确定了在一定深度范围内对弹性区域的限制,表明这些限制与平均有效应力水平成比例,与围绕弹性区域的第二运动表面的限制一样。一旦接合,第二个表面就代表了应变增加方向的新模式,随着应变而更快的弹塑性刚度衰减,以及行为对近期应力历史的依赖性更大。但是,这两个运动学表面覆盖了相对较小的容许应力空间,并且在较大应变下的行为既各向异性又强烈非线性,这些特征极大地影响了该矿床中岩土工程施工引起的土壤位移。

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