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Structure and mechanical response of sub-Apennine Blue Clays in relation to their geological and recent loading history

机译:亚亚平宁蓝粘土的结构和力学响应与其地质和近期加载历史的关系

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The paper discusses the intrinsic properties, geological history, natural structure and mechanical behaviour of stiff Italian clays, part of the sub-Apennine Blue Clay formation, which are located at different sites within the marine basin where the clay formation was deposited in the early Pleistocene. For all the clay deposits being considered, diagenesis, unloading due to erosion, and weathering of the top strata represent the main stages of the geological history. However, the clays have undergone different levels of unloading, and have developed different levels of structure due to their different locations in the basin. These differences are accounted for in the analysis of their current states and behaviour. Based upon a large experimental database, the structure and mechanical behaviour of the clay samples from the different sites are compared and related to the clay history. In particular, the soil structure is characterised based upon SEM analysis results and compression-swelling test results. The comparison of the response to compression-swelling cycles of the natural clay with that of the same clay when reconstituted leads to the evaluation of parameters such as the stress sensitivity S_σ and the swell sensitivity C_s~* /C_s, which are used to assess the structural strength of the natural clay with respect to that of the reconstituted clay. The stress-strain behaviour of the different clays along different constant stress-ratio compression paths and shear paths (from low to high pressures) is discussed in detail. The variations in stress-strain response of samples subjected to different pre-shear consolidation paths are outlined. The corresponding trends of the plastic strain increment ratios are investigated. As a result of the analysis, the features of the gross yield curves of the different clay horizons are also assessed. Finally, the study provides elements for the characterisation of the hardening properties of stiff clays, and therefore of the evolution of the material anisotropy during plastic deformation.
机译:本文讨论了硬质意大利黏土(亚亚平宁蓝色黏土地层的一部分)的内在性质,地质历史,自然结构和力学行为,这些亚黏土位于位于更新世早期的海洋盆地内的不同位置。对于所有正在考虑的粘土沉积物,成岩作用,由于侵蚀而造成的卸荷以及顶部地层的风化都是地质历史的主要阶段。然而,由于它们在盆地中的不同位置,粘土经历了不同程度的卸载,并且发展了不同水平的结构。在分析其当前状态和行为时会考虑这些差异。基于大型实验数据库,比较了不同地点的粘土样品的结构和力学行为,并将其与粘土历史联系起来。特别地,基于SEM分析结果和压缩膨胀试验结果来表征土壤结构。比较天然粘土和相同粘土在重构后对压缩-膨胀循环的响应,可以评估应力敏感度S_σ和膨胀敏感度C_s〜* / C_s等参数,这些参数可用于评估混凝土的抗压强度。天然粘土相对于重构粘土的结构强度。详细讨论了沿不同恒定应力比压缩路径和剪切路径(从低压到高压)的不同黏土的应力应变行为。概述了经受不同预剪切固结路径的样品的应力应变响应变化。研究了塑性应变增量比的相应趋势。作为分析的结果,还评估了不同粘土层的总产量曲线的特征。最后,该研究为表征硬质粘土的硬化特性提供了要素,从而为塑性变形过程中材料各向异性的演化提供了特征。

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