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Evaluation of small strain stiffness characteristics of soft clay treated with lime and nanosilica and correlation with UCS (q_u)

机译:用石灰和纳米硅酸盐处理的软粘土的小应变刚度特性评价及与UCS相关性(Q_U)

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摘要

Improving the strength and stiffness properties of soils using non-conventional materials has been extensively performed in the past decade. In recent years, many nanotechnology-based materials have been used in different civil engineering projects. Unlike the static properties, dynamic characteristics of stabilized soils, which are of great significance in the seismic analysis of geostructures in earthquake-prone areas, have not been extensively explored throughout the literature. In this study, the influence of the addition of nano-SiO2 and lime on the shear wave velocity (V-s), small strain shear modulus (G(max)), and unconfined compressive strength of the stabilized clay is investigated. Adopting nano-SiO2 and lime contents and curing time of the mixtures as testing variables, several series of bender element (BE) tests and unconfined compressive strength tests are performed on soft clay samples stabilized with the variable percentages of lime and nano-SiO2. The experimental results demonstrate that the simultaneous addition of the nano-SiO2 and lime contents to the mixture up to a certain level (7% lime and 1% nano-SiO2) leads to a considerable increase in the small strain characteristics and unconfined compressive strength of soft clay. A typical correlation between the small strain properties and unconfined compressive strength (q(u)) is also developed for the mixture used in this study, which could be an alternative approach for the evaluation of shear stiffness. Such correlation could serve as a quick, convenient reference without having to prepare numerous specimens for the dynamic experiments.
机译:在过去十年中,使用非常规材料的改善使用非常规材料的强度和刚度特性。近年来,许多基于纳米技术的材料已用于不同的土木工程项目。与静态特性不同,稳定土壤的动态特征在地震 - 易发地区地震区域的地震分析中具有重要意义,在整个文献中都没有广泛探索。在该研究中,研究了纳米SiO2的添加对剪切波速度(V-S),小应变剪切模量(G(MAX))和稳定粘土的不包含束缚的抗压强度的影响。采用纳米SiO2和酸橙含量和混合物的固化时间作为测试变量,在用石灰和纳米SiO2的可变百分比稳定的软粘土样品上进行几系列弯曲元素(BE)试验和不包含的压缩强度试验。实验结果表明,将纳米SiO 2和石灰含量同时加入到一定水平(7%石灰和1%纳米-SiO 2)中的混合物导致小的应变特性和不包含的抗压强度增加软粘土。对于本研究中使用的混合物,还开发了小菌株性能和非束缚抗压强度之间的典型相关性(Q(U)),这可能是评估剪切刚度的替代方法。这种相关性可以用作快速,方便的参考,而不必为动态实验做好众多标本。

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