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Geo-mechanical behavior of clay soils stabilized at ambient temperature with fly-ash geopolymer-incorporated granulated slag

机译:粘土土壤的地理力学行为在环境温度下稳定粉煤灰地质聚合物掺入造粒炉渣

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Geopolymer is a cementitious material that can replace ordinary Portland cement in several geotechnical engineering applications, such as soil stabilization, with the advantages of much lower harmful emissions and energy consumption. This paper presents a rigorous evaluation of the geo-mechanical behavior of different types of clay soils treated with geopolymer, including the influence of soil characteristics and mineralogy. Two natural clay soils in addition to a commercially available kaolin clay were used for this investigation. Laboratory experiments were performed including unconfined compressive strength (UCS) and consolidated undrained (CU) triaxial compression tests under different confining pressures. The UCS and triaxial tests indicated that the addition of geopolymer considerably increased the yield stress and initial stiffness of all examined clays. With the increase of geopolymer content, the stress-strain behavior of treated clays was found to develop progressively from ductile response into a post-peak brittle fashion. The CU tests also demonstrated that the addition of geopolymer changed the initial characteristics of remolded clays from quasi-over-consolidated to heavily over-consolidated, rendering high yield surface and more effective shear strength parameters (i.e., cohesion and friction angle). Moreover, although the overall qualitative stress-strain and stress path responses of the clays were similar, significant quantitative differences were observed, particularly in terms of the attainable yield strength, stiffness, and shear strength. These differences can be attributed mainly to the heterogeneity associated with the soil mineralogy and the corresponding differences in the interaction between the clayon-clay minerals and geopolymer. (C) 2019 Production and hosting by Elsevier B.V. on behalf of The Japanese Geotechnical Society.
机译:地缘聚合物是一种胶凝材料,可以取代普通波特兰水泥在几种岩土工程应用中,如土壤稳定,具有较低有害排放和能耗的优势。本文介绍了对地质聚合物治疗的不同类型粘土土壤地球力学行为的严格评价,包括土壤特性和矿物的影响。除了市售的高岭土外除了市售的高岭土外,还用于该研究。进行实验室实验,包括在不同的限制压力下巩固不包含的压缩强度(UCS)和固结的不介质(Cu)三轴压缩试验。 UCS和三轴试验表明,加入地质聚合物显着增加了所有检查粘土的屈服应力和初始刚度。随着地质聚合物含量的增加,发现处理粘土的应力 - 应变行为从延长脆性时装中逐渐从韧性反应进行显影。 Cu试验还证明了地质聚合物的添加改变了从准合并到过分巩固的准合并的重形粘土的初始特征,呈现高屈服表面和更有效的剪切强度参数(即凝聚力和摩擦角)。此外,尽管粘土的总体定性应力 - 应变和应力路径应答响应是相似的,但观察到显着的定量差异,特别是在可达到的屈服强度,刚度和剪切强度方面。这些差异主要归因于与土壤矿物学相关的异质性和粘土/非粘土矿物质和地质聚合物之间的相互作用的相应差异。 (c)2019年Elsevier B.V的生产和托管代表日本岩土工会。

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