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Experimental Research for the Application of Mining Waste in the Trench Cutting Remixing Deep Wall Method

机译:矿山废料在Cutting割混合深壁法中应用的试验研究。

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This paper focuses on the use of fly ash (FA) or ground granulated blast slag (GGBS) and reactive lime blends for cement-stabilized Nanjing clay, comparing them with Portland cement (PC) for enhanced technical performance. A range of tests were conducted to investigate the properties of stabilized soils, including macrostrength (UCS), permeability, and microstructure analyses by scanning electron microscopy (SEM). The influence of PC : (FA + lime) ratio, PC : (GGBS + lime) ratio and curing time was addressed. The UCS and permeability results revealed that PC-FA-lime was more efficient than PC-GGBS-lime as a binder for soil stabilization, with an optimum proportion of PC : (FA + lime) = 3 : 7 at 25% binder content, varying with curing time. The microstructure analysis reveals that fly ash mainly changes the pore volume distribution, which ranges between 0.01 μm and 1 μm, and produces more CSH/CASH bonding and fissures due to the secondary hydration and pozzolanic reactions. Based on the favourable results obtained, it can be concluded that the soft soils can be successfully stabilized by the combined action of cement, fly ash, and lime. Since fly ash is much cheaper than cement, the addition of fly ash and lime in cement-soil mix may particularly become attractive and can result in cost reduction of construction.
机译:本文重点研究了粉煤灰(FA)或磨碎的高炉矿渣(GGBS)和活性石灰掺合物在水泥稳定的南京黏土中的应用,并将其与硅酸盐水泥(PC)进行比较以提高技术性能。进行了一系列测试以研究稳定土壤的特性,包括宏观强度(UCS),渗透性和通过扫描电子显微镜(SEM)进行的微观结构分析。研究了PC:(FA +石灰)比,PC:(GGBS +石灰)比和固化时间的影响。 UCS和渗透性结果表明,PC-FA-石灰比PC-GGBS-石灰更有效地稳定土壤,在25%的粘结剂含量下,PC:(FA +石灰)= 3:7的最佳比例;随固化时间而变化。微观结构分析表明,粉煤灰主要改变孔体积分布,其范围在0.01μm至1μm之间,并且由于二次水合和火山灰反应而产生更多的CSH / CASH粘结和裂缝。根据获得的良好结果,可以得出结论,水泥,粉煤灰和石灰的联合作用可以成功地稳定软土。由于粉煤灰比水泥便宜得多,因此在水泥-土壤混合物中添加粉煤灰和石灰可能特别有吸引力,并可能导致建筑成本降低。

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