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Strength and durability of flyash, GGBS and cement clinker stabilized dispersive soil

机译:粉煤灰,GGB和水泥熟料稳定分散土的力量和耐久性

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Dispersive soils are highly susceptible to erosion due to higher sodium content, and it deflocculates in the presence of flowing water. Under saturated conditions, the attractive forces are less than the repulsive forces, and this will help the particle to segregate and to move in suspension. In this investigation, an attempt has been made to stabilize the dispersive soil with cement clinker, ground granulated blast furnace slag (GGBS) and flyash. Samples were prepared with the different predetermined proportions of dispersive soil, cement clinker, GGBS, and fly ash to determine the strength and durability of the stabilized soils. Results of unconfined compressive strength (UCS) are found to be increased significantly by mixing additives in different proportions. From the results of the UCS tests, the optimum mix proportion was obtained with the mixing of 20% of flyash, 15% of GGBS and 30% of cement clinker in dispersive soil. Outcomes of this study suggest that the combined mixture of cement clinker, flyash, and GGBS are more effective to improve the strength than an alone mix. To evaluate the effect of freeze-thaw cycles and water immersion aging on the strength properties of different mix proportion, 0, 1, 3, 6, 9 and 12 cycles freeze-thaw tests and 32 days water immersion tests were done on cylindrical samples at 7, 14, 28, 60 and 90 days curing periods. A coefficient of strength loss/gain was also defined to determine the influence of freezing-thawing and water immersion aging on the durability of the mix proportion. The X-raydiffraction tests (XRD) divulge the formation of hydrated particles play a vital role to enhance the strength because of the reaction between the soil and the additives.
机译:由于钠含量较高,分散土壤对侵蚀高度敏感,并且在流动的水存在下偏离。在饱和条件下,有吸引力的力量小于排斥力,这将有助于颗粒隔离并在悬浮液中移动。在这次调查中,已经尝试用水泥熟料,地面粒状高炉渣(GGB)和粉煤灰稳定分散土壤。用不同的预定比例的分散性土壤,水泥熟料,GGB和粉煤灰制备样品,以确定稳定的土壤的强度和耐久性。通过在不同比例中混合添加剂,发现未排除的压缩强度(UCS)的结果显着增加。从UCS测试的结果,获得最佳混合比例,在分散土壤中混合20%的粉煤料,15%的GGB和30%的水泥熟料。该研究的结果表明,水泥熟料,翼肌和GGB的合并混合物更有效地改善强度而不是单独的混合物。为了评估冻融循环和水浸老化对不同混合比例的强度性质的影响,在圆柱形样品上进行冻融测试和32天水浸试验和32天的水浸渍试验7,14,28,60和90天固化期。还定义了强度损失/增益系数,以确定冻融和水浸老化对混合比例耐久性的影响。 X-raydiffraction试验(XRD)透过水合颗粒的形成发挥着至关重要的作用,以提高强度,因为土壤和添加剂之间的反应。

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