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Desiccation Induced Shrinkage of Compacted Lateritic Soil Treated with Blast Furnace Slag

机译:高炉矿渣处理致密红土的干燥引起的收缩

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A reddish brown lateritic soil treated with up to 15% blast furnace slag was compacted with three compactive efforts, (standard Proctor, West African Standard and modified Proctor) with moulding water contents ranging between 10 and 20% of weight of dry mixture. Compacted samples were extruded and allowed to dry in the laboratory for 30 days with measurements taken every 5 days to monitor volumetric changes due to drying. Four specimens compacted on the wet side of optimum using standard proctor effort; at the various slag treatments after 10 days of drying were subjected to four cycles of drying and three cycles of wetting. The results obtained showed that the changes in mass and volumetric shrinkage were rapid within the first 5 days of drying. These changes were proportional to the moulding water contents and were unaffected by the compactive effort. The volumetric shrinkage strain increased with increasing moulding water content and compactive efforts. As the water content relative to the optimum increased towards the wet side, the volumetric shrinkage strain increased and it decreased towards the dry side. For all compaction energies, the initial degree of saturation increased and regardless of the slag content, the volumetric shrinkage strain increased. As the slag content increased, the initial degree of saturation at which the permissible 4% volumetric shrinkage occurred increased. Slag content had marginal effects on the volumetric shrinkage strain as no clear trend was established. For each slag treatment the volumetric shrinkage strain did not vary significantly with increasing number of drying cycles.
机译:用三种压实方法(标准Proctor,西非标准和改性Proctor)压实了经15%高炉矿渣处理的红棕色红土,压实含水量为干混合物重量的10%至20%。将压实的样品挤出并在实验室中干燥30天,每5天进行一次测量以监测由于干燥引起的体积变化。使用标准监理器将四个试样压实在最佳的潮湿侧;在干燥10天后,对各种炉渣处理的水进行四个干燥周期和三个润湿周期。获得的结果表明,在干燥的前5天内质量和体积收缩率变化迅速。这些变化与模塑含水量成正比,不受压实力的影响。体积收缩应变随着模塑含水量的增加和压实作用的增加而增加。随着相对于最佳水含量的增加,朝着湿侧,体积收缩应变增加,朝着干侧减小。对于所有压实能量,初始饱和度都会增加,而无论炉渣含量如何,体积收缩应变都会增加。随着炉渣含量的增加,出现4%体积收缩率的初始饱和度增加。由于没有明确的趋势,炉渣含量对体积收缩应变有边际影响。对于每种矿渣处理,随着干燥循环次数的增加,体积收缩应变没有明显变化。

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