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Effect of compaction time delay on compaction and strength behavior of lime‑treated expansive soil contacted with sulfate

机译:压实时间延迟对硫酸盐接触石灰处理的膨胀土压实和强度行为的影响

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Application of lime as an additive for controlling the volume change behavior and improving the strength of expansive soils has been in use over several decades. However, the contamination of lime-treated expansive soil with sulfate always results in the deterioration of treated expansive soil. Therefore, this paper highlights the effect of sodium sulfate solution on compaction and strength behavior of lime-treated expansive soil. Further, the effect of compaction time delay and contact period of sulfate solution with lime-treated soil is also brought out in this paper. To bring out the above effects, the lime contents corresponding to the initial consumption of lime (ICL) and ICL +/- 1% were used along with sulfate solutions of 5000, 10,000 and 20,000 ppm. The experimental study showed that upon mixing the lime-treated expansive soil with sulfate solutions, the maximum dry unit weight decreased and optimum moisture content increased with increase in concentration of sulfate solutions when compacted without any compaction delay. With compaction time delay, the lime-stabilized soils mixed with distilled water led to the formation of flocs and aggregation of clay particles and decreased the maximum dry unit weight and optimum moisture content. However, the effect of compaction time delay was negligible on maximum dry unit weight as the formation of flocs and aggregation of clay particles were inhibited in lime-treated soil mixed with sulfate solutions. These changes in dry unit weights and soil structure were reflected on the strength of lime-treated expansive soil as well.
机译:在几十年来,石灰在控制体积变化行为和改善膨胀土的强度的应用中的应用已经在使用中。然而,具有硫酸盐的石灰处理的膨胀土的污染总始终导致治疗的膨胀土壤的恶化。因此,本文突出了硫酸钠溶液对石灰处理的膨胀土的压实和强度行为的影响。此外,本文还将硫酸盐处理与石灰处理的土壤的压实时间延迟和接触期的影响。为了提出上述效果,使用与石灰(ICL)和ICL +/- 1%的初始消耗相对应的石灰含量以及5000,10,000和20,000ppm的硫酸盐溶液使用。实验研究表明,在将石灰处理的膨胀土与硫酸盐溶液中混合时,在压实时硫酸盐溶液的浓度增加,最大干燥单位重量降低和最佳水分含量增加。通过压实时间延迟,与蒸馏水混合的石灰稳定的土壤导致粘土颗粒的絮凝物和聚集,并降低了最大的干燥单元重量和最佳水分含量。然而,在最大干燥单位重量上可以忽略不计,因为在与硫酸盐溶液混合的石灰处理的土壤中抑制了絮状物的形成和粘土颗粒的聚集。干燥单位重量和土壤结构的这些变化也反映在石灰处理的膨胀土的强度上。

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