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Effects of Initial Water Content on Microstructure and Mechanical Properties of Lean Clay Soil Stabilized by Compound Calcium-Based Stabilizer

机译:初始含水量对复合钙基稳定剂稳定的贫粘土的微观结构和力学性能的影响

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摘要

Initial water content significantly affects the efficiency of soil stabilization. In this study, the effects of initial water content on the compressibility, strength, microstructure, and composition of a lean clay soil stabilized by compound calcium-based stabilizer were investigated by static compaction test, unconfined compression test, optical microscope observations, environment scanning electron microscopy, energy dispersive X-ray spectroscopy, and X-ray diffraction. The results indicate that as the initial water content increases in the range studied, both the compaction energy and the maximum compaction force decrease linearly and there are less soil aggregates or agglomerations, and a smaller proportion of large pores in the compacted mixture structure. In addition, for specimens cured with or without external water supply and under different compaction degrees, the variation law of the unconfined compressive strength with initial water content is different and the highest strength value is obtained at various initial water contents. With the increase of initial water content, the percentage of the oxygen element tends to increase in the reaction products of the calcium-based stabilizer, whereas the primary mineral composition of the soil-stabilizer mixture did not change notably.
机译:初始含水量显着影响土壤稳定的效率。在这项研究中,通过静压试验,无侧限压缩试验,光学显微镜观察,环境扫描电子研究了初始含水量对复合钙基稳定剂稳定的贫化粘土的可压缩性,强度,微观结构和组成的影响。显微镜,能量色散X射线光谱和X射线衍射。结果表明,随着初始含水量在所研究范围内的增加,压实能量和最大压实力均呈线性下降,且土壤团聚体或团聚体减少,且在压实混合物结构中大孔隙的比例降低。此外,对于有或没有外部供水且在不同压实度下固化的试样,无侧限抗压强度随初始含水量的变化规律是不同的,并且在各种初始含水量下可获得最高强度值。随着初始水含量的增加,钙基稳定剂的反应产物中氧元素的百分比趋于增加,而土壤稳定剂混合物的主要矿物质组成没有明显变化。

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