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The Mechanical Properties of Fly-Ash-Stabilized Sands

机译:粉煤灰稳定砂的机械性能

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The stabilization of soil through the addition of fly ash has been shown to be an effective alternative for improving the strength and stiffness of soil through the resulting chemical reactions. The chemical reaction that occurs dissociates the lime (CaO) in the fly ash, and the establishment of cementitious and pozzolanic gels (consisting of calcium silicate hydrate (CSH) gel and calcium aluminate hydrate (CAH) gel) binds the soil particles and increases the strength and stiffness of the soil. Investigations into the mechanical properties of sands stabilized with fly ash (fly-ash-stabilized sands) were conducted through a series of unconfined compressive strength (UCS) and direct shear strength tests for various fly ash percentages, curing times, grain sizes, degrees of saturation during sample preparation, and content of fines. It was found that the mechanical properties—UCS and direct shear strength (DSS)—of fly-ash-stabilized sands increased with both increasing fly ash content in the specimen and curing time, but decreased with increasing grain size, degree of saturation during sample preparation, and content of fines. The results indicated that fly-ash-stabilized sands required more than a month to attain their optimum performance with regard to binding sand particles.
机译:通过添加粉煤灰的稳定已经显示出通过所产生的化学反应来改善土壤的强度和刚度的有效替代方案。发生的化学反应将石灰(CaO)分离在粉煤灰中,并建立水泥和火山灰凝胶(由硅酸钙水合物(CSH)凝胶和铝酸钙水合物(CAH)凝胶)结合土壤粒子并增加土壤的力量和刚度。通过一系列无束的抗压强度(UCS)进行用粉煤灰(飞灰稳定砂)稳定砂岩机械性能的研究,并针对各种粉煤灰百分比,固化时间,粒度,度的直接剪切强度试验进行样品制备期间的饱和度和细粉含量。发现机械性能-UCs和直接剪切强度(DSS) - 粉煤灰稳定的砂含量随着试样和固化时间的增加而增加,但随着晶粒尺寸的增加,样品期间饱和度降低准备和罚款含量。结果表明,粉煤灰稳定的砂体需要超过一个月的时间来实现其具有结合砂颗粒的最佳性能。

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