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Mechanical characteristics of sulfated clay stabilized with colloidal silica considering different number of freeze-thaw cycles

机译:考虑不同冻融次数的胶态二氧化硅稳定的硫酸化黏土的力学特性

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Saturation mechanisms are the cause considerable strength reduction and swelling enhancement in clayey soils. To overcome this phenomenon, stabilization of the weak layers could be useful when any chemical additives which are calcium based are added. In the presence of considerable amounts of sulfate ions, the conventional additive like lime leads to large heaving due to swelling. This paper presents the changes in the amount of California Bearing Ratio (CBR) of soaked samples and swelling index of Najmabad clayey soil after being stabilized with Colloidal Silica (CS). These tests were performed at different curing times of 3, 7, and 28 days. Moreover, CBR tests were performed after Freeze-Thaw (F-T) conditions under 1, 2, 4, 8, and 12 cycles in 3 selected samples which satisfied the required degree of improvement. In addition, free swelling in all the states was measured and controlled. The results revealed fulfilling CBR criterion of samples subjected to F-T cycles and significant reduction of swelling percent in samples with 1% Nano Silica (NS) particles after 28 days curing time and 2% NS particles after 7 days curing time. Also, Scanning Electron Microscopy (SEM) revealed structural changes and an integrated network for soil improved with CS.
机译:饱和机制是导致粘土质土壤强度显着降低和溶胀增强的原因。为了克服这种现象,当添加任何基于钙的化学添加剂时,弱化层的稳定化可能是有用的。在存在大量硫酸根离子的情况下,常规添加剂(如石灰)会因溶胀而导致较大的沉陷。本文介绍了胶态二氧化硅(CS)稳定后的浸泡样品的加利福尼亚承载比(CBR)量和纳吉巴德粘土的膨胀指数的变化。这些测试是在3、7和28天的不同固化时间下进行的。此外,在满足所选要求的改善程度的3个选定样本中,在1、2、4、8和12个循环的冻融条件下进行了CBR测试。另外,测量并控制了所有状态下的自由溶胀。结果表明,经受F-T循环的样品满足CBR标准,固化28天后具有1%纳米二氧化硅(NS)颗粒,固化7天后具有2%NS颗粒的样品的溶胀百分比显着降低。另外,扫描电子显微镜(SEM)揭示了结构变化和CS改良的土壤综合网络。

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