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Use of hydrophilic polymeric stabilizer to improve strength and durability of fine-grained soils

机译:使用亲水性聚合物稳定剂改善细粒土壤的强度和耐久性

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Various additive materials are conventionally utilized to improve geotechnical properties of poor soils. Polymeric additives recently are used for soil stabilization, because they are more comfortable, effective and environment-friendly. In current practice, the effect of water-soluble cationic polyacrylamide (PAM) polymer on physical and mechanical properties of a fine-grained soil was investigated in unfrozen and freeze-thaw conditions. For this purpose, different amounts of PAM additive was added to high plastic fine-grained soil and a series of Atterberg limits, compaction, unconfined compression strength (UCS) and freeze-thaw tests were conducted on the soil samples. In addition, using various spectroscopic and microscopic techniques such as field emission scanning electron microscopy (FESEM), X-ray diffraction (XRD), Brunauer, Emmett, and Teller (BET) surface area analysis and Fourier transform infrared spectroscopy (FTIR) analysis are used to investigate microstructural characteristics of PAM effect on the soil. The results showed that the hydrophilic property of PAM leads to an increase in the plasticity index of the soil. Despite of increasing plasticity index due to PAM inclusion, PAM additive conferred a significant and rapid improvement in compressive strength of the soil and UCS values increased with an increase in PAM content. Moreover, when the soil samples are subjected to the freeze-thaw phenomenon, a considerable reductive occurs on the strength and durability of untreated and treated samples, especially after the first cycle; and PAM additive enhances the freeze-thaw durability of the soil.
机译:传统上使用各种添加剂来改善贫瘠土壤的岩土性能。最近,聚合物添加剂被用于土壤稳定化,因为它们更舒适,有效且对环境友好。在当前实践中,研究了在未冻融和冻融条件下水溶性阳离子聚丙烯酰胺(PAM)聚合物对细粒土壤的物理和机械性能的影响。为此,将不同数量的PAM添加剂添加到高塑性细颗粒土壤中,并对土壤样品进行了一系列Atterberg极限,压实,无侧限抗压强度(UCS)和冻融测试。此外,使用各种光谱和显微技术,例如场发射扫描电子显微镜(FESEM),X射线衍射(XRD),Brunauer,Emmett和Teller(BET)表面积分析和傅里叶变换红外光谱(FTIR)分析,用于研究PAM对土壤的影响的微观结构特征。结果表明,PAM的亲水性导致土壤的可塑性指数增加。尽管由于加入了PAM而增加了可塑性指数,但PAM添加剂却使土壤的抗压强度有了显着且快速的改善,并且UCS值随PAM含量的增加而增加。而且,当土壤样品经受冻融现象时,未处理和处理过的样品的强度和耐久性会显着降低,特别是在第一个循环之后。 PAM添加剂可增强土壤的冻融耐久性。

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