Effect of Particle Shape on The Behavior of Polymer-Improved Sandy Soil Used in Pavements Due to Freeze-Thaw Cycles

B. Karimi
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引用次数: 1

Abstract

Freeze-thaw cycles have a significant negative effect on the engineering behaviour of soil in cold regions. In this study, the compressive strength of stabilized, poorly graded sandy soil used in road pavement that was subjected to different freeze-thaw cycles was studied. Samples with three different particle shapes were stabilized with a binder developed by mixing polyvinyl acetate (PVAc) and ethylene glycol monobutyl ether (EGBE). The PVAc/EGBE weight ratio was 2:1, and PVAc was added at 1%, 2%, and 3% of the dry weight of the soil, with the effect of up to ten freeze-thaw cycles evaluated. Results showed that the addition of binder decreased optimum moisture content and increased compressive strength. An increase in particle roundness results in a decrease in the magnitude of compressive strength but increases the soil composite ductility. Changing particle shape from angular to rounded resulted in a more significant decrease in compressive strength than changing from rounded to well-rounded. The decrease in compressive strength is most significant between the first and fourth freezing-thawing cycles and marginal between the fourth and tenth. The negative effect of increasing the roundness of particles is compensated by increasing binder percentages.
冻融循环作用下颗粒形状对路面用聚合物改良砂土性能的影响
冻融循环对寒区土壤的工程特性有显著的负面影响。在本研究中,研究了不同冻融循环作用下道路路面用稳定的、差级配的砂土的抗压强度。用聚醋酸乙烯酯(PVAc)和乙二醇单丁醚(EGBE)混合而成的粘合剂稳定三种不同颗粒形状的样品。PVAc/EGBE的重量比为2:1,分别在土壤干重的1%、2%和3%添加PVAc,并评估了多达10次冻融循环的效果。结果表明,粘结剂的加入降低了最佳含水率,提高了抗压强度。颗粒圆度的增加导致抗压强度的减小,但增加了土的复合延性。颗粒形状由棱角变为圆角比由圆角变为圆角导致的抗压强度下降更为显著。抗压强度的下降在第一次和第四次冻融循环之间最为显著,在第四次和第十次冻融循环之间趋于平缓。增加颗粒圆度的负面影响通过增加粘合剂的百分比来补偿。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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