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Evolution of soil-water and shrinkage characteristics of an expansive clay during freeze-thaw and drying-wetting cycles

机译:冻融和干燥润湿循环中膨胀粘土的土壤 - 水和收缩特性的演变

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This paper investigates the evolution of the soil-water characteristic curve (moisture content-suction relationships, SWCC), soil shrinkage characteristic curve (moisture content-void ratio relationships, SSCC) and microstructure of a compacted expansive clay during drying-wetting (DW) cycles and closed-system freeze-thaw (FT) cycles. Experimental results reveal that FT and DW cycles significantly change the clay?s macropore system by destructing the compaction-induced macropores but have little impact on the micropore system. FT cycles induce invisible microcracks and DW cycles result in visible macrocracks, both of which (i) significantly reduced the clay?s water retention capacity in the low suction range and volumetric shrinkage from saturated condition to oven-dryness, (ii) introduce structural shrinkage stage to the SSCC and (iii) have no impact on the shrinkage and plastic limits of the SSCC. The slope of the SSCC in the normal and residual shrinkage stages reduces after FT cycles due to the development of microcracks but is less affected by DW cycles. The moisture content-void ratiosuction relationships obtained from specimens with different FT and DW histories are likely distributed on a unique surface and this surface was reasonably described by a model proposed in this study using only one set of parameters. Studies in this paper are useful for advancing the understanding of the influences of environmental factors on the hydromechanical behaviour of expansive clays.
机译:本文研究了干湿期间压实膨胀粘土的土壤 - 水特征曲线(水分含量 - 吸力关系,SWCC),土壤收缩特性曲线(水分含量 - 空隙率关系,SSCC)和微观结构的进展(DW)循环和闭合系统冻融(FT)循环。实验结果表明,FT和DW循环通过破坏压实诱导的大孔来显着改变粘土的大孔系统,但对微孔系统影响很小。 FT循环诱导隐形微裂纹和DW循环导致可见的MacRecrack,其中(i)两者(I)显着降低了低吸入范围内的粘土水保留能力,并从饱和条件到烘箱干燥的体积收缩,(ii)引入结构收缩SSCC和(iii)的阶段对SSCC的收缩和塑性极限没有影响。由于微裂纹的发育,SSCC在正常和残余收缩阶段的斜率降低了FT循环后,但受DW循环的影响较小。从具有不同FT和DW历史的标本获得的水分含量 - 空隙定向关系很可能在独特的表面上分布,并且该表面的使用仅使用一组参数在本研究中提出的模型来合理地描述。本文的研究可用于推进对环境因素对膨胀粘土的流体机械行为的影响。

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