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Soil structure changes during compaction of a cohesive soil

机译:粘性土压实过程中的土壤结构变化

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Orientations of particles, pores and other constituents during compaction of an artificially made clayey soil were studied in order to investigate how soil structure, and in turn, engineering parameters such as dry unit weight, porosity, void ratio and compaction characteristics, change during compaction of a cohesive soil at different moisture contents on both the dry and wet sides of the optimum moisture content. The results show that the orientation pattern at the very dry stage of the compaction curve is nearly random. The overall degree of preferred orientation increases as the moisture content increases until the optimum moisture content is reached. Edge-edge contacts between the particles and/or domains at the very dry stage of the compaction curve first become mainly edge-face and then become face-face contacts near the optimum moisture content. Around the optimum moisture content, the overall degree of preferred orientation becomes the highest. From this point on, however, the overall degree of preferred orientation starts to decrease again indicating that further moisture content increase does not cause additional overall preferred orientation. The structure beyond the optimum moisture content is mainly characterised by long strings of differently oriented packets in the form of curved trajectories and mainly face-to-face contacts between the particles and/or domains in the packets. Though there is a high degree of preferred fabric orientation in each individual packet, the overall degree of preferred orientation decreases because the packets are themselves oriented in different directions. The results agree with previous studies showing that the soil fabric dry of optimum is randomly oriented but becomes increasingly oriented towards the optimum. However, as the moisture content increases on the wet side of optimum, the overall degree of preferred orientation decreases as opposed to the generally accepted view.
机译:为了研究土壤结构,进而研究工程参数(如干重,孔隙率,孔隙率和压实特性)在压实过程中的变化,研究了人造黏土在压实过程中颗粒,孔隙和其他成分的取向。在最佳水分含量的干湿两面都具有不同水分含量的粘性土壤。结果表明,在压实曲线非常干燥的阶段,取向模式几乎是随机的。优选取向的总体程度随着水分含量的增加而增加,直到达到最佳水分含量。在压实曲线非常干燥的阶段,颗粒和/或微区之间的边缘接触首先主要变为边缘面,然后变为接近最佳水分含量的表面接触。在最佳水分含量附近,优选取向的总体程度最高。然而,从这一点开始,优选取向的总体程度再次开始降低,表明进一步的水分含量增加不会引起额外的总体优选取向。超出最佳水分含量的结构的主要特征是呈弯曲轨迹形式的长串不同取向的包装袋,以及包装袋中的颗粒和/或区域之间的主要面对面接触。尽管在每个单独的包装袋中具有较高的优选织物取向度,但是由于包装袋本身沿不同的方向取向,所以总体上优选的取向度降低。该结果与先前的研究一致,该研究表明最佳的土壤织物干燥是随机取向的,但是越来越趋向于最佳。但是,随着水分在最佳湿润侧增加,与通常公认的观点相反,优选取向的总体程度降低。

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