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Experimental Study on Mechanical Properties of Reinforced Soil Interface under Dry-Wet Cycle

机译:干湿循环中钢筋土界面力学性能的试验研究

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The reinforced soil-retaining wall has been widely used in coastal projects, and the dry-wet cycles influence the mechanical properties of the reinforced soil interface. This study conducts macro-micro tests and selects four different water content samples of reinforced soil with five types of overburden pressure conditions and three sets of dry-wet cycles, with a total of 60 working conditions. The pull-out test was used to study the mechanical properties of the reinforced soil interface. The scanning electron microscope was used to observe the microscopic characterization of the particles under different working conditions. Through the analysis of the experimental results, we can draw the conclusion as follows. (1) The friction coefficient of the reinforced soil interface decreases with the increase of the number of dry and wet cycles. (2) The apparent cohesion of soil-reinforcement interface decreases with the increase of the number of dry-wet cycles. After 30 dry-wet cycles, the apparent cohesion of the soil-reinforcement interface with water content of 14% is the maximum 5.91?kPa. The variation law of cohesion derived from microstructure analysis conforms to the laws and conclusions obtained by the experiment. (3) The shear stress of the reinforced soil is linearly related to the normal stress, which is in accordance with Coulomb’s law.
机译:加筋土-挡土墙已被广泛用于在沿海项目,和干 - 湿循环影响加筋土界面的机械性能。本研究中进行的宏观微测试,并选择具有五种类型的上覆压力条件和三套干 - 湿循环的加筋土的四个不同的水含量的样品,总的60的工作条件。该拉拔试验来研究加筋土界面的力学性能。电子显微镜扫描来观察不同的工作条件下的颗粒的显微表征。通过对实验结果的分析,我们可以得出这样的结论如下。 (1)加筋土界面的摩擦系数与干和湿循环的数目的增加而减小。 (2)土加固界面的表观凝聚力与干 - 湿循环的数目的增加而减小。经过30干 - 湿循环,以14%的水含量的土壤加固界面的表观凝聚力是最大5.91?千帕。凝聚力的变化规律,从微观分析,符合通过实验获得的法律结论的。 (3)加筋土的剪切应力线性相关的正常的压力,这是根据库仑定律。

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