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Investigation on reinforcement-sand-clay layer system using direct-shear test

机译:用直接剪切试验研究加筋-黏土-黏土层系统

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The property of the contact surface between geosynthetics and soil directly affects the whole structure's stability. The interface property is one of the most important indices for the reinforced structure. Systematic direct-shear tests with large direct-shear apparatus are carried out for geobelt reinforced clay under different normal stresses and water content. A reinforcement-sand-clay layer system improving the interface behavior greatly is designed. The stress-strain relationship is investigated on the basis of the experimental results. The results show that with the increase of the normal stress, the shear strength between the clay and the reinforcement increases nonlinearly, and with the increase of the water content, the friction coefficient between the clay and the reinforcement decreases dramatically and the cohesion between the clay and the polypropylene geobelt increases initially, then decreases. There is an optimal value for the water content between the clay and the polypropylene geobelt, which is 2% lower than the optimal water content of clay compaction. This reinforcement-sand-clay layer system improves the shear strength of the interface remarkably. Therefore, the clay-sand-reinforcement layer system is a rather good design for practical use in reinforcement engineering.
机译:土工合成材料与土壤之间的接触表面的性质直接影响整个结构的稳定性。界面性能是增强结构最重要的指标之一。在不同的正应力和含水量的情况下,采用大型直剪仪对带状土的钢筋混凝土进行了系统直剪试验。设计了一种能大大改善界面行为的增强砂土层系统。根据实验结果研究了应力-应变关系。结果表明,随着正应力的增加,黏土与增强材料之间的抗剪强度呈非线性增加;随着含水量的增加,黏土与增强材料之间的摩擦系数显着降低,黏土之间的内聚力增大。聚丙烯地带先增加,然后减少。粘土和聚丙烯土工带之间的水含量有一个最佳值,比粘土压实的最佳水含量低2%。该增强砂土-粘土层系统显着提高了界面的剪切强度。因此,粘土-砂-增强层系统是在增强工程中实际使用的相当好的设计。

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