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Direct shear behaviour of residual soil-geosynthetic interfaces - influence of soil moisture content, soil density and geosynthetic type

机译:残余土-土工合成材料界面的直接剪切行为-土壤含水量,土壤密度和土工合成类型的影响

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Soil-geosynthetic interface shear strength is an essential parameter for the design and stability analysis of geosynthetic-reinforced soil structures. Economic and environmental reasons have led to increasing use of locally available residual soils with a significant percentage of fines and lower draining capacity, when compared with the traditional good-quality backfill materials. This paper describes an extensive laboratory study carried out using a large-scale direct shear test device, in which the influence of soil moisture content, soil density and geosynthetic type on the direct shear behaviour of the soil-geosynthetic interface was evaluated. The study involved a locally available granite residual soil and four geosynthetics: two geogrids (one uniaxial and the other biaxial), one geocomposite reinforcement (high-strength geotextile) and one geotextile. Test results have revealed that the increase in soil moisture content can measurably reduce the soil-geosynthetic interface shear strength. Regardless of soil moisture content, soil density proved to have a remarkable influence on interface shear strength, particularly when geogrids were used. Among the different geosynthetics tested, the biaxial geogrid was found to be the most effective reinforcement for this particular type of soil, concerning the direct shear mechanism. For soil-geogrid interfaces, the coefficients of interaction ranged from 0.71 to 0.99. For soil-geotextile interfaces, the coefficients of interaction varied from 0.54 to 0.85.
机译:土工合成材料界面抗剪强度是土工加筋土结构设计和稳定性分析的重要参数。与传统的优质回填材料相比,由于经济和环境原因,导致更多地使用具有细粉百分率和较低排水能力的当地残留土壤。本文描述了使用大型直接剪切试验设备进行的广泛的实验室研究,其中评估了土壤含水量,土壤密度和土工合成类型对土壤-土工合成材料界面直接剪切行为的影响。该研究涉及一个当地可用的花岗岩残余土壤和四种土工合成材料:两种土工格栅(一个为单轴,另一个为双轴),一种土工复合材料增强材料(高强度土工布)和一种土工布。试验结果表明,土壤含水量的增加可以显着降低土壤-土工合成材料的界面剪切强度。无论土壤含水量如何,土壤密度都被证明对界面抗剪强度有显着影响,特别是在使用土工格栅时。在不同的土工合成材料中,就直接剪切机理而言,发现双轴土工格栅是这种特殊类型土壤最有效的加固方法。对于土壤-土工格栅界面,相互作用系数范围为0.71至0.99。对于土壤-土工织物界面,相互作用系数从0.54到0.85不等。

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