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Study on the Impact of Sand-Clay Bond in Geo-grid and Geo-Textile on Bearing Capacity

机译:土工格栅和土工布中砂土黏结对承载力影响的研究

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This paper aims to determine the impact of sand-clay bond in geo-grid and geo-textile on bearing capacity. In doing so, we examined clay-geo-synthetics, sand-geo-synthetics and clay-sand-geo-synthetics samples using direct shear tests. The friction between clay and reinforcement was provided by encapsulated-sand system.This method is used to transfer the tensile force mobilized in geo-synthetics from sand to clay and improve the strength parameters of clay. This study indicated that the provision of a thin layer of sand at both sides of the reinforcement significantly improved the shear strength of clay soil.Bond coefficient computations indicated that the shear strength of clay-geo-synthetics samples was higher than non-reinforced clay. The increased strength was due to the impact of open meshes of geo-synthetics which provided some degree of resistance bearing. To determine the share of resistance bearing provided by geo-synthetic transverse members in the entire direct shear strength, we conducted a series of tests on geo-synthetics-reinforced samples with and without transverse members. The resistance bearing provided by geo-synthetic transverse members was almost 10% of total shear strength. The results indicated that encapsulated geo-grid and geo-textile sand system increased the bearing capacity of clay, with geo-grid being more efficient than geo-textile.
机译:本文旨在确定土工格栅和土工织物中的砂土黏结对承载力的影响。在这样做的过程中,我们使用直接剪切试验检查了黏土-地基,沙地-地基和黏土-砂-地基。粘土与增强材料之间的摩擦是通过包埋砂体系提供的。该方法用于将土工合成材料中传递的张力从沙子传递到粘土,并改善粘土的强度参数。这项研究表明,在加固物的两侧都提供薄薄的砂层可以显着提高粘土的抗剪强度。键合系数计算表明,粘土-土工合成材料样品的抗剪强度要高于未增强的粘土。强度增加是由于土工合成材料的开孔网的影​​响,该网孔提供了一定程度的阻力。为了确定土工合成材料横向构件在整个直接抗剪强度中所占的份额,我们对有或没有横向构件的土工合成材料增强型样品进行了一系列测试。土工合成材料横向构件提供的阻力轴承几乎占总剪切强度的10%。结果表明,封闭的土工格栅和土工织物砂体系提高了粘土的承载力,土工格栅比土工织物更有效。

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