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Effects of Particle Size on the Shear Behavior of Coarse Grained Soils Reinforced with Geogrid

机译:粒径对土工格栅加筋粗粒土剪切特性的影响

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摘要

In order to design civil structures that are supported by soils, the shear strength parameters of soils are required. Due to the large particle size of coarse-grained soils, large direct shear tests should be performed. In this study, large direct shear tests on three types of coarse grained soils (4.5 mm, 7.9 mm, and 15.9 mm) were performed to evaluate the effects of particle size on the shear behavior of coarse grained soils with/without geogrid reinforcements. Based on the direct shear test results, it was found that, in the case of no-reinforcement, the larger the maximum particle size became, the larger the friction angle was. Compared with the no-reinforcement case, the cases reinforced with either soft geogrid or stiff geogrid have smaller friction angles. The cohesion of the soil reinforced with stiff geogrid was larger than that of the soil reinforced with soft geogrid. The difference in the shear strength occurs because the case with a stiff geogrid has more soil to geogrid contact area, leading to the reduction in interlocking between soil particles.
机译:为了设计由土壤支撑的土木结构,需要土壤的抗剪强度参数。由于粗粒土的粒径较大,应进行大的直接剪切试验。在这项研究中,对三种类型的粗粒土(4.5 mm,7.9 mm和15.9 mm)进行了直接剪切试验,以评估粒径对有/无土工格栅加固的粗粒土的剪切行为的影响。根据直接剪切试验结果,发现在不增强的情况下,最大粒径越大,摩擦角越大。与不加固的情况相比,用软土工格栅或刚性土工格栅加固的情况具有较小的摩擦角。刚性土工格栅加筋的土的内聚力大于软土工格栅加筋的土的内聚力。发生剪切强度差异的原因是,刚性土工格栅的情况下,土与土工格栅的接触面积更大,从而导致土壤颗粒之间的互锁性降低。

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