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Geosynthetics reinforced flexible pavement: review of laboratory model studies

机译:土工合成材料增强的柔性路面:实验室模型研究综述

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Number of laboratory studies; have shown that geosynthetics reinforcement improves the performance of flexible pavement either by ex-tending the service life or by savings in base course thickness. In spite of the good laboratory evidence for the geosynthetics reinforced flexible pavement, the mechanism that enables and governs the reinforcement function is still unclear [1]. Cyclic laboratory test has been one of the ways, used for assessing/evaluating the soil-geosynthetic interaction mechanisms. In such a tests contribution of geosynthetics prop-erties, interface shear provided by geotextiles and interlocking provided by geogrids when used under or within the base course of flexible pavement are mainly concentrated. This paper reviews literature of laboratory model studies carried out by various researchers over the globe. This review indicates that, appreciable improvement due to geosynthetics reinforcement depends upon various factors viz. location of geosynthetics, geogrid aperture size, geosynthetics properties, mainly stiffness, variation of base course thickness and strength of subgrade soil. The findings of these laboratory studies are also correlated with the same nature of field studies finding.
机译:实验室研究数量;已经表明,土工合成材料的增强可以延长使用寿命或节省基层厚度,从而改善柔性路面的性能。尽管有大量的关于土工合成材料的增强柔性路面的实验室证据,但启用和控制增强功能的机制仍不清楚[1]。循环实验室测试已成为评估/评估土壤-土工合成相互作用机制的方法之一。在这种测试中,土工合成材料的特性主要集中在土工织物在柔性路面的基础层中或内部使用时,由土工织物提供的界面剪切和由土工格栅提供的互锁。本文回顾了全球不同研究人员进行的实验室模型研究文献。该评论表明,由于土工合成材料的增强,可观的改善取决于各种因素。土工合成材料的位置,土工格栅的孔径大小,土工合成材料的特性,主要是刚度,基层厚度的变化和路基土的强度。这些实验室研究的发现也与实地研究发现的相同性质相关。

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