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Evaluation of the Geosynthetic Reinforcement on Railroad Subgrade

机译:评价铁路路基的土工合成加固

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In recent decades the use of high speed trains increased and it is necessary to consider the demand of High Speed Rail Lines (HSRL) on the infrastructure. Comparing with the conventional rail lines, HSRL can potentially cause greater vibrations which can impact the ballast and foundation layers negatively. This paper aims to investigate how a geosynthetic reinforcement layer may affect the fundamental properties of the railroad subgrade such as the static and cyclic shear strength, sub-ballast layer thickness, and vibration properties. Conducting an experimental program, the shear strengths of the various unreinforced and reinforced soil samples were determined by use of the Simple Shear Test and then, a certain percent of the shear strengths were used as the cyclic loads in the Cyclic Simple Shear Tests. It is shown that the inclusion of geosynthetic in sub-ballast layer improves its strength properties. The results approve that the reinforced layers by geosynthetics have more resistance against static and cyclic loads. It is also observed that the reinforcement has a remarkable effect on the reduction of settlement. The results also reveal that the reinforced samples by Gl and G2 have higher cyclic shear strength while G3 is more effective under static loads but has no remarkable influence under cyclic loads. As a result it can be said that the cyclic behaviour cannot be modelled by just conducting a static test.
机译:近几十年来,高速列车的使用增加,有必要考虑对基础设施的高速铁路线(HSRL)的需求。与传统的轨道线相比,HSR1可能导致更大的振动,这会产生负面影响镇流器和基础层。本文旨在研究土工合成加强层如何影响铁路路基的基本特性,例如静态和循环剪切强度,子镇流器层厚度和振动性能。进行实验程序,通过使用简单的剪切测试确定各种未粘接和增强土壤样品的剪切强度,然后使用一定百分比的剪切强度作为环状简单剪切试验中的环状载荷。结果表明,在子镇流器层中包含地质合成提高其强度性质。结果批准了土工合成液的增强层对静态和循环负载具有更多的抵抗力。还观察到,增强件对减少沉降具有显着影响。结果还表明,GL和G2的增强样品具有较高的环状剪切强度,而G3在静态载荷下更有效,但在循环载荷下没有显着影响。结果,可以说,通过进行静态测试,不能建模循环行为。

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