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An evaluation of the interface behaviour of rail subballast stabilised with geogrids and geomembranes

机译:用土工格栅和土工膜稳定的铁路路基ball石的界面行为评估

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In a rail track, the compacted granular medium (subballast) placed underneath the ballast influences track resiliency, and controls the load propagation to the softer subgrade (e.g. clay). A series of large-scale direct shear tests were carried out to investigate the interface shear strength of subballast stabilised with geogrids and geomembranes, respectively. In this study, the beneficial effects of these two different types of geosynthetics on the stress-strain behaviour of unreinforced and reinforced subballast were examined. The influences of normal stress(sigma(n)) relative density (D-R), and the shearing displacement rate (S-R) were studied. The results showed that the shear strength of the subballast-geogrid interface was significantly higher than that of the subballast-geomembrane interface. These results also showed that the reinforced subballast with a higher density provided enhanced performance over a wide range of relative densities. The results also indicated that the shear strength was significantly affected by the shearing rate. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在铁路轨道中,压载物下方的压实粒状介质(压载物)会影响轨道的弹性,并控制载荷向较软路基(例如粘土)的传播。进行了一系列的大规模直接剪切试验,分别研究了用土工格栅和土工膜稳定的子ball的界面抗剪强度。在这项研究中,研究了这两种不同类型的土工合成材料对未加固和加固子ball石的应力-应变行为的有益影响。研究了正应力(sigma(n))相对密度(D-R)和剪切位移率(S-R)的影响。结果表明,ball石-土工格栅界面的剪切强度明显高于ball石-土工膜界面的剪切强度。这些结果还表明,具有较高密度的增强子镇流器在较宽的相对密度范围内提供了增强的性能。结果还表明,剪切强度受剪切速率的影响很大。 (C)2015 Elsevier Ltd.保留所有权利。

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