首页> 外文期刊>International Journal of Civil Engineering,Transaction A:Civil Engineering >An Experimental Study for the Cyclic Interface Properties of the EPS-sand Mixtures Reinforced with Geogrid
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An Experimental Study for the Cyclic Interface Properties of the EPS-sand Mixtures Reinforced with Geogrid

机译:土工格栅增强EPS砂混合物循环界面特性的实验研究

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Design and analysis of geosynthetic-reinforced soil structures subjected to repeated loading (e.g. compaction, traffic and earthquake loads) require a proper understanding of the cyclic soil-geosynthetic interface behaviour. This research is undertaken to study the interface properties between sand-expanded polystyrene (EPS) mixtures and geogrid reinforcement under cyclic loading. A series of cyclic tests is performed and the influences of normal stresses, cyclic shear amplitudes and number of cycles are studied. The experiments are conducted using a large-scale direct shear test device allowing to perform displacement-controlled cyclic tests. Accordingly, the influence of the aforementioned parameters on interface shear stiffness and damping ratio is discussed. The results of the experiments showed that adding 0.9% EPS beads to the sand bed leads to the decrease in interface shear stiffness by 30% to 63%, depending on the shear displacement amplitude. In contrast, for the same EPS content ratio, the interface damping increases roughly twice, irrespective of the applied shear displacement amplitude. The value of hardening factor was also found to increase with cycle number under different normal stress levels.
机译:承受反复荷载(例如压实,交通和地震荷载)的土工合成材料加筋的土壤结构的设计和分析需要对循环土-土工合成材料界面的行为有适当的了解。进行这项研究来研究在循环载荷下砂膨胀聚苯乙烯(EPS)混合物与土工格栅加固之间的界面特性。进行了一系列循环测试,研究了正应力,循环剪切振幅和循环次数的影响。实验是使用大型直接剪切测试设备进行的,可进行位移控制的循环测试。因此,讨论了上述参数对界面剪切刚度和阻尼比的影响。实验结果表明,向砂床中添加0.9%EPS珠粒会导致界面剪切刚度降低30%至63%,具体取决于剪切位移幅度。相反,对于相同的EPS含量比,界面阻尼大约增加两倍,而与所施加的剪切位移幅度无关。在不同的法向应力水平下,硬化因子的值也随着循环次数的增加而增加。

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