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Shaking table tests on soil retaining walls reinforced by polymeric strips

机译:聚合物条加固的挡土墙的振动台测试

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The seismic behavior of reinforced soil retaining walls with polymeric strips is examined. A series of 1-g shaking table tests were employed on 80 cm high reinforced-soil wall models. Also, some uniaxial tensile and pullout tests were performed in reduced-scale models to determine the best material to be used instead of polymeric strips in models. The effect of the length of reinforcement, number of steps and shape of the reinforcement arrangement (zigzag vs. parallel) on the failure mode, the wall displacement, and the acceleration amplification factor are investigated. Findings suggest that walls built with extensible reinforcement were flexible and the internal failure mechanism in the reinforced zone for these walls involved a bulging mode. The parallel implementation of reinforcements is more favorable as it decreases the displacements more than 50% before failure compared to the zig-zag arrangement. Also, wall displacement was reduced with a decrease and increase in the reinforcement length at bottom and top layers, respectively and this improved the wall behavior. Therefore, reducing the reinforcement length at the bottom of the wall without increasing the length of upper layers is not recommended as it can noticeably increase wall displacement from 1.2 to 7 times under different waves. (C) 2015 Elsevier Ltd. All rights reserved.
机译:检查了带聚合物条的加筋土挡墙的抗震性能。在80厘米高的加筋土墙模型上进行了一系列的1-g振动台测试。另外,在缩小比例的模型中执行了一些单轴拉伸和拉拔测试,以确定用于代替模型中的聚合物条的最佳材料。研究了钢筋的长度,钢筋的台阶数和形状(锯齿形与平行形)对破坏模式,壁位移和加速度放大系数的影响。研究结果表明,用可扩展的钢筋建造的墙是柔性的,并且这些墙在钢筋区域的内部破坏机制涉及膨胀模式。与之字形布置相比,并行实施钢筋更有利,因为它可以使破坏前的位移减少50%以上。同样,减少了壁位移,并减少了底层和顶层的增强长度,增加了壁的性能。因此,不建议在不增加上层长度的情况下减少墙体底部的加固长度,因为在不同的波浪作用下,墙体位移会从1.2倍明显增加到7倍。 (C)2015 Elsevier Ltd.保留所有权利。

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