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首页> 外文期刊>Journal of materials in civil engineering >Model Tests Investigating Spatial Tensile Behavior of Simulated Geosynthetic Reinforcement Material over Rigid Supports
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Model Tests Investigating Spatial Tensile Behavior of Simulated Geosynthetic Reinforcement Material over Rigid Supports

机译:模型试验研究刚性支撑上模拟土工合成材料的空间拉伸行为

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摘要

A special device was designed, manufactured, and used to create a three-dimensional (3D) layout of rigid supports to investigate the spatial tensile behavior of the geosynthetic reinforcement material over rigid supports. A polyester (PET) sheet was used to simulate the geosynthetic reinforcement material. The results from the model tests using this device were used to evaluate the spatial distribution of tension and the deformed shape of the simulated geosynthetic reinforcement material. A couple of analytical solutions currently available in the literature were selected for the comparison of the calculated tension and deflections with the measured data. This study found that the maximum tensile force in the simulated geosynthetic reinforcement material occurred at the corners of rigid supports, followed by that at the edges of rigid supports. The tensile forces along the simulated geosynthetic reinforcement material were nearly uniform in the central area and increased toward the rigid supports. The test results showed that the three-dimensional deformation pattern of the simulated geosynthetic reinforcement material should not be ignored. A second-order power law formula predicted the deformed shape of the simulated geosynthetic reinforcement material satisfactorily for practical applications. The strain compatibility methods gave good prediction of the maximum tensile force and vertical deflection of the simulated geosynthetic reinforcement material between two adjacent piles. Further research is needed to improve analytical methods by considering the 3D nature of deformation and the spatial distribution of tension in the reinforcement.
机译:设计,制造了一种特殊的设备,并将其用于创建刚性支撑的三维(3D)布局,以研究土工合成材料在刚性支撑上的空间拉伸行为。聚酯(PET)片用于模拟土工合成材料增强材料。使用该装置进行的模型测试结果可用于评估张力的空间分布以及模拟的土工合成材料的变形形状。选择了目前在文献中可获得的两种分析解决方案,用于将计算得出的张力和挠度与测量数据进行比较。这项研究发现,模拟土工合成材料增强材料中的最大拉伸力发生在刚性支撑的角上,其次是刚性支撑的边缘。沿模拟土工合成材料增强材料的拉伸力在中心区域几乎均匀,并向刚性支撑体增加。测试结果表明,模拟土工合成材料的三维变形模式不容忽视。一个二阶幂定律公式可以令人满意地预测模拟土工合成增强材料的变形形状,以供实际应用。应变相容性方法可以很好地预测两个相邻桩之间模拟土工合成材料的最大拉力和垂直挠度。考虑到变形的3D性质和钢筋中拉力的空间分布,需要进行进一步的研究来改进分析方法。

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