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Structural response of grid-reinforced bituminous pavements

机译:网格增强沥青路面的结构响应

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Grid reinforcement is becoming a standard construction and rehabilitation technique to improve the performance of bituminous pavements. Currently, selection of the appropriate grid type and position is based on empirical criteria or derived from the results of laboratory tests which consider a single aspect of the mechanical behavior of the grid-reinforced systems. An improvement in the existing design and testing approaches could be obtained considering the actual response of grid-reinforced systems under vehicular loads. An instrumented pavement section was constructed to achieve this objective by installing a glass fiber polymer grid (FP) and a carbon fiber/glass fiber grid (CF) inside a double-layered asphalt surfacing along an in-service road. This pavement is part of a wider project which also involves a RILEM inter-laboratory test on the same reinforced systems. The pavement response to falling weight deflectometer (FWD) and real-scale truck loads was measured using pressure cells and asphalt strain gauges installed inside the pavement. A layered elastic theory (LET) model was adopted to perform both back-calculation of layer moduli and forward-calculation (simulation) of pavement stress and strain. The FWD and the real-scale tests yielded congruent results highlighting that the strain field inside the double-layered surfacing was considerably reduced by the installation of the CF/glass fiber grid whereas the glass FP grid was probably too stiff, potentially leading to interface debonding. The LET model proved to be a simple and effective tool for a first-approach analysis of the reinforcement pavement response.
机译:网格加固已成为提高沥青路面性能的标准施工和修复技术。当前,适当的网格类型和位置的选择是基于经验标准或从实验室测试的结果中得出的,该实验室测试的结果考虑了网格增强系统机械性能的一个方面。考虑到车辆荷载作用下网格增强系统的实际响应,可以对现有设计和测试方法进行改进。通过在服务公路沿线的双层沥青路面内安装玻璃纤维聚合物网格(FP)和碳纤维/玻璃纤维网格(CF),可以构造一个仪器化的路面部分来实现此目的。该路面是更广泛项目的一部分,该项目还涉及对同一增强系统进行RILEM实验室间测试。使用安装在人行道内部的压力传感器和沥青应变仪来测量人行道对落锤重量计(FWD)和实际卡车负载的响应。采用层弹性理论(LET)模型进行层模量的反算和路面应力和应变的正算(模拟)。 FWD和实际测试得出一致的结果,突出表明通过安装CF /玻璃纤维格栅大大降低了双层铺面内部的应变场,而玻璃FP格栅可能太硬,可能导致界面剥离。 LET模型被证明是一种简单有效的工具,可用于钢筋混凝土路面响应的第一方法分析。

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