首页> 外文期刊>Transportation Research Record >Assessment of Distress in Conventional Hot-Mix Asphalt and Asphalt-Rubber Overlays on Portland Cement Concrete Pavements: Using the New Guide to Mechanistic-Empirical Design of Pavement Structures
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Assessment of Distress in Conventional Hot-Mix Asphalt and Asphalt-Rubber Overlays on Portland Cement Concrete Pavements: Using the New Guide to Mechanistic-Empirical Design of Pavement Structures

机译:硅酸盐水泥混凝土路面常规热拌沥青和沥青-橡胶覆盖层中的遇险评估:使用新的路面结构力学-经验设计指南

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The purpose of this study is to assess the way distresses are predicted by using the new Mechanistic-Empirical Design of New and Rehabilitated Pavement Structures (design guide), developed under NCHRP Project 1-37A. Two pavement sections were used: a conventional hot-mix asphalt reconstruction and an asphalt-rubber overlay on a portland cement concrete (PCC) pavement. The design guide does not include rehabilitation design for asphalt-rubber overlays. However, many large-scale asphalt-rubber overlays on interstate highways in Arizona have been built and monitored for performance, providing an opportunity to determine to what degree the design guide can predict their performance. The input data for both types of pavements were derived from two different projects on the same highway, Interstate 40. The actual data measurements that summarize the pavement performance were compared with calculated values obtained by using the design guide. Three pavement performance parameters were evaluated on the basis of the available data: rutting, cracking, and international roughness index (IRI). Rutting was one of the distresses that the design guide predicted more accurately. The fatigue cracking prediction, evaluated with Level-3 data input, was not accurate; future analysis should consider calibrated fatigue models for the different mixtures. The predicted IRI results differed from the actual measured field performance because of inaccurate distress prediction. The Arizona experience using asphalt-rubber overlays to rehabilitate aged PCC pavements has been successful. For that reason, a calibration process that allows the use of the asphalt-rubber mixtures in the design guide should be considered in the future.
机译:这项研究的目的是通过使用在NCHRP项目1-37A下开发的新的和修复后的路面结构的机械-经验设计(设计指南)来评估预应力的方式。使用了两个路面部分:常规的热拌沥青重建和波特兰水泥混凝土(PCC)路面上的沥青橡胶覆盖层。该设计指南不包括沥青-橡胶覆盖层的修复设计。但是,亚利桑那州州际公路上已经建造了许多大型沥青橡胶覆盖层,并对其性能进行了监控,从而提供了确定设计指南可以在多大程度上预测其性能的机会。两种类型的路面的输入数据均来自同一条高速公路40号州际公路上的两个不同项目。将总结路面性能的实际数据测量值与使用设计指南获得的计算值进行比较。根据可用数据评估了三个路面性能参数:车辙,开裂和国际粗糙度指数(IRI)。车辙是设计指南更准确地预测的困扰之一。使用Level-3数据输入评估的疲劳裂纹预测不准确;将来的分析应考虑不同混合物的校准疲劳模型。由于遇险预测不准确,因此预测的IRI结果与实际测量的现场性能有所不同。亚利桑那州使用沥青橡胶覆盖层修复老化的PCC路面的经验很成功。因此,将来应考虑使用设计指南中允许使用沥青橡胶混合物的标定过程。

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