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Comparing layer types for the use of PavementME for asphalt emulsion Full Depth Reclamation design

机译:使用PavementME进行沥青乳液全深度填筑设计的比较层类型

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While Full Depth Reclamation (FDR) has many potential cost and environmental benefits, it is necessary to ensure that the pavement with recycled materials will perform adequately. One way this can be accomplished is understanding how to best complete the structural design of FDR pavements. Because FDR is a composite material, it does not fit neatly into any of the existing material characterization models considered by the AASHTOWare Pavement ME design (PavementME) software. Until a new layer type is developed that considers the unique properties of these recycled, stabilized base courses, it is essential to understand how to use existing structural design tools to model FDR in a way that accurately captures its structural benefits. In this research, three different FDR mixtures were tested to obtain all necessary material properties required as inputs for PavementMe to consider this material as both asphalt concrete (AC) and unbound granular material (UGM). Using traffic information from the two Arkansas highways climate data, two different MEPDG models were created for each mixture, one characterizing the FDR layer as AC and the other as UGM. A stronger correlation was found to exist between temperature and modulus, rather than stress state and modulus. All distress predictions by PavementME were higher for the FDR as UGM except AC rutting for one mixture and bottom-up fatigue cracking. Overall, considering FDR as AC seemed to more accurately account for the structural benefits of FDR. Published by Elsevier Ltd.
机译:尽管全深度复垦(FDR)具有许多潜在的成本和环境效益,但必须确保使用再生材料的路面能够发挥足够的作用。可以做到这一点的一种方法是了解如何最好地完成FDR路面的结构设计。因为FDR是一种复合材料,所以它不能完全适合AASHTOWare Pavement ME设计(PavementME)软件考虑的任何现有材料表征模型。在开发出一种新的层类型时,要考虑这些可回收​​的,稳定的基础课程的独特属性,必须了解如何使用现有的结构设计工具来为FDR建模,从而准确地捕获其结构优势。在这项研究中,对三种不同的FDR混合物进行了测试,以获得作为PavementMe的输入所需的所有必需的材料特性,以将该材料同时视为沥青混凝土(AC)和未粘结的粒状材料(UGM)。利用来自两个阿肯色州高速公路气候数据的交通信息,为每种混合物创建了两种不同的MEPDG模型,一种模型将FDR层表征为AC,另一种模型表征为UGM。发现在温度和模量之间存在更强的相关性,而不是在应力状态和模量之间存在更强的相关性。除AC车辙对一种混合物和自下而上的疲劳裂纹外,PavementME对FDR作为UGM的所有遇险预测都较高。总体而言,将FDR视为AC似乎可以更准确地说明FDR的结构优势。由Elsevier Ltd.发布

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