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Evaluation of New and Existing Test Methods to Assess Recycled Asphalt Pavement Properties for Mix Design.

机译:评价新的和现有的测试方法以评估混合料设计的再生沥青路面性能。

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摘要

The use of reclaimed asphalt pavement (RAP) in flexible pavement surface layer has been a major sensitive issue in the construction industry. Due to limited space available in landfills, the decline in the amount of high quality virgin aggregate, and the high price of oil, the use of RAP in new asphalt concrete mixtures has become very attractive. In general, the RAP-percentage used by the various highway agencies is limited to less than 25%. Even many highway agencies have realized the benefits of using RAP, the incorporation of high percentage of RAP (more than 25%) in HMA mixtures, especially in the asphalt surface layer, has been relatively low compared to the possible supply of RAP. Preliminary concerns with HMA mixtures with high RAP content have been the assurance of adequate resistance fatigue and thermal cracking and moisture sensitivity. Therefore, there is a need for the development of design methods and analysis of the properties of HMA mixtures with high RAP contents.;This dissertation focused on two main objectives: (1) To develop systems to evaluate the properties of the aggregates in the RAP materials, and (2) To develop a system to evaluate the properties of RAP binders.;The properties of the virgin aggregates (i.e. gradation and specific gravities) were compared to those of aggregates extracted from laboratory-produced (simulated) recycled asphalt pavement (RAP) from four different aggregate sources. Additionally, the extracted asphalt binder contents were compared to their corresponding true binder contents. The study also looked on how the extraction methods influenced the likelihood of a mix designer overestimating or underestimating a given mix design property. The test results were further examined to determine the impact of the RAP aggregate properties on the voids in mineral aggregate (VMA) for mixtures incorporating different percentages of RAP. As a result, recommendations were made to select the most appropriate method for estimating the RAP aggregate specific gravity based on an acceptable level of error in the VMA calculation of mixtures containing varying levels of RAP.;The determination of the RAP-binder properties is one of the most important steps in designing RAP-containing mixtures. Five methodologies were used to determine the RAP-binder properties: (1) Blending charts according to AASHTO T 323; (2) Direct measurements from extracted and recovered asphalt binders using the dynamic shear rheometer. Two methods were used: (a) Master-master curve (MMC) using the CAM (Christensen-Anderson-Mastereanu) model. (b) Master-master curve using the CAS (Christensen-Anderson-Sharrock) model. (3) Mortar method developed by the University of Wisconsin-Madison researchers (4) Backcalculation of the RAP-binder properties using the Hirsch model, and (5) Backcalculation of the RAP-binder properties using the Huet-sayegh model.;Finally, two methodologies were proposed to design RAP-containing mixtures: A system to evaluate the properties of RAP-aggregates and a system to determine the properties of RAP-binders.
机译:在柔性路面表层中使用再生沥青路面(RAP)是建筑行业的主要敏感问题。由于堆填区的可用空间有限,优质原始骨料数量的减少以及油价高昂,在新型沥青混凝土混合物中使用RAP变得非常有吸引力。通常,各种公路机构使用的RAP百分比限制为小于25%。甚至许多高速公路机构都已经意识到使用RAP的好处,与RAP的可能供应相比,在HMA混合物中尤其是沥青表层中掺入高比例的RAP(超过25%)相对较低。对具有高RAP含量的HMA混合物的最初关注是确保足够的抗疲劳性,热裂性和湿气敏感性。因此,需要开发设计方法和分析高RAP含量的HMA混合物的性能。本论文着眼于两个主要目标:(1)开发评估RAP中骨料性能的系统(2)建立评估RAP粘结剂性能的系统。将原始集料的性质(即级配和比重)与从实验室生产(模拟)的再生沥青路面中提取的集料进行比较( RAP)来自四个不同的汇总来源。另外,将提取的沥青粘合剂含量与其相应的真实粘合剂含量进行比较。该研究还研究了提取方法如何影响混合设计者过高或低估给定混合设计特性的可能性。进一步检查了测试结果,以确定掺入不同百分比RAP的混合物的RAP骨料性能对矿物骨料(VMA)中空隙的影响。因此,建议在VMA计算包含不同RAP含量的混合物时,根据可接受的误差水平,选择最合适的方法来估算RAP骨料比重.RAP粘合剂性能的确定是一种设计含RAP的混合物中最重要的步骤。使用五种方法确定RAP粘合剂的性能:(1)根据AASHTO T 323的混合图; (2)使用动态剪切流变仪直接从提取和回收的沥青粘合剂中进行测量。使用了两种方法:(a)使用CAM(Christensen-Anderson-Mastereanu)模型的主控-主控曲线(MMC)。 (b)使用CAS(Christensen-Anderson-Sharrock)模型的主控-主控曲线。 (3)由威斯康星大学麦迪逊分校的研究人员开发的Mortar方法(4)使用Hirsch模型对RAP-粘合剂性能进行反算,以及(5)使用Huet-sayegh模型对RAP-粘合剂性能进行反算。提出了两种设计含RAP混合物的方法:一种用于评估RAP骨料性质的系统和一种用于确定RAP粘合剂性质的系统。

著录项

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering Civil.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 555 p.
  • 总页数 555
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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