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Geocell-Reinforced Unpaved and Paved Roads with Recycled Asphalt Pavement (RAP) Bases: Experimental Study and Damage Model Development.

机译:具有再生沥青路面(RAP)基础的土工格室未铺砌和铺砌的道路:实验研究和损伤模型开发。

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摘要

Recycled Asphalt Pavement (RAP) is a removed and reprocessed pavement material from deteriorated asphalt pavements containing asphalt binder and aggregates. The use of RAP can reduce the cost of construction materials, reduce the amount of waste to be land-filled, and conserve natural resources by requiring less virgin aggregate and asphalt in road construction projects. Literature showed that RAP bases had more permanent deformation under static and dynamic loading compared to conventional aggregate base. Geocell is one type of geosynthetic products manufactured in a form of three-dimensional interconnected honeycomb shape polymeric cells. Geocell was used in this study to reinforce RAP bases in unpaved and paved roads. The objective of this study is to understand the behavior of unpaved and paved roads with unreinforced and geocell-reinforced RAP bases.;Fifteen large-scale laboratory cyclic plate loading tests were conducted on unpaved and paved road sections with unreinforced or geocell-reinforced RAP bases. The unpaved road sections consisted of unreinforced or geocell-reinforced RAP bases over weak or moderate (target CBR = 2% or 5%) subgrade, whereas paved road sections consisted of hot mix asphalt (HMA) surface over unreinforced or geocell-reinforced RAP bases over moderate (target CBR = 5%) subgrade to investigate their performance and shake down responses under cyclic loading. The test results showed that geocell improved the performance of RAP bases as compared with the unreinforced bases by increasing the percentage of resilient deformation and reducing the permanent deformations and the vertical stresses transferred to the subgrade. A thin (about 50 mm) HMA surface significantly improved the performance of RAP bases. The thicker geocell-reinforced RAP base behaved as a slab with bending resistance and the thinner base behaved as a slab initially at a smaller deformation and then as a tensioned membrane at a larger deformation. The geocell-reinforced RAP bases showed a stable shakedown response whereas the unreinforced RAP base showed an unstable shakedown response.;Based on cyclic plate loading test results, damage models for the empirical correlation between the permanent strain and/or the resilient strain with the number of loading cycles were developed for unpaved and paved roads including unreinforced and geocell-reinforced RAP bases. The mechanistic empirical model can be incorporated in the AASHTO Mechanistic Empirical Pavement Design Guide (MEPDG), which will promote the sustainable use of RAP with geocell for roadway construction.
机译:再生沥青路面(RAP)是从含有沥青粘合剂和集料的劣化沥青路面中去除并重新加工的路面材料。通过使用RAP,可以减少道路建设项目中的原始骨料和沥青,从而降低了建筑材料的成本,减少了垃圾填埋的数量,并节省了自然资源。文献表明,与常规集料基础相比,RAP基础在静态和动态载荷下具有更多的永久变形。 Geocell是一种以三维互连蜂窝状聚合物电池形式制造的土工合成产品。在这项研究中,Geocell用于加固未铺设和已铺设道路的RAP基础。这项研究的目的是了解具有未加固和土工格栅增强RAP基层的未铺装和铺装道路的行为。;在未经加固或土工格栅增强RAP基础的未铺装和铺装道路段上进行了十五次大型实验室循环板荷载试验。未铺设的路段由弱或中等(目标CBR = 2%或5%)路基上的未加固或土工格栅增强的RAP基层组成,而已铺设的路段由未加固或土工格栅增强的RAP基层上的热拌沥青(HMA)表面组成超过中等(目标CBR = 5%)的路基,以研究其性能并降低周期性荷载下的响应。测试结果表明,与未增强的基础相比,土工格室通过提高弹性变形的百分比并减少永久变形和传递至路基的垂直应力,改善了RAP基础的性能。 HMA薄的表面(约50毫米)显着改善了RAP基材的性能。较厚的土工格室加固RAP基层表现为具有抗弯性的平板,而较薄的基层最初表现为较小变形的平板,然后表现为较大变形的张紧膜。土工格室加固的RAP基座显示出稳定的震荡响应,而未加固的RAP基座显示出不稳定的震荡响应。;基于循环板载荷测试结果,损伤模型的永久应变和/或弹性应变与数量的经验相关性针对未铺设和已铺设的道路(包括未加固和土工格室加固的RAP基层)开发了一定的加载周期。机械的经验模型可以纳入AASHTO机械的经验路面设计指南(MEPDG),该指南将促进RAP和土工格室在道路建设中的可持续利用。

著录项

  • 作者

    Thakur, Jitendra Kumar.;

  • 作者单位

    University of Kansas.;

  • 授予单位 University of Kansas.;
  • 学科 Engineering Civil.;Engineering Environmental.;Sustainability.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 251 p.
  • 总页数 251
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:14

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