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Cracking performance evaluation of Minnesota asphalt pavements.

机译:明尼苏达州沥青路面的抗裂性能评估。

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摘要

Thermal cracking is the most prevalent distress for asphalt roadways in Minnesota. The cracks form pathways for water to permeate into the pavement structure degrading its integrity and shortening the life span. This thesis investigates asphalt mixture design parameters and laboratory tests measures of 25 pavement sections on 18 highways in Minnesota to draw conclusions on how these parameters relate to transverse cracking performance. The results showed that the coarse gradation of asphalt mixes currently being used by MnDOT typically have higher permeability rates than the typical range for dense graded asphalt mixtures, which makes these pavement sections more susceptible to moisture-induced damage.;Next, this study analyzed the transverse and longitudinal field cracking performance of 295 pavement sections on 28 highways with respect to their asphalt binder type and polymer modification. The effect of asphalt binder type and modification was compared to field cracking performance in relation to construction type, asphalt binder supplier, and dynamic shear rheometer parameters: phase angle and dynamic shear modulus. The polymer-modified PG58-34 binder performed better than the non-polymer modified version.;The last part of this thesis evaluated the sensitivity of flexible pavement thermal cracking performance to variations in disk-shaped compact tension (DCT) fracture energy. This study included nearly 200 simulations representing combinations of 3 climates, 3 asphalt thicknesses, 3 asphalt mixtures and 6 fracture energy levels. The motivation of this work was to investigate the sensitivity to the 400 J/m2 threshold that is being used in the implementation of the DCT performance test specification. It is concluded from this study that variation of 25 J/m2 is enough to show a difference in cracking performance.
机译:热裂是明尼苏达州沥青道路最普遍的困扰。裂缝形成了水渗透到人行道结构中的通路,从而降低了其完整性并缩短了使用寿命。本文研究了明尼苏达州18条高速公路上25条路面的沥青混合料设计参数和实验室测试措施,以得出这些参数如何与横向裂缝性能相关的结论。结果表明,MnDOT目前使用的沥青混合料的粗级配比典型的稠密沥青混合料具有更高的渗透率,这使得这些路面部分更容易受到水分引起的破坏。就沥青粘合剂类型和聚合物改性而言,在28条公路上295个路面部分的横向和纵向场裂性能。将沥青粘合剂类型和改性的影响与建筑类型,沥青粘合剂供应商以及动态剪切流变仪参数(相角和动态剪切模量)相关的现场开裂性能进行了比较。聚合物改性的PG58-34粘合剂的性能优于非聚合物改性的粘合剂。本论文的最后一部分评估了柔性路面热裂性能对圆盘形致密张力(DCT)断裂能变化的敏感性。这项研究包括近200种模拟,分别代表3种气候,3种沥青厚度,3种沥青混合物和6种压裂能级的组合。这项工作的目的是调查对DCT性能测试规范实施中使用的400 J / m2阈值的敏感性。从这项研究得出的结论是,25 J / m2的变化足以显示裂化性能的差异。

著录项

  • 作者

    Hoplin, Chelsea Marie.;

  • 作者单位

    University of Minnesota.;

  • 授予单位 University of Minnesota.;
  • 学科 Civil engineering.;Transportation.;Engineering.
  • 学位 M.S.
  • 年度 2016
  • 页码 111 p.
  • 总页数 111
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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