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Permanent deformation of asphalt concrete pavements: A nonlinear viscoelastic approach to mix analyses and design.

机译:沥青混凝土路面的永久变形:一种非线性粘弹性方法来进行混合分析和设计。

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摘要

Because pavements are being subjected to increasingly heavy loads, many mix design procedures currently in use may not adequately prevent permanent deformation (rutting) in asphalt concrete. This dissertation describes the development of a nonlinear viscoelastic constitutive model that can be used in mix analyses to design rut-resistant mixes.; Shear deformation is the dominant cause of rutting in asphalt concrete, a nonlinear viscoelastic material. To determine the viscoelastic shear properties simple shear frequency sweep tests at constant height were run. The test results indicated that the mix behavior depends on both strain level and temperature. Master curves of the laboratory data were then shifted horizontally and vertically to create a single master curve from which to extract the viscoelastic material properties. These horizontal and vertical shift factors were used to develop shift factor functions dependent on temperature and strain.; The constitutive model was formulated from the basis of linear viscoelasticity and extended to incorporate the horizontal and vertical shift factors. The strain in the shift factors was the maximum strain experienced in the time history. The model was implemented in a finite element code and the solution was calculated in discrete time steps. The maximum strain and, hence, the shift factors were updated in each time step.; Simulations of the repeated load simple shear test at constant height (RSST-CH) and of pavement structures were performed to validate the model. The RSST-CH simulations matched the laboratory data fairly well. The average shapes of the rutting profiles in the pavement simulations compared favorably with those observed in the Heavy Vehicle Simulator Rutting Study, including the “humps” apparent at the edge of the wheel tracks. Thus, despite limitations in the model, including its inability to account for densification of the mix, the nonlinear viscoelastic model captures the permanent deformation behavior of asphalt concrete reasonably well.; Simulations with the constitutive model were used to evaluate the relationship between rut depth in the field and shear strain in the RSST-CH utilized in the SHRP A003A mix design procedure. The results also demonstrated the usefulness of the model in quantifying the effect of tire type on rutting.
机译:由于路面承受越来越重的负荷,因此当前使用的许多混合料设计程序可能无法充分防止沥青混凝土中的永久变形(车辙)。本文描述了非线性粘弹性本构模型的发展,该模型可用于混合物分析以设计抗车辙混合物。剪切变形是沥青混凝土(一种非线性粘弹性材料)的车辙的主要原因。为了确定粘弹性剪切特性,在恒定高度下进行了简单的剪切频率扫描测试。测试结果表明,混合行为取决于应变水平和温度。然后将实验室数据的主曲线水平和垂直移动,以创建一条主曲线,从中提取粘弹性材料的特性。这些水平和垂直位移因子被用来开发取决于温度和应变的位移因子函数。本构模型是在线性粘弹性的基础上制定的,并扩展到包含水平和垂直位移因子。位移因子中的应变是时间历史中经历的最大应变。该模型以有限元代码实现,并且求解以离散时间步长进行计算。在每个时间步长中更新最大应变,从而改变位移因子。对恒定高度的反复荷载简单剪力试验(RSST-CH)和路面结构进行了仿真,以验证模型。 RSST-CH模拟非常符合实验室数据。路面模拟中的车辙轮廓的平均形状与重型车辆模拟器的车辙研究中观察到的平均形状相比具有优势,其中包括在轮迹边缘明显的“驼峰”。因此,尽管模型存在局限性,包括无法考虑混合物的致密化,但非线性粘弹性模型能够较好地捕获沥青混凝土的永久变形行为。使用本构模型进行仿真,以评估SHRP A003A混合设计程序中使用的车辙深度与RSST-CH中的剪切应变之间的关系。结果还证明了该模型在量化轮胎类型对车辙的影响方面的有用性。

著录项

  • 作者

    Long, Fenella Margaret.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 300 p.
  • 总页数 300
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

  • 入库时间 2022-08-17 11:47:12

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