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MECHANISTIC DESIGN CONCEPTS FOR FULL-DEPTH ASPHALT CONCRETE PAVEMENTS.

机译:全深度沥青混凝土路面的机械设计概念。

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摘要

A mechanistic design procedure for Full-Depth asphalt concrete AC pavements for highways is proposed and validated. The procedure is based on ILLI-PAVE, a stress dependent finite element computer program, coupled with appropriate transfer functions.; Two material design criteria are considered: AC flexural fatigue cracking and subgrade rutting. Fatigue cracking is controlled by limiting the tensile strain at the bottom of the AC layer. Subgrade rutting is controlled by limiting the stress-ratio at the AC-subgrade interface. Algorithms were developed relating pavement response parameters (stresses, strains, deflections) to AC thickness, AC moduli, and subgrade moduli. Two fatigue equations were calibrated with ILLI-PAVE algorithms and data from the AASHO Road Test bituminous wedge sections. Miner's hypothesis is used to develop a "closed form" solution for predicting pavement life. Weighting factors are developed and validated. Relationships between weighting factors and mean monthly air temperatures are established. From the WF-MMAT relationship a "design season condition" is determined. The design season condition is represented by the effective AC dynamic modulus and the subgrade resilient modulus corresponding to late spring or early summer.; The proposed mechanistic design procedure requires AC thicknesses less than those required by IDOT, the Asphalt Institute, and the Shell procedures. The thickness discrepancies vary depending on traffic and subgrade support.
机译:提出并验证了公路全深层沥青混凝土交流路面的机械设计程序。该程序基于ILLI-PAVE,它是应力相关的有限元计算机程序,并具有适当的传递函数。考虑了两种材料设计标准:AC弯曲疲劳裂纹和路基车辙。通过限制AC层底部的拉伸应变来控制疲劳裂纹。路基车辙是通过限制交流路基界面处的应力比来控制的。开发了将路面响应参数(应力,应变,挠度)与交流厚度,交流模量和路基模量相关的算法。使用ILLI-PAVE算法和来自AASHO Road Test沥青楔形截面的数据校准了两个疲劳方程。矿工的假设被用来开发一种“封闭形式”的解决方案,以预测路面寿命。加权因子得到开发和验证。建立了加权因子与平均每月气温之间的关系。根据WF-MMAT关系,确定“设计季节条件”。设计季节条件由有效的交流动态模量和对应于春末或初夏的路基弹性模量表示。拟议的机械设计程序要求的交流电厚度小于IDOT,沥青研究所和壳牌程序要求的交流电厚度。厚度差异取决于交通和路基支撑。

著录项

  • 作者

    GOMEZ-ACHECAR, MANUEL.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 1984
  • 页码 236 p.
  • 总页数 236
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 建筑科学;
  • 关键词

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