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Unbound materials resilient modulus testing for Truckee Meadows area.

机译:对Truckee Meadows地区进行未结合的材料弹性模量测试。

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摘要

The recent development of Mechanistic-Empirical Pavement Design Guide (MEPDG) requires the resilient modulus (MR) characterization of subgrade materials. Currently Nevada Department of Transportation (NDOT) uses an empirical chart that provides a correlation between resilient modulus and R-value to estimate MR. The Regional Transportation Commission (RTC) of Washoe County also uses a similar procedure. As NDOT attempts to implement the new MEPDG guidelines to design pavements, procedures to evaluate MR of unbound material, which is expressed as a function of stresses, need to be established. This requires the laboratory testing of unbound materials for the resilient modulus under variety of stress conditions.;This research evaluated the testing facility of unbound material at the Western Regional Superpave Center (WRSC) at the University of Nevada, Reno (UNR). Unbound materials were sampled at four different locations from a local project in Reno, Nevada. The subgrade samples were characterized in the laboratory in terms of resilient modulus. The soil classification tests and compaction tests were conducted as the initial steps towards the characterization of subgrade materials. The Resilient modulus tests for the unbound materials were conducted in the repeated load triaxial test according to AASHTO T307-99 (2003) testing procedure. The test results were analyzed using statistical techniques to develop an optimum constitutive model and it was found that the model recommended in MEPDG showed the best fit and regression coefficient.;Additionally, mechanistic analyses results were used to evaluate the resilient modulus values of each type of subgrade. These values were later compared with values from different simplified approaches. Also the load induced stress distributions in the pavement layers with different resilient modulus values have also been compared.
机译:机械-经验路面设计指南(MEPDG)的最新发展要求路基材料的弹性模量(MR)表征。目前,内华达州交通运输部(NDOT)使用经验图来提供弹性模量和R值之间的相关性以估算MR。 Washoe县的地区运输委员会(RTC)也使用类似的程序。当NDOT尝试实施新的MEPDG指南来设计人行道时,需要建立评估未结合材料MR的程序,该程序表示为应力的函数。这需要在各种应力​​条件下对未粘结材料的弹性模量进行实验室测试。这项研究评估了内华达大学里诺分校(UNR)的Western Regional Superpave Center(WRSC)的未粘结材料的测试设施。在内华达州里诺市的一个地方项目中,在四个不同的位置对未绑定的材料进行了采样。在实验室中根据弹性模量对路基样品进行了表征。进行土壤分类测试和压实测试是表征路基材料的初始步骤。未粘合材料的弹性模量测试是根据AASHTO T307-99(2003)测试程序在重复载荷三轴测试中进行的。利用统计技术对试验结果进行分析,建立了最佳的本构模型,发现在MEPDG中推荐的模型具有最佳的拟合和回归系数;此外,利用力学分析结果对每种类型的弹性模量值进行了评估。路基。随后将这些值与来自不同简化方法的值进行比较。另外,还比较了具有不同弹性模量值的路面中的载荷引起的应力分布。

著录项

  • 作者

    Thurairajah, Aravinthan.;

  • 作者单位

    University of Nevada, Reno.;

  • 授予单位 University of Nevada, Reno.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2007
  • 页码 139 p.
  • 总页数 139
  • 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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