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Investigation of the Effect of Oil Modification on Critical Characteristics of Asphalt Binders.

机译:研究改性油对沥青粘合剂的关键特性的影响。

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摘要

Thermally induced cracking of asphalt pavement continues to be a serious issue in cold climate regions as well as in areas which experience extreme daily temperature differentials. Low temperature cracking of asphalt pavements is attributed to thermal stresses and strains developed during cooling cycles. Improving asphalt binder low temperature fracture and stiffness properties continues to be a subject of particular concern. Therefore, significant amount of research has been focused on improving asphalt binder properties through modification.;In recent years, wide ranges of oil based modifications have been introduced to improve asphalt binder performance, especially at the low service temperatures. Although, significant use of these oils is seen in practice, knowledge of the fundamental mechanisms of oil modification and their properties for achieving optimum characteristics is limited. Hence, this study focuses on better understanding of the effect of oil modifiers which would help better material selection and achieve optimum performance in terms of increasing the life span of pavements.;In this study, the effect of oil modification on the rheological properties of the asphalt binder is investigated. To examine the effect of oil modification on binder characteristics, low temperature properties as well as high temperature performance of oil modified binders were evaluated. It is found that oils vary in their effects on asphalt binder performance. However, for all oils used in the study, adding an oil to binder can improve binder low temperature performance, and this result mainly attributed to the softening effect. In addition to that, a simple linear model is proposed to predict the performance grade of oil modified binder based on the properties of its constituents at high and low temperatures.;Another part of this study focuses on the oil modification effect on asphalt binder thermal strain and stresses. A viscoelastic analytical procedure is combined with experimentally derived failure stress and strain envelopes to determine the controlling failure mechanism, strain tolerance or critical stress, in thermal cracking of oil modified binders. The low temperature failure results depict that oil modification has a good potential of improving the cracking resistance of asphalt binders during thermal cycles.
机译:在寒冷气候地区以及每天温度差异极大的地区,沥青路面的热诱导开裂仍然是一个严重的问题。沥青路面的低温开裂归因于在冷却循环中产生的热应力和应变。改善沥青粘合剂的低温断裂和刚度性能仍然是特别令人关注的主题。因此,大量的研究集中在通过改性来改善沥青粘合剂性能上。近年来,已经引入了广泛的油基改性剂以改善沥青粘合剂的性能,特别是在低使用温度下。尽管实际上可以大量使用这些油,但是对油改性的基本机理及其用于获得最佳特性的性能的认识有限。因此,本研究的重点是更好地了解油改性剂的作用,这将有助于更好地选择材料并在延长路面使用寿命方面达到最佳性能。在本研究中,油改性对沥青流变性能的影响。研究了沥青粘合剂。为了检验油改性对粘合剂特性的影响,评估了油改性粘合剂的低温性能和高温性能。发现油对沥青粘合剂性能的影响各不相同。但是,对于研究中使用的所有油,在粘结剂中添加一种油可以改善粘结剂的低温性能,该结果主要归因于软化效果。除此之外,基于其成分在高温和低温下的性质,提出了一个简单的线性模型来预测油改性的粘结剂的性能等级。本研究的另一部分着眼于油改性对沥青粘结剂热应变的影响。和压力。粘弹性分析程序与实验得出的破坏应力和应变包络相结合,以确定在油改性粘合剂的热裂解中的控制破坏机理,应变容限或临界应力。低温破坏结果表明,在热循环过程中,油的改性具有改善沥青粘合剂的抗裂性的良好潜力。

著录项

  • 作者

    Golalipour, Amir.;

  • 作者单位

    The University of Wisconsin - Madison.;

  • 授予单位 The University of Wisconsin - Madison.;
  • 学科 Engineering Civil.;Engineering Materials Science.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 204 p.
  • 总页数 204
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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