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Performance evaluation of SBS modified asphalt mixtures using warm mix technologies.

机译:使用温拌技术对SBS改性沥青混合料的性能评估。

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摘要

The need for more sustainable methods and techniques in the asphalt paving industry has been increasing and it is important to respond to the needs of society and address issues surrounding its environment and health. In order to better introduce such new and more sustainable methods, it is necessary to combine existing and proven methods with new technology. The main idea of this research was to use the established industry standards of using styrene butadiene styrene (SBS) modified asphalt mixtures and combine it with the relatively new warm mix asphalt (WMA) technology in order to create a more sustainable and eco-friendly asphalt paving process. Two WMA technologies, micro water (Aspha-min) and synthetic wax (Sasobit) based, were used to evaluate their effectiveness in SBS modified asphalt mixtures along with binders. The four major areas of research included the binder analysis (including Superpave binder performance and surface topography); compaction condition study; oxidative aging analysis and mixture performance analysis.;The general findings were that the WMA additives especially improved the binder properties at higher temperatures namely viscosity and rutting and the inclusion of these materials did not adversely affect the engineering properties of the mixtures. Atomic Force Microscopy (AFM) was utilized to obtain the various surface images that showed the strong correlations with especially aging process. The compaction condition study showed that WMA mixtures had better compaction behavior under lower temperatures and gyrations and also the other volumetric results indicated the comparability with the hot mix asphalt (HMA) mixtures. The oxidative aging results showed that the asphalt mixtures aged in the oven had a higher level of aging than the binder by itself aged in the rolling thin film oven (RTFO). Also, the benefit of using WMA technologies (reduced aging) can be accomplished by using lower aging condition.
机译:沥青摊铺行业对更可持续的方法和技术的需求一直在增长,响应社会需求并解决其环境与健康问题非常重要。为了更好地引入这种新的和更具可持续性的方法,有必要将现有的和行之有效的方法与新技术结合起来。这项研究的主要思想是使用已建立的使用苯乙烯丁二烯苯乙烯(SBS)改性沥青混合物的行业标准,并将其与相对较新的温拌沥青(WMA)技术相结合,以创造出更可持续和环保的沥青摊铺过程。基于微水(Aspha-min)和合成蜡(Sasobit)的两种WMA技术用于评估其在SBS改性沥青混合料与粘合剂中的有效性。四个主要研究领域包括粘结剂分析(包括Superpave粘结剂性能和表面形貌);压实条件研究总的发现是,WMA添加剂特别改善了高温下的粘合剂性能,即粘度和车辙,并且这些材料的加入不会对混合物的工程性能产生不利影响。原子力显微镜(AFM)用于获得各种表面图像,这些图像显示出与特别是时效过程的强烈相关性。压实条件研究表明,WMA混合物在较低的温度和旋转下具有更好的压实性能,其他体积结果也表明与热混合沥青(HMA)混合物具有可比性。氧化老化结果表明,在烘箱中老化的沥青混合物比在滚动薄膜烘箱(RTFO)中自身老化的粘合剂具有更高的老化程度。同样,使用WMA技术(减少老化)的好处可以通过使用较低的老化条件来实现。

著录项

  • 作者

    Kim, Hakseo.;

  • 作者单位

    Clemson University.;

  • 授予单位 Clemson University.;
  • 学科 Engineering Civil.
  • 学位 M.Engr.
  • 年度 2010
  • 页码 177 p.
  • 总页数 177
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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