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Effects of warm asphalt additives on asphalt binder and mixture properties.

机译:温暖的沥青添加剂对沥青粘合剂和混合料性能的影响。

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摘要

With increasing concerns of global warming and increasing emissions, the asphalt industry is making a constant effort to lower its emissions by reducing the mixing and compaction temperatures of the asphalt mixture without affecting the properties of the mix. Several proprietary chemicals are available in the industry that can help reduce the mixing and compaction temperatures. A significant reduction of required heat can be achieved in most cases. While some studies have been conducted to evaluate the properties of warm mix aspha properties of binders and mixtures, in fresh and aged conditions, containing these chemicals have not been studied in great detail. This research presents the results of tests conducted to evaluate the properties of warm mix asphalt binders and mixtures, in fresh and aged conditions. This study was broadly classified into two; study of binder properties, where 3 binder sources were studied with and without AsphaminRTM and SasobitRTM as the warm asphalt additives; and study of mixture properties, where two binder sources and two aggregate sources were studied with and without AsphaminRTM and SasobitRTM as the warm asphalt additives.; The results of the study indicated that the two warm asphalt additives affected the binder and mixture properties differently. It was observed that the addition of SasobitRTM significantly reduced the viscosity of the binders at 135°C and 120°C, whereas, the addition of Asphamin RTM did not have any significant effect on the viscosity of the binders at 135°C and 120°C. However, both the additives improved the mid-temperature rheological properties of the binders namely creep response, creep recovery, and the complex modulus.; Tests on binders aged in the laboratory and binders extracted from freshly mixed and aged mixtures indicated that the WMA binders extracted from WMA mixtures had significantly lower viscosities and G* / sin delta compared to binders extracted from HMA and binders aged in the RTFO at 163°C, indicating that the lower mixing and compaction temperatures reduce the aging of the binders.; When the mixture properties were compared, it was observed that Asphamin RTM reduced the MR values of the mixes, Sasobit RTM reduced the rut depths of the mixes, and both the additives improved the TSR of the mixes. When the laboratory aged mixtures were compared, it was observed that either of the two warm asphalt additives did not have significantly different rutting depth, TSR or MR values compared to the control mixes.
机译:随着对全球变暖和排放物日益增加的关注,沥青工业正在不断努力通过降低沥青混合物的混合和压实温度来降低其排放,而又不影响混合物的性能。工业上有几种专有化学物质可帮助降低混合和压实温度。在大多数情况下,可以大大减少所需的热量。虽然已经进行了一些研究来评估热拌沥青的性能;在新鲜和老化条件下,含有这些化学物质的粘合剂和混合物的性能尚未得到详细研究。这项研究提出了测试结果,以评估在新鲜和老化条件下暖拌沥青混合料和混合物的性能。这项研究大体分为两类。粘合剂性能的研究,其中研究了使用和不使用AsphaminRTM和SasobitRTM作为温暖沥青添加剂的3种粘合剂来源;以及研究混合性能,其中研究了两种粘合剂源和两种骨料源,分别在有无AsphaminRTM和SasobitRTM作为热沥青添加剂的情况下进行研究。研究结果表明,两种温热沥青添加剂对粘合剂和混合物性能的影响不同。观察到,SasobitRTM的添加显着降低了粘合剂在135°C和120°C的粘度,而Asphamin RTM的添加对粘合剂在135°C和120°C的粘度没有任何显着影响。 C。然而,两种添加剂均改善了粘合剂的中温流变性能,即蠕变响应,蠕变恢复和复数模量。对实验室中老化的粘合剂以及从新鲜混合和老化混合物中提取的粘合剂的测试表明,与从HMA和163°C RTFO中老化的粘合剂相比,从WMA混合物中提取的WMA粘合剂的粘度和G * / sinδ明显较低。 C,表明较低的混合和压实温度降低了粘合剂的老化。当比较混合物的性能时,观察到Asphamin RTM降低了混合物的MR值,Sasobit RTM降低了混合物的车辙深度,并且两种添加剂均改善了混合物的TSR。比较实验室老化的混合物时,发现与对照混合物相比,两种温暖的沥青添加剂中的任何一种都没有显着不同的车辙深度,TSR或MR值。

著录项

  • 作者

    Gandhi, Tejash.;

  • 作者单位

    Clemson University.$bCivil Engineering.;

  • 授予单位 Clemson University.$bCivil Engineering.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 161 p.
  • 总页数 161
  • 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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