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Creating a performance-based asphalt mix design to incorporate Uinta Basin oil sands.

机译:创建基于性能的沥青混合料设计,以结合Uinta盆地的油砂。

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摘要

This research was an effort to create and test a performance-based mix design that allows for oil sand to be incorporated as the binder material. The design is based on creating an open-graded aggregate blend that will allow incorporating the optimum volume of oil sand.;The oil sand used in this project is a natural, unmodified material that was characterized to explore its unique attributes. Aggregate stockpiles were blended to find the maximum space for the oil sand to be added in the mix. A field project was performed to bring the laboratory mix to full-size scale. Even though there were some minor delays while trying to incorporate the oil sand into the mixing chain, the results prove that the design from this work was feasible. Loose mix samples were obtained and brought back to the laboratory for testing.;The Hamburg Wheel Tracking Device (HWTD), Bending Beam Rheometer (BBR), and Asphalt Mixture Performance Tester (AMPT) were performed on the loose mix samples from the field project. The results were compared with the laboratory mix results as well as with results from conventional hot mix asphalt (HMA) mixes used in Utah. The HWTD shows the mix has a solid aggregate structure; however, there is a potential for premature pavement failure due to moisture susceptibility. In the BBR, all of the oil sand mixes had a greater creep stiffness at low temperatures than conventional binder grades; meaning that the oil sand mixtures are more likely to crack at low in-service temperatures when compared to the performance binders typically used in interstate roads. In the AMPT, at high in-service temperatures, the dynamic modulus was lower than the conventional mixes, meaning there is a greater likelihood of rutting occurring at high temperatures because the binding material is softer.;Based on these performance measures, it was determined that it is possible to develop a mixture that incorporates oil sands into a pavement material for rural or low volume roads. There are economic and environmental advantages to using oil sand mixes as a roadway material. Oil sand mixes require a lower mixing temperature than HMA and, therefore, can save on both fuel costs and emissions.
机译:这项研究旨在创建和测试基于性能的混合设计,该设计允许将油砂作为粘合剂材料掺入。该设计基于创建开放级的骨料混合物,该混合物将允许掺入最佳体积的油砂。该项目中使用的油砂是一种天然的,未改性的材料,其特征在于探索其独特的特性。混合总料堆,以找到将油砂添加到混合物中的最大空间。进行了一个实地项目,以使实验室混合物达到最大规模。尽管在将油砂加入到混合链中时稍有延迟,但结果证明这项工作的设计是可行的。获得了松散的混合物样品并送回实验室进行测试;对实地项目中的松散的混合物样品进行了汉堡轮跟踪装置(HWTD),弯曲梁流变仪(BBR)和沥青混合料性能测试仪(AMPT)。 。将结果与实验室混合料结果以及犹他州使用的传统热混合沥青(HMA)混合料的结果进行了比较。 HWTD显示混合物具有坚固的骨料结构;但是,由于湿气敏感性,可能会导致路面过早失效。在BBR中,所有的油砂混合物在低温下的蠕变刚度都比传统的粘结剂级更高。这意味着与通常在州际公路上使用的高性能粘合剂相比,油砂混合物在较低的使用温度下更容易破裂。在AMPT中,在较高的使用温度下,其动态模量低于常规混合物,这意味着由于粘结材料较软,因此在高温下更有可能发生车辙。;基于这些性能指标,可以确定可以开发出将油砂掺入乡村或低流量道路的路面材料中的混合物。使用油砂混合物作为道路材料具有经济和环境优势。油砂混合物要求的混合温度低于HMA,因此可以节省燃料成本和排放。

著录项

  • 作者

    Vrtis, Michael C.;

  • 作者单位

    The University of Utah.;

  • 授予单位 The University of Utah.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2013
  • 页码 84 p.
  • 总页数 84
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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