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Influence of post-consumer recycled asphalt shingles on hot mix asphalt containing fractionated recycled asphalt pavement

机译:消费后再生沥青瓦对含分馏再生沥青路面的热拌沥青的影响

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摘要

As the cost of construction materials continue to rise and place financial constraints on transportation agencies, engineers are looking for sustainable methods that minimize construction costs and optimize the selection of materials used in asphalt pavements. Two methods that are beginning to receive considerable attention for highway construction are adding post-consumer recycled asphalt shingles (RAS) to hot mix asphalt (HMA) and increasing the percentage of recycled asphalt pavement being added to HMA through the process of fractionation.The objective of this research is to characterize the effects of post-consumer RAS on the laboratory performance of HMA and its compatibility with fractionated recycled asphalt pavement (FRAP). In the summer of 2009, a field demonstration project was conducted by the Illinois Tollway Authority on Interstate Highway I-90. Eight mix designs containing zero and five percent RAS and varying percentages of FRAP were developed and placed in the pavement shoulder. Production and laboratory samples of the mixes were obtained for dynamic modulus, flow number, moisture sensitivity, beam fatigue, and fracture energy tests in addition to binder extraction and subsequent characterization. From the dynamic modulus testing, master curves were constructed to characterize the stress/strain response of the HMA samples. From the extracted binders, a suite of Superpave tests was conducted at different temperatures and frequencies to build master curves for analyzing how the addition of RAS binder affected the rheological properties of the mix binder blend. A statistical analysis was performed on the dynamic modulus and flow number test results to determine how the behavior of the asphalt materials containing RAS differed from the behavior of the asphalt materials not containing RAS when varying percentages of FRAP were a part of the mix designs.Laboratory test results indicate that the mixes containing five percent RAS with less than 40 percent recycled materials exhibit an increased resistance to permanent deformation while maintaining satisfactory performance to fatigue stresses, low temperature cracking, and freeze-thaw durability. Although the low temperature binder performance grade increased with the addition of recycled materials, the mix performance test results did not follow that trend, indicating fibers in the RAS materials likely contributed to the performance of the mixtures.
机译:随着建筑材料成本的持续上涨以及运输机构的财务困难,工程师们正在寻找可持续的方法,以最大限度地减少建筑成本并优化沥青路面所用材料的选择。公路建设开始受到广泛关注的两种方法是在热拌沥青(HMA)中添加消费后的再生沥青瓦(RAS),并通过分馏过程增加在HMA中添加的再生沥青路面的百分比。这项研究的目的是表征消费后RAS对HMA实验室性能的影响及其与分馏再生沥青路面(FRAP)的相容性。 2009年夏天,伊利诺伊州收费公路管理局在州际公路I-90上进行了现场演示项目。开发了八种混合设计,分别包含RAS的5%和5%,以及FRAP的百分比不同,并将其放置在路肩上。除了粘合剂提取和随后的表征外,还获得了混合物的生产和实验室样品的动态模量,流量,湿度敏感性,束疲劳和断裂能测试。通过动态模量测试,可以构建主曲线来表征HMA样品的应力/应变响应。从提取的粘合剂中,在不同的温度和频率下进行了一系列Superpave测试,以建立主曲线,用于分析RAS粘合剂的添加如何影响混合粘合剂混合物的流变性。对动态模量和流量测试结果进行统计分析,以确定当FRAP百分比不同时,含RAS的沥青材料的性能与不含RAS的沥青材料的性能有何不同。测试结果表明,含有5%RAS和少于40%再生材料的混合物表现出更高的抗永久变形能力,同时保持了令人满意的抗疲劳性能,低温开裂和冻融耐久性。尽管低温粘合剂的性能等级随添加回收材料而增加,但混合性能测试结果并未遵循该趋势,这表明RAS材料中的纤维可能有助于混合物的性能。

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    Cascione, Andrew Aaron;

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  • 年度 2010
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  • 正文语种 en
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