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Development of (half-) warm foamed bitumen mixes: state of the art

机译:(半)暖泡沫沥青混合物的开发:最新技术

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Foamed bitumen mixes are produced by mixing foamed bitumen with aggregate at ambient conditions. However, the variations in the temperature of mineral aggregate at the time of mixing have a profound influence on the properties of the foamed bitumen mixes produced. A feasibility study previously undertaken to investigate the possible benefits of heating the aggregate moderately (above ambient temperature but below 100℃) before foam treatment, highlighted the improvement of mix properties that is achievable. The properties that can be enhanced include particle coating; mix cohesion and tensile strength, as well as a degree of compaction when compared with the equivalent properties of conventional cold foam mixes (CMA). This has been found to be applicable to, in particular, reclaimed asphalt pavement (RAP) and densely graded crushed aggregates. The feasibility study was undertaken exclusively at laboratory scale. A second phase, more focussed research project was subsequently launched in the Netherlands using the mixes that show the most potential to benefit most from the "Half-warm Foamed Bitumen Treatment" process viz, STAB (crushed stone ashalt concrete used in the Netherlands as a base course layer) and RAP combinations. This investigation was undertaken at laboratory level as well as full scale production trials. This paper discusses the findings of the entire investigation into half-warm foamed (HWF) bitumen treatment, carried out in South Africa and the Netherlands. As special development, the reuse of porous asphalt (PA) RAP in HWF PA, is also discussed. With up to 40% less energy consumption than that required for manufacture than hot mix asphalt (HMA), HWF asphalt mixes can provide comparative monotonic properties at higher test temperatures, similar fatigue properties and a lower phase angle at low loading frequencies. The improvement of mix properties relative to CMA is significant. This indicates that the HWF process holds the potential for successful implementation in pavement layers.
机译:通过在环境条件下将泡沫沥青与骨料混合来生产泡沫沥青混合物。但是,混合时矿物骨料的温度变化对生产的泡沫沥青混合物的性能有深远的影响。先前进行的可行性研究旨在研究在泡沫处理之前适度加热骨料(高于环境温度但低于100℃)可能带来的好处,突出了可以改善的混合性能。可以增强的特性包括颗粒涂层;与常规冷泡沫混合物(CMA)的等效性能相比,混合物的内聚力和拉伸强度以及压实度高。已发现这尤其适用于再生沥青路面(RAP)和高等级的压碎集料。可行性研究仅在实验室规模进行。随后在荷兰启动了第二阶段,重点更加突出的研究项目,使用的混合料显示出从“半热泡沫沥青处理”工艺中获得最大收益的最大潜力,即STAB(荷兰使用的碎石沥青混凝土作为一种基本课程层)和RAP组合。这项调查是在实验室水平以及全面生产试验中进行的。本文讨论了在南非和荷兰进行的半热发泡(HWF)沥青处理的整个调查结果。作为特殊的发展,还讨论了HWF PA中多孔沥青(PA)RAP的重用。与热混合沥青(HMA)相比,其能耗比制造所需的能耗降低多达40%,HWF沥青混合料在较高的测试温度下具有相对的单调性,在低负载频率下具有类似的疲劳性和较低的相角。相对于CMA,混合物性能的改善是显着的。这表明HWF工艺具有在路面层成功实施的潜力。

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