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Characterizing Compactability of High RAP and Warm Mix Asphalt Mixtures in the Superpave Gyratory Compactor

机译:在Superpave回转压实机中表征高RAP和热拌沥青混合料的压实性

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Compactability of asphalt concrete mixtures is critical for successful long-term performance in the field. Laboratory samples are necessary for volumetric analysis and performance testing during the design process, so the ability to quantify compactability during specimen production in the lab would be highly beneficial. While there has been significant work in defining compaction characteristics of asphalt concrete, most of this work has revolved around traditional Hot Mix Asphalt (HMA), and little work has been done with Warm Mix Asphalt (WMA) or high percentage Recycled Asphalt Pavement (RAP) mixtures. This research examined HMA without RAP (HMA Virgin), HMA with 35 % RAP (HMA RAP), and two WMA technologies with 35 % RAP (WMA 1 and WMA 2). Four compactability metrics were evaluated, including number of gyrations to 92 % density (N92), Construction Densification Index (CDI), the Construction Force Index (CFI), and the newly introduced Normalized Shear Index (NSI). This research found that the WMA technologies improved the compactability of asphalt concrete, as did the addition of RAP. In general, the WMA 1 showed better compactability than WMA 2, but this could be partially attributed to a softer binder grade, higher asphalt binder content, and the potential for a tender mix, as indicated by the normalized shear curve. The HMA RAP mixture also had a higher asphalt binder content compared to HMA Virgin, which could have contributed to the improved compactability. The NSI metric consistently showed the lowest Coefficient of Variation (COV) values and has the potential to distinguish tender mixtures.
机译:沥青混凝土混合物的可压实性对于在现场取得成功的长期性能至关重要。在设计过程中,进行体积分析和性能测试必须使用实验室样品,因此在实验室生产标本期间量化压实度的能力将非常有益。虽然在定义沥青混凝土的压实特性方面已进行了大量工作,但大部分工作围绕传统的热拌沥青(HMA)进行,而对于温拌沥青(WMA)或高百分比的再生沥青路面(RAP)所做的工作很少)混合物。这项研究检查了没有RAP的HMA(HMA Virgin),具有35%RAP的HMA(HMA RAP)和两种具有35%RAP的WMA技术(WMA 1和WMA 2)。评估了四个可压实性指标,包括至92%密度的回旋数(N92),施工密度指数(CDI),施工力指数(CFI)和新引入的归一化剪切指数(NSI)。这项研究发现,WMA技术以及RAP的添加都提高了沥青混凝土的可压实性。通常,WMA 1显示出比WMA 2更好的压实性,但这可以部分归因于较软的粘结剂等级,较高的沥青粘结剂含量和柔和混合料的潜力,如归一化剪切曲线所示。与HMA Virgin相比,HMA RAP混合物还具有更高的沥青粘合剂含量,这可能有助于改善压实性。 NSI指标始终显示出最低的变异系数(COV)值,并且有可能区分嫩混合物。

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