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Effects of Aggregate Gradation and Asphalt Binder on the Visco-elastic Behavior of Asphalt Matrix

机译:骨料级配和沥青结合料对沥青基体粘弹性行为的影响

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Asphalt matrix (AM) properties have been used for many years to relate the behavior and performance of Hot Mix Asphalt (HMA) mixture. The AM is commonly defined as the combination of asphalt binder and fine aggregates. Understanding the mechanics and rheological characteristics of AM can facilitate better mixture design, and provide an insight into the visco-elastic behavior of HMA mixtures. In this study, the effects of aggregate gradation and asphalt binders on the visco-elastic response of AM were studied. Two fine aggregate gradations and two asphalt types were used to make AM samples. Dynamic mechanical analyses were conducted to investigate the creep response and effect of rate of loading at various temperatures. The dynamic shear modulus (G~*) and shear creep compliance (J[t]) were obtained over a range of temperatures to construct master curves at 25℃. The master curves for G~* and J[t] were modeled using Sigmoidal function, and generalized visco-elastic model, respectively. The analysis of master curves and models showed that the finer gradation exhibited a lower G~*, and higher J[t], for the neat binders. In general, the modified binders and coarser gradation produced a stiffer material for a range of frequencies, but the J[t] showed some variations in the AM creep response. In addition, rutting susceptibility of AM was evaluated using the Superpave? rutting parameter.
机译:沥青基质(AM)的性能已经使用了很多年,以关联热混合沥青(HMA)混合物的行为和性能。 AM通常定义为沥青粘合剂和细骨料的组合。了解AM的力学和流变特性可以促进更好的混合物设计,并提供对HMA混合物的粘弹行为的深入了解。在这项研究中,研究了骨料级配和沥青粘结剂对增材制造的粘弹性响应的影响。使用两种细骨料级配和两种沥青类型制作AM样品。进行了动态力学分析,以研究在不同温度下的蠕变响应和加载速率的影响。在一定温度范围内获得了动态剪切模量(G〜*)和剪切蠕变顺应性(J [t]),以建立25℃的主曲线。 G〜*和J [t]的主曲线分别使用Sigmoidal函数和广义粘弹性模型建模。对主曲线和模型的分析表明,对于纯净粘合剂,精细的渐变表现出较低的G〜*和较高的J [t]。通常,在一定频率范围内,改性的粘结剂和较粗的渐变会产生较硬的材料,但是J [t]在AM蠕变响应中显示出一些变化。此外,使用Superpave®评估了AM的车辙敏感性。车辙参数。

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