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Evaluation on the performance of aged asphalt binder and mixture under various aging methods

机译:各种老化方法对老化沥青结合料和混合料性能的评价

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摘要

Hot mix asphalt (HMA) pavement encounter short and long term aging throughout the service life. Laboratory aging is the method used to simulate field aging process of HMA pavement. This study was undertaken to determine the long term effect of different binder and mixture laboratory aging methods on HMA (binder aging and mixture aging). Three types of HMA mixtures were prepared for this study namely Asphaltic Concrete with 10 mm nominal maximum aggregate size (AC 10), Asphaltic Concrete 14 mm (AC 14) and Asphaltic Concrete 28 mm (AC 28). These specimens were conditioned with nine different methods and durations. Resilient modulus test was carried out at 40°C as an initial indicator of the specimen performance. Permanent deformation of the same specimens was then evaluated by dynamic creep test. Generally, the aged asphalt binder specimens have higher resilient and stiffness modulus compared to aged asphalt mixture specimens. In addition, aged binder specimens have a lower permanent strain which indicates higher resistance to permanent deformation. This study also found that high resilient and stiffness modulus of specimens is attributed by different in heating frequency, temperature, air exposure and binder content of the mixtures
机译:在整个使用寿命期间,热拌沥青(HMA)路面都会经历短期和长期老化。实验室老化是模拟HMA路面现场老化过程的方法。进行这项研究是为了确定不同粘合剂和混合物实验室老化方法对HMA的长期影响(粘合剂老化和混合物老化)。为该研究准备了三种类型的HMA混合物,即标称最大骨料尺寸为10毫米的沥青混凝土(AC 10),14毫米的沥青混凝土(AC 14)和28毫米的沥青混凝土(AC 28)。这些标本用九种不同的方法和持续时间进行处理。弹性模量测试在40°C下进行,作为样品性能的初步指标。然后通过动态蠕变试验评估相同试样的永久变形。通常,与老化的沥青混合料试样相比,老化的沥青粘结剂试样具有更高的弹性和刚度模量。另外,老化的粘结剂样品具有较低的永久应变,这表明较高的抗永久变形性。这项研究还发现,样品的高弹性和刚度模量归因于混合物的加热频率,温度,空气暴露和粘合剂含量的不同

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