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首页> 外文期刊>Journal of materials in civil engineering >Relationship between Molecular Compositions and Rheological Properties of Neat Asphalt Binder at Low and Intermediate Temperatures
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Relationship between Molecular Compositions and Rheological Properties of Neat Asphalt Binder at Low and Intermediate Temperatures

机译:低温和中温下整洁沥青粘合剂的分子组成与流变特性的关系

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The main objective of this study was to establish the relationship between asphalt binder deformation properties at intermediate and low temperatures, its molecular compositions, and mix performance. To achieve this objective, nine straight binders obtained from two asphalt suppliers were tested using the ductility and the direct tensile tests. To assess the results of these tests, selected asphalt binders were evaluated using high pressure gel permeation chromatography (HP-GPC), differential scanning calorimetry (DSC), and dynamic mechanical analysis. Measurements showed that an inverse correlation exists between binder ductility at intermediate temperatures and failure strain at low temperatures. In other words, a binder that provides high ductility at intermediate temperatures would be characterized by poor elongation properties at low temperatures. This trend was related to the binder molecular compositions as characterized by HP-GPC. An increase in the binder content of low molecular weight results in an increase in its ductility at intermediate temperatures. However, an increase in paraffinic maltene content results in the binder tending to crystallize at higher temperatures as it approaches the glassy region. This was confirmed through DSC measurements, which showed that an increase in crystalline fractions may have a negative impact on the binder stiffness at low temperatures. In general, physical properties of the binder can be strongly linked to its molecular constituents. In addition, there was a positive correlation between the binder ductility and the measured tensile strength of the mixture as well as its strain at failure. Using a binder with a high ductility resulted in a mixture with greater indirect tensile strength and a stronger ability to resist cracking at intermediate temperatures.
机译:这项研究的主要目的是建立中低温沥青结合料的变形性能,其分子组成和混合性能之间的关系。为了实现这一目标,使用延展性和直接拉伸测试对从两家沥青供应商处获得的九种直质粘合剂进行了测试。为了评估这些测试的结果,使用高压凝胶渗透色谱(HP-GPC),差示扫描量热法(DSC)和动态力学分析对所选的沥青粘合剂进行评估。测量表明,在中间温度下的粘合剂延展性与低温下的破坏应变之间存在反相关关系。换句话说,在中间温度下提供高延展性的粘合剂的特征在于在低温下差的伸长性能。该趋势与以HP-GPC为特征的粘合剂分子组成有关。低分子量粘合剂含量的增加导致其在中间温度下的延展性增加。然而,链烷烃麦芽油含量的增加导致粘合剂趋向于在其接近玻璃状区域时在更高的温度下结晶。通过DSC测量证实了这一点,其显示出结晶分数的增加可能对低温下的粘合剂刚度具有负面影响。通常,粘合剂的物理性质可以与其分子成分牢固地联系在一起。另外,粘合剂的延展性与所测量的混合物的拉伸强度以及其破坏应变之间存在正相关。使用具有高延展性的粘合剂导致混合物具有更高的间接拉伸强度和更强的抗中温开裂的能力。

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