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Physicochemical characterisations of the bitumen-aggregate interface to get a better understanding of stripping phenomena

机译:沥青-骨料界面的理化特性,以更好地了解剥离现象

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摘要

Our objective was to relate the fundamentals of bitumen-aggregate adhesion to practical engineering properties. The first step was dedicated to develop new physicochemical methods to characterise the bitumen-aggregate interface. Then, a relation was established between the physicochemical characterisations of the bitumen-aggregate interface and the water sensitivity of the asphalt. It was possible, by using the Drop Shape Analysis System, to apply the theory on the wetting of the textured surfaces distinguishing a one-scale roughness to a two-scale roughness on aggregate surfaces. Finally, a porosity effect corresponding to the smallest scale roughness leads to a better resistance to stripping phenomena. In addition, a chemical effect at the interface bitumen-aggregate, due to the addition of adhesion promoters in bitumen, improved the water sensitivity of the asphalt explained by an increase of the aromatics/resins ratio.
机译:我们的目标是将沥青骨料粘结的基础知识与实际工程特性联系起来。第一步致力于开发新的物理化学方法来表征沥青-骨料界面。然后,建立了沥青-骨料界面的物理化学特征与沥青的水敏感性之间的关系。通过使用液滴形状分析系统,可以将理论应用于在纹理化表面的润湿上区分集料表面上的一阶粗糙度到二阶粗糙度。最后,对应于最小的氧化皮粗糙度的孔隙率效应导致更好的抗剥离现象。另外,由于在沥青中加入了粘合促进剂,在界面沥青-骨料处的化学作用改善了沥青的水敏感性,这可以通过增加芳族化合物/树脂的比例来解释。

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