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Application of Atomic Force Microscope to Investigate the Surface Micro-Adhesion Properties of Asphalt

机译:原子力显微镜在沥青表面微观附着力研究中的应用

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摘要

The surface energy and bonding coefficient of asphalt are important factors that affect the adhesion performance of asphalt/aggregate. In this study, the micro-bee-like-structure of asphalt and force curves between the microscope-probe and asphalt were measured via atomic force microscopy (AFM). To investigate the influence of asphalt properties on micro-adhesion of asphalt, five types of asphalt were used in four states: original, aged at 163 °C, immersed in water and added anti-stripping agent. The results demonstrate that the surface energy of grade 90 asphalt is greater than that of grade 70 asphalt when oil source is the same and that of modified asphalt is greater than matrix asphalt. The surface energies and bonding coefficients of asphalts decreased after aging and immersion. The surface energies of asphalts were greatly improved by adding anti-stripping agent and the bonding coefficients of the asphalts increased by 5.04–37.14% after adding an anti-stripping agent.
机译:沥青的表面能和粘结系数是影响沥青/集料的粘结性能的重要因素。在这项研究中,通过原子力显微镜(AFM)测量了沥青的微蜂样结构以及显微镜探针与沥青之间的力曲线。为了研究沥青性能对沥青微粘合性的影响,在四种状态下使用了五种类型的沥青:原始状态,在163°C下时效,浸入水中和添加防剥离剂。结果表明,油源相同时,90级沥青的表面能大于70级沥青的表面能,改性沥青大于基质沥青。老化和浸泡后,沥青的表面能和粘结系数降低。加入防剥离剂可大大改善沥青的表面能,加入防剥离剂后,沥青的粘结系数提高了5.04–37.14%。

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