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Influence of asphalt microstructure to its high and low temperature performance based on atomic force microscope (AFM)

机译:基于原子力显微镜(AFM)的沥青微观结构对其高温性能的影响

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In order to study how the microstructure of asphalt affects its macroscopic performance (high and low temperature performance), this study used 6 asphalt samples, including virgin asphalt (70# and 90#) and aging asphalt (aging temperature 163 degrees C, aging time 0 h, 35 h, 75 h, respectively). The microstructure of 6 kinds of asphalt samples was tested by atomic force microscope. The asphaltene content, four-component modulus and adhesion force in "bee structure" were analyzed, and then the degree of association of four components in different aging asphalt AFM diagrams was analyzed to study the effect of asphalt microstructure on its high and low temperature performance. On this basis, the dynamic shear rheometer and bending rheometer were used to test the high and low temperature performance of six kinds of asphalt samples, and the correctness of the effect of AFM based asphalt microstructure on their macroscopic performance was demonstrated. The results show that the high molecular weight represented by asphaltenes in asphalt increases with the aging time, the asphalt hardens, and the degree of association of four components in a single group increases, so the high temperature performance becomes better. At the same time, with the increase of aging time, the small molecular weight represented by the aromatic component in the asphalt decreases, the adhesion between the four components decreases, and the asphalt becomes brittle, so the low-temperature performance becomes poor. The research results have certain theoretical and practical value for further clarifying the microstructure characteristics of asphalt for high and low temperature performance. (C) 2020 Elsevier Ltd. All rights reserved.
机译:为了研究沥青的微观结构如何影响其宏观性能(高温性能),本研究使用了6种沥青样品,包括维尔氏沥青(70#和90#)和老化沥青(老化温度163摄氏度,老化时间0 H,35小时,75小时)。用原子力显微镜测试6种沥青样品的微观结构。分析了“蜂结构”中的沥青烯含量,四组分模量和粘附力,然后分析了四种组分在不同老化沥青AFM图中的关联程度研究沥青微观结构对其高温性能的影响。在此基础上,使用动态剪切流变仪和弯曲流变仪来测试六种沥青样品的高温和低温性能,并证实了AFM基沥青微观结构对其宏观性能影响的正确性。结果表明,在沥青中沥青中表示的高分子量随着老化时间而增加,沥青硬化,四种组分在单个组中的结合程度增加,因此高温性能变得更好。同时,随着老化时间的增加,沥青中芳族成分表示的小分子量降低,四种组分之间的粘附性降低,并且沥青变脆,因此低温性能变差。研究结果具有一定的理论和实用性,用于进一步阐明沥青的微观结构特性,用于高温性能。 (c)2020 elestvier有限公司保留所有权利。

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