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Microstructure Morphologies of Asphalt Binders using Atomic Force Microscopy 被引量:3

Microstructure Morphologies of Asphalt Binders using Atomic Force Microscopy
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摘要 We investigated microstructure morphologies of three asphalts(SK, Karamay, and Esso) used in China using atomic force microscopy(AFM). The topography and phase contrast images were obtained. Topographic profile and three dimensional images were described. Roughnesses of microstructure were calculated. And the chemical compositions of asphalt were tested to explain the microstructural mechanism of the asphalt. The results show that the topography and phase image in atomic force microscopy are appropriate to evaluate the microstructure of the asphalt binder. There are significant differences in microstructural morphologies including bee-like structure, topographic profile, 3D image, and roughness for three asphalts in this study. There are three different phases in microstructure of asphalt binder. The oil source and chemical composition of asphalt, especially asphaltenes content have a great influence on the microstructure. We investigated microstructure morphologies of three asphalts(SK, Karamay, and Esso) used in China using atomic force microscopy(AFM). The topography and phase contrast images were obtained. Topographic profile and three dimensional images were described. Roughnesses of microstructure were calculated. And the chemical compositions of asphalt were tested to explain the microstructural mechanism of the asphalt. The results show that the topography and phase image in atomic force microscopy are appropriate to evaluate the microstructure of the asphalt binder. There are significant differences in microstructural morphologies including bee-like structure, topographic profile, 3D image, and roughness for three asphalts in this study. There are three different phases in microstructure of asphalt binder. The oil source and chemical composition of asphalt, especially asphaltenes content have a great influence on the microstructure.
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2016年第6期1261-1266,共6页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China(Nos.51408287,and 51668038) the Rolls Supported by Program for Changjiang Scholars and Innovative Research Team in University(IRT_15R29) the Distinguished Young Scholars Fund of Gansu Province(1606RJDA318) the Natural Science Foundation of Gansu Province(1506RJZA064) the Excellent Program of Lanzhou Jiaotong University(201606)
关键词 pavement materials asphalt binder microstructure morphologies atomic force microscopy chemical compositions pavement materials asphalt binder microstructure morphologies atomic force microscopy chemical compositions
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