Analysis of the Self-Healing Process of Asphalt and its Influencing Factors

Author:

Li Dan1ORCID,Luo Yang2ORCID,Lei Jiao Xiao3ORCID,Li Qiang1ORCID,Feng Zheng Chuan4ORCID,Cui Teng Guo2ORCID

Affiliation:

1. Jilin University of Architecture and Technology, Changchun, China

2. College of Construction Engineering, Jilin University, Changchun, China

3. Tianjin Highway Development Service Center, Tianjin, China

4. Transportation College of Jilin University, Changchun, China

Abstract

Molecular dynamics was used in this study to understand the self-healing behavior and mechanism of asphalt. Density, solubility, and mean square displacement parameters were analyzed to confirm the validity of the matrix asphalt model. Molecular simulation software was used to develop a microscopic matrix asphalt self-healing model at the nanoscale. Cracking width of asphalt microcracks was represented by setting different vacuum layer thicknesses as the asphalt self-healing model. Density and diffusion coefficient of the self-healing model were obtained by running the molecular software to understand the entire process of asphalt healing. The self-healing mechanism of the matrix asphalt was analyzed. Results showed that the entire self-healing process of asphalt could be clearly divided into four stages, namely, external environment energy endowment, model end healing, asphalt microcrack healing, and self-healing model self-diffusion stages. Molecules of each component in the asphalt self-healing process diffuse and move mutually under constant temperature conditions. The diffusion coefficient of saturated components and polar aromatic was higher than that of asphaltenes and aromatic components.

Funder

National Natural Science Foundation of China

Natural Science Foundation of Jilin Province

Publisher

Riga Technical University

Subject

Building and Construction,Civil and Structural Engineering

Reference50 articles.

1. Bazin, P., & Saunier, J. B. (1967). Deformability, fatigue and healing properties of asphalt mixes. Proceedings of the Second International Conference on the Structural Design of Asphalt Pavements, Ann Arbor, Michigan, USA, 553–569.

2. Behnia, B, & Reis, H. (2019). Self-healing of thermal cracks in asphalt pavements. Construction and Building Materials, 218, 316–322. https://doi.org/10.1016/j.conbuildmat.2019.05.095

3. Bunger, J. W., & Li, N. C. (1981). Chemistry of Asphaltenes. Advances in Chemistry Series 195. American Chemical Society, ACS Publications. https://doi.org/10.1021/ba-1981-0195

4. Cong, Y., Liao, K., & Zhai, Y. (2005). Application of molecular simulation in SBS modified asphalt. CIESC Journal, 56(5), 769–773. http://hgxb.cip.com.cn/EN/Y2005/V56/I5/769#

5. Corbett, L. W. (1969). Composition of asphalt based on generic fractionation using solvent deasphaltening, elution-adsorption chromatography, and densimetric characterization. Anal. Chem., 41(4), 576–579. https://doi.org/10.1021/ac60273a004

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