A framework for the analysis of damage and recovery characteristics of asphalt mixtures
Author | Sadeq, Mohammed |
Author | Huang, Chien Wei |
Author | Masad, Eyad |
Author | Al-Khalid, Hussain |
Author | Sirin, Okan |
Available date | 2024-03-27T07:06:50Z |
Publication Date | 2020-03-19 |
Publication Name | Road Materials and Pavement Design |
Identifier | http://dx.doi.org/10.1080/14680629.2020.1742192 |
Citation | Sadeq, M., Huang, C. W., Masad, E., Al-Khalid, H., & Sirin, O. (2021). A framework for the analysis of damage and recovery characteristics of asphalt mixtures. Road Materials and Pavement Design, 22(9), 1986-1999. |
ISSN | 1468-0629 |
Abstract | This study presents two approaches for evaluating damage and recovery characteristics of asphalt mixtures. The first approach focuses on determining damage by extracting recoverable viscoelastic strain that has no damage and comparing it with the strain response of a material that has damage. The second approach is based on identifying the capacity of asphalt mixtures to recover some of the damage that may occur during creep loading. The advantage of these approaches is that they utilise experimental data to extract damage and recovery responses, without detailed mathematical modelling of material behaviour. The developed approaches are used to analyse the behaviours of fine aggregate mixtures (FAM) incorporating warm mix additives. The results show that these mixtures vary in their damage and recovery characteristics. For example, Sasobit FAM experienced the highest damage among mixtures, but it also had the highest recovery. Ageing was found to reduce the differences among mixtures in terms of resistance to damage, but it had less effect on the differences in their healing potential. |
Sponsor | This work was made possible by the NPRP award [NPRP 5-506-2-203] from the Qatar National Research Fund (a member of Qatar Foundation). |
Language | en |
Publisher | Taylor & Francis |
Subject | damage fine aggregate mixtures recovery viscoelasticity Warm mix asphalt |
Type | Article |
Pagination | 1986-1999 |
Issue Number | 9 |
Volume Number | 22 |
ESSN | 2164-7402 |
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Civil and Environmental Engineering [851 items ]
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Mechanical & Industrial Engineering [1396 items ]