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Fracture characteristics of SMA mixtures with hydrated lime through the semi-circular bending approach

Carvajal-Muñoz, Juan S.; Airey, Gordon; Sanjuan-Benavides, Anyely; Perez-Miranda, María A.; Gómez-Osorio, Fabio A.

Authors

Juan S. Carvajal-Muñoz

Profile image of GORDON AIREY

GORDON AIREY GORDON.AIREY@NOTTINGHAM.AC.UK
Professor of Pavement Engineering Materials

Anyely Sanjuan-Benavides

María A. Perez-Miranda

Fabio A. Gómez-Osorio



Abstract

Stone Mastic Asphalt (SMA) is a composite mixture made up of high-quality crushed stone, fine aggregates, an asphalt binder, and a significant percentage of mineral filler in contrast to conventional mixtures. Renowned for its durability and rolling resistance, it is predominantly employed as a surface “wearing” course on main roads subjected to heavy traffic, but it can also be used as a binder course under specific project requirements. In this study, we investigated the effect of hydrated lime as a partial replacement of limestone filler at various concentrations on the mechanical and cracking resistance characteristics of 10-mm SMA mixtures. The semi-circular bending (SCB) test, which is pivotal for understanding the cracking mechanism was used to assess the mixtures performance-related response to this distress type. The mixture cores were produced with granite aggregates, limestone filler as natural filler, hydrated lime as natural filler replacement, and a 30/45 penetration asphalt type. Mixtures containing 1.1 %, 2.2 %, and 3.4 % of hydrated lime by weight of aggregates were evaluated, in addition to a control mixture without hydrated lime. The factors considered for comparing the mixtures included: load and deformation curves, stiffness, fracture toughness, fracture energy, and flexibility index of the mixtures. The experimental program also comprised a set of various test temperatures (0°C, 10°C, and 20°C) to better understand the cracking mechanism. Experimental results indicated a significant performance-dependency on the HL concentration and the test temperature. Precisely, it was found that the mixture with the highest hydrated lime content (3.4 %) exhibited the best cracking performance at 0°C and 20°C, making it a suitable filler replacement concentration. However, at 10°C, the mixture containing 2.2 % hydrated lime showed the most consistent performance overall, suggesting and important improvement in asphalt mixtures’ cracking resistance. Overall, these findings obtained from the SCB test approach substantiate the potential benefit of hydrated lime filler replacement in optimizing the cracking performance and durability of SMA mixtures under varying temperature conditions and loading regimes.

Citation

Carvajal-Muñoz, J. S., Airey, G., Sanjuan-Benavides, A., Perez-Miranda, M. A., & Gómez-Osorio, F. A. (2024). Fracture characteristics of SMA mixtures with hydrated lime through the semi-circular bending approach. Construction and Building Materials, 449, Article 138353. https://doi.org/10.1016/j.conbuildmat.2024.138353

Journal Article Type Article
Acceptance Date Sep 14, 2024
Online Publication Date Sep 18, 2024
Publication Date Oct 25, 2024
Deposit Date Sep 28, 2024
Publicly Available Date Sep 19, 2025
Journal Construction and Building Materials
Print ISSN 0950-0618
Electronic ISSN 1879-0526
Publisher Elsevier
Peer Reviewed Peer Reviewed
Volume 449
Article Number 138353
DOI https://doi.org/10.1016/j.conbuildmat.2024.138353
Keywords Hydrated lime; Cracking; Fracture; Semi-circular bending; Performance; Asphalt mixtures
Public URL https://nottingham-repository.worktribe.com/output/39730938