Rutting Performance Evaluation of BMD Surface Mixtures with Conventional and High RAP Contents under Full-Scale Accelerated Testing

Author:

Tong Bilin1ORCID,Habbouche Jhony2,Flintsch Gerardo W.1,Diefenderfer Brian K.2

Affiliation:

1. Virginia Tech Transportation Institute, Blacksburg, VA 24061, USA

2. Virginia Transportation Research Council, Charlottesville, VA 22903, USA

Abstract

The balanced mix design (BMD) constitutes a significant step forward in the pursuit of better-performing asphalt mixtures. This approach/framework offers increased innovative opportunities for the proper design and production of engineered asphalt mixtures without the need to strictly adhere to traditional volumetric requirements. The primary objective of this paper is to conduct a comprehensive investigation of the permanent deformation (rutting) behavior of surface mixtures (SMs) with conventional and high reclaimed asphalt pavement (HRAP) contents through full-scale accelerated testing under incremental loading conditions while accounting for the environmental aging effect. HRAP SMs were designed in this study, marking the initial application of Virginia Department of Transportation (VDOT) BMD special provisions, with attempts to incorporate 45% and even 60% RAP. Results showed that all BMD HRAP mixtures exhibited higher rut depths compared to the control mixture, which can be attributed to the inclusion of high binder contents aimed at enhancing cracking resistance. The asphalt pavement analyzer (APA) rut test and the stress sweep rutting tests were performed on mixtures sampled during production. Correlation analysis revealed significant and strong positive correlations between accelerated pavement testing (APT) and the multilevel laboratory rutting performance tests considered in this study. Finally, while acknowledging the limitations and all the assumptions considered in this study, the correlation analysis recommended refining the VDOT BMD APA rut depth threshold by lowering the current limit of 8 mm to 7 mm to ensure good performing mixtures from a rutting point of view.

Funder

Virginia Department of Transportation

Publisher

MDPI AG

Subject

General Materials Science

Reference31 articles.

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2. Impact of Gyration Reduction and Design Specification Changes on Volumetric Properties of Virginia Dense-Graded Asphalt Mixtures;Diefenderfer;Transp. Res. Rec. J. Transp. Res. Board,2018

3. Maupin, G.W., Diefenderfer, S.D., and Gillespie, J.S. (2008). Evaluation of Using Higher Percentages of Recycled Asphalt Pavement in Asphalt Mixtures in Virginia, VTRC 08-R22.

4. West, R.C., and Copeland, A. (2015). High RAP Asphalt Pavements: Japan Practice—Lessons Learned, National Asphalt Pavement Association.

5. Williams, B.A., Willis, J.R., and Shacat, J. (2020). Asphalt Pavement Industry Survey on Recycled Materials and Warm-Mix Asphalt Usage: 2019, National Asphalt Pavement Association.

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