Balanced Mixture Design Framework for Asphalt Mixtures Based on Index- and Performance-Volumetrics Relationships

Author:

Rocha Marcos Lamha1ORCID,Aragão Francisco Thiago Sacramento1ORCID,Nascimento Luis Alberto Herrmann do2,Underwood Benjamin Shane3ORCID

Affiliation:

1. Civil Engineering Program – COPPE, Federal University of Rio de Janeiro, Rio de Janeiro, Brazil

2. CENPES/PETROBRAS, Rio de Janeiro, Brazil

3. Civil, Construction, and Environmental Engineering Program, North Carolina State University, Raleigh, NC

Abstract

Asphalt mixture design methods range from approaches that rely on the volumetric properties of the mix to those that are based on the pavement performance. More advanced mixture analysis procedures allow a comprehensive evaluation that attempts to predict pavement distress based on factors such as traffic, climate, and mixture properties. Among them, balanced mix design (BMD) has been a frequently used approach; its purpose is to achieve an optimum balance between stability and durability. The objective of this work is to bridge the gap between the volumetric properties and performance of asphalt mixtures with respect to pavement fatigue cracking and rutting. In the study, an asphalt mixture was initially designed and then variations in voids in mineral aggregate (VMA) and voids filled with asphalt (VFA) were evaluated based on specified volumetric limits to create a broad volumetric space. Then, dynamic modulus, cyclic fatigue, and stress sweep rutting (SSR) tests were performed at each volumetric condition. Index-volumetrics and performance-volumetrics relationships were calibrated and the optimum mixture design was identified. In addition, a BMD framework was developed, which allows the mixture performance evaluation at multiple volumetric conditions and the selection of an optimized mixture based on the predicted pavement performance and on indexes for all possible combinations of the given set of component materials.

Publisher

SAGE Publications

Subject

Mechanical Engineering,Civil and Structural Engineering

Reference24 articles.

1. Development of a Balanced Mix Design Method in Oregon to Improve Long-Term Pavement Performance

2. Zhou F., Hu S., Scullion T. Integrated Asphalt (Overlay) Mixture Design, Balancing Rutting and Cracking Requirements. Report No. FHWA/TX-06/0-5123-1. Texas Transportation Institute, Texas AM University System, 2006.

3. West R., Rodezno C., Leiva F., Yin F. Development of a Framework for Balanced Mix Design. Project NCHRP 20-07/Task 406. National Center for Asphalt Technology at Auburn University, AL, 2018.

4. Influence of Balanced Mix Design Approaches on Pavement Design Making Through an Illustrative Example

5. Evaluating Impact of Corrected Optimum Asphalt Content and Benchmarking Cracking Resistance of Georgia Mixtures for Balanced Mix Design Implementation

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