Fatigue Characterization of HMAC Mixtures using Mechanistic Empirical and Calibrated Mechanistic Approaches including the Effects of Aging
Laboratory fatigue characterization of HMAC mixtures constitutes a fundamental component of pavement design and analysis to ensure adequate performance. In this study, the traditional mechanistic empirical (ME) approach and a continuum micromechanics based calibrated mechanistic approach with surface energy (CMSE) measurements were comparatively utilized to characterize the fatigue resistance of two HMAC mixtures in the laboratory, including investigating the effects of aging. Although the results were comparable, the CMSE approach exhibited greater flexibility and potential to discretely account for most of the fundamental material properties (including fracture, aging, healing, visco-elasticity, anisotropy, crack initiation, and crack propagation) that affect HMAC pavement fatigue performance. Compared to the mechanistic-empirically based ME approach, the CMSE approach is based on the fundamental concepts of continuum micromechanics and energy theory; and utilizes the visco-elastic correspondence principle, Paris' Law of fracture mechanics, and Schapery's work potential theory to monitor cumulative fracture damage in HMAC mixtures, measured in terms of dissipated pseudo strain energy (DPSE) under repeated uniaxial tensile tests. Additionally, the CMSE results exhibited relatively lower statistical variability. For the materials and test conditions considered in the study, aging reduced HMAC mixture fatigue resistance and its ability to heal. Thus aging plays a significant role in HMAC mixture fatigue performance and should be incorporated in fatigue design and analysis.
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Availability:
- Find a library where document is available. Order URL: http://worldcat.org/isbn/0784408254
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Corporate Authors:
American Society of Civil Engineers
1801 Alexander Bell Drive
Reston, VA United States 20191-4400 -
Authors:
- Walubita, Lubinda F
- Martin, Amy Epps
- Glover, Charles J
- Jung, Sung Hoon
- Cleveland, Gregory
- Lytton, Robert L.
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Conference:
- Asphalt Concrete Simulation, Modeling, and Experimental Characterization. R. Lytton Symposium on Mechanics of Flexible Pavements
- Location: Baton Rouge LA, United States
- Date: 2005-6-1 to 2005-6-3
- Publication Date: 2006
Language
- English
Media Info
- Media Type: Print
- Features: Figures; References; Tables;
- Pagination: pp 103-114
- Monograph Title: Asphalt Concrete Simulation, Modeling, and Experimental Characterization. Proceedings of the R. Lytton Symposium on Mechanics of Flexible Pavements, June 1-3, 2005, Baton Rouge, Louisiana
Subject/Index Terms
- TRT Terms: Asphalt concrete; Classical field theory; Dissipation; Fracture mechanics; Hot mix asphalt; Laboratory studies; Material aging; Mechanical fatigue; Mechanistic design; Mixtures; Pavement design; Pavement performance; Properties of materials; Surface energy; Viscoelasticity
- Identifier Terms: Mechanistic-Empirical Pavement Design Guide
- Uncontrolled Terms: Cumulative damage; Healing; Micromechanics; Strain energy; Uniaxial tension tests; Work potential model
- Subject Areas: Design; Energy; Highways; Materials; Pavements; I22: Design of Pavements, Railways and Guideways; I23: Properties of Road Surfaces; I31: Bituminous Binders and Materials;
Filing Info
- Accession Number: 01041430
- Record Type: Publication
- ISBN: 0784408254
- Files: TRIS
- Created Date: Jan 30 2007 1:29PM