References
- AASHTO (1995), Provisional Standards. Am. Assn. of State Hwy. and Transportation Officials, Washington, DC, 10-93
- Barksdale, R D. (1972), 'Laboratory Evaluation of Rutting in Base Course Materials', Proc. 3rd Int. Conf. on the Structural Design of Asphalt Pavements, Vol.1 , Ann Arbor, MI, 161-174
- Chen, D. and Hugo, F. (2001), 'Comparison of two pavement rehabilitation strategies', Journal of Transportation Engineering, ASCE, 127(1), 47-59 https://doi.org/10.1061/(ASCE)0733-947X(2001)127:1(47)
- Kenis, W. and Wang, W. (1997), 'Calibrating Mechanistic Flexible Pavement Rutting Models from Full Scale Accelerated Tests', Proc. of the Eighth International Conference on Asphalt Pavements, Seattle, Washington, 663-672
- Lade, P. V. and Nelson, R D. (1987), 'Modeling the Elastic Behavior of Granular Materials', International Journal for Numerical and Analytical Methods in Geomechanics, 11(5),521-542 https://doi.org/10.1002/nag.1610110507
- Lekarp, F. (1997), 'Permanent Deformation Behavior of Unbound Granular Materials', Licentiate Thesis, Royal Institute of Technology, Stockholm, Sweden
- Li, D., and Selig, E. T. (1996), 'Cumulative Plastic Deformation for Fine-Grained Subgrade Soils', Journal of Geotechnical Engineering, ASCE, 122(12), 1006-1013 https://doi.org/10.1061/(ASCE)0733-9410(1996)122:12(1006)
- Liu, M. (1993), Numerical Prediction of Pavement Distress with Geotechnical Constitutive Laws. Ph.D. Dissertation, Texas A&M University, College Station, TX
- Maree, J. H. (1978), Design Parameters for Crushed Stone in Pavements. MSc Thesis, University of Pretoria, Pretoria, South Africa
- Momoya, Y., Watanabe, K., Sekine, E, Tateyama, M., Shinoda, M., and Tatsuoka, F. (2005), 'Effects of Continuous Principal Stress axis Rotation on the Deformation Characteristics of Sand under Traffic Loads', Proc. of the 16th International Conference on Soil Mechanics and Geotechnical Engineering, Vol.5, Osaka, Japan
- Park, S. and Lytton, R (2004), 'Effect of Stress-Dependent Modulus and Poisson's Ratio on Structural Responses in Thin Asphalt Pavements', Journal of Transportation Engineering, ASCE, 130(3), 387-394 https://doi.org/10.1061/(ASCE)0733-947X(2004)130:3(387)
- Park, S. (2005), 'Prediction of Layer Rutting on Pavement Foundations Based on Stress Dependency', Journal of Korean Geotechnical Society, KGS, 21 (7), 73-80
- Shackel, B. (1973), Repeated Loading of Soils: A Review. Australian Road Research, Kew, Victoria, Australia, 5(3), 22-49
- Titus-Glover, I. and Fernando, E. (1995), Evaluation of Pavement Base and Subgrade Material Properties and Test Procedures. Research Report 1335-2, Texas Transportation Institute, College Station, TX
- Uzan, J. (1992), 'Resilient Characterization of Pavement Materials', International Journal for Numerical and Analytical Methods in Geomechanics, 16(6), 435-459
- Uzan, J., Scullion, T., Michalek, C, Paredes, M., and Lytton, R. (1988), A Microcomputer Based Procedure for Backcalulating Layer Moduli from FWD Data. Research Report 1123-1, Texas Transportation Institute, College Station, TX
- Zhou, F. and Scullion, T. (2002), VESYS5 Rutting Model Calibrations with Local Accelerated Pavement Test Data and Associated Implementation. Research Report 1502-1, Texas Transportation Institute, College Station, TX