Viscoelastic continuum damage finite element modeling of asphalt pavements for fatigue cracking evaluation

Author:

Mun Sungho,Guddati Murthy N.,Kim Y. Richard

Publisher

Springer Science and Business Media LLC

Subject

Civil and Structural Engineering

Reference16 articles.

1. Chehab, G.R., Kim, Y.R., Schapery, R.A., Witezak, M.W., and Bonaquist, R. (2002). “Time-temperature superposition principle for asphalt concrete mixtures with growing damage in tension.”Journal of Association of Asphalt Paving Technologists, Vol. 71, pp. 559–593.

2. Daniel, J.S. and Kim, Y.R. (2002). “Development of a simplified fatigue test and analysis procedure using a viscoelastic continuum damage model.”Journal of Association of Asphalt Paving Technologists, Vol. 71, pp. 619–650.

3. Garg, N. and Thompson, M.R. (1998)Mechanistic-Empirical Evaluation of the Mn/ROAD Low Volume Road Test Sections, Illinois Cooperative Highway and Transportation Research Program Report FHWA-IL-UI-262, Urbana, IL.

4. Gerritsen, A.H., Van Gurp, C.A.P.M., Van der Heide, J.P.J., Molenaar, A.A.A., and Pronk, A.C. (1987). “Prediction and prevention of surface cracking in asphalt pavements.”6 th International Conference on Structural Design and Asphalt Pavements, The University of Michigan, Ann Arbor, MI, pp. 378–391.

5. Guddati, M.N. (2001)FEP ++:A Finite Element Program in C ++, Input Manual, Department of Civil Engineering, North Carolina State University.

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