Page 400 - Mechanics of Asphalt Microstructure and Micromechanics
P. 400
392 Ch a p t e r E l ev e n
Vizi, L. and Büttner, C. (1981). Verdichten von asphalt im strassenbau (Compaction of asphalt
roads). Werner Verlag, Düsseldorf.
Voigt, W. (1889). Ueber die beziehung zwischen den beiden elasticitatsconstanten isotroper kor-
per, Annalen der physik und chemie, Vol.38, pp.573–587.
Wang, D. (2007). Binder Film Thickness Effect on Aggregate Contact Behavior, M.S. Thesis, De-
partment of Civil and Environment Engineering, Virginia Tech.
Wang, L.B., Frost, J.D. and Lai. J.S. (1999). Non-invasive measurement of permanent strain field
resulting from rutting in asphalt concrete. Transportation Research Record, No.1687, pp.85–94.
Wang, L.B, Frost, J.D. and Lai, J.S. (2004). 3D digital representation of the microstructure of
granular materials from x-ray tomography imaging. Journal of Computing in Civil Engineer-
ing, Vol.18, No.1, pp. 28–35.
Wang, L.B. and Frost, J.D. (2004). Dissipated strain energy method for determining preconsolida-
tion pressure. Canadian Geotechnical Journal. Vol.41, No.4, pp.760–768.
Wang, L.B. and Lai, J.S. (1997). Estimate the moduli and ko of soil and soil-pile system using mi-
cromechanics. Proceedings on Computer Methods and Advances in Geomechanics, pp.2345–2347,
October 11–13, Wuhan, China.
Wang,L.B., Wang, Y.P. and Mohammad, L.N. (2003). Application of mixture theory in the evalu-
ation of mechanical properties of asphalt concrete. Journal of Materials in Civil Engineering,
Vol.16, No.2, pp.167–174.
Wang, L.B., Zhang, B., Wang, D. and Yue, Z.Q. (2007). Fundamental mechanics of asphalt com-
paction through FEM and DEM modeling. ASCE Geotechnical Special Publication. No. 176,
pp.45–63.
Wang, Y.P., Wang, L.B., Li, Q.B. and Harman, T.P. (2007). Noninvasive measurement of 3D per-
manent strains in asphalt concrete using x-ray tomography imaging. Transportation Research
Record, No. 2005, pp.95–103.
Wood, D.M. (1990). Soil Behavior and Critical State Soil Mechanics. Cambridge University Press,
Cambridge.
Xia K. and Chi L. (2008). A viscoplastic foam model for prediction of asphalt pavement compac-
tion. Geotechnical Special Publication, No.182, pp.136–145.
You, Z. and Buttlar, W.G. (2004). Discrete Element Modeling to Predict the Modulus of Asphalt
Concrete Mixtures. Journal of Materials in Civil Engineering, Vol.16, pp.140–146.
You, Z. and Buttlar, W.G. (2005). Application of discrete element modeling techniques to predict
the complex modulus of asphalt–aggregate hollow cylinders subjected to internal pressure.
Transportation Research Board, No.1929, pp.218–226.
Zhang, B. and Wang, L.B. (2007). Digital simple performance test of asphalt concrete. Proceed-
ings of the 7th International Conference of Chinese Transportation Professionals, pp.98–107, May
20–21, Shanghai, China.

