682
Views
37
CrossRef citations to date
0
Altmetric
Original Articles

IlliTC – low-temperature cracking model for asphalt pavements

, , , &
Pages 57-78 | Published online: 23 Sep 2013

References

  • Apeagyei , A. K. , Dave , E. V. and Buttlar , W. G. 2008 . Effect of cooling rate on thermal cracking of asphalt concrete pavements . Journal of Association of the Asphalt Paving Technologists , 77 : 709 – 738 .
  • Baek , J. , Ozer , H. , Wang , H. and Al-Qadi , I. L. 2010 . Effects of interface conditions on reflective cracking development in hot-mix asphalt overlays . Road Materials and Pavement Design , 11 ( 2 ) : 307 – 335 . (doi:10.1080/14680629.2010.9690278)
  • Brown , E. R. , Kandhal , P. S. , Roberts , F. L. , Kim , Y. R. , Lee , D.-Y. and Kennedy , T. W. 2009 . Hot mix asphalt materials, mixture design and construction , Lanham, MD : National Asphalt Pavement Association .
  • Buttlar , W. G. , Roque , R. and Reid , B. 1995 . Automated procedure for generation of creep compliance master curve for asphalt mixtures . Transportation Research Record , 1630 : 28 – 36 . (doi:10.3141/1630-04)
  • Buttlar , W. G. , Sahu , R. , Behnia , B and Dave , E. V. 2013 . Determination of asphalt concrete tensile strength from the disk-shaped compact tension (DCT) fracture test , Submitted for publication.
  • Dave , E. V. and Buttlar , W. G. 2010 . Low temperature cracking prediction with consideration of temperature dependent bulk and fracture properties . Road Materials and Pavement Design , 11 ( SI ) : 33 – 59 . (doi:10.1080/14680629.2010.9690326)
  • Dave , E. V. , Leon , S. E. and Park , K. 2011 . Thermal cracking prediction model and software for asphalt pavements . Proceedings of the First T&DI Congress 2011, ASCE Conference Proceedings , 398 ( 41167 ) : 64 – 72 .
  • Dave , E. V. , Paulino , G. H. and Buttlar , W. G. 2012 . Viscoelastic functionally graded finite element method with recursive time integration and applications to flexible pavements . International Journal for Numerical and Analytical Methods in Geomechanics , 36 ( 9 ) : 1194 – 1219 . (doi:10.1002/nag.1046)
  • Deme , I. J. and Young , F. 1987 . Ste. anne test road revisited 20 years later . Proceedings of Canadian Technical Asphalt Association , 32 : 254 – 283 .
  • Islam , M. S. and Buttlar , W. G. 2012 . Effect of pavement roughness on user costs . Transportation Research Record , 2285 : 47 – 55 . (doi:10.3141/2285-06)
  • Kim , Y.-R. , Aragao , F. T. S. , Allen , D. H. and Little , D. N. 2010 . Damage modeling of bituminous mixtures considering mixture microstructure, viscoelasticity, and cohesive zone fracture . Canadian Journal of Civil Engineering , 37 ( 8 ) : 1125 – 1136 . (doi:10.1139/L10-043)
  • Lytton , R. L. , Roque , R. , Uzan , J. , Hiltunen , D. R. , Fernando , E. and Stoffels , S. M. 1993 . Performance models and validation of test results , Washington, DC : National Research Council . (Final Report to Strategic Highway Research Program; Asphalt Project A-005, SHRP Report A-357).
  • Marasteanu , M. , Moon , K. H. , Teshale , E. Z. , Falchetto , A. C. , Turos , M. , Buttlar , W. and Buss , A. 2012 . Investigation of low temperature cracking in asphalt pavements national pooled fund study -phase II , 2012-23) St Paul, MN : Minnesota Department of Transportation . (Report No. MN/RC
  • Marasteanu , M. , Zofka , A. , Turos , M. , Li , X. , Velasquez , R. , Li , X. and McGraw , J. 2007 . Investigation of low temperature cracking in asphalt pavements , St Paul, MN: Minnesota Department of Transportation, Research Services MS 330. (Report No. 776).
  • Nam , K. and Bahia , H. U. 2004 . Effect of binder and mixture variables on glass transition behavior of asphalt mixtures . Journal of Association of Asphalt Paving Technologists , 73 : 89 – 119 .
  • Nam , K. and Bahia , H. U. 2009 . Effect of modification on fracture failure and thermal-volumetric properties of asphalt binders . Journal of Materials in Civil Engineering , 21 ( 5 ) : 198 – 209 . (doi:10.1061/(ASCE)0899-1561(2009)21:5(198))
  • Paris , P. C. , Gomez , M. P. and Anderson , W. E. 1961 . A rational analytic theory of fatigue . The Trend in Engineering , 13 : 9 – 14 .
  • Roque , R. , Hiltunen , D. R. and Buttlar , W. G. 1995a . Thermal cracking performance and design of mixtures using superpave (TM) . Journal of the Association of Asphalt Paving Technologists , 64 : 718 – 735 .
  • Roque , R. , Hiltunen , D. R. , Buttlar , W. G. and Farwana , T. 1995b . Development of the SHRP superpave mixture specification test method to control thermal cracking performance of pavements. , : 19 Philadelphia, PA: American Society for Testing and Materials. STP1265 Engineering Properties of Asphalt Mixtures and the Relationship to their Performance. ASTM Special Technical Publication.
  • Roseler , J. R. , Paulino , G. H. , Park , K. and Gaedicke , C. 2007 . Concrete fracture prediction using bilinear softening . Cement and Concrete Composites , 29 ( 4 ) : 300 – 312 . (doi:10.1016/j.cemconcomp.2006.12.002)
  • Soares , J. B. , Colares de Freitas , F. A. and Allen , D. H. 2004 . Crack modeling of asphaltic mixtures considering heterogeneity of the material . Transportation Research Record , 1832 : 113 – 120 . (doi:10.3141/1832-14)
  • Song , S. H. , Paulino , G. H. and Buttlar , W. G. 2006 . A bilinear cohesive zone model tailored for fracture of asphalt concrete considering viscoelastic bulk material . Engineering Fracture Mechanics , 73 ( 18 ) : 2829 – 2848 . (doi:10.1016/j.engfracmech.2006.04.030)
  • Song , S. H. , Wagoner , M. P. , Paulino , G. H. and Buttlar , W. G. 2008 . δ25 Crack opening displacement parameter in cohesive zone models: Experiments and simulations in asphalt concrete . Fatigue and Fracture of Engineering Material and Structures , 31 ( 10 ) : 850 – 856 . (doi:10.1111/j.1460-2695.2008.01272.x)
  • Yi , S. and Hilton , H. H. 1994 . Dynamic finite element analysis of viscoelastic composite plates in the time domain . International Journal of Numerical Methods in Engineering , 37 ( 12 ) : 4081 – 4096 . (doi:10.1002/nme.1620372309)
  • Zocher , M. A. , Groves , S. E. and Allen , D. H. 1997 . A three-dimensional finite element formulation for thermoviscoelastic orthotropic media . International Journal of Numerical Methods in Engineering , 40 ( 12 ) : 2267 – 2288 . (doi:10.1002/(SICI)1097-0207(19970630)40:12<2267::AID-NME156>3.0.CO;2-P)

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.