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Articles

Fatigue properties of bituminous binders reinforced with carbon nanotubes

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Pages 80-90 | Received 18 Oct 2013, Accepted 23 Mar 2014, Published online: 09 Jun 2014

References

  • AASHTO M 320, 2010. Performance-graded asphalt binder. Washington, DC: American Association of State Highway and Transportation Officials.
  • Airey, G.D., Rahimzadeh, B., and Collop, A.C., 2002. Linear viscoelastic limits of bituminous binders. Journal of the Association of Asphalt Paving Technologists, 71, 89–115.
  • Amirkhanian, A.N., Xiao, F., and Amirkhanian, S.N., 2011a. Characterization of unaged asphalt binder modified with carbon nano particles. International Journal of Pavement Research and Technology, 4 (5), 281–286.
  • Amirkhanian, A.N., Xiao, F., and Amirkhanian, S.N., 2011b. Evaluation of high temperature rheological characteristics of asphalt binders with carbon nano particles. Journal of Testing and Evaluation, 39 (4), 1–9.
  • Anderson, D.A., et al., 1994. Binder characterization and evaluation. Volume 3: physical characterization, SHRP-A-369. Strategic Highway Research Program. Washington, DC: National Research Council.
  • Anderson, D.A., et al., 2000. Evaluation of fatigue criteria for asphalt binders. Transportation Research Record, 1776, 48–55.
  • Bahia, H.U., et al., 1998. Classification of asphalt binders into simple and complex binders. Journal of the Association of Asphalt Paving Technologists, 67, 1–41.
  • Bahia, H.U., et al., 1999. Non linear viscoelastic and fatigue properties of asphalt binders. Journal of the Association of Asphalt Paving Technologists, 68, 1–34.
  • Bergman, C.P. and Jung de Andrade, M, 2011. Nanostructured materials for engineering applications. Porto Alegre: Springer.
  • Bokobza, L., 2007. Multiwall carbon nanotube elastomeric composites: A review. Polymer, 48 (17), 4907–4920.
  • Brown, A.B., Sparks, J.W., and Smith, F.M., 1957. Steric hardening of asphalt. Journal of the Association of Asphalt Paving Technologists, 26, 486–494.
  • Bahia, H.U., et al., 2001. Characterization of modified asphalt binders in superpave mix design, NCHRP Report 459. Washington, DC: National Academy Press.
  • de Heer, W.A., 2004. Nanotubes and the pursuit of applications. MRS Bulletin, 29, 281–285.
  • Dijk, W. and Visser, W., 1977. The energy approach to fatigue for pavement design. Journal of the Association of Asphalt Paving Technologists, 46, 1–40.
  • Ecker, A., 2001. The application of iatroscan-technique for analysis of bitumen. Petroleum and Coal, 1 (1), 51–53.
  • Ghuzlan, K.A. and Carpenter, S.H., 2000. Energy-derived, damage-based failure criterion for fatigue testing. Transportation Research Record, 1723, 141–149.
  • Iijima, S., 1991. Helical microtubules of graphitic carbon. Nature, 354, 56–58.
  • Ivanov, E., et al., 2011. Effects of processing conditions on rheological, thermal, and electrical properties of multiwall carbon nanotube/epoxy resin composites. Journal of Polymer Science: Part B Polymer Physics, 49, 431–449.
  • Khattak, M., et al., 2012. The impact of carbon nano-fiber modification on asphalt binder rheology. Construction and Building Materials, 30, 257–264.
  • Kuchibhatla, S.V.N.T., et al., 2007. One dimensional nanostructured materials. Progress in Materials Science, 52 (5), 699–913.
  • Leroy, G., 1989. Bitumen analysis by thin layer chromatography (Iatroscan). In: Proceedings of the 4th Eurobitume Symposium, 4–6 October. Madrid: Association Europeenne du Bitume, 166–170.
  • Liu, G., et al., 2011. Influence of organo-montmorillonites on fatigue properties of bitumen and mortar. International Journal of Fatigue, 33, 1574–1582.
  • MacSporran, W.C. and Spiers, R.P., 1982. The dynamic performance of the weissenberg rheogoniometer II. Large amplitude oscillatory shearing – fundamental response. Rheological Acta, 21, 193–200.
  • Mortazavi, M. and Moulthrop, J.S., 1993. The SHRP materials reference library, SHRP-A-646. Strategic Highway Research Program. Washington, DC: National Research Council.
  • Petersen, S.W.J.C., et al., 1994a. Binder characterization and evaluation. Volume 4: test methods, SHRP-A-370. Strategic Highway Research Program. Washington, DC: National Research Council.
  • Petersen, S.W.J.C., et al., 1994b. Binder characterization and evaluation. Volume 1, SHRP-A-367. Strategic Highway Research Program. Washington, DC: National Research Council.
  • Planche, J.P., et al., 2004. Evaluation of fatigue properties of bituminous binders. Materials and Structures/Materiaux et Constructions, 37 (269), 356–359.
  • Pronk, A.C., 1995. Evaluation of the dissipated energy concept for the interpretation of fatigue measurements in the crack initiation phase. (P-DWW-95-001)Delft, Netherlands: Road and Hydraulic Engineering Division.
  • Pronk, A.C. and Hopman, P.C., 1990. Energy dissipation: the leading factor to fatigue. In: Proceedings of the strategic highway research program: sharing the benefits, 29–31 October. London: Elsevier Science, 225–237.
  • Sanchez, F. and Sobolev, K., 2010. Nanotechnology in concrete – a review. Construction and Building Materials, 24, 2060–2071.
  • Santagata, E., Baglieri, O., and Dalmazzo, D., 2008. Experimental investigation on the fatigue damage behaviour of modified bituminous binders and mastics. Journal of the Association of Asphalt Paving Technologists, 77, 851–883.
  • Santagata, E., et al., 2009. Rheological and chemical investigation on the damage and healing properties of bituminous binders. Journal of the Association of Asphalt Paving Technologists, 78, 567–595.
  • Santagata, E., et al., 2012a. Damage and healing test protocols for the evaluation of bituminous binders. In: Proceedings of the 5th eurasphalt and eurobitume congress, 13–15 June. Istanbul: Turkey, A5EE-382.
  • Santagata, E., et al., 2012b. Rheological characterization of bituminous binders modified with carbon nanotubes. Procedia – Social and Behavioral Sciences, SIIV ‐ 5th International Congress, 53, 546–555.
  • Santagata, E., et al., 2013a. Effects of nano-sized additives on the high-temperature properties of bituminous binders: a comparative study. In: International RILEM symposium on multi-scale modeling and characterization of infrastructure materials, 10–12 June 2013. Stockholm: Springer, 297–309.
  • Santagata, E., et al., 2013b. Evaluation of self healing properties of bituminous binders taking into account steric hardening effects. Construction and Building Materials, 41, 60–67.
  • Shen, S., Chiu, H.M., and Huang, H., 2010. Characterization of fatigue and healing in asphalt binders. Journal of Materials in Civil Engineering, 22 (9), 846–852.
  • Shen, S., et al., 2006. A dissipated energy approach to fatigue evaluation. Road Materials and Pavement Design, 7 (1), 47–69.
  • Soenen, H. and Eckman, B., 1999. Binder related fatigue properties studied by rheology. In: Vth International conference on durable and safe road pavements, May 11–12. Kielce: Road and Bridge Research Institute, 189–197.
  • Song, Y.S. and Youn, J.R., 2005. Influence of dispersion states of carbon nanotubes on physical properties of epoxy composites. Carbon, 43, 1378–1385.
  • Thostenson, E.T., Ren, Z., and Chou, T.W., 2011. Advances in the science and technology of carbon nanotubes and their composites: a review. Composites Science and Technology, 61 (13), 1899–1912.
  • Traxler, R.N. and Schweyer, H.E., 1936. Increase in viscosity of asphalt with time. Proceedings of the American Society for Testing Materials, 36, 544–551.
  • Treacy, M.M.J., Ebbesen, T.W., and Gibson, J.M., 1996. Exceptionally high Young's modulus observed for individual carbon nanotubes. Nature, 381, 678–680.
  • Xia, H., Qiu, G., and Wang, Q., 2006. Polymer/carbon nanotube composite emulsion prepared through ultrasonically assisted in situ emulsion polymerization. Journal of Applied Polymer Science, 100, 3123–3130.
  • Xiao, F., Amirkhanian, A.N., and Amirkhanian, S.N., 2011a. Influence on rheological characteristics of asphalt binders containing carbon nanoparticles. Journal of Materials in Civil Engineering, 23, 423–431.
  • Xiao, F., Amirkhanian, A.N., and Amirkhanian, S.N., 2011b. Long-term ageing influence of carbon nanoparticles on the rheological characteristics of short-term aged asphalt binders. International Journal of Pavement Engineering, 12 (6), 533–541.

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