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Articles

Bio materials with reclaimed asphalt: from lab mixes properties to non-damaged full scale monitoring and mechanical simulation

Pages S95-S111 | Received 31 Oct 2018, Accepted 20 Feb 2019, Published online: 18 Mar 2019

References

  • Bodin, D., Chupin, O., & Denneman, E. (2017). Viscoelastic asphalt pavement sumilations and simplified elastic pavement models based on an “equivalent asphalt modulus” concept. Journal of Testing and Evaluation, 45(2), 1887–1895.
  • Burmister, D. (1943). The theory of stress and displacements in layered systems and applications of the design of airport runways. Proceedings of the highway research Board, Volume 23.
  • Chabot, A., Chupin, O., Deloffre, L., & Duhamel, D. (2010). Viscoroute 2.0: A tool for the simulation of moving load effects on asphalt avement. International Journal Road Materials and Pavement Design, 11(2), 227–250.
  • Chailleux, E., Bessmann, E., Hornych, P., Blanc, J., Gaudefroy, V., Sotoodeh-Nia, Z., … Olard, F. (2018, June 18-20). Biorepavation: Innovation in bio-recycling of old asphalt pavements, comparison between EU and US mix design specification systems. International ISAP Conference, Fortaleza, Brazil.
  • Chailleux, E., Such, C., Ramond, G., & de La Roche, C. (2006). A mathematical-based master-curve construction method applied to complex modulus of bituminous materials. International Journal Road Materials and Pavement Design, 7, 75–92. Special Issue EATA. doi: 10.1080/14680629.2006.9690059
  • Chupin, O., Chabot, A., Piau, J. M., & Duhamel, D. (2010). Influence of sliding interfaces on the response of a layered viscoelastic medium under a moving load. International Journal of Solids and Structures, 47, 3435–3446. doi: 10.1016/j.ijsolstr.2010.08.020
  • Chupin, O., Piau, J. M., & Chabot, A. (2013). Evaluation of the structure-induced rolling resistance (SRR) for pavement including viscoelastic material layers. Materials and Structures, 46(4), 683–696. doi: 10.1617/s11527-012-9925-z
  • Corte, J. F., & Goux, M. T. (1996). Design of pavement structures: The French technical guide. Transportation Research Record: Journal of the Transportation Research Board, 1539, 116–124. doi: 10.1177/0361198196153900116
  • Duong, N. S, Blanc, J., & Hornych, P. (2018). Continuous strain monitoring of an instrumented pavement section. International Journal of Pavement Engineering, 1–16. Published online.
  • Huet, C. (1965). Etude par une méthode d’impédance du comportement viscoélastiques des matériaux hydrocarbonnées. Thèse à l'Université de Paris.
  • Jimenez Del Barco Carrion, A., Lo Presti, D., & Airey, G. (2015). Binder design of high RAP content hot and warm asphalt mixture wearing courses. Road Materials and Pavement Design, 16, 460–474. Taylor&Francis, Special Issue: EATA. doi: 10.1080/14680629.2015.1029707
  • Jiménez del Barco Carrión, A., Lo Presti, D., Pouget, S., Airey, G., & Chailleux, E. (2017). Linear viscoelastic properties of high reclaime asphalt content mixes with biobinders. Road Materials and Pavement Design, 18(2), 241–251. doi: 10.1080/14680629.2017.1304253
  • Lo Presti, D., Jimenez Del Barco Carrion, A., Airey, G., & Hajj, E. (2016). Towards 100% recycling of reclaimed asphalt in road surface courses: Binder design methodology and case studies. Journal of Cleaner Production, 131, 43–51. doi: 10.1016/j.jclepro.2016.05.093
  • Ma, T., Ding, X., Zhang, D., Huang, X., & Chen, J. (2016). Experimental study of recycled asphalt concrete modified by high-modulus agent. Construction and Building Materials, 128, 128–135. doi: 10.1016/j.conbuildmat.2016.10.078
  • Ma, T., Huang, X., Zhao, Y., & Zhang, Y. (2015). Evaluation of the diffusion and distribution of the rejuvenator for hot asphalt recycling. Construction and Building Materials, 98, 530–536. doi: 10.1016/j.conbuildmat.2015.08.135
  • Mogawer, W., Booshehrian, A., Vahidi, S., & Austerman, A. (2013). Evaluating the effect of rejuvenators on the degree of blending and performance of high RAP, RAS, RAP/RAS mixtures. Road Materials and Pavement Design, 14, 193–213. doi: 10.1080/14680629.2013.812836
  • Nguyen, M. L., Blanc, J., Kerzrého, J. P., & Hornych, P. (2013). Review of glass fiber grid use for pavement reinforcement and APT experiments at IFSTTAR, EATA Conference. International Journal of Road Materials and Pavement Design ( Special edition), 14, 287–308. doi: 10.1080/14680629.2013.774763
  • Porot, L. (2016). Effectiveness of a bio-based additive to restore properties of aged asphalt binder. Proceedings of ISAP 2016 symposium, Kackson Hole Wyoming USA.
  • Porot, L., Broere, D., Wistuba, M., & Gronniger, J. (2017). Asphalt and binder evaluation of asphalt mix with 70% reclaimed asphalt. International Journal Road Materials and Pavement Design, 18, 66–75. doi: 10.1080/14680629.2017.1304259
  • Pouget, S., Olard, F., & Hammoum, F. (2016). GB5® mix design: A new approach for aggregate grading optimization for heavy duty flexible pavements. In RILEM bookseries (Vol. 13, pp. 17–24). Dordrecht: Springer.
  • Santos, J., Bressi, S., Cerezo, V., Lo Presti, D., & Dauvergne, M. (2018). Life cycle assessment of low temperature asphalt mixtures for road pavement surfaces: A comparative analysis. Resources, Conservation and Recycling, 138, 283–297. doi: 10.1016/j.resconrec.2018.07.012
  • Santos, J., Flintsch, G., & Ferreira, A. (2017). Environmental and economic assessment of pavement construction and management practices for enhancing pavement sustainability. Resources, Conservation and Recycling, 116, 15–31. doi: 10.1016/j.resconrec.2016.08.025
  • Sayegh, G. (1966). Contribution à l’étude des propriétés viscoélastiques des bitumes purs et des bétons bitumineux. Thèse à l'Université de Paris.
  • Wayman, M., Parry, T., Andersson-Sköld, Y., Raaberg, J., Bergman Anja Enell, R., & Huang, Y. (2012). Life cycle assessment of reclaimed asphalt. Report of the European Re-Road project: End of life strategies of asphalt pavements. Retrieved from http://re-road.fehrl.org/index.php?m=48&mode=download&id_file=14729
  • William, M., Landel, R., & Ferry, J. (1955). The temperature dependence of relaxation mechanisms in amorphous polymers and other glass-forming liquids. Journal of the American Chemical Society, 77, 3701–3707. doi: 10.1021/ja01619a008
  • Zaumanis, M., Mallick, R., Poulikakos, L., & Frank, R. (2014). Influence of Six rejuvenators on the performance properties of reclaimed asphalt pavement (RAP) binder and 100% recycled asphalt mixtures. Construction and Building Materials, 71, 538–550. doi: 10.1016/j.conbuildmat.2014.08.073

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