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Scientific papers

Mechanical, surface and environmental evaluation of stone mastic asphalt mixtures with advanced asphalt binders using waste materials

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Pages 316-333 | Received 01 Apr 2017, Accepted 12 Sep 2017, Published online: 13 Oct 2017

References

  • Ahmedzade, P. (2013). The investigation and comparison effects of SBS and SBS with new reactive terpolymer on the rheological properties of bitumen. Construction and Building Materials, 38, 285–291. doi:doi: 10.1016/j.conbuildmat.2012.07.090
  • Arslan, D., Gürü, M., Çubuk, M. K., & Çubuk, M. (2011). Improvement of bitumen and bituminous mixtures performances by triethylene glycol based synthetic polyboron. Construction and Building Materials, 25(10), 3863–3868. doi:doi: 10.1016/j.conbuildmat.2011.04.007
  • Asphalt Institute. (2001). Superpave® mix design (3rd ed.). Lexington, KY: Asphalt Institute.
  • Attaelmanan, M., Feng, C. P., & Ai, A.-H. (2011). Laboratory evaluation of HMA with high density polyethylene as a modifier. Construction and Building Materials, 25(5), 2764–2770. doi:doi: 10.1016/j.conbuildmat.2010.12.037
  • Blazejowski, K. (2011). Stone matrix asphalt – theory and practice (Vol. 201). Boca Raton, FL: CRC Press.
  • Branco, F., Pereira, P., & Picado, L. (2006). Pavimentos rodoviários. Coimbra: Edições Almedina.
  • Brown, E. R., Kandhal, P. S., Roberts, F. L., Kim, Y. R., Lee, D.-Y., & Kennedy, T. W. (2009). Hot mix asphalt materials, mixture design, and construction. Lanham, MD: National Asphalt Pavement Association Research and Education Foundation.
  • Dehouche, N., Kaci, M., & Mokhtar, K. A. (2012). Influence of thermo-oxidative aging on chemical composition and physical properties of polymer modified bitumens. Construction and Building Materials, 26(1), 350–356. doi:doi: 10.1016/j.conbuildmat.2011.06.033
  • EP. (2014). Caderno de Encargos Tipo Obra, Capítulo 15.03 – Pavimentação – Métodos Construtivos. Almada: Estradas de Portugal S.A.
  • Fernandes, S., Costa, L., Silva, H., & Oliveira, J. (2015). Effect of incorporating different waste materials in bitumen. Materiais 2015: VII International Materials Symposium, Porto, Portugal.
  • Fuentes-Audén, C., Sandoval, J. A., Jerez, A., Navarro, F. J., Martínez-Boza, F. J., Partal, P., & Gallegos, C. (2008). Evaluation of thermal and mechanical properties of recycled polyethylene modified bitumen. Polymer Testing, 27(8), 1005–1012. doi:doi: 10.1016/j.polymertesting.2008.09.006
  • Gardete, D., Santos, L. P., & Capitão, S. (2011). Formulação volumétrica e desempenho de misturas betuminosas stone mastic asphalt. XVI CILA – Congresso Ibero-Latinoamericano do Asfalto, Rio de Janeiro, Brasil.
  • González, V., Martínez-Boza, F. J., Gallegos, C., Pérez-Lepe, A., & Páez, A. (2012). A study into the processing of bitumen modified with tire crumb rubber and polymeric additives. Fuel Processing Technology, 95(0), 137–143. doi:doi: 10.1016/j.fuproc.2011.11.018
  • Jia, X., Huang, B., Bowers, B. F., & Zhao, S. (2014). Infrared spectra and rheological properties of asphalt cement containing waste engine oil residues. Construction and Building Materials, 50(0), 683–691. doi:doi: 10.1016/j.conbuildmat.2013.10.012
  • Júnior, A. F. A., Battistelle, R. A., Bezerra, B. S., & Castro, R. (2012). Use of scrap tire rubber in place of SBS in modified asphalt as an environmentally correct alternative for Brazil. Journal of Cleaner Production, 33, 236–238. doi:doi: 10.1016/j.jclepro.2012.03.039
  • Kalantar, Z. N., Karim, M. R., & Mahrez, A. (2012). A review of using waste and virgin polymer in pavement. Construction and Building Materials, 33, 55–62. doi:doi: 10.1016/j.conbuildmat.2012.01.009
  • Kogbara, R. B., Masad, E. A., Kassem, E., Scarpas, A., & Anupam, K. (2016). A state-of-the-art review of parameters influencing measurement and modeling of skid resistance of asphalt pavements. Construction and Building Materials, 114, 602–617. doi:doi: 10.1016/j.conbuildmat.2016.04.002
  • Kök, B. V., & Çolak, H. (2011). Laboratory comparison of the crumb-rubber and SBS modified bitumen and hot mix asphalt. Construction and Building Materials, 25(8), 3204–3212. doi:doi: 10.1016/j.conbuildmat.2011.03.005
  • Lo Presti, D. (2013). Recycled tyre rubber modified bitumens for road asphalt mixtures: A literature review. Construction and Building Materials, 49, 863–881. doi:doi: 10.1016/j.conbuildmat.2013.09.007
  • Lottman, R. P. (1982). Predicting moisture-induced damage to asphaltic concrete field evaluation. Retrieved from NCHRP 246.
  • Nejad, M., Azarhoosh, F., & Hamedi, A., & H, G. (2014). Effect of high density polyethylene on the fatigue and rutting performance of hot mix asphalt – a laboratory study. Road Materials and Pavement Design, 15(3), 746–756. doi:doi: 10.1080/14680629.2013.876443
  • Peralta, J., Silva, H. M. R. D., Hilliou, L., Machado, A. V., Pais, J., & Williams, C. R. (2012). Mutual changes in bitumen and rubber related to the production of asphalt rubber binders. Construction and Building Materials, 36, 557–565. doi:doi: 10.1016/j.conbuildmat.2012.06.030
  • Peralta, J., Silva, H. M. R. D., Williams, R. C., Rover, M., & Machado, A. V. A. (2013). Development of an innovative bio-binder using asphalt-rubber technology. International Journal of Pavement Research and Technology, 6(4), 447–456.
  • Peralta, J., Williams, R. C., Silva, H. M. R. D., & Machado, A. V. (2013). Combining asphalt-rubber (AR) and fast-pyrolysis bio-il to create a binder for flexible pavements. Braga: WASTES: Solutions, Treatments and Opportunities.
  • Reinke, G., Hanz, A., Anderson, R. M., Ryan, M., Engber, S., & D. Herlitzka. (2016). Impact of re-refined engine oil bottoms on binder properties and mix performance on two pavements in Minnesota. E&E Congress 2016, Prague, Czech Republic.
  • Roberts, F. L., Kandhal, P. S., Brown, E. R., Lee, D.-Y., & Kennedy, T. W. (1996). Hot mix asphalt materials, mixture design and construction. Lanham, MD: Transportation Research Board.
  • Sarang, G., Lekha, B. M., Krishna, G., & Ravi Shankar, A. U. (2016). Comparison of stone matrix asphalt mixtures with polymer-modified bitumen and shredded waste plastics. Road Materials and Pavement Design, 933–945. doi:doi: 10.1080/14680629.2015.1124799
  • Vaiana, R., Capiluppi, G. F., Gallelli, V., Iuele, T., & Minani, V. (2012). Pavement surface performances evolution: An experimental application. Procedia – Social and Behavioral Sciences, 53, 1149–1160. doi:doi: 10.1016/j.sbspro.2012.09.964
  • Yildirim, Y. (2007). Polymer modified asphalt binders. Construction and Building Materials, 21(1), 66–72. doi:doi: 10.1016/j.conbuildmat.2005.07.007
  • Yousefi Kebria, D., Moafimadani, S. R., & & Goli, Y. (2015). Laboratory investigation of the effect of crumb rubber on the characteristics and rheological behaviour of asphalt binder. Road Materials and Pavement Design, 16(4), 946–956. doi:doi: 10.1080/14680629.2015.1042015

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