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Oil chemistry/Catalysis

Effect of aluminum oxide nano particle on modified bitumen and hot mix asphalt

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References

  • AASHTO T283. 2018. Standard method of test for resistance of compacted asphalt mixtures to moisture-induced damage. Washington, DC: American Association of State Highway and Transportation Officials.
  • Ahmed, T. M. 2019. Fatigue performance of hot mix asphalt tested in controlled stress mode using dynamic shear rheometer. International Journal of Pavement Engineering 20 (3):255–65. doi:10.1080/10298436.2016.1172707.
  • Alhamali, D. I., J. Wu, Q. Liu, N. A. Hassan, N. I. M. Yusoff, and S. I. A. Ali. 2016. Physical and rheological characteristics of polymer modified bitumen with nanosilica particles. Arabian Journal for Science and Engineering 41 (4):1521–30. doi:10.1007/s13369-015-1964-7.
  • Ashish, P. K., and D. Singh. 2018. Study on understanding functional characteristics of multi-wall CNT modified asphalt binder. International Journal of Pavement Engineering 1–14. doi:10.1080/10298436.2018.1519190.
  • Fini, E. H., P. Hajikarimi, M. Rahi, and F. M. Nejad. 2016. Physiochemical, rheological, and oxidative aging characteristics of asphalt binder in the presence of mesoporous silica nanoparticles. Journal of Materials in Civil Engineering 28 (2):04015133. doi:10.1061/(ASCE)MT.1943-5533.0001423.
  • Ganjei, M. A., and E. Aflaki. 2019. Application of nano-silica and styrene-butadiene-styrene to improve asphalt mixture self-healing. International Journal of Pavement Engineering 20 (1):89–99. doi:10.1080/10298436.2016.1260130.
  • Guo, W., X. Guo, M. Chang, and W. Dai. 2018. Evaluating the effect of hydrophobic nanosilica on the viscoelasticity property of asphalt and asphalt mixture. Materials 11 (11):2328. doi:10.3390/ma11112328.
  • Hamzah, M. O., S. R. Omranian, and A. S. Yahaya. 2015. Evaluation of the impact of extended aging duration on visco-elastic properties of asphalt binders. Archives of Civil and Mechanical Engineering 15 (4):1118–28. doi:10.1016/j.acme.2015.02.006.
  • Li, R., J. Pei, and C. Sun. 2015. Effect of nano-ZnO with modified surface on properties of bitumen. Construction and Building Materials 98:656–61. doi:10.1016/j.conbuildmat.2015.08.141.
  • Liu, C. H., H. L. Zhang, S. Li, and C. Z. Zhu. 2014. The effect of surface-modified nano-titania on the ultraviolet aging properties of bitumen. Petroleum Science and Technology 32 (24):2995–3001. doi:10.1080/10916466.2014.938825.
  • Nejad, F. M., H. Nazari, K. Naderi, F. K. Khosroshahi, and M. H. Oskuei. 2017. Thermal and rheological properties of nanoparticle modified asphalt binder at low and intermediate temperature range. Petroleum Science and Technology 35 (7):641–6. doi:10.1080/10916466.2016.1276589.
  • Roberts, F., P. S. Kandhal, E. R. Brown, D. Y. Lee, T. W. Kennedy. 1996. Hot mix asphalt materials, mixture design and construction. 2nd ed. National Center for Asphalt Technology (NCAT), National Asphalt Pavement Association Research and Education Foundation, 5100 Forbes BoulevardLanham, MD United States 20706-4413.
  • Santagata, E., O. Baglieri, L. Tsantilis, G. Chiappinelli, and I. B. Aimonetto. 2015. Effect of sonication on high temperature properties of bituminous binders reinforced with nano-additives. Construction and Building Materials 75:395–403. doi:10.1016/j.conbuildmat.2014.11.021.
  • Shafabakhsh, G. H., and O. J. Ani. 2015. Experimental investigation of effect of Nano TiO2/SiO2 modified bitumen on the rutting and fatigue performance of asphalt mixtures containing steel slag aggregates. Construction and Building Materials 98:692–702. doi:10.1016/j.conbuildmat.2015.08.083.
  • Yao, H., Z. You, L. Li, C. H. Lee, D. Wingard, Y. K. Yap, X. Shi, and S. W. Goh. 2013. Rheological properties and chemical bonding of asphalt modified with nanosilica. Journal of Materials in Civil Engineering 25 (11):1619–30. doi:10.1061/(ASCE)MT.1943-5533.0000690.
  • Zhang, H., C. Zhu, J. Yu, B. Tan, and C. Shi. 2015. Effect of nano-zinc oxide on ultraviolet aging properties of bitumen with 60/80 penetration grade. Materials and Structures 48 (10):3249–57. doi:10.1617/s11527-014-0395-3.
  • Ziari, H., H. Farahani, A. Goli, and S. Sadeghpour Galooyak. 2014. The investigation of the impact of carbon nano tube on bitumen and HMA performance. Petroleum Science and Technology 32 (17):2102–8. doi:10.1080/10916466.2013.763827.
  • Ziari, H., P. Mirzababaei, and R. Babagoli. 2016. Properties of bituminous mixtures modified with a nano-organosilane additive. Petroleum Science and Technology 34 (4):386–93. doi:10.1080/10916466.2015.1136948.

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