Open Access
Issue
E3S Web Conf.
Volume 427, 2023
International Conference on Geotechnical Engineering and Energetic-Iraq (ICGEE 2023)
Article Number 03026
Number of page(s) 8
Section Transportation Science and Technology
DOI https://doi.org/10.1051/e3sconf/202342703026
Published online 13 September 2023
  1. H.H. Joni, A.A. Mohammed, A.A. Shakir. Classification of Traffic Accidents datasets between 2003 -2017 in Iraq. Data in Brief. 2019; 28(1):104902. DOI: 10.1016/j.dib.2019.104902. [Google Scholar]
  2. H.H. Joni. Most Distresses Causes in Flexible Pavement for Baghdad Streets at Last Years. Engineering and Technology Journal. 2010; 28(18): 894–906. [Google Scholar]
  3. S.A. Sultan. Damaging Effect of Armoured Vehicles with Rubber Tires on Flexible Pavement. Engineering and Technology Journal. 2010; 28(17): 5568–5580. [Google Scholar]
  4. H.H. Joni, H.H. Zghair, A.A. Mohammed. Rutting Parameters of Modified Asphalt Binder with Micro and Nano-Size of Metakaolin Powder. Journal of Engineering Science and Technology. 2020; 15(5): 3465–3480. [Google Scholar]
  5. Maen Q. Ghadi, Hesham Ahmad and Ismael Jannoud. Influence of Traffic Characteristics on Pavement Performance of Parking Lots. Infrastructures. 2023; 8 (65). https://doi.org/10.3390/infrastructures8040065. [Google Scholar]
  6. Huang, Y. Pavement Analysis and Design. 2nd Edition, Prentice Hall, Englewood Cliffs, New Jersey, USA. 2004. [Google Scholar]
  7. A.H. Abed, Z.I. Qasim, H.M. Al-Mosawe, and H.H. Norri. The Effect of Hybrid Anti-Stripping Agent with Polymer on the Moisture Resistance of Hot Mix Asphalt Mixtures. Cogent Engineering. 2019; 6(1). DOI: 10.1080/23311916.2019.1659125. [Google Scholar]
  8. Hasan H. Joni, Ali H. AL-Rubaie. Enhancement of the Rutting Resistance of Asphalt Mixtures at Different High Temperatures Using Waste Polyethylene Polymer. Engineering and Technology Journal. 2022; 40(11): 1432–1440. [CrossRef] [Google Scholar]
  9. M.Y. Fattah, W. Abdulkhabeer, and M.M. Hilal. Characteristics of Asphalt Binder and Mixture Modified with Waste Polypropylene. Engineering and Technology Journal. 2021. Doi: org/10.30684/etj.v39i8.1716. [Google Scholar]
  10. M Enieb, Mohammed Abbas Hasan Al-Jumaili, Hamid Athab Eedan Al-Jameel and A.S. Eltwati. Sustainability of using reclaimed asphalt pavement: based reviewed evidence. Iraq Journal of Physics: Conference Series 1973. 2021. Doi:10.1088/1742-6596/1973/1/012242. [Google Scholar]
  11. Karkush MO, Abdulkareem MS. Deep remediation and improvement of soil contaminated with residues oil using lime piles. International Journal of Environmental Science and Technology. 2019 Nov;16:7197–7206. [CrossRef] [Google Scholar]
  12. Karkush MO, Yassin S. Improvement of geotechnical properties of cohesive soil using crushed concrete. Civil Engineering Journal. 2019 Oct 7;5(10):2110–2119. [CrossRef] [Google Scholar]
  13. Karkush MO, Yassin SA. Using sustainable material in improvement the geotechnical properties of soft clayey soil. Journal of Engineering Science and Technology. 2020 Aug;15(4):2208–2222. [Google Scholar]
  14. Zhu J., Ma T., and Dong Z. Evaluation of optimum mixing conditions for rubberized asphalt mixture containing reclaimed asphalt pavement. Construction and Building Materials. 2020; 234(1): 1–11. [Google Scholar]
  15. Feipeng Xiao, Serji Amirkhanian, Bradley Putman, and Junan Sh. Laboratory investigation of engineering properties of rubberized asphalt mixtures containing reclaimed asphalt pavement. Tongji University. 2014. [Google Scholar]
  16. Tabaković, A., Gibney, A., Mcnally, C. & Gilchrist, M.D. Influence of Recycled Asphalt Pavement on Fatigue Performance of Asphalt Concrete Base Courses. Journal of Materials in Civil Engineering. 2010; 22(1): 643–650. [CrossRef] [Google Scholar]
  17. Miró, R., Valdes, G., Martínez, A., Segura, P. & Rodríguez, C., (2011), “Evaluation of high modulus mixture behavior with high reclaimed asphalt pavement (RAP) percentages for sustainable road construction”, 25, 3854–3862. [Google Scholar]
  18. Karim H. Ibrahim Al Helo, Zaynab I. Qasim, Ahmed D. Majeed. Evaluation performance of base course mixture containing reclaimed asphalt pavement (RAP). MATEC Web Conf. 2018. [Google Scholar]
  19. McLean. Statistical Analysis of Performance of Recycled Hot Mix Asphalt Overlays in Flexible Pavement Rehabilitation. US Department of Transportation Federal Highway Administration. 2011. [Google Scholar]
  20. Hamdou, H.M., Ahmed, N.G., Qasim, Z.I. Prediction Model for Pavement Deformation of Superpave Asphalt Concrete Mixtures. IMS/7 International Conference on Advances in Engineering Materials, UAE. 2014. [Google Scholar]
  21. Fattah, M.Y., Al Helo K.H., and Qasim Z.I. Prediction Models for Fatigue Resistance of Local Hot Mix Asphalt. Road Materials and Pavement Design Journal. 2015. [Google Scholar]
  22. SCRB. State Commission of Roads and Bridges, Standard specifications for Roads and Bridges. Hot mix asphalt concrete pavements, Section R9. Iraq, Ministry of Housing and Construction, Department of Planning and Studies. R9. 2003. [Google Scholar]
  23. AASHTO-M323. Standard Specification for Superpave Volumetric Mix Design, USA. 2022. [Google Scholar]

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