Have a personal or library account? Click to login
Assessment of the Thermal Conductivity of Sustainable Asphalt Mixtures Incorporating Crumb Rubber Via the Dry Process Cover

Assessment of the Thermal Conductivity of Sustainable Asphalt Mixtures Incorporating Crumb Rubber Via the Dry Process

Open Access
|Aug 2025

References

  1. GUI, J. G. – PHELAN, P. E. – KALOUSH, K. E. – GOLDEN, J. S.: Impact of pavement thermophysical properties on surface temperatures. J. Mater. Civ. Eng.
  2. ZOU, L.: Study on the thermophysic parameters of asphalt mixtures. Xi’an: Chang’an University, 2011. (in Chinese).
  3. SHI, X. – REW, Y. – IVERS, E. – SHON, C. S. – STENGER, E. M. – PARK, P.: Effects of thermally modified asphalt concrete on pavement temperature. International Journal of Pavement Engineering, 2019, 20(6), pp. 669–681.
  4. AL-RUBAIE, A. H. – JONI, H. H.: Assessment the performance of asphalt mixtures modified with waste tire rubber at high temperatures. Journal of Physics: Conference Series, 2021, 1895(1), p. 012026.
  5. UNKNOWN AUTHOR. Enhancing asphalt mixture performance with crumb rubber: A sustainable solution for improved durability and mechanical properties.
  6. HASSAN, N. A. – AIREY, G. D. – JAYA, R. P. – MASHROS, N. – AZIZ, M. M. A.: A review of crumb rubber modification in dry mixed rubberised asphalt mixtures. Jurnal Teknologi, 2014, 70(4).
  7. FHWA. User Guidelines for Waste and Byproduct Materials in Pavement Construction. Federal Highway Administration, 2012.
  8. DE ALMEIDA JÚNIOR, A. F. – et al.: Use of scrap tire rubber in place of SBS in modified asphalt as an environmentally correct alternative for Brazil. Journal of Cleaner Production, 2012, 33, pp. 236–238.
  9. AL-MOSAWE, H. M.: Enhancing asphalt mixture performance with crumb rubber: A sustainable solution for improved durability and mechanical properties. E3S Web of Conferences, 2023, 427, p. 03017.
  10. MRAWIRA, D. M. – LUCA, J.: Effect of aggregate type, gradation, and compaction level on thermal properties of hot-mix asphalts. Canadian Journal of Civil Engineering, 2006, 33(11), pp. 1410–1417.
  11. SCRB. Standard Specifications for Roads and Bridges. Section R/9, Hot-Mix Asphaltic Concrete Pavement, 2003.
  12. HEITZMAN, M.: Design and construction of asphalt paving materials with crumb rubber modifier. Transportation Research Record, 1992, 1339.
  13. ZIARI, H. – GOLI, A. – AMINI, A.: Effect of crumb rubber modifier on the performance properties of rubberized binders. Journal of Materials in Civil Engineering, 2016, 28(12), p. 04016156.
  14. MARCH, F. – et al.: Use of ground tire rubber (GTR) in asphalt pavements: literature review and DOT survey, 2016.
  15. AIREY, G.D. – RAHMAN, M. M. – COLLOP, A. C.: Absorption of bitumen into crumb rubber using the basket drainage method. International Journal of Pavement Engineering, 2003, 4(2), pp. 105–119.
  16. MATHIAS LEITE, L. – et al.: Asphalt rubber in Brazil: Pavement performance and laboratory study. Proceedings of the Asphalt Rubber 2003 Conference, Brasilia, Brazil, 2003.
  17. PERALTA, J. – et al.: Mutual changes in bitumen and rubber related to the production of asphalt rubber binders. Construction and Building Materials, 2012, 36, pp. 557–565.
  18. ZAIDAN, M. J. – ALHAMDO, M. H.: The thermal conductivity enhancement of asphalt solar collector: literature review. Journal of Engineering and Sustainable Development (JEASD), 2023 (Conference proceedings).
  19. SUPER-BLOCK CO. LTD.: Test results on thermal properties of Super-Block aerated autoclaved concrete block, 2002.
  20. SUKONTASUKKUL, P.: Use of crumb rubber to improve thermal and sound properties of pre-cast concrete panel. Construction and Building Materials, 2009, 23(2), pp. 1084–1092.
  21. AHMETI, M. – AHMETAJ, M. – KRELANI, V.: Evaluating the potential of recycled asphalt for sustainable road construction: an environmental and economic analysis. Civil Engineering Journal, 2023, 9, pp. 1482–1490.
  22. AHMED, S. N. – ALMUTAIRI, A. L. – DOMAT, W. B.: Non-linear analysis of hybrid reinforced T-beam with partial substitution recycled rubberized concrete. Civil and Environmental Engineering, 2024, 20(1), pp. 397–410.
DOI: https://doi.org/10.2478/cee-2025-0089 | Journal eISSN: 2199-6512 | Journal ISSN: 1336-5835
Language: English
Page range: 1205 - 1221
Published on: Aug 8, 2025
Published by: University of Žilina
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2025 Hassan I. Ibraheem, Hasan Al-Mmosawe, published by University of Žilina
This work is licensed under the Creative Commons Attribution 4.0 License.