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Research Article

Mechanical, anti-icing and de-icing performance of porous asphalt mixture containing chloride-based particle

ORCID Icon, , , &
Article: 2262087 | Received 06 Oct 2022, Accepted 18 Sep 2023, Published online: 06 Oct 2023

References

  • Alvarez, A.E., Martin, A.E., and Estakhri, C, 2011. A review of mix design and evaluation research for permeable friction course mixtures. Construction and Building Materials, 25 (3), 1159–1166.
  • Chen, J., et al., 2018. Directional difference of water permeability of porous asphalt mixture and influence of pore structure. Journal of Southeast University (Natural Science Edition), 48 (5), 920–926.
  • Chen, J., et al., 2018. Expansion and contraction of clogged open graded friction course exposed to freeze-thaw cycles and degradation of mechanical performance. Construction and Building Materials, 182, 167–177.
  • Chen, J., et al., 2018. Experimental study on anti-icing and deicing performance of polyurethane concrete as road surface layer. Construction and Building Materials, 161, 598–605.
  • Fauzi, N.M., et al., 2020. Volumetric properties and resilient modulus of stone mastic asphalt incorporating cellulose fiber. IOP Conference Series: Materials Science and Engineering. IOP Publishing, 712 (1), 12028.
  • Gong, C., and Zheng, T., 2013. New technology study on cold-region highway tunnel pavement anti-skidding by electrical heating snowmelt. Highway, 4, 205–209.
  • Jasni, N.E., et al., 2022. Marshall stability of porous asphalt mixture incorporating kenaf fiber. Archives of Civil Engineering, 68 (1), 379–393.
  • Jasni, N.E., Masri, K.A., and Jaya, R.P., 2021. A review of morphological and chemical properties of porous asphalt. Construction, 1 (2), 45–49.
  • Lépy, É., et al., 2016. Role of winter weather conditions and slipperiness on tourists’ accidents in Finland. International Journal of Environmental Research and Public Health, 13 (8), 822.
  • Li, F., and Wang, Z., 2012. Experiment on road performance of asphalt mixture with automatic long-term snowmelt agent. Journal of Highway and Transportation Research and Development (English Edition), 6 (4), 11–17.
  • Liu, Z., Gao, J., and Zang, Z., 2016. Analysis of road performance and salt releasing characteristics of antifreeze asphalt concrete. Highway, 61(8), 199–204.
  • Liu, H., and Hao, P., 2008. Technology and development trend of pavement deicing. Road Machinery & Construction Mechanization, 25 (11), 17–21.
  • Luo, S., and Yang, X, 2015. Performance evaluation of high-elastic asphalt mixture containing deicing agent Mafilon. Construction and Building Materials, 94, 494–501.
  • Ma, T., et al., 2016. Experimental study of deicing asphalt mixture with anti-icing additives. Construction and Building Materials, 127, 653–662.
  • Salah, F.M., et al., 2017. Aip conference proceedings. AIP Conference Proceedings, 1901 (1), 130019.
  • Song, Y.L., Liu, P., and Ren, H, 2013. Study on anti-sliding performance of asphalt pavement with Mafilon thaw material. Applied Mechanics and Materials, 275, 2029–2032.
  • Sun, W., et al., 2018. The state of the art: application of green technology in sustainable pavement. Advances in Materials Science and Engineering, 6, 1–19.
  • Tan, T., et al., 2019. Safety aspects on icy asphalt pavement in cold region through field investigations. Cold Regions Science and Technology, 161, 21–31.
  • Xu, R, 2011. Research on ice breaking performance of crumb rubber asphalt mixture. Master. Chang’an Universtity (People Republic of China).
  • Xu, H., Tan, Y., and Zhou, C., 2015. Simulation analysis of snow melting characteristics of solar-ground source coupled snow-melting system for pavement. Acta Energiae Solaris Sinica, 36 (4), 955–962.
  • Yao, L, 2012. Research on key technology of granulated crumb rubber anti-ice asphalt pavement. Doctor. Chang’an Universtity (People Republic of China).
  • Zhang, L., 2010. The study of salt anti-freezing asphalt mixtures. Doctor. Chang’an University (People Republic of China).
  • Zhang, Y., Liu, Z., and Shi, X., 2021. Development and use of salt-storage additives in asphalt pavement for anti-icing: literature review. Journal of Transportation Engineering, Part B: Pavements, 147 (4), 03121002.
  • Zheng, M., et al., 2015. Evaluation of long-term performance of anti-icing asphalt pavement. Construction and Building Materials, 84, 277–283.
  • Zheng, M., et al., 2016. Laboratory evaluation of long-term anti-icing performance and moisture susceptibility of chloride-based asphalt mixture. International Journal of Pavement Research and Technology, 9 (2), 140–148.
  • Zheng, C., et al., 2021. Study on the microscopic damage of porous asphalt mixture under the combined action of hydrodynamic pressure and ice crystal frost heave. Construction and Building Materials, 303, 124489.
  • Zhou, C., and Tan, Y., 2009. Study of de-icing performance of crumb rubber granular asphalt mixture. Journal of Build Materials, 12 (6), 672–675.

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