336
Views
14
CrossRef citations to date
0
Altmetric
Articles

Influence of diatomite filler on rheological properties of porous asphalt mastic

, , , ORCID Icon, , , , & show all
Pages 428-436 | Received 01 Dec 2017, Accepted 28 May 2018, Published online: 18 Jun 2018

References

  • Airey, G.D., 1997. Rheological characteristics of polymer modified and aged bitumens. Thesis (PhD). University of Nottingham, UK.
  • Ali, S.I.A., et al., 2015. Physical and rheological properties of acrylate-styrene-acrylonitrile modified asphalt cement. Construction and Building Materials, 93 (2015), 326–334. doi: 10.1016/j.conbuildmat.2015.05.016
  • Al-Mansob, R.A., et al., 2016. Rheological characteristics of unaged and aged epoxidised natural rubber modified asphalt. Construction and Building Materials, 102, 190–199. doi: 10.1016/j.conbuildmat.2015.10.133
  • Alvarez, A.E., Martin, A.E., and Estakhri, C., 2010. Drainability of permeable friction course mixtures. Journal of Materials in Civil Engineering, 22 (6), 556–564. doi: 10.1061/(ASCE)MT.1943-5533.0000053
  • Antunes, V., et al., 2016. Effect of the chemical composition of fillers in the filler-bitumen interaction. Construction and Building Materials, 104 (2016), 85–91. doi: 10.1016/j.conbuildmat.2015.12.042
  • Buttlar, W.G., et al., 1999. Understanding asphalt mastic behavior through micromechanics. Transportation Research Record 1681, Transportation Research Board. Washington, D.C. 157–169.
  • Cardone, F., et al., 2015. Influence of mineral fillers on the rheological response of polymer-modified bitumens and mastics. Journal of Traffic and Transportation Engineering, 2 (6), 373–381.
  • Chen, J.S., 1997. Rheological properties of asphalt-mineral filler mastics. Journal of Materials, Concrete Structures and Pavements, 36 (571), 269–277.
  • Chen, J.S., et al., 2008. Experimental and theoretical characterization of the engineering behavior of bitumen mixed with mineral filler. Materials and Structures, 41, 1015–1024. doi: 10.1617/s11527-007-9302-5
  • Chen, X.L., et al., 2010. The research on the performance of asphalt mastics modified by mineral fillers. Advanced Materials Research, 158, 287–297. doi: 10.4028/www.scientific.net/AMR.158.287
  • Cong, P., Chen, S., and Chen, H, 2012. Effects of diatomite on the properties of asphalt binder. Construction and Building Materials, 30, 495–499. doi: 10.1016/j.conbuildmat.2011.11.011
  • Diab, A. and You, Z., 2014. Evaluation of foam-based warm mix asphalt modified with nano-sized hydrated lime using multiple creep and recovery tests. Transportation & Development Institute (T&DI) Congress: Planes, Trains, and Automobiles, 230–238.
  • Elnasri, M., Airey, G., and Thom, N., 2013. Experimental investigation of bitumen and mastics under shear creep and creep-recovery testing. Airfield and Highway Pavement 2013: Sustainable and Efficient Pavements, 921–932. doi: 10.1061/9780784413005.076
  • Epps, J., Berger, E., and Anagnos, J.N., 2003. Treatments. In: Moisture sensitivity of asphalt pavements: a national seminar. Washington, D.C.: Transportation Research Board of the National Academies. 117–183.
  • Faheem, A., et al., 2008. Effect of mineral filler on damage resistance characteristics of asphalt binders. Journal of the Association of Asphalt Paving Technologists, 77, 885–908.
  • Golalipour, A., 2011. Modification of multiple stress creep and recovery test procedure and usage in specification. Master’s Thesis. University of Wisconsin, Madison.
  • Huang, B., Shu, X., and Chen, X, 2007. Effects of mineral fillers on hot-mix asphalt laboratory-measured properties. International Journal of Pavement Engineering, 8 (1), 1–9. doi: 10.1080/10298430600819170
  • Ibrahim, S.S, 2012. Diatomite ores : origin, characterization and applications. Journal of International Environmental Application & Science, 7 (1), 191–199.
  • Jahromi, S.G. and Khodaii, A., 2009. Master curves for stiffness asphalt concrete. International Journal of Pavement Research and Technology, 2 (4), 148–153.
  • Joshi, C., et al., 2013. Determining the rheological properties of asphalt binder using dynamic shear rheometer (DSR) for selected pavement stretches. International Journal of Research in Engineering and Technology, 11, 192–196.
  • Kastis, D., et al., 2006. Properties and hydration of blended cements with calcareous diatomite. Cement and Concrete Research, 36, 1821–1826. doi: 10.1016/j.cemconres.2006.05.005
  • Kataware, A.V. and Singh, D., 2015. Rheological performance of asphalt binders under different creep and recovery periods in MSCR test. International Journal of Pavement Research and Technology, 8 (6), 410–418.
  • Kavussi, A. and Bakhtiari, J, 2014. Application of different testing methods for evaluating effects of hydrated lime in bituminous mixes. Procedia Engineering, 77, 148–154. doi: 10.1016/j.proeng.2014.07.027
  • Khadivar, A. and Kavussi, A, 2013. Rheological characteristics of SBR and NR polymer modified bitumen emulsions at average pavement temperatures. Construction and Building Materials, 47, 1099–1105. doi: 10.1016/j.conbuildmat.2013.05.093
  • Lee, D-Y., 1964. The effect of filler on asphalt cement mastics. Thesis (PhD). Iowa State University.
  • Li, X., Nan, X., and Wei, D, 2012. High temperature rheology property of asphalt mastic with different mineral filler. Advanced Materials Research, 450–451, 527–531. doi: 10.4028/www.scientific.net/AMR.450-451.527
  • Liao, M.C., 2007. Small and large strain rheological and fatigue characterisation of bitumen-filler mastics. Thesis (PhD). University of Nottingham, UK.
  • Liao, M.C., Airey, G., and Chen, J.S, 2013. Mechanical properties of filler-asphalt mastics. International Journal of Pavement Research and Technology, 6 (5), 576–581.
  • Liao, M.C., Chen, J.S., and Tsou, K.W, 2012. Fatigue characteristics of bitumen-filler mastics and asphalt mixtures. Journal of Materials in Civil Engineering, 24 (7), 916–923. doi: 10.1061/(ASCE)MT.1943-5533.0000450
  • Little, D.N. and Petersen, J.C, 2005. Unique effects of hydrated lime filler on the performance-related properties of asphalt cements: physical and chemical interactions revisited. Journal of Materials in Civil Engineering, 17 (2), 207–218. doi: 10.1061/(ASCE)0899-1561(2005)17:2(207)
  • Movilla-Quesada, D., et al., 2015. Experimental study on stiffness development of asphalt mixture containing cement and Ca(OH)2 as contribution filler. Materials and Design, 74 (2015), 157–163. doi: 10.1016/j.matdes.2015.02.026
  • Muniandy, R., Aburkaba, E., and Mahdi, L.M.J, 2013. Effect of mineral filler type and particle size on asphalt-filler mastic and stone mastic asphalt laboratory measured properties. Australian Journal of Basic and Applied Sciences, 7 (11), 475–487.
  • Public Works Department (PWD), 2008. Standard specification for road works – section 4: flexible pavement. Public Works Department, Ministry of Works Malaysia. Kuala Lumpur. JKR/SPJ/2008.
  • Robati, M., Carter, A., and Perraton, D, 2015. New conceptual model for filler stiffening effect on asphalt mastic of microsurfacing. Journal of Materials in Civil Engineering, 27 (11), 1–11. doi: 10.1061/(ASCE)MT.1943-5533.0001264
  • Shukry, N.A.M., et al., 2016. Experimental evaluation of anti-stripping additives on porous asphalt mixtures. Jurnal Teknologi (Sciences & Engineering), 78 (7-2), 113–119.
  • Taylor, R., 2007. Surface interactions between bitumen and mineral fillers and their effects on the rheology of bitumen-filler. Thesis (PhD). University of Nottingham, UK.
  • Wang, H., et al., 2011. Effect of mineral filler characteristics on asphalt mastic and mixture rutting potential. Transportation Research Record 2208, Transportation Research Board. Washington, D.C. 33–39.
  • Zhou, S.B., Liu, S., and Xiang, Y., 2017. Effects of filler characteristics on the performance of asphalt mastic: a statistical analysis of the laboratory testing results. International Journal of Civil Engineering. doi:10.1007/s40999-017-0272-x.
  • Zulkati, A., Diew, W.Y., and Delai, D.S., 2012. Effects of fillers on properties of asphalt-concrete mixture. Journal of Transportation Engineering, 138 (7), 902–910. doi: 10.1061/(ASCE)TE.1943-5436.0000395

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.