This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
Aguiar-Moya J.P., Baldi-Sevilla A., Salazar-Delgado J., Pacheco-Fallas J.F., Loria-Salazar, L., Reyes-Lizcano F., Cely-Leal N. Adhesive properties of asphalts and aggregates in tropical climates. Int. J. Pavement Eng., 19, 738–747, 2018.Search in Google Scholar
Chomicz-Kowalska A. Laboratory testing of low temperature asphalt concrete produced in foamed bitumen technology with fiber reinforcement Bulletin of the Polish Academy of Sciences Technical Sciences 65.6: 779-790, 2017.Search in Google Scholar
Chen W.X., Li Y.S., Chen S., Zheng C.F. Properties and economics evaluation of utilization of oil shale waste as an alternative environmentally-friendly building materials in pavement engineering. Constr. Build. Mater., 259, 119698, 2020.Search in Google Scholar
Cui S., Blackman B.R.K., Kinloch A.J., Taylor A.C. Durability of asphalt mixtures: Effect of aggregate type and adhesion promoters. Int. J. Adhes. Adhes, 54, 100–111, 2014.Search in Google Scholar
Edwards, Ylva and Redelius, Per. Rheological effect of waxes in bitumen. J. of Energy and Fuels, ISSN 0887-0624, E-ISSN 1520-5029, Vol. 17, no 3, p. 511-520, DOI: 10.1021/ef020202b, 2003.Search in Google Scholar
Feng P., Wang H., Ding H., Xiao J., Hassan M. Effects of surface texture and its mineral composition on interfacial behavior between asphalt binder and coarse aggregate. Constr. Build. Mater., 262, 120869, 2020.Search in Google Scholar
Hamedi G.H., Sahraei A., Esmaeeli M.R. Investigate the effect of using polymeric anti-stripping additives on moisture damage of hot mix asphalt. Eur. J. Environ. Civ. Eng. 2021, 25, 90–103.Search in Google Scholar
Hartman A.M., Gilchrist M.C. Evaluating four-point bend fatigue of asphalt mix using image analysis. J. Mater. Civ. Eng., 16, 60–68, 2004 .Search in Google Scholar
Iwanski M, Buczynski P and Mazurek G. Optimization of the road binder used in the base layer in the road construction Construction and Building Materials Vol. 125 30 p. 1044-1054 http://dx.doi.org/10.1016/j.conbuildmat.2016.08.112Lou K., Wu X., Xiao P., Zhang C. Investigation on Fatigue Performance of Asphalt Mixture Reinforced by Basalt Fiber. Materials, 14, 5596, 2021.Search in Google Scholar
Lu X., Isacsson U. Rheological characterization of styrene-butadiene-styrene copolymer modified bitumens. Constr. Build. Mater., 11, 23–32, 1997.Search in Google Scholar
Lucas Júnior J.L.O., Babadopulos L.F.A.L., Soares J.B., Souza L.T. Evaluating the effect of amine-based anti-stripping agent on the fatigue life of asphalt pavements. Int. J. Pavement Eng., 1–11, 2021.Search in Google Scholar
Maia M.M.A.S., Dinis-Almeida M., Martinho F.C.G. The Influence of the Affinity between Aggregate and Bitumen on the Mechanical Performance Properties of Asphalt Mixtures. Materials, 14, 6452. https://doi.org/10.3390/ma14216452, 2021.Search in Google Scholar
Masad E. et al. Test Methods for Characterizing Aggregate Shape, Texture, and Angularity. Technical Report, National Cooperative Highway Research Program— NCHRP, 2007.Search in Google Scholar
Bing Sh, Hong L, Thomas B. k. and Lawrence K. D. Surface Properties of Cell-treated Polyethylene Terephthalate. American Journal of Biochemistry and Biotechnology,vol 4,No.2, 170-174, 2006.Search in Google Scholar
Mehrara A., Khodaii A. A review of state of the art on stripping phenomenon in asphalt concrete. Constr. Build. Mater., 38, 423–442, 2013.Search in Google Scholar
Polacco G., Stastna, J., Biondi D., Zanzotto L. Relation between polymer architecture and nonlinear viscoelastic behavior of modified asphalts. Curr. Opin. Colloid Interface Sci., 11, 230–245, 2006.Search in Google Scholar
Wei L., Lv J., Rong H., Yang X. Research on Fatigue Characteristics and Prediction of Large-Particle Asphalt Mixtures Based on Four-Point Bending Tests. Sustainability, 16, 4844. https://doi.org/10.3390/su16114844, 2024.Search in Google Scholar
Xiaohu Lu, Ulf Isacsson. Influence of styrene-butadiene-styrene polymer modification on bitumen viscosity. Fuel.Volume 76, Issues 14–15, Pages 1353-1359. https://doi.org/10.1016/S0016-2361(97)00144-0, November–December 1997.Search in Google Scholar
Yin Y., Chen, H., Kuang D., Song L., Wang L. Effect of chemical composition of aggregate on interfacial adhesion property between aggregate and asphalt. Constr. Build. Mater., 146, 231–237, 2017.Search in Google Scholar
Zhang G., Qiu J., Zhao J., Wei D., Wang, H. Development of Interfacial Adhesive Property by Novel Anti-Stripping Composite between Acidic Aggregate and Asphalt. Polymers, 12, 473, 2020.Search in Google Scholar
Zhang J., Apeagyei A.K., Airey G.D., Grenfell J.R.A. Influence of aggregate mineralogical composition on water resistance of aggregate–bitumen adhesion. Int. J. Adhes. Adhes, 62, 45–54, 2015.Search in Google Scholar