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Research Article

Laboratory performance evaluation of waste tire rubber (WTR) and ethylene-vinyl acetate (EVA)-modified asphalt mixtures

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Article: 2224914 | Received 02 Mar 2023, Accepted 05 Jun 2023, Published online: 21 Jun 2023

References

  • Aashto, 2005. Mixture conditioning of hot mix asphalt (hma). R30. American Association of State Highway and Transportation Officials, Washington, DC.
  • Aashto, 2007. Resistance of compacted hot mix asphalt (hma) to moisture induced damage. T 283. American Association of State Highway Transportation Officials, Washington, DC.
  • Aashto, 2010. Standard method of test for determining rutting susceptibility of hot mix asphalt (hma) using the asphalt pavement analyzer (apa). T 340. American Association of State Highway and Transportation Officials, Washington, DC.
  • Astm, 2006a. Standard test method for marshall stability and flow of bituminous mixtures. D6927. ASTM International, West Conshohocken, Pa, USA.
  • Astm, 2006b. Standard test method for sieve analysis of fine and coarse aggregates. ASTM C136. ASTM International, West Conshohocken, Pa, USA.
  • Astm, 2012. Standard test method for indirect tensile (idt) strength of bituminous mixtures. D6931. ASTM International, West Conshohocken, Pa, USA.
  • Brasileiro, L., et al., 2019. Reclaimed polymers as asphalt binder modifiers for more sustainable roads: a review. Sustainability, 11 (3), 646.
  • Brovelli, C., et al., 2015. Using polymers to improve the rutting resistance of asphalt concrete. Construction and Building Materials, 77, 117–123.
  • Chen, L.Y., et al., 2011. Study on processing technology of waste tire crumb rubber modified asphalt. Advanced Materials Research, 305, 402–405.
  • Chen, B., et al., 2023. Influence of asphalt mixture workability on the distribution uniformity of asphalt, aggregate particles and asphalt film during mixing process. Construction and Building Materials, 377, 131128.
  • China, 2004. Standard test methods of bitumen and bituminous mixtures for highway engineering. JTG F40-2004. Research institute of highway ministry of transport of china.
  • China, 2011. Standard test methods of bitumen and bituminous mixtures for highway engineering. JTG E20-2011. Research institute of highway ministry of transport of China.
  • Entezam, M., Aghjeh, M.K.R., and Ghaffari, M, 2017. Electron beam irradiation induced compatibilization of immiscible polyethylene/ethylene vinyl acetate (pe/eva) blends: mechanical properties and morphology stability. Radiation Physics and Chemistry, 131, 22–27.
  • Fang, C., et al., 2016. Influence of modification process parameters on the properties of crumb rubber/eva modified asphalt. Journal of Applied Polymer Science, 133, 27.
  • Ge, D., et al., 2018. The laboratory performance of asphalt mixture with amorphous poly alpha olefins (apao) modified asphalt binder. Construction and Building Materials, 188, 676–684.
  • Gibreil, H.a.A., and Feng, C.P., 2017. Effects of high-density polyethylene and crumb rubber powder as modifiers on properties of hot mix asphalt. Construction and Building Materials, 142, 101–108.
  • Guo, S., et al., 2017. Evaluation of properties and performance of rubber-modified concrete for recycling of waste scrap tire. Journal of Cleaner Production, 148, 681–689.
  • Hao, K., et al., 2023. High-value recycling of waste tire rubber powder by wet mixing method. Journal of Cleaner Production, 384, 135592.
  • Hijazi, A., et al., 2018. Solar pyrolysis of waste rubber tires using photoactive catalysts. Waste Management, 77, 10–21. Available from: https://www.ncbi.nlm.nih.gov/pubmed/30008400.
  • Hong, Z., et al., 2022. Effect of styrene-butadiene-styrene (sbs) on laboratory properties of low-density polyethylene (ldpe)/ethylene-vinyl acetate (eva) compound modified asphalt. Journal of Cleaner Production, 338, 130677.
  • Ju, Z., et al., 2022. The performance evaluation of high content bio-asphalt modified with polyphosphoric acid. Construction and Building Materials, 361. Available from: <Go to ISI>://WOS:000897061900004.
  • Kalantar, Z.N., Karim, M.R., and Mahrez, A, 2012. A review of using waste and virgin polymer in pavement. Construction and Building Materials, 33, 55–62.
  • Leng, Z., Padhan, R.K., and Sreeram, A, 2018. Production of a sustainable paving material through chemical recycling of waste pet into crumb rubber modified asphalt. Journal of Cleaner Production, 180, 682–688.
  • Liang, M., et al., 2015. Investigation of the rheological properties and storage stability of cr/sbs modified asphalt. Construction and Building Materials, 74, 235–240.
  • Liang, M., et al., 2017. Rheological property and stability of polymer modified asphalt: effect of various vinyl-acetate structures in eva copolymers. Construction and Building Materials, 137, 367–380.
  • Liu, H., et al., 2022a. Exploration for uv aging characteristics of asphalt binders based on response surface methodology: insights from the uv aging influencing factors and their interactions. Construction and Building Materials, 347. Available from: <Go to ISI>://WOS:000888549900001.
  • Liu, F., et al., 2023. Experimental investigation on the performance of the asphalt mixture with ceramic fiber. Journal of Cleaner Production, 384, 135585.
  • Liu, W., Yan, K., and Ji, H, 2022b. Bonding performance evaluation on wtr-apao composite modified asphalt as waterproof adhesive layer for concrete bridge. Construction and Building Materials, 349, 128667.
  • Lo Presti, D., 2013. Recycled tyre rubber modified bitumens for road asphalt mixtures: A literature review. Construction and Building Materials, 49, 863–881.
  • Lv, S., et al., 2018. Comparisons of synchronous measurement methods on various moduli of asphalt mixtures. Construction and Building Materials, 158, 1035–1045.
  • Ma, Q., et al., 2022. Analysis on the influence of different factors on the high temperature performance of composite rubber asphalt. Journal of China & Foreign Highway, 42 (3), 225–230.
  • Ma, T., Wang, H., and He, L., 2016. Mechanism and performance evaluation of different crumb rubber modified asphalt. DEStech Transactions on Engineering and Technology Research, Ictim, 2016, 11–19.
  • Modarres, A, 2013. Investigating the toughness and fatigue behavior of conventional and sbs modified asphalt mixes. Construction and Building Materials, 47, 218–222.
  • Modarres, A., and Hamedi, H, 2014. Effect of waste plastic bottles on the stiffness and fatigue properties of modified asphalt mixes. Materials & Design, 61, 8–15.
  • Navarro, F.J., et al., 2004. Thermo-rheological behaviour and storage stability of ground tire rubber-modified bitumens. Fuel, 83 (14-15), 2041–2049.
  • Navarro, F.M., and Gámez, M.C.R., 2012. Influence of crumb rubber on the indirect tensile strength and stiffness modulus of hot bituminous mixe.
  • Padhan, R.K., Gupta, A.A., and Sreeram, A, 2018. Effect of cross-linking agent on ethylene vinyl acetate/polyoctenamer modified bitumen. Road Materials and Pavement Design, 20 (7), 1615–1623.
  • Ruikun, D., et al., 2022. Preparation of asphalt modifier made of waste tire crumb rubber and waste cooking oil. Journal of Materials in Civil Engineering, 34 (8).
  • Shen, J., et al., 2009. Influence of surface area and size of crumb rubber on high temperature properties of crumb rubber modified binders. Construction and Building Materials, 23 (1), 304–310.
  • Singh, M., Kumar, P., and Maurya, M.R, 2013. Effect of aggregate types on the performance of neat and eva-modified asphalt mixtures. International Journal of Pavement Engineering, 15 (2), 163–173.
  • Subhy, A, 2017. Advanced analytical techniques in fatigue and rutting related characterisations of modified bitumen: literature review. Construction and Building Materials, 156, 28–45.
  • Subhy, A., Lo Presti, D., and Airey, G, 2015. Rubberised bitumen manufacturing assisted by rheological measurements. Road Materials and Pavement Design, 17 (2), 290–310.
  • Sun, D., and Lu, W, 2003. Investigation and improvement of storage stability of sbs modified asphalt. Petroleum Science and Technology, 21 (5-6), 901–910.
  • Van Thanh, D., and Feng, C.P., 2013. Study on marshall and rutting test of sma at abnormally high temperature. Construction and Building Materials, 47, 1337–1341.
  • Wang, H., et al., 2013. Analysis on fatigue crack growth laws for crumb rubber modified (crm) asphalt mixture. Construction and Building Materials, 47, 1342–1349.
  • Wang, S., et al., 2019. Laboratory research on the performance of stress-absorption interlayer (sai) of waste tire rubber and amorphous ploy alpha olefin modified asphalt. Construction and Building Materials, 223, 830–840.
  • Wang, H., et al., 2020. Experimental characterization of storage stability of crumb rubber modified bitumen with warm-mix additives. Construction and Building Materials, 249, 118840.
  • Wu, S., and Montalvo, L, 2021. Repurposing waste plastics into cleaner asphalt pavement materials: a critical literature review. Journal of Cleaner Production, 280, 124355.
  • Xiang, L., Cheng, J., and Que, G, 2009. Microstructure and performance of crumb rubber modified asphalt. Construction and Building Materials, 23 (12), 3586–3590.
  • Xu, S., et al., 2015. Effect of ultraviolet aging on rheological properties of organic intercalated layered double hydroxides modified asphalt. Construction and Building Materials, 75, 421–428. Available from:<Go to ISI>://WOS:000348255700049.
  • Xu, G., et al., 2022. Rheological properties of rubber modified asphalt as function of waste tire rubber reclaiming degree. Journal of Cleaner Production, 332, 130113.
  • Yan, K., et al., 2015a. Laboratory investigation of the characteristics of sma mixtures under freeze–thaw cycles. Cold Regions Science and Technology, 119, 68–74.
  • Yan, K., et al., 2016. Laboratory investigation of waste tire rubber and amorphous poly alpha olefin modified asphalt. Construction and Building Materials, 129, 256–265.
  • Yan, K., et al., 2020a. Characteristics of compound asphalt modified by waste tire rubber (wtr) and ethylene vinyl acetate (eva): conventional, rheological, and microstructural properties. Journal of Cleaner Production, 258, 120732.
  • Yan, K., et al., 2020b. High temperature rheological properties of apao and eva compound modified asphalt. Construction and Building Materials, 233, 117246.
  • Yan, K., et al., 2020c. Laboratory performance of asphalt mixture with waste tyre rubber and apao modified asphalt binder. International Journal of Pavement Engineering, 23 (1), 59–69.
  • Yan, K., et al., 2021. Influence of ethylene-vinyl acetate on the performance improvements of low-density polyethylene-modified bitumen. Journal of Cleaner Production, 278, 123865.
  • Yan, K., et al., 2022. Mechanical behaviors of asphalt mixtures modified with European rock bitumen and waste cooking oil. Construction and Building Materials, 319, 125909.
  • Yan, K., Xu, H., and You, L, 2015b. Rheological properties of asphalts modified by waste tire rubber and reclaimed low density polyethylene. Construction and Building Materials, 83, 143–149.
  • Yang, H., and Dong, R, 2022. Investigating the properties of rejuvenated asphalt with the modified rejuvenator prepared by waste cooking oil and waste tire crumb rubber. Construction and Building Materials, 315, 125692.
  • Yu, X., et al., 2014. Characterization of the effect of foaming water content on the performance of foamed crumb rubber modified asphalt. Construction and Building Materials, 67, 279–284.
  • Yu, R., et al., 2017. Dynamic stability of ethylene-vinyl acetate copolymer/crumb rubber modified asphalt. Construction and Building Materials, 156, 284–292.
  • Yu, H., et al., 2019. Recycling waste packaging tape into bituminous mixtures towards enhanced mechanical properties and environmental benefits. Journal of Cleaner Production, 229, 22–31.
  • Yu, H., Leng, Z., and Gao, Z, 2016. Thermal analysis on the component interaction of asphalt binders modified with crumb rubber and warm mix additives. Construction and Building Materials, 125, 168–174.
  • Zarei, M., et al., 2020. Technical, economic, and environmental investigation of the effects of rubber powder additive on asphalt mixtures. Journal of Transportation Engineering, Part B: Pavements, 146 (1), 04019039.
  • Zhao, X., et al., 2018. Laboratory research on the properties of warm amorphous poly alpha olefin–modified asphalt mixture using sasobit and deurex. Journal of Materials in Civil Engineering, 30 (5), 04018076.
  • Zou, L., Zhang, Y., and Liu, B, 2021. Aging characteristics of asphalt binder under strong ultraviolet irradiation in northwest China. Sustainability, 13 (19). Available from: <Go to ISI>://WOS:000755779300001.

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