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Research Article

Effects of using waste solid sheet photopolymer plates in combination with SBS on the rheological properties of bitumen

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Article: 2245951 | Received 02 Mar 2023, Accepted 03 Aug 2023, Published online: 11 Aug 2023

References

  • Andersson, C., Johnson, J., and Järnström, L., 2009. Ultraviolet-induced aging of flexographic printing plates studied by thermal and structural analysis methods. Journal of Applied Polymer Science, 112 (3), 1636–1646.
  • Baroli, B., 2006. Photopolymerization of biomaterials: issues and potentialities in drug delivery, tissue engineering, and cell encapsulation applications. Journal of Chemical Technology and Biotechnology, 81 (4), 491–499.
  • Bukowski, J., Youtcheff, J., and Harman, T., 2011. The Multiple Stress Creep Recovery (MSCR) Procedure. Office of Pavement Technology - FHWA-HIF-11-038, (April), 1–9.
  • Cao, Z., et al., 2020. Evaluation of viscosity-temperature characteristics and rheological properties of rejuvenated SBS modified bitumen with active warm additive. Construction and Building Materials, 236, 117548.
  • Carpani, C., et al., 2022. Evaluation of the rheological and performance behaviour of bitumen modified with compounds including crumb rubber from waste tires. Construction and Building Materials, 361, 129679.
  • Chen, J.-S., Liao, M.-C., and Shiah, M.-S., 2002. Asphalt modified by styrene-butadiene-styrene triblock copolymer: morphology and model. Journal of Materials in Civil Engineering, 14 (3), 224–229.
  • Crivello, J.V. and Reichmanis, E., 2014. Photopolymer materials and processes for advanced technologies. Chemistry of Materials, 26 (1), 533–548.
  • D’Angelo, J.A., 2009. The relationship of the MSCR test to rutting. Road Materials and Pavement Design, 10 (sup1), 61–80.
  • Feng, Z., et al., 2021. Aging properties of ultraviolet absorber/SBS modified bitumen based on FTIR analysis. Construction and Building Materials, 273, 121713.
  • Ghanoon, S.A., Tanzadeh, J., and Mirsepahi, M., 2020. Laboratory evaluation of the composition of nano-clay, nano-lime and SBS modifiers on rutting resistance of asphalt binder. Construction and Building Materials, 238, 117592.
  • Han, M., et al., 2018. Effect of polystyrene grafted graphene nanoplatelets on the physical and chemical properties of asphalt binder. Construction and Building Materials, 174, 108–119.
  • 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.
  • Kaya, D., et al., 2020. Aging effects on the composition and thermal properties of styrene-butadiene-styrene (SBS) modified bitumen. Construction and Building Materials, 235, 117450.
  • Kaya, D., Topal, A., and McNally, T., 2019. Relationship between processing parameters and aging with the rheological behaviour of SBS modified bitumen. Construction and Building Materials, 221, 345–350.
  • Kaya Özdemir, D., 2022. Morphological Investigation of SBS Modified Bitumen by Innovative Microscopies: AFM and CLSM. Journal of Innovative Transportation, 3 (2), 29–33.
  • Khattak, M.J. and Baladi, G.Y., 1998. Engineering properties of polymer-modified asphalt mixtures. Transportation Research Record: Journal of the Transportation Research Board, 1638 (1), 12–22.
  • Kök, B.V., et al., 2022. Research on the rheological properties of bitumen modified with waste photopolymer. Construction and Building Materials, 346, 128446.
  • Kök, B.V. and Çolak, H., 2011. Laboratory comparison of the crumb-rubber and SBS modified bitumen and hot mix asphalt. Construction and Building Materials, 25 (8), 3204–3212.
  • Kök, B.V., Yilmaz, M., and Akpolat, M., 2016. Performance evaluation of crumb rubber and paraffin modified stone mastic asphalt. Canadian Journal of Civil Engineering, 43 (5), 402–410.
  • Kök, B.V., Yilmaz, M., and Geçkil, A., 2013. Evaluation of low-temperature and elastic properties of crumb rubber– and SBS-modified bitumen and mixtures. Journal of Materials in Civil Engineering, 25 (2), 257–265.
  • Liu, S., et al., 2009. Variance analysis and performance evaluation of different crumb rubber modified (CRM) asphalt. Construction and Building Materials, 23 (7), 2701–2708.
  • Liu, H., et al., 2021. Use of the multiple stress creep recovery (MSCR) test to characterize the rutting potential of asphalt binders: A literature review. Construction and Building Materials, 269, 121320.
  • Loderer, C., Partl, M.N., and Poulikakos, L.D., 2018. Effect of crumb rubber production technology on performance of modified bitumen. Construction and Building Materials, 191, 1159–1171.
  • Ma, F., et al., 2021. Evaluation of high temperature rheological performance of polyphosphoric acid-SBS and polyphosphoric acid-crumb rubber modified asphalt. Construction and Building Materials, 306 (September), 124926.
  • Mashaan, N.S., et al., 2021. Investigating the engineering properties of asphalt binder modified with waste plastic polymer. Ain Shams Engineering Journal, 12 (2), 1569–1574.
  • Masson, J.-F., et al., 2003. Thermodynamics, phase diagrams, and stability of bitumen−polymer blends. Energy & Fuels, 17 (3), 714–724.
  • Navarro, F.J., et al., 2007. Influence of processing conditions on the rheological behavior of crumb tire rubber-modified bitumen. Journal of Applied Polymer Science, 104 (3), 1683–1691.
  • Oliviero Rossi, C., et al., 2015. Polymer modified bitumen: Rheological properties and structural characterization. Colloids and Surfaces A: Physicochemical and Engineering Aspects, 480, 390–397.
  • Ouyang, C., et al., 2006. Improving the aging resistance of styrene-butadiene-styrene tri-block copolymer modified asphalt by addition of antioxidants. Polymer Degradation and Stability, 91 (4), 795–804.
  • Qin, Q., et al., 2014. Morphology, thermal analysis and rheology of Sasobit modified warm mix asphalt binders. Fuel, 115, 416–425.
  • Qurashi, I.A. and Swamy, A.K., 2018. Viscoelastic properties of recycled asphalt binder containing waste engine oil. Journal of Cleaner Production, 182, 992–1000.
  • Reinke, G., 2003. Determination of Mixing and Compaction Temperature of PG Binders Using a Steady Shear Flow Test [online]. Superpave Binder Expert Task Group.
  • Sato, N., et al., 2016. Stretchable, adhesive and ultra-conformable elastomer thin films. Soft Matter, 12 (45), 9202–9209.
  • Sengoz, B., et al., 2017. Investigation of rheological properties of transparent bitumen. Construction and Building Materials, 154, 1105–1111.
  • Şengöz, B., Topal, A., and Gorkem, C., 2013. Evaluation of moisture characteristics of warm mix asphalt involving natural zeolite. Road Materials and Pavement Design, 14 (4), 933–945.
  • Song, W., Huang, B., and Shu, X, 2018. Influence of warm-mix asphalt technology and rejuvenator on performance of asphalt mixtures containing 50% reclaimed asphalt pavement. Journal of Cleaner Production, 192, 191–198.
  • Türkiye statistical agency, 2019. Foreign Trade Stat. [online].
  • Wang, K., et al., 2019. Application of FTIR spectroscopy with solvent-cast film and PLS regression for the quantification of SBS content in modified asphalt. International Journal of Pavement Engineering, 20 (11), 1336–1341.
  • Wasage, T.L.J., Stastna, J., and Zanzotto, L., 2011. Rheological analysis of multi-stress creep recovery (MSCR) test. International Journal of Pavement Engineering, 12 (6), 561–568.
  • World Integrated Trade Solution, 2021. Photographic plates and film; in the flat, sensitised, unexposed, with any side exceeding 225 mm, of any materials other than paper, paperboard or textiles exports by country in 2021 [online].
  • Xiao, Y., et al., 2021. SBS morphology characteristics in asphalt binder and their relation with viscoelastic properties. Construction and Building Materials, 301 (February), 124292.
  • Xinxin, C., et al., 2018. Investigation on possibility of waste vegetable oil rejuvenating aged asphalt. Applied Sciences, 8 (5), 765.
  • Xu, S., et al., 2015. Synthesis and characterization of organic intercalated layered double hydroxides and their application in bitumen modification. Materials Chemistry and Physics, 152, 54–61.
  • Xu, J., et al., 2020. Effect of MDI on the structure and properties of SBS modified bitumen. Construction and Building Materials, 250, 118911.
  • Xu, S., et al., 2021. Comparison of quantitative determination for SBS content in SBS modified asphalt. Construction and Building Materials, 282, 122733.
  • Yalcın, E., et al., 2019. Effect of gilsonite use on storage stability of styrene-butadiene-styrene modified bitumen. Periodica Polytechnica Civil Engineering, 63 (3), 833–844.
  • Yi-qiu, T., et al., 2012. Investigation of the effects of wax additive on the properties of asphalt binder. Construction and Building Materials, 36, 578–584.
  • Yu, H., et al., 2023. Laboratory investigation of storage stability and aging resistance of slightly SBS-modified bitumen binders. Materials, 16 (7), 2564.
  • Yuan, J., et al., 2019. Influences of naphthenic oil on SBS-modified asphalt binder. Journal of Materials in Civil Engineering, 31 (8). 04019162.
  • Zhang, B., et al., 2009. The effect of styrene–butadiene–rubber/montmorillonite modification on the characteristics and properties of asphalt. Construction and Building Materials, 23 (10), 3112–3117.
  • Zhang, R., et al., 2017. High temperature performance of SBS modified bio-asphalt. Construction and Building Materials, 144, 99–105.
  • Zhang, W., et al., 2022. Evaluation method of storage stability of SBS modified bitumen based on dynamic rheological properties. Construction and Building Materials, 323 (January), 126615.
  • Zhang, F., Yu, J., and Han, J., 2011. Effects of thermal oxidative ageing on dynamic viscosity, TG/DTG, DTA and FTIR of SBS- and SBS/sulfur-modified asphalts. Construction and Building Materials, 25 (1), 129–137.
  • Zhu, J., Birgisson, B., and Kringos, N., 2014. Polymer modification of bitumen: advances and challenges. European Polymer Journal, 54, 18–38.

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