Uso de etileno vinil acetato (EVA) en mezcla asfáltica: Una revisión literaria
Use of ethylene vinyl acetate (EVA) in asphalt mix: A literary reviewContenido principal del artículo
En los últimos años se ha visto afectada la infraestructura vial debido al incremento del tráfico y las variaciones de temperatura, esto ha ocasionado la aparición de surcos y grietas. El presente trabajo tiene como objetivo realizar una revisión sistemática de la literatura sobre el uso de etileno vinil acetato (EVA) en mezclas asfálticas. Se realizó una revisión de 50 artículos científicos indexados entre los años 2015 al 2021, recopilados de distintas de datos obtenidas de Scopus, Sciencedirect, ProQuest, IOP Science y Ebsco. Sobre la revisión se encontraron investigaciones de la influencia de EVA en las propiedades del asfalto. Se examinó el proceso de selección de contenido óptimo, los cambios en las propiedades y los resultados obtenidos. Se pudo concluir que la adición de EVA mejora las propiedades, incrementa la estabilidad, disminuye la formación de los surcos y las deformaciones.
In recent years the road infrastructure has been affected due to increased traffic and temperature variations, this has caused the appearance of grooves and cracks. The present work aims to carry out a systematic review of the literature on the use of ethylene vinyl acetate (EVA) in asphalt mixtures. A review of 50 scientific articles indexed between the years 2015 to 2021 was carried out, collected from different databases from Scopus, Sciencedirect, ProQuest, IOP Science and Ebsco. Investigations of the influence of EVA on the properties of asphalt. The optimal content selection process, the changes in the properties and the results obtained were reviewed. It was concluded that the addition of EVA improves the properties, increases the stability, and reduces the formation of grooves and deformations.
Descargas
Detalles del artículo
Adams, J., Elwardany, M., Planche, J.-P., Boysen, R., y Rovani, J. (2019). Diagnostic Techniques for Various Asphalt Refining and Modification Methods. Energy and Fuels, 33(4), 2680-2698. doi:10.1021/acs.energyfuels.8b03738
Ahmed, A., Said, S., Lu, X., y Carlsson, H. (2019). Pavement performance follow-up and evaluation of polymer-modified test sections. International Journal of Pavement Engineering, 20(12), 1474-1487. doi:10.108 0/10298436.2018.1435878
Alatas, T., y Yilmaz, M. (2017). Low temperature properties of hot mix asphalts prepared with different polymer modified binders.
Gradjevinar, 69(2), 93-104. doi:10.14256/ JCE.1517.2015
Alves Gama, D., De F. L. Lucena, A., Monteiro, V., Paiva, W., y De Souza, L. (2015). Verification of the Effect of EVA’s Residues Addition and the Aging in Mechanical Properties of Asphalt Mixtures. Petroleum Science and Technology, 33(8), 936-942.doi:10.1080/10916466.2015.1031348
Ayupov, D., Khakimullin, Y., y Kazakulov, R. (2020). Bitumen chemical modification by a thermoplastic polymer. IOP Conference Series: Materials Science and Engineering, 890, págs. 1615-1623. Kazán, Rusia. doi:10. 1080/14680629.2018.1467335
Brovelli, C., Crispino, M., Pais, J., y Pereira, P. (2015). Using polymers to improve the rutting resistance of asphalt concrete. Construction and Building Materials, 77, 117-123. doi:10.1016/j. conbuildmat.2014.12.060
Celauro, C., Bosurgi, G., Sollazzo, G., y Ranieri,M. (2019). Laboratory and in-situ tests for estimating improvements in asphalt concrete with the addition of an LDPE and EVA polymeric compound. Construction and Building Materials, 196, 714-726. doi:10.1016/j.conbuildmat.2018.11.152
Chen, J., Yan, K., y You, L. (2020). Rheological and Spectroscopic Properties of Ethylene Vinyl Acetate–Modified Rubberized Asphalt. Journal of Materials in Civil Engineering, 32(6). doi:10.1061/(asce) mt.1943-5533.0003187
Costa, L., Silva, H., Peralta, J., y Oliveira, J. (2019). Using waste polymers as a reliable alternative for asphalt binder modification– Performance and morphological assessment. Construction and Building Materials, 198, 237-244. doi:10.1016/j. conbuildmat.2018.11.279
Diab, Aboelkasim. (2017). Studying Viscosity of Asphalt Binders and Effect of Varied Production Temperatures on Engineering Properties of HMA Mixtures. Canadian Journal of Civil Engineering, 44(1), 1-9. doi:10.1139/cjce-2016-0383
Diab, Aboelkasim; You, Zhanping. (2017). Small and large strain rheological characterizations of polymer- and crumb rubber-modified asphalt binders. Construction and Building Materials, 144, 168-177. doi:10.1016/j. conbuildmat.2017.03.175
Diab, A., You, Z., Adhikari, S., You, L., Li, X., y El-Shafie, M. (2020). Investigating the mechanisms of rubber, styrene-butadiene- styrene and ethylene-vinyl acetate in asphalt binder based on rheological and distress-related tests. Construction and Building Materials, 262. doi:10.1016/j. conbuildmat.2020.120744
Diab, A., You, Z., Li, X., Pais, J., Yang, X., y Chen,S. (2020). Rheological models for non- newtonian viscosity of modified asphalt binders and mastics. Egyptian Journal of Petroleum, 29(2), 105-112. doi:10.1016/j. ejpe.2019.12.002
Domingos, M., Faxina, A., y Bernucci, L. (2019). Rutting behavior and rheological modeling of EVA-modified binders in the mixture and binder scale. Materials and Structures/Materiaux et Constructions, 52(2). doi:10.1617/s11527-019-1335-z
Eldouma, I., y Xiaoming, H. (2021). Evaluation of the Additives’ Behaviour to Determine the Best Modifier for Improving Asphalt Performance at High Temperature. Advances in Civil Engineering, 2021. doi:10.1155/2021/8879415
Fakhri, M., y Kianfar, A. (2021). Comparison of BBR results of EVA polymer and nano- CaCO3-modified bitumen using burger model, relaxation modulus, dissipation energy ratio, ANOVA, and artificial neural networks. nternational Journal of Pavement Research and Technology, 14(1), 85-97. doi:10.1007/s42947-020-0006-3
González, E., Costa, L., Silva, H., y Hilliou, L.(2016). Rheological characterization of EVA and HDPE polymer modified bitumens under large deformation at 20 °C. Construction and Building Materials, 112, 756-764. doi:10.1016/j.conbuildmat.2016.02.192
Hrušková, L., Hor?á?ek, M., y Dau?ík, P. (2016). Comparison of changes of basic parameters of asphalt caused by various additives. Chemical Papers, 70(3), i-viii. doi:10.1515/chempap-2016-0010
Ivanova, I., Kutlizamaev, R., Popkov, A., y Tajik, A. (2020). Using of ethylene-vinyl acetate copolymer for manufacture of road surfaces. OP Conference Series: Earth and Environmental Science. Kazán, Rusia. doi:10.1088/1755-1315/516/1/012048
Janmohammadi, O., Safa, E., Zarei, M., y Zarei, A. (2020). Simultaneous efects of ethyl vinyl acetate (EVA) and glass fiber on the properties of the hot mix asphalt (HMA). SN Applied Sciences, 2(7). doi:10.1007/s42452- 020-2977-8
Joohari, I., y Giustozzi, F. (2020). Chemical and high-temperature rheological properties of recycled plastics-polymer modified hybrid bitumen. Journal of Cleaner Production, 276, 376-392. doi:10.1016/j. jclepro.2020.123064
Kunanusont, N., Sangpetngam, B., y Somwangthanaroj , A. (2021). Asphalt Incorporation with Ethylene Vinyl Acetate (EVA) Copolymer and Natural Rubber (NR) Thermoplastic Vulcanizates (TPVs): Effects of TPV Gel Content on Physical and Rheological Properties. Polymers, 13(9). doi:10.3390/polym13091397
Li, J., Duan, S., Muhammad, Y., Liu, Y., Hou, D., Yang, S., . . . Meng, Y. (2019). Synthesis and Performance Evaluation of Modified Asphalt–Based Trackless Tack Coat Material. Journal of Materials in Civil Engineering, 31(9). doi:10.1061/(asce) mt.1943-5533.0002812
Liang, M., Ren, S., Fan, W., Xin, X., Shi, J., y Luo, H. (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. doi:10.1016/j. conbuildmat.2017.01.123
Liang, M., Xin, X., Fan, W., Wang, H., Jiang, H., Zhang, J., y Yao, Z. (2019). Experimental and Simulation Study of Phase Microstructure and Storage Stability of Asphalt Modified with Ethylene-Vinyl Acetate. Journal of Materials in Civil Engineering, 31(12). doi:10.1061/(asce)mt.1943-5533.0002931
Liu, Y., Zhang, J., Chen, R., Cai, J., Xi, Z., y Xie, H. (2017). Ethylene vinyl acetate copolymer modified epoxy asphalt binders: Phase separation evolution and mechanical properties. Construction and Building Materials, 137, 55 - 65. doi:10.1016/j. conbuildmat.2017.01.081
Mansourian, A., Goahri, A., y Khosrowshahi, F. (2019). Performance evaluation of asphalt binder modified with EVA/HDPE/nanoclay based on linear and non-linear viscoelastic behaviors. Construction and Building Materials, 208, 554-563. doi:10.1016/j. conbuildmat.2019.03.065
Mohsen, A., y Mirian, V. (2020). Evaluation of glass fibres, ethylene vinyl acetate and their combination on stone mastic asphalt. Australian Journal of Civil Engineering. doi: 10.1080/14488353.2020.1835143
Padhan, R., Gupta, A., y Sreeram, A. (2019). Effect of cross-linking agent on ethylene vinyl acetate/polyoctenamer modified bitumen. Road Materials and Pavement Design, 20(7), 1615-1623. doi:10.1080/14680629.2018.1467335
Pouranian, M., Imaninasab, R., y Shishehbor, M. (2020). The effect of temperature and stress level on the rutting performance of modified stone matrix asphalt. Road Materials and Pavement Design, 21(5), 1386-1398. doi:10.1080/14680629.2018.15 46221
Rahi, M., Fini, E., Hajikarimi, P., y Nejad, F. (2015). Rutting Characteristics of Styrene- Ethylene/Propylene-Styrene Polymer Modified Asphalt. Journal of Materials in Civil Engineering, 27(4). doi:10.1061/(asce) mt.1943-5533.0001102
Ramírez Hernández, A., Aguilar Flores, C., y Aparicio Saguilán, A. (2019). Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA (Colombia), 86(209), 198-205. doi:10.15446/dyna. v86n209.77513
Saboo, N., Kumar, R., Kumar, P., y Gupta, A. (2018). Ranking the Rheological Response of SBS- and EVA-Modified Bitumen Using MSCR and LAS Tests. Journal of Materials in Civil Engineering, 30(8). doi:10.1061/ (asce)mt.1943-5533.0002367
Santos, J., Cerezo, V., Soudani, K., y Bressi, S. (2018). A comparative life cycle assessment of hot mixes asphalt containing bituminous binder modified with waste and virgin polymers. 25th CIRP Life Cycle Engineering (LCE) Conference. Pisa, Italia. doi:10.1016/j. procir.2017.11.046
Setyawan, A., Sistra, M., Sarwono, D., Djumari, y Zulfadly. (2019). The Physical and Mechanical Properties of Ethylene Vinyl Acetate Modified Binder. IOP Conference Series: Materials Science and Engineering, 578. Solo, Indonesia. doi:10.1088/1757- 899X/578/1/012080
Siddig, E., Feng, C., y Ming, L. (2018). Effects of ethylene vinyl acetate and nanoclay additionsonhigh-temperatureperformance of asphalt binders. Construction and Building Materials, 169, 276-282. doi:10.1016/j.conbuildmat.2018.03.012
Singh, M., Kumar, P., y Anupam, A. (2016). Effect of type of aggregate on permanent deformation of bituminous concrete mixes. Road Materials and Pavement Design, 17(2), 417-433. doi:10.1080/14680629.2015.1091374
Singh, Bhupendra; Kumar, Praveen. (2019). Effectofpolymermodificationontheageing properties of asphalt binders: Chemical and morphological investigation. Construction and Building Materials, 205, 633-641. doi:10.1016/j.conbuildmat.2019.02.050
Singh, Bhupendra; Kumar, Praveen. (2020). Viscoelastic and Morphological Evaluation of Aged Polymer Modified. International Journal of Civil Engineering, 18(9), 1077-1096. doi:10.1007/s40999-020-00517-4
Xiao, F., Li, R., Amirkhanian, S., y Yuan, J. (2018). Rutting-Resistance Investigation of Alternative Polymerized Asphalt Mixtures. Journal of Materials in Civil Engineering, 30(6). doi:10.1061/(asce)mt.1943-5533.0002302
Xiao, X., Liu, W., Zhang, D., y Wan, C. (2018). Effect of Organic Montmorillonite on Microstructure and Properties of the OMMT/EVA/Asphalt Composites. Polymer Composites, 39(6), 1959-1966. doi:10.1002/ pc.24154
Yadykina, V., Navolokina, S., y Gridchin, A. (2020). The Dependence of the Modified Bitumen Properties on the Amount of Vinyl Acetate in the Sevilen Composition. 2nd International Scientific Conference on Construction and Architecture: Theory and Practice for the innovation Development, 974, págs. 175- 180. Belgorod, Rusia. doi:10.4028/www.scientific.net/MSF.974.175
Yan, K., Chen, J., You, L., y Tian, S. (2020). 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. doi:10.1016/j.jclepro.2020.120732
Yan, K., Tian, S., Chen, J., y Liu, J. (2020). High temperature rheological properties of APAO and EVA compound modified asphalt. Construction and Building Materials, 233. doi:10.1016/j.conbuildmat.2019.117246
Yan, K., Hong, Z., You, L., Ou, J., y Miljkovic, M. (2021). Influence of ethylene-vinyl acetate on the performance improvements of low- density polyethylene-modified bitumen. Journal of Cleaner Production, 278. doi:10.1016/j.jclepro.2020.123865
Yu, R., Liu, X., Zhang, M., Zhu, X., y Fang , C. (2017). Dynamic stability of ethylene-vinyl acetate copolymer/crumb rubber modified asphalt. Construction and Building Materials, 156, 284 - 292. doi:10.1016/j. conbuildmat.2017.08.182
Yuliestyan, A., Cuadri, A. A., GarcíaMorales, M., y Partal, P. (2016). Influence of polymer melting point and Melt Flow Index on the performance of ethylene-vinyl-acetate modified bitumen for reduced-temperature application. Materials and Design, 96, 180-
doi:10.1016/j.matdes.2016.02.003 Yuliestyan, A., Cuadri, A. A., García Morales, M., y Partal, P. (2018). Selection of ethylene-vinyl-acetate properties for modified bitumen with enhanced end-performance. Rheologica Acta, 57(1), 71-82. doi:10.1007/s00397-017-1057-5
Zakieva, R., Gussamov, I., Gadel’shin, R., Petrov, S., Ibragimova, D., y Fakhrutdinov, R. (2015). Effect of modification of a copolymer of ethylene with vinyl acetate on the performance of cement and asphalt concrete based on it. Chemistry and Technology of Fuels and Oils, 51(5), 480- 486. doi:10.1007/s10553-015-0628-3
Zhang, H., Wu, J., Luo, Y., y Qin, Z. (2021). High- temperature properties of composite modified light-colored synthetic asphalt binders. Materials Research Express, 8(6). doi:10.1088/2053-1591/ac07e6