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Research Article

Evaluation of glass fibres, ethylene vinyl acetate and their combination on stone mastic asphalt

ORCID Icon & ORCID Icon
Pages 134-147 | Received 01 Mar 2020, Accepted 01 Sep 2020, Published online: 20 Oct 2020

References

  • Alatas, T., M. Yilmaz, N. Kuloglu, M. Cakiroglu, and T. Geckil. 2014. “Investigation of Shear Complex Modulus and Phase Angle Values of Short- and Long-term Aged Polymer Modified Bitumens at Different Frequencies.” KSCE Journal of Civil Engineering 18 (7): 2093–2099. doi:https://doi.org/10.1007/s12205-014-0287-7.
  • Ameri, M., A. Mansourian, and A. H. Sheikhmotevali. 2012. “Investigating Effects of Ethylene Vinyl Acetate and Gilsonite Modifiers upon Performance of Base Bitumen Using Superpave Tests Methodology.” Construction and Building Materials 36: 1001–1007. doi:https://doi.org/10.1016/j.conbuildmat.2012.04.137.
  • Ameri, M., A. Mansourian, and A. H. Sheikhmotevali. 2013. “Laboratory Evaluation of Ethylene Vinyl Acetate Modified Bitumens and Mixtures Based upon Performance Related Parameters.” Construction and Building Materials 40: 438–447. doi:https://doi.org/10.1016/j.conbuildmat.2012.09.109.
  • American Association of State Highway and Transportation Officials. 2001. AASHTO Guide for Design of Pavement Structures. USA Washington, DC: AASHTO.
  • ASTM. 1995. Potential of Dynamic Creep to Predict Rutting, STP1265. West Conshohocken, USA: American Society for Testing and Materials, International Published: Jan.
  • ASTM. 2001. American Society for Testing and Materials. USA: ASTM.
  • AASHTO. 1993. AASHTO Guide for Design of Pavement Structures. USA Washington, D.C.: American Association of State Highway and Transportation Officials (AASHTO).
  • AASHTO. 2015. Standard Specifications for Transportation Materials and Methods of Sampling and Testing, 35th Edition and AASHTO Provisional Standards. USA Washington, D.C.: AASHTO.
  • Bellin, P. 1997. “Development, Principles and Long-term Performance of Stone Mastic Asphalt in Germany.” SCI Lecture Papers, Germany.
  • Blazejowski, K. 2011. Stone Matrix Asphalt: Theory and Practice. Boca Raton, FL: CRC Press.
  • Bohm, G., and G. Zech. 2010. Introduction to Statistics and Data Analysis for Physicists. Hamburg: DESY.
  • British Standards. 2016. BS EN 12697-25, Bituminous Mixtures. Test Methods. Cyclic Compression Test. England: BSI.
  • Cicek, E. 2019. “The Effects of Different Types of Fibres and Geotextiles for Pavement Design.” Road Materials and Pavement Design 20 (4): 793–814. doi:https://doi.org/10.1080/14680629.2017.1417890.
  • Cuciniello, G., P. Leandri, S. Filippi, D. L. Presti, M. Losa, and G. Airey. 2018. “Effect of Ageing on the Morphology and Creep and Recovery of Polymer-modified Bitumens.” Materials and Structures 51 (5): 136. doi:https://doi.org/10.1617/s11527-018-1263-3.
  • Enieb, M., A. Diab, and X. Yang. 2019. “Short- and Long-term Properties of Glass Fiber Reinforced Asphalt Mixtures.” International Journal of Pavement Engineering 1–13. doi:https://doi.org/10.1080/10298436.2019.1577421.
  • Eskandarsefat, S., B. Hofko, and C. Sangiorgi. 2018. “A Comparison Study on Low-temperature Properties of Stone Mastic Asphalts Modified with PmBs or Modified Fibres.” International Journal of Pavement Engineering 1–9. doi:https://doi.org/10.1080/10298436.2018.1554219.
  • Ferreira da Costa, L., A. Grangeiro de Barros, L. C. D. F. L. Lucena, and A. E. D. F. L. Lucena. 2020. “Asphalt Mixture Reinforced with Banana Fibres.” Road Materials and Pavement Design 1–13. doi:https://doi.org/10.1080/14680629.2020.1713866.
  • Ge, Z., M. Huang, and Y. Wang. 2014. “Fatigue Behaviour of Asphalt Concrete Beams Reinforced by Glass Fibre-reinforced Plastics.” International Journal of Pavement Engineering 15 (1): 36–42. doi:https://doi.org/10.1080/10298436.2013.799281.
  • Harris, B. M., and K. D. Stuart. 1995. “Analysis of Mineral Fillers and Mastics Used in Stone Matrix Asphalt.” Journal of the Association of Asphalt Paving Technologists 65: 54–95.
  • Hrušková, L., M. HorňáČek, and P. DauČík. 2016. “Comparison of Changes of Basic Parameters of Asphalt Caused by Various Additives.” Chemical Papers 70 (6): 793–800. doi:https://doi.org/10.1515/chempap-2016-0010.
  • Huang, Y. H. 2004. Pavement Analysis and Design. 2nd ed. USA, Upper Saddle River, New Jersey: Pearson Education.
  • Imaninasab, R. 2016. “Rutting Resistance and Resilient Modulus Evaluation of Polymer-modified SMA Mixtures.” Petroleum Science and Technology 34 (16): 1483–1489. doi:https://doi.org/10.1080/10916466.2016.1206567.
  • Keyf, S. 2015. “The Modification of Bitumen with Reactive Ethylene Terpolymer, Styrene Butadiene Styrene and Variable Amounts of Ethylene Vinyl Acetate.” Research on Chemical Intermediates 41 (3): 1485–1497. doi:https://doi.org/10.1007/s11164-013-1287-9.
  • Lu, X., U. Isacsson, and J. Ekblad. 1999. “Rheological Properties of SEBS, EVA and EBA Polymer Modified Bitumens.” Materials and Structures 32 (2): 131–139. doi:https://doi.org/10.1007/BF02479440.
  • Mahrez, A., and M. R. Karim. 2007. “Rutting Characteristics of Bituminous Mixes Reinforced with Glass Fiber.” Proceedings of the Eastern Asia Society for Transportation Studies The 7th International Conference of Eastern Asia Society for Transportation Studies, 2007, Asia.
  • Mahrez, A., and M. R. Karim. 2010. “Fatigue Characteristics of Stone Mastic Asphalt Mix Reinforced with Fiber Glass.” International Journal of the Physical Sciences 5 (12): 1840–1847.
  • Olabemiwo, O. M., A. O. Esan, H. O. Bakare, and F. O. Agunbiade. 2019. “Polymer Modified-natural Bitumen Thermal Aging Resistance Studies.” International Journal of Pavement Engineering 20 (10): 1207–1215. doi:https://doi.org/10.1080/10298436.2017.1394102.
  • Padhan, R. K., A. A. Gupta, and A. Sreeram. 2018. “Effect of Cross-linking Agent on Ethylene Vinyl Acetate/polyoctenamer Modified Bitumen.” Road Materials and Pavement Design 1–9. doi:https://doi.org/10.1080/14680629.2018.1467335.
  • Padhan, R. K., A. A. Gupta, and A. Sreeram. 2019. “Effect of Cross-linking Agent on Ethylene Vinyl Acetate/polyoctenamer Modified Bitumen.” Road Materials and Pavement Design 20 (7): 1615–1623. doi:https://doi.org/10.1080/14680629.2018.1467335.
  • Pouranian, M. R., R. Imaninasab, and M. Shishehbor. 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:https://doi.org/10.1080/14680629.2018.1546221.
  • Putman, B. J., and S. N. Amirkhanian. 2004. “Utilization of Waste Fibers in Stone Matrix Asphalt Mixtures.” Resources, Conservation and Recycling 42 (3): 265–274. doi:https://doi.org/10.1016/j.resconrec.2004.04.005.
  • Reddiar, J. K., M. H. Vasani, R. C. Raval, M. B. Mistry, and P. B. Shah. 2016. “Influence of Glass Fiber in Flexible Pavement Concerning Marshal Stability.” International Journal for Scientific Research & Development 4 (4): 204–205.
  • Santagata, E., O. Baglieri, D. Dalmazzo, and L. Tsantilis. 2013. “Evaluation of the Anti-rutting Potential of Polymer-modified Binders by Means of Creep-recovery Shear Tests.” Materials and Structures 46 (10): 1673–1682. doi:https://doi.org/10.1617/s11527-012-0006-0.
  • Scherocman, JA. 1991. “ Stone mastic asphalt reduces rutting.„ Better Roads 61 (11):26-27.
  • Siddig, E. A., C. P. Feng, and L. Y. Ming. 2018. “Effects of Ethylene Vinyl Acetate and Nanoclay Additions on High-temperature Performance of Asphalt Binders.” Construction and Building Materials 169: 276–282. doi:https://doi.org/10.1016/j.conbuildmat.2018.03.012.
  • Singh, M., P. Kumar, and M. R. Maurya. 2014. “Effect of Aggregate Types on the Performance of Neat and EVA-modified Asphalt Mixtures.” International Journal of Pavement Engineering 15 (2): 163–173. doi:https://doi.org/10.1080/10298436.2013.812211.
  • Strategic Highway Research Program. 1994. Fatigue Response of Asphalt-aggregate Mixes, SHRP-A-404. Strategic Highway Research Program. National Research Council. Washington, DC: Institute of Transportation Studies, University of California, Berkeley.
  • Superpave Mixture Design Guide. 2001. WesTrack Forensic Team Consensus Report. Washington, DC: U.S. Department of Transportation, FHWA.
  • Taherkhani, H. 2016. “Investigating the Properties of Asphalt Concrete Containing Glass Fibers and Nanoclay.” Civil Engineering Infrastructures Journal 49 (1): 45–58. doi:https://doi.org/10.7508/ceij.2016.01.004.
  • Tangella, S. C. S. R., J. Craus, J. A. Deacon, and C. L. Monismith. 1990. Summary Report on Fatigue Response of Asphalt Mixtures, SHRP-A-003-A. Berkeley, California: Institute of Transportation Studies, University of California.
  • Uzarowski, L. 2007. “The Development of Asphalt Mix Creep Parameters and Finite Element Modeling of Asphalt Rutting.” MSc, Civil and Environmental Engineering, University of Waterloo.
  • van de Ven, M. F. C., J. L. M. Voskuilen, and F. Tolman 2003. “The Spatial Approach of Hot Mix Asphalt.” 6 International RILEM Symposium on Performance Testing and Evaluation of Bituminous Materials, PTEBM’03, Zurich, Switzerland.
  • Van Thanh, D., and C. P. Feng. 2013. “Study on Marshall and Rutting Test of SMA at Abnormally High Temperature.” Construction and Building Materials 47: 1337–1341. doi:https://doi.org/10.1016/j.conbuildmat.2013.06.032.
  • Vice Presidency for Strategic Planning and Supervision, The Ministry of Roads and Urban Development, and Asphalt Institute of Iran. 2012. Iran Highway Asphalt Paving Code No. 234. 1st ed. Tehran, Iran: Asphalt Institute of Iran.
  • Weise, C., and A. Zeissler. 2016. “Effects of Fiber Reinforcement on the Fatigue and Rutting Performance of Asphalt Mixes.” 6th Eurasphalt & Eurobitume Congress, Prague, Czech Republic.
  • Wu, -M.-M., R. Li, Y.-Z. Zhang, L. Fan, Y.-C. Lv, and J.-M. Wei. 2015. “Stabilizing and Reinforcing Effects of Different Fibers on Asphalt Mortar Performance.” Petroleum Science 12 (1): 189–196. doi:https://doi.org/10.1007/s12182-014-0011-8.
  • Yadykina, V., S. Tobolenko, A. Trautvain, and A. Zhukova. 2015. “The Influence of Stabilizing Additives on Physical and Mechanical Properties of Stone Mastic Asphalt Concrete.” Procedia Engineering 117: 376–381. doi:https://doi.org/10.1016/j.proeng.2015.08.181.
  • Zakieva, R. R., I. I. Gussamov, R. M. Gadel’shin, S. M. Petrov, D. A. Ibragimova, and R. Z. Fakhrutdinov. 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:https://doi.org/10.1007/s10553-015-0628-3.
  • Zichner, G. 1972. MASTIMAC unad MASTIPHALT bituminöse Gemische für hochwertige Deckschichten. Vol. 4. Germany: STRABAG.
  • Zichner, G. 1974. “Wearing Courses of Stone and Mastic on Pavements.” Google Patents.

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