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Original Articles

Enhancing the performance of crumb rubber-modified binders through varying the interaction conditions

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Pages 423-434 | Received 16 Oct 2007, Accepted 12 Jul 2008, Published online: 28 Oct 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (9)

Anas A. Jamrah & M. Emin Kutay. (2022) A new rheological approach to evaluating the aged performance of Crumb Rubber Modified binders. International Journal of Pavement Engineering 23:6, pages 1897-1910.
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Haopeng Wang, Panos Apostolidis, Jiqing Zhu, Xueyan Liu, Athanasios Skarpas & Sandra Erkens. (2021) The role of thermodynamics and kinetics in rubber–bitumen systems: a theoretical overview. International Journal of Pavement Engineering 22:14, pages 1785-1800.
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Elham H. Fini, Shahrzad Hosseinnezhad, Daniel Oldham, Zachery Mclaughlin, Zia Alavi & John Harvey. (2019) Bio-modification of rubberised asphalt binder to enhance its performance. International Journal of Pavement Engineering 20:10, pages 1216-1225.
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Naipeng Tang, Weidong Huang, Jianying Hu & Feipeng Xiao. (2018) Rheological characterisation of terminal blend rubberised asphalt binder containing polymeric additive and sulphur. Road Materials and Pavement Design 19:6, pages 1288-1300.
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Ayad Subhy, Davide Lo Presti & Gordon Airey. (2016) Rubberised bitumen manufacturing assisted by rheological measurements. Road Materials and Pavement Design 17:2, pages 290-310.
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Ayad Subhy, Davide Lo Presti & Gordon Airey. (2015) An investigation on using pre-treated tyre rubber as a replacement of synthetic polymers for bitumen modification. Road Materials and Pavement Design 16:sup1, pages 245-264.
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S. Anjan Kumar, U. Sarvanan, J. Murali Krishnan & A. Veeraragavan. (2014) Rheological characterisation of modified binders at mixing and compaction temperature. International Journal of Pavement Engineering 15:9, pages 767-785.
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Georges A.J. Mturi, Johan O'Connell, Salah E. Zoorob & Morris De Beer. (2014) A study of crumb rubber modified bitumen used in South Africa. Road Materials and Pavement Design 15:4, pages 774-790.
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Davide Lo Presti & G. Airey. (2013) Tyre rubber-modified bitumens development: the effect of varying processing conditions. Road Materials and Pavement Design 14:4, pages 888-900.
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Zilun Zhang, Wei Yang, Yuetan Ma, Chuanping Zhang & Shifeng Wang. (2023) Effect of dynamic vulcanization on the performance of high content rubber modified asphalt. Journal of Applied Polymer Science 140:22.
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Carlo Carpani, Edoardo Bocci, Emiliano Prosperi & Maurizio Bocci. (2022) Evaluation of the rheological and performance behaviour of bitumen modified with compounds including crumb rubber from waste tires. Construction and Building Materials 361, pages 129679.
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Fan Li, Xiao Zhang, Linbing Wang & Ruixin Zhai. (2022) The preparation process, service performances and interaction mechanisms of crumb rubber modified asphalt (CRMA) by wet process: A comprehensive review. Construction and Building Materials 354, pages 129168.
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Lijun Sun, Yong Wen, Qi Liu, Dong Li, Lei Lyu, Jianzhong Pei, Jiupeng Zhang & Rui Li. (2021) A laboratory investigation into the effect of waste non-tire rubber particles on the performance properties of terminal blend rubberized asphalt binders. Construction and Building Materials 313, pages 125409.
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Jingyao Yang, Gang Xu, Peipei Kong & Xianhua Chen. (2021) Characterization of Desulfurized Crumb Rubber/Styrene–Butadiene–Styrene Composite Modified Asphalt Based on Rheological Properties. Materials 14:14, pages 3780.
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Jin Li, Zixuan Chen, Feipeng Xiao & Serji N. Amirkhanian. (2021) Surface activation of scrap tire crumb rubber to improve compatibility of rubberized asphalt. Resources, Conservation and Recycling 169, pages 105518.
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Yunus Erkuş, Baha Vural Kök & Mehmet Yilmaz. (2020) Evaluation of performance and productivity of bitumen modified by three different additives. Construction and Building Materials 261, pages 120553.
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S Sunarjono, P A Wijaya, N Hidayati & A Magfirona. (2020) Design mixed formula of hot mix asphalt mixture very thin overlay using crumb rubber. IOP Conference Series: Materials Science and Engineering 821:1, pages 012016.
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Arkan ObaidMunir D. NazzalSang Soo KimAla AbbasMir ArefinTanvir Quasem. (2020) Evaluation of Terminal Blend GTR Mixes with RAP. Journal of Transportation Engineering, Part B: Pavements 146:1, pages 04019041.
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Ahmed Hemida & Magdy Abdelrahman. (2019) Influence of Guayule Resin as a Bio-Based Additive on Asphalt–Rubber Binder at Elevated Temperatures. Recycling 4:3, pages 38.
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Q B Huang, Z D Qian, M Zhang & Y C Xue. (2019) Experimental investigation of the road performance of terminal blend rubber asphalt mixture with different dry-way additives. IOP Conference Series: Materials Science and Engineering 629:1, pages 012006.
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Sara Bressi, Nicholas Fiorentini, Jiandong Huang & Massimo Losa. (2019) Crumb Rubber Modifier in Road Asphalt Pavements: State of the Art and Statistics. Coatings 9:6, pages 384.
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Haopeng Wang, Xueyan Liu, Panos Apostolidis & Tom Scarpas. (2018) Rheological Behavior and Its Chemical Interpretation of Crumb Rubber Modified Asphalt Containing Warm-Mix Additives. Transportation Research Record: Journal of the Transportation Research Board 2672:28, pages 337-348.
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Mithil Mazumder, Raju Ahmed, Ahmed Wajahat Ali & Soon-Jae Lee. (2018) SEM and ESEM techniques used for analysis of asphalt binder and mixture: A state of the art review. Construction and Building Materials 186, pages 313-329.
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Yong Wen, Yuhong Wang, Kecheng Zhao, Dan Chong, Weidong Huang, Gengren Hao & Shicong Mo. (2018) The engineering, economic, and environmental performance of terminal blend rubberized asphalt binders with wax-based warm mix additives. Journal of Cleaner Production 184, pages 985-1001.
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S. Senise, V. Carrera, F.J. Navarro & P. Partal. (2017) Thermomechanical and microstructural evaluation of hybrid rubberised bitumen containing a thermoplastic polymer. Construction and Building Materials 157, pages 873-884.
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