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Original Articles

Flexural Fatigue Characteristics of Asphalt Concrete with Crumb Rubber

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Pages 119-132 | Received 02 Mar 1999, Published online: 01 Feb 2007

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Read on this site (6)

Carlos J. Slebi-Acevedo, Pablo Pascual-Muñoz, Pedro Lastra-González & Daniel Castro-Fresno. (2021) A multi-criteria decision-making analysis for the selection of fibres aimed at reinforcing asphalt concrete mixtures. International Journal of Pavement Engineering 22:6, pages 763-779.
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Xiangyi Zhu, Xudong Chen, Saisai Liu, Shengtao Li, Weihong Xuan & Yuzhi Chen. (2020) Experimental study on flexural fatigue performance of rubberised concrete for pavement. International Journal of Pavement Engineering 21:9, pages 1135-1146.
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Fernando Moreno-Navarro, Maria Carmen Rubio-Gámez & Ana Jiménez Del Barco-Carrión. (2016) Tire crumb rubber effect on hot bituminous mixtures fatigue-cracking behaviour. Journal of Civil Engineering and Management 22:1, pages 65-72.
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Pradyumn Kumar Shukla & Animesh Das. (2008) A re-visit to the development of fatigue and rutting equations used for asphalt pavement design. International Journal of Pavement Engineering 9:5, pages 355-364.
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Pawan Kumar, Satish Chandra & Sunil Bose. (2006) Strength characteristics of polymer modified mixes. International Journal of Pavement Engineering 7:1, pages 63-71.
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Animesh Das, M.S. Deol, Sanjay Ohri & B.B. Pandey . (2004) Evolution of Non-standard Bituminous Mix—A Study on Indian Specification. International Journal of Pavement Engineering 5:1, pages 39-46.
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Articles from other publishers (12)

Awais Zahid, Sarfraz Ahmed & Muhammad Irfan. (2022) Experimental investigation of nano materials applicability in Hot Mix Asphalt (HMA). Construction and Building Materials 350, pages 128882.
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Muhammad Karami. (2020) Assessing the fatigue performance of buton rock asphalt modified mixtures. International Journal of Pavement Research and Technology 13:5, pages 536-547.
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Naipeng Tang, Quan Lv, Weidong Huang, Peng Lin & Chuanqi Yan. (2019) Chemical and rheological evaluation of aging characteristics of terminal blend rubberized asphalt binder. Construction and Building Materials 205, pages 87-96.
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Wei Cao & Chao Wang. (2019) Fatigue performance characterization and prediction of asphalt binders using the linear amplitude sweep based viscoelastic continuum damage approach. International Journal of Fatigue 119, pages 112-125.
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Muhammad Karami & Hamid Nikraz. (2015) Using Advanced Materials of Granular BRA Modifier Binder to Improve the Flexural Fatigue Performance of Asphalt Mixtures. Procedia Engineering 125, pages 452-460.
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F. Moreno-Navarro, M. C. Rubio-Gámez, E. Tomás-Fortún, F. Valor-Hernández & A. Ramírez-Rodriguez. (2014) Evaluation of the fatigue macro-cracking behavior of crumb rubber modified bituminous mixes. Materiales de Construcción 64:315, pages e027.
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Animesh Das & Aravind Krishna Swamy. 2014. Climate Change, Energy, Sustainability and Pavements. Climate Change, Energy, Sustainability and Pavements 419 438 .
Hui Yao, Zhanping You, Liang LiShu Wei GohJulian Mills-BealeXianming Shi & David Wingard. (2013) Evaluation of Asphalt Blended With Low Percentage of Carbon Micro-Fiber and Nanoclay. Journal of Testing and Evaluation 41:2, pages 20120068.
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Hui Yao, Zhanping You, Liang Li, Shu Wei Goh, Chee Huei Lee, Yoke Khin Yap & Xianming Shi. (2013) Rheological properties and chemical analysis of nanoclay and carbon microfiber modified asphalt with Fourier transform infrared spectroscopy. Construction and Building Materials 38, pages 327-337.
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M. Arabani, S.M. Mirabdolazimi & B. Ferdowsi. (2012) Modeling the fatigue behaviors of glasphalt mixtures. Scientia Iranica 19:3, pages 341-345.
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Zhanping You, Julian Mills-Beale, Justin M. Foley, Samit Roy, Gregory M. Odegard, Qingli Dai & Shu Wei Goh. (2011) Nanoclay-modified asphalt materials: Preparation and characterization. Construction and Building Materials 25:2, pages 1072-1078.
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RE Link, RE Link & A Shenoy. (2002) Fatigue Testing and Evaluation of Asphalt Binders Using the Dynamic Shear Rheometer. Journal of Testing and Evaluation 30:4, pages 303.
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