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Original Articles

Characterisation of interface bonding between hot-mix asphalt overlay and concrete pavements: modelling and in-situ response to accelerated loading

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Pages 181-196 | Received 22 Dec 2009, Accepted 10 Jun 2011, Published online: 01 Sep 2011

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Read on this site (5)

Bongsuk Park, Sanghyun Chun & Kukjoo Kim. (2023) Effect of various interface bonding conditions on critical response characteristics for cracking potential of asphalt pavements. Road Materials and Pavement Design 24:8, pages 2010-2026.
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Momen Mousa, Mostafa A. Elseifi, Omar Elbagalati & Louay N. Mohammad. (2019) Evaluation of interface bonding conditions based on non-destructing testing deflection measurements. Road Materials and Pavement Design 20:3, pages 554-571.
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Hongduo Zhao, Jianfeng Cao & Yi Zheng. (2017) Investigation of the interface bonding between concrete slab and asphalt overlay. Road Materials and Pavement Design 18:sup3, pages 109-118.
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Ming-Jian Li, Xu-Dong Wang & Nian-Mei Zhang. (2017) Comparative study on the performance of serrated interfaces in multi-layer pavements. Road Materials and Pavement Design 18:3, pages 670-686.
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Shaohui Li, Zhongyin Guo & Yongshun Yang. (2016) Dynamic viscoelastic response of an instrumented asphalt pavement under various axles with non-uniform stress distribution. Road Materials and Pavement Design 17:2, pages 446-465.
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Kairen Shen & Hao Wang. (2023) Impact of dynamic loading on pavement deflection measurements from traffic speed deflectometer. Measurement 217, pages 113086.
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Sergio Arturo Vargas-Díaz. (2022) Finite Element Modeling of Direct Transition from Concrete Pavement to Asphalt Pavement. TecnoLógicas 25:55, pages e2389.
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F. Canestrari, F. Cardone, E. Gaudenzi, D. Chiola, N. Gasbarro & G. Ferrotti. (2022) Interlayer bonding characterization of interfaces reinforced with geocomposites in field applications. Geotextiles and Geomembranes 50:1, pages 154-162.
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Amadou Oury Diallo & Muhammet Vefa Akpinar. (2020) Mechanistic Responses of Asphalt Concrete Overlay Over Jointed Plain Concrete Pavement Using Finite Element Method. The Baltic Journal of Road and Bridge Engineering 15:5, pages 80-93.
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Kezhen Yan, Yang Peng & Lingyun You. (2020) Use of tung oil as a rejuvenating agent in aged asphalt: Laboratory evaluations. Construction and Building Materials 239, pages 117783.
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K. Bayraktarova, M. Dimitrov, B. Hofko & L. Eberhardsteiner. 2020. Proceedings of the 9th International Conference on Maintenance and Rehabilitation of Pavements—Mairepav9. Proceedings of the 9th International Conference on Maintenance and Rehabilitation of Pavements—Mairepav9 729 739 .
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Lingyun You, Zhanping You & Kezhen Yan. (2018) Effect of anisotropic characteristics on the mechanical behavior of asphalt concrete overlay. Frontiers of Structural and Civil Engineering 13:1, pages 110-122.
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Jun Chen, Xie Ma, Hao Wang, Pengyu Xie & Wei Huang. (2018) Experimental study on anti-icing and deicing performance of polyurethane concrete as road surface layer. Construction and Building Materials 161, pages 598-605.
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Piotr Jaskula & Dawid Rys. (2017) Effect of interlayer bonding quality of asphalt layers on pavement performance. IOP Conference Series: Materials Science and Engineering 236, pages 012005.
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Weiguang Zhang. (2017) Effect of tack coat application on interlayer shear strength of asphalt pavement: A state-of-the-art review based on application in the United States. International Journal of Pavement Research and Technology 10:5, pages 434-445.
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Tao Hu, Jianmin Zi, Jia Li, Lei Mao, Sijia Jin & Wujun Zhou. (2017) Laboratory and field investigation of interlayer bonding between asphalt concrete layer and semi-rigid base constructed by using continuous construction method. Construction and Building Materials 150, pages 418-425.
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Bo Yao, Fangchao Li, Xiao Wang & Gang Cheng. (2016) Evaluation of the shear characteristics of steel–asphalt interface by a direct shear test method. International Journal of Adhesion and Adhesives 68, pages 70-79.
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Behzad Ghadimi, Hamid Nikraz & Michele Rosano. (2016) Dynamic simulation of a flexible pavement layers considering shakedown effects and soil-asphalt interaction. Transportation Geotechnics 7, pages 40-58.
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