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Articles

Nonlinear viscoelastic analysis of asphalt cement and asphalt mastics

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Pages 510-529 | Received 11 Sep 2013, Accepted 22 Sep 2013, Published online: 07 Aug 2014

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Athira Mangalath Shine, I. C. Sanchana, A. Padmarekha, Sabine Leischner, Frohmut Wellner & J. Murali Krishnan. (2023) Quantification of viscous and damage dissipation of bituminous binder and mastic using White-Metzner model. International Journal of Pavement Engineering 24:1.
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Song Li, Fujian Ni, Qiao Dong, Zili Zhao & Xiang Ma. (2021) Effect of filler in asphalt mastic on rheological behaviour and susceptibility to rutting. International Journal of Pavement Engineering 22:1, pages 87-96.
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Farinaz Safaei & Cassie Castorena. (2020) Improved interpretation of asphalt binder parallel plate dynamic shear rheometer fatigue tests. International Journal of Pavement Engineering 21:1, pages 74-87.
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Quang Tuan Nguyen, Mai Lan Nguyen, Hervé Di Benedetto, Cédric Sauzéat, Emmanuel Chailleux & Thi Thanh Nhan Hoang. (2019) Nonlinearity of bituminous materials for small amplitude cyclic loadings. Road Materials and Pavement Design 20:7, pages 1571-1585.
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Akshay Gundla & Shane Underwood. (2017) Evaluation of in situ RAP binder interaction in asphalt mastics using micromechanical models. International Journal of Pavement Engineering 18:9, pages 798-810.
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Kai Yang, Hongjun Cui, Xinwei Ma & Minqing Zhu. (2023) Understanding and characterizing the fatigue cracking resistance of asphalt binder at intermediate temperature: A literature review. Construction and Building Materials 407, pages 133432.
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Nurul Aliah Amirah Mazalan, Mohd Khairul Idham Mohd Satar, Azman Mohamed & Muhammad Naqiuddin Mohd Warid. (2023) Rheological properties of asphaltene-modified asphalt binder and mastic. Physics and Chemistry of the Earth, Parts A/B/C 131, pages 103422.
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Riran Wang, Xin An & Jinchao Yue. (2023) A proposed approach for accurate fatigue quantification of the base asphalt binders coupling nonlinear viscoelastic effects in S-VECD theoretical framework. Construction and Building Materials 392, pages 131850.
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Letícia Sousa de Oliveira, Lucas Sassaki Vieira da Silva, Jorge Luiz Oliveira Lucas Júnior, Lucas Feitosa de Albuquerque Lima Babadopulos & Jorge Barbosa Soares. (2023) Linear viscoelasticity and fatigue life: Relationships between properties of asphalt binders and corresponding mixtures. Construction and Building Materials 372, pages 130685.
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Fan Li, Xiao Zhang, Suyun Meng, Guoqing Zhao & Yuyou Yang. (2023) Experimental Research of Various Evaluation Indices on Predicting the Influences of Internal and External Factors on Asphalt-Filler Interaction Ability. Journal of Testing and Evaluation 51:2, pages 20220194.
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Chao Wang, Yanguang Sun & Zhengyang Ren. (2023) Toward to a viscoelastic fatigue and fracture model for asphalt binder under cyclic loading. International Journal of Fatigue 168, pages 107479.
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Xin An, Riran Wang, Xiaolong Kang & Jinchao Yue. (2023) A more accurate fatigue characterization of GO-modified asphalt binder considering non-linear viscoelastic behaviour and UV exposure effects. International Journal of Fatigue 168, pages 107396.
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Binshuo Bao, Jie Liu, Song Li, Chundi Si & Qipeng Zhang. (2023) Laboratory Evaluation of the Relationship of Asphalt Binder and Asphalt Mastic via a Modified MSCR Test. Coatings 13:2, pages 304.
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Huanan Yu, Sen Yang, Guoping Qian, Chao Zhang, Xuan Zhu, Ding Yao & Changyun Shi. (2022) Study on unified strength approach of asphalt mixture under different stress conditions. Construction and Building Materials 357, pages 129170.
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Aboelkasim Diab. (2022) Response of binder-filler systems into and beyond linear viscoelastic domain: Modeling and healing efficiency. Construction and Building Materials 344, pages 128194.
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C. Chen, H. Wu, W. Zhang, Y. Mao & C. Zhang. (2021) Investigation of High Temperature Performance and Viscosity Characteristics of Modified and Unmodified Color Asphalt. Experimental Techniques 46:2, pages 317-333.
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Mojtaba Khodadadi, Ali Khodaii, Joseph Absi, Fateh Fakhari Tehrani & Pouria Hajikarimi. (2021) An experimental length scale investigation on viscoelastic behavior of bituminous composites: Focusing on mortar scale. Construction and Building Materials 308, pages 124766.
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Murat Ozturk & D.D.L. Chung. (2021) Capacitance-based stress self-sensing effectiveness of a model asphalt without functional component. Construction and Building Materials 294, pages 123591.
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Lily C. de Loë & Simon A.M. Hesp. (2021) Large Amplitude Oscillatory Shear testing for the performance grading of straight and polymer modified asphalt binders. Construction and Building Materials 279, pages 122418.
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Saqib Gulzar & B. Shane Underwood. (2020) Nonlinear Viscoelastic Response of Crumb Rubber Modified Asphalt Binder Under Large Strains. Transportation Research Record: Journal of the Transportation Research Board 2674:3, pages 139-149.
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Yiren Sun, Jingyun ChenBaoshan HuangJiayin LiuWeiying WangBin Xu. (2020) Novel Procedure for Accurately Characterizing Nonlinear Viscoelastic and Irrecoverable Behaviors of Asphalt Binders. International Journal of Geomechanics 20:3.
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A. Tanakizadeh & Gh. Shafabakhsh. (2018) Viscoelastic characterization of aged asphalt mastics using typical performance grading tests and rheological-micromechanical models. Construction and Building Materials 188, pages 88-100.
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Abbas Akbari & Amir Modarres. (2018) Evaluating the effect of nano-clay and nano-alumina on the fatigue response of bitumen using strain and time sweep tests. International Journal of Fatigue 114, pages 311-322.
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Pouria Hajikarimi, Fereidoon Moghadas Nejad, Ali Khodaii & Ellie H. Fini. (2018) Introducing a stress-dependent fractional nonlinear viscoelastic model for modified asphalt binders. Construction and Building Materials 183, pages 102-113.
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Qinglong You, Jinglian Ma & Xin Liu. (2018) An experimentally-based viscoelastic behavior of asphalt mastic at high temperatures. Construction and Building Materials 177, pages 358-365.
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Aboelkasim Diab & Zhanping You. (2018) Linear and Nonlinear Rheological Properties of Bituminous Mastics under Large Amplitude Oscillatory Shear Testing. Journal of Materials in Civil Engineering 30:3.
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Farinaz Safaei & Cassie Castorena. (2017) Material nonlinearity in asphalt binder fatigue testing and analysis. Materials & Design 133, pages 376-389.
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M. Pasetto, A. Baliello, G. Giacomello & E. Pasquini. (2016) Rheological Characterization of Warm-Modified Asphalt Mastics Containing Electric Arc Furnace Steel Slags. Advances in Materials Science and Engineering 2016, pages 1-11.
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B. Shane Underwood. (2016) A continuum damage model for asphalt cement and asphalt mastic fatigue. International Journal of Fatigue 82, pages 387-401.
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F. Cardone, F. Frigio, G. Ferrotti & F. Canestrari. (2015) Influence of mineral fillers on the rheological response of polymer-modified bitumens and mastics. Journal of Traffic and Transportation Engineering (English Edition) 2:6, pages 373-381.
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Huanan Yu, Sen Yang, Guoping Qian, Chao Zhang, Xuan Zhu, Ding Yao & Changyun Shi. (2022) Study on Unified Strength Approach of Asphalt Mixture Under Different Stress Conditions. SSRN Electronic Journal.
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