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Articles

New achievements in visco-elastoplastic constitutive model and temperature sensitivity of glasphalt

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Pages 810-830 | Received 04 Jan 2013, Accepted 07 Feb 2014, Published online: 07 Mar 2014

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Éric Lachance-Tremblay, Michel Vaillancourt, Daniel Perraton & Hervé Di Benedetto. (2020) Linear viscoelastic (LVE) properties of asphalt mixtures with different glass aggregates and hydrated lime content. International Journal of Pavement Engineering 21:10, pages 1170-1179.
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Éric Lachance-Tremblay, Michel Vaillancourt & Daniel Perraton. (2016) Evaluation of the impact of recycled glass on asphalt mixture performances. Road Materials and Pavement Design 17:3, pages 600-618.
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Bowei Sun, Peiwen Hao, Haiwei Zhang & Jingwen Liu. (2022) Establishment and verification of a developed viscoelastic damage model and creep instability criterion for modified fine asphalt mortar. Materials and Structures 55:3.
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Lingyun You, Dongzhao Jin, Shuaicheng Guo, Jiaqing Wang, Qingli Dai & Zhanping You. (2021) Leaching evaluation and performance assessments of asphalt mixtures with recycled cathode ray tube glass: A preliminary study. Journal of Cleaner Production 279, pages 123716.
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Mohammad Taghipoor, Amid Tahami & Masoud Forsat. (2020) Numerical and laboratory investigation of fatigue prediction models of asphalt containing glass wastes. International Journal of Fatigue 140, pages 105819.
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Wensheng Wang, Yongchun Cheng, Peilei Zhou, Guojin Tan, Haitao Wang & Hanbing Liu. (2019) Performance Evaluation of Styrene-Butadiene-Styrene-Modified Stone Mastic Asphalt with Basalt Fiber Using Different Compaction Methods. Polymers 11:6, pages 1006.
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Yongchun Cheng, Wensheng Wang, Jinglin Tao, Meng Xu, Xiaoli Xu, Guirong Ma & Shurong Wang. (2018) Influence Analysis and Optimization for Aggregate Morphological Characteristics on High- and Low-Temperature Viscoelasticity of Asphalt Mixtures. Materials 11:10, pages 2034.
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Wensheng Wang, Yongchun Cheng, Guojin Tan & Jinglin Tao. (2018) Analysis of Aggregate Morphological Characteristics for Viscoelastic Properties of Asphalt Mixes Using Simplex Lattice Design. Materials 11:10, pages 1908.
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Mostafa Sadeghnejad, Mahyar Arabani & Mohammad Taghipoor. (2018) Predicting the impact of temperature and stress on the glasphalt mixtures’ rutting behavior. International Journal of Pavement Research and Technology 11:3, pages 300-310.
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N. Kamboozia, H. Ziari & H. Behbahani. (2018) Artificial neural networks approach to predicting rut depth of asphalt concrete by using of visco-elastic parameters. Construction and Building Materials 158, pages 873-882.
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Yichuan ZhuLu CongXinli HuZenon Medina-Cetina. (2017) Probabilistic Calibration of a Modified Van der Poel Model Representing the Viscoelastic Behavior of Sandstone. Probabilistic Calibration of a Modified Van der Poel Model Representing the Viscoelastic Behavior of Sandstone.
H. Ziari, H. Behbahani, N. Kamboozia & M. Ameri. (2015) New achievements on positive effects of nanotechnology zyco-soil on rutting resistance and stiffness modulus of glasphalt mix. Construction and Building Materials 101, pages 752-760.
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H. Behbahani, H. Ziari, N. Kamboozia, A. Mansour Khaki & S.M. Mirabdolazimi. (2015) Evaluation of performance and moisture sensitivity of glasphalt mixtures modified with nanotechnology zycosoil as an anti-stripping additive. Construction and Building Materials 78, pages 60-68.
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