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Articles

Development of a rutting index parameter based on the stress sweep rutting test and permanent deformation shift model

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Pages 387-399 | Received 16 Sep 2019, Accepted 23 Mar 2020, Published online: 09 Apr 2020

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Sara Spadoni, Lorenzo Paolo Ingrassia, Piotr Jaskuła & Francesco Canestrari. (2023) Advanced fatigue and rutting characterisation of Polish asphalt mixtures based on the VECD model and viscoplastic shift model. Road Materials and Pavement Design 24:sup1, pages 145-159.
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Yizhuang David Wang, Amir Ghanbari, Benjamin Shane Underwood & Youngsoo Richard Kim. (2022) Development of framework of the predictive performance-engineered mix design procedure for asphalt mixtures. International Journal of Pavement Engineering 23:12, pages 4190-4205.
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Reza Rashetnia, Abhilash Kusam, Shivpal Yadav, Mohammad Pour-Ghaz & Akhtarhusein Tayebali. (2022) Quantifying moisture damage in asphalt concrete using axisymmetric flexural vibration technique. International Journal of Pavement Engineering 23:3, pages 523-535.
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Hamed Majidifard, Behnam Jahangiri, Punyaslok Rath, Amir H. Alavi & William G. Buttlar. (2021) A deep learning approach to predict Hamburg rutting curve. Road Materials and Pavement Design 22:9, pages 2159-2180.
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Articles from other publishers (8)

Marcos Lamha Rocha, Francisco Thiago Sacramento Aragão, Luis Alberto Herrmann do Nascimento & Benjamin Shane Underwood. (2023) Balanced Mixture Design Framework for Asphalt Mixtures Based on Index- and Performance-Volumetrics Relationships. Transportation Research Record: Journal of the Transportation Research Board, pages 036119812311610.
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Rouba Joumblat, Zaher Al Basiouni Al Masri, Ghazi Al Khateeb, Adel Elkordi, Abdel Rahman El Tallis & Joseph Absi. (2023) State-of-the-Art Review on Permanent Deformation Characterization of Asphalt Concrete Pavements. Sustainability 15:2, pages 1166.
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Ram Kumar Veeraragavan, Derek Nener-Plante, Leslie Myers, Casey Nash & Nam H. Tran. (2021) Balanced Mix Design Benchmarking of Field-Produced Asphalt Mixtures in Maine, U.S.. Transportation Research Record: Journal of the Transportation Research Board 2676:5, pages 263-276.
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Wei Cao & Y. Richard Kim. (2022) A Triaxial Viscoplastic Model with Temperature Dependence for Asphalt Concrete Permanent Deformation. International Journal of Applied Mechanics 14:03.
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Behrooz KeshavarziDouglas Mocelin & Youngsoo Richard Kim. (2021) Predicting Thermal Stress Restrained Specimen Test Fracture Temperatures Using the Dissipated Pseudo Strain Energy Criterion. Journal of Transportation Engineering, Part B: Pavements 147:1, pages 04020088.
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Ke Zhang, Wei Xie & Yulong Zhao. (2021) Permanent deformation characteristic of asphalt mixture under coupling effect of moisture, overload and loading frequency. Construction and Building Materials 272, pages 121985.
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Yizhuang David Wang, Amir Ghanbari, Benjamin Shane Underwood & Youngsoo Richard Kim. (2021) Development of preliminary transfer functions for performance predictions in FlexPAVE™. Construction and Building Materials 266, pages 121182.
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Jaehoon Jeong, Yizhuang David Wang, Amir Ghanbari, Casey Nash, Derek Nener-Plante, Benjamin Shane Underwood & Y. Richard Kim. (2020) Pavement performance predictions using performance-volumetric relationship and evaluation of construction variability: Example of MaineDOT shadow project for the development of performance-related specifications. Construction and Building Materials 263, pages 120150.
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