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Babak Asadi
Babak Asadi
Verifierad e-postadress på illinois.edu
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Use of linear amplitude sweep test as a damage tolerance or fracture test to determine the optimum content of asphalt rejuvenator
B Asadi, N Tabatabaee, R Hajj
Construction and Building Materials 300, 123983, 2021
272021
Alteration of initial and residual healing potential of asphalt binders due to aging, rejuvenation, and polymer modification
B Asadi, N Tabatabaee
Road Materials and Pavement Design 23 (2), 287-307, 2022
142022
Prediction of asphalt binder elastic recovery using tree-based ensemble bagging and boosting models
B Asadi, R Hajj
Construction and Building Materials 410, 134154, 2024
52024
Crack-based healing master curve derived from linear amplitude sweep tests: a cohesive healing indicator for asphalt binders
B Asadi, N Tabatabaee, R Hajj
Materials and Structures 54 (4), 170, 2021
42021
Rheological, mechanical, microscopic, and chemical characterization of asphalt binders at extended aging levels
Y Lu, B Asadi, R Hajj
Journal of Materials in Civil Engineering 35 (8), 04023256, 2023
32023
Asphalt concrete dynamic modulus prediction: Bayesian neural network approach
B Asadi, R Hajj, IL Al-Qadi
International Journal of Pavement Engineering 24 (2), 2270569, 2023
12023
Updates to Mechanistic-Empirical Design Inputs for Illinois Flexible Pavements
R Hajj, M Thompson, R Santos Maia, Y Lu, A Vyas, B Asadi, B Regmi
FHWA-ICT-24-008, 2024
2024
Review of Illinois Multiple Stress Creep and Recovery Data for Future Implementation
R Hajj, B Asadi
FHWA-ICT-23-020, 2023
2023
Using Microcapsules and Bacteria for Self-Healing in Rigid and Flexible Pavements
R Hajj, N Garg, J Doehring, A Vyas, B Asadi, Y Lu
ICT-23-001, 2023
2023
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Artiklar 1–9