Self‐healing asphalt review: from idea to practice S Xu, A García, J Su, Q Liu, A Tabaković, E Schlangen Advanced Materials Interfaces 5 (17), 1800536, 2018 | 187 | 2018 |
Self-healing technology for asphalt pavements A Tabaković, E Schlangen Self-healing materials, 285-306, 2016 | 150 | 2016 |
Calcium alginate capsules encapsulating rejuvenator as healing system for asphalt mastic S Xu, A Tabaković, X Liu, E Schlangen Construction and Building Materials 169, 379-387, 2018 | 124 | 2018 |
Influence of recycled asphalt pavement on fatigue performance of asphalt concrete base courses A Tabaković, A Gibney, C McNally, MD Gilchrist Journal of Materials in Civil Engineering 22 (6), 643-650, 2010 | 120 | 2010 |
Developing maturity methods for the assessment of cold-mix bituminous materials TA Doyle, C McNally, A Gibney, A Tabaković Construction and building materials 38, 524-529, 2013 | 79 | 2013 |
The compartmented alginate fibres optimisation for bitumen rejuvenator encapsulation A Tabaković, D Braak, M van Gerwen, O Copuroglu, W Post, SJ Garcia, ... Journal of Traffic and Transportation Engineering (English Edition) 4 (4 …, 2017 | 78 | 2017 |
The reinforcement and healing of asphalt mastic mixtures by rejuvenator encapsulation in alginate compartmented fibres A Tabaković, W Post, D Cantero, O Copuroglu, SJ Garcia, E Schlangen Smart Materials and Structures 25 (8), 084003, 2016 | 76 | 2016 |
A novel self-healing system: Towards a sustainable porous asphalt S Xu, X Liu, A Tabaković, E Schlangen Journal of Cleaner Production 259, 120815, 2020 | 69 | 2020 |
Optimization of the calcium alginate capsules for self-healing asphalt S Xu, A Tabaković, X Liu, D Palin, E Schlangen Applied Sciences 9 (3), 468, 2019 | 58 | 2019 |
Investigation of the potential use of calcium alginate capsules for self-healing in porous asphalt concrete S Xu, X Liu, A Tabaković, E Schlangen Materials 12 (1), 168, 2019 | 58 | 2019 |
An evaluation of the efficiency of compartmented alginate fibres encapsulating a rejuvenator as an asphalt pavement healing system A Tabaković, L Schuyffel, A Karač, E Schlangen Applied Sciences 7 (7), 647, 2017 | 58 | 2017 |
Specification development for cold in-situ recycling of asphalt A Tabaković, C McNally, E Fallon Construction and Building Materials 102, 318-328, 2016 | 50 | 2016 |
The role of rejuvenators in embedded damage healing for asphalt pavement S Xu, X Liu, A Tabaković, P Lin, Y Zhang, S Nahar, BJ Lommerts, ... Materials & Design 202, 109564, 2021 | 44 | 2021 |
Microwave self-healing technology as airfield porous asphalt friction course repair and maintenance system A Tabaković, D O’Prey, D McKenna, D Woodward Case Studies in Construction Materials 10, e00233, 2019 | 37 | 2019 |
Modelling the quasi-static behaviour of bituminous material using a cohesive zone model A Tabaković, A Karač, A Ivanković, A Gibney, C McNally, MD Gilchrist Engineering Fracture Mechanics 77 (13), 2403-2418, 2010 | 29 | 2010 |
Experimental investigation of the performance of a hybrid self-healing system in porous asphalt under fatigue loadings S Xu, X Liu, A Tabaković, E Schlangen Materials 14 (12), 3415, 2021 | 22 | 2021 |
The prospect of microwave heating: Towards a faster and deeper crack healing in asphalt pavement S Xu, X Liu, A Tabaković, E Schlangen Processes 9 (3), 507, 2021 | 19 | 2021 |
Optimizing the valorization of industrial by-products for the induction healing of asphalt mixtures M Vila-Cortavitarte, D Jato-Espino, A Tabakovic, D Castro-Fresno Construction and Building Materials 228, 116715, 2019 | 19 | 2019 |
Recycled asphalt (RA) for pavements A Tabaković Handbook of Recycled Concrete and Demolition Waste, 394-423, 2013 | 15 | 2013 |
The influence of recycled asphalt pavement on 20mm binder course mix performance A Tabakovic, A Gibney, MD Gilchrist, C McNally | 14 | 2006 |