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Self-healing asphalt for road pavements
Self-Healing Asphalt Review: From Idea to Practice
Simulation-Aided Design of Tubular Polymeric Capsules for Self-Healing Concrete
Reinforcement and healing of asphalt mixtures by rejuvenator encapsulation in alginate compartmented fibres
Induction healing of concrete reinforced by bitumen-coated steel fibres
Modelling the influence of cracking and healing on modal properties of concrete beams
Bacteria-based self-healing concrete to increase durability of structures
Self-healing bitumen by microcapsules containing rejuvenator
Self-healing bitumen by microcapsules containing rejuvenator
Potential of bacteria-based repair solution as healing agent for porous network concrete
Preparation and characterization of poly (urea-formaldehyde) walled dicyclopentadiene microcapsules
Reintroducing the intrinsic seld-healing properties in reclaimed asphalt by rejuvenation
Injecting a liquid bacteria-based repair system to make porous network concrete healed
Design of microcapsule system used for self-healing cementitious material
Injecting a liquid bacteria-based repair system to make porous network conrete healed
Potential of bacteria-based repair solution as healing agent for porous network concrete
Evaluation of a microcapsule based self-healing system for cementitious materials
Evaluation of a microcapsule based self-healing system for cementitious materials
Design of microcapsule system used for self-healing cementitious material
Preparation and characterization of poly (urea-formaldehyde) walled dicyclopentadiene microcapsules
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