Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous way. However, the bottleneck for valorisation of self-healing concrete with polymeric healing agents is their encapsulation. In the present work, the suitability of polymeric materials such as poly(methyl methacrylate) (PMMA), polystyrene (PS) and poly(lactic acid) (PLA) as carriers for healing agents in self-healing concrete has been evaluated. The durability of the polymeric capsules in different environments (demineralized water, salt water and simulated concrete pore solution) and their compatibility with various healing agents have been assessed. Next, a numerical model was used to simulate capsule rupture when intersected by a crack in co...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
The service life of steel reinforced concrete in aggressive marine environments could be increased s...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
© 2018 Elsevier Ltd Development of suitable capsules is essential to achieve self-healing by encapsu...
Development of suitable capsules is essential to achieve self-healing by encapsulation. In the conte...
Polymeric capsules can have an advantage over glass capsules used up to now as proof-of-concept carr...
International audienceUp to now, glass capsules, which cannot resist the mixing process of concrete,...
Now, most of the capsules used to contain polymeric healing agents in self-healing concrete, are mad...
Extensive research has already been performed on self-healing concrete based on atriggered release o...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
It has been estimated that, in Europe, 50 % of the annual construction budget is spent on refurbishm...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
The service life of steel reinforced concrete in aggressive marine environments could be increased s...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
© 2018 Elsevier Ltd Development of suitable capsules is essential to achieve self-healing by encapsu...
Development of suitable capsules is essential to achieve self-healing by encapsulation. In the conte...
Polymeric capsules can have an advantage over glass capsules used up to now as proof-of-concept carr...
International audienceUp to now, glass capsules, which cannot resist the mixing process of concrete,...
Now, most of the capsules used to contain polymeric healing agents in self-healing concrete, are mad...
Extensive research has already been performed on self-healing concrete based on atriggered release o...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
It has been estimated that, in Europe, 50 % of the annual construction budget is spent on refurbishm...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
The service life of steel reinforced concrete in aggressive marine environments could be increased s...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...