Capsules for self-healing concrete have to possess multifunctional properties and it would be an enormous advantage in the valorization process when they could also be mixed in. Therefore, we aimed to develop capsules with evolving brittleness. Capsules with high initial flexibility were prepared by adding a plasticizer to an ethyl cellulose matrix. During hardening of the concrete, the plasticizing agent should leach out to the moist environment yielding more brittle capsules which break upon crack appearance. The tested capsules could easily be mixed in during concrete production. However, incompatibility issues between the capsule wall and the inner polymeric healing agent appeared. Moreover, the capsules became insufficiently brittle ...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
Concrete is very sensitive to crack formation. As wide cracks endanger the durability, repair may be...
Concrete is one of the most important construction materials, used to make buildings, bridges, roads...
Capsules for self-healing concrete have to possess multifunctional properties and it would be an eno...
Development of suitable capsules is essential to achieve self-healing by encapsulation. In the conte...
International audienceUp to now, glass capsules, which cannot resist the mixing process of concrete,...
© 2018 Elsevier Ltd Development of suitable capsules is essential to achieve self-healing by encapsu...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
Now, most of the capsules used to contain polymeric healing agents in self-healing concrete, are mad...
Minerals can be incorporated in concrete to promote self-healing. Encapsulation of minerals is neede...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
Polymeric capsules can have an advantage over glass capsules used up to now as proof-of-concept carr...
In this study, we fabricated self-healing solid capsules using cement powder, an inorganic-based mat...
We have developed a concrete material exhibiting self-healing properties and corrosion inhibition. T...
Due to low activity or long mineralization time, traditional mineral agents for self-healing concret...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
Concrete is very sensitive to crack formation. As wide cracks endanger the durability, repair may be...
Concrete is one of the most important construction materials, used to make buildings, bridges, roads...
Capsules for self-healing concrete have to possess multifunctional properties and it would be an eno...
Development of suitable capsules is essential to achieve self-healing by encapsulation. In the conte...
International audienceUp to now, glass capsules, which cannot resist the mixing process of concrete,...
© 2018 Elsevier Ltd Development of suitable capsules is essential to achieve self-healing by encapsu...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
Now, most of the capsules used to contain polymeric healing agents in self-healing concrete, are mad...
Minerals can be incorporated in concrete to promote self-healing. Encapsulation of minerals is neede...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
Polymeric capsules can have an advantage over glass capsules used up to now as proof-of-concept carr...
In this study, we fabricated self-healing solid capsules using cement powder, an inorganic-based mat...
We have developed a concrete material exhibiting self-healing properties and corrosion inhibition. T...
Due to low activity or long mineralization time, traditional mineral agents for self-healing concret...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
Concrete is very sensitive to crack formation. As wide cracks endanger the durability, repair may be...
Concrete is one of the most important construction materials, used to make buildings, bridges, roads...