The service life of steel reinforced concrete in aggressive marine environments could be increased substantially by embedding a self-healing mechanism that ensures autonomous healing of cracks upon their occurrence. Previous proof-of-concept experiments have shown that the incorporation of encapsulated polymer-based healing agents (HAs) counts as a very appropriate way to achieve this goal. Over the years, several polymer-precursor-capsule systems have been developed in that perspective at our laboratory. Cementitious materials containing either commercial or in-house developed encapsulated HAs have been subjected to preliminary feasibility tests (water absorption, permeability tests, etc.). However, these experiments did not yet allow for ...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
To achieve higher sustainability of steel reinforced concrete structures, their service life should ...
The service life of steel reinforced concrete in aggressive marine environments could be increased s...
By incorporating encapsulated polymers in concrete, cracks can be healed autonomously upon occurrenc...
A lot of damage is reported for constructions in marine environments. Marine environments are very a...
Formation of cracks impairs the durability of concrete elements. Corrosion inducing substances, such...
Chloride induced corrosion of reinforcing steel is one of the most important damage mechanisms of re...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
By incorporating self-healing agents in concrete, cracks can be healed autonomously upon occurrence....
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Although certain crack widths are allowed in reinforced concrete structures, without having immediat...
Extensive research has already been performed on self-healing concrete based on atriggered release o...
To reduce concrete’s susceptibility to cracking, full autonomous healing mechanisms are being studie...
Application of self-healing concrete reduces the need for expensive maintenance and repair actions. ...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
To achieve higher sustainability of steel reinforced concrete structures, their service life should ...
The service life of steel reinforced concrete in aggressive marine environments could be increased s...
By incorporating encapsulated polymers in concrete, cracks can be healed autonomously upon occurrenc...
A lot of damage is reported for constructions in marine environments. Marine environments are very a...
Formation of cracks impairs the durability of concrete elements. Corrosion inducing substances, such...
Chloride induced corrosion of reinforcing steel is one of the most important damage mechanisms of re...
Polymeric healing agents have proven their efficiency to heal cracks in concrete in an autonomous wa...
By incorporating self-healing agents in concrete, cracks can be healed autonomously upon occurrence....
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Although certain crack widths are allowed in reinforced concrete structures, without having immediat...
Extensive research has already been performed on self-healing concrete based on atriggered release o...
To reduce concrete’s susceptibility to cracking, full autonomous healing mechanisms are being studie...
Application of self-healing concrete reduces the need for expensive maintenance and repair actions. ...
Self-healing concrete aims at the autonomous healing of small cracks, with widths in the order of a ...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
To achieve higher sustainability of steel reinforced concrete structures, their service life should ...