Microcapsules, with sodium silicate solution as core, were produced using complex coacervation in a double, oil-in-water-in oil, emulsion system. The shell material was a gelatin–acacia gum crosslinked coacervate and the produced microcapsules had diameters ranging from 300 to 700 μm. The shell material designed with switchable mechanical properties. When it is hydrated exhibits soft and ‘rubbery’ behaviour and, when dried, transitions to a stiff and ‘glassy’ material. The microcapsules survived drying and rehydrating cycles and preserved their structural integrity when exposed to highly alkaline solutions that mimic the pH environment of concrete. Microscopy revealed that the shell thickness of the microcapsules varies across their perimet...
Concrete cracking has a negative impact on the durability of the structure. Pre-implanting microcaps...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
© 2017 IOP Publishing. This is an open access article, original content from this work may be used u...
Considerable interest has been directed in recent years toward the use of self-healing materials in ...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
Storing healing agents in capsules is one of the most promising self-healing methods in cementitious...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
The objective of this study is to evaluate a new generation of self-healing materials that hold prom...
In this study, stirring speeds during the synthesizing process of the sodium silicate/polyurethane m...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Autonomic self-healing in cement-based infrastructure materials has recently emerged as a promising ...
Identification of non-structural damage in concrete infrastructure and actuation of preventive repai...
We have developed a concrete material exhibiting self-healing properties and corrosion inhibition. T...
Concrete cracking has a negative impact on the durability of the structure. Pre-implanting microcaps...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...
© 2017 IOP Publishing. This is an open access article, original content from this work may be used u...
Considerable interest has been directed in recent years toward the use of self-healing materials in ...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
Storing healing agents in capsules is one of the most promising self-healing methods in cementitious...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
The objective of this study is to evaluate a new generation of self-healing materials that hold prom...
In this study, stirring speeds during the synthesizing process of the sodium silicate/polyurethane m...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Autonomic self-healing in cement-based infrastructure materials has recently emerged as a promising ...
Identification of non-structural damage in concrete infrastructure and actuation of preventive repai...
We have developed a concrete material exhibiting self-healing properties and corrosion inhibition. T...
Concrete cracking has a negative impact on the durability of the structure. Pre-implanting microcaps...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
In self healing concrete, the propagation of cracks in the material is prevented by embedded microca...