Self-healing microcapsules were synthesized by in situ polymerization with a melamine urea-formaldehyde resin shell and an epoxy resin adhesive. The effects of the key factors, i.e., core–wall ratio, reaction temperature, pH and stirring rate, were investigated by characterizing microcapsule morphology, shell thickness, particle size distribution, mechanical properties and chemical nature. Microcapsule healing mechanisms in cement paste were evaluated based on recovery strength and healing microstructure. The results showed that the encapsulation ability, the elasticity modulus and hardness of the capsule increased with an increase of the proportion of shell material. Increased polymerization temperatures were beneficial to the higher degre...
Storing healing agents in capsules is one of the most promising self-healing methods in cementitious...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
Capsule-based self-healing of cementitious materials is an effective way of healing cracks, signific...
Self-healing microcapsules were synthesized by in situ polymerization with a melamine urea-formaldeh...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
For a microcapsule based self-healing system in the cementitious material, a fundamental issue is to...
Autonomic self-healing in cement-based infrastructure materials has recently emerged as a promising ...
In this study, stirring speeds during the synthesizing process of the sodium silicate/polyurethane m...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
Poly(urea-formaldehyde) (PUF) microcapsules that enclose dicyclopentadiene (DCPD) were successfully ...
Microcapsules, with sodium silicate solution as core, were produced using complex coacervation in a ...
Urea-formaldehyde (UF) microcapsules filled with dicyclopentadiene (DCPD) show potential for making ...
The use of encapsulating healing agents that allow the self-healing of concrete has emerged as a pot...
A series of poly(urea-formaldehyde) (PUF) microcapsules filled with dicyclopentadiene (DCPD) was suc...
Storing healing agents in capsules is one of the most promising self-healing methods in cementitious...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
Capsule-based self-healing of cementitious materials is an effective way of healing cracks, signific...
Self-healing microcapsules were synthesized by in situ polymerization with a melamine urea-formaldeh...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
Self-healing cementitious materials containing a microencapsulated healing agent are appealing due t...
For a microcapsule based self-healing system in the cementitious material, a fundamental issue is to...
Autonomic self-healing in cement-based infrastructure materials has recently emerged as a promising ...
In this study, stirring speeds during the synthesizing process of the sodium silicate/polyurethane m...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
Poly(urea-formaldehyde) (PUF) microcapsules that enclose dicyclopentadiene (DCPD) were successfully ...
Microcapsules, with sodium silicate solution as core, were produced using complex coacervation in a ...
Urea-formaldehyde (UF) microcapsules filled with dicyclopentadiene (DCPD) show potential for making ...
The use of encapsulating healing agents that allow the self-healing of concrete has emerged as a pot...
A series of poly(urea-formaldehyde) (PUF) microcapsules filled with dicyclopentadiene (DCPD) was suc...
Storing healing agents in capsules is one of the most promising self-healing methods in cementitious...
AbstractSpherical polymeric microcapsules, carrying liquid sodium silicate, were used for autonomic ...
Capsule-based self-healing of cementitious materials is an effective way of healing cracks, signific...