The aim of this research is to produce self-healing cementitious composites based on the use of cylindrical capsules containing a repairing agent. Cementitious hollow tubes (CHT) having two different internal diameters (of 2 mm and 7.5 mm) were produced by extrusion and used as containers and releasing devices for cement paste/mortar healing agents. Based on the results of preliminary mechanical tests, sodium silicate was selected as the healing agent. The morphological features of several mix designs used to manufacture the extruded hollow tubes, as well as the coatings applied to increase the durability of both core and shell materials are discussed. Three-point bending tests were performed on samples produced with the addition of the abo...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
This work reports on the self-healing capabilities of mortar specimens with polyurethane encapsulate...
The aim of this research is to produce self-healing cementitious composites based on the use of cyli...
In this work, new advances concerning the feasibility of extruded cementitious hollow tubes as conta...
A novel self-healing system for cement composites is proposed in this study. It is based on the use ...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
In this work, the use of the ureolytic strain Bacillus sphaericus for developing a self-healing ceme...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
This study focuses on the use of additive manufacturing techniques as a possible way to produce nove...
The purpose of this study is to investigate the healing performance of solid capsules made of cement...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
A general conclusion from the work is that both systems require considerable development before bein...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Cement-based materials possess inherent autogenous self-healing capability allowing them to seal, an...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
This work reports on the self-healing capabilities of mortar specimens with polyurethane encapsulate...
The aim of this research is to produce self-healing cementitious composites based on the use of cyli...
In this work, new advances concerning the feasibility of extruded cementitious hollow tubes as conta...
A novel self-healing system for cement composites is proposed in this study. It is based on the use ...
© 2018 fib. International Federation for Structural Concrete Encapsulation-based self-healing techno...
In this work, the use of the ureolytic strain Bacillus sphaericus for developing a self-healing ceme...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
This study focuses on the use of additive manufacturing techniques as a possible way to produce nove...
The purpose of this study is to investigate the healing performance of solid capsules made of cement...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
A general conclusion from the work is that both systems require considerable development before bein...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Cement-based materials possess inherent autogenous self-healing capability allowing them to seal, an...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
This work reports on the self-healing capabilities of mortar specimens with polyurethane encapsulate...