Self-healing cementitious materials can extend the service life of structures, improve safety during repair activities and reduce costs with minimal human intervention. Recent advances in self-healing research have shown promise for capsule-based and intrinsic healing systems. However, limited information is available regarding vascular-based self-healing mechanisms. The aim of this work is to compare different commercially available healing agents regarding their suitability in a self-healing vascular network system by examining a regain in durability and mechanical properties. The healing agents investigated include sodium silicate, two polyurethanes, two water repellent agents and an epoxy resin. Sealing efficiencies above 100% were achi...
A series of characterisation studies are reported that provide new data on the behaviour of a self-h...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
A range of self-healing technologies for cementitious materials has been developed over the last 2 d...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Recent developments in self-healing technology inspired by natural biological materials have the pot...
Additively manufactured vascular networks have great potential for use in autonomous self-healing of...
Cracks in reinforced concrete elements can cause major durability issues due do the accelerated ingr...
Encapsulation-based self-healing technology is an effective method for healing the crack-deteriorate...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
Infrastructure, such as roads and skyscrapers are used by everyone in the city. They enable trade, p...
In this work, new advances concerning the feasibility of extruded cementitious hollow tubes as conta...
A series of characterisation studies are reported that provide new data on the behaviour of a self-h...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
A range of self-healing technologies for cementitious materials has been developed over the last 2 d...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Recent developments in self-healing technology inspired by natural biological materials have the pot...
Additively manufactured vascular networks have great potential for use in autonomous self-healing of...
Cracks in reinforced concrete elements can cause major durability issues due do the accelerated ingr...
Encapsulation-based self-healing technology is an effective method for healing the crack-deteriorate...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
Infrastructure, such as roads and skyscrapers are used by everyone in the city. They enable trade, p...
In this work, new advances concerning the feasibility of extruded cementitious hollow tubes as conta...
A series of characterisation studies are reported that provide new data on the behaviour of a self-h...
Cracking in concrete is frequently a concern since these cracks can provide easy entry channels for ...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...