The selection of an appropriate healing agent is critical to the success of vascular and mini-vascular networks. In self-healing concrete technology, commercially available cyanoacrylate (CA) adhesives have been shown to produce good strength recoveries; however, their rapid curing rate and short shelf-life make them unsuitable for site application. The aim of this study was to develop a modified cyanoacrylate (n-CA) with an extended shelf-life suitable for incorporation in a self-healing system. A series of n-CAs were formed from a commercial Ethyl Cyanoacrylate adhesive mixed with acrylic acid (AA) and nitro-anthraquinone (nAq) in varying ratios. When encapsulated within 3D printed mini-vascular networks (MVNs), the n-CAs remained dormant...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
Various self-healing methods for concrete, such as the use of supplementary cementitious materials, ...
After several years of research in the Magnel Laboratory (Belgium) to obtain concrete with self-heal...
The selection of an appropriate healing agent is critical to the success of vascular and mini-vascul...
The selection of an appropriate healing agent is critical to the success of vascular and mini-vascul...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
A series of characterisation studies are reported that provide new data on the behaviour of a self-h...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
AbstractAutonomic self-healing cementitious materials generally rely upon the transport of adhesives...
Autonomic self-healing cementitious materials generally rely upon the transport of adhesives via cap...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
This paper presents the results of a series of self-healing experiments conducted on reinforced mort...
Akin to vascular networks carrying clotting agents in the human body, vascular networks in concrete ...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
Various self-healing methods for concrete, such as the use of supplementary cementitious materials, ...
After several years of research in the Magnel Laboratory (Belgium) to obtain concrete with self-heal...
The selection of an appropriate healing agent is critical to the success of vascular and mini-vascul...
The selection of an appropriate healing agent is critical to the success of vascular and mini-vascul...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
A series of characterisation studies are reported that provide new data on the behaviour of a self-h...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Recently, the development of 3D mini-vascular networks has demonstrated their ability to facilitate ...
AbstractAutonomic self-healing cementitious materials generally rely upon the transport of adhesives...
Autonomic self-healing cementitious materials generally rely upon the transport of adhesives via cap...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
This paper presents the results of a series of self-healing experiments conducted on reinforced mort...
Akin to vascular networks carrying clotting agents in the human body, vascular networks in concrete ...
Self-healing cementitious materials can extend the service life of structures, improve safety during...
Various self-healing methods for concrete, such as the use of supplementary cementitious materials, ...
After several years of research in the Magnel Laboratory (Belgium) to obtain concrete with self-heal...