Consolidating previous research on the development of novel microcapsules for self-healing in cementitious systems, this work forms a base for developing an implementation strategy and guidance for microcapsule-based self-healing technology. The study presents details of the first commercial deployment of this technology, as a ready-mix self-healing additive for commercial application. This involved the on-site construction of two slabs in a new development at the University of Cambridge. This paper describes the optimization of the mix, the structural concept and design, and processing and casting procedures. Prior to application, the compliance and compatibility of the healing additive with the concrete according to specifications and req...
Self-healing concrete has emerged as one of the prospective materials to be used in future construct...
Within the theme ‘Self-healing materials for prolonged lifetime’ (NMP.2012.2.1-3) of the Seventh Fra...
Within the theme \u91Self-healing materials for prolonged lifetime\u92 (NMP.2012.2.1-3) of the Seven...
Maintaining the health and reliability of our infrastructure is of strategic importance. The current...
Materials for Life (M4L) was a 3 year, EPSRC funded, research project carried out by the Universitie...
The development of a self-healing concrete aimed at improving the durability of concrete structures ...
Identification of non-structural damage in concrete infrastructure and actuation of preventive repai...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
The use of self-healing cement-based materials has been recognized as a viable pathway to enhance th...
The use of self-healing cement-based materials has been recognized as a viable pathway to enhance th...
Self-healing concrete with microencapsulated calcium nitrate was investigated. The compressive stren...
The objective of this study is to evaluate a new generation of self-healing materials that hold prom...
The self-healing efficiency of cementitious materials was improved by developing several strategies ...
Self-healing concrete has emerged as one of the prospective materials to be used in future construct...
Within the theme ‘Self-healing materials for prolonged lifetime’ (NMP.2012.2.1-3) of the Seventh Fra...
Within the theme \u91Self-healing materials for prolonged lifetime\u92 (NMP.2012.2.1-3) of the Seven...
Maintaining the health and reliability of our infrastructure is of strategic importance. The current...
Materials for Life (M4L) was a 3 year, EPSRC funded, research project carried out by the Universitie...
The development of a self-healing concrete aimed at improving the durability of concrete structures ...
Identification of non-structural damage in concrete infrastructure and actuation of preventive repai...
The implementation of self-healing techniques as part of repair methodologies in extending the servi...
Self-healing concrete designs can protect against deterioration and improve durability. However, the...
To reduce downtime, costs and labour for repair of concrete structures, self-healing concrete has be...
The use of self-healing cement-based materials has been recognized as a viable pathway to enhance th...
The use of self-healing cement-based materials has been recognized as a viable pathway to enhance th...
Self-healing concrete with microencapsulated calcium nitrate was investigated. The compressive stren...
The objective of this study is to evaluate a new generation of self-healing materials that hold prom...
The self-healing efficiency of cementitious materials was improved by developing several strategies ...
Self-healing concrete has emerged as one of the prospective materials to be used in future construct...
Within the theme ‘Self-healing materials for prolonged lifetime’ (NMP.2012.2.1-3) of the Seventh Fra...
Within the theme \u91Self-healing materials for prolonged lifetime\u92 (NMP.2012.2.1-3) of the Seven...