Cracking is one of the main causes for deterioration of concrete structures. Self-healing concrete with 3D-printed vascular networks has excellent potential for autonomous self-healing. This approach is scarcely investigated: no studies have been devoted to the influence of printing parameters on the properties of vascular based self-healing concrete. In this work, three-dimensional vascular structures with complex geometry were designed and printed with 4 different sets of printing parameters. First, the influence of the four, nominally identical, vascular networks on the initial flexural strength of self-healing concretes was experimentally investigated. In parallel, numerical modeling with a concrete damaged plasticity model (CDPM) in Ab...
Self-healing materials are inspired on self-healing capabilities of living organisms. For plants, an...
Significant research has been conducted over the last two decades to develop self-healing concretes ...
The increasing concern for safety and sustainability of structures is calling for the development of...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Following biomimetic design principles, several vascular network techniques have been studied over t...
Additively manufactured vascular networks have great potential for use in autonomous self-healing of...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Akin to vascular networks carrying clotting agents in the human body, vascular networks in concrete ...
Infrastructure, such as roads and skyscrapers are used by everyone in the city. They enable trade, p...
Among the various possibilities to tackle the issue of concrete damage within its structural service...
YesCracks in concrete composites, whether autogenous or loading-initiated, are almost inevitable and...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Self-healing materials are inspired on self-healing capabilities of living organisms. For plants, an...
Significant research has been conducted over the last two decades to develop self-healing concretes ...
The increasing concern for safety and sustainability of structures is calling for the development of...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Following biomimetic design principles, several vascular network techniques have been studied over t...
Additively manufactured vascular networks have great potential for use in autonomous self-healing of...
This paper presents a new form of biomimetic cementitious material, which employs 3D-printed tetrahe...
Concrete is prone to crack formation in the tensile zone, which is why steel reinforcement is introd...
Akin to vascular networks carrying clotting agents in the human body, vascular networks in concrete ...
Infrastructure, such as roads and skyscrapers are used by everyone in the city. They enable trade, p...
Among the various possibilities to tackle the issue of concrete damage within its structural service...
YesCracks in concrete composites, whether autogenous or loading-initiated, are almost inevitable and...
The success of self-healing cementitious materials relies on their ability to repeatedly heal over t...
Self-healing materials are inspired on self-healing capabilities of living organisms. For plants, an...
Significant research has been conducted over the last two decades to develop self-healing concretes ...
The increasing concern for safety and sustainability of structures is calling for the development of...