Autonomous Self-Healing Methods as a Potential Technique for the Improvement of Concrete's Durability

Materials (Basel). 2023 Nov 28;16(23):7391. doi: 10.3390/ma16237391.

Abstract

The causes of cracks in concrete are varied, and regardless of their origin, these cracks invariably have a detrimental impact on the durability of concrete structures and escalate their maintenance costs. This paper presents a comprehensive review of current knowledge regarding the methods of self-healing in concrete, ranging from autogenic and improved autogenic self-healing to the autonomous self-healing of concrete. Particular emphasis is placed on the methods of autonomous concrete self-healing: the bacterial healing method, the crystalline hydrophilic additives healing method, and the capsule-based self-healing method. The hypothesis is that applying these self-healing methods could potentially prevent damages or cracks in concrete caused by freeze-thaw cycles, thereby extending the lifespan of concrete structures. The mechanism of action and current achievements in the field are provided for each method.

Keywords: autonomous self-healing; bacteria; capsules; concrete durability; concrete self-healing; cracks; crystalline hydrophilic additives; freezing and thawing.

Publication types

  • Review

Grants and funding

The APC was funded by project KK.01.2.1.02.0206 “Istraživanje i razvoj metoda zaštite građevinske jame: prednapeti AB roštilj (soil press metoda), BBR Adria d.o.o.”, which has received funding from the European Regional Development Fund, Operational Programme “Competitiveness and Cohesion 2014–2020”.