Repair of Flexurally Cracked Concrete Beams under Sustained Loading via a MICP Diffusion Method

Most studies on microbially induced calcium carbonate precipitation (MICP) for concrete crack repair focus on unloaded members, while cracks in service are commonly subjected to sustained loading. This study proposes a diffusion-based MICP method for flexurally cracked concrete beams under sustained loading and compares it with a conventional injection method used for unloaded specimens. Five reinforced concrete beams were prepared and evaluated through chloride resistance tests and microstructural analysis. The results show that the diffusion method can effectively seal working cracks and reduce the apparent chloride diffusion coefficient by 54.75% compared with unrepaired specimens. Its durability improvement is comparable to that of the injection method, indicating good potential for engineering applications.

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Publication Details

Journal
WSEAS TRANSACTIONS ON APPLIED AND THEORETICAL MECHANICS
Published
2026-09-15
DOI
https://doi.org/10.37394/232011.2026.21.18
Primary Topic
Microbial Applications in Construction Materials
Type
article
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article

Repair of Flexurally Cracked Concrete Beams under Sustained Loading via a MICP Diffusion Method

Wenshuo Li, Michelle Tinotenda Nyambi
WSEAS TRANSACTIONS ON APPLIED AND THEORETICAL MECHANICS
Microbial Applications in Construction Materials
article

Repair of Flexurally Cracked Concrete Beams under Sustained Loading via a MICP Diffusion Method

Wenshuo Li, Michelle Tinotenda Nyambi
article en

Abstract

Most studies on microbially induced calcium carbonate precipitation (MICP) for concrete crack repair focus on unloaded members, while cracks in service are commonly subjected to sustained loading. This study proposes a diffusion-based MICP method for flexurally cracked concrete beams under sustained loading and compares it with a conventional injection method used for unloaded specimens. Five reinforced concrete beams were prepared and evaluated through chloride resistance tests and microstructural analysis. The results show that the diffusion method can effectively seal working cracks and reduce the apparent chloride diffusion coefficient by 54.75% compared with unrepaired specimens. Its durability improvement is comparable to that of the injection method, indicating good potential for engineering applications.

WSEAS TRANSACTIONS ON APPLIED AND THEORETICAL MECHANICSVol. 21
Jiangsu University (CN), Department of Physics, Mathematics and Informatics (BY), Zhanjiang Experimental Station (CN)
Sustainable cities and communities
Openalex Percentile: Top 18%
Microbial Applications in Construction Materials
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Repair of Flexurally Cracked Concrete Beams under Sustained Loading via a MICP Diffusion Method — Wenshuo Li, Michelle Tinotenda Nyambi · WSEAS TRANSACTIONS ON APPLIED AND THEORETICAL MECHANICS (2026) | TGRS Research Map | TGRS