Self-Healing Performance of Concrete with Combined Incorporation of CCCW and Microcapsules

Crack-induced durability deterioration remains a critical challenge for concrete structures. Cementitious capillary crystalline waterproofing materials (CCCW) enable moisture-driven crystallization, while alginate/epoxy microcapsules provide stress-induced bonding. However, it remains unclear whether combining the two agents produces a complementary repair effect or only an additive one under different humidity conditions. This study investigates the self-healing properties of concrete containing CCCW and alginate/epoxy microcapsules. The results indicate that the healing performance of microcapsules depends little on moisture dependence and shows stable repair performance, while CCCW performs well in humid environments but is inhibited under dry conditions. At a fixed total dosage of 3%, the optimal hybrid system containing 2% microcapsule and 1% CCCW achieves higher recovery rates than any single-admixture group under all three curing conditions. This improvement is consistent with potentially complementary contributions from microcapsules and CCCW, although the detailed chemical nature and temporal evolution of the observed deposits require further investigation. This study provides a reference for the design and application of multi-component self-healing concrete in complex service environments.

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Publication Details

Journal
Buildings
Published
2026-09-13
DOI
https://doi.org/10.3390/buildings16183644
Primary Topic
Microbial Applications in Construction Materials
Type
article
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article

Self-Healing Performance of Concrete with Combined Incorporation of CCCW and Microcapsules

Miao Lv, Runfeng Li, Yu Gu, Xinxin Li et al.
Buildings
Microbial Applications in Construction Materials
article

Self-Healing Performance of Concrete with Combined Incorporation of CCCW and Microcapsules

Miao Lv, Runfeng Li, Yu Gu, Xinxin Li, Xuehui An
article en

Abstract

Crack-induced durability deterioration remains a critical challenge for concrete structures. Cementitious capillary crystalline waterproofing materials (CCCW) enable moisture-driven crystallization, while alginate/epoxy microcapsules provide stress-induced bonding. However, it remains unclear whether combining the two agents produces a complementary repair effect or only an additive one under different humidity conditions. This study investigates the self-healing properties of concrete containing CCCW and alginate/epoxy microcapsules. The results indicate that the healing performance of microcapsules depends little on moisture dependence and shows stable repair performance, while CCCW performs well in humid environments but is inhibited under dry conditions. At a fixed total dosage of 3%, the optimal hybrid system containing 2% microcapsule and 1% CCCW achieves higher recovery rates than any single-admixture group under all three curing conditions. This improvement is consistent with potentially complementary contributions from microcapsules and CCCW, although the detailed chemical nature and temporal evolution of the observed deposits require further investigation. This study provides a reference for the design and application of multi-component self-healing concrete in complex service environments.

BuildingsVol. 16(18)
Jingdong (China) (CN), China Building Materials Academy (CN), China Academy of Building Research (CN), Chongqing Jiaotong University (CN), Tsinghua University (CN)
Openalex Percentile: Top 17%
Microbial Applications in Construction Materials
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Self-Healing Performance of Concrete with Combined Incorporation of CCCW and Microcapsules — Miao Lv, Runfeng Li, et al. · Buildings (2026) | TGRS Research Map | TGRS