4.7 Article

Crack repairing of high strength engineered cementitious composites using bacteria-free waste medium

Journal

CEMENT & CONCRETE COMPOSITES
Volume 123, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.cemconcomp.2021.104203

Keywords

Cracks; Repair; Bacteria-free waste medium; High strength engineered cementitious composites

Funding

  1. NTU PhD scholarship
  2. Ministry of Education - Singapore Academic Research Funding Tier 1 [RG71/20]

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The study found that high strength ECC showed superior crack healing efficiency when immersed in bacteria-free waste medium compared to water, with carbonate ions playing a key role in the process. The waste medium helped in crack closure, restoring water tightness and tensile properties of the specimens.
High strength engineered cementitious composites (ECC) that fracture under tensile stress present cracks with the width over 100 mu m, which may not be easily repaired by autogenous healing. Herein, this study investigated the healing efficiency of high strength ECC after being immersed in bacteria-free medium which is waste medium during spore cultivation. During incubation of bacteria, concentration of carbonate ions in the medium could rise to 0.30 mol/L approximately. These carbonate ions can be leveraged in calcium carbonate precipitation process for crack healing, which contributed to greater reduction of crack width of ECC specimens in waste medium than that in water. The superior crack closure led to the recovery of water tightness by lowering down the water absorption of cracked specimens and the restoration of tensile properties including both tensile strength and ultimate strain even after final failure of specimens. Therefore, it can be concluded that bacteria-free waste medium is promising to promote healing of concrete cracks.

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