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Pyo, Sukhoon
Innovative Materials for Construction and Transportation Lab.
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Exploring the role of accelerated carbonation curing on chloride-induced reinforcing steel corrosion in OPC and blended cement matrix

Author(s)
Liyew, GebremicaelPyo, SukhoonPark, SolmoiJeon, Sang-MinLee, Hyo KyoungJang, Jeong GookKim, Hyeong-Ki
Issued Date
2025-05
DOI
10.1016/j.jobe.2025.111965
URI
https://scholarworks.unist.ac.kr/handle/201301/86633
Citation
JOURNAL OF BUILDING ENGINEERING, v.102, pp.111965
Abstract
This study explores the role of accelerated carbonation curing (ACC) in chloride penetration mechanisms and the initiation of steel corrosion in cement-based mixtures. Assessment of basic properties and pore network and chemical analyses were conducted. The chloride penetration resistance and corrosion potential of reinforcing steel in the specimens were evaluated with accelerated and static tests. The results were comprehensively analyzed to discuss the effect of ACC on the durability of ordinary Portland cement (OPC) and blended cement against chloride attack and steel corrosion. Results show that ACC significantly enhances OPC's chloride penetration resistance, as evidenced by reduced chloride migration coefficients and lower corrosion rates. In contrast, ACC does not substantially affect chloride resistance of blended cement. The impact of ACC on OPC was linked to reduced pore connectivity and changes in pore size distribution, while blended cements exhibit minimal pore connectivity alterations.
Publisher
ELSEVIER
ISSN
2352-7102
Keyword (Author)
Chemical analysisPorosityDurability-based designAccelerated carbonation curing (ACC)Blended cementCorrosionChloride attack
Keyword
FLY-ASHCONCRETESTRENGTHIMPACT

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