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Effect of C2S and limestone powder contents on interfacial bond characteristics of high-strength steel fibers embedded in low-carbon mortars

Authors
Nguyen, Van ThongDang, Van PhiNoh, Hyeon WooKim, Dong Joo
Issue Date
Apr-2026
Publisher
Elsevier Ltd
Keywords
Belite-rich cement; Interfacial bond characteristics; low-carbon mortar; Nanoindentation; Pullout resistance; Sustainability evaluation
Citation
Construction and Building Materials, v.519, pp 1 - 27
Pages
27
Indexed
SCIE
SCOPUS
Journal Title
Construction and Building Materials
Volume
519
Start Page
1
End Page
27
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/219723
DOI
10.1016/j.conbuildmat.2026.145869
ISSN
0950-0618
1879-0526
Abstract
This study explores influence of dicalcium silicate (C2S) and limestone powder (LP) contents on the interfacial bond characteristics of smooth and hooked steel fibers embedded in low-carbon mortars. Four mortar compositions with varying LP (0–30%) and C2S (16.4–57.2%) contents were evaluated through single-fiber pullout, compressive tests, SEM–EDS, and nanoindentation (NI) analyses. A mixture containing 10% LP substitution in belite-rich cement (BRC) exhibited optimal performance and sustainability. Although increased C2S content in BRC reduced early-age strength, it significantly enhanced the long-term mechanical and interfacial properties and improved the 90-day compressive strength, bond strength, and pullout energy by up to 65%. Higher LP levels yielded denser fiber–matrix interfacial zones (FMZs) and reduced porosity (25.0%→18.9%), while elevated C2S promoted greater C-S-H formation (34.6%→51.5%). The optimized LP–BRC system demonstrated superior durability and interfacial performance with substantially lower CO2 emissions, offering a viable and sustainable alternative to ordinary Portland cement (OPC).
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KIM, Dong Joo
COLLEGE OF ENGINEERING (DEPARTMENT OF CIVIL AND ENVIRONMENTAL ENGINEERING)
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