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Self-heating performance of cement composites devised with carbon black and carbon fiber: Roles of superplasticizer and silica fume

Authors
Vu, Thanh DucGwon, SeongwooChoi, Young CheolShin, Myoungsu
Issue Date
Dec-2023
Publisher
ELSEVIER
Keywords
Conductive filler; Silica fume; Superplasticizer; Self-heating; Electrical concrete curing
Citation
JOURNAL OF BUILDING ENGINEERING, v.80
Journal Title
JOURNAL OF BUILDING ENGINEERING
Volume
80
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/89675
DOI
10.1016/j.jobe.2023.108054
ISSN
2352-7102
2352-7102
Abstract
This study introduces an innovative approach to enhancing the self-heating performance of electrically conductive cement composites (ECCCs) by integrating carbon black and carbon fiber. The main test variables were the contents of silica fume (SF) and superplasticizer (SP). Among the 15 mixtures tested, three mixtures of the 3 % SP series containing 0, 5, and 10 % SF, showing a lower electrical resistivity than the other series, were selected and subjected to 24-h heating performance tests. Subsequently, their hydration characteristics, dispersion of conductive agents, and thermal expansion were examined. The outcomes of these tests unequivocally affirmed that incorporating SF at levels of 0 %-5 % in conjunction with 3 % SP effectively preserved the longterm self-heating performance of ECCCs. This research not only confirms the feasibility of this novel composite formulation but also highlights its potential advantages in maintaining consistent thermal performance, demonstrating its substantial promise for a broad array of applications in construction.
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