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Effects of Steelmaking Slag and Moisture on Electrical Properties of Concrete

Authors
Hong, Se-HeeYuan, Tian-FengChoi, Jin-SeokYoon, Young-Soo
Issue Date
Jun-2020
Publisher
MDPI
Keywords
steelmaking slag; setting times; compressive strength; electrical resistivity; electrical piezoresistivity; electrical sensitivity
Citation
MATERIALS, v.13, no.12
Indexed
SCIE
SCOPUS
Journal Title
MATERIALS
Volume
13
Number
12
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/55089
DOI
10.3390/ma13122675
ISSN
1996-1944
Abstract
Strain sensors can indicate the conditions of concrete structures, but these sensors are only capable of measuring local behaviors of materials. To solve this problem, researchers have introduced conductive materials that can monitor the overall behavior of concrete structures. Steelmaking slag, which contains large amounts of iron oxide (Fe2O3), is conductive, and researchers have considered the addition of this material to improve concrete monitoring. In this study, mechanical and electrical properties of concrete containing steelmaking slag as a binder were evaluated. As the incorporation of steelmaking slag increased, the setting times were delayed, but the compressive strengths were similar within the replacement ratio of 15%. It was found that the addition of steelmaking slag with Fe2O3, the main ingredient of magnetite (Fe3O4), improved the electrical resistivity, piezoresistivity, and sensitivity of the concrete. Drying of the concretes resulted in an increase in electrical resistance and fractional change in resistivity (FCR). Expansion of steelmaking slag, due to contacting of free CaO and moisture under repeated loads, resulted in cracks in the concrete and affected the gauge factor (GF). This study demonstrates the possibility that the addition of steelmaking slag as a binder may provide an economical and environmentally-friendly solution to concrete strain monitoring.
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