JOURNAL ARTICLE

High-strength high-ductility Engineered/Strain-Hardening Cementitious Composites (ECC/SHCC) incorporating geopolymer fine aggregates

Ling-Yu XuBo-Tao HuangVictor C. LiJian‐Guo Dai

Year: 2021 Journal:   Cement and Concrete Composites Vol: 125 Pages: 104296-104296   Publisher: Elsevier BV

Abstract

In this study, Engineered/Strain-Hardening Cementitious Composites (ECC/SHCC) incorporating geopolymer fine aggregates were successfully developed with high strength and high ductility. A multi-scale investigation was conducted to gain an in-depth understanding of the microstructure and ductility enhancement mechanism of geopolymer aggregate ECC (GPA-ECC). The use of geopolymer fine aggregates enabled the high-strength ECC to achieve higher tensile ductility and finer crack width compared to existing ones with similar compressive strength in the literature. It was found that the GPA reacted with the cementitious matrix, and the width of the GPA/matrix interfacial transition zone (ITZ) was larger than that of the silica sand/matrix ITZ. Moreover, the GPA achieved a strong bond with the cementitious matrix and could behave as “additional flaws” in high-strength matrix, resulting in saturated multiple cracking and excellent tensile ductility of ECC. This study provides a new avenue for developing high-performance fiber-reinforced cementitious composites based on artificial geopolymer aggregates.

Keywords:
Materials science Geopolymer Ductility (Earth science) Composite material Ultimate tensile strength Strain hardening exponent Cracking Cementitious Microstructure Compressive strength Hardening (computing) Aggregate (composite) Creep Cement Layer (electronics)

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184
Cited By
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73
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1.00
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Citation History

Topics

Innovative concrete reinforcement materials
Physical Sciences →  Engineering →  Civil and Structural Engineering
Concrete and Cement Materials Research
Physical Sciences →  Engineering →  Civil and Structural Engineering
Structural Behavior of Reinforced Concrete
Physical Sciences →  Engineering →  Building and Construction

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