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Multiscale microstructure and micromechanical properties of alkali-activated concrete: A critical review
被引:27
作者:
Tu, Wenlin
[1
]
Zhang, Mingzhong
[1
]
机构:
[1] UCL, Dept Civil Environm & Geomat Engn, London WC1E 6BT, England
关键词:
Alkali -activated materials;
Geopolymer;
Reaction mechanisms;
Phase assemblage;
Interfacial transition zone;
Nanoindentation;
C-S-H;
BLAST-FURNACE SLAG;
INTERFACIAL TRANSITION ZONE;
CALCIUM-SILICATE-HYDRATE;
CEMENT-BASED MATERIALS;
METAKAOLIN-BASED GEOPOLYMER;
FLY-ASH CEMENT;
MECHANICAL-PROPERTIES;
COMPRESSIVE STRENGTH;
PORE STRUCTURE;
D O I:
10.1016/j.cemconcomp.2024.105664
中图分类号:
TU [建筑科学];
学科分类号:
0813 ;
摘要:
With the rapid development of alkali-activated concrete (AAC) as a promising sustainable concrete, it is vital to thoroughly understand the microstructural characteristics and micromechanical properties, which determine the macroscopic mechanical properties and structural performance of AAC. This paper presents a critical review on the multiscale microstructure and micromechanical properties of AAC with both single and blend precursor systems, including alkali-activated fly ash (AAF), alkali-activated metakaolin (AAMK), alkali-activated slag (AAS), and alkali-activated fly ash-slag (AAFS). These types of AAC are systematically studied from nano-scale to macro-scale, covering solid gel particles (N-A-S-H, C-A-S-H and N-C-A-S-H), gel matrix (solid gel particles + gel pores), paste (unreacted particles + reaction products + pores), mortar and concrete (paste + interfacial transition zone + aggregates). The recent advances in microstructure and micromechanical properties of AAC are discussed, with special focus on microstructure-mechanical property relationships. The remaining challenges and opportunities for future research are also provided.
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页数:25
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