4.7 Review

A review: Reaction mechanism and strength of slag and fly ash-based alkali-activated materials

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Summary: This paper systematically explored the effects of control factors on the early age properties of slag and fly ash-based alkali-activated paste, identifying key factors affecting workability and strength, and proposing a methodology for predicting compressive strength and designing mix proportions.

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In-situ X-ray tomographic imaging of microstructure evolution of fly ash and slag particles in alkali-activated fly ash-slag paste

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Summary: The in-situ investigation using X-ray microcomputed tomography revealed that the dissolution of fly ash and slag particles in alkaliactivated fly ash-slag paste is not uniform. Smaller particles dissolve faster due to their relatively high specific area. The formation of reaction products mostly accumulates within the boundary of original particles, serving as a barrier to prevent further dissolution. The interaction between fly ash and slag in terms of microstructure evolution becomes more apparent at later ages.

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High-temperature performance of ambient-cured alkali-activated binder concrete

Kruthi Kiran Ramagiri et al.

Summary: This study investigates the high-temperature performance of alkali-activated binders (AAB) concrete with different ratios of fly ash and slag, finding that the 70:30 ratio exhibits the best mechanical performance after exposure to elevated temperatures. Moreover, the study reveals that there is an optimum proportion of slag content beyond which the mechanical performance of AAB concrete significantly deteriorates when exposed to high temperatures.

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