A platform for research: civil engineering, architecture and urbanism
Microstructure development of alkali-activated fly ash cement: A descriptive model
The microscopic study of a set of alkali-activated and thermally cured fly ash samples enabled the authors to establish a descriptive model for the microstructural development of fly ash-based cementitious geopolymers. The morphology of most fly ash particles (perfect spheres) not only makes microscopic research highly productive but facilitates the formulation of hypothesis explaining the fly ash activation over time through a series of consecutive steps that can be successfully fitted to real situations.
Microstructure development of alkali-activated fly ash cement: A descriptive model
The microscopic study of a set of alkali-activated and thermally cured fly ash samples enabled the authors to establish a descriptive model for the microstructural development of fly ash-based cementitious geopolymers. The morphology of most fly ash particles (perfect spheres) not only makes microscopic research highly productive but facilitates the formulation of hypothesis explaining the fly ash activation over time through a series of consecutive steps that can be successfully fitted to real situations.
Microstructure development of alkali-activated fly ash cement: A descriptive model
Fernandez-Jimenez, A. (author) / Palomo, A. (author) / Criado, M. (author)
Cement and Concrete Research ; 35 ; 1204-1209
2005
6 Seiten, 20 Quellen
Article (Journal)
English
Portlandzement , chemische Aktivierung , Mikrostruktur , Temperatureinfluss , Massivbau , Beton , Röntgenbeugung , Röntgenanalyse , Fourier-Transform-Infrarotspektroskopie , Kernresonanzspektrometrie , Transmissionselektronenmikroskopie , Rasterelektronenmikroskopie , alkalische Anregung , Geopolymer , Flugaschenzement
Microstructure development of alkali-activated fly ash cement: a descriptive model
British Library Online Contents | 2005
|Microstructure development of alkali-activated fly ash cement: a descriptive model
Online Contents | 2005
|Mechanical properties and microstructure of hybrid alkali-activated cement component
Springer Verlag | 2024
|