The high autogenous shrinkage of alkali-activated materials made from slag and fly ash is recognised as a major drawback with regard to the use as construction materials. In this study, metakaolin was introduced into the alkali-activated slag-fly ash (AASF) paste to mitigate the autogenous shrinkage. The shrinkage mitigation mechanism of metakaolin was explained by studying the influences of metakaolin on the microstructure, shrinkage related properties, and mechanical properties of AASF paste. It was found that adding metakaolin could significantly reduce the chemical and autogenous shrinkage of AASF paste. This shrinkage mitigation is accompanied by a decrease in the alkalinity of AASF paste pore solution, a reduced drop in internal relat...
International audienceStudies performed on alkali-activated materials (AAMs) in recent years reveal ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
The high autogenous shrinkage of alkali-activated materials made from slag and fly ash is recognised...
This study investigates the effectiveness of metakaolin (MK)in mitigating the autogenous shrinkage o...
This research investigates the mechanism of metakaolin for mitigating the autogenous and drying shri...
This research investigates the mechanism of metakaolin for mitigating the autogenous and drying shri...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
This study investigates the pore structure and shrinkage behavior of metakaolin-based geopolymer pas...
This paper presents the result of studies on utilizing metakaolin obtained from Belitung as fly ash ...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
International audienceStudies performed on alkali-activated materials (AAMs) in recent years reveal ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
The high autogenous shrinkage of alkali-activated materials made from slag and fly ash is recognised...
This study investigates the effectiveness of metakaolin (MK)in mitigating the autogenous shrinkage o...
This research investigates the mechanism of metakaolin for mitigating the autogenous and drying shri...
This research investigates the mechanism of metakaolin for mitigating the autogenous and drying shri...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
This study investigates the pore structure and shrinkage behavior of metakaolin-based geopolymer pas...
This paper presents the result of studies on utilizing metakaolin obtained from Belitung as fly ash ...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
International audienceStudies performed on alkali-activated materials (AAMs) in recent years reveal ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...