The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property for the control of cracking when AAFS is utilized as a building material. In this study, results of drying shrinkage of AAFS pastes with different fly ash content and activator concentrations were presented. The weight loss of samples during the drying process was monitored. The pore structure and free water content of AAFS pastes were measured. The results showed that AAFS pastes with 30 and 50 w. t.% fly ash content exhibited a lower drying shrinkage than alkali-activated slag, while the drying shrinkage of AAFS pastes with 70 w. t.% fly ash content was the largest among all the mixtures. Besides, AAFS pastes with higher activator concentrati...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
In this paper, alkali activated slag-fly ash mortars were prepared by applying the modified Andrease...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This paper addresses the fresh behaviors, gel structure, strength, porosity and drying shrinkage of ...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
This study reports the changes in the compressive strength and shrinkage property of alkali-activate...
The aim of this study is to investigate the strengths and drying shrinkage of alkali-activated slag ...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
The current study aims to develop a drying shrinkage model for alkali-activated slag concrete (AASC)...
\u3cp\u3eIn this paper, alkali activated slag-fly ash mortars were prepared by applying the modified...
This study investigates the drying shrinkage and the shrinkage-induced stress of alkali-activated bl...
Abstract One-part alkali-activated binders, also known as the “just-add-water” concept, have receiv...
Significant drying shrinkage is one of the main limitations for the wider utilization of alkali-acti...
The autogenous shrinkage of alkali-activated fly ash/slag (AAFS) pastes during first 24 h after cast...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
In this paper, alkali activated slag-fly ash mortars were prepared by applying the modified Andrease...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This paper addresses the fresh behaviors, gel structure, strength, porosity and drying shrinkage of ...
The purpose of this study is to investigate the autogenous shrinkage of alkali-activated slag/fly as...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
This study reports the changes in the compressive strength and shrinkage property of alkali-activate...
The aim of this study is to investigate the strengths and drying shrinkage of alkali-activated slag ...
This study aims to provide a better understanding of the autogenous shrinkage of slag and fly ash-ba...
The current study aims to develop a drying shrinkage model for alkali-activated slag concrete (AASC)...
\u3cp\u3eIn this paper, alkali activated slag-fly ash mortars were prepared by applying the modified...
This study investigates the drying shrinkage and the shrinkage-induced stress of alkali-activated bl...
Abstract One-part alkali-activated binders, also known as the “just-add-water” concept, have receiv...
Significant drying shrinkage is one of the main limitations for the wider utilization of alkali-acti...
The autogenous shrinkage of alkali-activated fly ash/slag (AAFS) pastes during first 24 h after cast...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
In this paper, alkali activated slag-fly ash mortars were prepared by applying the modified Andrease...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...