The aim of this study is to investigate the strengths and drying shrinkage of alkali-activated slag paste and mortar. Compressive strength, tensile strength, and drying shrinkage of alkali-activated slag paste and mortar were measured with various liquid/slag ratios, sand/slag ratios, curing ages, and curing temperatures. Experimental results show that the higher compressive strength and tensile strength have been observed in the higher curing temperature. At the age of 56 days, AAS mortars show higher compressive strength than Portland cement mortars and AAS mortars with liquid/slag ratio of 0.54 have the highest tensile strength in all AAS mortars. In addition, AAS pastes of the drying shrinkage are higher than AAS mortars. Meanwhile, hig...
The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
© 2016 Elsevier Ltd In this work, drying shrinkage of four alkali-activated slag (AAS) mortars, prep...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
This paper presents a study on the evolution of strength and alteration microstructure of alkali-act...
This paper presents the influence of shrinkage-reducing (SHR) and superplasticizing and set-retardin...
Shrinkage of alkali‐activated slag (AAS) cement is a critical issue for its industrial application. ...
This paper presents a study on the evolution of strength and alteration microstructure of alkaliacti...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
This study focused on the engineering properties of alkali-activated slag (AAS) pastes prepared by m...
This study provides a detailed investigation on the reproducibility of two groups of alkali-activate...
In this study, the strength development and microstructure evolution of alkali-activated fly ash (AA...
Conventional alkali-activated slag (AAS) cements suffer from significant drying shrinkage which hind...
The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
© 2016 Elsevier Ltd In this work, drying shrinkage of four alkali-activated slag (AAS) mortars, prep...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
This paper presents a study on the evolution of strength and alteration microstructure of alkali-act...
This paper presents the influence of shrinkage-reducing (SHR) and superplasticizing and set-retardin...
Shrinkage of alkali‐activated slag (AAS) cement is a critical issue for its industrial application. ...
This paper presents a study on the evolution of strength and alteration microstructure of alkaliacti...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
This study focused on the engineering properties of alkali-activated slag (AAS) pastes prepared by m...
This study provides a detailed investigation on the reproducibility of two groups of alkali-activate...
In this study, the strength development and microstructure evolution of alkali-activated fly ash (AA...
Conventional alkali-activated slag (AAS) cements suffer from significant drying shrinkage which hind...
The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali ...
The drying shrinkage of alkali-activated fly ash/slag (AAFS) is an important engineering property fo...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...