Alkali-activated slag can totally disintegrate when exposed to 50°C. This paper presents a study of possible solutions to avoid this disintegration by using silica fume (SF) and fly ash (FA) to partially replace slag. It was found that partial replacement of slag with SF significantly reduces strength loss. A mixture of 50% slag 50% SF (cured at 25 and 60°C) showed no strength loss after the exposure. In comparison, a 55% drop of strength was observed in a mixture of 50% slag 50% FA (cured at 25°C) after the same exposure. However, the strength loss of this mixture was reduced by 50% when cured at 60°C. The presence of lime in AAS pastes increases the degree of strength loss after the exposure. The mechanisms for the above strength results ...
An evaluation of strength-gain in binders with equal mass proportions of low-calcium fly ash and sla...
The strength and microstructural evolution of two alkali-activated slags, with distinct alumina cont...
This paper presents a study on the evolution of strength and alteration microstructure of alkaliacti...
Alkali-activated slag can totally disintegrate when exposed to 50 °C. This paper presents a study of...
Alkali-activated slag can totally disintegrate when exposed to 50 C. This paper presents a study of ...
The compressive strength of alkali-activated slag (AAS) paste can be adversely affected by temperatu...
Tests reported in this paper show that alkali-activated slag paste (AASP) can totally disintegrate w...
The results of ground granulated blast furnace slag (GGBS) tests in alkali-activated systems show th...
This paper presents a study on the evolution of strength and alteration microstructure of alkali-act...
The results of ground granulated blast furnace slag (GGBS) tests in alkali-activated systems show th...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
This study reports the changes in the compressive strength and shrinkage property of alkali-activate...
The strength and microstructural evolution of two alkali-activated slags, with distinct alumina cont...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
274-278The present work aims to study the effect of various amounts of silica fume on the physico-...
An evaluation of strength-gain in binders with equal mass proportions of low-calcium fly ash and sla...
The strength and microstructural evolution of two alkali-activated slags, with distinct alumina cont...
This paper presents a study on the evolution of strength and alteration microstructure of alkaliacti...
Alkali-activated slag can totally disintegrate when exposed to 50 °C. This paper presents a study of...
Alkali-activated slag can totally disintegrate when exposed to 50 C. This paper presents a study of ...
The compressive strength of alkali-activated slag (AAS) paste can be adversely affected by temperatu...
Tests reported in this paper show that alkali-activated slag paste (AASP) can totally disintegrate w...
The results of ground granulated blast furnace slag (GGBS) tests in alkali-activated systems show th...
This paper presents a study on the evolution of strength and alteration microstructure of alkali-act...
The results of ground granulated blast furnace slag (GGBS) tests in alkali-activated systems show th...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
This study reports the changes in the compressive strength and shrinkage property of alkali-activate...
The strength and microstructural evolution of two alkali-activated slags, with distinct alumina cont...
This paper reports the results of an investigation on the influences of admixtures and curing condit...
274-278The present work aims to study the effect of various amounts of silica fume on the physico-...
An evaluation of strength-gain in binders with equal mass proportions of low-calcium fly ash and sla...
The strength and microstructural evolution of two alkali-activated slags, with distinct alumina cont...
This paper presents a study on the evolution of strength and alteration microstructure of alkaliacti...