In this study, the strength development and microstructure evolution of alkali-activated fly ash (AAF), granulated blast furnace slag (AAG), and metakaolin (AAM) mortars under standard curing, steam curing, and oven curing conditions were investigated. The results show that 80 °C steam curing was more suitable for AAF mortar. Although oven curing was not as good as steam curing under the same temperature, the water evaporation increased the volume density of the N-A-S-H gel and refined the pore structure. For AAG mortar, the strength developed according to a Boltzmann function with time under steam curing conditions, which increased rapidly in the first 8 h, but grew little after about 15 h. Moreover, the strength development was severely l...
This study investigated the influence of different curing conditions on the compressive strength (CS...
Alkali activated and cementitious mortars belonging to R1 ≥ 10 MPa, R2 ≥ 15 MPa and R3 ≥ 25 MPa stre...
This study aims to produce alkali-activated materials (AAM) under different curing conditions using ...
The effect of the water to fly ash (W/FA), alkali activators to fly ash (Alk/FA), and curing regimes...
The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali ...
The optimum curing temperatures and durations for alkali-activated mortar (AAM) synthesized using fi...
In the study, the influence of heat curing duration and rest period after heat curing duration on th...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
One-part or “just add water” alkali activated materials (AAMs) have attracted a lot of attention tha...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
The aim of this study is to investigate the strengths and drying shrinkage of alkali-activated slag ...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
Repair mortars are costly materials with high level of Portland cement and various additives which q...
This paper investigated the curing effects on the mechanical properties of calcium-containing geopol...
This study investigated the influence of different curing conditions on the compressive strength (CS...
Alkali activated and cementitious mortars belonging to R1 ≥ 10 MPa, R2 ≥ 15 MPa and R3 ≥ 25 MPa stre...
This study aims to produce alkali-activated materials (AAM) under different curing conditions using ...
The effect of the water to fly ash (W/FA), alkali activators to fly ash (Alk/FA), and curing regimes...
The effects of steam and autoclave curing on the mechanical properties and microstructure of alkali ...
The optimum curing temperatures and durations for alkali-activated mortar (AAM) synthesized using fi...
In the study, the influence of heat curing duration and rest period after heat curing duration on th...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
One-part or “just add water” alkali activated materials (AAMs) have attracted a lot of attention tha...
This paper reports the fresh properties and compressive strength of high calcium alkali-activated fl...
The aim of this study is to investigate the strengths and drying shrinkage of alkali-activated slag ...
Although elevated temperature curing can increase the compressive strength of alkali-activated morta...
The strength development of Portland cement mortar, blended cement-slag mortars and alkali activated...
Repair mortars are costly materials with high level of Portland cement and various additives which q...
This paper investigated the curing effects on the mechanical properties of calcium-containing geopol...
This study investigated the influence of different curing conditions on the compressive strength (CS...
Alkali activated and cementitious mortars belonging to R1 ≥ 10 MPa, R2 ≥ 15 MPa and R3 ≥ 25 MPa stre...
This study aims to produce alkali-activated materials (AAM) under different curing conditions using ...