Low calcium fly ash based Geopolymer has been proven to be one of the potential alternatives substitutes to Portland Cement not only due to its high resistance to chemical attack but also because of the vast availability of class F fly ash for raw materials. However, one of the limitations of geopolymer as the alternative binders in concrete is that the strength develops slowly under ambient condition. This paper presented the investigation of water to solid ratio, activator to binder ratio, and lime proportion on the compressive strength of ambient-cured geopolymer concrete. To develop sufficient strength at an early age, class F fly ash and slaked lime (Ca (OH)2) were used as the binder with the proportion of lime to binder of 4%, 5%, 6%,...
The properties of concrete using fly ash based geopolymer as the binder were shown in recent studies...
This research described the effect of the mortar volume ratio on the mechanical behavior of Class CI...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...
Low calcium fly ash based Geopolymer has been proven to be one of the potential alternatives substit...
Geopolymer is a promising alternative binder to Portland cement. It is produced mostly from by-produ...
Geopolymer is a binder that can act as an alternative of Portland cement. Geopolymers use by-product...
AbstractGeopolymer is a promising alternative binder to Portland cement. It is produced mostly from ...
Fly ash geopolymer is an emerging alternative binder with low environmental impact and potential to ...
Geopolymer concrete technology involves production of more environmentally friendly waste material-b...
One of the limitations of geopolymer as the alternative binders in concrete is the necessity of heat...
The optimum temperature and duration of curing is essential in geopolymerization reaction to achieve...
In recent years, geopolymers, as a new class of green cement binders, have been considered as an env...
Inclusion of ground granulated blast-furnace slag (GGBFS) with class F fly-ash can have a significan...
AbstractThe demand of concrete is increasing day by day for satisfying the need of development of in...
This paper aims to investigate the mechanical performance of fly ash-based geopolymer concrete cured...
The properties of concrete using fly ash based geopolymer as the binder were shown in recent studies...
This research described the effect of the mortar volume ratio on the mechanical behavior of Class CI...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...
Low calcium fly ash based Geopolymer has been proven to be one of the potential alternatives substit...
Geopolymer is a promising alternative binder to Portland cement. It is produced mostly from by-produ...
Geopolymer is a binder that can act as an alternative of Portland cement. Geopolymers use by-product...
AbstractGeopolymer is a promising alternative binder to Portland cement. It is produced mostly from ...
Fly ash geopolymer is an emerging alternative binder with low environmental impact and potential to ...
Geopolymer concrete technology involves production of more environmentally friendly waste material-b...
One of the limitations of geopolymer as the alternative binders in concrete is the necessity of heat...
The optimum temperature and duration of curing is essential in geopolymerization reaction to achieve...
In recent years, geopolymers, as a new class of green cement binders, have been considered as an env...
Inclusion of ground granulated blast-furnace slag (GGBFS) with class F fly-ash can have a significan...
AbstractThe demand of concrete is increasing day by day for satisfying the need of development of in...
This paper aims to investigate the mechanical performance of fly ash-based geopolymer concrete cured...
The properties of concrete using fly ash based geopolymer as the binder were shown in recent studies...
This research described the effect of the mortar volume ratio on the mechanical behavior of Class CI...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...