This study aimed at investigating the durability characteristics of the ambient-cured geopolymer concrete (GPC) developed using recycled coarse aggregate (RCA) and ultrafine slag (UFS). Two series of mixes were prepared. Natural aggregates (NAs) were replaced by RCA at different volume levels of 0, 25, 50 and 100% in both series. Meanwhile, UFS was added as a replacement by volume of fly ash at varying levels of 0, 15, and 30% in the first series, while UFS was used in addition to fly ash by percentage weight of fly ash at the levels of 0, 15, and 30% in the second series. The compressive strength, water absorption, chloride ion penetration, and carbonation depth of the developed ambient-cured GPC were studied. In addition, creep and drying...
This investigation evaluates the influence of various curing conditions and slag inclusion on the fr...
Geopolymer concrete technology involves production of more environmentally friendly waste material-b...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...
Geopolymer concrete (GPC) has significant potential as a more sustainable alternative for ordinary P...
Use of environmental friendly materials in concrete to make concrete sustainable is gaining importan...
Geopolymer concrete is prepared by reacting silicate as well as aluminate consisting materials with ...
Geopolymer concrete (GPC), also known as an earth friendly concrete, has been under continuous study...
Geopolymer concrete (GC) has the potential to incorporate recycled concrete aggregates (RCA) obtaine...
AbstractThis paper presents mechanical and durability properties of geopolymer concrete containing r...
The properties of concrete using fly ash based geopolymer as the binder were shown in recent studies...
This paper presents mechanical and durability properties of geopolymer concrete containing recycled ...
Most of the previous research on plain and fibre reinforced geopolymer concrete (FRGC) has concerned...
Inclusion of ground granulated blast furnace slag (GGBFS) together with fly-ash can have significant...
Geopolymers are a subset of alkali-activated materials, synthesised from by-products of low-calcium ...
Recent studies on the various properties of heat-cured geopolymer concrete have shown its suitabilit...
This investigation evaluates the influence of various curing conditions and slag inclusion on the fr...
Geopolymer concrete technology involves production of more environmentally friendly waste material-b...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...
Geopolymer concrete (GPC) has significant potential as a more sustainable alternative for ordinary P...
Use of environmental friendly materials in concrete to make concrete sustainable is gaining importan...
Geopolymer concrete is prepared by reacting silicate as well as aluminate consisting materials with ...
Geopolymer concrete (GPC), also known as an earth friendly concrete, has been under continuous study...
Geopolymer concrete (GC) has the potential to incorporate recycled concrete aggregates (RCA) obtaine...
AbstractThis paper presents mechanical and durability properties of geopolymer concrete containing r...
The properties of concrete using fly ash based geopolymer as the binder were shown in recent studies...
This paper presents mechanical and durability properties of geopolymer concrete containing recycled ...
Most of the previous research on plain and fibre reinforced geopolymer concrete (FRGC) has concerned...
Inclusion of ground granulated blast furnace slag (GGBFS) together with fly-ash can have significant...
Geopolymers are a subset of alkali-activated materials, synthesised from by-products of low-calcium ...
Recent studies on the various properties of heat-cured geopolymer concrete have shown its suitabilit...
This investigation evaluates the influence of various curing conditions and slag inclusion on the fr...
Geopolymer concrete technology involves production of more environmentally friendly waste material-b...
Geopolymer is an attractive sustainable binder as compared to Ordinary Portland Cement (OPC) in conc...