Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to conventional Portland cement. Despite the superior mechanical properties of AASF materials, they are known to show large autogenous shrinkage, which hinders the wide application of these eco-friendly materials in infrastructure. To mitigate the autogenous shrinkage of AASF, two innovative autogenous-shrinkage-mitigating admixtures, superabsorbent polymers (SAPs) and metakaolin (MK), are applied in this study. The results show that the incorporation of SAPs and MK significantly mitigates autogenous shrinkage and cracking potential of AASF paste and concrete. Moreover, the AASF concrete with SAPs and MK shows enhanced workability and tensile strength-...
Alkali-activated slag/fly ash (AASF) concrete can be used as an environmentally friendly replacement...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
In this study, superabsorbent polymers (SAPs) and two expansive additives (a MgO-based expansion age...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
The high autogenous shrinkage of alkali-activated materials made from slag and fly ash is recognised...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
The extant body of literature articulates a noticeable disparity in the susceptibility to cracking a...
The extant body of literature articulates a noticeable disparity in the susceptibility to cracking a...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
This study investigates the effectiveness of metakaolin (MK)in mitigating the autogenous shrinkage o...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Alkali activated fly ash (AAFA), also named “geopolymer”, has emerged as a novel engineering materia...
International audienceStudies performed on alkali-activated materials (AAMs) in recent years reveal ...
Alkali-activated slag/fly ash (AASF) concrete can be used as an environmentally friendly replacement...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
In this study, superabsorbent polymers (SAPs) and two expansive additives (a MgO-based expansion age...
Alkali-activated slag and fly ash (AASF) materials are emerging as promising alternatives to convent...
The high autogenous shrinkage of alkali-activated materials made from slag and fly ash is recognised...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
This study investigates the influences of internal curing on reducing the autogenous shrinkage of al...
This paper presents an experimental study on mitigation of autogenous shrinkage in alkaliactivated ...
The extant body of literature articulates a noticeable disparity in the susceptibility to cracking a...
The extant body of literature articulates a noticeable disparity in the susceptibility to cracking a...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
This study investigates the effectiveness of metakaolin (MK)in mitigating the autogenous shrinkage o...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Alkali activated fly ash (AAFA), also named “geopolymer”, has emerged as a novel engineering materia...
International audienceStudies performed on alkali-activated materials (AAMs) in recent years reveal ...
Alkali-activated slag/fly ash (AASF) concrete can be used as an environmentally friendly replacement...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
In this study, superabsorbent polymers (SAPs) and two expansive additives (a MgO-based expansion age...