Durability of binders, mortars and concretes in aggressive environments is of crucial importance for their commercial application. In this paper the resistance to external sulfate attack of two different alkaliactivated binders (AABs), based either on blast furnace slag (BFS) or fly ash/blast furnace slag (FA/BFS) blend, was compared with two different commercially available Portland cement (CEM II) blended either with BFS or with FA and BFS. Comparison of sulfate resistance was based on compressive strength testing (the loss of strength) of mortar samples exposed to sodium sulfate attack up to 180 days and samples cured under controlled conditions for the same period of time. Furthermore, the evolution of microstructure of alkali-activated...
Sulfate attack of concrete is perhaps the least understood of the major durability mechanisms plagui...
The acid resistance of 60-day cured alkali-activated slag (AAS) mortars, in comparison with Portland...
In this study blended cements containing corncob ash (CA) and ground granulated blast furnace slag (...
Durability of binders, mortars and concretes in aggressive environments is of crucial importance for...
Reliable durability testing of alkali-activated binders, which might serve as a basis for the predic...
This paper investigates the sulfate resistance of conventional Portland cement-based and alkali-acti...
Aggressive environments significantly influence the durability and serviceability of hardened cement...
Alkali activated binders have the potential to become an alternative construction material to ordina...
The durability and chemical resistance of alkali activated slag and fly ash/slag mortars in contact ...
Alkali-activated materials (AAMs) have high potential as alternative binder to ordinary portland cem...
This paper presents an investigation into the sulfate resistance of Portland cements and blended cem...
This study investigates the long-term (570 days) performance of alkali-activated slag (AAS) mortar e...
The report presents an investigation of the role of the sulfate balance in blended binders with slag...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
In an effort to make structures more sustainable and durable, supplementary cementitious materials a...
Sulfate attack of concrete is perhaps the least understood of the major durability mechanisms plagui...
The acid resistance of 60-day cured alkali-activated slag (AAS) mortars, in comparison with Portland...
In this study blended cements containing corncob ash (CA) and ground granulated blast furnace slag (...
Durability of binders, mortars and concretes in aggressive environments is of crucial importance for...
Reliable durability testing of alkali-activated binders, which might serve as a basis for the predic...
This paper investigates the sulfate resistance of conventional Portland cement-based and alkali-acti...
Aggressive environments significantly influence the durability and serviceability of hardened cement...
Alkali activated binders have the potential to become an alternative construction material to ordina...
The durability and chemical resistance of alkali activated slag and fly ash/slag mortars in contact ...
Alkali-activated materials (AAMs) have high potential as alternative binder to ordinary portland cem...
This paper presents an investigation into the sulfate resistance of Portland cements and blended cem...
This study investigates the long-term (570 days) performance of alkali-activated slag (AAS) mortar e...
The report presents an investigation of the role of the sulfate balance in blended binders with slag...
The paper assesses the durability of one-part alkali-activated slag-based mortars (AAS) in different...
In an effort to make structures more sustainable and durable, supplementary cementitious materials a...
Sulfate attack of concrete is perhaps the least understood of the major durability mechanisms plagui...
The acid resistance of 60-day cured alkali-activated slag (AAS) mortars, in comparison with Portland...
In this study blended cements containing corncob ash (CA) and ground granulated blast furnace slag (...