This paper investigates the sulfate resistance of conventional Portland cement-based and alkali-activated slagbased reactive powder concretes (CRPC and ARPC). CRPC and ARPC mixtures were subjected to 10% sodium sulfate and magnesium sulfate solutions for 6 months. The influence of sulfate exposure was assessed by monitoring the expansions, mechanical and microstructural properties of RPC mixtures during the exposure time. Both RPC mixtures showed superior sodium sulfate resistance with very low mechanical strength losses and expansions. Magnesium sulfate was found more detrimental for both mixtures as compared to sodium sulfate. ARPC performed better than CRPC in magnesium sulfate solution in terms of strength and toughness losses, and visu...
WOS: 000243121000039This paper presents an investigation into the sodium sulfate resistance of three...
In 1975, a separately ground blast furnace slag was developed in Hamilton, Ontario, and a research p...
This study investigates the magnesium sulphate resistance of chemically activated phosphorus slag-ba...
Durability of binders, mortars and concretes in aggressive environments is of crucial importance for...
The work presented here focuses on the impact of slag composition on the resistance of slag composit...
This paper presents an investigation into the sulfate resistance of Portland cements and blended cem...
Aggressive environments significantly influence the durability and serviceability of hardened cement...
This paper presents a laboratory study on the sulfate resistance of blended cement combination of re...
The paper presents results of an investigation on the sulfate resistance of concrete containing diff...
Sulfate attack of concrete is perhaps the least understood of the major durability mechanisms plagui...
This paper reports findings of ongoing investigation into the effect of high alumina ground granulat...
Portland-limestone cement with up to 15% interground limestone was included in the Canadian Standard...
Concrete mixes of water-cementitious ratio (w/c’s) = 0.45, 0.5, 0.65 were used to prepare 100 mm cub...
Portland-limestone cements (PLC) have been used in practice for a considerable period of time in sev...
The diversity of the types of cement manufactured, driven by the extensive use of additions, has giv...
WOS: 000243121000039This paper presents an investigation into the sodium sulfate resistance of three...
In 1975, a separately ground blast furnace slag was developed in Hamilton, Ontario, and a research p...
This study investigates the magnesium sulphate resistance of chemically activated phosphorus slag-ba...
Durability of binders, mortars and concretes in aggressive environments is of crucial importance for...
The work presented here focuses on the impact of slag composition on the resistance of slag composit...
This paper presents an investigation into the sulfate resistance of Portland cements and blended cem...
Aggressive environments significantly influence the durability and serviceability of hardened cement...
This paper presents a laboratory study on the sulfate resistance of blended cement combination of re...
The paper presents results of an investigation on the sulfate resistance of concrete containing diff...
Sulfate attack of concrete is perhaps the least understood of the major durability mechanisms plagui...
This paper reports findings of ongoing investigation into the effect of high alumina ground granulat...
Portland-limestone cement with up to 15% interground limestone was included in the Canadian Standard...
Concrete mixes of water-cementitious ratio (w/c’s) = 0.45, 0.5, 0.65 were used to prepare 100 mm cub...
Portland-limestone cements (PLC) have been used in practice for a considerable period of time in sev...
The diversity of the types of cement manufactured, driven by the extensive use of additions, has giv...
WOS: 000243121000039This paper presents an investigation into the sodium sulfate resistance of three...
In 1975, a separately ground blast furnace slag was developed in Hamilton, Ontario, and a research p...
This study investigates the magnesium sulphate resistance of chemically activated phosphorus slag-ba...