© Copyright 2016 Japan Concrete Institute. This paper presents a quantitative analysis of hydrated phase assemblage and chemical shrinkage of alkali-activated slag (AAS) as a function of pH and modulus (n= SiO 2 /Na 2 O molar ratio) of activator. Scanning electron microscopy (SEM), energy-dispersive X-ray spectroscopy (EDS), X-ray diffraction (XRD), and thermodynamic modeling, provide a comprehensive characterization of the phase assemblages and distribution in AAS microstructure. The main hydration products in AAS are calcium-alumina-silicate-hydrate (C-A-S-H) and hydrotalcite-type phases, while the formation of other hydrates is activator-dependent. For NaOH-activated slag, hydration products are preferentially formed around slag particle...
International audienceThe use of cement substitute, such as alkali-activated slag, is of great inter...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...
This paper presents some recent research on the microstructural development during alkaline activati...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Activated slag cement (ASC) shows significantly higher shrinkage than ordinary Portland cement agglo...
Activated slag cement (ASC) shows significantly higher shrinkage than ordinary Portland cement agglo...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Blast furnace slag is a non-metallic byproduct generated by the production of iron and steel in a bl...
International audienceThe use of cement substitute, such as alkali-activated slag, is of great inter...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...
This paper presents some recent research on the microstructural development during alkaline activati...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Activated slag cement (ASC) shows significantly higher shrinkage than ordinary Portland cement agglo...
Activated slag cement (ASC) shows significantly higher shrinkage than ordinary Portland cement agglo...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Reaction models are proposed to quantify the hydration products and to determine the composition of ...
Alkali-activated materials offer the potential for more durable, sustainable and low-CO2 constructio...
Blast furnace slag is a non-metallic byproduct generated by the production of iron and steel in a bl...
International audienceThe use of cement substitute, such as alkali-activated slag, is of great inter...
Significant drying shrinkage is one of the major issues for the wider application of materials based...
International audienceThe physico-chemical properties of cementitious materials, such as transport p...