Alkaline activation has become a useful procedure to obtain high strength cement composites without Portland cement. Different industrial byproducts can be activated using this technique, e.g. blast furnace slag, fly ash or metakaolin. Thus a new generation of more sustainable composites is being developed. However, the main disadvantage of these composites is their high drying shrinkage strain. Among the different approaches to address this problem, shrinkage reducing admixtures are the most used, but the addition of fibers can be useful for this purpose. In this work, alkali activated slag (AAS) pastes have been reinforced with carbon fibers (CF). The effect of the concentration of alkaline activator (Na2O% and silica modulus) and the fib...
\u3cp\u3eIn this paper, cement free high performance alkali activated slag-fly ash composites are de...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
The development of cementless slag-based alkali-activated mortar has previously been demonstrated. W...
The mechanical properties of alkali-activated slag fiber composites (ASFC) were investigated with va...
This master thesis is concerns the preparation of Alkali Activated Materials, specifically Alkali Ac...
Abstract This experimental study aimed to develop alkali-activated concretes containing carbonated ...
This experimental study aimed to develop alkali-activated concretes containing carbonated basic oxyg...
Abstract One-part alkali-activated binders, also known as the “just-add-water” concept, have receiv...
Fiber-matrix bond properties of alkali-activated slag cements (AASC)-based composites have not been ...
The effects of length and volume fraction of steel fibers on the mechanical properties and drying sh...
Alkali-activated composites are significant materials in reducing CO2 emissions and ensuring sustain...
The paper reports a study of the effect of carbon fibres on the mechanical fracture parameters of al...
Alternative cementitious binders, based on industrial side streams, characterized by a low carbon fo...
In this study, alkali activated material was produced by using Class F fly ash from Manjung power st...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
\u3cp\u3eIn this paper, cement free high performance alkali activated slag-fly ash composites are de...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
The development of cementless slag-based alkali-activated mortar has previously been demonstrated. W...
The mechanical properties of alkali-activated slag fiber composites (ASFC) were investigated with va...
This master thesis is concerns the preparation of Alkali Activated Materials, specifically Alkali Ac...
Abstract This experimental study aimed to develop alkali-activated concretes containing carbonated ...
This experimental study aimed to develop alkali-activated concretes containing carbonated basic oxyg...
Abstract One-part alkali-activated binders, also known as the “just-add-water” concept, have receiv...
Fiber-matrix bond properties of alkali-activated slag cements (AASC)-based composites have not been ...
The effects of length and volume fraction of steel fibers on the mechanical properties and drying sh...
Alkali-activated composites are significant materials in reducing CO2 emissions and ensuring sustain...
The paper reports a study of the effect of carbon fibres on the mechanical fracture parameters of al...
Alternative cementitious binders, based on industrial side streams, characterized by a low carbon fo...
In this study, alkali activated material was produced by using Class F fly ash from Manjung power st...
The engineering properties of alkali activated materials (AAMs) mainly depend on the constituent mat...
\u3cp\u3eIn this paper, cement free high performance alkali activated slag-fly ash composites are de...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
The development of cementless slag-based alkali-activated mortar has previously been demonstrated. W...