Alkali-activated slag/fly ash (AASF) concrete can be used as an environmentally friendly replacement to ordinary portland cement concrete (OPC). However, the development of microcracks inAASF concrete is mainly due to high brittleness, which causes negative impacts on its engineering properties. This study investigates the effect of the addition of non-metallic fibers including polypropylene fiber (PF) and glass fiber (GF) on the engineering properties of ambient-cured AASF concrete. The investigated engineering properties of AASF concrete include workability, compressive strength, splitting tensile strength, direct tensile strength, flexural strength, and stress-strain behavior under axial compression. It was found that the engineering p...
Fly ash substitution to cement is a well-recognized approach to reduce CO2 emissions. Although fly a...
ABSTRACT The main objective of this research is to study the effect of fibers on the mechanical prop...
Geopolymer concrete is typically characterized by a brittle behavior and limited crack resistance. T...
This paper investigates the influence of different types of steel fibers on the engineering properti...
Alkali-activated composites are significant materials in reducing CO2 emissions and ensuring sustain...
This paper focuses on the investigation of fresh, mechanical, and durability properties of concrete ...
This paper presents an innovative approach towards the development of a green concrete. The geopolym...
Abstract The present paper explores the experimental study on the influence of steel fibres (SF) and...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
Alkali-activated slag (AAS) is becoming an increasingly popular building material due to its excelle...
Now-a-days, there has been a significant increase in the use of fibres in concrete for improvin...
The direction of construction science that is associated with the development of the theory and prac...
This paper evaluates the effects of glass fiber addition on the properties of fresh and hardened fly...
In this study, alkali activated material was produced by using Class F fly ash from Manjung power st...
Although fibers are used only infrequently as an additive in concrete in the construction industry, ...
Fly ash substitution to cement is a well-recognized approach to reduce CO2 emissions. Although fly a...
ABSTRACT The main objective of this research is to study the effect of fibers on the mechanical prop...
Geopolymer concrete is typically characterized by a brittle behavior and limited crack resistance. T...
This paper investigates the influence of different types of steel fibers on the engineering properti...
Alkali-activated composites are significant materials in reducing CO2 emissions and ensuring sustain...
This paper focuses on the investigation of fresh, mechanical, and durability properties of concrete ...
This paper presents an innovative approach towards the development of a green concrete. The geopolym...
Abstract The present paper explores the experimental study on the influence of steel fibres (SF) and...
Conventional concrete production that uses ordinary Portland cement (OPC) as a binder seems unsustai...
Alkali-activated slag (AAS) is becoming an increasingly popular building material due to its excelle...
Now-a-days, there has been a significant increase in the use of fibres in concrete for improvin...
The direction of construction science that is associated with the development of the theory and prac...
This paper evaluates the effects of glass fiber addition on the properties of fresh and hardened fly...
In this study, alkali activated material was produced by using Class F fly ash from Manjung power st...
Although fibers are used only infrequently as an additive in concrete in the construction industry, ...
Fly ash substitution to cement is a well-recognized approach to reduce CO2 emissions. Although fly a...
ABSTRACT The main objective of this research is to study the effect of fibers on the mechanical prop...
Geopolymer concrete is typically characterized by a brittle behavior and limited crack resistance. T...