Hybrid artificial geopolymer aggregates (GPA) and natural silica sand were used to strategically tailor the tensile strain-hardening behavior of high-strength engineered cementitious composites (HS-ECC). With such hybridization, the weaknesses of GPA (i.e., relatively low strength and stiffness) were utilized in the performance-based design of HS-ECC, while the advantages of GPA were retained (e.g., the utilization of industrial by-products/wastes through chemical activation and conservation of natural resources). In this study, a comprehensive experimental program was conducted at multiple scales on the HS-ECC. It was found that increasing the replacement ratio of silica sand by GPA improved the tensile ductility, crack control ability, an...
The feasibility of developing a fiber reinforced engineered geopolymer composite (EGC) exhibiting st...
Portland cement concrete is the most used building material in the world. However, its manufacture i...
This research focuses on the mechanical properties of Engineered Cementitious Composites (ECC). Few ...
This paper is aimed to improve the mechanical properties (namely compressive and tensile strengths) ...
This paper is aimed to improve the mechanical properties (namely compressive and tensile strengths) ...
To improve the greenness and deformability of engineered cementitious composites (ECC), recycled pow...
In this paper, engineered cementitious composites (ECCs) were prepared with desert sand instead of o...
Strain hardening cementitious composites are a class of cementitious materials showing metal-like (i...
Fly ash-based engineered geopolymer composites (EGCs) exhibiting strain hardening behavior under uni...
Alkali-activated Materials (AAMs), including those classified as geopolymer, are obtained through th...
The present study investigates the possibility of using sea sand, instead of silica sand, in produci...
Engineered Cementitious Composites (ECC) exhibit pseudo strain-hardening behavior by fine multiple c...
This paper presents the outcome of a study conducted to exhibit the effect of micro-silica sand and ...
Engineered cementitious composites (ECC) are steady-state multiple cracking strain-hardening cementi...
The feasibility of developing a fiber reinforced engineered geopolymer composite (EGC) exhibiting st...
The feasibility of developing a fiber reinforced engineered geopolymer composite (EGC) exhibiting st...
Portland cement concrete is the most used building material in the world. However, its manufacture i...
This research focuses on the mechanical properties of Engineered Cementitious Composites (ECC). Few ...
This paper is aimed to improve the mechanical properties (namely compressive and tensile strengths) ...
This paper is aimed to improve the mechanical properties (namely compressive and tensile strengths) ...
To improve the greenness and deformability of engineered cementitious composites (ECC), recycled pow...
In this paper, engineered cementitious composites (ECCs) were prepared with desert sand instead of o...
Strain hardening cementitious composites are a class of cementitious materials showing metal-like (i...
Fly ash-based engineered geopolymer composites (EGCs) exhibiting strain hardening behavior under uni...
Alkali-activated Materials (AAMs), including those classified as geopolymer, are obtained through th...
The present study investigates the possibility of using sea sand, instead of silica sand, in produci...
Engineered Cementitious Composites (ECC) exhibit pseudo strain-hardening behavior by fine multiple c...
This paper presents the outcome of a study conducted to exhibit the effect of micro-silica sand and ...
Engineered cementitious composites (ECC) are steady-state multiple cracking strain-hardening cementi...
The feasibility of developing a fiber reinforced engineered geopolymer composite (EGC) exhibiting st...
The feasibility of developing a fiber reinforced engineered geopolymer composite (EGC) exhibiting st...
Portland cement concrete is the most used building material in the world. However, its manufacture i...
This research focuses on the mechanical properties of Engineered Cementitious Composites (ECC). Few ...