Abu Sayed Mohammad Akid Source Confirmed
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Researcher
Arkansas State University
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Biography and Research Information
OverviewAI-generated summary
Abu Sayed Mohammad Akid's research focuses on the development of sustainable construction materials, particularly concrete. His work investigates the integration of supplementary cementitious materials and recycled aggregates to enhance the properties of concrete while promoting environmental friendliness. Akid has published studies exploring the influence of various additives such as fly ash, rice husk ash, and polypropylene fibers on the fresh, mechanical, and durability characteristics of concrete. He also examines the effects of recycled concrete aggregate size and concentration, as well as coarse aggregate size and content, on concrete performance. His research utilizes both traditional testing methods and non-destructive techniques to evaluate concrete properties. Akid's publications include investigations into the synergistic effects of different fiber reinforcements, like jute and steel fibers, and their impact on rheological and mechanical performance. His scholarship metrics include an h-index of 14, with 21 total publications and 777 total citations.
Metrics
- h-index: 14
- Publications: 21
- Citations: 777
Selected Publications
- Experimental and Machine Learning Analysis of High‐Strength Concrete Incorporating Waste Slag and Recycled Steel Fiber (2025) DOI
- Mechanical Properties and Flexural Response of Palm Shell Aggregate Lightweight Reinforced Concrete Beam (2023) DOI
- Effects of Supplementary Cementitious Materials on the Long-Term Durability Properties of Concrete (2022) DOI
- Integration of Rice Husk Ash as Supplementary Cementitious Material in the Production of Sustainable High-Strength Concrete (2022) DOI
- Eco-friendly self-consolidating concrete production with reinforcing jute fiber (2022) DOI
- Influence of coarse aggregate size and content on the properties of recycled aggregate concrete using non-destructive testing methods (2022) DOI
- Development of Self-Compacting Concrete Incorporating Rice Husk Ash with Waste Galvanized Copper Wire Fiber (2022) DOI
- Performance of self-compacting concrete incorporating waste glass as coarse aggregate (2022) DOI
- Investigating the combined effect of aggregate size and sulphate attack on producing sustainable recycled aggregate concrete (2022) DOI
- Evaluating the effects of recycled concrete aggregate size and concentration on properties of high-strength sustainable concrete (2022) DOI
- Performance assessment of various seismic resistant systems for a multistory structure in different seismic zones of Bangladesh (2022) DOI
- Experimental investigation on mechanical performance of high-strength concrete containing polypropylene fiber exposed to high temperature (2021) DOI
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