A Comparative Study on The Properties of Course Aggregate Mostly Available in Bangladesh
Authors
Md Shajahan Ali
Department of Civil Engineering, Bangladesh Army University of Engineering and Technology (BD)
Mohammad Zakir Hossain Khan
Department of Civil Engineering, Bangladesh Army University of Engineering and Technology (BD)
Md Sakib Arafat
Department of Civil Engineering, Bangladesh Army University of Engineering and Technology (BD)
Rumon Ahamed
Department of Civil Engineering, Bangladesh Army University of Engineering and Technology (BD)
Article Information
DOI: 10.51583/IJLTEMAS.2025.1407000122
Subject Category: Civil Engineering
Volume/Issue: 14/7 | Page No: 1034-1041
Publication Timeline
Submitted: 2025-08-19
Published: 2025-08-19
Abstract
Abstract: Over the past decade, a significant number of infrastructure projects have been implemented across Bangladesh, resulting in a rapid increase in demand for construction materials. In the fiscal year 2017 to 2020 alone, approximately 12.7 million tons of aggregate were consumed by the construction industry, of which only 13% were sourced locally. The rest were imported, leading to variability in concrete performance due to differences in aggregate characteristics. This study investigates the influence of commonly used coarse aggregate types on concrete properties, with a focus on developing sustainable infrastructure.
Six widely used coarse aggregate sources Balason, Shebok, Torsha, Dandruff Mine, Pakur Black Stone, and Kothin Shila were selected for analysis. Laboratory tests were conducted to determine the physical, chemical, and petrographic properties of these aggregates, including Aggregate Crushing Value (ACV), Aggregate Impact Value (AIV), Los Angeles Abrasion (LAA), Elongation Index (EI), Flakiness Index (FI), specific gravity, water absorption, and unit weight. Additionally, aggregates were subjected to visual and mechanical preparation including washing, drying, sieving, and shape evaluation using thickness and length gauges. Cement consistency was assessed using Vicat’s apparatus.
Concrete mixes with constant gradation and water-cement ratios (0.4) were used to cast cylinders. Tests were conducted to measure compressive strengths. Results revealed that the physical properties of aggregates significantly affect concrete strength, particularly when compressive strength exceeds standard values. Among the samples, Balason aggregate exhibited the highest 28-day compressive strength (267.39 kN), followed by Shebok and Pakur, while Kothin Shila showed the lowest strength (123.10 kN).
The findings provide essential guidance for engineers in selecting suitable aggregate sources based on the required concrete strength, contributing to more durable and reliable infrastructure in Bangladesh.
Keywords
Properties, Aggregates, Concrete, Construction materials
Downloads
References
1. Alexander DE, M. G. & D. (1992). The influence of aggregates on the compressive strength and elastic modulus of concrete. Civil Engineering= Siviele Ingenieurswese, 1992(5), 161–170. [Google Scholar] [Crossref]
2. Barai, M. K. (2020). Introduction: Construction of a development model for Bangladesh. In Bangladesh’s Economic and Social Progress: From a Basket Case to a Development Model (pp. 3–62). Springer. [Google Scholar] [Crossref]
3. Beushausen, H., & Dittmer, T. (2015). The influence of aggregate type on the strength and elastic modulus of high strength concrete. Construction and Building Materials, 74, 132–139. [Google Scholar] [Crossref]
4. Ezeldin, A. S., & Aitcin, P.-C. (1991). Effect of coarse aggregate on the behavior of normal and high-strength concretes. Cement, Concrete, and Aggregates, 13(2), 121–124. [Google Scholar] [Crossref]
5. Frías, M., Savastano, H., Villar, E., de Rojas, M. I. S., & Santos, S. (2012). Characterization and properties of blended cement matrices containing activated bamboo leaf wastes. Cement and Concrete Composites, 34(9), 1019–1023. [Google Scholar] [Crossref]
6. Grabiec, A. M., Zawal, D., & Szulc, J. (2015). Influence of type and maximum aggregate size on some properties of high-strength concrete made of pozzolana cement in respect of binder and carbon dioxide intensity indexes. Construction and Building Materials, 98, 17–24. [Google Scholar] [Crossref]
7. Mahmud, S. M. S., Talukder, M. M. A., Ahmed, I., & Raihan, M. A. (2013). Road safety initiatives in Bangladesh. Jurnal Teknologi (Sciences & Engineering), 65(3). [Google Scholar] [Crossref]
8. Meddah, M. S., Zitouni, S., & Belâabes, S. (2010). Effect of content and particle size distribution of coarse aggregate on the compressive strength of concrete. Construction and Building Materials, 24(4), 505–512. [Google Scholar] [Crossref]
9. Mohammed1a, T. U., Mahmood1b, A. H., Chowdhury1c, I. M., Humayun, A. M., & Ahmed1d, T. (2016). Sustainability of construction materials in Bangladesh.". [Google Scholar] [Crossref]
10. Onikeku, O., Shitote, S. M., Mwero, J., & Adedeji, A. (2019). Evaluation of characteristics of concrete mixed with bamboo leaf ash. The Open Construction & Building Technology Journal, 13(1). [Google Scholar] [Crossref]
11. Quiroga, P. N., & Fowler, D. W. (2004). Guidelines for proportioning optimized concrete mixtures with high microfines. [Google Scholar] [Crossref]
12. Rashid, M. A., Hossain, T., & Islam, M. A. (2009). Properties of higher strength concrete made with crushed brick as coarse aggregate. Journal of Civil Engineering (IEB), 37(1), 43–52. [Google Scholar] [Crossref]
13. Vishalakshi, K. P., Revathi, V., & Reddy, S. S. (2018). Effect of type of coarse aggregate on the strength properties and fracture energy of normal and high strength concrete. Engineering Fracture Mechanics, 194, 52–60. [Google Scholar] [Crossref]
Metrics
Views & Downloads
Similar Articles
- Advanced Digital Communication Strategies: A Comprehensive Analysis
- Developing an Explainable AI System for Digital Forensics: Enhancing Trust and Transparency in Flagging Events for Legal Evidence
- The Global Impact of Government Censorship on Women’s Access to Information: A Literature Review
- "Reimagining Higher Education Workspaces: A Review on The Transformative Role of Digital Technology Adoption"
- Improved CSP Efficiency: Innovations and Challenges in Thermal Energy Storage Systems