article · Journal of Architectural Engineering
This study investigates the influence of substituting crushed and fine ceramics for natural aggregates in the production of solid concrete blocks. The aim is to determine the impact on the physical and mechanical properties of the materials. Test specimens were prepared by replacing fine and coarse aggregates with finely and coarsely crushed ceramics, respectively, at varying weight percentages. The study focuses on utilizing ceramic waste as an alternative additive in concrete block manufacturing and examines the performance of the blocks throughout their life cycles. A comprehensive set of tests, including compressive strength, flexure, water absorption, efflorescence, unit weight, resistance to wet/dry cycles, and thermal conductivity tests, were conducted to evaluate the physiomechanical properties of the blocks. Concrete block manufacturing was assessed at different time intervals. By comparing the properties of the ceramic-replaced blocks with those of the standard blocks, the optimal replacement ratio of crushed ceramic was determined. The findings reveal that incorporating fine and coarse crushed ceramics significantly impacts the life cycle of concrete blocks while reducing environmental impact in both production and usage stages. This study emphasizes the value of waste materials as sustainable alternatives in concrete production and calls for further research to explore their long-term structural implications and scalability in construction systems
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DOI: 10.1061/jaeied.aeeng-1812
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