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Performance Evaluation of High-Performance Self-Compacting Concrete with Waste Glass Aggregate and Metakaolin

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dc.contributor.author Sobuz, Md. Habibur Rahman
dc.contributor.author Meraz, Md Montaseer
dc.contributor.author Safayet, Md. Abu
dc.contributor.author Mim, Nusrat Jahan
dc.contributor.author Mehedi, Md Tanjid
dc.contributor.author Farsangi, Ehsan Noroozinejad
dc.contributor.author Shrestha, Rajesh Kumar
dc.contributor.author Arafin, Sk Abdul Kader
dc.contributor.author Bibi, Tayyaba
dc.contributor.author Hussain, Md Shakhaoat
dc.contributor.author Bhattacharya, Badhon
dc.contributor.author Aftab, Md Reduan
dc.contributor.author Paul, Sujon Kumar
dc.contributor.author Paul, Prince
dc.contributor.author Meraz, Md Musfike
dc.date.accessioned 2024-07-15T05:12:46Z
dc.date.available 2024-07-15T05:12:46Z
dc.date.issued 2023-05-15
dc.identifier.uri http://dspace.daffodilvarsity.edu.bd:8080/handle/123456789/12974
dc.description.abstract High-Performance Self-Compacting Concrete (HPSCC) has attracted much attention in recent decades due to its remarkable ability to fill formworks with densely packed reinforcing bars while requiring minimal or no external compaction. Because of the negative environmental impacts of cement and natural aggregates in concrete production, a much more sustainable alternative to manufacturing HPSCC is required. Recycled glass waste is one of the most attractive waste materials that can be used to create sustainable concrete compounds, which is currently a major area of study among researchers. This study aims to develop information not only about the fresh, mechanical, and durability characteristics of HPSCC, evaluate the environmental impact and correlate the crushing strength using a non-destructive approach by utilizing waste glass aggregates at replacement percentages of 0%, 10%, 20%, 30%, and 40%. To improve the performance of the produced HPSCC, Metakaolin was also added. The results of the fresh concrete tests revealed that the substitution of an optimal level of waste glass with Metakaolin provides adequate implementation in flowability, passing ability, and viscosity behaviors. Even though there is a reduction in the mechanical performance with glass aggregates, Metakaolin significantly improved strength and ductility by up to 16.12% and 15.91%, respectively. Furthermore, in most cases, the use of glass aggregates with Metakaolin significantly alters the durability properties of concrete while minimizing the environmental impact as well as the overall project cost. Finally, the NDT assessment demonstrates that the analytical equation can efficiently predict the compressive strength and promising to use for field application. en_US
dc.language.iso en_US en_US
dc.publisher Elsevier en_US
dc.subject Performance evaluation en_US
dc.subject High-performance en_US
dc.title Performance Evaluation of High-Performance Self-Compacting Concrete with Waste Glass Aggregate and Metakaolin en_US
dc.type Article en_US


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