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08-01-2024

Evaluation and Optimization of the Replacement of Fine Aggregate by Waste Tire Rubber in Geopolymer Mortar with Metakaolin

Authors: R. A. dos Reis Ferreira, L. S. Gratão, L. A. de Castro Motta

Published in: Mechanics of Composite Materials | Issue 6/2024

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Abstract

The article explores the potential of using waste tire rubber as a substitute for fine aggregate in geopolymer mortar with metakaolin. It highlights the environmental benefits of recycling tire waste and the advantages of geopolymers over traditional Portland cement. The study uses central composite design and response surface methodology to optimize the compressive strength, water absorption, void index, and specific gravity of the geopolymer mortar. The results show that coarse rubber waste can improve the compactness of the mortar, while fine rubber waste can increase the water absorption and void index. The optimization analysis identifies the ideal combination of variables for achieving optimal properties in the geopolymer mortar. The study concludes that the insertion of tire rubber can contribute to some desired characteristics in geopolymer mortars and highlights the use of waste with a large volume produced and a significant environmental impact.

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Metadata
Title
Evaluation and Optimization of the Replacement of Fine Aggregate by Waste Tire Rubber in Geopolymer Mortar with Metakaolin
Authors
R. A. dos Reis Ferreira
L. S. Gratão
L. A. de Castro Motta
Publication date
08-01-2024
Publisher
Springer US
Published in
Mechanics of Composite Materials / Issue 6/2024
Print ISSN: 0191-5665
Electronic ISSN: 1573-8922
DOI
https://doi.org/10.1007/s11029-023-10168-w

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