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Reuse of glass in concrete: a study of the production and mechanical performance of resistance

Authors

DOI:

https://doi.org/10.5902/2236117036187

Keywords:

Ground glass, Reuse, Sustainability, Concrete, Resistance

Abstract

The glass incorporated into the concrete contributes to the conservation of the environment, as it will have a correct destination and is an easily found material. This work had the objective of analyzing the mechanical performance of the concrete produced with glass waste from non-returnable packaging. Since glass is a residue that is easily found, it is justified to incorporate it into concrete in partial replacement of small aggregates, thus avoiding its disposal in
landfills and also in an irregular way. The concrete produced was made with the addition of “51” and “Long Neck” ground glass. A standard trace of 25 MPa was defined, with partial substitutions of 5%, 15%, 25% and 35% in the small aggregate. The individual strengths of the test specimens were submitted to the Tukey test for statistical analysis and it was verified that the trait with the percentage of 35% substitution is statistically different from the other traits. The concrete had a mean Fck of 32,37 MPa, higher than the established minimum of 25 MPa. It can be concluded that the
concrete with the use of ground glass presents technical feasibility for execution and contributes to the preservation of the environment.

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Author Biographies

Lidiane Andrade Fonseca da Paz, Catholic College of Tocantins, Palmas, TO

Undergraduate of Civil Engineering at Catholic College of Tocantins

Vando Dias dos Santos, Catholic College of Tocantins, Palmas, TO

Civil Engineer at Catholic College of Tocantins

References

ABNT- Brazilian Association of Technical Standards (2003) NBR NM 248, Aggregates: Determination of the granulometric composition.

Brazil. CONAMA Resolution No. 307 of July 5, 2002 Published in the Official Gazette no. 136 of July 17, 2002;1:95-96.

Cirilo TMM. Analysis of the influence of partial replacement of sand by glass in concrete traces using Tukey's test (monograph). Palmas: Department of Civil Engineering / FACTO; 2016.

Crentsil KKS, Brown T, Taylor AH. Performance of concrete made with commercially produced coarse recycled concrete aggregate. Cement and concrete research. 2001;31:707-712.

Gomes CC, Pelisser F. Mechanical Properties of Concrete With Addition of Recycled Glass. UNESC, 2011.

IBRACON - Brazilian Concrete Institute. Revista Concreto & Construções [Internet]. 2009 [quoted 2018 Apr 21]; nº 53. Available in: http://ibracon.org.br/publicacoes/revistas_ibracon/rev_construcao/pdf/revista_concreto_53.pdf

López DAR, Azevedo CAP, Neto EB. Evaluation of the physical and mechanical properties of concretes produced with comminuted glass as fine aggregate. UNISC, 2005.

Marques AC, Ricci EC, Wheat APM, Akasaki JL. Mechanical Strength of Concrete Added Tire Rubber Subjected to High Temperature. In: Proceedings of the 32nd South American Conference on Structural Engineering; Campinas, São Paulo. 2006.

Oliveira AFG. Statistical tests for comparison of means. Nutritime Electronic Magazine. 2008;5(6):777-788.

Silva ALB. Analysis of the compressive strength of concrete obtained with glass residue to replace the small aggregate (monograph). Mossoró: UFERSA; 2013.

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Published

2019-06-01

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How to Cite

Paz, L. A. F. da, & Santos, V. D. dos. (2019). Reuse of glass in concrete: a study of the production and mechanical performance of resistance. Revista Eletrônica Em Gestão, Educação E Tecnologia Ambiental, 23, e23. https://doi.org/10.5902/2236117036187

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Section

ENVIRONMENTAL THECNOLOGY

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