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Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates

In this study, ground glass powder and crushed waste glass were used to replace coarse and fine aggregates. Within the scope of the study, fine aggregate (FA) and coarse aggregate (CA) were changed separately with proportions of 10%, 20%, 40%, and 50%. According to the mechanical test, including com...

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Autores principales: Çelik, Ali İhsan, Özkılıç, Yasin Onuralp, Zeybek, Özer, Karalar, Memduh, Qaidi, Shaker, Ahmad, Jawad, Burduhos-Nergis, Dumitru Doru, Bejinariu, Costica
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9692602/
https://www.ncbi.nlm.nih.gov/pubmed/36431578
http://dx.doi.org/10.3390/ma15228093
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author Çelik, Ali İhsan
Özkılıç, Yasin Onuralp
Zeybek, Özer
Karalar, Memduh
Qaidi, Shaker
Ahmad, Jawad
Burduhos-Nergis, Dumitru Doru
Bejinariu, Costica
author_facet Çelik, Ali İhsan
Özkılıç, Yasin Onuralp
Zeybek, Özer
Karalar, Memduh
Qaidi, Shaker
Ahmad, Jawad
Burduhos-Nergis, Dumitru Doru
Bejinariu, Costica
author_sort Çelik, Ali İhsan
collection PubMed
description In this study, ground glass powder and crushed waste glass were used to replace coarse and fine aggregates. Within the scope of the study, fine aggregate (FA) and coarse aggregate (CA) were changed separately with proportions of 10%, 20%, 40%, and 50%. According to the mechanical test, including compression, splitting tensile, and flexural tests, the waste glass powder creates a better pozzolanic effect and increases the strength, while the glass particles tend to decrease the strength when they are swapped with aggregates. As observed in the splitting tensile test, noteworthy progress in the tensile strength of the concrete was achieved by 14%, while the waste glass used as a fractional replacement for the fine aggregate. In samples where glass particles were swapped with CA, the tensile strength tended to decrease. It was noticed that with the adding of waste glass at 10%, 20%, 40%, and 50% of FA swapped, the increase in flexural strength was 3.2%, 6.3%, 11.1%, and 4.8%, respectively, in amount to the reference one (6.3 MPa). Scanning electron microscope (SEM) analysis consequences also confirm the strength consequences obtained from the experimental study. While it is seen that glass powder provides better bonding with cement with its pozzolanic effect and this has a positive effect on strength consequences, it is seen that voids are formed in the samples where large glass pieces are swapped with aggregate and this affects the strength negatively. Furthermore, simple equations using existing data in the literature and the consequences obtained from the current study were also developed to predict mechanical properties of the concrete with recycled glass for practical applications. Based on findings obtained from our study, 20% replacement for FA and CA with waste glass is recommended.
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spelling pubmed-96926022022-11-26 Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates Çelik, Ali İhsan Özkılıç, Yasin Onuralp Zeybek, Özer Karalar, Memduh Qaidi, Shaker Ahmad, Jawad Burduhos-Nergis, Dumitru Doru Bejinariu, Costica Materials (Basel) Article In this study, ground glass powder and crushed waste glass were used to replace coarse and fine aggregates. Within the scope of the study, fine aggregate (FA) and coarse aggregate (CA) were changed separately with proportions of 10%, 20%, 40%, and 50%. According to the mechanical test, including compression, splitting tensile, and flexural tests, the waste glass powder creates a better pozzolanic effect and increases the strength, while the glass particles tend to decrease the strength when they are swapped with aggregates. As observed in the splitting tensile test, noteworthy progress in the tensile strength of the concrete was achieved by 14%, while the waste glass used as a fractional replacement for the fine aggregate. In samples where glass particles were swapped with CA, the tensile strength tended to decrease. It was noticed that with the adding of waste glass at 10%, 20%, 40%, and 50% of FA swapped, the increase in flexural strength was 3.2%, 6.3%, 11.1%, and 4.8%, respectively, in amount to the reference one (6.3 MPa). Scanning electron microscope (SEM) analysis consequences also confirm the strength consequences obtained from the experimental study. While it is seen that glass powder provides better bonding with cement with its pozzolanic effect and this has a positive effect on strength consequences, it is seen that voids are formed in the samples where large glass pieces are swapped with aggregate and this affects the strength negatively. Furthermore, simple equations using existing data in the literature and the consequences obtained from the current study were also developed to predict mechanical properties of the concrete with recycled glass for practical applications. Based on findings obtained from our study, 20% replacement for FA and CA with waste glass is recommended. MDPI 2022-11-15 /pmc/articles/PMC9692602/ /pubmed/36431578 http://dx.doi.org/10.3390/ma15228093 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Çelik, Ali İhsan
Özkılıç, Yasin Onuralp
Zeybek, Özer
Karalar, Memduh
Qaidi, Shaker
Ahmad, Jawad
Burduhos-Nergis, Dumitru Doru
Bejinariu, Costica
Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title_full Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title_fullStr Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title_full_unstemmed Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title_short Mechanical Behavior of Crushed Waste Glass as Replacement of Aggregates
title_sort mechanical behavior of crushed waste glass as replacement of aggregates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9692602/
https://www.ncbi.nlm.nih.gov/pubmed/36431578
http://dx.doi.org/10.3390/ma15228093
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