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Article

Tensile Behavior of Green Concrete Made of Fine/Coarse Recycled Glass and Recycled Concrete Aggregates

by
Sabry Fayed
1,*,
Ceyhun Aksoylu
2,
Ali Serdar Ecemiş
3,
Emrah Madenci
3,4 and
Yasin Onuralp Özkılıç
3,5,*
1
Department of Civil Engineering, Faculty of Engineering, Kafrelsheikh University, Kafrelsheikh 6860404, Egypt
2
Department of Civil Engineering, Faculty of Engineering and Natural Sciences, Konya Technical University, 42075 Konya, Turkey
3
Department of Civil Engineering, Necmettin Erbakan University, 42090 Konya, Turkey
4
Department of Technical Sciences, Western Caspian University, Baku 1001, Azerbaijan
5
Department of Civil Engineering, Lebanese American University, Beirut 03797751, Lebanon
*
Authors to whom correspondence should be addressed.
Buildings 2024, 14(9), 2969; https://doi.org/10.3390/buildings14092969
Submission received: 20 May 2024 / Revised: 8 September 2024 / Accepted: 12 September 2024 / Published: 19 September 2024
(This article belongs to the Section Building Materials, and Repair & Renovation)

Abstract

The study conducted axial tensile strength tests on concrete samples that replaced conventional aggregates with recycled aggregates. In Series I, using FNG instead of FNA resulted in a reduction in compressive strength by 12.8–49.8% and tensile strength by 14.5–44.6%. If the proportion of FNG exceeds 50%, compressive strength decreases by more than 24.5% and tensile strength by more than 27.5%. In Series II, replacing CNA with CRG reduced compressive and tensile strengths by 18.4–32.8% and 5.1–24.9%, respectively; exceeding 40% CRG results in a compressive strength reduction of more than 32.8% and a tensile strength reduction of more than 24.9%. In Series III, samples made with RCA, CNA, and 20% CRG showed a compressive strength decrease of 8.8–22% and a tensile strength decrease of 10.7–26%; RCA80 samples showed maximum reductions. In Series IV, replacing CNA with RCA resulted in compressive and tensile strength reductions of 15.4–34.7% and 13.9–24.3%, respectively; RCA80 samples again showed maximum reductions. Maximum stress unit deformation values (εo) increased by 3–58.4% in Series I, 9–80% in Series II, 10–44.9% in Series III, and 9–32% in Series IV. Tensile toughness values showed the highest increase of 35.15% in the CRG40 sample and the lowest of 0.13% in the RCA40-20 sample. The use of glass aggregates in concrete is feasible, but exceeding certain ratios can significantly reduce strength. Concrete can effectively use waste glass as a partial substitute for cement, fine aggregates, or as a filler material, potentially enhancing compressive strength.
Keywords: recycled concrete aggregates (RCA); recycled glass aggregates (RGA); direct tension; eco-friendly concrete; ductility recycled concrete aggregates (RCA); recycled glass aggregates (RGA); direct tension; eco-friendly concrete; ductility

Share and Cite

MDPI and ACS Style

Fayed, S.; Aksoylu, C.; Ecemiş, A.S.; Madenci, E.; Özkılıç, Y.O. Tensile Behavior of Green Concrete Made of Fine/Coarse Recycled Glass and Recycled Concrete Aggregates. Buildings 2024, 14, 2969. https://doi.org/10.3390/buildings14092969

AMA Style

Fayed S, Aksoylu C, Ecemiş AS, Madenci E, Özkılıç YO. Tensile Behavior of Green Concrete Made of Fine/Coarse Recycled Glass and Recycled Concrete Aggregates. Buildings. 2024; 14(9):2969. https://doi.org/10.3390/buildings14092969

Chicago/Turabian Style

Fayed, Sabry, Ceyhun Aksoylu, Ali Serdar Ecemiş, Emrah Madenci, and Yasin Onuralp Özkılıç. 2024. "Tensile Behavior of Green Concrete Made of Fine/Coarse Recycled Glass and Recycled Concrete Aggregates" Buildings 14, no. 9: 2969. https://doi.org/10.3390/buildings14092969

APA Style

Fayed, S., Aksoylu, C., Ecemiş, A. S., Madenci, E., & Özkılıç, Y. O. (2024). Tensile Behavior of Green Concrete Made of Fine/Coarse Recycled Glass and Recycled Concrete Aggregates. Buildings, 14(9), 2969. https://doi.org/10.3390/buildings14092969

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