Research Article

Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP

Volume: 9 Number: 3 January 1, 2024
TR EN

Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP

Abstract

Retrofit with fiber polymer composites is one of the new generations retrofitting techniques that is rapidly becoming widespread. CFRP provide effective solutions in terms of durability as well as increasing the flexural strength and shearing capacities of RC structural elements. It is more suitable than traditional retrofitting techniques, especially in buildings where the architectural function must be preserved. The subject of the study is to determine the earthquake performance according to TBEC2018 principles of the existing medicine production facility with a frame system, which was built with conventional RC method in Çorlu. In practice, the effectiveness of retrofitting with CFRPs was investigated within the scope of the study. After determining the earthquake performance of the building, the realization of the additional effects that will occur due to the operating loads expected to increase on the structure, with the retrofit using CFRPs, was designed and applied on the site. In a highly hygienic environment, retrofitting alternatives have been investigated and structural safety comparison has been made. In the earthquake retrofitting application of the building, the advantages of retrofit with composite materials were utilized and advantages and disadvantages were determined compared to traditional methods.

Keywords

References

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  7. [7] A. Ilki, O. Peker, E. Karamuk, C. Demir and N. Kumbasar, "FRP retrofit of low and medium strength circular and rectangular reinforced concrete columns," Journal of Materials in Civil Engineering, vol. 20, no. 2 pp. 169-188, 2008. doi:10.1061/(ASCE)0899-1561(2008)20:2(169)
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Details

Primary Language

English

Subjects

Civil Engineering

Journal Section

Research Article

Publication Date

January 1, 2024

Submission Date

January 30, 2023

Acceptance Date

November 17, 2023

Published in Issue

Year 2023 Volume: 9 Number: 3

APA
Bal, A. (2024). Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP. Gazi Journal of Engineering Sciences, 9(3), 411-421. https://izlik.org/JA87TJ64AK
AMA
1.Bal A. Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP. GJES. 2024;9(3):411-421. https://izlik.org/JA87TJ64AK
Chicago
Bal, Ahmet. 2024. “Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP”. Gazi Journal of Engineering Sciences 9 (3): 411-21. https://izlik.org/JA87TJ64AK.
EndNote
Bal A (January 1, 2024) Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP. Gazi Journal of Engineering Sciences 9 3 411–421.
IEEE
[1]A. Bal, “Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP”, GJES, vol. 9, no. 3, pp. 411–421, Jan. 2024, [Online]. Available: https://izlik.org/JA87TJ64AK
ISNAD
Bal, Ahmet. “Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP”. Gazi Journal of Engineering Sciences 9/3 (January 1, 2024): 411-421. https://izlik.org/JA87TJ64AK.
JAMA
1.Bal A. Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP. GJES. 2024;9:411–421.
MLA
Bal, Ahmet. “Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP”. Gazi Journal of Engineering Sciences, vol. 9, no. 3, Jan. 2024, pp. 411-2, https://izlik.org/JA87TJ64AK.
Vancouver
1.Ahmet Bal. Increasing the Vertical Load Capacity of Reinforced Concrete Waffle Slabs With Varying Operating Loads Using CFRP. GJES [Internet]. 2024 Jan. 1;9(3):411-2. Available from: https://izlik.org/JA87TJ64AK

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