JKCI
Journal of
the Korea Concrete Institute
KCI
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ISSN : 1229-5515 (Print)
ISSN : 2234-2842 (Online)
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Journal of the Korea Concrete Institute
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J Korea Concr Inst.
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2025-06
(Vol.37 No.3)
10.4334/JKCI.2025.37.3.327
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References
1
ACI Committee 440 (2023) Building Code Requirements for Structural Concrete Reinforced with Glass Fiber-Reinforced Polymer (GFRP) Bars— Code and Commentary. Farmington Hills, MI; American Concrete Institute (ACI).
2
Ahmad, F. S., Foret, G., and Le Roy, R. (2011) Bond between Carbon Fibre-Reinforced Polymer (CFRP) Bars and Ultra High Performance Fibre Reinforced Concrete (UHPFRC): Experimental Study. Construction and Building Materials 25(2), 479-485.
3
Arafa, A., Farghaly, A. S., and Benmokrane, B. (2018a) Experimental Behavior of GFRP-Reinforced Concrete Squat Walls Subjected to Simulated Earthquake Load. Journal of Composites for Construction 22(2).
4
Arafa, A., Farghaly, A. S., and Benmokrane, B. (2018b). Effect of Web Reinforcement on the Seismic Response of Concrete Squat Walls Reinforced with Glass-FRP Bars. Engineering Structures 174, 712-723.
5
CSA Committee S806-12 (2012) Design and Construction of Building Components with Fibre Reinforced Polymers (CAN/CSA S806-12). Canadian Standards Association (CSA), Canada.
6
Hosseini, S. M., Yekrangnia, M., and Oskouei, A. V. (2022) Effect of Spiral Transverse Bars on Structural Behavior of Concrete Shear Walls Reinforced with GFRP Bars. Journal of Building Engineering 55, 104706.
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Huang, Z., Shen, J., Lin, H., Song, X., and Yao, Y. (2020) Shear Behavior of Concrete Shear Walls with CFRP Grids under Lateral Cyclic Loading. Engineering Structures 211, 110422.
8
Cadenazzi, T., Dotelli, G., Rossini, M., Nolan, S., and Nanni, A. (2020) Cost and environmental analyses of reinforcement alternatives for a concrete bridge. Structure and infrastructure engineering 16(4), 787-802.
9
MOLIT (2025) MOLIT Statistics System. Sejong, Korea: Ministry of Land, Infrastructure and Transport (MOLIT), https://stat.molit.go.kr/portal/main/portalMain.do, Accessed 20, January, 2025.
10
Sbahieh, S., Mckay, G., and Al-Ghamdi, S. G. (2023) A Comparative Life Cycle Assessment of Fiber-Reinforced Polymers as a Sustainable Reinforcement Option in Concrete Beams. Frontiers in Built Environment 9.
11
Shabana, I., Farghaly, A. S., and Benmokrane, B. (2023) Shear Strength of Glass Fiber-Reinforced Polymer-Reinforced Concrete Squat Walls: Strut-and-Tie Model. ACI Structural Journal 120(2), 61-75.
12
Zhang, S., Gan, J., Lv, J., Shen, C., Xu, C., and Li, F. (2024). Environmental Impacts of Carbon Fiber Production and Decarbonization Performance in Wind Turbine Blades. Journal of Environmental Management 351, 119893.