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Published in: International Journal of Steel Structures 4/2023

20-06-2023

Seismic Performance of RC Circular Columns Strengthened with Self-compacting Concrete-Filled Steel Tubes

Authors: Zhaoqiang Zhang, Yuxin Yi, Tian Liao, Xiaowei Li

Published in: International Journal of Steel Structures | Issue 4/2023

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Abstract

To investigate the seismic performance of RC circular column strengthened with self-compacting concrete (SCC) -filled steel tubes (SCFST), nine specimens of height 1200 mm, varying with a cross-section shape of steel tube (external diameter: 218 mm, cross-section dimensions: 200 mm × 200 mm) were tested under axial load and cyclic lateral load. Three parameters, including the axial compression ratio, the cross-section shape of steel tube, and the embedding rebars ratio, were considered in the tests. The failure mode, hysteresis curves, skeleton curves, ductility, stiffness degradation, and energy-dissipation capacity were analysed. Experimental results showed that the bearing capacity and stiffness of the strengthened column were 5.4 and 9.08 times than that of the unstrengthened column respectively, and the improvement ratio of ductility and energy dissipation reached 123% and 85.7% respectively. The bearing capacity and stiffness of the square SCFST strengthened column was enhanced by 28.57% and 42.11% respectively, compared with the circular SCFST strengthened column. With the designed axial compression ratio increasing, the bearing capacity, initial stiffness, and energy dissipation capacity of strengthened columns increased by 17–39%, 21–60%, and 15–40% respectively, but the ductility coefficient decreased by 8.56–32.4%. The bearing capacity and energy dissipation of the specimen with an embedding rebars ratio of 0.06% increased by 7.5% and 9.31% respectively, but the ductility decreased by 12.81%. When the embedding rebars ratio was 0.1%, the reinforcement effect can be basically negligible.

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Literature
go back to reference G.B. 50011-2010 (2010) Code for design of concrete structures. China Architecture Building Press, Beijing. G.B. 50011-2010 (2010) Code for design of concrete structures. China Architecture Building Press, Beijing.
go back to reference G.B./T 50081 (2010). Standard for Test Methods of Physical and Mechanical Properties of Concrete. China Architecture Building Press, Beijing. G.B./T 50081 (2010). Standard for Test Methods of Physical and Mechanical Properties of Concrete. China Architecture Building Press, Beijing.
go back to reference JGJ/T. 101-2015 (2015) Specification for seismic test of buildings. China Architecture Building Press, Beijing. JGJ/T. 101-2015 (2015) Specification for seismic test of buildings. China Architecture Building Press, Beijing.
go back to reference JGJT. 471-2019 (2019) Technical standard for steel tube confined concrete structures. China Architecture Building Press, Beijing. JGJT. 471-2019 (2019) Technical standard for steel tube confined concrete structures. China Architecture Building Press, Beijing.
go back to reference Priestley, M., Seible, F., Yan, X., & Verma, R. (1994a). Steel jacket retrofitting of reinforced concrete bridge columns for enhanced shear strength-part 1: Theoretical considerations and test design. ACI Structural Journal. https://doi.org/10.14359/9885CrossRef Priestley, M., Seible, F., Yan, X., & Verma, R. (1994a). Steel jacket retrofitting of reinforced concrete bridge columns for enhanced shear strength-part 1: Theoretical considerations and test design. ACI Structural Journal. https://​doi.​org/​10.​14359/​9885CrossRef
go back to reference Priestley, M., Seible, F., & Yan, X. (1994b). Steel jacket retrofitting of reinforced concrete bridge columns for enhanced shear strength-Part 2: Test results and comparison with theory. Structural Journal, 91(5), 537–551. https://doi.org/10.14359/4168CrossRef Priestley, M., Seible, F., & Yan, X. (1994b). Steel jacket retrofitting of reinforced concrete bridge columns for enhanced shear strength-Part 2: Test results and comparison with theory. Structural Journal, 91(5), 537–551. https://​doi.​org/​10.​14359/​4168CrossRef
go back to reference Xue, J., Lu, Y., Liang, H., & Gong, T. (2014). Research on bearing capacity of RC circular stub column strengthened with self-compacting concrete-filled circular steel tube under axial loading. Engineering Journal of Wuhan University, 47(06), 769–773. (in Chinese). Xue, J., Lu, Y., Liang, H., & Gong, T. (2014). Research on bearing capacity of RC circular stub column strengthened with self-compacting concrete-filled circular steel tube under axial loading. Engineering Journal of Wuhan University, 47(06), 769–773. (in Chinese).
Metadata
Title
Seismic Performance of RC Circular Columns Strengthened with Self-compacting Concrete-Filled Steel Tubes
Authors
Zhaoqiang Zhang
Yuxin Yi
Tian Liao
Xiaowei Li
Publication date
20-06-2023
Publisher
Korean Society of Steel Construction
Published in
International Journal of Steel Structures / Issue 4/2023
Print ISSN: 1598-2351
Electronic ISSN: 2093-6311
DOI
https://doi.org/10.1007/s13296-023-00757-9

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