Local Buckling Development of H-Section Steel Core of Buckling-Restrained Brace
Abstract
:1. Introduction
2. Theoretical Analyses on the Elastic Buckling Development of Flange
2.1. Analytical Model
2.2. Elastic Buckling Development of Flange
3. Establishment of Numerical Model
4. Elastic Buckling Development of H-Section Steel Core
5. Elasto-Plastic Buckling Development of H-Section Steel Core
5.1. Numerical Model and Loading Protocol
5.2. Simulation Results
5.3. Validation of Half-Wavelength of Local Buckling for Flange
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- Uang, C.M.; Nakashima, M.; Tsai, K.C. Research and Application of Buckling-restrained Braced Frames. Int. J. Steel Struct. 2004, 4, 301–313. [Google Scholar]
- Xie, Q. State of the art of buckling-restrained braces in Asia. J. Constr. Steel Res. 2005, 61, 727–748. [Google Scholar] [CrossRef]
- Takeuchi, T.; Wada, A. Review of Buckling-Restrained Brace Design and Application to Tall Buildings. Int. J. High-Rise Build. 2018, 7, 187–195. [Google Scholar]
- Chou, C.-C.; Chen, S.-Y. Subassemblage tests and finite element analyses of sandwiched buckling-restrained braces. Eng. Struct. 2010, 32, 2108–2121. [Google Scholar] [CrossRef]
- Takeuchi, T.; Hajjar, J.; Matsui, R.; Nishimoto, K.; Aiken, I. Local buckling restraint condition for core plates in buckling restrained braces. J. Constr. Steel Res. 2010, 66, 139–149. [Google Scholar] [CrossRef]
- Takeuchi, T.; Hajjar, J.F.; Matsui, R.; Nishimoto, K.; Aiken, I.D. Effect of local buckling core plate restraint in buckling restrained braces. Eng. Struct. 2012, 44, 304–311. [Google Scholar] [CrossRef]
- Wu, A.-C.; Lin, P.-C.; Tsai, K.-C. High-mode buckling responses of buckling-restrained brace core plates. Earthq. Eng. Struct. Dyn. 2013, 43, 375–393. [Google Scholar] [CrossRef]
- Lin, P.-C.; Tsai, K.-C.; Wang, K.-J.; Yu, Y.-J.; Wei, C.-Y.; Wu, A.-C.; Tsai, C.-Y.; Lin, C.-H.; Chen, J.-C.; Schellenberg, A.H.; et al. Seismic design and hybrid tests of a full-scale three-story buckling-restrained braced frame using welded end connections and thin profile. Earthq. Eng. Struct. Dyn. 2011, 41, 1001–1020. [Google Scholar] [CrossRef]
- Wu, B.; Mei, Y. Buckling mechanism of steel core of buckling-restrained braces. J. Constr. Steel Res. 2015, 107, 61–69. [Google Scholar] [CrossRef]
- Wu, B.; Lu, J.; Mei, Y.; Zhang, J. Buckling mechanism and global stability design method of buckling-restrained braces. J. Constr. Steel Res. 2017, 138, 473–487. [Google Scholar] [CrossRef]
- Lu, J.; Wu, B.; Mei, Y. Buckling mechanism of steel core and global stability design method for fixed-end buckling-restrained braces. Eng. Struct. 2018, 174, 447–461. [Google Scholar] [CrossRef]
- Wu, J.; Liang, R.J.; Wang, C.L.; Ge, H.B. Restrained Buckling Behavior of Core Component in Buckling-restrained Braces. Int. J. Adv. Steel Constr. 2012, 8, 212–225. [Google Scholar]
- Genna, F.; Gelfi, P. Analysis of the Lateral Thrust in Bolted Steel Buckling-Restrained Braces. II: Engineering Analytical Estimates. J. Struct. Eng. 2012, 138, 1244–1254. [Google Scholar] [CrossRef]
- Chen, Q.; Wang, C.L.; Meng, S.; Zeng, B. Effect of the Unbonding Materials on the Mechanic Behavior of All-steel Buckling-restrained Braces. Eng. Struct. 2016, 111, 478–493. [Google Scholar] [CrossRef]
- Jiang, Z.Q.; Guo, Y.L.; Zhang, B.H.; Zhang, X.Q. Influence of Design Parameters of Buckling-restrained Brace on its Performance. J. Constr. Steel Res. 2015, 105, 139–150. [Google Scholar] [CrossRef]
- Oda, H.; Usami, T. Fabricating Buckling-restrained Braces from Existing H-section Bracing Members: Experimental Study. J. Struct.Eng. JSCE 2010, 56, 499–510. (In Japanese) [Google Scholar]
- Funayama, J.; Imase, F.; Usami, T.; Wang, C.L. Seismic Upgrade Effect of Steel Truss Structures with H-section BRBs. Proc. JSCE Earthq. Eng. Symp. 2012, 68, 730–747. (In Japanese) [Google Scholar]
- Usami, T.; Kaneko, H. Strength of H-shaped Brace Constrained Flexural Buckling Having Unconstrained Area at Both Ends (Both Ends Simply Supported). J. Struct. Constr. Eng. Archit. Inst. Jpn. 2001, 542, 171–177. (In Japanese) [Google Scholar] [CrossRef] [Green Version]
- Usami, T.; Kaneko, H.; Ono, T. Strength of H-shaped Brace Constrained Flexural Buckling Having Unconstrained Area at Both Ends (Both Ends Fixed). J. Struct. Constr. Eng. Archit. Inst. Jpn. 2002, 558, 211–218. (In Japanese) [Google Scholar] [CrossRef] [Green Version]
- Ju, Y.K.; Kim, M.H.; Kim, J.; Kim, S.D. Component Tests of Buckling-restrained Braces with Unconstrained Length. Eng. Struct. 2009, 31, 507–516. [Google Scholar] [CrossRef]
- Kim, D.H.; Lee, C.H.; Ju, Y.K.; Kim, S.D. Subassemblage Test of Buckling-restrained Braces with H-shaped Steel Core. Struct. Des. Tall Spec. Build. 2015, 24, 243–256. [Google Scholar] [CrossRef]
- Li, W.; Wu, B.; Ding, Y. Experimental Study on Seismic Behaviors of H-section Steel Buckling-restrained Braes. J. Build. Struct. 2013, 34, 94–102. [Google Scholar]
- Li, W.; Wu, B.; Ding, Y.; Zhao, J.X. Experimental Performance of Buckling-restrained Braces with Steel Cores of H-section and Half-wavelength Evaluation of Higher-order Local Buckling. Adv. Struct. Eng. 2017, 20, 641–657. [Google Scholar] [CrossRef]
- Wang, C.L.; Gao, Y.; Cheng, X.Q.; Zeng, B.; Zhao, S.L. Experimental Investigation on H-section Buckling-restrained Braces with Partially Restrained Flange. Eng. Struct. 2019, 199, 109584. [Google Scholar] [CrossRef]
- Yuan, Y.; Gao, J.W.; Qing, Y.; Wang, C.L. A New H-section Buckling-restrained Brace Improved by Movable Steel Blocks and Stiffening Ribs. J. Build. Eng. 2022, 45, 103650. [Google Scholar] [CrossRef]
- Zhao, J.X.; Wu, B.; Ou, J.P. A Novel Type of Angle Steel Buckling-restrained Brace: Cyclic Behavior and Failure Mechanism. Earthq. Eng. Struct. Dyn. 2011, 40, 1083–1102. [Google Scholar] [CrossRef]
- Zhao, J.X.; Wu, B.; Li, W.; Ou, J.P. Local Buckling Behavior of Steel Angle Core Members in Buckling-restrained braces: Cyclic Tests, Theoretical Analysis, and Design Recommendations. Eng. Struct. 2015, 66, 129–145. [Google Scholar] [CrossRef]
- Piluso, V.; Pisapia, A. Interactive Plastic Local Buckling of Box-shaped Aluminium Members under Uniform Compression. Thin-Walled Struct. 2021, 164, 107828. [Google Scholar] [CrossRef]
- Timoshenko, S.P.; Woinowsky-Krieger, S. Theory of Plates and Shells, 2nd ed.; McGraw-Hill Book Company: New York, NY, USA, 1987; p. 387. [Google Scholar]
- Chen, J. Stability of Steel Structures: Theory and Design, 4th ed.; Science Press: Beijing, China, 2008; p. 414. (In Chinese) [Google Scholar]
- Bleich, F. Buckling Strength of Metal Structures; McGraw-Hill Publishing Company: New York, NY, USA, 1952; p. 307. [Google Scholar]
a = 30b | a = 20b | a = 10b | a = 5b | a = 2b | |
---|---|---|---|---|---|
kx0 | 0.4298 | 0.4357 | 0.4679 | 0.5965 | 1.4964 |
kcr | 0.4294 | 0.4350 | 0.4650 | 0.5850 | 1.4250 |
Δk | 0.0004 | 0.0007 | 0.0029 | 0.0115 | 0.0714 |
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Li, W.; Dong, J.; Qu, H.; Wang, L.; Zhao, K. Local Buckling Development of H-Section Steel Core of Buckling-Restrained Brace. Buildings 2022, 12, 227. https://doi.org/10.3390/buildings12020227
Li W, Dong J, Qu H, Wang L, Zhao K. Local Buckling Development of H-Section Steel Core of Buckling-Restrained Brace. Buildings. 2022; 12(2):227. https://doi.org/10.3390/buildings12020227
Chicago/Turabian StyleLi, Wei, Jing Dong, Hui Qu, Lanqin Wang, and Kun Zhao. 2022. "Local Buckling Development of H-Section Steel Core of Buckling-Restrained Brace" Buildings 12, no. 2: 227. https://doi.org/10.3390/buildings12020227
APA StyleLi, W., Dong, J., Qu, H., Wang, L., & Zhao, K. (2022). Local Buckling Development of H-Section Steel Core of Buckling-Restrained Brace. Buildings, 12(2), 227. https://doi.org/10.3390/buildings12020227