Acknowledgement
Supported by : Twelve-Five Science and Technology
References
- ASCE (2010), Recommendations for seismic design of hybrid coupled wall systems; Technical Committee on Composite Construction of the Structural Engineering Institute, Reston, VA, USA.
- Bengar, H.A. and Aski, R.M. (2016), "Performance based evaluation of RC coupled shear wall system with steel coupling beam", Steel Compos. Struct., Int. J., 20(2), 337-355. https://doi.org/10.12989/scs.2016.20.2.337
- Cheng, M.Y., Fikri, R. and Chen, C.C. (2015), "Experimental study of reinforced concrete and hybrid coupled shear wall systems", Eng. Struct., 82, 214-225. https://doi.org/10.1016/j.engstruct.2014.10.039
- EI-Tawil S., Fortney, P., Harries, K.A., Shahrooz, B.M., Kurama, Y. and Hassan, M. (2009), "Recommendations for seismic design of hybrid coupled wall systems", ASCE/SEI.
- Farsi, A., Keshavarzi, F., Pouladi, P. and Mirghaderi, R. (2016), "Experimental study of replaceable steel coupling beam with end-plate connection", J. Constr. Steel Res., 122, 138-150. https://doi.org/10.1016/j.jcsr.2016.03.018
- Fortney, P.J., Shahrooz, B.M., Gian, A. and Rassati, G.A. (2007), "Seismic performance evaluation of coupled core walls with concrete and steel coupling beams", Steel Compos. Struct., Int. J., 7(4), 279-301. https://doi.org/10.12989/scs.2007.7.4.279
- GB (2003), Code for design of steel structures. GB 50017; China Planning Press, Beijing, China.
- GB (2010), Code for design of concrete structures, GB 50010; China Architecture and Building Press, Beijing, China.
- GB/T (2010), Metallic materials-Tensile testing-Part 1: Method of test at room temperature, GB/T 228.1; China Architecture and Building Press, Beijing, China.
- Gholhaki, M. and Ghadaksaz, M.B. (2016), "Investigation of the link beam length of a coupled steel plate shear wall", Steel Compos. Struct., Int. J., 20(1), 34-41.
- Hindi, R.A. and Hassan, M.A. (2004), "Shear capacity of diagonally reinforced coupling beams", Eng. Struct., 26(10), 1437-1446. https://doi.org/10.1016/j.engstruct.2004.05.012
- Hung, C. and Lu, W. (2015), "Towards achieving the desired seismic performance for hybrid coupled structural walls", Earthq. Struct., 9(6), 1251-1272. https://doi.org/10.12989/eas.2015.9.6.1251
- JGJ (2002), Technical specification for steel reinforced concrete composite structures; JGJ 138, China Architecture and Building Press, Beijing, China.
- JGJ (2010), Technical specification for concrete structures of tall building; JGJ 3, China Architecture and Building Press, Beijing, China.
- Morelli, F., Manfredi, M. and Salvatore, W. (2016), "An enhanced component based model for steel connection in a hybrid coupled shear wall structure: development, calibration and experimental validation", Comput. Struct., 176, 50-69. https://doi.org/10.1016/j.compstruc.2016.08.002
- Nie, J., Hu, H. and Eatherton, M. (2014), "Concrete filled steel plate composite coupling beams: Experimental study", J. Constr. Steel Res., 94, 49-63. https://doi.org/10.1016/j.jcsr.2013.10.024
- Park, W.S. and Yun, H.D. (2006a), "Seismic performance of steel coupling beam connections in panel shear failure", J. Constr. Steel Res., 62(10), 1016-1025. https://doi.org/10.1016/j.jcsr.2006.01.005
- Park, W.S. and Yun, H.D. (2006b), "Bearing strength of steel coupling beam connections embedded reinforced concrete shear walls", Eng. Struct., 28(9), 1319-1334. https://doi.org/10.1016/j.engstruct.2006.01.003
- Paulay, T. and Binney, J.R. (1974), "Diagonally reinforced coupling beams of shear walls", International Concrete Abstracts Portal, 42, 579-598.
- Pi, T.X. (2008), "Experimental study on seismic behavior and design method study of small span-to-depth ration coupling beams of seismic RC shear walls", Ph.D. Dissertation; Chongqing University, Chongqing, China.
- Shahrooz, B.M., Tunc, G. and Deason, J.T. (2004), "Outrigger beam-Wall connections: Part II-Subassembly testing and further modeling enhancements", J. Struct. Eng., 130(2), 262-270. https://doi.org/10.1061/(ASCE)0733-9445(2004)130:2(262)
- Shi, Y., Su, M.Z., Mei, X.J. and Jiang, C.Y. (2013a), "Experimental study on hysteretic behavior of innovative hybrid coupled wall system with high coupling ratio", China Civil Eng. J., 46(1), 52-60.
- Shi, Y., Su, M.Z. and Mei, X.J. (2013b), "Experimental study on seismic behavior of hybrid coupled wall system with steel boundary elements", J. Earthq. Eng. Eng. Vib., 33(3), 133-139.
- Su, R.K.L. and Zhu, Y. (2005), "Experimental and numerical studies of external steel plate strengthened reinforced concrete coupling beams", Eng. Struct., 27(10), 1537-1550. https://doi.org/10.1016/j.engstruct.2005.04.012
- Su, R.K.L., Lam, W.Y. and Pam, H.J. (2009), "Experimental study of plate reinforced composite deep coupling beams", Struct. Des. Tall Special Build., 18(3), 235-257. https://doi.org/10.1002/tal.407
- Wu, Y.T., Dai, C.M. and Xiao, Y. (2014a), "Seismic performance of bolted endplate steel coupling beams for coupled composite shear wall", China Civil Eng. J., 12(5), 39-48.
- Wu, Y.T., Dai, C.M. and Zhou, Z.L. (2014b), "Seismic behavior of shear dominant bolted endplate steel coupling beam of composite coupled shear wall", J. Build. Struct., 35(4), 255-261.
- Zhao, Z.Z., Kwan, A.K.H. and He, X.G. (2004), "Nonlinear finite element analysis of deep reinforced concrete coupling beams", Eng. Struct., 26(1), 13-25. https://doi.org/10.1016/j.engstruct.2003.08.014
- Zhu, H. (2008), "Experimental study and analysis on bearing capacity of connection between steel coupling beam and concrete shear wall", Ph.D. Dissertation; Central South University, Changsha, China.
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