Telescopic Self-Centering braces are one of the very successful examples of Self-Centering braces which perform well in seismic loading. In this study, a new example of Telescopic Self-Centering brace is introduced,which has superior features over other telescopic braces.These include: high axial load capacity, use of shorter cables in brace construction, simplicity of construction, use of separate cables for compressive and traction modes, less fatigue in cyclic loads and, allowing for more dynamic loading cycles. In this paper, a sample was designed with an axial force capacity of 300kN. Modeling of behavior (DT-SCED) was accurately expressed using numerical relationships. nonlinear incremental stiffness analysis method was also used to calculate the hysteresis brace behavior. The cyclic load test was applied to this brace and the result showed complete Self-Centering behavior.Then, a sample building with the double telescoping Self-Centering Energy-Dissipative Brace (DT-SCED) was subjected Single direction pushover analyses and the results are compared with the sample buildings with theSelf-Centering Energy-Dissipative Bracing (SCED) and the Telescoping Self-Centering Energy-Dissipative Bracing(T-SCED).The results of the analysis and comparing with other samples confirm the seismic superiority of performance of the DT-SCED brace over other samples.
Nims, D.K., Richter, P.J., & Bachman, R.E., "The Use of the Energy Dissipating Restraint for Seismic Hazard Mitigation". Earthquake Spectra, 9(3), 467-489, (1993).
Tsopelas, T., Constantinou, M.C., "Experimental and Analytical Study of a System Consisting of Sliding Bearings and Fluid Restoring Force/Damping Devices". Eng., State University of New York at Buffalo, (1994).
Filiatrault, A., Tremblay, R., & Kar, R., "Performance Evaluation of Friction Spring Seismic Damper". J. Struct. Eng. 126 (4), 491-499, (2000).
Christopoulos, C., Filiatrault, A., Uang, C-M., & Folz, B., "Posttensioned Energy Dissipating Connections for Moment-Resisting Steel Frames". J. Struct. Eng. 128(9), 1111-1120, (2002).
Christopoulos, C., Tremblay, R., Kim, H.-J., & Lacerte, M., "Self-Centering Energy Dissipative Bracing System for the Seismic Resistance of Structure: Development and Validation". Journal of Structural Engineering, 134(1), 96-107, (2008).
Rojas, P., Ricles, J.M., & Sause, R., "Seismic Performance of Post-tensioned Steel Moment Resisting Frames With Friction Devices". J. Struct. Eng. 131 (4), 529-540, (2005).
Zhu, S., & Zhang, Y., "Seismic Analysis of Concentrically Braced Frame Systems with SelfCentering Friction Damping Braces". J.Struct.Eng. 134(1), 121-131, (2008).
Erochko, J., Christopoulos, C., & Tremblay, R., "Design and Testing of an Enhanced-Elongation Telescoping Self-Centering Energy-Dissipative Brace". J. Struct. Eng. 137 (5), 589-599, (2011).
Alam, S., Rafiqul Haque, A."Cyclic Performance of a Piston Based Self-Centering Bracing System", Structures Congress, 1:2360-2372, (2015).
Erochko, j.Christopoulos, C., Tremblay, R., "Design, Testing, and Detailed Component Modeling of a High-Capacity Self-Centering Energy-Dissipative Brace", ASCE Journal of Structural Engineering, 131:370-381, (2014).
ASCE., "Minimum design loads for buildings and other structures". SEI/ASCE standard No. 7-05, ASCE, Reston, Va, (2005).
Erochko, J., Christopoulos, C., & Tremblay, R., "Residual Drift Response of SMRFs and BRB Frames in Steel Buildings Designed according to ASCE 7-05". J. Struct. Eng. 137 (5), 589-599, (2011).
Rosenblueth E, & Meli R., "The 1985 Mexico earthquake: causes and effects in Mexico City". Concrete International, 8(5), 23–34, (1986).
McCormick, J., Aburano, H., Ikenaga, M., and Nakashima, M., "Permissible Residual Deformationn Levels for Building Structures Considering Both Safety and Human Elements". Proc. 14th World Conf. Earthquake Engng, Beijing, China. Paper No. 05-06-0071, (2008).
Choi, H., Erochko, J., Christopoulos, C., & Tremblay, R., "Comparison of the Seismic Response of Steel Buildings Incorporating Self-Centering nergy-Dissipative Dampers", Toronto: Dept. of Civ. Eng., University of Toronto, ON, (2008).
Jeffrey A. Erochko., "Improvements to the Design and Use of Post-Tensioned Self-Centering Energy-Dissipative (SCED) Braces ". Toronto: Dept. of Civ. Eng., University of Toronto, (2013).
Karamodin, A., & Baradaran Khalkhali, M. H. (2020). Seismic Response of Multistory Buildings with Double Telescoping Self-Centering Energy-Dissipative Brace (DT-SCED). Ferdowsi Civil Engineering, 33(2), 89-107. doi: 10.22067/civil.v33i2.80220
MLA
Abbas Karamodin; Mohammad hossein Baradaran Khalkhali. "Seismic Response of Multistory Buildings with Double Telescoping Self-Centering Energy-Dissipative Brace (DT-SCED)", Ferdowsi Civil Engineering, 33, 2, 2020, 89-107. doi: 10.22067/civil.v33i2.80220
HARVARD
Karamodin, A., Baradaran Khalkhali, M. H. (2020). 'Seismic Response of Multistory Buildings with Double Telescoping Self-Centering Energy-Dissipative Brace (DT-SCED)', Ferdowsi Civil Engineering, 33(2), pp. 89-107. doi: 10.22067/civil.v33i2.80220
VANCOUVER
Karamodin, A., Baradaran Khalkhali, M. H. Seismic Response of Multistory Buildings with Double Telescoping Self-Centering Energy-Dissipative Brace (DT-SCED). Ferdowsi Civil Engineering, 2020; 33(2): 89-107. doi: 10.22067/civil.v33i2.80220
Send comment about this article