참고문헌
- American Institute of Steel Construction (AISC). (2005), "Specification for structural steel buildings", Chicago.
- Andalib, Z., Kafi, M.A. and Bazzaz, M. (2010), "Using hyper elastic material for increasing ductility of bracing", Proceedings of the 1st. Conference of Steel & Structures and 2nd. Conference on Application of High-Strength Steels in Structural Industry, Tehran, Iran, December.
- Applied Technology Council (ATC-40). (1996), "Guidelines for cyclic seismic Testing of components of steel structures", ATC. Redwood City USA.
- Bazzaz, M., Kheyroddin, A., Kafi, M.A. and Andalib, Z. (2011), "Evaluating The Performance of Steel Ring in Special Bracing Frame", Proceedings of the Sixth International Conference of Seismology and Earthquake Engineering, Tehran, Iran, May.
- Beheshti, A.R. (2008), "Study on increasing capacity bearing of ductile circular element in concentric braces", the degree of Master of Science, Civil Engineering Department, Iran University of Science and Technology, Tehran, Iran, September.
- Building and Housing Research Center. (2007), "Iranian Code of Practice for Seismic Resistant Design of Buildings [Standard No.2800, 3th Edition]", Tehran, Iran.
- Chan Ricky, W.K. and Albermani, F. (2008), "Experimental study of steel slit damper for passive energy dissipation", J. Eng. Struct., 30(4), 1058-1066. https://doi.org/10.1016/j.engstruct.2007.07.005
- Constantinou, M.C., Tsopelas, P., Hammel, W. and Sigaher, A.N. (2001), "Toggle brace-damper seismic energy dissipation systems", J. Struct. Eng., 127(2), 105-112. https://doi.org/10.1061/(ASCE)0733-9445(2001)127:2(105)
- Federal Emergency Management Agency (FEMA). (2000), "Prestandard and Commentary for the Seismic Rehabilitation of Buildings", Report No. FEMA 356, Washington, USA.
- Hanson, R.D. and Soong, T.T. (2001), "Seismic design with supplemental energy dissipation devices", Oakland (CA): Earthquake Engineering Research Institute.
- Hizji, R. (2008), "Evaluating the performance of concentric braces with preliminary clearance in moment frame", the degree of Master of Science, Civil Engineering Department, Iran University of Science and Technology, Tehran, Iran, September.
- Hsu, H.-L., Juang, J.-L. and Chou, C.-H. (2011), "Experimental evaluation on the seismic performance of steel knee braced frame structures with energy dissipation mechanism", Steel. Compos. Struct., 11(1), 77-91. https://doi.org/10.12989/scs.2011.11.1.077
- Ibrahim, Y.E., Marshall, J. and Charney, F.A. (2007), "A visco-plastic device for seismic protection of structures", J. Constr. Steel. Res., 63, 1515-1528. https://doi.org/10.1016/j.jcsr.2007.01.007
- Ibrahim, Y.E. (2005), "A New Visco-Plastic Device for Seismic Protection of Structures", PhD issertation, Virginia Tech.
- Kafi, M.A. (2008), "Analytical and experimental study of effect of steel ring on ductility of concentric braces", the degree of Doctorate of Philosophy, Civil Engineering Department, Iran University of Science and Technology, Tehran, Iran, September.
- Kafi, M.A. (2008), "Experimental and Analytical Investigation on the Steel Ring Ductility", Sharif Journal of Science and Technology, 52, 41-48.
- Kim, T., Whittaker, A.S., Gilani, A.S.J., Bertero, V.V. and Takhirov, S.M. (2002), "Cover-plate and flangeplate steel moment-resisting connections", J. Struct. Eng.-ASCE, 128(4), 484-482.
- Lee, K. and Bruneau, M. (2005), "Energy dissipation demand of compression members in concentrically braced frames", Steel. Compos. Struct., 5(5), 345-358. https://doi.org/10.12989/scs.2005.5.5.345
- Maheri, M.R. and Ghaffarzadeh, H. (2008), "Connection over strength in steel-braced RC frames", J. Eng. Struct., 30(7), 1938-1948. https://doi.org/10.1016/j.engstruct.2007.12.016
- Majidzamani, S., Vafaei, A., Aghakouchak, A.A. and Desai, C. (2011), "Experimental investigation of steel frames braced with symmetrical pairs of y-shaped concentric bracings", J. Steel Structure, 11(2), 117-131. https://doi.org/10.1007/s13296-011-2002-6
- Majidzamani, S. and Rasouli, M. (2006), "Experimental investigation of behavior of y-shaped concentric steel bracing", Asian Journal of Civil Engineering (Building and Housing), 7(1), 81-94.
- Marshall, J.D. and Charney, F.A. (2010), "A hybrid passive control device for steel structures, I: Development and analysis", J. Constr. Steel. Res., 66(10), 1278-1286. https://doi.org/10.1016/j.jcsr.2010.04.005
- Marshall, J.D. and Charney, F.A. (2010), "A hybrid passive control device for steel structures, II: Physical testing", J. Constr. Steel. Res., 66(10), 1287-1294. https://doi.org/10.1016/j.jcsr.2010.04.002
- Moghaddam, H. and Estekanchi, H. (1999), "Seismic behavior of off-centre bracing systems", J. Constr. Steel. Res., 51(2), 177-196. https://doi.org/10.1016/S0143-974X(99)00007-3
- Moghaddam, H. and Estekanchi, H. (1995), "On the characteristics of off-centre bracing system", J. Constr. Steel. Res., 35(3), 361-376. https://doi.org/10.1016/0143-974X(94)00050-R
- Mualla, I.H. and Belev, B. (2002), "Performance of steel frame with anew friction damper device on the earthquake excitation", J. Eng. Struct., 24(3), 365-371. https://doi.org/10.1016/S0141-0296(01)00102-X
- Murthy, A.N.C.K. (2005), "Application of visco-hyperelastic devices in structural response control", the degree of Master of Science, Civil Engineering Department, Blacksburg Polytechnic Institute, Virginia Polytechnic Institute and State University, 11 May.
- Singh, M.P. and Moreschi, L.M. (2002), "Optimal placement of dampers for passive response control", Earthq. Eng. Struct. Dynam., 31(4), 955-976. https://doi.org/10.1002/eqe.132
- Tabatabaei Zavare, M.R.S. (2007), "Investigation on the performance and behavior of a proposed passive damper system in concentric and chevron bracing frames", the degree of Master of Science, Civil Engineering Department, University of Tehran, Tehran, Iran, September.
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