Contents & References of Presenting a new model of restraining straps resistant to buckling and investigating its seismic behavior
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] 6[ Adeli, Hojtale (1376). Tall building structures. Fifth edition. Tehran: Dehkhoda Bookstore Publications. [p>
] 7 [Shakri, Kazem, (1379). "Investigation of the vibration behavior of knee braces", master's thesis on earthquakes, Tehran: Iran University of Science and Technology.
] 8 [Natigalehi, Fariborz and Akbarzadegan, Hossein (1375). Behavior and design of vibrations of off-axis frames. First edition. Tehran: International Institute of Seismology and Earthquake Engineering.
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[12]. Horie, T. and Yabe, Y. (1993). "Elasto-Plastic Behavior of Steel Brace with Restraint System for Post Buckling." Annual technical papers of steel structures, vol. 1, pp. 187-194.
[13]. Suzuki, N. Kono, R. Higashibata, Y. Sasaki, T. and Segawa, T. (1994). "Experimental Study on the H-Section Steel Brace Encased in RC or Steel Tube." Summaries of Technical Papers of Annual Meeting, pp. 1621-1622.
[14]. Tada, M. and Kuwahara, S. (1993). "Horizontally Loading Test of the Steel Frame Braced with Double-Tube Members." Annual technical papers of steel structures, vol. 1, pp. 203–208.
[15]. Shimizu, T. Fujisawa, K. Uemura, K. and Inoue, K. (1997). "Design Method to Prevent Buckling of Low Yield Strength Steel Tube Brace and Fracturing of Joints: Part 1 and 2." Summaries of Technical Papers of Annual Meeting, pp. 781-784.
[16]. Sridhara, B.N. (1990). "Sleeved Column-as a Basic Compression Member." Proceedings of the 4th International Conference on Steel Structures & Space Frames, pp. 181–188.
[17]. Iwata, M. Katoh, T. and Wada, A. (2001). "Performance Evaluation of Buckling-Restrained Braces on Damage Controlled Structures: Part 1 and 2." Summaries of Technical Papers of Annual Meeting, pp. 659-662.
[18]. Sabelli, R. Mahin, S. and Chang, C. (2003). "Seismic Demand on Steel Braced Frame Building with Buckling-Restrained Braces." Journal of Engineering Structures, Vol. 25, pp. 655-666.
[19]. Yamaguchi, M. Yamada, Y. Matsumoto, Y. and Takeuchi, T. (2002). "Full-Scale Shaking Table Test of Damage Tolerant Structure With a Buckling Resistant Brace." Journal of Structural and Construction Engineering, vol. 558, pp. 189-196.
[20]. Ochoa Escudero, E. and Nakashima, M. (2003). "Comparative Parametric Study on Normal and Buckling-Restrained Steel Braces". Universita degli studi di Pavia.
[21].Dasse Design INC. (2009). Cost Advantages of Buckling Restrained Braced Frame Building, San Francisco.
[22]. AISI (1996). "Specification for the Design of Cold-Formed"Specification for the Design of Cold-Formed Steel Structural Members." DC: American Iron and Steel Institute, Washington.
[23]. Yu, W.W. (2000). Cold-Formed Steel Structures. John Wiley & Sons, Inc.
[24]. FEMA 450 (2004). NEHRP Recommended Provisions for Seismic Regulations for New Buildings and Other Structures Part 1: Provisions, Prepared by the Building Seismic Safety Council for the Federal Emergency Management Agency, Washington.
[25]. Sridhara, B.N. (1990). "Design of Optimum Weight Compression Members." International Conference on Steel and Aluminum Structures, pp. 195–206, Singapore.
[26]. Schafer, B.W., ?d?ny, S. (2006). "Buckling analysis of cold-formed steel members using CUFSM: conventional and constrained finite strip methods." 18th International Specialty Conference on Cold-Formed Steel Structures, Orlando, FL.
[27]. FEMA 369 (2004). Primere for Design Professionals: Communicating with Owners and Managers of New Buildings on Earthquake Risk, Washington.
[28]. SEAOC, 1999, Recommended Lateral Force Requirements and Commentary, prepared by the Structural Engineers Association of California, published by the International Conference of Building Officials, Whittier, California.