[1] Takahashi Y., Takeda T., Takemoto Y. & Takagi M. 1973 Experimental Study on Thin Steel Shear Walls and Particular steel bracing under Alternative Horizontal Load. Preliminary Report, IABSE, symposium on Resistance and Ultimate Deformability of Structures Acted on by Well-defined Repeated Loads, Lisbon, Portugal, 260 (10): 185-191.
[2] Mimura H. & Akiyama H. 1977 Load-deflection relationship of earthquake resistant steel shear walls with a developed diagonal tension field. Transactions of the Architectural Institute of Japan, 260, 109-114.
[3] Thorburn L. J., Kulak G. L. & Montgomery C. J. 1983 Analysis of steel plate shear walls. Structural Engineering Report No. 107. Department of Civil Engineering university of Alberta, Edmonton, Alberta, Canada.
[4] Tromposch E. W. & Kulak G. L. 1987 Cyclic and static behavior of thin panel steel plate shear walls. Structural Engineering Report No. 145. Department of Civil Engineering university of Alberta, Edmonton, Alberta, Canada.
[5] Kheyroddin A., Gholhaki M. & Pachideh G. 2018 Seismic evaluation of reinforced concrete moment frames retrofitted with steel braces using IDA and Pushover methods in the near-fault field. Journal of Rehabilitation in Civil Engineering, 1-15.
[6] Najari Varzaneh M., Hosseini M. & Akbarpoor A. 2014 The study of EADAS elliptical steel damper function in seismic resisting of steel frames. Journal of Rehabilitation in Civil Engineering, 2(2), 40-45.
[7] Behzadfar B., Maleki A. & Lotfollahi Yaghin M. A. 2020 Improved Seismic Performance of Chevron Brace Frames Using Multi-Pipe Yield Dampers. Journal of Rehabilitation in Civil Engineering, 8(4), 137-155.
[8] Symans M. D., Charney F. A., Whittaker A. S., Constantinou M. C., Kircher C. A., Johnson M. W. & McNamara R. J. 2008 Energy dissipation systems for seismic applications: current practice and recent developments. Journal of structural engineering, 134(1), 3-21.
[9] Mohammadi M., Kafi M. A., Kheyroddin A. & Ronagh H. R. 2019 Experimental and numerical investigation of an innovative buckling-restrained fuse under cyclic loading. Structures, 22, 186-99.
[10] Whittaker A. S., Bertero V. V., Thompson C. L. & Alonso L. J. 1991 Seismic testing of steel plate energy dissipation devices. Earthquake Spectra, 7(4), 563-604.
[11] Tsai K. C., Chen H. W., Hong C. P. & Su Y. F. 1993 Design of steel triangular plate energy absorbers for seismic-resistant construction. Earthquake spectra, 9(3), 505-528.
[12] Tehranizadeh M. 2000 Behavior of Friction Damping on Semi-Rigid "Khorjinee" Steel Framing Connection. In 12th World Conference on Earthquake Engineering, New Zealand.
[13] Zhou C. & Han J. 2012 Study on the seismic performance of X-added damping and stiffness energy dissipation device. In 15th World Conference on Earthquake Engineering, Lisbon, Portugal (pp. 24-28).
[14] Bergman D. M. & Goel S. C. 1987 Evaluation of cyclic testing of steel-plate devices for added damping and stiffness. Ann Arbor: Department of Civil Engineering, University of Michigan; 1987(UMCE 87-10).
[15] Whittaker A.S., Bertero V.V., G J.L.A. & Thompson C. 1989 Earthquake simulator testing of steel plate added damping and stiffness elements. Earthquake Engineering Research Center, University of California, Berkeley; 1989(UCB/EERC-89/02).
[16] Su Y. F. & Hanson RW. 1990 Seismic response of building structures with mechanical damping devices. Department of Civil Engineering, University of Michigan; 1990(Research report .UMCE 90-2).
[17] Xia C. & Hanson R. D. 1992 Influence of ADAS element parameters on building seismic response. Journal of Structural Engineering, 118(7), 1903-1918.
[18] Deng K., Pan P., Sun J., Liu J. & Xue Y. 2014 Shape optimization design of steel shear panel dampers. Journal of Constructional Steel Research, 99, 187-193.
[19] LI H., Li G. & WANG S. 2014 Study and Application of Metallic Yielding Energy Dissipation Devices in Buildings. In Tenth US National Conference on Earthquake Engineering. Anais de conferência.
[20] Marshall J. D. & Charney F. A. 2012 Seismic response of steel frame structures with hybrid passive control systems. Earthquake engineering & structural dynamics, 41(4), 715-733.
[21] TahamouliRoudsari M., Eslamimanesh M. B., Entezari A. R., Noori O. & Torkaman M. 2018 Experimental assessment of retrofitting RC moment resisting frames with ADAS and TADAS yielding dampers. In Structures (Vol. 14, pp. 75-87). Elsevier.
[22] Houshmand-Sarvestani A., Totonchi A., Shahmohammadi M. A. & Salehipour H. 2021 Numerical assessment of the effects of ADAS yielding metallic dampers on the structural behavior of steel shear walls (SSWs). Mechanics Based Design of Structures and Machines, 1-19.
[23] Wang M., Shi Y., Xu J., Yang W. & Li Y. 2015 Experimental and numerical study of unstiffened steel plate shear wall structures. Journal of Constructional Steel Research, 112, 373-386.
[24] Hibbitt H., Karlsson B. & Sorensen E. 2018 ABAQUS user’s manual. Providence, RI: Dassaulat Systems Simulia Crop, (2018).
[25] The People's Republic of China state administration of quality supervision inspection and quarantine. GB/T 228-2002 Tensile Test Method for Metal Materials at Room Temperature. Beijing, China: China Standard Press; 2002.
[26] Krawinkler H. 1992 ATC-24: Guidelines for Cyclic Seismic Testing of Components of Steel Structures. Redwood City, Report prepared for the Applied Technology Council.
[27] Boostani M., Rezaifar O. & Gholhaki M. 2019 Seismic performance investigation of new lateral bracing system called “OGrid-H”. SN Applied Sciences, 1(4), 1-24.
[28] Shojaeifar H., Maleki A. & Lotfollahi-Yaghin, M. A. 2020 Performance evaluation of curved-TADAS damper on seismic response of moment resisting steel frame. International Journal of Engineering, 33(1), 55-67.
[29] Priestley M. N., Seible F., & Calvi G. M. 1996 Seismic design and retrofit of bridges. John Wiley & Sons.
[30] Hameed A., Qazi A. U. & Rasool A. M. 2014 Seismic performance of low to medium rise reinforced concrete buildings using Passive energy dissipation devices. Pakistan Journal of Engineering and Applied Sciences.