과제정보
This work is partially supported by Natural Science Foundation of China under Grant nos. 51878017, and National Key R&D Program of China under Grant nos. 2017YFC1500604.
참고문헌
- Aguirre, M. and Roberto Sanchez, A. (1992), "Structural seismic damper", J. Struct. Eng., 118(5), 1158-1171. https://doi.org/10.1061/(ASCE)0733-9445(1992)118:5(1158)
- Deng, K., Pan, P., Sun, J., Liu, J. and Xue, Y. (2014), "Shape optimization design of steel shear panel dampers", J. Constr. Steel Res., 99(4), 187-193. https://doi.org/10.1016/j.jcsr.2014.03.001.
- Di Lauro, F., Montuori, R., Nastri, E. and Piluso, V. (2019), "Partial safety factors and overstrength coefficient evaluation for the design of connections equipped with friction dampers", Eng. Struct., 178, 645-655. https://doi.org/10.1016/j.engstruct.2018.10.052.
- Huang, X. and Xie, Y.M. (2008), "A new look at ESO and BESO optimization methods", Struct. Multidisc. Optim., 35(1), 89-92. https://doi.org/10.1007/s00158-007-0140-4.
- Jia, J., Song, N., Xu, Z., Han, Q. and Zhang, Q. (2015), "Hysteretic behavior simulation of novel rhombic mild steel dampers", J. Vibroeng., 17(6), 3122-3132.
- Jung, W.Y. and Ju, B.S. (2015), "Effect of MDOF structes'optimal dampers on seismic fragility of piping", Earthq. Struct., 9(3), 563-576. https://doi.org/10.12989/eas.2015.9.3.563.
- Kelly, J.M., Skinner, R.I. and Heine, A.J. (1972), "Mechanisms of energy absorption in special devices for use in earthquake-resistant structures", Bull. N.Z. Soc. Earthq. Eng., 5(3), 63-88. https://doi.org/10.5459/bnzsee.5.3.63-88.
- Lee, J. and Kim, J. (2015), "Seismic performance evaluation of moment frames with slit-friction hybrid dampers", Earthq. Struct., 9(6), 1133-1152. http://doi.org/10.12989/eas.2015.9.6.1291.
- Li, C. and Cao, L. (2019), "High performance active tuned mass damper inerter for structures under the ground accelration", Earthq. Struct., 16(2), 149-163. https://doi.org/10.12989/eas.2019.16.2.149.
- Liu, Q.M. (2007), "A design method of rib distribution for thin plate structure based on the full stress rule", Mach. Des. Manuf., 1(1), 23-24.
- Liu, Y. and Shimoda, M. (2013), "Shape optimization of shear panel damper for improving the deformation ability under cyclic loading", Struct. Multidisc. Optim., 48(2), 427-435. https://doi.org/10.1007/s00158-013-0909-6.
- Pan, P., Ohsaki, M. and Tagawa, H. (2015), "Shape optimization of H-beam flange for maximum plastic energy dissipation", J. Struct. Eng., 133(8), 1176-1179. https://doi.org/10.1061/(ASCE)0733-9445(2007)133:8(1176).
- Peizhen, L.I. and Hao, L.I. (2016), "Analysis of SSI effect on damping effect of mild steel damper", 2016 International Conference on Architectural Engineering and Civil Engineering, December.
- Samani, H.R., Mirtaheri, M. and Zandi, A.P. (2017). "The study of frictional damper with various control algorithms", Earthq. Struct., 12(5), 479-487. https://doi.org/10.12989/eas.2017.12.5.479.
- Shu, G. and Li, Z. (2017), "Parametric identification of the Bouc-Wen model by a modified genetic algorithm: Application to evaluation of metallic dampers", Earthq. Struct., 13(4), 394-407. https://doi.org/10.12989/eas.2017.13.4.397.
- Teruna, D.R., Majid, T.A. and Budiono, B. (2015), "Experimental study of hysteretic steel damper for energy dissipation capacity", Adv. Civil Eng., 7(3), 254-258. https://doi.org/10.1155/2015/631726.
- Tirca, L.D., Foti, D. and Diaferio, M.(2003), "Response of middle rise steel frames with and without passive dampers to near field ground motions", Eng. Struct., 25(2), 169-179. https://doi.org/10.1016/S0141-0296(02)00132-3.
- Tsaik, K.C., Chen, H.W., Hong, C.P. and Su, Y.F. (1993), "Design of steel triangular plate energy absorbers for seismic resistant construction", Earthq. Spectra, 9(3), 505-528. https://doi.org/10.1193/1.1585727.
- Wei, B., Wang, P., He, X., Zhang, Z. and Chen, L. (2017), "Effects of friction variability on a rolling-damper-spring isolation system", Earthq. Struct., 13(6), 551-559. https://doi.org/10.12989/eas.2017.13.6.551.
- Whittaker, A.S., Bertero, V.V. and Thompson, C.I. (1991), "Sesismic testing of steel plate energy dissipation devices", Earthq. Spectra, 7(4), 563-604. https://doi.org/10.1193/1.1585644.
- Xie, C. (2020), "Mechanical property study of metal shear damper with welding hole", Build. Struct., 50(S2), 322-329.
- Xing, S.T. (2003), "Study on mechanical behavior and effectiveness of a new type of mild steel damper", Earthq. Eng. Eng. Vib., 23(6), 179-186.
- Xue, J., Wu, C., Zhang, X. and Qi, Z. (2021), "Experimental and numerical study of mortise-tenon joints reinforced with innovative friction damper", Eng. Struct., 230, 111701. https://doi.org/10.1016/j.engstruct.2020.111701.
- Yanhong, X., Aiqun, L. and Zhen, H. (2011), "Experimental study of mild steel dampers with parabolic shape", J. Build. Struct., 32(12), 202-209.
- Zhang, W., Zhang, M. and Li, D. (2008), "An experimental research on performance and application of a new type of mild steel damper added damping and stiffness (ADAS)", J. Harbin Inst. Technol., 40(12), 1888-1894.
- Zhou, Y. and Liu, J. (1998), "Development and study of new energy dissipaters (dampers)", Earthq. Eng. Eng. Vib., 18(1), 71-79.