Acknowledgement
이 연구는 국토부의 재원으로 국토교통과학기술진흥원(22TBIP-C155839-03) 지원에 의하여 수행되었음.
References
- ASTM A29 (2020), Standard Specification for General Requirements for Steel Bars, Carbon and Alloy, Hot-Wrought, ASTM International, Philadelphia, USA.
- ASTM A36 (2019), Standard Specification for Carbon Structural Steel, ASTM International, Philadelphia, USA.
- Choi, K. S., Lee, H. J., Kim, M. S., You, Y. C. (2018), An Experimental Study on Performance Evaluation of Hysteretic Steel Slit Damper, Journal of the Architectural Institute of Korea Structure & Construction, 34(1), 33-39. (in Korean)
- Filiatrault, A., Tremblay, R., Kar, R. (2000), Performance Evaluation of Friction Spring Seismic Damper, Journal of Structural Engineering, 126(4), 491-499. https://doi.org/10.1061/(ASCE)0733-9445(2000)126:4(491)
- Heur, M. W., Chun, Y. S., Hwang, J. S., Lee K. S. (2015), Seismic Performance of Evaluation of R/C Frame Apartment Strenghthened with Kagome Truss Damper External Connection Method by Pseudo Dynamic Test, Journal of the Korea Institute for Structural Maintenance and Inspection, 19(1), 23-34. (in Korean) https://doi.org/10.11112/JKSMI.2015.19.1.023
- Hwang, S. H., Yang, K. H., Kim, S. H. (2021(a)), Evaluation of Seismic Performance of Masonry Walls Strengthened with Unbonded Steel-Bar Truss Systems, Journal of the Korea Concrete Institute, 33(2), 117-124. (in Korean) https://doi.org/10.4334/JKCI.2021.33.2.117
- Hwang, S. H., Yang, K. H., Kim, S. H. (2021(b)), In-Plane and Out-of-plane Seismic performances of Masonry Walls Strengthened with Steel-Bar Truss Systems, Journal of the Korea Institute for Structural Maintenance and Inspection, 25(1), 16-24. (in Korean) https://doi.org/10.11112/JKSMI.2021.25.1.16
- Kamal, M., Rahman, M. M. (2014), Finite Element-Based Fatigue Behaviour of Springs in Automobile Suspension, International Journal of Automative and Mechanical Engineering, 10, 1910-1919.
- KDS 41 17 00 (2019), Seismic Building Design Code and Commentary, Korea Construction Standards Center, Kyonggi-do, Korea.
- Kim, D. H. (1995), Current Status of Development of Seismic Isolation Technology and Seismic Vibration Technology for Structures in Consideration of Earthquakes, Journal of the Korean Society for Noise and Vibration Engineering, 5(1), 11-20. (in Korean)
- KS B 0802 (2018), Method of Tensile Test for Metallic Materials, Korea Agency for Technology and Standard, Seoul, Korea.
- KS B 2400 (2007), Helical Compression and Extension Springs - Requirements for Design, Korea Agency for Technology and Standard, Seoul, Korea.
- KS B 2402 (2009), Hot Formed Helical Springs, Korea Agency for Technology and Standard, Seoul, Korea.
- Lee, B. K., Kim, S. G., Jung, H. C., Jung, J. S., Lee, G. S. (2016), Steel-Spring Damper for Strengthening R/C Buildings and Considering Building Exterior, Journal of the Korea Concrete Institute, 28(2), 57-58. (in Korean)
- Lee, M. J. (1995), Active Vibration Control for Architectural Structure, Review of Architecture and Building Science, 39(8), 51-56. (in Korean)
- Mun, J.H., Im, C. R., Wang, H.R., Yang, K.H. (2021), Load-Displacement Relationship of Passive Vibration Units Composed with a Spring and Vibration-Proof Rubbers, Journal of the Korea Institute for Structural Maintenance and Inspection, 25(6), 226-234. (in Korean) https://doi.org/10.11112/JKSMI.2021.25.6.226
- Park, B.T., Lee, J. H. (2020), A Study on Hysteresis Characteristics and Analysis Model of Hybrid Damping Device -Hybrid Damping Device Consisting of Steel Slit and Rotational Friction Damping Device-, Journal of the Architectural Institute of Korea, 40(2), 512-515. (in Korean)
- Park, J. H., Lee, K. H. (2011), Experimental Study of Steel Dampers for Seismic Retrofit, Journal of the Architectural Institute of Korea, 31(2), 233-234. (in Korean)
- Suzuki, T., Kozawa, Shuzi., Yoshioka. T., Kubota, M., Miyamoto, H., Aono, M., Low-alloyed High-strength Suspension Spring Steel, Nippon Steel Technical Report, 122, 123-128.
- Wang, W., Fang, C., Zhang, A., Liu, X. (2019), Manufacturing and Performance of a Novel Self-Centring with Shape Memory Alloy Ring Springs for Seismic resilience, The Journal of the International Association for Structural Control and Monitoring, 26(5), e2337.
- Zhao, Z., Zhang, R., Jiang, Y., Domenico, D, D., Pan, C. (2020), Displacement-Dependent Damping Inerter System for Seismic Response Control, Applied Science, 10(1), 257.