JKSMI
Journal of the Korea Institute for
Structural Maintenance and Inspection
KSMI
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ISSN : 2234-6937 (Print)
ISSN : 2287-6979 (Online)
http://journal.auric.kr/jksmi/
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Journal of the Korea Concrete Institute
J Korea Inst. Struct. Maint. Insp.
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Korea Citation Index (KCI)
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2026-08
(Vol.30 No.4)
10.11112/jksmi.2026.30.4.176
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References
1
Kim, J., Park, H-Y. (2026), Assessment of Seismic Response in Steel Frames Utilizing H-Shaped Shear Panel Dampers, Journal of Earthquake Engineering, Taylor & Francis published online 29 June 2026
2
Constantinou, M. C., Soong, T. T., Dargush, G. F. (1998), Passive Energy Dissipation Systems for Structural Design and Retrofit, MCEER-98-MN01, Buffalo, NY: Multidisciplinary Center for Earthquake Engineering Research, University at Buffalo
3
Park, H.-Y., Kim, J., Kuwahara, S. (2021), Cyclic Behavior of Shear-Type Hysteretic Dampers with Different Cross-Sectional Shapes, Journal of Constructional Steel Research, Elsevier, 187, 106964
4
Kim, J-W., Kwon, U-J., Choi, K-Y., Kim, Y-J., Park, H-Y. (2023), Experimental Study on Structural Performance of Steel Slit Damper According to Restrained Out-of-Plane Deformation, Journal of the Korea Institute for Structural Maintenance and Inspection, KSMI, 27(1), 86-94. (in Korean)
5
Kang, S-H., Woo, J-H., Lee, H-D., Shin, K-J. (2022), Experimental Study on Hysteretic Behavior of High Strength Bolted Friction Damper Under Cyclic Loading, Journal of Korean Society of Steel Construction, KSSC, 34(4), 197-206. (in Korean)
6
Jung, I. Y., Oh, J., Ryu, D., Ryu, J. (2019), Experimental Evaluation of Velocity-Dependent Behavior of Viscous Dampers Infilled with Silicone Gel, Journal of Korean Society of Steel Construction, KSSC, 31(5), 331-338. (in Korean)
7
Infanti, S., Robinson, J., Smith, R. (2008), Viscous Dampers for High-Rise Buildings, Proceedings of the 14th World Conference on Earthquake Engineering, Beijing, China Paper No. 11-0060
8
Tanaka, Y., Inoue, K., Tada, M. (2006), Simple Response Evaluation Method of Steel Frames with Stud-Type Damper Composed by Visco-Elastic Material and Two Steel Columns, Steel Construction Engineering, Japanese Society of Steel Construction, 13(52), 37-47. (in Japanese)
9
Zhang, R.-H., Soong, T. T. (1992), Seismic Design of Viscoelastic Dampers for Structural Applications, Journal of Structural Engineering, ASCE, 118(5), 1375-1392.
10
Zhang, H., Li, A., Su, Y., Xu, G., Zhang, R. (2026), Innovative Temperature Gradient Viscoelastic Wall Damper for Structural Resilience: Dynamic Mechanical Testing and Modeling under Varying Temperature Conditions, Engineering Structures, Elsevier, 351, 122086
11
Xu, Y., He, Q., Guo, Y.-Q., Huang, X.-H., Dong, Y.-R., Hu, Z.-W., Kim, J. (2023), Experimental and Theoretical Investigation of Viscoelastic Damper by Applying Fractional Derivative Method and Internal Variable Theory, Buildings, MDPI, 13(1), 239
12
Kim, D-H. (2001), Characteristics of Viscoelastic Dampers for Reducing Building Vibrations Induced by Wind Loads and Earthquakes, Rubber Technology, 2(1), 10-16. (in Korean)
13
Jeoung, J. K., Kim, D. H., Kim, Y. C., Park, J. I. (2002), Designs and Tests for the Vibration Control of Full-Scale Steel Frame Structure with Added Viscoelastic Dampers, Proceedings of the 2002 Autumn Conference of the Korean Society for Noise and Vibration Engineering, 687-692., Korean Society for Noise and Vibration Engineering (in Korean)
14
Lim, B., Matsumoto, T. (2006), Characteristics of Super High Damping Visco-Elastic Damper for Earthquake and Wind-Induced Vibration, Proceedings of the 4th International Conference on Earthquake Engineering, Taipei, Taiwan Paper No. 305