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Journal of the Korea Concrete Institute

J Korea Inst. Struct. Maint. Insp.
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  • Korea Citation Index (KCI)

References

1 
ASTM D412-16. (2021), Standard Test Methods for Vulcanized Rubber and Thermoplastic Elastomers-Tension, ASTM International, USA.URL
2 
Choi, E. S., Choi, G. C., Kim, H. T., and Youn, H. J. (2015), Smart Damper Using the Combination of Magnetic Friction and Pre-Compressed Rubber Springs, Journal of Sound and Vibration, 351, 68-89.DOI
3 
Friis, T., Katsanos, E. I., Saberi, M., and Koss, H. H. H. (2021), Two-Level Friction Damping and its Application for Passive Multi-Functional Vibration Control of High-Rise Buildings, Engineering Structures, 239(15), 1-27.DOI
4 
Hidayat, B. A., Hu, H. T., Hsiao, F. P., Han, A. L., Pita, P., and Haryanto, Y. (2020), Seismic Performance of Non-Ductile Detailing RC Frames: An Experimental Investigation, Earthquakes and Structures, 19(6), 485-498.URL
5 
ICC-ES (2010), AC156 Acceptance Criteria for the Seismic Qualification of Nonstructural Components, International Code Council Evaluation Service, Brea, California, USA.URL
6 
Jun, S. C., Lee, C. H., and Bae, C. J. (2021) Analysis of Dynamic Behavior of Seismic and Non-Seismic Suspended Ceiling Systems Based on Shake-Table Testing, Journal of Korean Society of Steel Construction, 33(2), 63-74.DOI
7 
KDS 41 17 00. (2019), Seismic Building Design Code and Commentary (Korean Building Code), Korean Design Standard, Kyonggi-do, Korea.URL
8 
Kim, D. K. (2017), Structural Dynamics (4th Edition), Goomibook, Seoul, Republic of Korea.URL
9 
Kim, H. Y., Choi, Y. S., Sim, J. I., and Cho, C. G. (2018), Full-Scale Shaking Table Test and Analysis of Seismic Ceiling Systems, Korean Association for Spatial Structures, 18(1), 135-143.DOI
10 
Kwon, O. S. (2009), Eqmaker-Artificial Earthquake Maker, Korea Martial Institute, Gyeonggi-do, Republic of Korea.URL
11 
Lee, C. M., and Goverdovskiy, V. N. (2022), Damping Control in a Spring and Suspension with Sign-Changing Stiffness, Applied Acoustics, 373(7), 1-10.DOI
12 
Lee, J. S., Jung, D. I., Lee, D. Y., and Cho, B. H. (2021), Performance Evaluation of Rigid Braced Indirect Suspended Ceiling with Steel Panels. Applied Sciences, 11, 1-20.DOI
13 
Oh, J., and Jung, H. Y. (2010), An Experimental Study for the Shear Property Dependency of High Damping Rubber Bearings, Journal of Civil and Environmental Engineering Research, KSCE, 30(2), 121-129.URL
14 
Lijesh, K. P., and Hirani, H. (2014), Stiffness and Damping Coefficients for Rubber Mounted Hybrid Bearing, Lubrication Science, 26, 301-314.DOI
15 
Pan, X., Zheng, Z., and Wang, Z. (2016), Amplification Factors for Design of Nonstructural Components Considering the Near-Fault Pulse-Like Ground Motions, Bulletin of Earthquake Engineering, 15(4), 1519-1541.DOI
16 
Qi, L., Kurata, M., Ikeda, Y., Kunitomo, K., and Takaoka, M. (2021), Seismic Evaluation of Two-Elevation Ceiling System by Shake Table Tests, Earthquake Engineering Structural Dynamics, 50, 1147-1166.DOI
17 
Sun, C. H., and Kim, I. K. (2021), Shear Characteristic Changes in Blended Rubber of Elastomeric Bearings due to Aging, Journal of the Korean Society of Hazard Mitigation, 21(6), 247-255.URL
18 
Wu, Z. Y., Meng, N., Yuan, X., and Xiang, J. R. (2020), Anti- Seismic Suspended Ceiling with Stone Curtain Wall and Mounting Method Thereof. China Patent No. CN112324040A.URL
19 
Yamasato, K., Morohoshi, M., and Harayama, H. (2019), Aseismatic Ceiling Structure. Japan Patent No. JP2020165110A.URL
20 
Yang, K. H., Mun, J. H., and Im, C. R. (2022), Axial and Shear Behavior of Prestressed Damping Isolation Units Using a Spring and Rubbers, Buildings, 12(9), 1-19.DOI
21 
Yu, F., Lu, A., Lu, J., Wang, Z., Zhang, Q., Geng, G., and Li, Z. (2019), Effect of Phenyl Content, Sample Thickness and Compression on Damping Performances of Silicone Rubber: A Study by Dynamic Mechanical Analysis and Impact Damping Test, Polymer Testing, 80, 1-8.DOI