DOI QR코드

DOI QR Code

진동절연재로 보강된 기둥부재의 진동저감효과 및 구조적 거동분석

Vibration Reduction Effect and Structural Behavior Analysis for Column Member Reinforced with Vibration Non-transmissible Material

  • 김진호 (한국철도기술연구원 광역도시교통연구본부) ;
  • 이나현 (한국철도기술연구원 광역도시교통연구본부) ;
  • 허진호 ((주)모어엔지니어링건축사사무소 구조기술연구소) ;
  • 김희규 ((주)모어엔지니어링건축사사무소 구조기술연구소)
  • 투고 : 2016.03.21
  • 심사 : 2016.04.11
  • 발행 : 2016.07.01

초록

궤도가 역사의 상부에 위치하여 열차운행으로 인하여 발생한 진동이 직접 전달되는 선하역사에서 구조물 진동과 이로 인한 구조물기인 소음이 기준치보다 높은 것으로 나타남에 따라, 기존 선하역사에 대하여 열차 운행의 중단 없이 진동저감이 가능한 경제적, 효율적 방안이 요구된다. 이에 본 연구에서는 진동전달 경로상의 기둥에 워터젯 공법으로 기둥단면에서 피복재 부분을 파쇄한 후 진동전달 절연기능을 가지는 에폭시 소재의 방진재를 보강하여 진동을 저감시키기 위한 구조진동절연시스템을 개발하였다. 방진재의 보강체적을 변수로 한 진동절연 시스템을 실제역사 기둥의 1/4축소모형에 적용하고, 충격가진 시험을 통한 진동저감 성능과 횡하중 반복가력시험을 통한 구조적 성능을 검증하고자 하였다. 충격가진 실험결과로부터 구조진동절연시스템을 적용할 경우 고유 진동주기가 하향되어 진동응답 특성이 변화되고 감쇠비는 약 15~30%까지 증가를 나타내어 진동저감 성능이 있음을 알 수 있었다. 또한 반복하중 가력에 의한 구조성능 실험에서 하중-변위 및 강성변화에 대한 고찰과 연성도 및 에너지 소산의 증가를 보인 결과로 부터 구조부재로의 기능을 유지함을 확인 할 수 있었다.

For elevated railway station on which track is connected with superstructure of station, structural vibration level and structure-borne-noise level has exceeded the reference level due to structural characteristics which transmits vibration directly. Therefore, existing elevated railway station is in need of economical and effective vibration reduction method which enable train service without interruption. In this study, structural vibration non-transmissible system which is applied to vibroisolating material for column member is developed to reduce vibration. That system is cut covering material of the column section using water-jet method and is installed with vibroisolating material on cut section. To verify vibration reduction effect and structural performance for structural vibration non-transmissible system, impact hammer test and cyclic lateral load test are performed for 1/4 scale test specimens. It is observed that natural period which means vibration response characteristics is shifted, and damping ratio is increased about 15~30% which means that system is effective to reduce structural vibration through vibration test. Also load-displacement relation and stiffness change rate of the columns are examined, and it is shown that ductility and energy dissipation capacity is increased. From test results, it is found that vibration non-transmissible system which is applied to column member enable to maintains structural function.

키워드

참고문헌

  1. ACI T1.1R-01 (2002), Commentary on Acceptance Criteria for Moment Frames based on Structural Testing, ACI Manual of Concrete Practice, American Concrete Institute, 1-7.
  2. Choi, H. K., Yoo, C. H., Choi, Y. C., and Choi, C. S. (2010), Structural Capacity Evaluation of Hybrid Precast Concrete Beam-column Connections Subjected to Cyclic Loading, Journal of the Korea Concrete Institute, 22(3), 325-333(In Korean). https://doi.org/10.4334/JKCI.2010.22.3.325
  3. Choi, S., and Kwon, S. (2014), Vibration Analysis of an Elevated Railroad Station Considering Station-Bridge Connection Characteristics, Journal of Korea Society of Disaster Information, 10(2), 274-281(In Korean). https://doi.org/10.15683/kosd.2014.10.2.274
  4. Choi, S. H., Kim, J. H., Yoo, Y., and Kwon, S. G. (2015b), Analysis of Vibration Characteristics of Apporach Bridges for an Elevated Railroad Station, Journal of the Korea Academia-Industrial Cooperation Society, 16(4), 2911-2916(In Korean). https://doi.org/10.5762/KAIS.2015.16.4.2911
  5. Choi, S. H., Yoo, Y., Kim, J. H., and Kwon, S. G. (2015a), Experimental Analysis of Vibration Transfer Characteristics of an Elevated Railroad Station, Journal of the Korean Society of Disaster Information, 11(1), 89-96(In Korean). https://doi.org/10.15683/kosdi.2015.11.1.89
  6. Kim, J. H., and Han, S. Y. (2008), The Review of Floating Slab Tracks for Vibration Reduction of Railway Stating, Korean Journal of Environmental Engineers, 30(6), 581-586(In Korean).
  7. Kim, J. H., Jang, D. D., and Ji, Y. S. (2015), A Study of Noisse Characteristics Induced by Slab Vibration for the Elevated Railway Station, Journal of the Korea Academia-Industrial Cooperation Society, 16(5), 3557-3566(In Korean). https://doi.org/10.5762/KAIS.2015.16.5.3557
  8. Kim, J. H., Kim, D. H., Kang, Y. S., and Kang, Y. J. (2012), A Study About Noise/Vibration Analysis of Embedded Rail Track, Proceedings of 2012 Journal of the Korean Society for Railway, The Korean Society for Railway, Gyeongju, 1028-1033.
  9. Lee, J. Y. (2014), Improvement of Vibration Mitigation Efficiency for an Elevated Railroad Station Considering Transfer Characteristics, Master's thesis, Korea National University of Transportation, 1-27 (In Korean).
  10. Park, S. G., Chun, C. K., Lee, G. S., and Jang, S. Y. (2013), The Development of a Floating Slab Track to Isolation System, Transactions of the Korean Society for Noise and Vibration Engineering, 23(2), 112-122(In-Korean). https://doi.org/10.5050/KSNVE.2013.23.2.112
  11. Ryu, B. J., Lee, H. G., and Koo, K. W. (2011), Experimental Study on Railway Vibration Isolation of a Large Structure using Isolation Materials, The Transactions of the Korean Institute of Electrical Engineers, 60(6), 1286-1292. https://doi.org/10.5370/KIEE.2011.60.6.1286
  12. Yang, N., Guo, T., and Sun G. (2013), Train-Induced Vibration on Elevated Railway Station, Journal of Central South University, 20, 3745-3753. https://doi.org/10.1007/s11771-013-1903-2