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Section Design and Flexural Strength of PUS Member Constructed by Continuous CIP System

연속 CIP 공법으로 형성된 PUS 부재의 단면 설계 및 휨 강도 산정

  • 김승훈 (한밭대학교 건축공학과) ;
  • 노삼영 (한양대학교 건축학부) ;
  • 홍성진 (한양대학교 대학원 건축환경공학과) ;
  • 김갑수 (한양대학교 대학원 건축환경공학과) ;
  • 한범석 (동부건설 기술연구소)
  • Received : 2011.10.06
  • Published : 2012.06.25

Abstract

Recently the Permanent Uni-wall System (PUS) has been developed which improved the disadvantage of the CIP and could be used as permanent retaining wall. The sections of PUS members are molded with circle casing form and deformed casing form. In the generality of cases, deformed casing section consists of reinforced concrete because of the concrete cover by code and the method of concreting with tremie pipe. But, circle casing section can be designed with various structural types which are steel, reinforced concrete, and steel reinforced concrete(SRC). In this study, design methods for PUS section were proposed and two types of PUS section were tested to investigate the flexural strength and behaviors. Variable was the details of circle casing section which were the deformed bars and the shear reinforcements surrounded H beam. All specimens failed due to concrete crushing. Specimen with SRC section in circle casing showed more ductile behavior after ultimate flexural strength than the other specimen. Nominal flexural strengths by section analysis and design code based on a strain-compatibility approach were compared with test results. These comparisons showed that PUS section possessed the flexural strength by design code.

Keywords

Acknowledgement

Supported by : 동부건설, 현대산업개발, 홍지기술산업

References

  1. 황승현, "실무자를 위한 흙막이 가설구조의 설계", 씨아이알, 2010
  2. 오정환, 조철현, "흙막이 공학", 구미서관, 2004
  3. 이송, 채점식, 이일, 우종태, "흙막이 구조물의 설계와 시공", 예문사, 2003
  4. 삼성중공업(주), 홍원기, "가설 흙막이구조물을 이용한 합성 지하옹벽 설계 방법 및 건축물 지하옹벽 공사방법", 대한민국 등록특허 10-0313721, 1999
  5. 삼성중공업(주), 초대형구조시스템연구센터, "CBS 공법의 개발 및 성능평가에 관한 연구", 2001
  6. 삼성중공업(주), 홍원기, 윤광섭, "영구 구조물의 일부를 흙막이용 버팀대로 사용하는 지하 구조물 구축방법", 대한민국등록특허 10-0346622, 2002
  7. 한국건설공법(주), "흙막이벽과 슬래브간의 연결부를 위한 거푸집 구조체", 대한민국등록실용 20-0381303, 2005
  8. 우종열, "가설 흙막이 구조물을 이용한 지하옹벽 시공방법", 대한민국등록특허 10-0623005, 2006
  9. Mirza SA, Hyttinen V, Hyttinen E, "Physical tests and analyses of composite steel-concrete beam - columns". Journal of Structural Engineering, ASCE, Vol. 122, No. 11, 1996
  10. Chen CC, Yeh SC, "Ultimate strength of concrete encased steel composite columns", Proceedings of the third national conference on structural engineering, pp.2197-2206, 1996
  11. Tsai KC, Lien Y, Chen CC, "Behaviour of axially loaded steel reinforced concrete columns", Journal of the Chinese Institute of Civil and Hydraulic Engineering, Vol.8, No.4, pp.535-545, 1996
  12. El-Tawil S, Deierlein GG, "trength and ductility of concrete encased composite columns", Journal of Structural Engineering, ASCE, Vol.125, No.9, pp.1009-1019, 1999 https://doi.org/10.1061/(ASCE)0733-9445(1999)125:9(1009)
  13. Roik K, Bergmann R, "Design method for composite columns with unsymmetrical cross-sections", Journal of Constructional Steel Research Vol.33, pp.153-172, 1990
  14. Kato B, "Column curves of steel-concrete composite members", Journal of Constructional Steel Research, Vol.39, No.2, pp.121-135, 1996 https://doi.org/10.1016/S0143-974X(96)00030-2
  15. Liao Shao-ming, Zhou Xue-ling, and Sun Xun, "Experimental Study on the Lateral Loading Behavior of Secant Boring Pile", Proceedings of Selected Sessions of the 2009 International Foundation Congress and Equipment Expo, ASCE, 2009
  16. L. S. Bryson and D. G. Zapata-Medina, "Finite-element analysis of secant pile wall installation", Geotechnical Engineering, Vol. 163, Issue 4, pp.209-219, 2010. 8
  17. 홍지기술산업(주), "지중 차수벽 시공공법 및 이에 사용되는 보조 케이싱", 대한민국등록특허 10-0752397, 2007
  18. 한국콘크리트학회, "콘크리트구조설계기준", 2007
  19. 한국강구조학회, "강구조설계기준", 2009
  20. 대한건축학회, "철골철근콘크리트구조계산기준", 2000
  21. 대한건축학회, "건축구조기준 및 해설", 2009
  22. http://www.imbsen.com, "XTRACT-Cross section analysis of structural components", 2010