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Evaluation of the Flexural Behavior of Composite Beam with Tunnel Steel Rib Support Using Circular Concrete Filled Steel Tube

콘크리트 충전 원형 강관을 이용한 터널강지보 합성부재의 휨거동 평가

  • Ma, Sang Joon (Korea Institute of Civil Engineering and Building Technology) ;
  • Choi, Jun Hyeok (Dept. of Civil Engineering, Bucheon University)
  • Received : 2017.06.23
  • Accepted : 2017.08.28
  • Published : 2017.10.27

Abstract

The purpose of this study is to evaluate the strength and behavior of the composite member in case of concrete filled steel tube embedded in concrete for application concrete filled steel tube to steel rib support in tunnel. A total of six beam specimens were prepared for steel tube in-filled with plain concrete and aerated concrete, and static bending tests were performed. As a result, the member of concrete steel tube embedded with plain concrete showed higher strength than those with aerated concrete. However, it was found that the flexural strength of member with reinforcing bar around the steel tube is more influenced by the amount of the reinforcing bar than the type of the filled concrete.

본 연구는 콘크리트 충전 강관을 터널의 강지보재로 활용하기 위한 것으로서, 콘크리트 충전강관 부재가 콘크리트 내에 매립되어 합성부재로 거동하는 경우에 대한 부재의 강도와 거동특성을 실험적으로 평가하였다. 이를 위하여 두 종류의 강관과 강관 내부를 일반콘크리트와 기포콘크리트로 충전한 경우, 콘크리트 슬래브에 철근으로 보강한 경우를 대상으로 총 6개의 보 시험체를 제작하였으며 정적 휨시험을 수행하였다. 그 결과, 일반콘크리트로 충전한 강관이 기포콘크리트로 충전한 것보다 더 높은 강도를 나타내었다. 그러나 강관 주변을 철근으로 보강한 경우 휨강도는 충전콘크리트의 종류보다 철근량의 영향이 더 큰 것으로 나타났다.

Keywords

References

  1. Sherman, D.R. (1976) Test of Circular Steel Tubes in Bending, ASCE Journal of the Structural Division, Vol.102, No.11, pp.2181-2195.
  2. Rangan, B.V. and Joyce, M. (1992) Strength of Eccentrically Loaded Slender Steel Tubular Columns Filled with High-strength Concrete, ACI Struct. J. Vol.89, No.6, pp. 676-681.
  3. Goode, C.D. and Lam, D. (2008) Concrete-filled tube columns- Tests compared with Eurocode 4, Proceedings of Engineering Foundation Conference on Composite Construction.
  4. Roeder, C.W., Lehman, D.E., and Bishop, E. (2010) Strength and Stiffness of Circular Concrete Filled Tubes, Journal of Structural Engineering, ASCE, Vol.136, No.12, pp.1545-1553. https://doi.org/10.1061/(ASCE)ST.1943-541X.0000263
  5. 정철헌, 진병무, 김인규, 김성운(2004) 중공 강관 및 콘크리트 충전강관의 휨 실험, 대한토목학회논문집, 대한토목학회, 제24권, 제4A호, pp.807-816. Chung, C.H., Jin, B.M., Kim, I.G., and Kim, S.W. (2004) Experiments on Circular Steel Tubes and Concrete Filled Circular Steel Tubes in Bending, Journal of the Korean Society of Civil Engineers, KSCE, Vol.24, No.4A, pp.807-816 (in Korean).
  6. 정철헌, 김종석(2007) 콘크리트 충전 원형 강관의 휨 거동, 대한토목학회논문집, 대한토목학회, 제27권, 제4A호, pp.553-559. Chung, C.H. and Kim, J.S. (2007) Flexural behaviour of Circular Concrete-Filled Steel Tube Sections, Journal of the Korean Society of Civil Engineers, KSCE, Vol.27, No.4A, pp. 553-559(in Korean)
  7. 이호준, 박홍근, 최인락(2015) 콘크리트피복 원형충전강관 기둥의 압축성능, 한국강구조학회논문집, 한국강구조학회, 제27권, 제6호, pp.525-536. Lee, H.J., Park, H.G., and Choi, I.R. (2015) Axial Load Performance of Circular CFT Columns with Concrete Encasement, Journal of the Korean Society of Steel Structures, KSSC, Vol.27, No.6, pp.525-536 (in Korean).
  8. 마향욱, 오현철, 김동욱, Kong D., 심창수(2012) 충전원형 강관을 이용한 모듈러 교각의 휨 거동 평가, 한국강구조학회논문집, 한국강구조학회, 제24권, 제6호, pp.725-734. Ma, H.W., Oh, H.C., Kim, D.W., Kong, D., and Shim, C. S. (2014) Evaluation of Flexural Behavior of a Modular Pier with Circular CFT, Journal of Korean Society of Steel Construction, KSSC, Vol.24, No.6, pp.725-734 (in Korean).
  9. 최영환, 김강수, 최성모, 이상섭 (2007) 고강도 콘크리트를 사용한 각형 CFT 기둥, 한국강구조학회논문집, 한국강구조학회, 제19권, 제6호, pp.575-585. Choi, Y.H., Kim, K.S., Choi, S.M., and Lee, S.S. (2007) P-M Interaction Curve for Square CFTs with High- Strength Concrete, Journal of the Korean Society of Steel Structures, Vol.19, No.6, pp.575-585 (in Korean).
  10. ACI (2011) Building code requirements for structural concrete and commentary, Farmington Hills, Mich.
  11. AISC (2010) Specifications for structural steel buildings, Chicago, IL.
  12. Eurocode 4, European Committee for Standard, EN 1994-1-1(2004). Design of composite steel and concrete structures, European Union.