A Study on Flexural Strength and Buckling Behavior of Compressional Flange for Box Girder

상자형의 압축플랜지 휨강도 및 좌굴거동에 관한 연구

  • 김홍준 (경상대학교 건설공학부 토목공학과) ;
  • 정희효 (경상대학교 토목공학과)
  • Received : 2011.03.14
  • Accepted : 2011.12.05
  • Published : 2011.12.27

Abstract

Since the elastic buckling problem of the plate has been studied both experimentally and theoretically, the buckling loads with various boundary conditions and loads can be easily determined. Currently, flange and web design specifications are based on the buckling stress and the post-buckling strength and include a safety-factor. Therefore, this study extended suchresearch to the linear buckling theory with ideal conditions and to the ultimate state with post-buckling. The current specifications are based on elastic buckling stress; and therefore, further research on the ultimate behavior of the plate is required. The ultimate strength design concept, which allows finite deflection, is used in this studyto maximize the post-buckling strength in a steel box. An empirical equation, which provides the ultimate strength of the steel box due to the change in the slenderness and optimum rigidity, are suggested based on the experiment results. Moreover, the appropriateness of the current design specifications was analyzed and discussed.

판의 탄성좌굴에 관해서는 이미 많은 이론적 실험적 연구가 이루어져 여러 가지 경계조건 및 하중에 대해서 좌굴응력을 결정하는데 큰 어려움이 없다. 현재 플랜지 및 웨브판에 대한 설계기준도 휨에 대한 좌굴응력을 기준으로 하고 있으며, 후좌굴강도에 안전율을 적용하여 고려하도록 하고 있다. 그러므로 본 연구는 이상적인 조건하에서 전개되는 선형좌굴이론에서 뿐만이아니라, 유한처짐을 허용하는 극한강도 설계개념에 까지 확장되어진다. 또한, 이 개념에 근거한 실험적 연구가 이루어져 단순지지 조건을 만족시킬 수 있는 보강재에 대한 현 시방규정의 적정성을 분석 검토하고자 한다. 본 연구의 결과를 토대로 세장비의 변화에 따른 강상자형의 극한강도를 결정하는 식을 제시하고자 한다.

Keywords

References

  1. 한국강구조학회(1995) 강구조 편람, 구미서관.
  2. 건설교통부(2005) 도로교 설계기준.
  3. 건설교통부(2005) 도로교 표준시방서.
  4. 건설교통부(1996) (부록)도로교 표준시방서.
  5. Alexander Chajes (1974) Principles of Structural Stability Theory, Prentice-Hall, Inc
  6. AASHTO (1998) LRFD Bridge Design Specification for Highway Bridges, American Association of State Highway and Transportation Officials, Washington, DC.
  7. Boresi, A.P., Schmidt, R.J., and Sidebottom, O.M. (1993) Advanced Mechanics of Materials, Fifth Edition, John Wiley and Sons, Inc.
  8. Chatterjee, S. (1978) Ultimate Load Analysis and Design of Stiffened Plates in Compression, Ph. D. Thesis, Imperial College, University London.
  9. Crisfield, M.A. (1975) Full Range Analysis of Steel Plates and Stiffened Plating under Uniaxial Compression, Pro. Inst. Civ. Eng., Part2.
  10. Fukumoto (1997) Structural Stability Design(Steel and Composite Structures), Elsevier Science Ltd.
  11. Galambos, T.V. (1998) Stability Design Criteria for Metal Structures, 5th Ed., John Wiley and Sons, Inc.
  12. Hambly, E.C. (1991) Bridge Deck Behaviour, Second Edition, Champman and Hall Ltd.
  13. Massonnet, C. (1962) Stability Considerations in the Design of Steel Plate Girders, Trans. Am. Soc. Civ. Eng., Vol. 127, Part II.
  14. Murray, N.W. (1973) Buckling of Stiffened Panel Loaded Axially and in Bending, J.Struct. Eng., Vol. 51, No. 8.
  15. Murray, N.W. (1975) Analysis and Design of Stiffened Plates for Collapse Load, J.Struct. Eng., Vol. 53, No. 3.
  16. Narayanan, R. (1983) Plated Structures(Stability and Strength), Elsevier Scientific Publishing Co., Inc.
  17. Ostapenko, A. and Vojta, J.F. (1967) Ultimate Strength Design of Longitudinally Stiffened Plate Panels with Large b/t, Fritz Eng. Lehigh University, Bethlehem, PA.
  18. Reddy, J.N. (1992) Energy and Variational Methods in Applied Mechanics, John Wiley and Sons, Inc.
  19. Skaloud, M. and Zornerova, M. (1977) Linear Buckling Theory Optimum Rigidity of the Longitudinal Stiffeners of the Compression Flanges of Steel Box Girder Bridges, Acta Technica, No. 1.
  20. Timoshenko, S.P. and Goodier, J.M. (1961) Theory of Elasticity, 3rd Ed., McGraw-Hill, Inc.
  21. Timoshenko, S.P. and Gere, J.M. (1961) Theory of Elastic Stability, 2nd Ed., McGraw-Hill, Inc.
  22. Troisky, M.S. (1976) Stiffened Plates(Bending, Stability and Vibrations), Elsevier Scientific Publishing Co., Amsterdam.
  23. Vladmir, K. (1979) Theory of Box Girder, John Wiley and Sons, Ltd.
  24. Whitey, J.M. (1987) Structural Analysis of Laminated Anisotropic Plates, Technomic Publishing Company, Inc.
  25. Wittrick, W.H. (1968) A Unified Approach to the Initial Buckling of Stiffened Panels in Compression, Aeronaut. Q., Vol. 19.
  26. Wolchuk, R. and Mayrbourl, R.M. (1980) Proposed Design Specification for Steel Box Girder Bridges, Rep. No. FHWA-TS 80-205, U.S. Department of Transportation, Federal Highway Administration, Washington, D.C.