• 제목/요약/키워드: steel plate shear panels

검색결과 27건 처리시간 0.022초

강곡선 플레이트거더 복부판의 전단좌굴계수에 관한 연구 (A Study on Elastic Shear Buckling Coefficients of Horizontally Curved Plate Girder Web Panels)

  • 이두성;이성철
    • 대한토목학회논문집
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    • 제28권3A호
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    • pp.367-373
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    • 2008
  • 국내/외에서 설계되는 강곡선거더교 복부판의 전단강도는 복부판의 4변을 단순지지라는 가정 하에서 산정되는 탄성전단좌굴강도로 제안하고 있다(AASHTO Guide Specifications, 2003). 그러나, Lee et al.(1996, 1999)과 Bradford(1996)의 최근 연구에서 실제의 설계범위를 갖는 직선이나 곡선 복부판에서 어느 정도의 강성을 갖는 플랜지에 의해서 접하는 변의 경계조건은 단순지지 보다는 고정지지에 더 근접하며, 복부판의 형상비에 따라서는 AASHTO의 탄성좌굴강도가 60%이상 낮게 평가되고 있음을 발표하였다. 특히 강곡선복부판의 전단좌굴강도는 곡률의 영향으로 AASHTO Guide Specifications(2003)의 탄성전단좌굴강도보다 최대 38%이상 증가하고 있음이 Lee and Yoo(1999)의 연구에서 조사되었다. 본 논문에서는 선형좌굴해석을 이용하여 곡률과 경계조건이 동시에 고려된 강곡선 복부판의 전단좌굴계수를 합리적으로 추정할 수 있는 산정식을 제안하고자 한다.

강곡선 플레이트거더 복부판의 극한전단강도에 관한 실험연구 (Experimental Study on Ultimate Shear Strength of Horizontally Curved Plate Girder Web Panels)

  • 이두성;박찬식;이성철
    • 대한토목학회논문집
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    • 제26권4A호
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    • pp.727-734
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    • 2006
  • 강곡선복부판의 전단설계에서 Guide Specifications(AASHTO, 2003)에서는 여전히 후좌굴강도를 반영하고 있지 않다. 그러나 최근 강곡선 복부판의 전단거동에 관한 해석 및 실험연구를 통해서 탄성좌굴 후에 직선교 복부판과 같이 후좌굴강도를 발현하고 있으며, 일반적인 설계범위에서 직선교 복부판과 유사한 크기의 극한전단강도를 나타내고 있는 것으로 조사되었다. 본 연구에서는 강곡선복부판의 극한전단강도를 조사하기 위하여 유한요소해석과 실험연구를 수행하였다. 연구결과를 통해서 일반적으로 설계가 수행되는 기하학적인 범위 내에서 강곡선복부판은 후좌굴강도를 발현하며, 그 크기는 동일한 재료를 적용한 직선복부판과 유사하다는 것을 알 수 있었다. 그러므로 강도한계상태에서 강곡선복부판도 Lee and Yoo(1998)가 제안한 직선복부판의 극한전단강도를 이용하여 설계할 수 있음을 본 연구를 통해서 제안하였다.

Ultimate load behavior of horizontally curved composite plate girders

  • Shanmugam, N.E.;Basher, M.A.;Khalim, A.R.
    • Steel and Composite Structures
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    • 제9권4호
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    • pp.325-348
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    • 2009
  • This paper is concerned with steel-concrete composite plate girders curved in plan. At the design stage these girders are assumed sometimes to act independent of the deck slabs resting on them in order to simplify the analysis. The advantage of composite action between the steel girders and concrete deck is not utilized. Finite element modeling of such composite action in plate girders is considered in this paper. Details of the finite element modeling and the non-linear analysis of the girders are presented along with the results obtained. Tension field action in the web panels similar to those observed in the straight plate girders is also noticed in these girders. Finite element and experimental results in respect of curved steel plate girders and straight composite plate girders tested by other researchers are presented first to assess the accuracy of the modeling. Effects of parameters such as curvature, steel flange width and web panel width that affect the behavior of composite girders are then considered in the analyses. An approximate method to predict the ultimate strength of horizontally curved composite plate girders is also presented.

Simplified method for prediction of elastic-plastic buckling strength of web-post panels in castellated steel beams

  • Liu, Mei;Guo, Kangrui;Wang, Peijun;Lou, Chao;Zhang, Yue
    • Steel and Composite Structures
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    • 제25권6호
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    • pp.671-684
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    • 2017
  • Elastic-plastic shear buckling behaviors of the web-post in a Castellated Steel Beam (CSB) with hexagonal web openings under vertical shear force were investigated further using Finite Element Model (FEM) based on a sub-model, which took the upper part of the web-post under horizontal shear force to represent the whole web-post under vertical shear force. A simplified design method for the web-post elastic-plastic shear buckling strength was proposed based on simulation results of the sub-model. Proper boundary conditions were applied to the sub-model to assure that its behaviors were identical to those of the whole web-post. The equation to calculate the thin plate elastic shear buckling strength was adopted as the basic form to build the design equation for elastic-plastic buckling strength of the sub-model. Parameters that might affect the elastic-plastic shear buckling strength of the whole web-post were studied. After obtaining the vertical shear buckling strength of a sub-model through FEM, the shear buckling coefficient k can be obtained through the back analysis. A practical calculation method for k was proposed through curving fitting the parameter study results. The elastic-plastic shear buckling strength of the web-post calculated using the proposed shear buckling coefficient k agreed well with that obtained from the FEM and test results. And it was more precise than those obtained from EC3 based on the strut model.

Seismic upgrading of reinforced concrete frames with steel plate shear walls

  • Korkmaz, Hasan H.;Ecemis, Ali S.
    • Earthquakes and Structures
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    • 제13권5호
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    • pp.473-484
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    • 2017
  • The objective of this paper is to report on a study of the use of unstiffened thin steel plate shear walls (SPSWs) for the seismic performance improvement of reinforced concrete frames with deficient lateral rigidity. The behaviour of reinforced concrete frames during seismic activities was rehabilitated with an alternative and occupant-friendly retrofitting scheme. The study involved tests of eight 1/3 scale, one bay, two storey test specimens under cyclic quasi-static lateral loadings. The first specimen, tested in previous test program, was a reference specimen, and in seven other specimens, steel infill plates were used to replace the conventional infill brick or the concrete panels. The identification of the load-deformation characteristics, the determination of the level of improvement in the overall strength, and the elastic post-buckling stiffness were the main issues investigated during the quasi-static test program. With the introduction of the SPSWs, it was observed that the strength, stiffness and energy absorption capacities were significantly improved. It was also observed that the experimental hysteresis curves were stable, and the composite systems showed excellent energy dissipation capacities due to the formation of a diagonal tension field action along with a diagonal compression buckling of the infill plates.

Flexural behavior of beams in steel plate shear walls

  • Qin, Ying;Lu, Jin-Yu;Huang, Li-Cheng-Xi;Cao, Shi
    • Steel and Composite Structures
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    • 제23권4호
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    • pp.473-481
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    • 2017
  • Steel plate shear wall (SPSW) system has been increasingly used for lateral loads resisting system since 1980s when the utilization of post-buckling strength of SPSW was realized. The structural response of SPSWs largely depends on the behavior of the surrounded beams. The beams are normally required to behave in the elastic region when the SPSW fully buckled and formed the tension field action. However, most modern design codes do not specify how this requirement can be achieved. This paper presents theoretical investigation and design procedures of manually calculating the plastic flexural capacity of the beams of SPSWs and can be considered as an extension to the previous work by Qu and Bruneau (2011). The reduction in the plastic flexural capacity of beam was considered to account for the presence of shear stress that was altered towards flanges at the boundary region, which can be explained by Saint-Venant's principle. The reduction in beam web was introduced and modified based on the research by Qu and Bruneau (2011), while the shear stress in the web in this research is excluded due to the boundary effect. The plastic flexural capacity of the beams is given by the superposition of the contributions from the flanges and the web. The developed equations are capable of predicting the plastic moment of the beams subjected to combined shear force, axial force, bending moment, and tension fields induced by yielded infill panels. Good agreement was found between the theoretical results and the data from previous research for flexural capacity of beams.

강곡선 플레이트거더 복부판의 중간수직보강재 소요강성에 관한 연구 (The Rigidity of Transverse Intermediate Stiffener of Horizontally Curved Plate Girder Web Panels)

  • 이두성;박찬식;이성철
    • 대한토목학회논문집
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    • 제26권4A호
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    • pp.735-742
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    • 2006
  • 실 설계에서 적용되는 강곡선 플레이트거더교의 기하학적인 설계범위 내에서 횡방향변형이 충분히 지지된 강곡선 플레이트거더 복부판의 극한전단강도는 비록 직선복부판에 비해 후좌굴강도는 감소할지라도 탄성좌굴강도가 상대적으로 증가한다. 또한 강곡선 플레이트거더 복부판의 극한전단강도는 후좌굴강도를 포함한 직선플레이트거더 복부판의 극한전단강도와 같은 크기를 발현하고 있음이 여러 연구를 통해서 입증되었다. 본 연구에서는 강곡선 플레이트거더 복부판이 극한전단강도를 발현하기 위한 중간수직보강재의 소요강성에 관한 수치해석연구를 수행하였다. 수치해석결과로부터 후좌굴거동이 존재하는 강곡 선플레이트거더 복부판이 후좌굴강도를 충분히 발현하기 위해서는 현행 Guide Specifications(AASHTO, 2003)의 중간수직보강재 강성이 후좌굴거동 시에 단순지지역할을 하기에는 부족한 것으로 조사되었으며, 이를 기초로 전단좌굴강도비에 따른 소요강성식을 제안하였다.

Impact response of a novel flat steel-concrete-corrugated steel panel

  • Lu, Jingyi;Wang, Yonghui;Zhai, Ximei;Zhou, Hongyuan
    • Steel and Composite Structures
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    • 제42권2호
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    • pp.277-288
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    • 2022
  • A novel flat steel plate-concrete-corrugated steel plate (FS-C-CS) sandwich panel was proposed for resisting impact load. The failure mode, impact force and displacement response of the FS-C-CS panel under impact loading were studied via drop-weight impact tests. The combined global flexure and local indentation deformation mode of the FS-C-CS panel was observed, and three stages of impact process were identified. Moreover, the effects of corrugated plate height and steel plate thickness on the impact responses of the FS-C-CS panels were quantitatively analysed, and the impact resistant performance of the FS-C-CS panel was found to be generally improved on increasing corrugated plate height and thickness in terms of smaller deformation as well as larger impact force and post-peak mean force. The Finite Element (FE) model of the FS-C-CS panel under impact loading was established to predict its dynamic response and further reveal its failure mode and impact energy dissipation mechanism. The numerical results indicated that the concrete core and corrugated steel plate dissipated the majority of impact energy. In addition, employing end plates and high strength bolts as shear connectors could prevent the slip between steel plates and concrete core and assure the full composite action of the FS-C-CS panel.

강판벽이 설치된 건물의 연쇄붕괴 저항성능 (Progressive Collapse Resisting Capacity of Building Structures with Infill Steel Panels)

  • 이하나;권광호;김진구
    • 한국전산구조공학회논문집
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    • 제25권1호
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    • pp.19-26
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    • 2012
  • 본 논문에서는 강판벽이 설치된 골조 구조물의 연쇄붕괴 거동을 비선형 정적 pushdown 해석을 이용하여 평가하였다. 해석모델은 중력하중에 대해서 설계된 2층 2경간 철골구조물이며, 중앙 기둥을 제거하고 하중을 서서히 증가시키며 하중-변위 관계를 구하였다. 구조물의 전체적인 거동뿐만 아니라 부분적인 응력과 변형을 파악하기 위하여 ABAQUS를 이용한 유한요소해석을 수행하였다. 해석을 통해서 구조물의 경간 길이 및 설치된 강판의 두께의 변화에 따른 연쇄붕괴 거동을 평가하였으며, 샛기둥을 이용하여 강판을 분할하고 분할된 강판의 위치에 따른 연쇄붕괴 성능의 변화를 관찰하였다. 해석결과에 따르면 경간의 길이가 증가할수록 연쇄붕괴를 방지하기 위하여 요구되는 강판의 두께 또한 증가하며, 분할된 강판의 수가 증가할수록 연쇄붕괴에 대한 저항성능이 약간 증가하지만 그 영향은 그리 크지 않은 것으로 나타났다. 또한 개구부로 인하여 일부 경간에만 강판이 설치된 경우에도 연쇄붕괴 저항성능이 어느 정도 증가하는 것으로 나타났다.

Vibration and buckling analyses of laminated panels with and without cutouts under compressive and tensile edge loads

  • Rajanna, T.;Banerjee, Sauvik;Desai, Yogesh M.;Prabhakara, D.L.
    • Steel and Composite Structures
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    • 제21권1호
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    • pp.37-55
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    • 2016
  • In this study, the influence of centrally placed circular and square cutouts on vibration and buckling characteristics of different ply-oriented laminated panels under the action of compressive and/or tensile types of non-uniform in-plane edge loads are investigated. The panels are inspected under the action of uniaxial compression, uniaxial tension and biaxial, compression-tension, loading configurations. Furthermore, the effects of different degrees of edge restraints and panel aspect ratios are also addressed in this work. Towards this, a nine-node heterosis plate element has been adopted which includes the effect of shear deformation and rotary inertia. According to the results, the tensile buckling loads are higher than that of compressive buckling loads. However, the tensile buckling load continuously reduces with the increased cutout sizes irrespective of ply-orientations. This is also true for compressive buckling loads except for some particular ply-orientations with higher sized cutouts.