• 제목/요약/키워드: Web-Post Buckling Strength

검색결과 10건 처리시간 0.018초

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.

셀룸러빔의 웨브-포스트 좌굴강도 (Web-Post Buckling Strength For Cellular Beam)

  • 최취경;박선우;김태영;서보현
    • 한국공간구조학회논문집
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    • 제7권3호
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    • pp.119-124
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    • 2007
  • 장스팬 철골부재설계시, 응력보다는 처짐에 의해 부재단면이 결정되며 이러한 경우 춤을 극대화 할 수 있는 셀룰러 빔이 매우 유리하다. 셀룰러 빔은 웨브의 단면결손으로 인해 웨브의 좌굴강도가 일반형강보의 비해 작아지게 된다. 본 논문에서는 셀룰러 빔의 개구부간격과 직경비, 그리고 개구부직경과 웨브두께비를 주요변수로 비선형 유한요소해석을 통해 웨브포트의 좌굴강도를 평가하였다. 또한 이를 BS5950 Part 1에서 제시하고 있는 기준과 비교분석하였다.

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Shear-bending interaction strength of locally buckled I-sections

  • El Aghoury, M.;Hanna, M.T.
    • Steel and Composite Structures
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    • 제8권2호
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    • pp.145-158
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    • 2008
  • In slender sections there is a substantial post-buckling strength provided after the formation of local buckling waves. These waves happened due to normal stresses or shear stresses or both. In this study, a numerical investigation of the behavior of slender I-section beams in combined pure bending and shear has been described. The studied cases were assumed to be prevented from lateral torsional buckling. To achieve this aim, a finite element model that simulates the geometric and material nonlinear nature of the problem has been developed. Moreover, the initial geometric imperfections were included in the model. Different flange and web width-thickness ratios as well as web panel aspect ratios have been considered to draw complete set of interaction diagrams. Results reflect the interaction behavior between flange and web in resisting the combined action of moments and shear. In addition, the web panel aspect ratio will not significantly affect the combined ultimate shear-bending strength as well as the post local buckling strength gained by the section. Results are compared with that predicted by both the Eurocode 3 and the American Iron and Steel specifications, AISI-2001. Finally, an empirical interaction equation has been proposed.

Post buckling mechanics and strength of cold-formed steel columns exhibiting Local-Distortional interaction mode failure

  • Muthuraj, Hareesh;Sekar, S.K.;Mahendran, Mahen;Deepak, O.P.
    • Structural Engineering and Mechanics
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    • 제64권5호
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    • pp.621-640
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    • 2017
  • This paper reports the numerical investigation conducted to study the influence of Local-Distortional (L-D) interaction mode buckling on post buckling strength erosion in fixed ended lipped channel cold formed steel columns. This investigation comprises of 81 column sections with various geometries and yield stresses that are carefully chosen to cover wide range of strength related parametric ratios like (i) distortional to local critical buckling stress ratio ($0.91{\leq}F_{CRD}/F_{CRL}{\leq}4.05$) (ii) non dimensional local slenderness ratio ($0.88{\leq}{\lambda}_L{\leq}3.54$) (iii) non-dimensional distortional slenderness ratio ($0.68{\leq}{\lambda}_D{\leq}3.23$) and (iv) yield to non-critical buckling stress ratio (0.45 to 10.4). The numerical investigation is carried out by conducting linear and non-linear shell finite element analysis (SFEA) using ABAQUS software. The non-linear SFEA includes both geometry and material non-linearity. The numerical results obtained are deeply analysed to understand the post buckling mechanics, failure modes and ultimate strength that are influenced by L-D interaction with respect to strength related parametric ratios. The ultimate strength data obtained from numerical analysis are compared with (i) the experimental tests data concerning L-D interaction mode buckling reported by other researchers (ii) column strength predicted by Direct Strength Method (DSM) column strength curves for local and distortional buckling specified in AISI S-100 (iii) strength predicted by available DSM based approaches that includes L-D interaction mode failure. The role of flange width to web depth ratio on post buckling strength erosion is reported. Then the paper concludes with merits and limitations of codified DSM and available DSM based approaches on accurate failure strength prediction.

Experimental investigation for failure analysis of steel beams with web openings

  • Morkhade, Samadhan G.;Gupta, Laxmikant M.
    • Steel and Composite Structures
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    • 제23권6호
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    • pp.647-656
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    • 2017
  • This paper presents an experimental study on the behaviour of steel beams with different types of web openings. Steel beams with web openings became progressively more accepted as a well-organized structural form in steel construction since their existence. Their complicated design and profiling method provides better flexibility in beam proportioning for strength, depth, size and location of holes. The objective of this study is to carry out the experiments on steel beams with different types of web openings and performed non-linear finite element (FE) analysis of the beams that were considered in the experimental study in order to determine their ultimate load capacity and failure modes for comparison. Ten full scale models of steel beam with web openings have been tested in the experimental investigation. The finite element method has been used to predict their entire response to increasing values of external loading until they lose their load carrying capacity. FE model of each specimen that is utilized in the experimental studies is carried out. These models are used to simulate the experimental work to verify test results and to investigate the nonlinear behaviour of failure modes such as local buckling, lateral torsional buckling, web-post buckling, shear buckling and Vierendeel bending of beams.

상자형의 압축플랜지 휨강도 및 좌굴거동에 관한 연구 (A Study on Flexural Strength and Buckling Behavior of Compressional Flange for Box Girder)

  • 김홍준;정희효
    • 한국강구조학회 논문집
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    • 제23권6호
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    • pp.679-690
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    • 2011
  • 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.

플레이트거더의 전단내력 (Shear Strength of Plate Girder)

  • 최취경;김규석
    • 한국구조물진단유지관리공학회 논문집
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    • 제7권2호
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    • pp.169-176
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    • 2003
  • 플레이트거더의 전단내력을 평가하기 위해서는 탄성전단좌굴강도가 정확히 산정되어야 한다. 현행 설계식에서는 탄성전단좌굴강도를 계산하기 위한 웨브 플레이트의 경계조건을 4변 단순지지로 가정하고 있다. 그러나 웨브와 플랜지의 경계조건은 일반적으로 단순지지이상의 구속을 가지고 있으며, 플랜지의 두께가 웨브의 두께에 비해 두꺼울수록 고정에 가까워진다. 플레이트거더에서 웨브 플레이트의 경계조건은 플랜지와 웨브의 두께비, 스티프너의 보강간격 등에 따라 달라지게 된다. 본 연구에서는 실험과 유한요소법을 통해 플랜지와 웨브의 폭비, 스티프너의 보강간격, 특히 플랜지와 웨브의 두께비에 따른 웨브 플레이트의 경계조건을 평가하여 플레이트거더의 전단좌굴게수를 제안하고자 한다.

횡하중을 고려한 압축최종강도에 대한 보강재 치수의 영향 (Effect of Stiffener's Web Height against Axial Compression Ultimate Strength Considering Lateral Pressure Load)

  • 오영철;고재용;오동기
    • 해양환경안전학회지
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    • 제14권1호
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    • pp.89-93
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    • 2008
  • 보강판은 선박이나 해양구조물에서 폭넓게 사용되고 있는 기본적인 강도 부재이다. 이러한 보강판은 선박의 갑판부, 선측부, 선저부에 흔히 사용되고 있다. 보강판은 보강재가 어느 한 방향으로 또는 양방향으로 구성되어 있으며 후자에 대해서 보통 그릴리지라고 한다. 보강판의 좌굴 및 소성붕괴는 선각거더의 파손 원인이 되므로 좌굴 및 최종강도가 정확하게 규명할 필요가 있다. 본 연구에서는 범용유한요소해석코드인 ANSYS를 이용하여 좌굴 및 좌굴 후 거동에 대한 평가를 수행하고 보강재 치수변화, 수압의 영향을 고려하여 압축최종강도에 대해 해석 수행하였다.

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단면 내 응력분포를 고려한 I형 및 Box형 단면의 PFRP 압축재의 설계 (Design of PFRP I and Box Shape Compression Members Considering Stress Distribution in the Cross-section)

  • 최진우;김재욱;주형중;윤순종
    • 복합신소재구조학회 논문집
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    • 제2권1호
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    • pp.15-22
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    • 2011
  • 펄트루젼 FRP 구조용 부재는 많은 유용한 역학적, 물리적 성질 때문에 토목분야에서 구조부재의 매력적인 대체부재로 고려될 수 있다. 그러나 펄트루젼 FRP는 탄성계수가 상대적으로 낮고, 부재의 단면이 복부와 플렌지 등의 얇은 판요소로 구성되어 있기 때문에 압축재로 설계할 때 구조적인 안정성은 매우 중요한 고려사항이 된다. 따라서, 압축을 받는 구조용 부재의 설계를 위해, 판요소의 좌굴 및 후좌굴강도를 고려해야 한다. AISC/LRFD의 강구조 설계기준에서는, 후좌굴강도에 추가적인 단면 내 일정하지 않은 응력분포의 영향을 형상계수(form factor)를 사용하여 고려하고 있다. 이 논문에서는 압축력을 받는 펄트루젼 FRP 구조용 부재의 형상계수를 해석적으로 연구하였으며, 형상계수를 설정하는 과정에 대하여 제안하였다.

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.