• 제목/요약/키워드: beam members

검색결과 719건 처리시간 0.018초

Analytical study on the influence of distributed beam vertical loading on seismic response of frame structures

  • Mergos, P.E.;Kappos, A.J.
    • Earthquakes and Structures
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    • 제5권2호
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    • pp.239-259
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    • 2013
  • Typically, beams that form part of structural systems are subjected to vertical distributed loading along their length. Distributed loading affects moment and shear distribution, and consequently spread of inelasticity, along the beam length. However, the finite element models developed so far for seismic analysis of frame structures either ignore the effect of vertical distributed loading on spread of inelasticity or consider it in an approximate manner. In this paper, a beam-type finite element is developed, which is capable of considering accurately the effect of uniform distributed loading on spreading of inelastic deformations along the beam length. The proposed model consists of two gradual spread inelasticity sub-elements accounting explicitly for inelastic flexural and shear response. Following this approach, the effect of distributed loading on spreading of inelastic flexural and shear deformations is properly taken into account. The finite element is implemented in the seismic analysis of plane frame structures with beam members controlled either by flexure or shear. It is shown that to obtain accurate results the influence of distributed beam loading on spreading of inelastic deformations should be taken into account in the inelastic seismic analysis of frame structures.

Geometrically nonlinear analysis of plane frames composed of flexibly connected members

  • Gorgun, H.
    • Structural Engineering and Mechanics
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    • 제45권3호
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    • pp.277-309
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    • 2013
  • Beam-to-column connections behaviour plays an important role in the analysis and design of steel and precast concrete structures. The paper presents a computer-based method for geometrically nonlinear frames with semi-rigid beam-to-column connections. The analytical procedure employs modified stability functions to model the effect of axial force on the stiffness of members. The member modified stiffness matrix, and the modified fixed end forces for various loads were found. The linear and nonlinear analyses were applied for two planar steel structures. The method is readily implemented on a computer using matrix structural analysis techniques and is applicable for the efficient nonlinear analysis of frameworks.

Shear Resistant Mechanism into Base Components: Beam Action and Arch Action in Shear-Critical RC Members

  • Jeong, Je-Pyong;Kim, Woo
    • International Journal of Concrete Structures and Materials
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    • 제8권1호
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    • pp.1-14
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    • 2014
  • In the present paper, a behavioral model is proposed for study of the individual contributions to shear capacity in shear-critical reinforced concrete members. On the basis of the relationship between shear and bending moment (V = dM/dx) in beams subjected to combined shear and moment loads, the shear resistant mechanism is explicitly decoupled into the base components-beam action and arch action. Then the overall behavior of a beam is explained in terms of the combination of these two base components. The gross compatibility condition between the deformations associated with the two actions is formulated utilizing the truss idealization together with some approximations. From this compatibility condition, the ratio of the shear contribution by the tied arch action is determined. The performance of the model is examined by a comparison with the experimental data in literatures. The results show that the proposed model can explain beam shear behavior in consistent way with clear physical significance.

트러스웹을 가진 보의 허용하중 산정 (Determination of the Allowable Load for Trussed Web Beam)

  • 김명한
    • 한국방재학회 논문집
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    • 제10권2호
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    • pp.1-5
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    • 2010
  • 유리온실에 효과적으로 적용할 수 있는 보는 최대한 가벼운 중량을 유지하면서, 요구되는 휨모멘트 강도와 좌굴 강도를 만족시켜야 한다. 이 연구에서는 유리온실의 보 및 기둥 부재로 최근에 제안된 트러스웹을 가진 보의 실무적인 적용성을 확립하기 위해서 휨거동과 좌굴거동을 해석적으로 분석하였다. 이 결과를 바탕으로 횡좌굴 및 국부좌굴을 고려한 부재설계 프로세스를 제시하였다. 또한 유한요소 해석결과를 바탕으로 횡좌굴 혹은 국부좌굴을 지연시킴으로서 단면성능을 향상시킬 수 있는 개선안을 제시하였다.

Distortional buckling formulae for cold-formed steel rack-section members

  • Silvestre, N.;Camotim, D.
    • Steel and Composite Structures
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    • 제4권1호
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    • pp.49-75
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    • 2004
  • The paper derives, validates and illustrates the application of GBT-based formulae to estimate distortional critical lengths and bifurcation stress resultants in cold-formed steel rack-section columns, beams and beam-columns with arbitrarily inclined mid-stiffeners and four support conditions. After a brief review of the Generalised Beam Theory (GBT) basics, the main concepts and procedures employed to obtain the formulae are addressed. Then, the GBT-based estimates are compared with exact results and, when possible, also with values yielded by formulae due to Lau and Hancock, Hancock and Teng et al. A few remarks on novel aspects of the rack-section beam-column distortional buckling behaviour, unveiled by the GBT-based approach, are also included.

SRC기둥-H형단면과 U형단면으로 구성된 합성보 접합부의 반복가력실험 (Cyclic Loading Test on Connection of SRC Column-Composite Beam Consisting of H-Section and U-Section Members)

  • 김영주;배재훈;안태상;김진원;유홍식
    • 한국강구조학회 논문집
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    • 제26권4호
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    • pp.263-275
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    • 2014
  • 본 연구에서는 SRC 기둥-H형단면과 U형단면으로 구성된 합성보 접합부에 관해서 반복가력실험을 실시하였다. 합성보에 관한 핵심요소는 H형단면과 U형단면 간 용접접합부의 구조적 성능이다. 이 두 부재 접합부의 성능을 향상시키기 위해서는 수직스티프너와 사다리꼴 스티프너가 필요하다. 접합부의 반복적인 성능을 평가하기 위해서 5개의 실대형 실험체를 계획하였으며, 실험변수는 H형단면의 크기($H-500{\times}200{\times}10{\times}16$, $H-600{\times}200{\times}11{\times}17$), 스티프너와 상부근의 유무 및 용접접근공(WAH)의 유무 등이다. 실험결과, H-500 시리즈 및 H-600 시리즈 보가 있는 실험체의 회전각은 각각 4%와 3%로 나타났으며, 이는 특수모멘트골조와 중간모멘트골조에 요구되는 값이다. 실험결과는 스티프너와 상부근이 있는 실험체의 변형능력이 그렇지 않은 실험체에 비해서 우수한 결과를 보였다. 끝으로, 실험체의 에너지소산능력과 변형도 분포를 요약하였다.

An Analytic Method for the Residual Strength Evaluation of Fire-Damaged Reinforced Concrete Beam

  • Park, Won-jun;Park, Ki-bong;Lee, Han-seung
    • Architectural research
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    • 제10권2호
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    • pp.37-42
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    • 2008
  • This study is to get the proper evaluation of the residual property of reinforced concrete beam exposed to fire. This study focused on the strength resistance and analytical evaluation of RC members exposed high temperature. And this study is the basis analytical research to conduct the other studies. To analysis by the finite element method, the Total-RC program was used to analysis it and the Total-Temp program was also used to analysis the temperature distributions at the section. All of results were compared with the pre-existing experimental data of simple supported beam. Using it, the parameters influencing the structural capacity of the high temperature-damaged RC members and residual strength estimation are investigated. The temperature distribution and the structural capacity at the section are calculated in this step. An application of this method is compared with the heating test result and residual property test for simple supported beam which is subjected to ISO 834 test fire. The results of this study are as follows; 1) The loads-displacement relationship of RC beam, considering initial thermal stress of cross section and heat transfer analysis are estimated comparing analytical value with pre-existing experimental results. 2) by the heating time (0, 1, 2 hours), the results of analysis with parameters show that the load capacity exposing at fire is affected.

Behaviour of bolted connections in concrete-filled steel tubular beam-column joints

  • Beena, Kumari;Naveen, Kwatra;Shruti, Sharma
    • Steel and Composite Structures
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    • 제25권4호
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    • pp.443-456
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    • 2017
  • Many authors have established the usefulness of concrete filled steel tubular (CFST) sections as compression members while few have proved their utility as flexural members. To explore their prospective as part of CFST frame structures, two types of connections using extended end plate and seat angle are proposed for exterior joints of CFST beams and CFST columns. To investigate the performance and failure modes of the proposed bolted connections subjected to static loads, an experimental program has been executed involving ten specimens of exterior beam-to-column joints subjected to monotonically increasing load applied at the tip of beam, the performance is appraised in terms of load deformation behaviour of joints. The test parameters varied are the beam section type, type and diameter of bolts. To validate the experimental behaviour of the proposed connections in CFST beam-column joints, finite element analysis for the applied load has been performed using software ATENA-3D and the results of the proposed models are compared with experimental results. The experimental results obtained agree that the proposed CFST beam-column connections perform in a semi-rigid and partial strength mode as per specification of EC3.

양방향 BSS 구조의 형상 매개 변수 연구 (Geometrical Parametric Study on Two-Way Beam String Structures)

  • 이승혜;서민희;박상은;김선명;이기학;이재홍
    • 한국공간구조학회논문집
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    • 제19권3호
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    • pp.69-76
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    • 2019
  • A Beam String Structure (BSS) is a type of hybrid structures, which is composed of upper structural members, lower strings, and struts. Due to the advantages that the pre-tensioned strings elicit pre-caber of the upper structural members, the deflection can be greatly reduced without increasing the structural member size. In this study, a two-way beam string structure is proposed to endure bi-directional loading. The two-way beam string structure consists of two cable parts, namely, sagging and arch-shaped cables. A parametric study is presented aimed at proposing design guide lines of the two-way beam string structures. Numerical finite element analyses through the ABAQUS package were implemented to obtain their behaviors.

Friction-based beam-to-column connection for low-damage RC frames with hybrid trussed beams

  • Colajanni, Piero;Pagnotta, Salvatore
    • Steel and Composite Structures
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    • 제45권2호
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    • pp.231-248
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    • 2022
  • Hybrid Steel-Trussed Concrete Beam (HSTCB) is structural typology suitable for light industrialization. HSTCBs usually cover long span with small depths, which lead to significant amount of longitudinal rebars. The latter make beam-column joints more prone to damage due to earthquake-induced cyclic actions. This phenomenon can be avoided using friction-based BCCs. Friction devices at Beam-to-Column Connections (BCCs) have become promising solutions to reduce the damage experienced by structural members during severe earthquakes. Few solutions have been developed for cast-in-place Reinforced Concrete (RC) and steel-concrete composite Moment Resisting Frames (MRFs), because of the difficulty of designing cost-effective damage-proof connections. This paper proposes a friction-based BCC for RC MRFs made with HSTCBs. Firstly, the proposed connection is described, and its innovative characteristics are emphasized. Secondly, the design method of the connection is outlined. A detailed 3D FE model representative of a beam-column joint fitted with the proposed connection is developed. Several monotonic and cyclic analyses are performed, investigating different design moment values. Lastly, the numerical results are discussed, which demonstrate the efficiency of the proposed solution in preventing damage to RC members, and in ensuring satisfactory dissipative capacity.