• 제목/요약/키워드: bracing

검색결과 365건 처리시간 0.02초

반복하중을 받는 강재 브레이싱의 거동에 관한 해석적 연구 (A Study on the Analysis of Steel Bracing Behaviour Subjected to Cyclic loads)

  • 구민세;김병석;김일곤
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 1989년도 봄 학술발표회 논문집
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    • pp.44-49
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    • 1989
  • The primary purpose of using bracings is to improve tile lateral rigidity of main structural system, i.e., columns and beams, by reinforcing them with much smaller members. Conventional design methods consider bracings as tension-only mambers, since difficulties arise in the analysis to consider the P - effects and post-buckling behaviour of the bracing members. This is particulary true for X-bracings. Recently, however, both analytical and experimental studies have been conducted to investigate the more precise and real behaviour of bracing members, especially for the nonlinear un plastic behaviour under cyclic loads. In this study, an analytical model is proposed to investigate the nonlinear behavior of steel bracing members subjected to cyclic loads. Results of tile analysis were compared with previous experimental results, and good agreements were obtained between these results.

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Inelastic buckling and post-buckling behavior of gusset plate connections

  • Hadianfard, Mohammad Ali;Khakzad, Ali Reza
    • Steel and Composite Structures
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    • 제22권2호
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    • pp.411-427
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    • 2016
  • In this study, by using finite element non-linear static analysis and comparing it with experimental models, the buckling and post-buckling behavior of bracing gusset plates has been investigated. The effects of such parameters as dimension and thickness of the gusset plate and the influence of position of the bracing member on the behavior of gusset plate have been examined. The results of the analyses clearly suggest that capacity, buckling and post-buckling behaviors of gusset plates depend on the position of the bracing splice plate with respect to the free bending line as well as on the size and thickness of the gusset plate. Also, with respect to numerical analysis results, some practical graphs for the calculation of buckling capacity of gusset plate connections are presented. For steel structures, the proposed method is apparently more accurate than available code procedures.

케이블 돔 구조물의 불안정 현상에 대한 브레이싱 보강 효과 (Effects by Bracing Reinforcement on the Instability Phenomenon of Cable Domes)

  • 김승덕;김형석;백인성
    • 한국공간구조학회논문집
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    • 제1권2호
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    • pp.75-83
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    • 2001
  • The characteristics of structural behavior for a cable dome shows a strong nonlinearity and very sensitive by the initial imperfection. The instability phenomenon of Geiger-type cable dome structure is generated due to the in-plane twisting near the critical load level. In this study, therefore, the effect of bracing reinforcement resisting to the in-plane twisting is investigated for the Geiger-type model reinforced by bracing. The effect of initial imperfection is also studied because the structural instability phenomenon of shell-like structure is very sensitive according to the initial condition.

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I-거더 불연속 비틀림 브레이싱: 횡-비틂 좌굴 및 비틀림 자유진동 (I-girder with Discrete Torsional Bracing: Lateral-torsional Buckling and Torsional Free Vibration)

  • 웬 간 투안;문지호;김현수;이학은
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2010년도 정기 학술발표대회
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    • pp.85-85
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    • 2010
  • Discrete torsional bracing systems are widely used in practice to increase the strength of I-girders bridges. This paper proposes equations for lateral-torsional buckling strength, torsional natural frequency and stiffness requirements of I-girders with discrete torsional bracings. Firstly, the equations to calculate the critical moment of the I-girder with discrete torsional bracings are introduced. The proposed equations are then compared with the results of finite element analyses and those from previous studies. The equations to calculate the torsional natural frequency are also presented in the same manner. From the results, it is found that proposed equations agree well with results of finite element analyses regardless of the number of bracing points. Finally, the reduced formula for the total torsional stiffness requirement is proposed for the design purpose.

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Parameters influencing seismic response of horizontally curved, steel, I-girder bridges

  • Linzell, Daniel G.;Nadakuditi, Venkata P.
    • Steel and Composite Structures
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    • 제11권1호
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    • pp.21-38
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    • 2011
  • This study examines the influence of curved, steel, I-girder bridge configuration on girder end reactions and cross frame member forces during seismic events. Simply-supported bridge finite element models were created and examined under seismic events mimicking what could be experienced in AASHTO Seismic Zone 2. Bridges were analyzed using practical ranges of: radius of curvature; girder and cross frame spacings; and lateral bracing configuration. Results from the study indicated that: (1) radius of curvature had the greatest influence on seismic response; (2) interior (lowest radius) girder reactions were heavily influenced by parameter variations and, in certain instances, uplift at their bearings could be a concern; (3) vertical excitation more heavily influenced bearing and cross frame seismic response; and (4) lateral bracing helped reduce seismic effects but using bracing along the entire span did not provide additional benefit over placing bracing only in bays adjacent to the supports.

Performance of cold-formed steel wall frames under compression

  • Pan, Chi-Ling;Peng, Jui-Lin
    • Steel and Composite Structures
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    • 제5권5호
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    • pp.407-420
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    • 2005
  • This study presents the strength of braced and unbraced cold-formed steel wall frames consisting of several wall studs acting as columns, top and bottom tracks, and bracing members. The strength and the buckling mode of steel wall frames were found to be different due to the change of bracing type. In addition, the spacing of wall studs is a crucial factor to the strength of steel wall frames. The comparisons were made between the test results and the predictions computed based on AISI Code. The related specifications do not clearly provides the effective length factors for the member of cold-formed steel frame under compression. This paper proposes effective length factors for the steel wall frames based on the test results. A theoretical model is also derived to obtain the modulus of elastic support provided by the bracing at mid-height of steel wall frames in this research.

Effects of Material Nonlinearity on Seismic Responses of Multistoried Buildings with Shear Walls and Bracing Systems

  • Islam, Md. Rajibul;Chakraborty, Sudipta;Kim, Dookie
    • Architectural research
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    • 제24권3호
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    • pp.75-84
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    • 2022
  • Scads of earthquake-resistant systems are being invented around the globe to ensure structural resistance against the lateral forces induced by earthquake loadings considering structural safety, efficiency, and economic aspects. Shear wall and Bracing systems are proved to be two of the most viable solutions for seismic strengthening of structures. In the present study, three numerical models of a G+10 storied building are developed in commercial building analysis software considering shear wall and bracing systems for earthquake resistance. Material nonlinearity is introduced by using plastic hinges. Analyses are performed utilizing two dynamic methods: Response Spectrum analysis and nonlinear Time-history analysis using Kobe and Loma Prieta earthquake data and results are compared to observe the nonlinear behavior of structures. The outcomes exposed that a significant increase in the seismic responses occurs due to the nonlinearity in the building systems. It was also found that building with shear wall exhibits maximum resistance and minimum nonlinearity when subjected to dynamic loadings.

반복하중을 받는 짧은 I형 보의 횡좌굴에 대한 횡브레이싱의 영향에 관한 고찰 (Influence of Lateral Bracing on Lateral Buckling of Short I-Beams Under Repeated Loadings)

  • 이상갑
    • 전산구조공학
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    • 제5권1호
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    • pp.109-118
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    • 1992
  • 보(Beam)의 횡-비틀림 좌굴(Lateral-Torsional Buckling)에 대한 저항능력을 향상시키기 위해 횡-브레이싱(Lateral Bracing)을 실제 설계에 오랫동안 사용해 왔으나, 횡-브레이싱의 성능에 중요한 인자들은 아직 설계공식에 많이 포함되어 있지 않다. 해석적 모델을 사용하여 아래와 같은 몇개의 인자들에 대한 Parametric Study를 반복하중을 받는 짧은 보에 적용하여 그 영향들을 고찰하고자 한다 : 브레이스의 보 길이 방향의 위치, 브레이스의 보의 절단중심에 대한 높이, 브레이스의 강도와 강성. 일단고정 타단가중 지반(Propped Cantilever)보를 이용하여 Parametric Study를 수행하고, 또한 구조물 전체의 좌굴현상을 잘 포착하기 위해 보와 브레이스에 기하학적 (완전) 비선형의 보 모델을 사용한다. 여기에서 이상화된 브레이스는 보 단면의 횡방향의 이동은 구속하지만 회전은 자유롭게 하도록 한다. 또한 금속의 주기적 소성(Cyclic Plasticity)거동을 보다 잘 나타내기 위해 다축 주기적 소성 모델을 Consistent Return Mapping Algorithm과 결합시켜 적용한다.

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탄소섬유 앵커 X-브레이싱으로 보강된 철근콘크리트 기둥의 구조거동 및 내진보강 효과 (Retrofitting Effects and Structural Behavior of RC Columns Strengthened with X-Bracing Using Carbon Fiber Anchor)

  • 심종성;이강석;권혁우;김현중
    • 콘크리트학회논문집
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    • 제24권3호
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    • pp.323-331
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    • 2012
  • 이 논문에서는 콘크리트 기둥에 새로운 보강방법을 제시하여 반복하중에 대한 구조적인 성능시험을 하였다. 두 개의 콘크리트 기둥에 고성능 탄소섬유 다발을 이용하여 X자 형태의 보강을 실시하고, 기둥의 내부에 X-브레이싱을 고정하기 위해 기둥 단면을 천공하여 탄소섬유 다발을 기둥에 삽입한 후 탄소섬유로 단부를 감싸주는 새로운 보강방법인 탄소섬유 앵커 X-브레이싱 보강공법을 이용해 콘크리트 기둥의 구조성능과 보강효과를 시험을 통하여 규명하였다. 이를 위해 탄소섬유로 보강된 휨 파괴형 실험체 기둥과 전단 파괴형 실험체 기둥을 축소모형으로 각각 제작하였다. 휨과 전단저항 기둥에 대해 X-브레이스 보강 유, 무 실험체에 반복하중시험을 통해 기둥의 연성과 강도 보강효과를 확인하였다.

RC 골조의 내진 보강을 위한 예압 가새의 3-D 배치 (3-D Configuration Effects of Prestressing Cable Bracing Used for Retrofitting a RC Frame Subjected to Seismic Damage)

  • 이진호;오상균;히샴 엘간조리
    • 한국구조물진단유지관리공학회 논문집
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    • 제7권3호
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    • pp.183-191
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    • 2003
  • 본 연구는 예압 가새로써 내진 보강된 RC 골조의 보강 효과를 3차원적으로 조사함이 그 목적이다. 이를 위해, 먼저 4층 규모의 RC 골조에 극한 하중을 가한 후 예압 가새를 이용하여 보강하되 보강 위치에 따라 3경우로 나누어 해석을 수행해보았다. 해석 방법으로써, 본 연구자가 앞서 행한 연구 결과에 의해 정적 붕괴 해석법이 비선형 동적 시간 이력 해석법의 대안책으로 훌륭히 쓰일 수 있음을 밝힌바 있기 때문에 정적 붕괴 해석만 적용하여 보강 전의 해석 및 보강 후의 영향에 대해서 평가하였다. 그 결과, 외주부에 설치한 가새가 커다란 비틀림 저항을 발휘했으며 예압 가새로 인해 골조에 균등한 강성 변화가 유도되어 급격한 파괴가 발생하지 않는 효과를 보였다.