• 제목/요약/키워드: Steel moment frame

검색결과 399건 처리시간 0.025초

이중 토글브레이스를 이용한 변위증폭 제진시스템의 이력특성 (Behavior of Seismic Control system with Double Toggle Brace)

  • 최기선;유영찬;김긍환;양원직
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.137-138
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    • 2010
  • 본 연구에서는 기존 건축물의 내진보강을 위한 고성능 제진시스템 개발을 목적으로 이중 토글브레이스를 갖는 제진시스템에 대한 실험적 연구를 수행하였다. 실물모형 철골프레임에 이중 토글브레이스를 설치하고, 점증반복가력을 도입하여 제진시스템의 변위증폭효과 및 이력특성을 파악하였다.

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Seismic behavior of special moment-resisting frames with energy dissipating devices under near source ground motions

  • Bayat, Mahmoud;Bayat, Mahdi
    • Steel and Composite Structures
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    • 제16권5호
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    • pp.533-557
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    • 2014
  • In this study, the performances of the SMRF building equipped with energy dissipating devices are studied. Three types of these structures with different heights are considered. The Added Damping and Stiffness (ADAS) devices are used as energy dissipating devices in these structures. The behavior of these structures with ADAS devices subjected to near source ground motions are investigated. Three SMRF buildings with five, ten and fifteen-story, with ADAS devices were chosen. The nonlinear time history analysis was used by applying the near source ground motions with PERFORM 3D.V4 and conclusions are drawn upon an energy criterion. The effect of PGA variation and height of the frames are also considered based on the energy criterion.

소성영역 진전효과를 고려한 공간 뼈대구조의 비탄성 해석 (Inelastic Analysis of Space Steel Frames Considering Spread of Plasticity)

  • 한재영;김성보
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2003년도 봄 학술발표회 논문집
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    • pp.45-52
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    • 2003
  • A finite element procedure to estimate ultimate strength of space frames considering spread of plasticity is presented. The improved displacement field is introduced based on inclusion of second order terms of finite rotations. All the nonlinear terms due to bending and torsional moment as well as axial force are precisely considered. The concept of plastic hinge is introduced and the incremental load/displacement method is applied for the elasto-plastic analysis. The initial yield surface is defined based on the residual stress and the full plastification surface is considered under the combined action of axial force, bending and torsional moments. The elasto-plastic stiffness matrices are derived using the flow rule and the normality condition of the limit function. Finite element solutions for ultimate strength of space frames are compared with available solutions and experimental results.

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능력설계에 의한 RC 연결전단벽 구조의 내진설계 (Application of Capacity Design Methodology to RC Coupled Shear Wall)

  • 이한선;정성욱;고동우
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.295-298
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    • 2005
  • Coupled shear wall(CSW) has been adopted as a lateral force resisting system in building frame structures. New Zealand code recommends the capacity design in designing the CSW. Capacity design based on using moment redistribution of member force may provide the economical benefit to designer. In this study, CSW's are designed by both capacity design and strength -based design. The design results and the seismic performance are compared by using nonlinear static analyses. The amount of reinforcement of shear wall and the section area of steel coupling beams by capacity design appear to be reduced by 19$\%$ and 17$\%$, respectively. Also CSW designed by capacity design shows good seismic performance at the ultimate state.

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유한요소법(有限要素法)에 계(係)한 Bracketed Connection의 해석(解析) (Analysis of Bracketed Connection by a Finite Element Method)

  • 임상전;송준태
    • 대한조선학회지
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    • 제12권1호
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    • pp.23-30
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    • 1975
  • Because of the simplicity in analysis and design of steel structure, the connections of members are assumed either as perfectly hinged or rigidly fixed. However, a more economical design would result if the effect of restraint in connections were included in analyzing frame structure. From this point of view, stiffness matrices for member with bracketed connections are presented in the form of the stiffness matrices for member with variable moment of inertia, modified by a correction matrix, whose elements are functions of fixity factors of the connections. To obtain fixity factors, the displacements and stress distribution of bracketed connections are investigated by using of the degital computer program, which have been developed to make computing time shorten and the round off errors smaller. The relationship of moments and slip angle in bracketed connections are presented in the form of curves, which can be used in establishing a stiffness matrices for member with bracketed connections.

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비대칭단면을 갖는 박벽 공간뼈대구조의 횡-비틂 후좌굴 유한요소해석 (Lateral-Torsional Post-Buckling Analyses of Thin-Walled Space Frames with Non-symmetric Sections)

  • 박효기;김성보;김문영;장승필
    • 한국강구조학회 논문집
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    • 제11권2호통권39호
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    • pp.153-165
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    • 1999
  • 비대칭단면을 갖는 박벽 공간뼈대구조의 횡후좌굴거동을 조사하기 위하여 기하학적 비선형 유한요소 해석법을 제시한다. 대변형효과를 고려한 연속체의 증분평형방정식으로부터, 도심에서 정의되는 딤(warping)함수를 고려하고 유한한 회전각의 2차항 효과를 포함하는 변위장을 도입하여 초기응력을 받는 박벽 공간뼈대요소의 증분평형방정식을 유도한다. 박벽 공간뼈대구조를 유한요소로 나누고 변위장을 요소변위에 관한 Hermitian 다항식으로 나타내어 이를 평형방정식에 대입함으로써 접선강도행렬을 유도한다. 또한 updated Lagrangian co-rotational formulation에 근거하여, 증분변위로부터 강체회 전변위와 순수변형성분을 분리시켜서 강체회전은 요소의 방향변화를 결정하고, 순수변형은 부재력증분을 산정하는 불평형하중 산정법을 제시한다.

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Seismic performance of lateral load resisting systems

  • Subramanian, K.;Velayutham, M.
    • Structural Engineering and Mechanics
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    • 제51권3호
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    • pp.487-502
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    • 2014
  • In buildings structures, the flexural stiffness reduction of beams and columns due to concrete cracking plays an important role in the nonlinear load-deformation response of reinforced concrete structures under service loads. Most Seismic Design Codes do not precise effective stiffness to be used in seismic analysis for structures of reinforced concrete elements, therefore uncracked section properties are usually considered in computing structural stiffness. But, uncracked stiffness will never be fully recovered during or after seismic response. In the present study, the effect of concrete cracking on the lateral response of structure has been taken into account. Totally 120 cases of 3 Dimensional Dynamic Analysis which considers the real and accidental torsional effects are performed using ETABS to determine the effective structural system across the height, which ensures the performance and the economic dimensions that achieve the saving in concrete and steel amounts thus achieve lower cost. The result findings exhibits that the dual system was the most efficient lateral load resisting system based on deflection criterion, as they yielded the least values of lateral displacements and inter-storey drifts. The shear wall system was the most economical lateral load resisting compared to moment resisting frame and dual system but they yielded the large values of lateral displacements in top storeys. Wall systems executes tremendous stiffness at the lower levels of the building, while moment frames typically restrain considerable deformations and provide significant energy dissipation under inelastic deformations at the upper levels. Cracking found to be more impact over moment resisting frames compared to the Shear wall systems. The behavior of various lateral load resisting systems with respect to time period, mode shapes, storey drift etc. are discussed in detail.

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.

Seismic behavior of full-scale square concrete filled steel tubular columns under high and varied axial compressions

  • Phan, Hao D.;Lin, Ker-Chun
    • Earthquakes and Structures
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    • 제18권6호
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    • pp.677-689
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    • 2020
  • A building structural system of moment resisting frame (MRF) with concrete filled steel tubular (CFST) columns and wide flange H beams, is one of the most conveniently constructed structural systems. However, there were few studies on evaluating seismic performance of full-scale CFST columns under high axial compression. In addition, some existing famous design codes propose various limits of width-to-thickness ratio (B/t) for steel tubes of the ductile CFST composite members. This study was intended to investigate the seismic behavior of CFST columns under high axial load compression. Four full-scale square CFST column specimens with a B/t of 42 were carried out that were subjected to horizontal cyclic-reversal loads combined with constantly light, medium and high axial loads and with a linearly varied axial load, respectively. Test results revealed that shear strength and deformation capacity of the columns significantly decreased when the axial compression exceeded 0.35 times the nominal compression strength of a CFST column, P0. It was obvious that the higher the axial compression, the lower both the shear strength and deformation capacities were, and the earlier and faster the shear strength degradation occurred. It was found as well that higher axial compressions resulted in larger initial lateral stiffness and faster degradation of post-yield lateral stiffness. Meanwhile, the lower axial compressions led to better energy dissipation capacities with larger cumulative energy. Moreover, the study implied that under axial compressions greater than 0.35P0, the CFST column specimens with B/t limits recommended by AISC 360 (2016), ACI 318 (2014), AIJ (2008) and EC4 (2004) codes do not provide ultimate interstory drift ratio of more than 3% radian, and only the limit in ACI 318 (2014) code satisfies this requirement when axial compression does not exceed 0.35P0.

장스팬 비닐하우스의 폭설에 의한 붕괴방지법 연구 (Collapse Prevention Method of Long-span Plastic Greenhouse for Heavy Snow)

  • 김보경;이수헌;김진욱;신경재
    • 한국강구조학회 논문집
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    • 제22권1호
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    • pp.67-74
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    • 2010
  • 최근 기상이변에 따라 폭설로 인한 비닐하우스의 붕괴가 빈번해져서 농가의 피해가 증가하고 있다. 하지만 이에 대한 대책연구는 미약하여 매년 농가의 피해는 되풀이 되고 있다. 그리하여 본 연구에서는 고강도 변단면 부재를 이용한 모듈을 적용하여 근본적인 구조체의 붕괴를 방지하고, 인장타이재를 이용한 추가적인 보강을 통하여 비닐하우스의 붕괴를 방지하고자 한다. 비닐하우스 프레임의 경우 처짐설계보다는 강도설계에 의해 단면이 지배되므로 모멘트가 최대가 되는 부분에 고강도의 변단면 부재를 적용한다. 현재 설치된 비닐하우스의 형태는 아치의 형태를 하고 있으나, 구조적으로는 곡선부(보)와 직선부(기둥)가 불연속의 형상을 하고 있어 연직하중에 대해 아치거동보다는 프레임거동을 하는 취약한 구조시스템이다. 직선부재(기둥) 상단에 폭설 시에만 임시적으로 인장타이재를 추가함으로써 모멘트로 저항하던 프레임 구조체를 축력에 저항하는 타이아치형 구조체로의 단기적인 변화를 유도하여 구조체의 내력을 증가시키고자 한다. 고강도 변단면 부재를 이용하면 조합강도비가 10~30% 정도 감소하였으며, 인장타이재를 이용하여 추가보강하면 조합강도비가 절반 이하로 감소하였다.