• 제목/요약/키워드: Flexural Beam

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탄소섬유시트로 보강된 철근콘크리트 보의 휨성능 (Flexural Capacity of RC Beams Strengthened with Carbon Fiber Sheets)

  • 박현정;조백순
    • 한국구조물진단유지관리공학회 논문집
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    • 제8권3호
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    • pp.177-187
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    • 2004
  • 탄소섬유시트 보강보를 구성하는 재료들의 거동상태에 따라 탄성구간, 항복이전구간, 항복이후구간으로 나누어 보강보의 휨성능을 해석하였다. 보강보 후미해석의 타당성을 검증하기 위해 보강보 실험에서 측정된 항복하중, 최대하중, 휨강성 등을 비교하였다. 검증된 보강보 후미해석 방법으로부터 보강보의 구성재료가 보강보의 휨성능에 기여하는 바를 살펴보았다. 또한 보강보의 최대휨모멘트 산정에 강도설계법의 적용여부를 고찰하였다.

Interaction of internal forces of interior beam-column joints of reinforced concrete frames under seismic action

  • Zhou, Hua;Zhang, Jiangli
    • Structural Engineering and Mechanics
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    • 제52권2호
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    • pp.427-443
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    • 2014
  • This paper presents detailed analysis of the internal forces of interior beam-column joints of reinforced concrete (RC) frames under seismic action, identifies critical joint sections, proposes consistent definitions of average joint shear stress and average joint shear strain, derives formulas for calculating average joint shear and joint torque, and reports simplified analysis of the effects of joint shear and torque on the flexural strengths of critical joint sections. Numerical results of internal joint forces and flexural strengths of critical joint sections are presented for a pair of concentric and eccentric interior connections extracted from a seismically designed RC frame. The results indicate that effects of joint shear and torque may reduce the column-to-beam flexural strength ratios to below unity and lead to "joint-yielding mechanism" for seismically designed interior connections. The information presented in this paper aims to provide some new insight into the seismic behavior of interior beam-column joints and form a preliminary basis for analyzing the complicated interaction of internal joint forces.

점탄성층이 부분적으로 삽입된 샌드위치보의 횡진동 감쇠특성 (Behavior of the Flexural Vibration Damping of a Sandwich Beam System with a Partially Inserted Viscoelastic Layer)

  • 박진택;유형원;장석원;최낙삼
    • 대한기계학회논문집A
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    • 제26권2호
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    • pp.225-233
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    • 2002
  • The flexural vibration characteristics of a sandwich beam system with a partially inserted viscoelastic layer have been quantitatively studied using a finite element analysis in combination with a sine-sweep test. Antisymmetric mode shapes of the flexural vibration were visualized by the holographic interferometry and agreed with those calculated by the finite element simulation. Effects of the beam thickness as well as the length and thickness of partial viscoelastic layers on the system loss factor(η$\_$s/) and resonant frequency($\omega$$\_$r/) were significantly large fur the symmetric and antisymmetric modes of the beam system.

Study on dynamic flexural stiffness of CFST members through Bayesian model updating

  • Shang-Jun Chen;Chuan-Chuan Hou
    • Steel and Composite Structures
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    • 제51권6호
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    • pp.697-712
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    • 2024
  • In this paper, the dynamic flexural stiffness of concrete-filled steel tubular (CFST) members is investigated based on vibration modal testing and a Bayesian model updating procedure. To reflect the actual service states of CFST members, a 3-stage modal testing procedure is developed for 6 circular CFST beam-columns, in which the modal parameters of the specimens under varying axial load levels are extracted. In the model updating procedure, a Timoshenko beam element model is first established, in which the influence of shear deformation and rotational inertia are incorporated. Subsequently, a 2-round Bayesian model updating strategy is proposed to calculate the dynamic flexural stiffness of the specimens, which could effectively consider the influence of physical constraints in the updating process and achieve reasonably well results. Analysis of the updating results shows that with the increase of the axial load level, degradation of the flexural stiffness is significantly influenced by the load eccentricity. It shows that the cracking of the core concrete is the primary reason for the flexural stiffness degradation of CFST beam-columns. Finally, based on comparison with equations proposed by several design standards, the calculation methods for the dynamic flexural stiffness of CFST members is recommended.

유리섬유시트로 보강된 RC 보의 휨 거동에 관한 연구 (Flexural Behaviors of Reinforced Concrete Beams Strengthened with Glass Fiber Sheets)

  • 김성도;조백순;성진욱
    • 한국철도학회논문집
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    • 제12권3호
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    • pp.388-395
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    • 2009
  • 유리섬유시트로 보강된 철근콘크리트 보의 휨 거동을 조사하기 위해, 하나의 기준보와 8개의 보강보(4개의 NU-보강보, 4개의 U-보강보)에 대한 보강보 휨 실험을 수행하였다. NU 보강보는 단부에 U 밴드를 적용하지 않은 보를, U-보강보는 U 밴드를 가진 보를 의미한다. 보강보 실험에서의 실험변수들은 유리섬유시트의 보강 양, U 밴드의 유무 등이 있다. 기준보와 비교하여 NU 보강보와 U 보강보의 최대하중은 각각 48%와 34% 증가하였으며, 휨 강성은 각각 920%와 880% 증가하였다. NU 보강보와 U 보강보에 대한 연성지수는 1.43에서 2.60 사이에 놓여있다. U 밴드를 가진 보강 시스템은 섬유시트의 계면박리 파괴를 지연시키고, U 밴드가 없는 보강시스템보다 나은 연성거동을 나타내 보였다. NU 보강보와 U 보강보 모두에서 섬유시트 겹수의 증가에 따라 최대하중과 휨 강성은 증가하였다. 실험결과들을 이론적인 비선형 휨 해석결과와 비교하였으며, 잘 일치함을 확인하였다.

강재 기둥과 하이브리드 강재 보-RC 보 접합부의 반복 휨 거동 평가 (Evaluation on Cyclic Flexural Behavior of HSRC (Hybrid H-steel-reinforced Concrete) Beams Connected with Steel Columns)

  • 권혁진;양근혁;홍승현
    • 콘크리트학회논문집
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    • 제29권3호
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    • pp.291-298
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    • 2017
  • 이 연구에서는 강재 기둥과 접합된 하이브리드 H-보-철근 콘크리트 보(HSRC)의 반복 휨 거동을 평가하였다. 실험 변수는 HSRC 보의 연결절점에 배근되는 장부철근의 유무이다. HSRC 보의 소성힌지는 RC 보보다는 기둥 접합부 부근의 H-보에서 형성되도록 유도하였다. 모든 실험체는 하중의 급격한 감소 없이 연성적인 거동을 보였으며, 비록 예상치 못한 H-기둥과 H-보 용접 접합부의 파괴가 발생하였지만, 결과적으로 4.6 이상의 변위연성비를 나타내었다. HSRC 보 시스템에서 RC 보의 균열진전, 휨 강도 및 연성에 대한 장부철근의 영향은 매우 미미하였다. HSRC 보 시스템의 휨 강도는 단면의 완전소성으로 가정하여 산정한 H-보의 최대 휨 내력에 비해 안전 측에서 평가될 수 있었다.

U-플랜지 트러스 복합보의 휨 내력에 대한 실험 연구 (Experimental Study on the Flexural Capacity of the U-Flanged Truss Hybrid Beam)

  • 오명호;김영호;김명한
    • 한국공간구조학회논문집
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    • 제18권4호
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    • pp.123-130
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    • 2018
  • U-flanged truss beam is composed of u-shaped upper steel flange, lower steel plate of 8mm or more thickness, and connecting lattice bars welded on the upper and lower sides. The hybrid beam with U-flanged steel truss is made in the construction site through pouring the concrete, and designated as U-flanged truss hybrid beam. In this study the structural experiments on the 4 hybrid beams with the proposed basic shapes were performed, and the flexural capacities from the tests were compared with those from the theoretical approach. The failure modes of each specimen were quite similar. The peak load was reached with the ductile behavior after yielding, and the failure occurred through the concrete crushing. The considerable increasement of deformation was observed up to the concrete crushing. The composite action of concrete and steel member was considered to be reliable from the behavior of specimens. The flexural strength of hybrid beam has been evaluated exactly using the calculation method applied in the boubly reinforced concrete beam. The placement of additional rebars in the bottom instead of upper side is proposed for the efficient design of U-flanged truss hybrid beam.

Effects of strain hardening of steel reinforcement on flexural strength and ductility of concrete beams

  • Ho, J.C.M.;Au, F.T.K.;Kwan, A.K.H.
    • Structural Engineering and Mechanics
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    • 제19권2호
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    • pp.185-198
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    • 2005
  • In the design of reinforced concrete beams, it is a standard practice to use the yield stress of the steel reinforcement for the evaluation of the flexural strength. However, because of strain hardening, the tensile strength of the steel reinforcement is often substantially higher than the yield stress. Thus, it is a common belief that the actual flexural strength should be higher than the theoretical flexural strength evaluated with strain hardening ignored. The possible increase in flexural strength due to strain hardening is a two-edge sword. In some cases, it may be treated as strength reserve contributing to extra safety. In other cases, it could lead to greater shear demand causing brittle shear failure of the beam or unexpected greater capacity of the beam causing violation of the strong column-weak beam design philosophy. Strain hardening may also have certain effect on the flexural ductility. In this paper, the effects of strain hardening on the post-peak flexural behaviour, particularly the flexural strength and ductility, of reinforced normal- and high-strength concrete beams are studied. The results reveal that the effects of strain hardening could be quite significant when the tension steel ratio is relatively small.

건축용 프리캐스트 프리스트레스트 역티형 보와 직사각형 보의 휨거동 비교 (Comparison on Flexural Behaviors of Architectural Precast Prestressed Rectangular and Inverted-tee Concrete Beams)

  • 유승룡
    • 콘크리트학회논문집
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    • 제12권6호
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    • pp.75-82
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    • 2000
  • Flexural behaviors of two typical architectural precast beam sections ; inverted tee and rectangular - were compared and investigated. The heights of web in inverted tee beams are generally less than half of beam depth in building structures to accomodate the nib of double-tee where the total building height limited considerably. The inverted-tee beams are designed for parking live load - 500kgf/$\m^2$ and market - 1,200kgf/$\m^2$ according to the currently used typical shape in the domestic market building site in Korea. The bottom dimension and area of rectangular beams are same to those of inverted tee beams to compare the flexural behaviors of two beams. These two beams are also reinforced for similar strength. Four flexural tests are performed on two beams. Following results are obtained from the tests; 1) The rectangular beam is simpler in production, transportation, and election, and more economic than the inverted tee beam for these two beams with same dimension and similar strength. 1) The estimations of flexural strength of two beams by Strength Design Method and Strain Compatibility Method is fully complied with the result of tests. However, Strain Compatibility Method is slightly ore accurate than Strength Design Method. 2) Overall deflections of two type beam under the service loads are less than those of the allowable limit in ACI Code provision. 3) The rectangular beam is failed in large deflection (average 12.56mm large) than those of inverted tee beams. 4) The rectangular and inverted tee beams with 6m span develop initial flexural crackings under the 88% of full service loading even though they designed to satisfy the ACI tensile stress limit provisions.

Physical insight into Timoshenko beam theory and its modification with extension

  • Senjanovic, Ivo;Vladimir, Nikola
    • Structural Engineering and Mechanics
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    • 제48권4호
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    • pp.519-545
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    • 2013
  • An outline of the Timoshenko beam theory is presented. Two differential equations of motion in terms of deflection and rotation are comprised into single equation with deflection and analytical solutions of natural vibrations for different boundary conditions are given. Double frequency phenomenon for simply supported beam is investigated. The Timoshenko beam theory is modified by decomposition of total deflection into pure bending deflection and shear deflection, and total rotation into bending rotation and axial shear angle. The governing equations are condensed into two independent equations of motion, one for flexural and another for axial shear vibrations. Flexural vibrations of a simply supported, clamped and free beam are analysed by both theories and the same natural frequencies are obtained. That fact is proved in an analytical way. Axial shear vibrations are analogous to stretching vibrations on an axial elastic support, resulting in an additional response spectrum, as a novelty. Relationship between parameters in beam response functions of all type of vibrations is analysed.