• 제목/요약/키워드: Flexural Member

검색결과 322건 처리시간 0.025초

콘크리트 합성 유리섬유 복합소재 압축부재의 거동특성 (Structural Characteristics of Concrete Filled GFRP Composite Compression Member)

  • 이성우;최석환;손기훈;김성태
    • 한국전산구조공학회:학술대회논문집
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    • 한국전산구조공학회 2001년도 봄 학술발표회 논문집
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    • pp.181-188
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    • 2001
  • Due to many advantage of advanced composite material, research on the composite compression member is initiated. In this paper structural characteristics of concrete filled glass fiber reinforced composite tubular member is studied. Through 4-point flexural test with various level of axial force, the performance of composite compression member was analyzed. Also numerical method to find P-M diagram of composite compression member was developed. It is demonstrated that result of numerical method agree well with experimental results.

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외부 부분 부착 PSC 보의 휨거동 실험 (An Experiment of Flexural Behavior for the Prestressed Concrete Beams with Partially Bonded External Tendons)

  • 유성원;이상준
    • 한국안전학회지
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    • 제27권5호
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    • pp.141-147
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    • 2012
  • Recently, the external prestressed concrete structures are increasingly being built. The mechanical behavior of prestressed concrete beams with external tendon is different from that of normal bonded PSC beams in that the increment of tendon stress was derived by whole member behavior. By this reason, the ultimate stress of external tendon is smaller than that of bonded tendon or internal unbonded tendon. The purposes of the present paper are therefore to improve the mechanical behavior of external unbonded tendon by using partially bonded external tendon and to evaluate the flexural behavior of partially bonded external tendon by the flexural member experiment. From the experimental results, before flexural cracking, there was no difference between external unbonded, partially bonded and bonded tendons. However, after cracking, yielding load of reinforcement, ultimate load, and tendon stress were increased in the sequence of external unbonded, partially bonded and bonded tendon members. The equation of ACI-318 and AASHTO 1994 were not matched with test results and had no correlations. So the newly proposed equation will be needed including the consideration of tendon profile, tendon bonded type, and so on. The proposed partially bonded external tendon in this paper will be a effective basis for the evaluation of external tendons in construction and design.

비선형 휨 및 전단 힌지 사이의 불평형력 해소를 위한 수렴계산 기법 (An Iterative Scheme for Resolving Unbalanced Forces Between Nonlinear Flexural Bending and Shear Springs in Lumped Plasticity Model)

  • 김유석
    • 한국지진공학회논문집
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    • 제26권6호
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    • pp.227-235
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    • 2022
  • For a member model in nonlinear structural analysis, a lumped plastic model that idealizes its flexural bending, shear, and axial behaviors by springs with the nonlinear hysteretic model is widely adopted because of its simplicity and transparency compared to the other rigorous finite element methods. On the other hand, a challenging task in its numerical solution is to satisfy the equilibrium condition between nonlinear flexural bending and shear springs connected in series. Since the local forces between flexural and shear springs are not balanced when one or both springs experience stiffness changes (e.g., cracking, yielding, and unloading), the additional unbalanced force due to overshooting or undershooting each spring force is also generated. This paper introduces an iterative scheme for numerical solutions satisfying the equilibrium conditions between flexural bending and shear springs. The effect of equilibrium iteration on analysis results is shown by comparing the results obtained from the proposed method to those from the conventional scheme, where the equilibrium condition is not perfectly satisfied.

Flexural ductility and deformability of reinforced and prestressed concrete sections

  • Au, Francis T.K.;Leung, Cliff C.Y.;Kwan, Albert K.H.
    • Computers and Concrete
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    • 제8권4호
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    • pp.473-489
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    • 2011
  • In designing a flexural member for structural safety, both the flexural strength and ductility have to be considered. For this purpose, the flexural ductility of reinforced concrete sections has been studied quite extensively. As there have been relatively few studies on the flexural ductility of prestressed concrete sections, it is not well understood how various structural parameters affect the flexural ductility. In the present study, the full-range flexural responses of reinforced and prestressed concrete sections are analyzed taking into account the nonlinearity and stress-path dependence of constitutive materials. From the numerical results, the effects of steel content, yield strength and degree of prestressing on the yield curvature and ultimate curvature are evaluated. It is found that whilst the concept of flexural ductility in terms of the ductility factor works well for reinforced sections, it can be misleading when applied to prestressed concrete sections. For prestressed concrete sections, the concept of flexural deformability in terms of ultimate curvature times overall depth of section may be more appropriate.

UHPCC 휨부재 제작 시 타설 중 충전방향에 따른 휨인장거동의 변화 (Comparison of Flexural Tensile Behaviors with Different Filling Directions in Producing UHPCC Flexural Member)

  • 강수태;류금성;고경택;김선용
    • 대한토목학회논문집
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    • 제34권2호
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    • pp.447-455
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    • 2014
  • 본 연구는 UHPCC (Ultra High Performance Cementitious Composites)에서 섬유배열 유도의 효율성을 평가하기 위한 연구의 일환으로, 흐름특성을 달리한 다양한 방법으로 UHPCC 부재를 제작하여 휨거동의 변화를 비교하고, 섬유 배열특성과의 상관관계를 정성적으로 분석하였다. 실험을 통해 섬유배열 유도방법에 따라 휨거동의 차이가 크게 나타남을 확인하였다. 일반적인 휨실험체 제작방법으로, 섬유가 주인장방향으로 배열되도록 유도한 경우가 다른 방법으로 제작된 휨실험체에 비해 더 높은 휨인장강도와 낮은 변동성을 보였다. 따라서 실제 UHPCC 부재에서의 재료의 휨인장강도는 실험실 수준에서 측정한 휨인장강도와 비교하여 크게 다를 수 있고, 변동성도 더 크게 나타날 수 있음을 반드시 고려해야 할 것이다. 한편, UHPCC의 유동흐름에 따른 섬유의 배열특성의 변화를 흐름의 종류 및 경계면 효과를 고려하여 정성적으로 예측하였으며, 이러한 예측결과는 실험에서 여러 가지 형태로 유도된 유동흐름에 따른 휨인장거동의 변화를 잘 설명하였다.

Out-of-plane buckling and bracing requirement in double-angle trusses

  • Chen, Shaofan;Su, Mingzhou
    • Steel and Composite Structures
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    • 제3권4호
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    • pp.261-275
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    • 2003
  • Truss members built-up with double angles back-to-back have monosymmetric cross-section and twisting always accompanies flexion upon the onset of buckling about the axis of symmetry. Approximate formulae for calculating the buckling capacity are presented in this paper for routine design purpose. For a member susceptible only to flexural buckling, its optimal cross-section should consist of slender plate elements so as to get larger radius of gyration. But, occurrence of twisting changes the situation owing to the weakness of thin plates in resisting torsion. Criteria for limiting the leg slenderness are discussed herein. Truss web members in compression are usually considered as hinged at both ends for out-of-plane buckling. In case one (or both) end of member is not supported laterally by bracing member, its adjoining members have to provide an elastic support of adequate stiffness in order not to underdesign the member. The stiffness provided by either compression or tension chords in different cases is analyzed, and the effect of initial crookedness of compression chord is taken into account. Formulae are presented to compute the required stiffness of chord member and to determine the effective length factor for inadequately constrained compressive diagonals.

탄소섬유시트를 이용한 I형 PFRP 부재의 휨보강 효과 (The Flexural Strengthening Effect of I-Shape PFRP Member Using Carbon Fiber Sheet)

  • 이영근;김선희;이강연;윤순종
    • 복합신소재구조학회 논문집
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    • 제4권2호
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    • pp.1-7
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    • 2013
  • In recent years, fiber reinforced polymer plastic composites are readily available in the construction industry. Fiber reinforced polymer composite has many advantages such as high specific strength and high specific stiffness, high corrosion resistance, light-weight, magnetic transparency, etc. In this paper, we present the result of investigation pertaining to the flexural behavior of flange strengthened I-shape pultruded fiber reinforced polymer plastic (PFRP) member using carbon fiber sheet (CFRP sheet). Test variable is consisted of the number of layers of strengthening CFRP sheet from 0 to 3. From the experimental results, flexural strengthening effect of flange strengthened I-shape PFRP member using CFRP sheet is evaluated and it was found that 2 layers of strengthening CFRP sheet are appropriate considering efficiency and workability.

재하된 H형강 휨재의 열응력해석을 이용한 한계온도 산정 (Calculation of Limit Temperature on H-Beam Flexural Member Through the Thermal Stress Analysis under the Lateral Load)

  • 윤성기;이치형;구본훈
    • 한국강구조학회 논문집
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    • 제27권4호
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    • pp.387-397
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    • 2015
  • 국내의 내화성능평가는 대부분 사양적설계 방법인 품질시험을 통해 이뤄지고 있다. 하지만 시험 특성상 많은 비용과 시간을 요구하며 다양한 건축구조에 대한 내화성능평가에는 어려움이 많다. 따라서 본연구에서는 성능적 설계를 위한 연구로 유한요소 구조해석 프로그램인 ABAQUS를 사용해 H형강 휨재를 대상으로 변수에 따른 열응력 해석을 통해 내화성능을 검토하며, 하중비별 한계온도를 제안한다.

축력이 철근콘크리트 휨부재의 거동과 평균 균열간격에 미치는 영향 (The Effect of Axial Force on the Behavior and Average Crack Spacing of Reinforced Concrete Flexural Member)

  • 양은익;김진근;이성태;임전사랑
    • 콘크리트학회지
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    • 제9권4호
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    • pp.207-214
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    • 1997
  • 본 연구는변형구속에 의해 생기는 축력이 철근콘크리트 휨부재의 역학적 거동과 평균 균열간격에 미치는 영향을 검토하기 위해 수행되었다. 이를 위하여 변형구속 및 무구속 조건하에서의 휨강도와 휨강성을 실험으로 구하였으며, 또한 축방향 구속을 받는 휨부재의 평균 균열간격을 예측하는 식을 제안하였다.

래티스재의 인장력을 고려한 U-플랜지 트러스 복합보의 휨 내력에 관한 연구 (The Flexural Capacity of the U-flanged Truss Hybrid Beam considering the Tensile Force of Lattice Members)

  • 이성민;오명호;김영호
    • 한국공간구조학회논문집
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    • 제23권1호
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    • pp.53-60
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    • 2023
  • A bending experiment was conducted to verify the structural performance of the U-flange truss hybrid bean using rebars or steel pipes to reinforce the upper compression zone. As a result of evaluating the bending strength of the truss hybrid beam according to the Structural Design Standard (KDS 14 2020: 2022) by introducing the lattice member as a tensile resistance element, the following conclusions were obtained. Considering the lattice element as a tensile resistance element, the nominal bending strength was increased by 38.57 to 47.90 kN.m. As a result of reviewing the experiment as to whether the flexural member has proper ductility, it was found that it is desirable to place appropriate rebars, steel quality plans, and lateral restraints on the upper and lower parts of the hybrid beam to have sufficient ductility ratio.