• 제목/요약/키워드: FRP Failure Strain

검색결과 75건 처리시간 0.027초

파괴 거동을 고려한 FRP-콘크리트 합성 바닥판의 단면 설계에 관한 연구 (A Study on the Section Design of FRP-Concrete Composite Slabs Considering Failure Behaviors)

  • 조근희;김병석;이영호
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 가을 학술발표회 논문집
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    • pp.641-646
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    • 2002
  • FRP-concrete composite slab is consisted of brittle materials and then shows brittle failure mechanism. This study suggests a new design approach that FRP-concrete composite slab leads to ductile failure, and investigates their failure behaviors for two types of section by numerical analysis. Box-type section is higher than I-type section in load capacity to required FRP quantity. Each section was designed so that the strain of FRP plate is 50% to its ultimate strain on initiation of concrete crushing, and it is verified that displacement ductility is more than two. Ductility capacity can be improved by reducing the strain of FRP on initiation of concrete crushing, but as the strain of FRP is reduced load capacity to required FRP quantity is also reduced. Therefore section optimization study is needed considering safety and economical efficiency.

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FRP 보강 철근콘크리트 부재의 휨모멘트 (Moment Capacity of Reinforced Concrete Members Strengthened with FRP)

  • 조백순;김성도;백성용;최은수;최용주
    • 한국전산구조공학회논문집
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    • 제23권3호
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    • pp.315-323
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    • 2010
  • FRP 보강단면의 공칭휨모멘트 산정에 강도설계법의 적용 타당성을 검토하기 위하여 5종류의 콘크리트 압축응력-변형률 모델을 적용하였으며, 컴퓨터 프로그램 언어를 이용하여 보강단면 휨해석을 실시하였다. 그 결과 보강단면의 휨해석에 콘크리트 압축응력-변형률 모델은 거의 영향을 미치지 않는 것으로 나타났다. 콘크리트 압축변형률이 0.003일 때, 휨해석으로 산정된 보강단면의 휨모멘트와 강도설계법으로 산정된 공칭휨모멘트는 거의 일치하는 것으로 나타났다. 그러나 보강단면의 인장철근비, FRP비, FRP 파단변형률, 콘크리트 압축변형률 등이 상대적으로 낮을수록, 강도설계법은 보강단면의 휨성능을 과대평가하는 것으로 해석결과에 나타났다.

FRP 와이어 보강 콘크리트 공시체의 압축거동 (Axial Behavior of Concrete Cylinders Confined with FRP Wires)

  • 조백순;이종한;최은수
    • 대한토목학회논문집
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    • 제33권5호
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    • pp.1765-1775
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    • 2013
  • 콘크리트 공시체의 압축강도와 연성성능을 향상시키기 위하여 FRP 와이어의 적용을 실험적으로 연구하였다. 와이어 보강겹수와 콘크리트 압축강도의 변화가 고려된 와이어 보강 공시체의 압축실험을 실시하였다. FRP 와이어 보강 공시체 압축실험에서 측정된 축방향변형률, 원주방향변형률, 체적변형률에 의한 와이어 내부 콘크리트의 손상상태를 분석하여 와이어 보강효과를 평가하였다. FRP 와이어 보강 공시체의 응력-변형률 선도는 두 개의 직선구간과 변환구간으로 구성된 것으로 측정되었으며, 균열이후구간에서 응력상승거동하였다. 와이어 보강 공시체의 균열강도와 최대강도는 와이어 보강겹수에 비례하여 증가하는 것으로 평가되었다. 와이어가 3겹 보강된 35 MPa 공시체의 최대강도는 무보강 공시체의 압축강도보다 286% 높게 측정되었다. FRP 와이어 보강 공시체의 내부 콘크리트 파괴형태는 i) 수직균열 또는 경사균열파괴; ii) 수평균열파괴로 구분되었다. 특히, 수평균열파괴는 와이어에 의한 구속약화로 인하여 갑자기 내부 콘크리트가 팽창하는 부분과 와이어가 아직 내부 콘크리트를 효과적으로 구속하는 부분의 전단효과로 발생하였으며, 수평균열은 공시체의 중앙부를 기준으로 여러 면으로 발생하였으며, 와이어에 의한 구속효과가 우수한 공시체에 발생하였다. FRP 와이어 보강 공시체 압축실험에서 와이어 최대파단변형률에 대한 인장파단변형률의 비가 55-90%로 측정되었으며, 평균 69.5%로 나타났다. 이는 일반 FRP 시트 보강 공시체 실험에서 측정된 시트 파단변형률보다 다소 높은 값으로 FRP 와이어 보강 공법의 우수성을 입증한다.

유리섬유쉬트로 전단보강된 RC보의 전단강도에 대한 보강매수 및 형태의 영향 (Shear Strength of RC Beams Strengthened with GFRP Sheets with Different Details)

  • 최기선;유영찬;김긍환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(I)
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    • pp.251-254
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    • 2005
  • A number of studies have been conducted on FRP shear strengthening of RC beams during the past decade. The test results indicated. that the strengthened specimens failed predominantly by debonding of the FRP sheets before reaching the rupture strength of FRP sheets. For this reason, limits on the effective strain in FRP have been incorporated in ACI 440.2R recommendation considering debonding failure. This paper presents the test results of 7 small scale RC beams shear-strengthened with glass fiber sheets. Three types of FRP configurations, such as two sides bonded, U wrap and fiber shear-key embedded, were considered. GFRP sheet were bonded vertically to member axis along the shear span. From the test results, it was found that debonding strain of GFRP sheets at failure decreased with the number of layers. In addition, effective strain of FRP proposed by ACI 440.2R recommendation has been verified in this study.

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Interfacial mechanical behaviors of RC beams strengthened with FRP

  • Deng, Jiangdong;Liu, Airong;Huang, Peiyan;Zheng, Xiaohong
    • Structural Engineering and Mechanics
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    • 제58권3호
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    • pp.577-596
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    • 2016
  • FRP-concrete interfacial mechanical properties determine the strengthening effect of RC beams strengthened with FRP. In this paper, the model experiments were carried out with eight specimens to study the failure modes and the strengthening effect of RC beams strengthened with FRP. Then a theoretical model based on interfacial performances was proposed and interfacial mechanical behaviors were studied. Finite element analysis confirmed the theoretical results. The results showed that RC beams strengthened with FRP had three loading stages and that the FRP strengthening effects were mainly exerted in the Stage III after the yielding of steel bars, including the improvement of the bearing capacity, the decreased ultimate deformation due to the sudden failure of FRP and the improvement of stiffness in this stage. The mechanical formulae of the interfacial shear stress and FRP stress were established and the key influence factors included FRP length, interfacial bond-slip parameter, FRP thickness, etc. According to the theoretical analysis and experimental data, the calculation methods of interfacial shear stress at FRP end and FRP strain at midspan were proposed. When FRP bonding length was shorter, interfacial shear stress at FRP end was larger that led to concrete cover peeling failure. When FRP was longer, FRP reached the ultimate strain and the fracture failure of FRP occurred. The theoretical results were well consistent with the experimental data.

Strength and strain enhancements of concrete columns confined with FRP sheets

  • Campione, G.;Miraglia, N.;Papia, M.
    • Structural Engineering and Mechanics
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    • 제18권6호
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    • pp.769-790
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    • 2004
  • The compressive behavior up to failure of short concrete members reinforced with fiber reinforced plastic (FRP) is investigated. Rectangular cross-sections are analysed by means of a simplified elastic model, able also to explain stress-concentration. The model allows one to evaluate the equivalent uniform confining pressure in ultimate conditions referred to the effective confined cross-section and to the effective stresses in FRP along the sides of section; consequently, it makes it possible to determine ultimate strain and the related bearing capacity of the confined member corresponding to FRP failure. The effect of local reinforcements constitute by single strips applied at corners before the continuous wrapping and the effect of round corners are also considered. Analytical results are compared to experimental values available in the literature.

FRP로 보강된 철근콘크리트 보의 유효 변형률 예측에 대한 실험적 연구 (An Experimental Study on the Effective Strain of Reinforced Concrete Beams Strengthened by Fiber Reinforced Polymer)

  • 황현복;이정윤
    • 콘크리트학회논문집
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    • 제19권2호
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    • pp.145-151
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    • 2007
  • 섬유에 의하여 보강된 철근콘크리트 보는 철근만에 의하여 보강된 보와 다른 파괴 모드를 나타낸다. 섬유 보강 보는 섬유의 양, 내부 전단 보강 철근의 양 및 콘크리트의 압축강도에 따라서 전단 보강 철근이 항복하고 콘크리트가 압축 파괴하는 경우(섬유는 탄성 상태)와 콘크리트가 압축파괴하기 이전에 섬유가 파단하는 경우로 구별할 수 있다. 대부부의 섬유 보강 철근콘크리트 보는 전자의 파괴 모드를 나타내며 이 경우에 전단파괴 시의 섬유의 유효변형률을 정확하게 예측하여야 한다. 이 연구에서는 11개의 섬유 보강 철근콘크리트 보 실험을 통하여 섬유의 유효변형률을 측정하였다 실험의 주요 변수는 섬유의 양, 섬유의 종류(탄소 섬유, 유리 섬유), 부착 형상 (전단면 감싸기, 스트립형 부착)이었다. 실험에 의하여 측정된 섬유의 유효변형률은 제안된 유효변형률 예측법과 비교되었다.

탄소섬유복합체로 보강된 RC부재의 보강재 강성에 따른 휨 보강성능 (Flexural Performance of RC Beams Strengthened with Diffrent Amount of CFRP Composite)

  • 유영찬;최기선;김긍환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.129-132
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    • 2006
  • It is generally reported that most of RC beams strengthened with simply bonded FRP composite is failed by FRP debonding. Also, the flexural performance of RC member strengthened with FRP composite can be calculated using the effective strain of FRP. The effective strain as a result of the debonding failure depends on many variables, such as FRP stiffness including the thickness($t_f$) and modulus of elasticity($E_f$), the amount of FRP but the FRP stiffness is reportedly the most influential. The purpose of this paper, therefore, is to examine effects of FRP stiffness on the flexural strengthening of RC beams. 4 different stiffness of CFRP composite including CFRP sheet and laminae were selected. From the tests, it was found that the flexural performance of RC beams strengthened with CFRP composite can be calculated based on the effective strain of the CFRP composite and the effective strain is inversely proportional to the CFRP stiffness.

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하이브리드 FRP 리바의 역학적 특성 (Mechanical Properties of Hybrid FRP Rebar)

  • 박찬기;원종필
    • 한국농공학회지
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    • 제45권2호
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    • pp.58-67
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    • 2003
  • Over the last decade fiber-reinforced polymer (FRP) reinforcement consisting of glass, carbon, or aramid fibers embedded in a resin such as vinyl ester, epoxy, or polyester has emerged as one of the most promising and affordable solutions to the corrosion problems of steel reinforcement in structural concrete. But reinforcing rebar for concrete made of FRP rebar has linear elastic behavior up to tensile failure. For safety a certain plastic strain and an elongation greater than 3% at maximum load is usually required for steel reinforcement in concrete structures. The same should be required for FRP rebar. Thus, the main object of this study was to develop new type of hybrid FRP rebar Also, this study was evaluated to the mechanical properties of Hybrid FRP rebar. The Manufacture of the hybrid FRP rebar was achieved by pultrusion, and braiding and filament winding techniques. Tensile and interlaminar shear test results of Hybrid FRP rebar can provide its excellent tensile strength-strain behavior and interlaminar stress-strain behavior.

Intermediate crack-induced debonding analysis for RC beams strengthened with FRP plates

  • Wantanasiri, Peelak;Lenwari, Akhrawat
    • Structural Engineering and Mechanics
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    • 제56권3호
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    • pp.473-490
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    • 2015
  • This paper presents the analysis of intermediate crack-induced (IC) debonding failure loads for reinforced concrete (RC) beams strengthened with adhesively-bonded fiber-reinforced polymer (FRP) plates or sheets. The analysis consists of the energy release and simple ACI methods. In the energy release method, a fracture criterion is employed to predict the debonding loads. The interfacial fracture energy that indicates the resistance to debonding is related to the bond-slip relationships obtained from the shear test of FRP-to-concrete bonded joints. The section analysis that considers the effect of concrete's tension stiffening is employed to develop the moment-curvature relationships of the FRP-strengthened sections. In the ACI method, the onset of debonding is assumed when the FRP strain reaches the debonding strain limit. The tension stiffening effect is neglected in developing a moment-curvature relationship. For a comparison purpose, both methods are used to numerically investigate the effects of relevant parameters on the IC debonding failure loads. The results show that the debonding failure load generally increases as the concrete compressive strength, FRP reinforcement ratio, FRP elastic modulus and steel reinforcement ratio increase.