• 제목/요약/키워드: exterior beam-column joints

검색결과 111건 처리시간 0.027초

Strengthening of non-seismically designed beam-column joints by ferrocement jackets with chamfers

  • Li, Bo;Lam, Eddie Siu-Shu;Cheng, Yuk-Kit;Wu, Bo;Wang, Ya-Yong
    • Earthquakes and Structures
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    • 제8권5호
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    • pp.1017-1038
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    • 2015
  • This paper presents a strengthening method that involves the use of ferrocement jackets and chamfers to relocate plastic hinge for non-seismically designed reinforced concrete exterior beam-column joints. An experimental study was conducted to assess the effectiveness of the proposed strengthening method. Four half-scale beam-column joints, including one control specimen and three strengthened specimens, were prepared and tested under quasi-static cyclic loading. Strengthening schemes include ferrocement jackets with or without skeleton reinforcements and one or two chamfers. Experimental results have indicated that the proposed strengthening method is effective to move plastic hinge from the joint to the beam and enhance seismic performance of beam-column joints. Shear stress and distortion within the joint region are also reduced significantly in strengthened specimens. Skeleton reinforcements in ferrocement provide limited improvement, except on crack control. Specimen strengthened by ferrocement jackets with one chamfer exhibits slight decrease in peak strength and energy dissipation but with increase in ductility as compared with that of two chamfers. Finally, a method for estimating moment capacity at beam-column interface for strengthened specimen is developed. The proposed method gives reasonable prediction and can ensure formation of plastic hinge at predetermined location in the beam.

A practical model for simulating nonlinear behaviour of FRP strengthened RC beam-column joints

  • Shayanfar, Javad;Bengar, Habib Akbarzadeh
    • Steel and Composite Structures
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    • 제27권1호
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    • pp.49-74
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    • 2018
  • Generally, beam-column joints are taken into account as rigid in assessment of seismic performance of reinforced concrete (RC) structures. Experimental and numerical studies have proved that ignoring nonlinearities in the joint core might crucially affect seismic performance of RC structures. On the other hand, to improve seismic behaviour of such structures, several strengthening techniques of beam-column joints have been studied and adopted in practical applications. Among these strengthening techniques, the application of FRP materials has extensively increased, especially in case of exterior RC beam-column joints. In current paper, to simulate the inelastic response in the core of RC beam-column joints strengthened by FRP sheets, a practical joint model has been proposed so that the effect of FRP sheets on characteristics of an RC joint were considered in principal tensile stress-joint rotation relations. To determine these relations, a combination of experimental results and a mechanically-based model has been developed. To verify the proposed model, it was applied to experimental specimens available in the literature. Results revealed that the model could predict inelastic response of as-built and FRP strengthened joints with reasonable precision. The simple analytic procedure and the use of experimentally computed parameters would make the model sufficiently suitable for practical applications.

CFRP를 이용한 비내진 철근콘크리트 외부 보-기둥 접합부의 내진 보강 (Seismic Retrofit of RC Exterior Beam-Column Joints Strengthened with CFRP)

  • 김민;이기학;이재홍;우성우;이정원
    • 콘크리트학회논문집
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    • 제18권6호
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    • pp.729-736
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    • 2006
  • 적절한 내진상세로 설계되지 않은 철근콘크리트 구조물은 보-기둥 접합부내에서 취약한 전단파괴에 노출되고 큰 변형이 일어나, 구조적인 붕괴가 일어날 수 있다. 본 연구는 CFRP로 보강한 철근콘크리트 외부 보-기둥 접합부를 반복 횡력을 적용하여 보강된 보-기둥 접합부의 내진성능을 알아보았다. 보-기둥 접합부의 구조적 성능을 향상시키기 위해 CFRP의 부착 위치나 두께를 달리하여 효과적인 보강방법을 관찰하고자 하였다. 비내진상세로 배근된 실험체 1개와 내진상세로 배근된 실험체 1개 그리고 비내진상세를 가진 실험체를 CFRP로 보강한 실험체 6개, 총 8개의 보-기둥 접합부 실험체에 반복횡력을 가하여 내진보강의 효과를 조사하였다. 반복 횡력을 적용하였다. 본 연구에서는 비내진상세를 가진 콘크리트 보-기둥 접합부에 대한 CFRP의 보강방법은 구조물의 강도와 연성을 증가시켜 구조물의 내진성능을 향상시키는데 효과적임을 보여 주었다.

반복하중을 받는 외부 보-기둥 접합부에서 작은 헤드를 사용한 Headed Bar적용 (Application of Headed Bars with Small Head in Exterior Beam-Column Joints Subjected to Reversed Cyclic Loads)

  • 하상수;최동욱;이창호
    • 콘크리트학회논문집
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    • 제19권4호
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    • pp.411-420
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    • 2007
  • 본 연구는 반복 수평 하중을 받는 외부 보-기둥 접합부에서 작은 헤드를 사용한 headed bar의 사용성을 검증하기 위해 $90^{\circ}$ 표준갈고리로 정착한 실험체와 headed bar로 정착한 접합부 실험체를 제작하여 각각의 실험 결과를 비교하였다. 또한, headed bar 정착 성능에 영향을 주는 헤드 단면적, 단조 및 반복 가력 여부, 헤드와 보강근의 용접 여부등의 headed bar 인발 성능에 관한 영향을 구명하기 위한 인발실험을 병행하였다. 인발실험의 결과, headed bar의 인발강도는 헤드 면적 증가에 따라 증가하였고, 헤드와 보강근의 용접 유무, 가력 조건 (단조하중 및 반복하중)은 실험 결과에 큰 영향을 미치지 않는 것으로 나타났다. 외부 보-기둥 접합부 실험의 결과, $90^{\circ}$ 표준갈고리로 정착한 실험체와 headed bar로 정착한 실험체가 초기 균열, 균열의 발생 등 모두 거의 비슷한 양상이었으나, 최종 파괴 시에는 headed bar로 정착된 실험체가 $90^{\circ}$ 표준갈고리로 정착된 실험체에 비해 최대 강도 도달 이후 연성 거동, 연성비 및 변형 성능, 에너지소산 면적 등에서 우수한 거동을 보여주었다. 따라서 ACI 352 위원회의 설계지침을 따라서 제작된 접합부 상세와 동일한 조건으로 표준갈고리 대신 상대적으로 작은 headed bar를 사용할 수 있을 것으로 판단된다.

Influence of pinching effect of exterior joints on the seismic behavior of RC frames

  • Favvata, Maria J.;Karayannis, Chris G.
    • Earthquakes and Structures
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    • 제6권1호
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    • pp.89-110
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    • 2014
  • Nonlinear dynamic analyses are carried out to investigate the influence of the pinching hysteretic response of the exterior RC beam-column joints on the seismic behavior of multistory RC frame structures. The effect of the pinching on the local and global mechanisms of an 8-storey bare frame and an 8-storey pilotis type frame structure is evaluated. Further, an experimental data bank extracted from literature is used to acquire experimental experience of the range of the real levels that have to be considered for the pinching effect on the hysteretic response of the joints. Thus, three different cases for the hysteretic response of the joints are considered: (a) joints with strength and stiffness degradation characteristics but without pinching effect, (b) joints with strength degradation, stiffness degradation and low pinching effect and (c) joints with strength degradation, stiffness degradation and high pinching effect. For the simulation of the beam-column joints a special-purpose rotational spring element that incorporates the examined hysteretic options developed by the authors and implemented in a well-known nonlinear dynamic analysis program is employed for the analysis of the structural systems. The results of this study indicate that the effect of pinching on the local and global responses of the examined cases is not really significant at early stages of the seismic loading and especially in the cases when strength degradation in the core of exterior joint has occurred. Nevertheless in the cases when strength degradation does not occur in the joints the pinching may increase the demands for ductility and become critical for the columns at the base floor of the frame structures. Finally, as it was expected the ability for energy absorption was reduced due to pinching effect.

Analytical assessment of RC beam-column connections strengthened with CFRP sheets

  • 기엔;김민;이기학;이재홍
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.470-473
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    • 2006
  • Past experiences from recent earthquakes indicate that shear failures of beam-column connections were one of the main reasons causing significant damages and collapses of RC structures subjected to earthquake loadings. Many researchers and engineers have conducted to propose an effective way to improve the joint shear strength of RC connections. This paper presents an analytical model for the RC exterior beam-column joints strengthened with CFRP sheets. In the analytical model, the effect of shear behavior of the RC beam-column joint, bond slip of the beam longitudinal reinforcements and CFRP sheets were considered and incorporated into the non-linear structural analysis program. Final analytical results were compared with those from the experiment of eight exterior RC beam-column specimens. The analytical results showed that the developed connection model is very useful to investigate the hysteretic joint behavior and overall load-displacement response of the RC beam-column connections strengthened with CFRP sheets.

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헌치를 이용하여 보강된 RC 보-기둥 외부접합부의 반복이력 특성 (Hysteresis Characteristics of RC Exterior Beam-Column Joint Retrofitted with Haunch)

  • 이영욱;박형권
    • 한국지진공학회논문집
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    • 제21권3호
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    • pp.115-123
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    • 2017
  • To investigate the cyclic characteristics of the retrofitted exterior joints of RC frame with haunch, 70% scaled 6 beam-column exterior joint subassemblies were designed according to design guideline according to 1988 and tested with cyclic loading up to 3.5% story drift ratio. During the experiments axial forces are applied to columns to simulate gravity load. Experimental results shows that the strength of retrofitted specimens was increased steadily until 2.5% story drift ratio and their strengths increased more than 1.7 times of the non-retrofitted in case that main bar was bent away from exterior joint. The joint strength and effective stiffness of the retrofitted specimen was increased and results in more deformation capacity compared to the non-retrofitted.

Role of fibers on the performance of geopolymer concrete exterior beam column joints

  • Raj, S. Deepa;Ganesan, N.;Abraham, Ruby
    • Advances in concrete construction
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    • 제9권2호
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    • pp.115-123
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    • 2020
  • The performance of steel fiber reinforced geopolymer concrete beam column joints under cyclic loading was investigated. The volume fraction of fibers considered were 0.25% (19.62 kg/㎥), 0.5% (39.24 kg/㎥), 0.75% (58.86 kg/㎥) and 1% (78.48 kg/㎥). A total of fifteen specimens were prepared and tested under reverse cyclic loading. Test results were analyzed with respect to first crack load, ultimate load, energy absorption capacity, energy dissipation capacity, stiffness degradation and load deflection behavior. Test results revealed that the addition of steel fibers enhanced the performance of geopolymer concrete beam column joints significantly. The joints were analyzed using finite element software ANSYS. The analytical results were found to compare satisfactorily with the experimental values.

Mechanics based force-deformation curve of steel beam to column moment joints

  • Kasar, Arnav A.;Bharti, S.D.;Shrimali, M.K.;Goswami, Rupen
    • Steel and Composite Structures
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    • 제25권1호
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    • pp.19-34
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    • 2017
  • The widespread damage to steel Moment Resisting Frames (MRFs) in past major earthquakes have underscored the need to understand the nonlinear inelastic behaviour of such systems. To assess the seismic performance of steel MRF, it is essential to model the nonlinear force-deformation behaviour of beam to column joints. To determine the extent of inelasticity in a beam to column joint, nonlinear finite element analysis is generally carried out, which is computationally involved and demanding. In order to obviate the need of such elaborate analyses, a simplistic method to predict the force-deformation behaviour is required. In this study, a simple, mechanics driven, hand calculation method is proposed to obtain the forcedeformation behaviour of strong axis beam to column moment joints. The force-deformation behaviour for twenty-five interior and exterior beam to column joints, having column to beam strength ratios ranging from 1.2 to 10.99 and 2.4 to 22, respectively, have been obtained. The force-deformation behaviour predicted using the proposed method is compared with the results of finite element analyses. The results show that the proposed method predicts the force-deformation behaviour fairly accurately, with much lesser computational effort. Further the proposed method has been used to conduct Nonlinear Dynamic Time History Analyses of two benchmark frames; close correspondence of results obtained with published results establishes the usefulness and computational accuracy of the method.

외측 보-기둥 접합부의 정착 상태에 관한 훅크철근의 영향 (Effects of the Number of Hooked Bars on Anchorage Conditions at Exterior Joints)

  • 최기봉
    • 한국구조물진단유지관리공학회 논문집
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    • 제1권2호
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    • pp.151-156
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    • 1997
  • An experimental study was performed on the pull-out behavior of 90-deg standard hooks from exterior beam-column connections. The effects of the number of hooked bars of joint area were investigated. Under the pull-out action of hooked bars, the damage and cracking of joint area tends to be more extensive as the number of hooks pulling out from a joint increases. The pull-out strength and post-peak ductility of hooked bar are adversely influenced by the increase in number of hooks pulling out from an exterior joint. Current hooked bar anchorage design guidelines may be improved by considering the effect of the number of hooked bars on anchorage conditions at exterior joints.

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