• 제목/요약/키워드: RC Connection

검색결과 174건 처리시간 0.02초

강합성 거더용 철근콘크리트 전단연결체의 전단강도 평가 (Estimation of Shear Strength of RC Shear Connection for the Steel-Concrete Composite Girder)

  • 신현섭;유영준;정연주;엄인수
    • 대한토목학회논문집
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    • 제30권3A호
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    • pp.229-239
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    • 2010
  • 최근 건설재료의 효율적 활용과 단면구조의 최적화로써 기존 강합성 거더의 구조성능과 시공성을 향상시키고자 새로운 형상의 강합성 거더 및 거더와 바닥판의 전단합성을 위한 RC 전단연결체가 고안된 바 있다. 본 연구에서는 RC 전단연결체의 구조거동 및 전단강도를 평가하였다. 이를 위해 전단철근비를 변수로 하여 Push-out 실험을 실시하였고, 다양한 설계변수에 대한 유한요소해석을 수행하여 그 결과를 분석하였다. 실험 및 유한요소해석 결과에 의하면 RC 전단연결체의 전단강도를 기존 규준식으로 산정할 경우 매우 안전측으로 평가된다. 본 연구에서는 RC 전단연결체의 전단강도를 적절히 산정하기 위해 회귀분석적 방법으로 전단강도 평가식을 제안하였다.

축력 및 전단력을 받는 RC 띠장-철골 보 접합부의 접합연결재 개발 (Development of Connection Details of RC Wale-Steel Beam Joint Subjected to Axile and Shear Load)

  • 김승훈
    • 한국구조물진단유지관리공학회 논문집
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    • 제8권3호
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    • pp.189-196
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    • 2004
  • RC 띠장과 철골 보의 스터드 접합부는 RC 띠장의 춤이 제한되므로 스터드의 인장 및 전단성능이 저하되어 접합부의 휨 및 전단 저항성능이 감소될 수 있다. 특히 RC 띠장-철골 보 접합부는 토압 및 수압에 의한 압축력을 받는다. 본 논문은 압축력과 전단력을 받는 RC 띠장-철골 보 접합부를 대상으로 접합연결재를 개발하기 위한 실험적 연구를 나타내고 있다. 본 연구에서 개발된 접합연결재는 개방형 C형 철근, 폐쇄형 C형 철근, U형 철근 등이다. 실험을 통하여 개발된 접합연결재를 사용한 접합부의 전단성능이 스터드 접합부와 비교된다. 실험결과에서 개발된 접합연결재가 RC 띠장 철골보 접합부의 전단강도를 증가시키는데 매우 효과적임을 나타내었다.

RC 슬래브와 SC 벽 접합부의 전단마찰 거동에 관한 실험연구 (An Experimental Study on Shear Friction Behavior of RC Slab and SC(Steel Plate Concrete) Wall Structure with Connection Joint)

  • 이경진;황경민;김우범
    • 한국강구조학회 논문집
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    • 제25권6호
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    • pp.623-634
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    • 2013
  • 본 연구에서는 RC 구조 슬래브와 SC 구조 전단벽이 만나는 접합부의 거동특성을 파악하고 RC구조 슬래브-SC구조 전단벽 이질접합부의 전단마찰내력을 평가하고 KEPIC SNG의 접합면 소요전단강도 기준의 안전율을 평가하기 위해 실험연구를 수행하였다. 연구결과, 접합면의 전단마찰내력은 약 300kN으로 나타났고, 변위가 증가할수록 철근의 내력분담이 증가하게 되며, 상부철근보다는 하부철근의 전단내력 분담율이 높은 것으로 나타났다. 하부철근을 구성한 경우에는 하부철근이 없는 실험체에 비해 40% 이상 전단내력이 증가하는 것으로 나타났다.

Friction-based beam-to-column connection for low-damage RC frames with hybrid trussed beams

  • Colajanni, Piero;Pagnotta, Salvatore
    • Steel and Composite Structures
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    • 제45권2호
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    • pp.231-248
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    • 2022
  • Hybrid Steel-Trussed Concrete Beam (HSTCB) is structural typology suitable for light industrialization. HSTCBs usually cover long span with small depths, which lead to significant amount of longitudinal rebars. The latter make beam-column joints more prone to damage due to earthquake-induced cyclic actions. This phenomenon can be avoided using friction-based BCCs. Friction devices at Beam-to-Column Connections (BCCs) have become promising solutions to reduce the damage experienced by structural members during severe earthquakes. Few solutions have been developed for cast-in-place Reinforced Concrete (RC) and steel-concrete composite Moment Resisting Frames (MRFs), because of the difficulty of designing cost-effective damage-proof connections. This paper proposes a friction-based BCC for RC MRFs made with HSTCBs. Firstly, the proposed connection is described, and its innovative characteristics are emphasized. Secondly, the design method of the connection is outlined. A detailed 3D FE model representative of a beam-column joint fitted with the proposed connection is developed. Several monotonic and cyclic analyses are performed, investigating different design moment values. Lastly, the numerical results are discussed, which demonstrate the efficiency of the proposed solution in preventing damage to RC members, and in ensuring satisfactory dissipative capacity.

Nonlinear modeling of a RC beam-column connection subjected to cyclic loading

  • Dominguez, Norberto;Perez-Mota, Jesus
    • Computers and Concrete
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    • 제21권3호
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    • pp.299-310
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    • 2018
  • When reinforced concrete structures are subjected to strong seismic forces, their beam-column connections are very susceptible to be damaged during the earthquake event. Consequently, structural designers try to fit an important quantity of steel reinforcement inside the connection, complicating its construction without a clear justification for this. The aim of this work is to evaluate -and demonstrate- numerically how the quantity and the array of the internal steel reinforcement influences on the nonlinear response of the RC beam-column connection. For this, two specimens (extracted from an experimental test of 12 RC beam-column connections reported in literature) were modeled in the Finite Element code FEAP considering different stirrup's arrays. The nonlinear response of the RC beam-column connection is evaluated taking into account the nonlinear thermodynamic behavior of each component: a damage model is used for concrete; a classical plasticity model is adopted for steel reinforcement; the steel-concrete bonding is considered perfect without degradation. At the end, the experimental responses obtained in the tests are compared to the numerical results, as well as the distribution of shear stresses and damage inside the concrete core of the beam-column connection, which are analyzed for a low and high state of confinement.

Punching performance of RC slab-column connections with inner steel truss

  • Shi, Qingxuan;Ma, Ge;Guo, Jiangran;Ma, Chenchen
    • Advances in concrete construction
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    • 제14권3호
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    • pp.195-204
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    • 2022
  • As a brittle failure mode, punching-shear failure can be widely found in traditional RC slab-column connections, which may lead to the entire collapse of a flat plate structure. In this paper, a novel RC slab-column connection with inner steel truss was proposed to enhance the punching strength. In the proposed connection, steel trusses, each of which was composed of four steel angles and a series of steel strips, were pre-assembled at the periphery of the column capital and behaved as transverse reinforcements. With the aim of exploring the punching behavior of this novel RC slab-column connection, a static punching test was conducted on two full-scaled RC slab specimens, and the crack patterns, failure modes, load-deflection and load-strain responses were thoroughly analyzed to explore the contribution of the applied inner steel trusses to the overall punching behavior. The test results indicated that all the test specimens suffered the typical punching-shear failure, and the higher punching strength and initial stiffness could be found in the specimen with inner steel trusses. The numerical models of tested specimens were analyzed in ABAQUS. These models were verified by comparing the results of the tests with the results of the analyzes, and subsequently the sensitivity of the punching capacity to different parameters was studied. Based on the test results, a modified critical shear crack theory, which could take the contribution of the steel trusses into account, was put forward to predict the punching strength of this novel RC slab-column connection, and the calculated results agreed well with the test results.

분할된 원호판을 이용한 강관두부보강법에 관한 연구 (Reinforcing Method for Steel Pile Head connection in RC footing)

  • 노삼영;김광모;한석희;민인기
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2006년도 춘계 학술발표회 논문집
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    • pp.476-485
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    • 2006
  • The connection system of steel pile and RC footing is an important structure, because the total load of upper construction should be transferred through this joint construction of different two materials-steel and RC-with strongly changed section area. Although many connection systems have been developed, their structural and economical efficiency and workability are often insufficient. Therefore, a new connecting system was developed to improve the problems of current systems. The divided arc plate could improve the workability and economical efficiency, structural efficiency could be reached by welding construction. The main purpose of the research is to evaluate the structural behavior of the new designed connection system through experiments and numerical analysis.

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전단머리 보강 CFT기둥-RC 무량판 접합부의 펀칭전단강도 (Punching Shear Strength of CFT Column to RC Flat Plate Connections Reinforced with Shearhead)

  • 김진원;이철호
    • 한국강구조학회 논문집
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    • 제24권4호
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    • pp.423-433
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    • 2012
  • 본 논문은 전단머리를 갖는 CFT기둥-RC 무량판 접합부에 대한 실물대 실험연구를 요약한 것이다. CFT구조는 여러 가지 구조 및 시공 상의 장점으로 인하여 국내 건설현장에서 상대적으로 짧은 시간에 폭넓게 수용되고 있다. 한편 RC 무량판 구조는 층고절감 및 공기 단축 측면의 장점으로 국내의 지하주차장이나 주거용 건물에 필수적 구조시스템으로 널리 사용되고 있다. 이 두 구조시스템을 조합함으로써 공사기간의 획기적 단축 등 여러 시공 및 구조상의 이점을 극대화할 수 있을 것으로 예상된다. 그러나 CFT기둥-RC 무량판 접합부의 효율적인 디테일은 국내 외적으로 아직 충분히 연구된 바가 없어서 이 분야의 연구가 매우 필요한 실정이다. CFT기둥-RC 무량판 접합부의 구조성능에 영향을 미칠 수 있는 여러 가지 변수를 고려하여 접합상세를 제안하고 실험을 통하여 검증하였다. 실험결과 본 연구에서 제시된 CFT기둥-RC 무량판 접합상세의 펀칭강도는 ACI에서 규정한 RC 무량판 펀칭강도와 동등하거나 상회하는 것을 확인할 수 있었다. 실험결과를 토대로 CFT기둥-RC 무량판의 펀칭전단강도 예측식을 제안하였다.

Failure analysis of steel column-RC base connections under lateral cyclic loading

  • Demir, Serhat;Husem, Metin;Pul, Selim
    • Structural Engineering and Mechanics
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    • 제50권4호
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    • pp.459-469
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    • 2014
  • One of the most important structural components of steel structures is the column-base connections which are obliged to transfer horizontal and vertical loads safely to the reinforced concrete (RC) or concrete base. The column-base connections of steel or composite steel structures can be organized both moment resistant and non-moment resistant leading to different connection styles. Some of these connection styles are ordinary bolded systems, socket systems and embedded systems. The structures are frequently exposed to cycling lateral loading effects causing fatal damages on connections like columns-to-beams or columns-to-base. In this paper, connection of steel column with RC base was investigated analytically and experimentally. In the experiments, bolded connections, socket and embedded connection systems are taken into consideration by applying cyclic lateral loads. Performance curves for each connection were obtained according to experimental and analytical studies conducted and inelastic behavior of connections was evaluated accordingly. The cyclic lateral performance of the connection style of embedding the steel column into the reinforced concrete base and strengthening of steel column in upper level of base connection was found to be higher and effective than other connection systems. Also, all relevant test results were discussed.

Coupling of nonlinear models for steel-concrete interaction in structural RC joints

  • Dominguez, Norberto;Perez-Mota, Jesus
    • Coupled systems mechanics
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    • 제3권2호
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    • pp.195-211
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    • 2014
  • When strong seismic forces act on reinforced concrete structures, their beam-column connections are very susceptible to damage during the earthquake event. The aim of this numerical work is to evaluate the influence of the internal steel reinforcement array on the nonlinear response of a RC beam-column connection when it is subjected to strong cyclic loading -as a seismic load. For this, two specimens (extracted from an experimental test of 12 RC beam-column connections reported in literature) were modeled in the Finite Element code FEAP considering different stirrup's arrays. In order to evaluate the nonlinear response of the RC beam-column connection, the 2D model takes into account the nonlinear thermodynamic behavior of each component: for concrete, a damage model is used; for steel reinforcement, it is adopted a classical plasticity model; in the case of the steel-concrete bonding, this one is considered perfect without degradation. At the end, we show a comparison between the experimental test's responses and the numerical results, which includes the distribution of shear stresses and damage inside the concrete core of the beam-column connection; in the other hand, the effects on the connection of a low and high state of confinement are analyzed for all cases.