• 제목/요약/키워드: precast connection

검색결과 216건 처리시간 0.029초

비대칭 격벽단면을 갖는 프리캐스트 바닥판 이음부의 구조성능 평가 (Evaluation on Structural Performance of Joint with Asymmetric Ribbed Connection Details used in Precast Bridge Deck)

  • 정철헌;변태관;김인규;신동호;이한주
    • 콘크리트학회논문집
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    • 제29권2호
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    • pp.159-167
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    • 2017
  • 프리캐스트 바닥판은 공기단축 및 고품질 확보라는 장점으로 인해 급속시공이 요구되는 현장에서 현장타설 바닥판의 효과적인 대안으로 평가받고 있다. 그러나 프리캐스트 바닥판 공법은 바닥판간 이음부가 존재하며, 이음부의 연결성능에 따라 전체 교량 구조물의 성능이 좌우되므로 이음부의 연결성능 확보가 중요한 요소이다. 본 연구에서는 기존의 프리캐스트 바닥판 연결시스템을 개선한 비대칭 구조의 요철형 이음단면을 갖는 연결형식을 제안하였으며, 요철의 격벽길이에 따른 구조실험을 수행하여 제안된 연결형식의 휨성능을 평가하였다. 실험결과, 본 연구에서 제안된 연결형식은 격벽 부분에서의 철근의 정착 및 부착파괴 방지가 가장 중요한 요소인 것으로 나타났으며, 이음부 단면 요철의 격벽길이를 짧게 하는 것이 일체형 구조로서의 효과를 발휘하는 데에 보다 유리한 것으로 나타났다. 요철의 격벽길이 증가에 따라 구조성능이 다소 감소되는 것으로 나타났으나 격벽의 길이와 관계없이 제안된 연결형식은 충분한 휨 저항성능을 확보하고 있으며, 프리캐스트 바닥판 이음부에 효과적으로 적용 가능할 것으로 판단된다.

새로운 형식의 Precast 바닥판 연결방법 개발 (Development of Precast deck Joint System)

  • 주봉철;김영진;김병석;류형근;김덕진
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 봄 학술발표회 논문집
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    • pp.469-474
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    • 2003
  • Recently, to overcome the disadvantages of RC decks, advanced countries such as Japan and USA, and Europe are using prestressing connection precast decks and loop connection precast decks. The prestressing connection precast deck, however, has a weakness against steel corrosion, because of unreliable enforced grouting. The relatively low loading and fatigue capacities of the loop connection precast deck make it difficult to be used for the bridge that requires high fatigue resistance due to the frequent over loaded vehicles. This research proposes the improved connecting method for the precast decks to minimize its shortcomings based on both numerical analyses and full scale model tests. The proposed method maximizes the advantages of precast decks and extends it's service life.

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Introducing a precast moment resistant beam-to-column concrete connection comparable with in-situ one

  • Esmaeili, Jamshid;Ahooghalandary, Neyram
    • Computers and Concrete
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    • 제23권3호
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    • pp.203-215
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    • 2019
  • Precast reinforced concrete structure (PRCS) consists of prefabricated members assembled at worksites and has more connections limitations in comparison with the equivalent in-situ reinforced concrete structure (IRCS). As a result of these limitations, PRCSs have less ductility in comparison with IRCSs. Recent studies indicate that the most noticeable failure in PRCSs have occurred in their connection zone. The objective of this study is introducing a type of precast beam-to-column connection (PBC) which in spite of being simple is of the same efficiency and performance as in-situ beam-to-column connection (IBC). To achieve this, the performance of proposed new PBC at exterior joint of a four story PRCS was analyzed by pseudo dynamic analysis and compared with that of IBC in equivalent IRCS. Results indicated that the proposed connection has even better performance in terms of strength, energy dissipation and stiffness, than that of IBC.

연성적인 접합부를 가진 프리캐스트 콘크리트 골조건물의 변형수요 (Deformation Demand of the Precast Concrete Frame Buildings with Ductile Connection in Moderate Seismic Regions)

  • 서수연;이리형
    • 콘크리트학회논문집
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    • 제11권5호
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    • pp.89-98
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    • 1999
  • This paper evaluates nonlinear response characteristics of precast concrete frame buildings. where plastics hinging occurs in the precast connection. Designs were developed for buildings of 5, 10 and 15 stories in hight for moderate seismic risk regions of the U. S. The responses of the buildings were analyzed using DRAIN-2DX and following Nonlinear static analysis procedure of ATC 19. The main variables of the analyses were the strength and stiffness of the connection. Also, for the analysis, the bi-linear response model, developed and inserted into the DRAIN-2DX program by Shan Shi and D. Fouch, was used. With the results of analysis, the deformation demands of the connection of precast concrete frame buildings are proposed by using equal-dissipated energy capacity. It was shown that the strength of the buildings as well as their displacement capacities decreased with the decrease of either the strength or stiffness in the connections. Therefore such changes also require reductions in the response modification factors for such buildings. However, if the precast concrete frame building has plastic hinging in the connection, and has a more ductile connection than the monolithic frame building, then no reduction in R may be necessary. The deformation demand required of the connection to achieve that condition is evaluated and a simple relation is suggested in the paper.

DDC를 활용한 건식 보-기둥 모멘트 접합부의 내진 성능에 관한 연구 (A Study on the Energy Dissipation Capacity of Precast Concrete Beam-Column Connection using DDC)

  • 홍성걸;이상진
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.85-88
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    • 2004
  • In this study, a simple moment-resisting precast concrete beam-column connection is proposed for highly seismic zone using dywidag ductile rod [DDC]. DDC is superior system for ductility, energy dissipation capacity, connection strength, and drift capacity. A study was carried out to investigate the connection behavior subjected to cyclic inelastic loading. Four Precast beam-column interior connections and one monolithic connection will be tested. The variables will be examined were the strength relationship between joint's ductile rod and beam reinforcement for gain energy dissipation capacity. The specimens will be tested only reverse cyclic loading in accordance with a prescribed displacement history. Connection performance is evaluated on the basis of ductility, energy dissipation capacity, connection strength, and drift capacity. the precast connection using DDC is capable of matching of exceeding the performance of the monolithic connection and thereby provides moment-resisting behavior.

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A new precast wall connection subjected to monotonic loading

  • Vaghei, Ramin;Hejazi, Farzad;Taheri, Hafez;Jaafar, Mohd Saleh;Ali, Abang Abdullah Abang
    • Computers and Concrete
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    • 제17권1호
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    • pp.1-27
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    • 2016
  • Final construction project cost is significantly determined by construction rate. The Industrialized Building System (IBS) was promoted to enhance the importance of prefabrication technology rather than conventional methods in construction. Ensuring the stability of a building constructed by using IBS is a challenging issue. Accordingly, the connections in a prefabricated building have a basic, natural, and essential role in providing the best continuity among the members of the building. Deficiencies of conventional precast connections were observed when precast buildings experience a large induced load, such as earthquakes and other disasters. Thus, researchers aim to determine the behavior of precast concrete structure with a specific type of connection. To clarify this problem, this study investigates the capacity behavior of precast concrete panel connections for industrial buildings with a new type of precast wall-to-wall connection (i.e., U-shaped steel channel connection). This capacity behavior is compared with the capacity behavior of precast concrete panel connections for industrial buildings that used a common approach (i.e., loop connection), which is subjected to monotonic loading as in-plane and out-of-plane loading by developing a finite element model. The principal stress distribution, deformation of concrete panels and welded wire mesh (BRC) reinforcements, plastic strain trend in the concrete panels and connections, and crack propagations are investigated for the aforementioned connection. Pushover analysis revealed that loop connections have significant defects in terms of strength for in-plane and out-of-plane loads at three translational degrees of freedom compared with the U-shaped steel channel connection.

보수용 조립식 콘크리트 포장 적용성 및 슬래브 접합 방식 분석 (Evaluation of Pavement Rehabilitation Using Precast Concrete Slabs and Slab Connection methods)

  • 조영교;오한진;황주환;김성민;박성기
    • 한국도로학회논문집
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    • 제12권4호
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    • pp.165-174
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    • 2010
  • 본 연구는 조립식 콘크리트 포장 공법을 이용한 급속 도로 포장 보수 방법의 적용성을 분석하기 위하여 시험시공을 수행하고, 슬래브 접합 방식의 효과를 분석하기 위해 수행되었다. 시험시공은 줄눈콘크리트포장의 4개 슬래브를 교체하는 것으로 하였다. 시험시공을 위해 프리캐스트 슬래브를 설계하고 제작한 후, 기존 슬래브를 커팅하여 제거한 후 이 곳에 제작한 슬래브를 안착시켰다. 그 후 평탄성을 조절한 후 포켓 및 홀 부분과 슬래브 하부의 공간을 그라우팅 함으로써 시공을 신속 용이하게 수행할 수 있었다. 시험 시공을 수행하며 보수용 프리캐스트 포장의 설계 및 시공과 관련된 세부 사항을 면밀히 분석하였다. 또한 슬래브 간의 연결을 위한 방식으로 포켓과 홀 접합 방식을 모두 적용해 보았으며 실험을 통해 두 접합 방식에서의 슬래브의 컬링 거동을 비교하였다. 연구 결과 두 방식 모두 적용성이 우수했으나, 홀 접합 방식이 보다 적절한 것으로 파악되었다.

반복하중을 받는 프리캐스트 콘크리트 보-기둥 접합부의 거동 연구 (Performance of Precast Concrete Beam-Column Connections Subjected to Cyclic Loading)

  • 김규리;박홍근
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.619-622
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    • 2004
  • In this study, a moment resisting precast concrete beam-column connection is proposed. An experimental study was carried out to investigate the connection behavior subjected to cyclic loading. Three precast beam-column interior connections and one monolithic connection were tested. Variable included the detailing used at the joint to achieve structural constructability and the location of mild steel reinforcement and high strength bar. During specimen fabrication, the joint details enables ease and speed of construction. Connection performance is evaluated on the basis of ductility, energy dissipation capacity, connection strength, and drift capacity. Based on test results, the precast concrete beam-column connection is capable of matching or exceeding the performance of the monolithic connection.

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Nonlinear finite element model of the beam-to-column connection for precast concrete frames with high ratio of the continuity tie bars

  • Sergio A. Coelho;Sergio A. Coelho
    • Computers and Concrete
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    • 제31권1호
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    • pp.53-69
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    • 2023
  • The rotational stiffness of a semi-rigid beam-to-column connection plays an important role in the reduction of the second-order effects in the precast concrete skeletal frames. The aim of this study is to present a detailed nonlinear finite element study to reproduce the experimental response of a semi-rigid precast beam-to-column connection composed by corbel, dowel bar and continuity tie bars available in the literature. A parametric study was carried using four arrangements of the reinforcing tie bars in the connection, including high ratio of the continuity tie bars passing around the column in the cast-in-place concrete. The results from the parametric study were compared to analytical equations proposed to evaluate the secant rotational stiffness of beam-to-column connections. The good agreement with the experimental results was obtained, demonstrating that the finite element model can accurately predict the structural behaviour of the beam-to-column connection despite its complex geometric configuration. The secant rotational stiffness of the connection was good evaluated by the analytical model available in the literature for ratio of the continuity tie bars of up to 0.69%. Precast beam-to-column connection with a ratio of the continuity tie bars higher than 1.4% had the secant stiffness overestimated. Therefore, an adjustment coefficient for the effective depth of the crack at the end of the beam was proposed for the analytical model, which is a function of the ratio of the continuity tie bars.

Moment-rotation prediction of precast beam-to-column connections using extreme learning machine

  • Trung, Nguyen Thoi;Shahgoli, Aiyoub Fazli;Zandi, Yousef;Shariati, Mahdi;Wakil, Karzan;Safa, Maryam;Khorami, Majid
    • Structural Engineering and Mechanics
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    • 제70권5호
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    • pp.639-647
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    • 2019
  • The performance of precast concrete structures is greatly influenced by the behaviour of beam-to-column connections. A single connection may be required to transfer several loads simultaneously so each one of those loads must be considered in the design. A good connection combines practicality and economy, which requires an understanding of several factors; including strength, serviceability, erection and economics. This research work focuses on the performance aspect of a specific type of beam-to-column connection using partly hidden corbel in precast concrete structures. In this study, the results of experimental assessment of the proposed beam-to-column connection in precast concrete frames was used. The purpose of this research is to develop and apply the Extreme Learning Machine (ELM) for moment-rotation prediction of precast beam-to-column connections. The ELM results are compared with genetic programming (GP) and artificial neural network (ANN). The reliability of the computational models was accessed based on simulation results and using several statistical indicators.