• 제목/요약/키워드: Concrete Beams and Columns

검색결과 264건 처리시간 0.025초

Numerical study on effect of integrity reinforcement on punching shear of flat plate

  • Ahsan, Raquib;Zahura, Fatema T.
    • Computers and Concrete
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    • 제20권6호
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    • pp.731-738
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    • 2017
  • Reinforced concrete flat plates consist of slabs supported directly on columns. The absence of beams makes these systems attractive due to advantages such as economical formwork, shorter construction time, less total building height with more clear space and architectural flexibility. Punching shear failure is usually the governing failure mode of flat plate structures. Punching failure is brittle in nature which induces more vulnerability to this type of structure. To analyze the flat plate behavior under punching shear, twelve finite element models of flat plate on a column with different parameters have been developed and verified with experimental results. The maximum range of variation of punching stress, obtained numerically, is within 10% of the experimental results. Additional finite element models have been developed to analyze the influence of integrity reinforcement, clear cover and column reinforcement. Variation of clear cover influences the punching capacity of flat plate. Proposed finite element model can be a substitute to mechanical model to understand the influence of clear cover. Variation of slab thickness along with column reinforcement has noteworthy impact on punching capacity. From the study it has been noted that integrity reinforcement can increase the punching capacity as much as 19 percent in terms of force and 101 percent in terms of deformation.

대단면 터빈 기초 구조물의 부분발파해체 시공사례 (A Case Study on Partial Explosive Demolition of a Large-Section Turbine Foundation Structure)

  • 박훈;석철기;남성우;노유송
    • 화약ㆍ발파
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    • 제34권1호
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    • pp.19-28
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    • 2016
  • 산업구조물의 기능적.구조적 노후화에 따른 해체 수요가 증가하고 있으며, 시간적.공간적 환경위해요소를 최소화하기 위해 발파해체공법 또는 기계식해체 및 발파해체를 혼용한 해체공법의 적용이 증가하고 있다. 본 시공사례에서는 대단면 철근콘크리트 구조물인 터빈기초 구조물을 해체하기 위해 부분발파해체 공법을 적용하였다. 발파 결과, 터빈기초 구조물의 보와 기둥과의 접합부, 우각부의 헌치, 2층 기둥부가 적절하게 파쇄되었으며, 주변 시설물에 피해 없이 발파를 완료하였다.

공동주택용 프리캐스트 콘크리트 보-기둥 연결부의 거동분석 (Evaluation on the Behaviors of Precast Concrete Beam-Column Connections for Apartments)

  • 송형수;유승룡
    • 콘크리트학회논문집
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    • 제18권5호
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    • pp.657-666
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    • 2006
  • 본 연구에서는 공동주택 리모델링에 활용할 수 있는 완전 건식공법에 의한 프리캐스트 콘크리트 보-기둥 연결부를 개발하는데 있다. 독일에서 개발한 DDC 연결부를 국내 실정에 적합하도록 그 개선모델을 제안하기 위하여 총 5개의 건식연결부 시험체를 제작하였다. 아울러, 아파트 외곽보로 활용할 경우를 고려하여, H형 철물을 사용하여 기둥과 보의 폭을 최소화하였다. 실험결과 보-기둥 연결부에 DDC 시스템을 적용하게 되면 역학적 특성의 향상을 기대할 수 있었으나 기둥에 발생한 경사균열에 의하여 주도적으로 파괴 메커니즘이 형성되는 취약성을 초래하였다. 고가의 DDC 시스템의 덕타일 로드를 대신하여 고강도 강봉을 적용한 공법은 DDC 연결부와 역학적 특성은 유사한 거동을 보였으며, 파괴 메커니즘은 더 우수한 것으로 나타났다. 또한 연결부에 연결철근을 쉬스관 안에 그라우팅하여 부착시키게 되면, 비부착 시키는 공법보다 역학적 특성을 향상시킬 수 있을 것으로 판단된다.

고층 건물의 아웃리거 벽체에 의한 외부 기둥의 전단력 해석 (Analysis of Shear Force in Perimeter Column due to Outrigger Wall in a Tall Building)

  • 황일도;김한수
    • 한국전산구조공학회논문집
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    • 제31권6호
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    • pp.293-299
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    • 2018
  • 초고층 건물의 횡변위 제어를 위하여 사용되는 아웃리거를 기존의 철골 트러스 대신에 철근콘크리트 벽체로 대체할 수 있다. 철근콘크리트 아웃리거 벽체를 외부 기둥에 연결할 경우에는 축력뿐만 아니라 전단력과 모멘트가 외부 기둥에 유발될 수 있다. 본 연구에서는 아웃리거 벽체 외단부의 회전으로 인한 외부 기둥의 전단력을 수식으로 유도하고 그 값을 유한요소 해석 결과와 비교하였다. 유한요소해석에서는 층별 연결보의 효과와 전단벽과 아웃리거를 보와 평면응력요소로 모델링한 효과를 분석하였다. 층별 연결보의 효과는 거의 없었으며 평면응력요소는 보요소보다 더 큰 강성을 가진 것으로 해석되었다. 아웃리거 벽체의 외단부 회전으로 인한 외부기둥의 층간 회전각과 전단력은 허용값에 비하여 상당히 작은 값이 발생하였다. 따라서 초고층 건물에 철근콘크리트로 된 아웃리거 벽체를 적용할 경우에도 외부 기둥에 유발되는 전단력과 모멘트에 대하여 별도의 검토를 할 필요는 없을 것으로 판단된다.

일체형 중공재의 중공부 내부형상에 따른 이방향 중공슬래브의 전단성능 평가 (Shear Performance of Board-type Two-way Voided Slab)

  • 최현민;박태원;백인관;김제섭;한주연
    • 콘크리트학회논문집
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    • 제27권6호
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    • pp.651-659
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    • 2015
  • 최근에 사회적 요구와 경제적인 요구로 인해서 장스팬 건축물이 증가하고 있다. 그러나 장스팬 건축물은 자중이 증가하여 처짐 진동 소음의 문제가 있다. 이러한 문제를 해결하기 위하여 판형중공슬래브가 제안되었는데 이는 슬래브 안에 일체형 중공재를 삽입함으로써 자중이 감소된 슬래브를 만들 수 있다. 이 시스템은 휨성능에는 영향을 받지 않는 단면을 중공재로 대체함으로써 슬래브의 강성은 그대로 유지하면서, 소음 및 처짐을 줄이고 자중을 감소할 수 있는 장점이 있다. 그러나 이 시스템의 경우 부력에 의해 일체화된 중공재가 상승한다는 단점이 있다. 따라서 판형 중공재 고정장치를 개발하였고, 또한 이를 삽입한 판형중공재의 성능을 알아보기 위하여 7개의 실험체를 제작하여 그 성능을 알아보고 그 결과 나타난 수평전단파괴에 대해서 예측을 할 수 있는 식을 제안하였다.

Seismic performance of lateral load resisting systems

  • Subramanian, K.;Velayutham, M.
    • Structural Engineering and Mechanics
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    • 제51권3호
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    • pp.487-502
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    • 2014
  • In buildings structures, the flexural stiffness reduction of beams and columns due to concrete cracking plays an important role in the nonlinear load-deformation response of reinforced concrete structures under service loads. Most Seismic Design Codes do not precise effective stiffness to be used in seismic analysis for structures of reinforced concrete elements, therefore uncracked section properties are usually considered in computing structural stiffness. But, uncracked stiffness will never be fully recovered during or after seismic response. In the present study, the effect of concrete cracking on the lateral response of structure has been taken into account. Totally 120 cases of 3 Dimensional Dynamic Analysis which considers the real and accidental torsional effects are performed using ETABS to determine the effective structural system across the height, which ensures the performance and the economic dimensions that achieve the saving in concrete and steel amounts thus achieve lower cost. The result findings exhibits that the dual system was the most efficient lateral load resisting system based on deflection criterion, as they yielded the least values of lateral displacements and inter-storey drifts. The shear wall system was the most economical lateral load resisting compared to moment resisting frame and dual system but they yielded the large values of lateral displacements in top storeys. Wall systems executes tremendous stiffness at the lower levels of the building, while moment frames typically restrain considerable deformations and provide significant energy dissipation under inelastic deformations at the upper levels. Cracking found to be more impact over moment resisting frames compared to the Shear wall systems. The behavior of various lateral load resisting systems with respect to time period, mode shapes, storey drift etc. are discussed in detail.

HI-BEAM 공법 적용 시 안전성 및 경제성 분석 연구 (Safety and Economic Analysis by Applying HI-BEAM Technology)

  • 김설민;손기영
    • 한국건설안전학회 논문집
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    • 제2권1호
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    • pp.21-27
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    • 2019
  • 현재 건축물의 높이가 높아지고 우리나라 가구 형태가 개인 주택에서 아파트로 변화함에 따라 타워크레인의 사용 횟수는 계속해서 증가하고 있다. 그러나 이처럼 증가하는 타워크레인 사용 횟수에 반해 우리나라 타워크레인 관련 정책은 매우 미비한 실정이다. 특히 타워크레인과 관련된 사고의 원인 중 가장 큰 비중을 차지하는 타워크레인 연식에 대한 기준은 그 설정 근거가 부족하다. 따라서 본 연구에서는 이와 같은 문제점에 주목하여 타워크레인의 보다 신뢰성 있는 타워크레인의 연식을 설정하는 연구를 진행한다. 이를 위해 본 연구에서는 기존 연구에서 사용했던 사례와 영국 타워크레인 기준을 바탕으로 사용 연식을 설정한다.

Bonding between high strength rebar and reactive powder concrete

  • Deng, Zong-Cai;Jumbe, R. Daud;Yuan, Chang-Xing
    • Computers and Concrete
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    • 제13권3호
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    • pp.411-421
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    • 2014
  • A central pullout test was conducted to investigate the bonding properties between high strength rebar and reactive powder concrete (RPC), which covered ultimate pullout load, ultimate bonding stress, free end initial slip, free end slip at peak load, and load-slip curve characteristics. The effects of varying rebar buried length, thickness of protective layer and diameter of rebars on the bonding properties were studied, and how to determine the minimum thickness of protective layer and critical anchorage length was suggested according the test results. The results prove that: 1) Ultimate pull out load and free end initial slip load increases with increase in buried length, while ultimate bonding stress and slip corresponding to the peak load reduces. When buried length is increased from 3d to 4d(d is the diameter of rebar), after peak load, the load-slip curve descending segment declines faster, but later the load rises again exceeding the first peak load. When buried length reaches 5d, rebar pull fracture occurs. 2) As thickness of protective layer increases, the ultimate pull out load, ultimate bond stress, free end initial slip load and the slip corresponding to the peak load increase, and the descending section of the curve becomes gentle. The recommended minimum thickness of protective layer for plate type members should be the greater value between d and 10 mm, and for beams or columns the greater value between d and 15 mm. 3) Increasing the diameter of HRB500 rebars leads to a gentle slope in the descending segment of the pullout curve. 4) The bonding properties between high strength steel HRB500 and RPC is very good. The suggested buried length for test determining bonding strength between high strength rebars and RPC is 4d and a formula to calculate the critical anchorage length is established. The relationships between ultimate bonding stress and thickness of protective layer or the buried length was obtained.

Nonlinear modeling of beam-column joints in forensic analysis of concrete buildings

  • Nirmala Suwal;Serhan Guner
    • Computers and Concrete
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    • 제31권5호
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    • pp.419-432
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    • 2023
  • Beam-column joints are a critical component of reinforced concrete frame structures. They are responsible for transferring forces between adjoining beams and columns while limiting story drifts and maintaining structural integrity. During severe loading, beam-column joints deform significantly, affecting, and sometimes governing, the overall response of frame structures. While most failure modes for beam and column elements are commonly considered in plastic-hinge-based global frame analyses, the beam-column joint failure modes, such as concrete shear and reinforcement bond slip, are frequently omitted. One reason for this is the dearth of published guidance on what type of hinges to use, how to derive the joint hinge properties, and where to place these hinges. Many beam-column joint models are available in literature but their adoption by practicing structural engineers has been limited due to their complex nature and lack of practical application tools. The objective of this study is to provide a comparative review of the available beam-column joint models and present a practical joint modeling approach for integration into commonly used global frame analysis software. The presented modeling approach uses rotational spring models and is capable of modeling both interior and exterior joints with or without transverse reinforcement. A spreadsheet tool is also developed to execute the mathematical calculations and derive the shear stress-strain and moment-rotation curves ready for inputting into the global frame analysis. The application of the approach is presented by modeling a beam column joint specimen which was tested experimentally. Important modeling considerations are also presented to assist practitioners in properly modeling beam-column joints in frame analyses.

Seismic risk assessment of concrete-filled double-skin steel tube/moment-resisting frames

  • Hu, Yi;Zhao, Junhai;Zhang, Dongfang;Zhang, Yufen
    • Earthquakes and Structures
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    • 제14권3호
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    • pp.249-259
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    • 2018
  • This paper aims to assess the seismic risk of a plane moment-resisting frames (MRFs) consisting of concrete-filled double skin steel tube (CFDST) columns and I-section steel beams. Firstly, three typical limit performance levels of CFDST structures are determined in accordance with the cyclic tests of seven CFDST joint specimens with 1/2-scaled and the limits stipulated in FEMA 356. Then, finite element (FE) models of the test specimens are built by considering with material degradation, nonlinear behavior of beam-column connections and panel zones. The mechanical behavior of the concrete material are modeled in compression stressed condition in trip-direction based on unified strength theory, and such numerical model were verified by tests. Besides, numerical models on 3, 6 and 9-story CFDST frames are established. Furthermore, the seismic responses of these models to earthquake excitations are investigated using nonlinear time-history analyses (NTHA), and the limits capacities are determined from incremental dynamic analyses (IDA). In addition, fragility curves are developed for these models associated with 10%/50yr and 2%/50yr events as defined in SAC project for the region on Los Angeles in the Unite State. Lastly, the annual probabilities of each limits and the collapse probabilities in 50 years for these models are calculated and compared. Such results provide risk information for the CFDST-MRFs based on the probabilistic risk assessment method.