• 제목/요약/키워드: slab-column connection

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슬래브-기둥 접합부의 전단보강상세에 관한 연구 (A Study of Shear Reinforcement for Slab-Column Connection)

  • 백성우;김준서;최현기;최창식
    • 한국방재학회:학술대회논문집
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    • 한국방재학회 2008년도 정기총회 및 학술발표대회
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    • pp.37-40
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    • 2008
  • The study is an experimental test on full-scale flat plate slab-column interior connection. The punching shear on the flat plate slab-column connection can bring about the reason of the brittle punching shear failure which may result of collapsing the whole structure. From the development of residential flat plate system, the shear reinforcement is developed for preventing the punching shear. For making sure of the punching shear capacity, developed for shear reinforcement in slab-column connection, the structural test is performed. The dimension of the slabs was 2620*2725*180mm with square column (600*800mm). The slabs were tested up to failure monotonic vertical shear forces. The presences of S/S bar and wire mesh substantially increased the punching shear capacity and the ductility of the slab-column connections.

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무량판 슬래브와 H형강 기둥 접합부 상세 개발 (Development for Connection Details between Flat Plate Slab and H-Steel Column)

  • 윤명호;이윤희
    • 복합신소재구조학회 논문집
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    • 제5권1호
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    • pp.22-27
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    • 2014
  • The flat plate slab system have many good features, which are design flexibilities, saving of story-height and economy of construction etc. But the study of flat plate slab system for H-steel column have been rare both at home and abroad. Recently high-rise residential and commercial buildings have been constructed in urban areas in Korea. The suggested dowel connection system is more likely to adoptable because it remarkably contribute to save inter story height and also to have many advantages compared with conventional steel works such as H-Steel frame + Deck plate slab system. This study aims at developing design method and program for connection between H-Steel column and flat plate slab system, which contribute to save significantly inter-story height.

Failure characteristics of columns intersected by slabs with different compressive strengths

  • Choi, Seung-Ho;Hwang, Jin-Ha;Han, Sun-Jin;Kang, Hyun;Lee, Jae-Yeon;Kim, Kang Su
    • Structural Engineering and Mechanics
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    • 제74권3호
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    • pp.435-443
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    • 2020
  • The objective of this study was to determine the effective compressive strength of a column-slab connection with different compressive strengths between the column and slab concrete. A total of eight column specimens were fabricated, among which four specimens were restrained by slabs while the others did not have any slab, and the test results were compared with current design codes. According to ACI 318, the compressive strength of a column can be used as the effective compressive strength of the column-slab connection in design when the strength ratio of column concrete to slab concrete is less than 1.4. Even in this case, however, this study showed that the effective compressive strength decreased. The specimen with its slab-column connection zone reinforced by steel fibers showed an increased effective compressive strength compared to that of the specimen without the reinforcement, and the interior column specimens restrained with slabs reached the compressive strength of the column.

슬래브-기둥 접합부의 구속도 및 드롭패널에 따른 방폭 성능 평가 (Evaluation of Blast Resistance of Slab-Column Connections According to the Confinement Effects and Drop Panel)

  • 임광모;이주하
    • 대한토목학회논문집
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    • 제37권2호
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    • pp.451-457
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    • 2017
  • 본 연구에서는 폭발하중을 받는 슬래브-기둥 접합부의 거동을 해석적으로 분석하였다. 슬래브-기둥의 거동을 분석하기 위해 유한요소해석프로그램 LS-DYNA를 사용하여 폭발해석을 수행하였다. 대상 접합부의 형태는 일반적인 내부기둥형태의 슬래브-기둥 접합부와 기둥주위에 드롭패널(drop panel)을 보강한 접합부로 설정하였다. 또한, 슬래브에 의한 기둥의 구속도에 따라 내부기둥, 외부기둥 그리고 모서리기둥 시험체를 모델링하여 비교분석이 수행되었다. 해석결과는 접합부의 파괴형상, 단위부재의 거동 등을 포함하고 있다. 해석결과 드롭패널을 보강한 경우 슬래브-기둥 접합부의 거동이 향상되는 것을 확인하였으며 슬래브에 의한 기둥의 구속도가 감소할수록 거동이 저하되는 것을 확인하였다.

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.

파괴 메커니즘을 고려한 내부 포스트텐션 플랫 플레이트 슬래브-기둥 접합부의 강도식 평가 (Strength of Interior Post-Tensioned Flat Plate Slab-Column Connection based on Failure Mechanism)

  • 김민남;하상수;이리형
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계학술발표회 논문집(I)
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    • pp.126-129
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    • 2006
  • A bending moment $M_u$ transferred at slab-column connection is resisted at the slab critical section by flexure and shear. The ACI 318-05 Building Code(1) gives an empirical equation for the fraction ${\gamma}_{\upsilon}$ of the moment $M_u$ to be transferred by shear at the slab critical section at d/2 from the column face and also the effective wide(c+3h). The equation is based on tests of interior slab-column connections without shear reinforcement. In order to investigate the data eight test specimens were examined. The test shows that increased slab load substantially reduces both the unbalanced moment capacity and the lateral drift capacity of the connection. Especially, the specimens with the bottom reinforcement existence and nonexistence, appears remarkable differences. Studies also show that the code equation for ${\gamma}_{\upsilon}$ does not apply to all cases. The purpose of this study is to compare the test results with present ACI 318-05 Building Code provisions for design of slab-column connections and with the analysis of the experimental data for a new limitation of strength equation without shear reinforcement and bottom reinforcement.

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래티스를 이용한 철근콘크리트 무량판 구조의 슬래브-기둥 접합부 전단보강 공법 개발 (Development and Application of Lattice Shear Reinforcement for Flat Plate Slab-column Connection)

  • 강수민;박성우;방중석;이도범;권철환;박홍근
    • 한국건축시공학회지
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    • 제13권5호
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    • pp.482-490
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    • 2013
  • 무량판 슬래브 구조는 시공의 단순함과 낮은 층고, 그리고 다양한 평면구성의 용이함으로 인하여 구조적으로 효과적이나 슬래브-기둥 접합부가 중력하중에 의한 펀칭전단파괴와 횡하중의 불균형모멘트에 의한 편심전단파괴에 취약한 단점이 있다. 이러한 무량판 슬래브의 취약점을 방지하기 위하여 많은 보강공법들이 개발되었으나, 보강공법들은 구조적 성능과 경제성, 그리고 시공성을 모두 만족시키기지는 못하고 있다. 이 논문에서는 래티스를 이용한 무량판 구조의 슬래브-기둥 접합부 보강공법을 제시하였다. 주기하중 실험을 통하여 래티스 보강공법의 구조적 성능을 증명하였으며 같은 구조설계 조건에 대하여 스터럽과 스터드레일, 그리고 래티스를 이용한 공법을 적용해 봄으로써 경제성을 입증하였다.

구조 실험과 SASW를 이용한 플랫 플레이트 기둥-슬래브접합부에서의 구조적 거동에 관한 연구 (Structural Behavior in Slab-Column Connections with Shear Plate Using Structural Experiment and Non-destructive Test, Spectral Analysis of Surface Waves)

  • 주현지;조영상
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.48-51
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    • 2004
  • This paper is to study the response of flat plate slab-column connections consisting of various types of shear reinforcement and steel plate subjected to gravity loadings, mainly punching shear forces using the non-destructive testing, spectral analysis of surface waves and structural experiments. The base specimen failed due to punching shear generated from the gravity. The three other types of slab shear reinforcement and steel plate showed effective in resisting punching shear for these types of connections under gravity loading. This study has focused in evaluating the velocity response of a Surface wave during the early age as the poured concrete specimens have been hardened, the possibility of damage detection in the slab-column connection and the relationship between the punching shear forces and the surface wave velocities under the condition that the punching shear forces had gradually increased until the flat plate slab in slab-column connection had been failed.

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고강도 콘크리트를 사용한 플랫 플레이트 구조의 기둥·슬래브 접합부 구조성능 (Structural Performance of Column-Slab Connection in Flat Plate System Using High Strength Concrete)

  • 김형기
    • 한국구조물진단유지관리공학회 논문집
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    • 제10권1호
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    • pp.97-105
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    • 2006
  • 플랫 플레이트 구조에서 고강도 콘크리트를 사용함에 따라서 접합부의 전단강도와 같은 구조성능을 향상시켜서 플랫 플레이트 구조의 단점을 보완하여 장점을 극대화시킬 수 있다고 판단된다. 이에 본 논문에서는 70MPa급 고강도 콘크리트를 사용한 플랫 플레이트구조의 기둥 슬래브 접합부 실험체를 제작한 후에 수직하중과 수평하중의 조합하중을 가력하여 플랫 플레이트구조의 기둥 슬래브 접합부에 대한 전단강도를 비롯한 주요한 구조성능을 평가하고자 한다. 본 연구에서의 실험변수는 슬래브의 철근비와 슬래브에 작용하는 수직하중의 비율로 하였다.

보-기둥 접합부의 전단거동에 대한 슬래브 및 횡구속 영향 (Transverse Concinement and Slab Effect on Shear Behavior of Beam-Column Connection)

  • 장극관;서대원;방세용
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1999년도 학회창립 10주년 기념 1999년도 가을 학술발표회 논문집
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    • pp.419-422
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    • 1999
  • This study was intended to investigate the cyclic behavior of high strength concrete beam-column connection. Four assemblies were designed 2/3 scale beam-column-slab joint and tested. The obtained results are follows. 1) The transverse beams increase the shear resistance and ductility of joint, 2) The slab was contributed to increase of the flexural capacity of the beam, but was not contributed to increase the joint ductility under lateral loads.

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