• 제목/요약/키워드: ultimate shear strength

검색결과 497건 처리시간 0.026초

전단이 지배하는RC 부재의 새로운 트러스 모델링 기법 연구 (후편) - 검증을 중심으로 - (A New Refined Truss Modeling for Shear-Critical RC Members (Pert II) - lts Verification -)

  • 김우;정제평;김행준
    • 콘크리트학회논문집
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    • 제17권1호
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    • pp.59-68
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    • 2005
  • 이 논문은 본 연구의 후반부로, 전편의 논문에서 개념적으로 유도하고 정식화한 새로운 트러스모델의 적용성 검증을 다룬것이다. 이 모델에는 처음으로 소개되는 아치계수-$\alpha$가 포함되어 있기 때문에 이 계수의 특성에 대해 고찰하였다. 계수-$\alpha$의 값은 a/d, $\rho$$\rho_v$에 따라 변하며, 주철근비가 커질수록 그리고 스터럽 비가 작아질수록 그 값은 증가하는 특성을 갖고 있다. 이렇게 정식화된 트러스모델을 단면법으로 변환하여 주철근과 복부철근의 응력 및 전단강도를 산정하는 식을 유도하였으며, 이 식을 기존 문헌에 발표된 실험자료에 적용하여 그 정확성을 검증하여 본 결과, 예측값은 실험값과 매우 근사하게 일치하는 것으로 나타났다.

Experimental study on simplified steel reinforced concrete beam-column joints in construction technology

  • Teraoka, Masaru;Morita, Koji;Sasaki, Satoshi;Katsura, Daisuke
    • Steel and Composite Structures
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    • 제1권3호
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    • pp.295-312
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    • 2001
  • The purpose of this paper is to propose a new type of steel reinforced concrete (SRC) beam-column joints and to examine the structural performance of the proposed joints, which simplify the construction procedure of steel fabrication, welding works, concrete casting and joint strengthening. In the proposed beam-column joints, the steel element of columns forms continuously built-in crossing of H-sections (${\Box}$), with adjacent flanges of column being connected by horizontal stiffeners in a joint at the level of the beam flanges. In addition, simplified lateral reinforcement (${\Box}$) is adopted in a joint to confine the longitudinal reinforcing bars in columns. Experimental and analytical studies have been carried out to estimate the structural performance of the proposed joints. Twelve cruciform specimens and seven SRC beam-column subassemblage specimens were prepared and tested. The following can be concluded from this study: (1) SRC subassemblages with the proposed beam-column joints show adequate seismic performances which are superior to the demand of the current code; (2) The yield and ultimate strength capacities of the beam-to-column connections can be estimated by analysis based on the yield line theory; (3) The skeleton curves and the ultimate shear capacities of the beam-column joint panel are predicted with a fair degree of accuracy by considering a simple stress transfer mechanism.

강절형 목질 문형라멘프레임의 수평내력성능 평가 (Evaluation of The Lateral Strength Performance of Rigid Wooden Portal Frame)

  • 이인환;송요진;홍순일
    • Journal of the Korean Wood Science and Technology
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    • 제45권5호
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    • pp.535-543
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    • 2017
  • 목구조물 기둥-보 접합물로는 슬릿 가공된 부재에 강판을 삽입한 형상이 통용되고 있다. 본 연구에서는 접합부가 접착된 강절형 문형라멘프레임 및 강판 대용인 목질접합물을 제작하여 절반은 기둥부재에 일체화하고 나머지 절반은 보부재와 핀으로 접합한 반강절형 문형라멘프레임을 제작하였다. 목질 문형라멘프레임들은 강판삽입형 접합부 문형라멘프레임과 수평내력성능을 비교 분석하였다. 수평내력성능은 완전탄소성모델 분석과 구간별 강성변화율 및 단기허용전단내력으로 평가하였다. 실험결과, 강절형 문형라멘프레임의 최대내력이 강판삽입형 접합부 문형라멘프레임 보다 낮게 측정되어 항복 내력은 0.58, 종국내력은 0.48로 산출되었으나, 초기강성과 소성률은 각각 1.35, 1.1 향상된 값이 측정되었다. 반강절형 문형라멘프레임의 완전탄소성모델 분석 결과 최대내력은 강절형 문형라멘프레임보다 낮았으나 파괴 후 인성이 우수하여 종국내력은 1.05~1.07 높은 값이 산출되었다. 강판삽입형 문형라멘프레임은 반복 시험이 진행됨에 따라 강성이 급격히 감소한 반면 접합부가 목질로된 문형라멘프레임들의 강성은 서서히 감소되었다.

Zr계 벌크 비정질 복합재의 변형률 속도에 따른 인장 변형 거동 연구 (Tensile Deformation Behavior of Zr-based Bulk Metallic Glass Composite with Different Strain Rate)

  • 김규식;김지식;허훈;이기안
    • 소성∙가공
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    • 제18권6호
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    • pp.500-507
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    • 2009
  • Tensile deformation behavior with different strain rate was investigated. $Zr_{56.2}Ti_{13.8}Nb_{5.0}Cu_{6.9}Ni_{5.6}Be_{12.5}$(bulk metallic glass alloy possessed crystal phase which was called $\beta$-phase of dendrite shape, mean size of $20{\sim}30{\mu}m$ and occupied 25% of the total volume) was used in this study. Maximum tensile strength was obtained as 1.74GPa at strain rate $10^2s^{-1}$ and minimum strength was found to be 1.6GPa at $10^{-1}s^{-1}$. And then, maximum plastic deformation occurred at the strain rate of $5{\times}10^{-2}s^{-1}$ and represented 1.75%, though minimum plastic deformation showed 0%. In the specific range of strain rate, relatively higher plastic deformation and lower ultimate tensile strength were found with lots of shear bands. The fractographical observation after tensile test indicated that vein like pattern on the fracture surface was well developed especially in the above range of strain rate.

Zr 계 벌크 비정질 복합재의 변형률 속도에 따른 인장 변형 거동 (Tensile Deformation Behavior of Zr-based Bulk Metallic Glass Composite with Different Strain Rate)

  • 김규식;김지식;허훈;이기안
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2009년도 춘계학술대회 논문집
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    • pp.353-354
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    • 2009
  • Tensile deformation behavior with different strain rate was investigated. $Zr_{56.2}Ti_{13.8}Nb_{5.0}Cu_{6.9}Ni_{5.6}Be_{12.5}$ (bulk metallic glass alloy possessed crystal phase which was called $\beta$-phase of dendrite shape, mean size of $20{\sim}30{\mu}m$ and occupied 25% of the total volume) was used in this study. Maximum tensile strength was obtained as 1.74Gpa at strain rate of $10^2/s$ and minimum strength was found to be 1.6GPa at $10^{-1}/s$. And then, maximum plastic deformation occurred at the strain rate of $5{\times}10^{-2}/s$ and represented 1.75%, though minimum plastic deformation showed 0%. In the specific range of strain rate, relatively higher plastic deformation and lower ultimate tensile strength were found with lots of shear bands. The fractographical observation after tensile test indicated that vein like pattern on the fracture surface was well developed especially in the above range of strain rate.

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리브 형상을 갖는 반단면 프리캐스트 판넬의 휨 안전성 평가 연구 (Study on Safety Evaluation of the Half-Depth Precast Deck with RC Rib Pannel for the Flexural Behavior)

  • 황훈희
    • 한국안전학회지
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    • 제34권4호
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    • pp.76-84
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    • 2019
  • The precast pannels are used as formwork in Half-depth precast deck systems. Therefore, it has many advantages, including safe and convenient construction and reduced construction period compared to cast-in-place construction method. In half-depth precast deck systems, the bonding of precast pannels to cast-in place concrete is very important. To enhance the performance of half-depth precast deck system, it is necessary to improve the composite efficiency of the interface or increase the stiffness of the precast pannel to reduce deformation or stress on the interface. In this study, a flexural test of half-depth precast deck system was performed, in which the shear connecting reinforcement was applied to increase the bonding performance at the interface, and the rib shape precast panels were applied to improve stiffness. In addition, the safety and serviceability of these systems were evaluated. Test results show that all of specimens have the required flexural strength under the ultimate strength limit design. It was also evaluated to have sufficient safety for the serviceability of deflection and crack under the serviceability limit design.

3-D finite element modelling of prestressed hollow-core slabs strengthened with near surface mounted CFRP strips

  • Mahmoud, Karam;Anand, Puneet;El-Salakawy, Ehab
    • Computers and Concrete
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    • 제21권6호
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    • pp.607-622
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    • 2018
  • A non-linear finite element model (FEM) was constructed using a three-dimensional software (ATENA-3D) to investigate the effect of strengthening on the behavior of prestressed hollow-core (PHC) slabs with or without openings. The slabs were strengthened using near surface mounted (NSM)-carbon fiber reinforced polymer (CFRP) strips. The constructed model was validated against experimental results that were previously reported by the authors. The validated FEM was then used to conduct an extensive parametric study to examine the influence of prestressing reinforcement ratio, compressive strength of concrete and strengthening reinforcement ratio on the behavior of such slabs. The FEM results showed good agreement with the experimental results where it captured the cracking, yielding, and ultimate loads as well as the mid-span deflection with a reasonable accuracy. Also, an overall enhancement in the structural performance of these slabs was achieved with an increase in prestressing reinforcement ratio, compressive strength of concrete, external reinforcement ratio. The presence of openings with different dimensions along the flexural or shear spans reduced significantly the capacity of the PHC slabs. However, strengthening these slabs with 2 and 4 (64 and $128mm^2$ that represent reinforcement ratios of 0.046 and 0.092%) CFRP strips was successful in restoring the original strength of the slab and enhancing post-cracking stiffness and load carrying capacity.

Experimental research on vertical mechanical performance of embedded through-penetrating steel-concrete composite joint in high-temperature gas-cooled reactor pebble-bed module

  • Zhang, Peiyao;Guo, Quanquan;Pang, Sen;Sun, Yunlun;Chen, Yan
    • Nuclear Engineering and Technology
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    • 제54권1호
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    • pp.357-373
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    • 2022
  • The high-temperature gas-cooled reactor pebble-bed module project is the first commercial Generation-IV NPP(Nuclear Power Plant) in China. A new joint is used for the vertical support of RPV(Reactor Pressure Vessel). The steel corbel is integrally embedded into the reactor-cabin wall through eight asymmetrically arranged pre-stressed high-strength bolts, achieving the different path transmission of shear force and moment. The vertical monotonic loading test of two specimens is conducted. The results show that the failure mode of the joint is bolt fracture. There is no prominent yield stage in the whole loading process. The stress of bolts is linearly distributed along the height of corbel at initial loading. As the load increases, the height of neutral axis of bolts gradually decreases. The upper and lower edges of the wall opening contact the corbel plate to restrict the rotation of the corbel. During the loading, the pre-stress of some bolts decreases. The increase of the pre-stress strength ratio of bolts has no noticeable effect on the structure stiffness, but it reduces the ultimate bearing capacity of the joint. A simplified calculation model for the elastic stage of the joint is established, and the estimation results are in good agreement with the experimental results.

철근콘크리트 코벨 스트럿-타이 모델의 스트럿 유효강도 (Effective Strengths of Concrete Struts in Strut-Tie Models of Reinforced Concrete Corbels)

  • 채현수;윤영묵
    • 대한토목학회논문집
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    • 제34권4호
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    • pp.1081-1094
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    • 2014
  • 스트럿-타이 모델 방법은 철근콘크리트 코벨의 극한강도 해석 및 설계에 매우 효과적이다. 그러나 스트럿-타이 모델 방법을 이용한 철근콘크리트 코벨의 정확한 해석 및 안전한 설계를 위해서는 스트럿의 유효강도를 정확하게 결정하여야 한다. 이 연구에서는 여러 연구문헌에서 제안된 철근콘크리트 코벨의 대표적인 세 종류의 스트럿-타이 모델을 활용하기 위하여 철근콘크리트 코벨의 기하학적 형상, 수직 및 수평 하중의 조합 비, 그리고 휨철근 및 수평전단철근 비 등 주요 설계변수들의 영향을 정확하게 반영할 수 있는 스트럿 유효강도 식을 개발, 제안하였다. 현행 여러 설계기준서의 스트럿 유효강도 식과 이 연구에서 제안한 유효강도 식을 이용하여 파괴실험이 수행된 243개 철근콘크리트 코벨의 극한강도를 평가하였으며, 그 결과의 비교분석을 통해 이 연구에서 제안한 스트럿 유효강도 식의 적합성을 평가하였다.

격납건물 내압해석을 위한 철근콘크리트 쉘 유한요소 (Shell Finite Element of Reinforced Concrete for Internal Pressure Analysis of Nuclear Containment Building)

  • 이홍표;전영선
    • 대한토목학회논문집
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    • 제29권6A호
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    • pp.577-585
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    • 2009
  • 이 논문은 원전 격납건물의 극한내압능력 평가와 비선형해석을 수행하기 위하여 개발된 해석프로그램인 9절점 퇴화 쉘 유한요소에 대하여 기술하였다. 개발된 쉘 유한요소는 퇴화 고체기법과 구조물에서 발생하는 횡전단변형도를 고려하기 위하여 Reissner-Mindlin(RM)가정을 도입하였다. 콘크리트의 재료모델은 등가응력-등가변형률의 관계를 이용하여 콘크리트의 응력과 변형률의 수준을 결정하고, 콘크리트에 균열이 발생하면 부착응력을 고려하는 인장강성모델과 균열면에서의 전단전달 메카니즘 그리고 균열면에서 압축강도 감소모델 등으로 재료적 거동을 나타내었다. 또한 균열발생기준으로 압축-인장영역에는 Niwa가 제안한 응력포락선을 도입하였고, 인장-인장영역에는 Aoyagi-Yamada가 제안한 응력포락선을 사용하였다. 개발된 프로그램의 성능은 다양한 수치예제를 통하여 검증하였다. 검증예제 결과로부터 개발된 쉘 유한요소를 이용한 해석결과는 실험결과 또는 다른 해석결과와 유사한 결과를 도출하였다.