• 제목/요약/키워드: reinforced concrete members

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초고층 건물에서 철골철근콘크리트(SRC) 기둥의 축소량 예측에 관한 연구 (A Study on the Prediction of Shortening for Steel-Reinforced Concrete(SRC) Column in the High-Rise Buildings)

  • 정은호;김점한
    • 콘크리트학회논문집
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    • 제16권1호
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    • pp.36-42
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    • 2004
  • 철골철근콘크리트(SRC)가 초고층 건물에서 광범위하게 사용되고 있음에도 불구하고 SRC 구조부재에 대해 축소량 예측을 위한 도구는 철근콘크리트에 대한 재료적인 특성만으로 구성된 이론식을 적용하는 많은 문제를 안고 있다 따라서 본 연구는 초고층 건물의 기둥 축소량을 계산하는 기존의 방법에 대해 정확성을 평가하였다. 연구의 진행 방법은 다음과 같다. 우선 SRC 구조부재를 사용하여 만들어진 초고층 건물의 기둥축소에 대한 실측자료를 선정하였다. 다음으로는 전산해석 프로그램을 이용하여 SRC 구조부재에 대해 기둥 축소량을 계산하였다. 끝으로 측정자료와 해석자료를 비교하였다. 결론적으로 측정자료와 해석자료는 매우 근사한 차이를 나타냈다. 그러므로 기존의 방법은 SRC 구조부재를 사용하는 초고층 건물의 기둥 축소량을 평가하기 위해 사용되어도 될 것으로 사료된다.

철근콘크리트조 화재건물의 부재내부온도분포 추정에 관한 연구 (A Study on Calculating the Temperature Distributions in the Concrete members of Reinforced Concrete Building with Fire Damage)

  • 오창희
    • 한국화재소방학회논문지
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    • 제1권1호
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    • pp.11-18
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    • 1987
  • This study is for calculating the equation of the inner temperature in the concrete, mainly by the theory or heat conduction in the solid. The results are as follow ; 1. The equation of the Fourier's heat diffusion is used formally to get the distribution of inner temperature or the concrete members, and this is programed by using the computer. 2. As study in the past, heat constant of concrete is calculated for function of temperature described recommendation heat constant value in comparison with the existing inner heating experimental result.

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고강도 철근콘크리트 부재에서 철근의 장부작용에 대한 구조변수의 영향 (Influence of Structural Parameters on the Dowel Action of Reinforcing Bar in Reinforced High Strength concrete Members)

  • 최도수;신장호;김상식
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1994년도 가을 학술발표회 논문집
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    • pp.350-355
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    • 1994
  • This study is aimed at the experimental investigation of the influence of the structural parameters such as concrete cover, width of specimen and bar size on the dowel action of reinforcing bari in high strength concrete members. Based on the proper combination of these parameter, a total of 46 specimens has been cast for fc'= 500 ㎏/㎠ and another 46 specimens for fc'= 700 ㎏/㎠, and cured at the laboratory. Comparative analyses have been made for the parametric contribution to the dowel strength from the test results, and a regress equation has been suggested.

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철근콘크리트 보와 프리스트레스트 콘크리트 보의 전단설계기준에 대한 고찰 (Evaluation of Shear Design Provisions for Reinforced Concrete Beams and Prestressed Concrete Beams)

  • 김강수;김상식
    • 콘크리트학회논문집
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    • 제17권5호
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    • pp.717-726
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    • 2005
  • 본 논문에서는 기존의 전단실험결과를 모아 구축한 방대한 데이터베이스를 이용하여 철근콘크리트 보와 프리스트레스트 콘크리트 보에 대한 ACI와 국내의 전단설계기준을 평가 분석하였다. 또한 두 전단설계기준에 대한 평가결과를 바탕으로 기준의 안전율과 강도감소계수에 대하여도 고찰하였다. 전단설계기준은 철근콘크리트 부재의 전단강도에 대해서 매우 낮은 정확도를 보였으며, 특히 전단철근이 없는 철근콘크리트 보의 전단강도에 대하여 가장 낮은 정확도를 제공하였다. 또한 기준에서 전단강도에 대한 전단철근의 기여도의 제한은 다소 낮은 것으로 분석되었으며, 특히 전단철근이 없고 휨인장철근비가 낮으며$(\rho_w<1.0\%)$ 춤이 높은 (h>700mm) 보에 대하여 매우 위험한 전단강도를 제공하였다. 프리스트레스트 콘크리트 부재에 대해서는 철근콘크리트 부재에 비하여 매우 정확한 전단강도를 제공하였다. 그러나, ACI와 국내의 전단설계기준은 전단강도의 예측정확도가 매우 다른 철근콘크리트 부재와 프리스트레스트 콘크리트 부재에 대해 동일한 강도감소계수를 사용함으로써 이들 부재에 대해 동일한 수준의 설계안 전율을 제공하지 못하였다.

반복하중을 받는 철근콘크리트 부재의 에너지 소산능력 평가 (Assessment of Energy Dissipation Capacity of Reinforced Concrete Members Subjected to Cyclic Loading)

  • 김민옥;차상아;이정윤
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
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    • pp.135-136
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    • 2010
  • 본 연구에서는 유한요소해석 프로그램을 이용하여 철근과 콘크리트가 발휘하는 역할을 고려한 재료의 응력-변형도를 통해 축압축력과 함께 반복하중을 받는 철근콘크리트 기둥의 에너지 소산 메커니즘을 규명한다.

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Local bond-slip behavior of fiber reinforced LWAC after exposure to elevated temperatures

  • Tang, Chao-Wei
    • Structural Engineering and Mechanics
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    • 제73권4호
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    • pp.437-445
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    • 2020
  • The microstructure and mechanical properties of concrete will degrade significantly at high temperatures, thus affecting the bond strength between reinforcing steel and surrounding concrete in reinforced concrete members. In this study, the effect of individual and hybrid fiber on the local bond-slip behavior of lightweight aggregate concrete (LWAC) after exposure to elevated temperatures was experimentally investigated. Tests were conducted on local pullout specimens (150 mm cubes) with a reinforcing bar embedded in the center section. The embedment lengths of the pullout specimens were 4.2 times the bar diameter. The parameters investigated included concrete type (control group: ordinary LWAC; experimental group: fiber reinforced LWAC), concrete strength, fiber type, and targeted temperature. The test results showed that for medium-strength LWACs exposed to high temperatures, the use of only steel fibers did not significantly increase the residual bond strength. Moreover, the addition of individual and hybrid fiber had little effect on the residual bond strength of the high-strength LWAC after exposure to a temperature of 800℃.

Flexural/shear strength of RC beams with longitudinal FRP bars An analytical approach

  • Kosmidou, Parthena-Maria K.;Chalioris, Constantin E.;Karayannis, Chris G.
    • Computers and Concrete
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    • 제22권6호
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    • pp.573-592
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    • 2018
  • An analytical methodology for the calculation of the flexural and the shear capacity of concrete members with Fibre-Reinforced-Polymer (FRP) bars as tensional reinforcement is proposed. The flexural analysis is initially based on the design provisions of ACI 440.1R-15 which have properly been modified to develop general charts that simplify computations and provide hand calculations. The specially developed charts include non-dimensional variables and can easily be applied in sections with various geometrical properties, concrete grade and FRP properties. The proposed shear model combines three theoretical considerations to facilitate calculations. A unified flexural/shear approach is developed in flow chart which can be used to estimate the ultimate strength and the expected failure mode of a concrete beam reinforced with longitudinal FRP bars, with or without transverse reinforcement. The proposed methodology is verified using existing experimental data of 138 beams from the literature, and it predicts the load-bearing capacity and the failure mode with satisfactory accuracy.

Review on the Fire Resistance and Pumpability Performance of Fiber Reinforced High Strength Concrete

  • Kwon, Hae-Won;Kim, Young-Su
    • 한국건축시공학회지
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    • 제13권1호
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    • pp.58-65
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    • 2013
  • Currently, many high-rise buildings are built in Korea for land-efficient utilization and vista. In high-rise buildings this tall, the use of high-strength concrete is essential to reduce the cross-section of structure members and secure axial load. However, this high strength concrete is vulnerable to spalling by fire, due to the water vapor pressure caused by the very high temperature in fire. To prevent this, the main method used is to reinforce the concrete with fiber. However, there has been little research on the pumpability of fiber reinforced high strength concrete. For this reason, this study features a performance review based on the properties and pumpability of fiber reinforced high strength concrete. In addition, the parameter of rheology was measured by extracting mortar from the concrete, and friction factor was measured through a 400 m horizontal pipe pumping test using the fiber reinforced high strength concrete. The basic information on fiber reinforced high strength concrete that we obtain through the experiments and review will contribute to the field.

철근콘크리트 휨부재 및 압축부재의 재료조항계수 적용에 관한 연구 (Material Resistance Factors for Reinforced Concrete Flexural and Compression Members)

  • 김재홍;이재훈
    • 콘크리트학회논문집
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    • 제12권2호
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    • pp.21-30
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    • 2000
  • In the Ultimate Strength Design, the design strength of a member is determined by multiplying the strength reduction factor to the nominal strength. This concept may be a reasonable approach, however it can not consider failure modes appropriately. Moreover, column design strength diagram show an abrupt change at a low level of axial load, which does not seem to be reasonable. This research compares the design strength determined by the strength resistance factors. As the material resistance factors for flexure and compression, 0.65 and 0.90 are proposed for concrete and steel, respectively. The design strength calculation process by applying material resistance factors addresses failure modes more effectively than by applying member strength reduction factor, and provides more resnable design strength for reinforced concrete flexural and compression members.

RC 부재 균열면에서의 전단력 전달에 관한 고찰 (Shear Transfer across Cracks in Reinforced Concrete Members)

  • 홍성걸;하태훈
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
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    • pp.527-532
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    • 2000
  • Cracks in reinforced concrete members are important element in structural analysis and design. It is clear from the test results that shear strength of cracked member is remarkably degraded compared with uncracked one. However, considerable amount of shear resistance by such mechanisms as aggregate interlock and dowel action is still active. There are various approaches to shear transfer estimation including finite element analysis, fracture mechanics, upper bound theory of plasticity, etc., but working out comprehensive and consistent models and manageable equations is rather difficult and remains to be improved. Shear transfer problems under cyclic loading and effective compressive strength of cracked concrete have not been adequately investigated and need further systematic research.

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