• Title/Summary/Keyword: 철근콘크리트 구조

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Retrofit Capacity of Near-Surface-Mounted RC Beam by using FRP Plate (FRP 판으로 표면매입 보강된 철근콘크리트 보의 보강성능)

  • Seo, Soo Yeon;Choi, Ki Bong;Kwon, Yeong Sun
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.16 no.1
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    • pp.18-26
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    • 2012
  • Recently, research about Near-Surface-Mounted Rertofit (NSMR) method has been being widely performed as a method for retrofit of RC structure using FRP. This method requires additional work to make grooves during retrofit but makes it possible to improve retrofit effect and reduce the attack by environment. In this paper, the retrofit effect of NSMR method, especially the method using FRP plate instead of bar is investigated through experiment. Six RC beams were made and retrofitted using by FRP plate following the planned methods; Surface-Bonding Retrofit (SBR), NSMR without debonding region and NSMR with debonding region. Flexural capacity of all specimens was evaluated by beam test with simple support condition. As a result, NSMR method with FRP plate had more improved structural capacity than SBR method. The calculation process of ACI 440-2R can be used to predict the member retrofitted by NSMR with FRP plate with consideration on the three anchorage failure mechanism.

Behaviour of the Reinforced Concrete Columns with Shear Reinforcement (전단보강량에 따른 철근콘크리트 기둥의 거동)

  • Nam, Sang-Uk;Song, Han-Beom;Tae, Kyung-Hoon;Yi, Waon-Ho;Oh, Sang-Hoon;Yang, Won-Jik
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.45-48
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    • 2008
  • Under earthquake loads, the columns on the lower stories carry large axial forces and horizontal forces as the earthquake loads are acting horizontally and vertically on the building. To distribute the energy entered into the building under earthquakes according to the plastic deformation of the members, it is safer and more economic to persuade plastic hinge to occur in the beams rather than on the columns. However, it is unavoidable to have plastic hinge occurring on the columns when it is applied on both of the main axes of the building, which results in high shear force on the column end, and reinforced concrete column may result in sudden brittle failure due to bending moment and shear force. To increase restriction of the reinforced concrete column on the horizontal forces, this study uses repetitive loading experiments with different amount of shear reinforcement, and analyzes and compares the structural safety and behaviour of the reinforced test materials.

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Structural Performance and Fire Resistance Capacity of Inorganic Polymer Composites for Carbon Sheets Exposed to High Temperature (탄소섬유쉬트 보강 콘크리트용 무기계 폴리머 접착제의 내화 및 구조성능)

  • Chung, Lan;Park, Hyun-Soo
    • Magazine of the Korea Concrete Institute
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    • v.10 no.5
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    • pp.109-115
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    • 1998
  • 철근콘크리트 구조물이 과소설계되어 있거나 과다 하중이 작용하게 되면 그 구조물의 구조성능을 파악하여 보수.보강을 시행하게 된다. 최근에 가장 맣이 사용되는 보수.보강 재료로는 특히 휨내력을 보강하는데 탄소섬유를 들 수 있다. 탄소섬유쉬트는 내열성과 내호염성에 있어서 회재가 발생할 경우 보강재료로서 충분한 성능을 가지고 있다. 그러나 이를 접착시키는데 사용되는 에폭시는 유기계 물질로서 화재시 유독가스가 발생하고 내열성능도 30$0^{\circ}C$정도에도 지탱하기 어려워 화재 발생이 가능한 구조물에 사용하기 어렵다. 이 연구에서는 무기계 폴리머 복합재료로 접착된 탄소섬유를 고온(약 800~100$0^{\circ}C$, 1시간)으로 가열한 후 가열된 섬유판의 인장, 휨 전단내력을 검토하여 내열성능을 파악하고 이 섬유쉬트로 보강한 철근콘크리트 부재의 휨 성능을 실험적으로 규명하여 화재의 위험이 있는 구조물에 구조적인 보강재료로 사용이 가능한가를 검토하였다. 연구 결과, 개발된 무기계 폴리머 복합체는 인장강도, 휨강도 및 접착강도가 유기계 접착제와 유사하게 나타났고 800~100$0^{\circ}C$ 정도로 1시간 가열한 이후에도 상온 시험체 휨내력과 전단내력의 63%, 33% 정도를 유지하여 화재의 위험이 있는 부위에도 사용이 가능한 것으로 판단되었다.

Structural Performance of Flexural Dominant Reinforced Concrete Beams strengthened in Beam-Column Joint with SHCC (변형경화형 시멘트 복합체(SHCC)로 보-기둥 접합부 단면이 증설된 휨항복형 철근콘크리트 보의 구조성능)

  • Song, Seon-Hwa;Jang, Gwang-Soo;Kim, Yun-Su;Kim, Sun-Woo;Kim, Yong-Cheol;Yun, Hyun-Do
    • Proceedings of the Korea Concrete Institute Conference
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    • 2008.11a
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    • pp.53-56
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    • 2008
  • Reinforced concrete rahmen structures has been required ductility as well as strength of beam-column joint in seismically hazard area. Some investigations have been presented for retrofitting and/or strengthening structural elements in structure. Strain-hardening cementitious composite(SHCC) has been expected excellent reinforcement performance in beam-column joint area. The properties of reinforcing fiber, as tensile strength, aspect ratio and elastic moudulus, have great effect on the fracture behavior of SHCC. The purpose of this experimental study is to evaluate structural performance of exterior reinforced concrete beam-column joint strengthened with SHCC under cyclic loading.

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Behavior of RC Structures under Fire (화재와 철근콘크리트 구조부재의 구조거동)

  • 홍성걸
    • Magazine of the Korea Concrete Institute
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    • v.14 no.2
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    • pp.24-29
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    • 2002
  • 산업화에 따른 인구 집중현상의 결과 도심지의 밀집형 고층주거형 구조물에 발생할 수 있는 화재는 인명과 경제적인 손실을 가져올 수 있으므로 이에 대한 체계적인 방재 시스템을 요구한다. 구조공학적인 측면에서 내화 특성은 화재에 대한 최후의 방어선으로서 구조적인 안정성을 유지하여야 한다. 화재로 인한 구조부재의 파괴는 구조체의 강성 및 강도저하가 주요 원인으로 근처 다른 구조부재의 파괴로 발전하면서 종국적으로 전체 구조물이 붕괴할 수도 있다.(중략)

Determination of Structural Capacity Based on Deformation and Bond Strength for RC Structure at Steel Corrosion (변형과 부착강도 기반 철근 부식에 의한 RC구조물의 구조적 성능 평가)

  • Jung Wook Lee;Ki Yong Ann
    • Journal of the Korean Recycled Construction Resources Institute
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    • v.11 no.4
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    • pp.449-457
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    • 2023
  • In this study, the structural limit for concrete was experimentally determined against corrosion of steel. The structural limit was taken as (1) the deformation of concrete at yielding, (2) the maximum pull-out strength and (3) the pull-out strength at the level for uncorroded specimen. Corrosion of steel was accelerated by extracting charges from steel surface to govern degree of steel corrosion. As a result, an increase in the steel diameter resulted in an increase in the corrosion degree to reach the concrete deformation at yielding. Again, an increase in the steel diameter resulted in an increase in the extracted charge to meet the maximum and uncorroded-equivalent level for the bond strength. However, the mass loss was marginally affected by the steel size, reflecting that these parameters could be used to alert the structural limit.

철근콘크리트 박스형 구조물의 적정 타설 길이 산정

  • 김학수
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 2002.11a
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    • pp.213-220
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    • 2002
  • 콘크리트 구조물에서 발생하는 균열은 심각한 구조적 결함을 야기시킬 뿐만 아니라 내구성의 강도와 외관의 손상을 초래하여 사용성을 저하시킨다. 이러한 균열은 여러 가지 요인에 의해 발생되며 균열이 구조물에 미치는 영향도 각양각색이다. 구조물에 균열이 존재한다고 하여 항상 그 구조물이 불안한 것도 아니며 그 크기와 위치, 원인 등에 따라 안전할 수도 있다. 따라서 균열이 발생된 콘크리트 구조물에서는 발생된 균열의 원인을 파악하고 정확하게 구조물을 해석한 후 그 안전성 여부를 평가하여 합당한 보수대책을 수립하는 것이 균열문제를 해결하는 방안이다.(중략)

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Fundamental Study on Developing Embedded Mini-Sensor for Nondestructive Diagnosis Corrosion of Rebar (비파괴 철근 부식 진단을 위한 매립형 미니센서 개발에 관한 기초적 연구)

  • Joh, Sung-Hyung;Lim, Young-Chul;Ismail, Mohamed;Lee, Han-Seung
    • Journal of the Korea institute for structural maintenance and inspection
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    • v.14 no.6
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    • pp.179-187
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    • 2010
  • Corrosion of rebar embedded reinforced concrete is the main cause of collapse and degradation of reinforced concrete structure. Degradation occurs in reinforced concrete structures from corrosion caused by the Chloride that the damage other than the severe degradation of the structure in terms of maintenance and construction when the huge expense required and deciding terms is hard. Therefore, early detection of rebar corrosion is important for efficient maintenance and repairing and planning. Meanwhile, how to evaluate the corrosion of the non-destructive measurements have been used a lot. In particular CM-II (corrosion meter) is used to measurement the natural potential, polarization resistance and the resistivity of the concrete, but has some disadvantages. Embedded mini-sensor has been developed in order to overcome these disadvantages. So Measurement corrosion for using the mini-sensor compares with the measured results CM-II (corrosion meter), the developed mini-sensor verify the validity.

Seismie Performance Evaluation of Reinforced Concrete Bridge Piers Supported by Laminated Rubber Bearings (적층고무받침을 사용한 철근콘크리트 교각의 내진성능평가)

  • 김태훈;최정호;신현목
    • Journal of the Earthquake Engineering Society of Korea
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    • v.8 no.2
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    • pp.63-72
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    • 2004
  • The purpose of this study is to evaluate seismic performance of reinforced concrete bridge piers supported by laminated rubber bearings. A computer program, named RCAHEST(Reinforced Concrete Analysis in Higher Evaluation System Technology), for the analysis of reinforced concrete structures was used. Material nonlinearity is taken into account by comprising tensile, compressive and shear models of cracked concrete and a model of reinforcing steel. The smeared crack approach is incorporated. Seismic isolator element is developed to predict behaviors of laminated rubber bearings. The proposed numerical method for seismic performance evaluation of reinforced concrete bridge piers supported by laminated rubber bearings is verified by comparison with reliable experimental results.