• 제목/요약/키워드: FRP Reinforced Concrete

검색결과 556건 처리시간 0.021초

좌굴방지가새와 FRP로 보강된 RC골조의 반복 횡하중 실험 (Reversed Lateral Load Tests on RC Frames Retrofitted with BRB and FRP)

  • 이한선;이경보;황성준;조창석
    • 콘크리트학회논문집
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    • 제23권5호
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    • pp.683-692
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    • 2011
  • 필로티형 저층 RC 집합주택에서는 지진 발생 시 필로티층에 손상이 집중된다. 따라서, 이 연구에서는 필로티층의 비틀림과 X, Y방향의 강도와 강성을 증가시키기 위해 좌굴방지가새를 설치함과 동시에, 과도한 변형과 축력의 변동이 발생하는 외부기둥의 연성과 축성능, 전단 성능을 증가시키기 위해 외부기둥을 FRP로 보강하였다. 이와 같은 보강 효과를 실험적으로 검증하기 위해 순수 골조와 FRP와 좌굴방지가새로 보강된 골조에 대한 반복 횡하중 실험을 수행하였다. 실험 결과 항복강도(43.2 kN)는 설계항복강도(30 kN)와 압축부의 강도 증가 때문에 차이가 나타났고, 강성(11.6 kN/mm)은 설계강성(24.2 kN/mm)에 비하여 절반의 값을 가졌다. 이러한 강성의 차이는 골조와 가새의 접합부 사이의 미끄러짐과 기초의 회전 및 횡변위가 원인으로 나타났다. 보강된 골조의 에너지 흡수 능력은 순수 골조에 비해 7.5배 향상되었다. 기초당 설치된 로드셀의 개수를 2개에서 1개로 변화시키면, 횡강성이 11.6 kN/mm에서 6 kN/mm로 줄어 들었고, 이것은 단지 순수 골조의 강성에 3배에 지나지 않는다(2.1 kN/mm).

Simulation of PZT monitoring of reinforced concrete beams retrofitted with CFRP

  • Providakis, C.P.;Triantafillou, T.C.;Karabalis, D.;Papanicolaou, A.;Stefanaki, K.;Tsantilis, A.;Tzoura, E.
    • Smart Structures and Systems
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    • 제14권5호
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    • pp.811-830
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    • 2014
  • A numerical study has been carried out to simulate an innovative monitoring procedure to detect and localize damage in reinforced concrete beams retrofitted with carbon fiber reinforced polymer (CFRP) unidirectional laminates. The main novelty of the present simulation is its ability to conduct the electromechanical admittance monitoring technique by considerably compressing the amount of data required for damage detection and localization. A FEM simulation of electromechanical admittance-based sensing technique was employed by applying lead zirconate titanate (PZT) transducers to acquire impedance spectrum signatures. Response surface methodology (RSM) is finally adopted as a tool for solving inverse problems to estimate the location and size of damaged areas from the relationship between damage and electromechanical admittance changes computed at PZT transducer surfaces. This statistical metamodel technique allows polynomial models to be produced without requiring complicated modeling or numerous data sets after the generation of damage, leading to considerably lower cost of creating diagnostic database. Finally, a numerical example is carried out regarding a steel-reinforced concrete (RC) beam model monotonically loaded up to its failure which is also retrofitted by a CFRP laminate to verify the validity of the present metamodeling monitoring technique. The load-carrying capacity of concrete is predicted in the present paper by utilizing an Ottosen-type failure surface in order to better take into account the passive confinement behavior of retrofitted concrete material under the application of FRP laminate.

Behavior study of NC and HSC RCCs confined by GRP casing and CFRP wrapping

  • Sajedi, Fathollah;Shariati, Mahdi
    • Steel and Composite Structures
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    • 제30권5호
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    • pp.417-432
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    • 2019
  • This paper presents the results of axial compression testing and numerical modeling on reinforced concrete columns (RCC) with normal concrete (NC) and high-strength concrete (HSC), RCC confined by glass-fiber reinforced plastic pipes (GRP) casing as well as carbon fiber reinforced polymer (CFRP), The major parameters evaluated in the experiments were the effects of concrete type, GRP casing and CFRP wrapping, as well as the number of CFRP layers. 12 cylindrical RCC ($150{\times}600mm$) were prepared and divided into two groups, NC and HSC. Each group was divided into two parts; with and without GRP casing. In each part, one column was without CFRP strengthening layer, a column was wrapped with one CFRP layer and another column with two CFRP layers. All columns were tested under concentrated compression load. Numerical modeling was performed using ABAQUS software and the results of which were compared with experimental findings. A good agreement was found between the results. Results indicated that the utilization of CFRP wrapping and GRP casing improved compression capacity and ductility of RCC. The addition of one and two layer-FRP wrapping increased capacity in the NC group to an average of 18.5% and 26.5% and in the HSC group to an average of 10.2% and 24.8%. Meanwhile, the utilization of GRP casing increased the capacity of the columns by 3 times in the NC group and 2.38 times in the HSC group. The results indicated that although both CFRP wrapping and GRP casing increased confinement, the GRP casing gave more increase capacity and ductility of the RCC due to higher confinement. Furthermore, the confinement effect was higher on NC group.

복합재료 트러스 교량시스템의 정적거동 및 파괴모드에 관한 해석적 연구 (Study of Failure Mode and Static Behavior of Lightweight FRP Truss Bridge Deck System)

  • 정우영;이형길
    • 한국전산구조공학회논문집
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    • 제20권5호
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    • pp.511-520
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    • 2007
  • 본 연구는 복합재료 교량시스템의 규준 정립을 위한 연구로서 실제 설계 시공되어진 복합재료 교량의 정밀해석수행과 이를 통한 복합재료 교량의 파괴거동 및 설계기준 등을 조사하는데 그 목적이 있다. 본 연구의 효율적인 연구를 위하여 실제 미국 NEW YORK주 내에 설계 시공되어있는 Noncomposite-FRP 복합재료 교량을 대상으로 해석적 연구를 수행하였으며 본 연구에서 사용된 해석적 모델을 토대로 실제 미국에서 기 수행되어진 교량 거동에 관한 해석 및 실험하중 평가와 그 결과를 비교하였다. 특히 국내 복합재료 교량의 해석적 설계기준 평가를 위하여 보다 실질적이고 정확한 파괴모드의 조사 및 분석이 요구되어지므로 본 연구에서는 이를 위하여 기존의 해석적 연구에서 가벼운 중량으로 인하여 무시되었던 자중의 영향과 각 적층 layer에 설계된 ply orientation을 고려하여 해석하였다. 그 결과 자중을 고려한 복합재료 패널들의 경우, 제작 결함에 따른 이음부 파괴가 없을 경우 교량 상부 구조 중 횡축 보에서의 국부 좌굴 파괴가 교량의 파괴를 지배할 것으로 본 연구결과에서 예측되었다. 이는 복합재료 교량 제작 시 복합재료 상판 패널과 보의 이음부가 Noncomposite로 제작되는 경우 실제 제작되어진 복합재료 상판의 고 강성에 의하여 재하 하중에 의한 하부 강재 거더 좌굴이 선행되는 것으로 판단된다.

F.R.P 재료 보강에 의한 신개념 중량충격음 저감대책 (Heavy-weight Impact Noise Reduction of Concrete Slab Reinforcement Using F.R.P)

  • 정정호;유승엽;이평직;전진용;조아형
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2005년도 춘계학술대회논문집
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    • pp.383-386
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    • 2005
  • Low frequency heavy-weight impact noise is the most irritating noise in Korean high-rise reinforced concrete apartment buildings. This low frequency noise is generated by foot traffic due to the fact that Koreans do not wear shoes at home. The transmission of the noise is facilitated by a load bearing wall structural system without beams and columns which is used in these buildings. In order to control low frequency heavy-weight impact noise, floating floors using isolation materials such as glass-wool mat and poly-urethane mat are used. However, it was difficult to control low frequency heavy-weight impact sound using isolation material. In this study, reinforcement of concrete slab using beams and plate was conducted. Using the FEM analysis, the effect of concrete slab reinforcement using FRP(fiber-glass reinforced plastic) on the bang machine impact vibration acceleration level and sound were conducted at the standard floor impact sound test building. The $3{\sim}4dB$ floor impact vibration acceleration level and impact sound pressure level were reduced and the natural frequency of slabs were changed.

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탄소와 유리 섬유로 제작된 하이브리드 바의 섬유 배치에 따른 인장성능 실험 (Tension Test of Hybrid Bars with Carbon and Glass Fibers)

  • 유영준;박지선;박영환;유영찬;김긍환;김형열
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(II)
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    • pp.325-328
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    • 2005
  • Fiber Reinforced Polymers are recognized as the alternative materials for solving the problem due to the excellent corrosion-resistant property, light-weight and higher strength than steel. Glass fiber is superior to other fibers from the economical point of view but the mechanical property is not. For this reason, researches to improve the mechanical property of glass fiber reinforced polymer rebar has been conducted and it emerged as a solution to make the bar as a hybrid type with carbon fibers. This paper presents results of experimental program to investigate the scattering effectiveness of carbon fibers in glass FRP bar.

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콘크리트와 탐소섬유판 계면의 본드-슬립모델 산정 (Assessment of Bond-Slip Interface Model with Concrete and CFRP Plates)

  • 양동석;고병순;박선규;유영찬
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.635-638
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    • 2004
  • External bonding of steel plates has been used to strengthen deficient reinforced-concrete structures since the 1960s. In recent years, fiber-reinforcde polymer(FRP) plates have been increasingly used to replace steel plates due to their superior properties. This paper is concerned with anchorage failure due to crack propagation parallel to the boned plated near or along the adhesive/concrete interface, staring from the critically stressed position toward the anchored end of the plates. Factor of bond-slip interface model is average bond stress, effective length, slip volume and fracture energy. The aim of the present paper is to provide a comprehensive assessment of bond-slip interface model with concrete and CFRP plates.

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Experimental study on identification of stiffness change in a concrete frame experiencing damage and retrofit

  • Zhou, X.T.;Ko, J.M.;Ni, Y.Q.
    • Structural Engineering and Mechanics
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    • 제25권1호
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    • pp.39-52
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    • 2007
  • This paper describes an experimental study on structural health monitoring of a 1:3-scaled one-story concrete frame subjected to seismic damage and retrofit. The structure is tested on a shaking table by exerting successively enhanced earthquake excitations until severe damage, and then retrofitted using fiber-reinforced polymers (FRP). The modal properties of the tested structure at trifling, moderate, severe damage and strengthening stages are measured by subjecting it to a small-amplitude white-noise excitation after each earthquake attack. Making use of the measured global modal frequencies and a validated finite element model of the tested structure, a neural network method is developed to quantitatively identify the stiffness reduction due to damage and the stiffness enhancement due to strengthening. The identification results are compared with 'true' damage severities that are defined and determined based on visual inspection and local impact testing. It is shown that by the use of FRP retrofit, the stiffness of the severely damaged structure can be recovered to the level as in the trifling damage stage.

CFRP 교각 재킷 보수를 적용한 손상된 철근콘크리트 교량 교각의 여진 취약도 분석 (Aftershock Fragility Assessment of Damaged RC Bridge Piers Repaired with CFRP Jackets under Successive Seismic Events)

  • 전종수;이도형
    • 한국지진공학회논문집
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    • 제22권5호
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    • pp.271-280
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    • 2018
  • This paper presents a framework for developing aftershock fragility curves for reinforced concrete bridges initially damaged by mainshocks. The presented aftershock fragility is a damage-dependent fragility function, which is conditioned on an initial damage state resulting from mainshocks. The presented framework can capture the cumulative damage of as-built bridges due to mainshock-aftershock sequences as well as the reduced vulnerability of bridges repaired with CFRP pier jackets. To achieve this goal, the numerical model of column jackets is firstly presented and then validated using existing experimental data available in literature. A four-span concrete box-girder bridge is selected as a case study to examine the application of the presented framework. The aftershock fragility curves are derived using response data from back-to-back nonlinear dynamic analyses under mainshock-aftershock sequences. The aftershock fragility curves for as-built bridge columns are firstly compared with different levels of initial damage state, and then the post-repair effect of FRP pier jacket is examined through the comparison of aftershock fragility curves for as-built and repaired piers.

Computational and experimental analysis of beam to column joints reinforced with CFRP plates

  • Luo, Zhenyan;Sinaei, Hamid;Ibrahim, Zainah;Shariati, Mahdi;Jumaat, Zamin;Wakil, Karzan;Pham, Binh Thai;Mohamad, Edy Tonnizam;Khorami, Majid
    • Steel and Composite Structures
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    • 제30권3호
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    • pp.271-280
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    • 2019
  • In this paper, numerical and experimental assessments have been conducted in order to investigate the capability of using CFRP for the seismic capacity improvement and relocation of plastic hinge in reinforced concrete connections. Two scaled down exterior reinforced concrete beam to column connections have been used. These two connections from a strengthened moment frame have been tested under uniformly distributed load before and after optimization. The results of experimental tests have been used to verify the accuracy of numerical modeling using computational ABAQUS software. Application of FRP plate on the web of the beam in connections to improve its capacity is of interest in this paper. Several parametric studies were carried out for CFRP reinforced samples, with different lengths and thicknesses in order to relocate the plastic hinge away from the face of the column.