• 제목/요약/키워드: FRP concrete

검색결과 755건 처리시간 0.032초

국내 시범 생산 CFRP rod를 적용한 보 부재의 휨-전단 특성 (Characteristics of Flexuarl-Shear Behavior of Beam Using Demonstrated CFRP Rod)

  • 최소영;김일순;최명성;양은익
    • 한국구조물진단유지관리공학회 논문집
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    • 제26권5호
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    • pp.86-94
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    • 2022
  • 전 세계적으로 철근의 부식으로 인해 발생하는 철근 콘크리트 구조물의 성능 저하를 해결하기 위하여, FRP를 철근으로 대체하는 것은 상당한 주목을 받고 있으며, FRP 물성을 향상시켜 구조물의 사용 수명을 연장하기 위한 기술 개발이 진행되어 왔다. 이에 따라, 고강도 및 고강성을 갖는 국산형 CFRP rod와 CFRP grid의 개발 및 제조 기술이 필요하며, 이를 적용한 구조 부재의 거동을 평가한 연구가 수행되어야 한다. 본 연구에서는 국내 시범 생산 CFRP rod를 보강근으로 사용한 보 부재의 휨 전단 거동을 보강비와 전단 경간비에 따라 검토하였다. 그 결과, 일정 범위를 벗어난 보강비를 사용할 경우, CFRP rod에 의한 성능 개선 효과가 상쇄되거나 효과가 크지 않는 것으로 나타났다. 한편, CFRP rod를 사용한 보 부재의 경우, 국내 구조 설계 기준에 근거하여 전단 철근을 배치하더라도 전단 파괴 가능성이 발생하였다. 그러므로 CFRP rod를 사용한 보 부재의 경우, 보강비 제한과 전단파괴를 방지하기 위한 검토가 필요한 것으로 판단된다. 또한, CFRP rod를 사용한 보 부재의 연성은 변형 에너지 평가방법에 따라 결정되므로, 보 부재의 구조 거동을 반영한 변형 에너지 평가법을 적용하여 연성을 평가해야 한다.

CFRP 플레이트 적용 스터럽 부분절단형 표면매립공법으로 보강된 철근콘크리트 보의 휨 거동에 대한 실험적 평가 (Experimental Verification of Flexural Response for Strengthened R/C Beams by Stirrup Partial-Cutting Near Surface Mounted Using CFRP Plate)

  • 오홍섭;심종성;주민관;이기홍
    • 콘크리트학회논문집
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    • 제20권6호
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    • pp.671-679
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    • 2008
  • 최근 fiber reinforced polymer (FRP)를 적용한 near surface mounted (NSM) 보강공법은 열화된 콘크리트구조물에 대해 유지관리 측면에서 활발하게 적용되고 있다. 그러나, 기존 NSM 보강공법은 보강깊이가 부족한 콘크리트구조물에 대해서는 그 적용함에 있어 다소 제약이 있어왔으며 또한 비교적 얇게 보강된 특성으로 인하여 공용 시 부착특성에 대한 우려도 함께 부각되어 왔다. 이 문제점을 해결하고자, 본 연구에서는 스터럽 부분절단형 NSM 공법 (이하 SCNSM 공법)을 개발하여 노후화된 콘크리트구조물의 보강성능을 향상시키고자 한다. 본 공법은 기존 NSM 보강공법 적용 시 보강깊이 확보가 어려운 노후화된 콘크리트구조물의 성능향상에 적합한 공법이다. 본 연구에서는 새로 개발된 SCNSM 보강공법의 휨 성능을 검증하고자 휨 실험을 수행하였으며, 이를 기존 NSM 보강공법이 적용된 휨구조물과 비교분석하였다. 시험변수로는 보강길이 (순지간의 32%, 48%, 70%, 80%, 96%)를 적용하였으며, 하중-변위관계, 변형률관계 등이 분석되었다. 시험 결과, SCNSM 보강시험체는 기존 NSM 보강시험체와 유사한 극한하중 및 구조거동을 나타내었으며, 특히, 하부 스터럽 부분절단에 따른 구조적 취약성은 확인되지 않았다. 따라서, SCNSM 보강공법은 노후화된 콘크리트구조물의 내하력 증진을 위한 보강 시 피복두께가 확보됨의 유무에 따른 제약을 받지 않는 효과적인 보강공법이 될 수 있을 것으로 분석되었다.

직교이방성 판의 좌굴 및 압축재의 국부좌굴에 대한 해석적 연구 (An Analytical Study on the Buckling of Orthotropic Plates and Local Buckling of Compression Members)

  • 최진우;이강연;박정환;윤순종
    • 복합신소재구조학회 논문집
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    • 제3권1호
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    • pp.21-28
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    • 2012
  • 이 연구에서는 직교이방성 판의 좌굴 및 직교이방성 판요소로 구성된 구조용 압축재의 국부좌굴에 대한 해석적 연구를 수행하였다. 섬유보강 폴리머 플라스틱 재료는 높은 비강도 및 비강성, 높은 부식저항성, 경량성 등 강재나 콘크리트와 비교해서 많은 장점을 가지고 있다. 특히, 펄트루젼 생산 방식은 섬유보강 폴리머 플라스틱 재료의 여러가지 생산방법 중 구조용 플라스틱 부재를 대량으로 생산하기에 가장 적합한 방법이다. 펄트루젼 생산방식은 부재의 축을 따라 주요 보강섬유가 배치되기 때문에 이 재료는 직교이방성으로 간주된다. 그러나, 펄트루젼 섬유보강 플라스틱 부재는 낮은 탄성을 갖고 있고 얇은 판요소로 구성되어 있기 때문에 압축하중이 재하될 경우 좌굴이 발생할 수 있다. 따라서, 이 부재를 설계하는데 안정성은 매우 중요한 문제가 된다. 이 연구에서는 기존의 연구를 따라서 직교이방성 판 및 직교이방성 판요소로 구성된 압축재의 국부좌굴에 대하여 검토하였으며, 국내에서 생산된 직교이방성 판요소로 구성된 압축재의 국부좌굴강도를 계산하였다.

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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보강된 노후 구조물 파괴거동 예측을 위한 수치해석기법 개발 (Numerical Analysis of Fracture Behavior in Aged RC Structures)

  • 신승교;고태호;김문겸;임윤묵
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2000년도 가을 학술발표회 논문집(II)
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    • pp.1031-1036
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    • 2000
  • In this study, a numerical simulation that can effectively predict the strengthening effect of repaired aged RC structures is developed using the axial deformation link elements. In repaired structures, concrete and interface are modeled as quasi-brittle materials. An elastic-perfectly plastic constitutive relationship is introduced for reinforcing bars. Also, a linear-elastic relationship for repair materials such as FRP or CFS. Structural deterioration in terms of corrosion of steel rebar is considered. The interfacial property between steel and concrete which is reduced by corrosion of steel rebar is obtained by comparing numerical results with experimental results of pull out tests. Obtained values are used in repaired reinforced concrete structures under flexural loading conditions. To investigate strengthening effect of the structures repaired with carbon fiber sheet(CFS), repaired and unrepaired RC structures are analyzed numerically. From analysis, rip-off, debonding and rupture failure mechanisms of interface between substrate and CFS can be determined. Finally, strengthening effect according to the variation of interfacial material properties is investigated, and it is shown that interfacial material properties have influence on the mechanical behavior of repaired structure systems Therefore, the developed numerical method using axial deformation link elements can use for determining the strengthening effects and failure mechanism of repaired aged RC structure.

Low velocity impact behavior of shear deficient RC beam strengthened with CFRP strips

  • Anil, Ozgur;Yilmaz, Tolga
    • Steel and Composite Structures
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    • 제19권2호
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    • pp.417-439
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    • 2015
  • Many methods are developed for strengthening of reinforced concrete structural members against the effects of shear. One of the commonly used methods in recent years is turned out to be bonding of fiber reinforced polymers (FRP). Impact loading is one of the important external effects on the reinforced concrete structural members during service period among the others. The determination of magnitude, the excitation time, deformations and stress due to impact loadings are complicated and rarely known. In recent year impact behavior of reinforced concrete members have been researched with experimental studies by using drop-weight method and numerical simulations are done by using finite element method. However the studies on the strengthening of structural members against impact loading are very seldom in the literature. For this reason, in this study impact behavior of shear deficient reinforced concrete beams that are strengthened with carbon fiber reinforced polymers (CFRP) strips are investigated experimentally. Compressive strength of concrete, CFRP strips spacing and impact velocities are taken as the variables in this experimental study. The acceleration due to impact loading is measured from the specimens, while velocities and displacements are calculated from these measured accelerations. RC beams are modeled with ANSYS software. Experimental result and simulations result are compared. Experimental result showed that impact behaviors of shear deficient RC beams are positively affected from the strengthening with CFRP strip. The decrease in the spacing of CFRP strips reduced the acceleration, velocity and displacement values measured from the test specimens.

Studying the effects of CFRP and GFRP sheets on the strengthening of self-compacting RC girders

  • Mazloom, Moosa;Mehrvand, Morteza;Pourhaji, Pardis;Savaripour, Azim
    • Structural Monitoring and Maintenance
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    • 제6권1호
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    • pp.47-66
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    • 2019
  • One method of retrofitting concrete structures is to use fiber reinforced polymers (FRP). In this research, the shear, torsional and flexural strengthening of self-compacting reinforced concrete (RC) girders are fulfilled with glass fiber reinforced polymer (GFRP) and carbon fiber reinforced polymer (CFRP) materials. At first, for verification, the experimental results were compared with numerical modeling results obtained from ABAQUS software version 6.10. Then the reinforcing sheets were attached to concrete girders in one and two layers. Studying numerical results obtained from ABAQUS software showed that the girders stiffness decreased with the propagations of cracks in them, and then the extra stresses were tolerated by adhesive layers and GFRP and CFRP sheets, which resulted in increasing the bearing capacity of the studied girders. In fact, shear, torsion and bending strengths of the girders increased by reinforcing girders with adding GFRP and CFRP sheets. The samples including two layers of CFRP had the maximum efficiencies that were 90, 76 and 60 percent of improvement in shear, torsion and bending strengths, respectively. It is worth noting that the bearing capacity of concrete girders with adding one layer of CFRP was slightly higher than the ones having two layers of GFRP in all circumstances; therefore, despite the lower initial cost of GFRP, using CFRP can be more economical in some conditions.

외부 프리스트레스트 탄소섬유판에 의한 구조물 보강공법 (Strengthening of Reinforced Concrete Structures using Externally Prestressed CFRP plates)

  • 박선규;유영찬
    • 전산구조공학
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    • 제17권1호
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    • pp.39-42
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    • 2004
  • 콘크리트 구조물에 대한 보강공법은 1950년도에 개발된 강판보강공법을 위시로 하여 강연선에 의한 외부프리스트레싱 공법으로 발전하고 있으며, 약 10년전부터는 신소재인 FRP(Fiber Reinforced Polymer)에 의한 보강공법이 본격적으로 개발되어 실용화되고 있다. 강판보강공법은 에폭시 등의 접착제를 이용하여 콘크리트 인장측에 강판을 접착함으로써 강도 및 강성을 증가시키는 공법으로 강판을 보강재로 이용함으로써 공법에 대한 인지도가 높은 장점이 있는 반면, 재료의 가공 및 취급이 어려우며 중량이 커 자중이 증가되는 단점이 있다. 또한, 강재의 부식위험이 상존하고 있어 이에 대한 세심한 배려 및 주기적인 유지관리를 필요로 한다.(중략)

복합말뚝의 수평 거동 분석 (Analysis of lateral behavior of composite pile)

  • 선석윤;곽노경;이송
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2008년도 춘계 학술발표회 초청강연 및 논문집
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    • pp.1195-1205
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    • 2008
  • Composite piles have been used in ground conditions where conventional piles are unsuitable or uneconomical. They may consist of a combination of timber and concrete pile in Europe. One method of doing this was to drive a steel tube to just below water level, and a concrete pile was lowered down it and driven to the required level where corrosion was susceptible in U.K. Recently, a fiber reinforced polymer (FRP) composite pile was developed to use in many marine locations for piers and waterfront buildings in the USA(Hoy, 1995; Phair, 1997). A steel composite (SC) pile reinforced concrete spun pile with steel tube was also proposed and used for the foundation acting a high lateral earthquake load. Composite piles have been developed and researched to increase lateral resistance or to prevent corrosion in marine structures. In paper, the composite pile consisting of the steel upper portion and the concrete lower portion is proposed and are carried out several tests to confirm the capacity of the pile such as lateral load test, dynamic load tests and bending test. It is noted that the composite pile would be a economical pile being capable of increasing lateral resistance.

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Retrofitting of squat masonry walls by FRP grids bonded by cement-based mortar

  • Popa, Viorel;Pascu, Radu;Papurcu, Andrei;Albota, Emil
    • Earthquakes and Structures
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    • 제10권1호
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    • pp.125-139
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    • 2016
  • For seismic retrofitting of masonry walls, the use of fibre reinforced cement-based mortar for bonding the fibre grids can eliminate some of the shortcomings related to the use of resin as bonding material. The results of an experimental testing program on masonry walls retrofitted with fibre reinforced mortar and fibre grids are presented in this paper. Seven squat masonry walls were tested under unidirectional lateral displacement reversals and constant axial load. Steel anchors were used to increase the effectiveness of the bond between the fibre grids and the masonry walls. Application of fibre grids on both lateral faces of the walls effectively improved the hysteretic behaviour and specimens could be loaded until slip occurred in the horizontal joint between the masonry and the bottom concrete stub. Application of the fibre grids on a single face did not effectively improve the hysteretic behaviour. Retrofitting with fibre reinforced mortar only prevented the early damage but did not effectively increase deformation capacity. When the boundaries of the cross sections were not properly confined, midplane splitting of the masonry walls occurred. Steel anchors embedded in the walls in the corners area effectively prevented this type of failure.