• 제목/요약/키워드: Carbon Fiber Reinforced Polymer (CFRP)

검색결과 261건 처리시간 0.028초

미래모빌리티를 위한 차세대 경량구조복합재료 검토: 자기강화복합재료의 적용 가능성 (Next Generation Lightweight Structural Composite Materials for Future Mobility Review: Applicability of Self-Reinforced Composites)

  • 김미나;장지운;이혜성;오명준;김성륜
    • Composites Research
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    • 제36권1호
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    • pp.1-15
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    • 2023
  • 미래모빌리티의 발전 기대에 따라 에너지 소비 절감에 대한 수요가 증가하고 있다. 경량구조용소재는 온실가스 배출 감소 및 에너지 효율 향상을 위한 방안으로 알려져 있다. 특히, 섬유강화복합재료(FRP, fiber reinforced polymer composite)는 뛰어난 기계적 특성 및 낮은 무게로 인해 기존 합금을 대체할 수 있는 소재로 주목받는다. 본 논문에서는, 탄소섬유강화복합재료(CFRP, carbon FRP) 및 자기강화복합재료(SRC, self-reinforced composite)의 산업 적용 및 연구 동향을 강화재, 고분자 매트릭스 및 공정에 기반하여 검토하였다. 항공분야에서 주로 활용되는 에폭시 수지 기반 오토클레이브 공법의 높은 공정단가 및 긴 제조시간을 극복하기 위하여, 속경화성 에폭시 수지를 이용한 고압수지이송성형 공정으로 CFRP가 적용된 전기자동차의 양산을 보고하였다. 또한, 탄소섬유복합재료의 재활용 이슈를 해결하기 위한 열가소성 수지 기반 CFRP 및 계면 향상 방안들이 재료 및 공정 측면에서 검토되었다. FRP의 우수한 기계적 특성을 유도하는 주요한 요인으로 알려진 완벽한 매트릭스-강화재 계면을 형성하기 위하여, 고분자 섬유에 동일한 매트릭스를 함침시킨 SRC에 대한 연구들이 보고되고 있다. 다양한 열가소성 고분자에 기초한 SRC의 물리적 및 기계적 특성들을 고분자 배향 및 복합재료 구조 측면에서 검토하였다. 또한, 고연 신 폴리프로필렌 섬유 기반 SRC의 공정창 확장을 위한 공중합체 매트릭스 전략이 논의되었다. 경량구조용소재의 CFRP 및 SRC 적용은 미래모빌리티의 에너지 효율 향상에 대한 잠재적인 선택을 제공할 수 있다.

Experimental and analytical investigations for behaviors of RC beams strengthened with tapered CFRPs

  • Kim, Naeun;Kim, Young Hee;Kim, Hee Sun
    • Structural Engineering and Mechanics
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    • 제53권6호
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    • pp.1067-1081
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    • 2015
  • This study investigates structural and mechanical behaviors of RC (Reinforced concrete) beams strengthened with tapered CFRP (Carbon fiber reinforced polymer) sheets having various configurations. Toward this goal, experiments are performed on RC beams strengthened with four layers of CFRP sheets and each layer of the CFRP is prepared to have different length. Experimental results show that tapered CFRPs have better strengthening effect than non-tapered CFRP sheets and maximum loads of the beams with tapered CFRPs are governed by the length of first CFRP layer rather than total length of CFRP layers. In addition, analyses are performed using FE (Finite Element) models including cohesive elements to predict debonding behaviors between FRP and concrete elements. The predicted results from the FE models show good agreement with the experimental results.

CFRP 쉬트로 전단보강후 동결융해에 노출된 철근콘크리트 보의 보강성능 (Strengthening Performance of RC Beams Exposed to Freezing and Thawing Cycles after Strengthening in Shear with CFRP Sheet)

  • 윤현도;김선우;김윤수;이민정;서수연;최기봉
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.161-164
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    • 2008
  • 구조물은 사용연한 경과에 따른 노후화 및 용도 변경 등에 의한 보수.보강시 널리 행해지는 부착공법 중 탄소섬유, 아라미드섬유, 유리섬유 등을 이용한 섬유보강 폴리머(Fiber-reinforced polymer,FRP) 보강공법은 섬유 자체의 내화학성, 내구성과 우수한 시공성 등의 장점을 지니고 있다. 현재 FRP 부착공법을 이용한 보강설계 및 보강구조물의 내력 계산시, 콘크리트 부재와의 부착력을 완전부착으로 가정하고 있으나 콘크리트 구조물이 내부적 요인 및 외부 환경요인에 의해 열화될 경우 내력저하 및 1차적인 표면부 열화로 인한 FRP 부착면적의 손실발생이 우려된다. 하게 된다. 따라서 노후화에 따라 내력저하를 보이는 철근콘크리트 구조물에 FRP 보강시 열화에 따른 FRP 보강부재와 콘크리트 모재 간의 부착력 손실에 관한 연구가 필요하며, 본 연구에서는 환경적 요인에 의해 열화되는 철근콘크리트 부재의 파괴양상 및 구조성능과 FRP 보강부재와 콘크리트 모재와의 부착성능 저하현상을 분석하기 위하여 동결융해에 따른 CFRP 쉬트의 보강성능을 실험적으로 규명하고자 한다.

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CFRP를 이용한 비내진 철근콘크리트 외부 보-기둥 접합부의 내진 보강 (Seismic Retrofit of RC Exterior Beam-Column Joints Strengthened with CFRP)

  • 김민;이기학;이재홍;우성우;이정원
    • 콘크리트학회논문집
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    • 제18권6호
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    • pp.729-736
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    • 2006
  • 적절한 내진상세로 설계되지 않은 철근콘크리트 구조물은 보-기둥 접합부내에서 취약한 전단파괴에 노출되고 큰 변형이 일어나, 구조적인 붕괴가 일어날 수 있다. 본 연구는 CFRP로 보강한 철근콘크리트 외부 보-기둥 접합부를 반복 횡력을 적용하여 보강된 보-기둥 접합부의 내진성능을 알아보았다. 보-기둥 접합부의 구조적 성능을 향상시키기 위해 CFRP의 부착 위치나 두께를 달리하여 효과적인 보강방법을 관찰하고자 하였다. 비내진상세로 배근된 실험체 1개와 내진상세로 배근된 실험체 1개 그리고 비내진상세를 가진 실험체를 CFRP로 보강한 실험체 6개, 총 8개의 보-기둥 접합부 실험체에 반복횡력을 가하여 내진보강의 효과를 조사하였다. 반복 횡력을 적용하였다. 본 연구에서는 비내진상세를 가진 콘크리트 보-기둥 접합부에 대한 CFRP의 보강방법은 구조물의 강도와 연성을 증가시켜 구조물의 내진성능을 향상시키는데 효과적임을 보여 주었다.

Strengthening of steel-concrete composite beams with prestressed CFRP plates using an innovative anchorage system

  • Wan, Shi-cheng;Huang, Qiao;Guan, Jian
    • Steel and Composite Structures
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    • 제32권1호
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    • pp.21-35
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    • 2019
  • This study investigates the flexural behavior of steel-concrete composite beams strengthened with prestressed carbon fiber-reinforced polymer (CFRP) plates. An innovative mechanical anchorage system was developed. The components of the system can be easily assembled on site before applying a prestressing force, and removed from the structures after strengthening is completed. A total of seven steel-concrete composite specimens including four simply supported beams strengthened at the positive moment region and three continuous beams strengthened at the negative moment region were tested statically until failure. Experimental results showed that the use of prestressed CFRP plates enhanced the flexural capacity and reduced the mid-span deflection of the beams. Furthermore, by prestressing the CFRP laminates, the material was used more efficiently, and the crack resistance of the continuous composite specimens at the central support was significantly improved after strengthening. Overall, the anchorage system proved to be practical and feasible for the strengthening of steel-concrete composite beams. The theoretical analysis of ultimate bearing capacity is reported, and good agreement between analytical values and experimental results is achieved.

Ductility of carbon fiber-reinforced polymer (CFRP) strengthened reinforced concrete beams: Experimental investigation

  • Kim, Sang Hun;Aboutaha, Riyad S.
    • Steel and Composite Structures
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    • 제4권5호
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    • pp.333-353
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    • 2004
  • Strength of reinforced concrete beams can easily be increased by the use of externally bonded CFRP composites. However, the mode of failure of CFRP strengthened beam is usually brittle due to tension-shear failure in the concrete substrate or bond failure near the CFRP-Concrete interface. In order to improve the ductility of CFRP strengthened concrete beams, critical variables need to be investigated. This experimental and analytical research focused on a series of reinforced concrete beams strengthened with CFRP composites to enhance the flexural capacity and ductility. The main variables were the amount of CFRP composites, the amount of longitudinal and shear reinforcement, and the effect of CFRP end diagonal anchorage system. Sixteen full-scale beams were investigated. A new design guideline was proposed according to the effects of the above-mentioned variables. The experimental and analytical results were found to be in good agreement.

인발성형된 T형 탄소섬유복합재료를 이용한 철근콘크리트보의 휨보강 성능 (Flexural Strength Capacity of RC Beams Strengthened with Pultruded T-Shape Carbon Fiber Reinforced Polymers)

  • 박종섭;박영환;유영준;정우태;강재윤
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 추계 학술발표회 제16권2호
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    • pp.473-476
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    • 2004
  • Carbon Fiber Reinforced Polymer(CFRP) composites are widely applied to strengthen deteriorated concrete structures. This paper presents the experimental results of the performance of reinforced concrete(RC) beams strengthened with Near Surface Mounted T-shape CFRP. Simple beams with 3m span length were tested to investigate the effect of CFRP reinforcement shapes on the flexural behavior of strengthened RC beams. The test results were analyzed with the special emphasis on the failure mode and the maximum load.

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탄소섬유쉬트로 보강된 RC보의 휨 부착성능에 관한 실험적 연구 (An Experimental Study on Flexural Adhesive Performance of RC Beams Strengthened by Carbon Fiber Sheets)

  • 최기선;류화성;최근도;이한승;유영찬;김긍환
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 가을 학술발표회 논문집
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    • pp.997-1002
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    • 2001
  • Tensile strength of CFRP (Carbon Fiber Reinforced Polymer) is approximately 10 times higher than that steel reinforcement, but the design strength of CFRP is normally reduced by the bond failure between RC and CFRP. Many researches have been carried out, concerned with bond behavior between RC and CFRP to prevent the unpredicted bond failure of RC beam strengthened by CFRP, but the national design code for design bond strength of CFRP hasn't been constructed. In this study, 3 beams specimen strengthened by CFRP under the variable of bonded length were tested to derive the design bond strength of CFRP to the RC flexural members. Also 2 beams specimen strengthened by CFRP were tested to inspect the construction environment effects such as mixing error of epoxy resin and the amount of primer epoxy resin. From the test results, It is concluded that the maximum design bond strength of CFRP to RC flexural member is considered to be $\tau_{a}$=8kgf/$cm^{2}$.

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Bond Strength of Super-CFRP Rod in Concrete

  • Seo, Sung-Tag
    • International Journal of Concrete Structures and Materials
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    • 제18권1E호
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    • pp.29-34
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    • 2006
  • Elastic modulus, tensile and bond capacities are important factors for developing an effective reinforcing action of a flexural member as a reinforcing material for concrete structures. Reinforcement must have enough bond capacity to prevent the relative slip between concrete and reinforcement. This paper presents an experimental study to clarify the bond capacity of prestressed carbon fiber reinforced polymer(CFRP) rod manufactured by an automatic assembly robot. The bond characteristics of CFRP rods with different pitch of helical wrapping were analyzed experimentally. As the result, all types of CFRP rods show a high initial stiffness and good ductility. The mechanical properties of helical wrapping of the CFRP rods have an important effect on the bond of these rods to concrete after the bond stress reached the yield point. The stress-slip relationship analyzed from the pull-out test of embedded cables within concrete was linear up to maximum bond capacity. The deformation within the range of maximum force seems very low and was reached after approximately 1 mm. The average bond capacity of CF20, CF30 and CF40 was about 12.06 MPa, 12.68 MPa and 12.30 MPa, respectively. It was found that helical wrapping was sufficient to yield bond strengths comparable to that of steel bars.

A study on CFRP based lightweight House deck structure design and configuration of Deck body connected IoT sensor data acquisition devices

  • Jaesang Cha;Chang-Jun Ahn;Quoc Cuong Nguyen;Yunsik Lim;Hyejeong Cho;Seung Youn Yang;Juphil Cho
    • International Journal of Internet, Broadcasting and Communication
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    • 제15권4호
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    • pp.250-260
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    • 2023
  • In this paper, we designed a IoT(Internet of Things) sensor block embedded lightweight house deck structures that can be implemented using Carbon Fiber Reinforced Polymer(CFRP). Deck-Sensor interconnection interface block via IoT connectivity Hub that can mount external environmental sensors such as fire sensors on the Deck body itself was also proposed. Additionally we described the configuration of devices for data acquisition and analysis based on IoT environmental detection sensors that can be commonly installed and used on these deck bodies. On the other hand, received sensing data based monitoring user interface(UI) also developed and used for sensing data analysis for remote monitoring center. Through the implementation of such IoT-based sensor data transmission and collection analysis devices and UI software, this paper confirmed the availability of CFRP based lightweight House deck structure and possibility of CFRP deck-based IoT sensor data networking and analysis functions.