• 제목/요약/키워드: FRP layers

검색결과 82건 처리시간 0.029초

일축대칭 FRP 부재의 전체좌굴에 관한 실험적 연구 (Experimental Study on Global Buckling of Singly Symmetric FRP Members)

  • 이승식
    • 대한토목학회논문집
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    • 제26권1A호
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    • pp.99-106
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    • 2006
  • 일축대칭의 단면특성을 갖는 T형 부재는 단면의 특성상 축방향 압축력으로 인하여 전체좌굴이 발생할 경우 휨-비틀림 좌굴이 지배모드가 된다. 인발성형 T형 부재의 휨-비틀림 좌굴거동을 실험적 연구를 통하여 알아보았다. E-glass/vinylester와 E-glass/polyester로 만들어진 2종류의 인발성형 부재가 사용되었으며, 보강층의 배치, 보강층의 두께, 구성물질의 부피비, 역학적 성질 등을 실험적으로 규명하였다. 좌굴실험에서 휨 및 비틀림에 대한 단순지지 조건을 만족시키기 위해서 knife edge를 사용하였으며, 3개의 potentiometer를 사용하여 실험체의 횡변위와 비틀림각을 측정하였다. 모든 실험체에 휨-비틀림 좌굴이 발행하였으며, 대부분의 실험체가 후좌굴 강도를 가지고 있음을 알 수 있었다.

Experimental study on durability of strengthened corroded RC columns with FRP sheets in tidal zone of marine environment

  • Kashi, Amin;Ramezanianpour, Ali Akbar;Moodi, Faramarz
    • Computers and Concrete
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    • 제19권4호
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    • pp.339-346
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    • 2017
  • The main objective of this paper was to illuminate the effect of marine environmental condition on durability of reinforced concrete (RC)-corroded columns strengthened with carbon fiber reinforced polymer (CFRP) and glass fiber reinforced polymer (GFRP) layers. Small-scale columns were prepared and corroded by an accelerated corrosion process. After strengthening, compressive strength tests were carried out on control and weathered specimens. In this research, a marine simulator was designed and constructed similar to the tidal zone of marine environment in south of Iran which was selected as a case study in this research. Mechanical properties of wrapped specimens were studied after placing them inside the simulator for 3000 hours. Marine environment decreased ultimate strength by 4.5% and 26.3% in CFRP and GFRP-wrapped columns, respectively. In some corroded-columns, strengthening was carried out after replacing damaged cover by self-compacted mortar. In this method, by confining with one layer of CFRP and GFRP, 4.2% and 22.4% reduction in ultimate strength was observed, respectively, after exposure. Furthermore, the elastic-brittle behavior has been verified in this retrofit method. Also results of tension tests revealed, the ultimate tensile strength was degraded by 2% and 28.8% in CFRP and GFRP sheets, respectively, after applying marine exposure.

Flexural Behavior of Laminated Wood Beams Strengthened with Novel Hybrid Composite Systems: An Experimental Study

  • Mehmet Faruk OZDEMIR;Muslum Murat MARAS;Hasan Basri YURTSEVEN
    • Journal of the Korean Wood Science and Technology
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    • 제51권6호
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    • pp.526-541
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    • 2023
  • Wooden structures are widely used, particularly in earthquake zones, owing to their light weight, ease of application, and resistance to the external environment. In this study, we aimed to improve the mechanical properties of laminated timber beams using novel hybrid systems [carbon-fiber-reinforced polymer (CFRP) and wire rope]. Within the scope of this study, it is expected that using wood, which is an environmentally friendly and sustainable building element, will be more economical and safe than the reinforced concrete and steel elements currently used to pass through wide openings. The structural behavior of the hybrid-reinforced laminated timber beams was determined under the loading system. The experimental findings showed that the highest increase in the values of laminated beams reinforced with steel ropes was obtained with the 2N reinforcement, with a maximum load of 38 kN and a displacement of 137 mm. Thus, a load increase of 168% and displacement increase of 275% compared with the reference sample were obtained. Compared with the reference sample, a load increase of 92% and a displacement increase of 14% were obtained. Carbon fabrics placed between the layers with fiber-reinforced polymer (FRP) prevented crack development and provided significant interlayer connections. Consequently, the fabrics placed between the laminated wooden beams with the innovative reinforcement system will not disrupt the aesthetics or reduce the effect of earthquake forces, and significant reductions can be achieved in these sections.

고성능 유리섬유로 보강된 해상장대교량 교각의 보강성능평가 (Performance Evaluation of Long Span Bridge Columns Strengthened with High-Performance Glass Fiber)

  • 장준호;장광석;이재욱
    • 해양환경안전학회지
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    • 제16권1호
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    • pp.125-133
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    • 2010
  • 기존의 해상교량 기둥의 외부보강에 따른 연구들은 현재까지 주로 중앙점 재하에 따른 성능을 평가하였다. 하지만, 장대교량의 기둥은 정확한 중심축을 기준으로 축하중을 받는 경우와 편심으로 인한 큰 모멘트가 동시에 작용하는 경우가 많이 발생한다. 이 연구에서는 해상장대교량의 고강도 철근콘크리트 기둥의 하중재하 위치와 2가지의 보강 재료인 탄소섬유 및 고성능 유리섬유를 각각 보강하여 그 효과를 분석하였다. 실험에 사용된 12개의 기둥 실험체는 모두 같은 크기로 제작 및 실험을 하였다. 그 중 6개 실험체의 횡보강 철끈은 띠철근으로 배근하였으며, 그 외 6개의 실험체는 나선철근으로 매끈하였다. 그리고 각각 3겹의 탄소섬유 및 고성능 유리섬유를 적용하여 감싸기 방법으로 보강하였다. 실험변수는 하중재하 위치에 따른 철근의 보강행태 및 보강재료가 고려되었다. 실험결과, 편심축에 따른 하중재하 기둥부재는 중심축 하중재하에 비해 최대 파괴하중이 감소하였지만 고성능 유리섬유를 보강한 기둥부재는 축하중 및 편심하중에서 탄소섬유를 보강한 경우보다 내력과 연성이 우수하였다.

탄소섬유시트를 이용한 I형 PFRP 부재의 휨보강 효과 (The Flexural Strengthening Effect of I-Shape PFRP Member Using Carbon Fiber Sheet)

  • 이영근;김선희;이강연;윤순종
    • 복합신소재구조학회 논문집
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    • 제4권2호
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    • pp.1-7
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    • 2013
  • In recent years, fiber reinforced polymer plastic composites are readily available in the construction industry. Fiber reinforced polymer composite has many advantages such as high specific strength and high specific stiffness, high corrosion resistance, light-weight, magnetic transparency, etc. In this paper, we present the result of investigation pertaining to the flexural behavior of flange strengthened I-shape pultruded fiber reinforced polymer plastic (PFRP) member using carbon fiber sheet (CFRP sheet). Test variable is consisted of the number of layers of strengthening CFRP sheet from 0 to 3. From the experimental results, flexural strengthening effect of flange strengthened I-shape PFRP member using CFRP sheet is evaluated and it was found that 2 layers of strengthening CFRP sheet are appropriate considering efficiency and workability.

자기 강화형 폴리프로필렌을 이용한 섬유 금속 적층판의 성형성에 관한 수치해석적 연구 (Numerical Study of the Formability of Fiber Metal Laminates Based on Self-reinforced Polypropylene)

  • 이병언;김정;강범수;송우진
    • 소성∙가공
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    • 제22권3호
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    • pp.150-157
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    • 2013
  • Fiber metal laminates (FMLs) are layered materials comprised of thin metal sheets and fiber reinforced plastic (FRP). This paper presents the numerical study of the formability enhancement of FMLs composed of an aluminum alloy and self-reinforced polypropylene (SRPP) composite. In this study, a numerical simulation based on finite element (FE) modeling is proposed to evaluate the formability of FMLs using ABAQUS/Explicit. The FE model, which included a single layer of solid and shell elements to model the blank, used discrete layers of the solid element with a contact model and shell elements with a friction based model for the aluminum alloy-composite interface conditions. This method allowed the description of each layer of FMLs and was able to simulate the interaction between the layers. It is noted through this research that the proposed numerical simulation described properly the formability enhancement of the FMLs and the simulation results showed good agreement with experimental results.

Simulation of the behaviour of RC columns strengthen with CFRP under rapid loading

  • Esfandiari, Soheil;Esfandiari, Javad
    • Advances in concrete construction
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    • 제4권4호
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    • pp.319-332
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    • 2016
  • In most cases strengthening reinforced concrete columns exposed to high strain rate is to be expected especially within weak designed structures. A special type of loading is instantaneous loading. Rapid loading can be observed in structural columns exposed to axial loads (e.g., caused by the weight of the upper floors during a vertical earthquake and loads caused by damage and collapse of upper floors and pillars of bridges).Subsequently, this study examines the behavior of reinforced concrete columns under rapid loading so as to understand patterns of failure mechanism, failure capacity and strain rate using finite element code. And examines the behavior of reinforced concrete columns at different support conditions and various loading rate, where the concrete columns were reinforced using various counts of FRP (Fiber Reinforcement Polymer) layers with different lengths. The results were compared against other experimental outcomes and the CEB-FIP formula code for considering the dynamic strength increasing factor for concrete materials. This study reveals that the finite element behavior and failure mode, where the results show that the bearing capacity increased with increasing the loading rate. CFRP layers increased the bearing capacity by 20% and also increased the strain capacity by 50% through confining the concrete.

비정질 할로이사이트 나노입자의 교차적층 구조에 따른 탄소섬유/에폭시 라미네이트의 저속 충격 특성 (Low Velocity Impact Property of CF/Epoxy Laminate according to Interleaved Structure of Amorphous Halloysite Nanotubes)

  • 박예림;;김윤해
    • Composites Research
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    • 제36권4호
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    • pp.270-274
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    • 2023
  • 필라멘트 와인딩 공정을 사용한 FRP 복합재의 적층 구조는 기존의 FRP 복합재의 적층 구조와는 다를 뿐만 아니라 일반적인 적층 구조를 토대로 기계적 물성에 대해서 분석하고자 한다면 그에 대한 영향을 파악하는 것이 어렵다. 따라서 전반적인 성능을 향상시키기 위해 기계적 물성을 개선하고 교차 적층 구조를 최적화하는 것이 필수적이다. 따라서 본 연구는 비정질 할로이사이트 나노튜브(Amorphous Halloysite Nanotubes, A-HNT)를 5개의 층 배열을 통해 교차 적층 탄소 섬유 강화 플라스틱(CFRP) 구조의 저속 충격 특성에 미치는 영향을 조사하는 것을 목표로 한다. 중량 낙하식 충격시험을 통하여 라미네이트의 저속 충격 특성을 확인하였으며, 충격을 가한 후에 현미경을 통하여 충격 파손 모드와 손상 정도를 비교 평가하였다. 나노 입자의 첨가 여부에 따른 각각의 교차 적층 구조 라미네이트를 10 J과 15 J의 충격에너지에서 비교하였다. 10 J의 경우 흡수에너지는 각 구조에서 비슷한 경향을 보였다. 그에 비해 15 J의 경우 흡수에너지는 각 구조에서 다른 흡수에너지를 가지며, 나노 입자가 첨가되지 않은 구조가 가장 높은 흡수에너지를 가진다. 또한 광학현미경을 통하여 각 구조에서 다양한 충격 파손 모드가 관찰되었다.

Breakdown Characteristics for Insulation Design of HTS Transformer in Liquid Nitrogen

  • J.M. Joung;S.M. Baek;Kim, S.H.
    • 한국초전도ㆍ저온공학회논문지
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    • 제5권3호
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    • pp.38-42
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    • 2003
  • HTS transformer is promising one of HTS power applications to be commercialized in the near future. To realize the applications, insulation technology in the coolant, liquid nitrogen, should be established. So breakdown characteristics should be considered at insulation components; turn-to-turn, layer-to-layer, winding-to-winding, were investigated. Firstly breakdown strengths of Kapton films were compared with Kraft paper these are as turn insulator. And next the characteristics of surface flashover on FRP were measured and the influence on breakdown strength of bubble generated with joule heat was discussed with the shape of cooling channel between layers. Finally barrier effect at winding-to-winding was discussed.

Axial loading tests and load capacity prediction of slender SHS stub columns strengthened with carbon fiber reinforced polymers

  • Park, Jai-Woo;Yoo, Jung-Han
    • Steel and Composite Structures
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    • 제15권2호
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    • pp.131-150
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    • 2013
  • This paper presents the experimental results of axially loaded stub columns of slender steel hollow square section (SHS) strengthened with carbon fiber reinforced polymers (CFRP) sheets. 9 specimens were fabricated and the main parameters were: width-thickness ratio (b/t), the number of CFRP ply, and the CFRP sheet orientation. From the tests, it was observed that two sides would typically buckle outward and the other two sides would buckle inward. A maximum increase of 33% was achieved in axial-load capacity when 3 layers of CFRP were used to wrap HSS columns of b/t = 100 transversely. Also, stiffness and ductility index (DI) were compared between un-retrofitted specimens and retrofitted specimens. Finally, it was shown that the application of CFRP to slender sections delays local buckling and subsequently results in significant increases in elastic buckling stress. In the last section, a prediction formula of the ultimate strength developed using the experimental results is presented.