• 제목/요약/키워드: Fiber-reinforced

검색결과 4,424건 처리시간 0.031초

Vibration analysis of steel fiber reinforced self-compacting concrete beam on elastic foundation

  • Ozdemir, Mahmut Tunahan;Kobya, Veysel;Yayli, Mustafa Ozgur;Mardani-Aghabaglou, Ali
    • Computers and Concrete
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    • 제27권2호
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    • pp.85-97
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    • 2021
  • In this study, the effect of steel fiber utilization, boundary conditions, different beam cross-section, and length parameter are investigated on the free vibration behavior of fiber reinforced self-compacting concrete beam on elastic foundation. In the analysis of the beam model recommended by Euler-Bernoulli, a method utilizing Stokes transformations and Fourier Sine series were used. For this purpose, in addition to the control beam containing no fiber, three SCC beam elements were prepared by utilization of steel fiber as 0.6% by volume. The time-dependent fresh properties and some mechanical properties of self-compacting concrete mixtures were investigated. In the modelled beam, four different beam specimens produced with 0.6% by volume of steel fiber reinforced and pure (containing no fiber) SCC were analyzed depending on different boundary conditions, different beam cross-sections, and lengths. For this aim, the effect of elasticity of the foundation, cross-sectional dimensions, beam length, boundary conditions, and steel fiber on natural frequency and frequency parameters were investigated. As a result, it was observed that there is a noticeable effect of fiber reinforcement on the dynamic behavior of the modelled beam.

폴리머콘크리트 박스 거어더의 구조적 거동 (Structural Behavior of Polymer Concrete Bos Girders)

  • 연규석;김광우;이윤수;김성순
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1993년도 가을 학술발표회 논문집
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    • pp.213-219
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    • 1993
  • The box girder was developed using polymer concrete, box girder were made for flexural behavior evaluation. The box girder was reinforced with reinforcing steel bars and fiber glass roving cloths. Failure loads were 13.5 tons and 16.6tons for steel reinforced girder and fiber glass reinforced girder, respectively. Especially for the fiber glass reinforced girder, the shape was not changed even after failure. It is expected that application of this idea will be useful for developing under ground box, girder, utility tunnel, small stream bridge box, etc.

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Modeling of SH-waves in a fiber-reinforced anisotropic layer

  • Kakar, Rajneesh
    • Earthquakes and Structures
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    • 제10권1호
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    • pp.91-104
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    • 2016
  • In this paper we investigate the existence of SH-waves in fiber-reinforced layer placed over a heterogeneous elastic half-space. The heterogeneity of the elastic half-space is caused by the exponential variations of density and rigidity. As a special case when both the layers are homogeneous, our derived equation is in agreement with the general equation of Love wave. Numerically, it is observed that the velocity of SH-waves decreases with the increase of heterogeneity and reinforced parameters. The dimensionless phase velocity of SH-waves increases with the decreases of dimensionless wave number and shown through figures.

A study on load-deflection behavior of two-span continuous concrete beams reinforced with GFRP and steel bars

  • Unsal, Ismail;Tokgoz, Serkan;Cagatay, Ismail H.;Dundar, Cengiz
    • Structural Engineering and Mechanics
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    • 제63권5호
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    • pp.629-637
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    • 2017
  • Continuous concrete beams are commonly used as structural members in the reinforced concrete constructions. The use of fiber reinforced polymer (FRP) bars provide attractive solutions for these structures particularly for gaining corrosion resistance. This paper presents experimental results of eight two-span continuous concrete beams; two of them reinforced with pure glass fiber reinforced polymer (GFRP) bars and six of them reinforced with combinations of GFRP and steel bars. The continuous beams were tested under monotonically applied loading condition. The experimental load-deflection behavior and failure mode of the continuous beams were examined. In addition, the continuous beams were analyzed with a numerical method to predict the load-deflection curves and to compare them with the experimental results. Results show that there is a good agreement between the experimental and the theoretical load-deflection curves of continuous beams reinforced with pure GFRP bars and combinations of GFRP and steel bars.

유리섬유 조합에 따른 보강 집성재 볼트접합부의 전단강도 특성 (Shear Strength of Reinforced Glulam-bolt Connection by Glass Fiber Combination)

  • 김건호;송요진;홍순일
    • Journal of the Korean Wood Science and Technology
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    • 제41권1호
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    • pp.51-57
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    • 2013
  • 직물형 유리섬유 조합에 따른 보강 집성재의 볼트 접합부 전단 성능을 알아보기 위하여 인장형 전단시험을 실시하였다. 보강재는 직물형 유리섬유로서 유리섬유 배열 형태는 평직형과 능직형을 사용하였다. 보강 집성재는 5층으로 직물형 유리섬유의 삽입 위치와 조합 형태를 달리하여 층재 사이에 삽입 적층시켜 제작하였다. 인장형 전단 시험편은 강판 삽입형로서 끝면거리 7D에 직경 12, 16 mm의 볼트로 접합하였다. 체적비 1% 직물형 유리섬유 보강 집성재의 경우 12 mm 볼트 접합부의 항복 전단내력은 집성재 외층부보다 내층부를 보강한 시험편에서 10% 큰 값을 나타내었다. 체적비 2% 직물형 유리섬유 보강 집성재의 항복 전단내력은 12 mm 볼트 접합부의 경우 각층재 사이에 삽입 적층시킨 시험편이 보강하지 않은 접합부보다 약 22% 향상되었으며, 16 mm 볼트 접합부의 항복 전단내력은 약 20% 향상되었다.

단섬유 종횡비 및 직경비가 강화고무의 인장특성에 미치는 영향 (Effects of Short-fiber Aspect Ratio and Diameter Ratio on Tensile Properties of Reinforced Rubber)

  • 류상렬;이동주
    • Composites Research
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    • 제16권2호
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    • pp.18-25
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    • 2003
  • 나일론6 단섬유를 보강한 NR과 SBR의 인장특성에 대해 섬유 종횡비(AR), 직경비(DR), 계면상 조건, 그리고 섬유 함유률을 함수로 연구하였다. 인장강도는 우수한 계면조건에서 AR(20min.)이 증가할수록 증가하였다 단섬유(DR=3, AR=20min.) 강화 SBR은 모든 계면조건에서 희석효과를 보이지 않았다. 동일한 단섬유를 보강한 NR의 경우도 No Coating을 제외하고는 희석효과를 보이지 않았다. 인장탄성률은 동일한 직경비에서 AR이 증가할수록, 섬유 함유률이 높을수록. 계면조건이 우수할수록 크게 증가하였다. 동일한 직경비에서 계면조건이 우수할수록 이탈 힘은 크게 나타났다. 또한 단섬유 강화 메커니즘을 확인하기 위해 축대칭 모델을 이용 응력해석을 실시하였다. 본 연구를 통해 AR, 계면상 조건. 그리고 DR이 강화고무의 인장특성에 중요한 역할을 항을 확인하였다.

강섬유 혼입율이 강섬유보강 고강도 콘크리트의 작업성과 강도특성에 미치는 영향 (Influence of Steel Fiber Volume Ratios on Workability and Strength Characteristics of Steel Fiber Reinforced High-Strength Concrete)

  • 김윤일;이양근;김명성
    • 한국건축시공학회지
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    • 제8권3호
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    • pp.75-83
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    • 2008
  • In this paper, concrete material tests were carried out to investigate influence of steel fiber volumn ratios on variations of workability and strength characteristics of steel fiber reinforced high-strength concrete, $50MPa{\sim}90MPa$ of compressive strength, according to increase of fiber volume. Test specimens were arranged with six levels of concrete compressive strength and fiber volumn ratios, 0.0%, 0.5%, 1.0%, 1.5%, 2.0%. The test results showed that steel fiber reinforced high-strength concrete($70MPa{\sim}90MPa$, 1.5% fiber volumn ratio) with good workability of slump 20cm could be used practically and effects of steel fiber reinforcement in improvement of concrete strength and toughness characteristics such as splitting tensile strength, flexural strength, and diagonal tensioned shear strength, were more distinguished in high-strength concrete than general strength concrete. And the test results indicated that splitting tensile strength of fiber reinforced concrete was proportioned to the product of steel fiber volumn ratios, $V_f(%)$ and sqare root of compressive strength, $\sqrt{f_{ck}}$, and the increasing rate was in contrast with that of flexural strength, and increase of diagonal tensioned shear strength was remarkable at steel fiber volumn ratio, 0.5%.

Seismic behavior of steel and sisal fiber reinforced beam-column joint under cyclic loading

  • S.M. Kavitha;G. Venkatesan;Siva Avudaiappan;Chunwei Zhang
    • Structural Engineering and Mechanics
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    • 제88권5호
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    • pp.481-492
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    • 2023
  • The past earthquakes revealed the importance of the design of moment-resisting reinforced concrete framed structures with ductile behavior. Due to seismic activity, failures in framed structures are widespread in beam-column joints. Hence, the joints must be designed to possess sufficient strength and stiffness. This paper investigates the effects of fibers on the ductility of hybrid fiber reinforced self-compacting concrete (HFRSCC) when subjected to seismic actions; overcoming bottlenecks at the beam-column joints has been studied by adding low modulus sisal fiber and high modulus steel fiber. For this, the optimized dose of hooked end steel fiber content (1.5%) was kept constant, and the sisal fiber content was varied at the rate of 0.1%, up to 0.3%. The seismic performance parameters, such as load-displacement behavior, ductility, energy absorption capacity, stiffness degradation, and energy dissipation capacity, were studied. The ductility factor and the cumulative energy dissipation capacity of the hybrid fiber (steel fiber, 1.5% and sisal fiber, 0.2%) added beam-column joint specimen is 100% and 121% greater than the control specimen, respectively. And also the stiffness of the hybrid fiber reinforced specimen is 100% higher than the control specimen. Thus, the test results showed that adding hybrid fibers instead of mono fibers could significantly enhance the seismic performance parameters. Therefore, the hybrid fiber reinforced concrete with 1.5% steel and 0.2% sisal fiber can be effectively used to design structures in seismic-prone areas.

강섬유보강 철근콘크리트구조물에 있어서의 균열폭 계산 (Calculation of Crack Width in SFRC Structures)

  • 강보순
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2001년도 봄 학술발표회 논문집
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    • pp.579-584
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    • 2001
  • A method is described for predicting crack with and spacing in Steel Fiber Reinforced Concrete (SFRC). The crack behavior of SFRC influenced by longitudinal reinforcement ratio, volume and type of steel fiber, strength of concrete. It can be observed from experimental results that addition of steel fiber to reinforced concrete beam reduces crack width in serviceability limit states. The proposed method predicts crack widths in cracking stage of the beam. Calculated crack widths obtained for reinforced concrete beams and different volume and type of steel fiber, strength of concrete showed good agreement with experimental results.

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강섬유철근콘크리트 구조물의 균열폭 계산 (Calculation of Crack Width in SFRC Structures)

  • 강보순
    • 한국철도학회논문집
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    • 제8권4호
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    • pp.293-298
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    • 2005
  • A method is described for predicting crack with and spacing in Steel Fiber Reinforced Concrete (SFRC). The crack behavior of SFRC influenced by longitudinal reinforcement ratio, volume and type of sleet fiber, strength of concrete. It can be observed from experimental results that addition of steel fiber to reinforced concrete beam reduces crack width in serviceability limit stales. The proposed method predicts crack widths in cracking stage of the beam. Calculated crack widths obtained for reinforced concrete beams and different volume and type of steel fiber, strength of concrete showed good agreement with experimental results.