• 제목/요약/키워드: fiber beam

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형상기억 폴리우레탄을 이용한 epoxy laminate beam의 진동제어 특성에 관한 연구 (Vibration control characteristics of epoxy laminate beam utilizing shape memory polyurethane)

  • 양재흥;신규철;정용찬;조재환;전병철
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2001년도 가을 학술발표회 논문집
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    • pp.326-326
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    • 2001
  • Epoxy/glass fiber 복합재는 높은 strength와 stiffness를 갖는 장점이 있지만 impact strained energy를 효율적으로 발산시킬 수 있는 mechanism을 가지고 있지 않기 때문에 damping 능력이 떨어진다 Impact strength와 damping 성능을 증가시키기 위해 사용되어지고 있는 방법은 형상기억 고분자를 이용한 것으로 상대적으로 높은 strength와 impact에 대한 흡수 및 발산을 가지고 있다 형상기억 고분자는 glass transition temperature(G$_{g}$) 근처에서 높은 damping 능력을 가지고 있다. (중략)

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강섬유보강(鋼纖維補强)콘크리트 Deep Beam의 전단특성(剪斷特性)에 관한 연구(硏究) (A Study on the Shear Properties of Steel Fiber Reinforced Concrete Deep Beams)

  • 문제길;홍익표
    • 대한토목학회논문집
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    • 제13권1호
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    • pp.75-87
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    • 1993
  • 본 논문은 강섬유보강콘크리트 deep beam의 전단특성을 규명하고 균열전단강도와 극한전단강도를 예측하기 위한 것으로 섬유로 보강된 16개의 보를 포함한 총 20개의 보를 4 series로 나누어 실험을 수행하였다. 실험의 변수는 콘크리트의 강도, 섬유혼입률, 전단지간 등이며, 실험 과정을 통해 파괴형상, 처짐, 변형률, 전단강도 등을 측정 하였다. 실험결과로 부터 섬유의 혼입량이 많아지고, 콘크리트의 강도가 커질 수록, 그리고 전단지간이 짧아질수록 섬유보강콘크리트 deep beam의 균열 및 극한전단강도가 증가됨을 밝혔다. 또한, 실험성과를 회귀분석하여 균열전단강도와 극한전단강도 추정식을 제안 하였다. 제안된 추정식에 의한 계산값과 실험성과를 비교 검토하여 그 상관성을 확인하였다.

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광섬유 격자 센서와 빔 커플러를 사용한 회전중인 블레이드의 변형률 측정 방법 (On-line Strain Measurement of Rotating Blade Using Fiber Bragg Grating Sensors and Beam Coupler)

  • 이인재;이종민;이상배;황요하
    • 한국소음진동공학회논문집
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    • 제16권11호
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    • pp.1172-1178
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    • 2006
  • Measurement of blade strain with sensors directly installed on the blade has one critical issue, how to send the sensor signal to the ground. Strain-gauges have been dominantly used to directly measure stress of a blade and either a slip ring or a telemetry system has to be used to send measured signal to the ground. However, both systems have many inherent problems and sometimes very severe limitations to be practically used. In this paper, new on-line strain monitoring method using. FBG(Fiber Bragg Grating) sensors and a beam coupler is introduced. Measurement of rotor stress using FBG sensors is nothing new, but unlike other system which installs all necessary instruments on the rotor and use telemetry system to send data to the ground, this system makes use of light's unique characteristic - light travels through space. In this new approach, single optical fiber with many FBG sensors is installed on the blade and all other necessary instruments can be installed at ground thereby giving tremendous advantages over slip ring or telemetry system. A reference sensor is also introduced to compensate the beam coupler's transmission loss change due to rotation. The suggested system's good performance is demonstrated with experiments.

A fiber beam element model for elastic-plastic analysis of girders with shear lag effects

  • Yan, Wu-Tong;Han, Bing;Zhu, Li;Jiao, Yu-Ying;Xie, Hui-Bing
    • Steel and Composite Structures
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    • 제32권5호
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    • pp.657-670
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    • 2019
  • This paper proposes a one-dimensional fiber beam element model taking account of materially non-linear behavior, benefiting the highly efficient elastic-plastic analysis of girders with shear-lag effects. Based on the displacement-based fiber beam-column element, two additional degrees of freedom (DOFs) are added into the proposed model to consider the shear-lag warping deformations of the slabs. The new finite element (FE) formulations of the tangent stiffness matrix and resisting force vector are deduced with the variational principle of the minimum potential energy. Then the proposed element is implemented in the OpenSees computational framework as a newly developed element, and the full Newton iteration method is adopted for an iterative solution. The typical materially non-linear behaviors, including the cracking and crushing of concrete, as well as the plasticity of the reinforcement and steel girder, are all considered in the model. The proposed model is applied to several test cases under elastic or plastic loading states and compared with the solutions of theoretical models, tests, and shell/solid refined FE models. The results of these comparisons indicate the accuracy and applicability of the proposed model for the analysis of both concrete box girders and steel-concrete composite girders, under either elastic or plastic states.

Timoshenko보 이론 및 층상화 단면모델을 이용한 RC 기둥의 비선형 유한요소해석 (Nonlinear Finite Element Analysis of Reinforced Concrete Column using Timoshenko Beam Theory and Fiber Section Model)

  • 박순응;박문호;권민호
    • 대한토목학회논문집
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    • 제26권4A호
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    • pp.577-585
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    • 2006
  • 본 연구에서는 비선형 전단변형을 고려할 수 있는 Timoshenko보 이론을 정식화 하였다. 제안된 모델은 전단변형을 고려하므로서 짧은 기둥이나 전단 지배 기둥에서 일반적인 Bernoulli보 이론 보다 합리적인 결과를 보여준다. 단면은 층상화 모델을 이용하였으며, 층상화 단면 모델은 단면을 분활하여 소성화 진행과정을 관찰할 수 있으며 축력과 모멘트의 상호작용을 알 수 있다. 정식화한 요소는 일반적인 철근 콘크리트 부재의 해석을 위해 유한요소 프로그램에 적용하였다. 철근콘크리트 기둥의 해석을 실험결과와 비교하였고, 철근콘크리트 기둥에 대한 거동특성을 분석하였다.

강도설계법으로 산정된 탄소섬유시트 보강 철근콘크리트 보의 공칭 휨모멘트 (Determination of Nominal Moment of Strengthening Beam with Carbon Fiber Sheets Using Strength Method)

  • 조백순;정진환;김성도;박대효;이우철
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2002년도 가을 학술발표회 논문집
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    • pp.593-598
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    • 2002
  • Routinely, strength method for the determination of the nominal moment of reinforced concrete beam is assumed to also be suitable for strengthening beams with carbon fiber sheets since typically strengthening beams compromise 98% by volume of reinforced concrete. Flexural capacity of strengthening beam is absolutely dependent upon the type of reinforcement materials, amount of reinforcement, anchoring system, adhesion capacity between reinforcement material and concrete. Therefore, it might be incorrect to use strength method for analysis and design of strengthening beam without considering the differences in the load-deflection curves, mechanism of failure, state of stress distribution, failure strain of the reinforcement. An flexural analysis based on force equilibrium and strain comparability has been developed for strengthening beam. Systematic experimental investigations are compared with analytical results. Then, the adaptation of strength method for strengthening beam have also been discussed.

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마찰을 고려한 경편기용 정경빔의 설계에 관한 연구 (A Study on the Design of the Warper Beam Considering Friction)

  • 임문혁;김영규;신현명
    • 한국정밀공학회지
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    • 제20권3호
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    • pp.140-148
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    • 2003
  • An analysis fur the warping process has been performed to design the warper beam. Nonlinear material response is included in the physical model of polyester yarn. Large deformation finite element simulation considering contact and frictional analysis are used to obtain the pressure on the barrel of the warper beam. Loading condition on the flange is assumed by using the pressure on the barrel, winding number of yarn, Poisson's ratio of fiber, and fiber volume fraction. By using the above loading conditions NASTRAN finite element simulation is performed to calculate stress distribution and deformation of the warper beam. By comparing the deformed shape of the flange with experimental result, loading condition on the flange has been obtained. The obtained loading conditions on the barrel and flange can be utilized to design the warper beam.

고연성 PET 섬유로 보강된 철근콘크리트 보의 부착 및 휨 거동 (Bond and Flexural Behavior of RC Beams Strengthened Using Ductile PET)

  • 박혜선;김소영;임명관;최동욱
    • 한국구조물진단유지관리공학회 논문집
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    • 제20권6호
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    • pp.30-39
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    • 2016
  • 이 연구에서는 고연성과 낮은 탄성계수를 갖는 PET 섬유로 보강한 철근콘크리트 보의 부착특성과 휨거동을 각각 부착실험 및 휨실험을 통하여 규명하고자 하였다. 부착실험은 CSA S806에 따라 수행하였고, 실험변수는 섬유 종류와 보강량(CF 및 GF 시트 각 1겹, PET 시트 10겹)이었다. 총 8개의 보 실험에서 주요 실험변수는 단면의 연성비(${\mu}=3.4$, 7.0), 보강섬유 종류(CF, GF, PET) 및 보강량이었다. 보 단면의 모멘트-곡율 해석을 병행하였다. 부착실험의 결과, CF, GF 시트 1겹 보강에서 유효 부착길이는 각각 120, 60 mm 이었고 최대부착응력은 각각 3.25, 2.99 MPa 이었다. PET 10겹 보강에서 유효 부착길이는 60 mm, 최대 및 평균 부착응력은 각각 2.30, 2.10 MPa 이었다. 또한 최대 강도 시 CF, GF, PET의 변형율은 각각 0.36%, 0.49%, 6.29% 였으며 CF, GF 부착실험체는 계면에서 시트가 최종적으로 탈락하였지만 PET 부착 실험체에서 박리현상은 나타나지 않았다. 휨실험의 결과, PET 10, 20, 30겹으로 보강한 RC 보의 휨강도, 휨강성이 모두 무보강 보에 비해 증가하였고, 연성적인 휨파괴 양상을 보였으나 PET 30겹의 경우 20겹에 비하여 연성이 감소하였다. 모멘트-곡율 해석의 결과, PET 보강 보에서 접착제의 물성을 해석에 포함시키면 해석의 정확도가 향상하였다. 한편 PET 의 내구성에 대해서는 보고된 문헌이 없어서 현재 연구 진행 중이다.

치료용 고에너지 전자선 계측을 위한 광섬유 방사선 센서의 제작 및 특성 분석 (Fabrication and Characterization of a Fiber-Optic Radiation Sensor for High Energy Electron Beam Therapy)

  • 장경원;조동현;유욱재;이봉수;이정한;탁계래;조효성;김신
    • 대한의용생체공학회:의공학회지
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    • 제27권6호
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    • pp.332-336
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    • 2006
  • In this study, we have fabricated a fiber-optic radiation sensor using an organic scintillator for high energy electron beam therapy. The intensities of scintillating light from a fiber-optic radiation sensor are measured with different field size, electron beam energy and monitor unit of a clinical linear accelerator. To obtain percent depth dose(PDD), the amount of scintillating light is measured at different depth of polymethylmethacrylate(PMMA) phantom. Also the intensity of Cerenkov light is measured and characterized as a function of incident angle of electron beam and a subtraction method is investigated using a background optical fiber to remove a Cerenkov light.

Bending of steel fibers on partly supported elastic foundation

  • Hu, Xiao Dong;Day, Robert;Dux, Peter
    • Structural Engineering and Mechanics
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    • 제12권6호
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    • pp.657-668
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    • 2001
  • Fiber reinforced cementitious composites are nowadays widely applied in civil engineering. The postcracking performance of this material depends on the interaction between a steel fiber, which is obliquely across a crack, and its surrounding matrix. While the partly debonded steel fiber is subjected to pulling out from the matrix and simultaneously subjected to transverse force, it may be modelled as a Bernoulli-Euler beam partly supported on an elastic foundation with non-linearly varying modulus. The fiber bridging the crack may be cut into two parts to simplify the problem (Leung and Li 1992). To obtain the transverse displacement at the cut end of the fiber (Fig. 1), it is convenient to directly solve the corresponding differential equation. At the first glance, it is a classical beam on foundation problem. However, the differential equation is not analytically solvable due to the non-linear distribution of the foundation stiffness. Moreover, since the second order deformation effect is included, the boundary conditions become complex and hence conventional numerical tools such as the spline or difference methods may not be sufficient. In this study, moment equilibrium is the basis for formulation of the fundamental differential equation for the beam (Timoshenko 1956). For the cantilever part of the beam, direct integration is performed. For the non-linearly supported part, a transformation is carried out to reduce the higher order differential equation into one order simultaneous equations. The Runge-Kutta technique is employed for the solution within the boundary domain. Finally, multi-dimensional optimization approaches are carefully tested and applied to find the boundary values that are of interest. The numerical solution procedure is demonstrated to be stable and convergent.