• 제목/요약/키워드: E-glass fiber

검색결과 152건 처리시간 0.026초

비구면 유리렌즈 성형용 SiC 코어의 DLC 코팅에 관한 연구 (A Research on DLC Thin Film Coating of a SiC Core for Aspheric Glass Lens Molding)

  • 박순섭;원종호
    • 한국정밀공학회지
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    • 제27권12호
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    • pp.28-32
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    • 2010
  • Technical demands for aspheric glass lens formed in market increases its application from simple camera lens module to fiber optics connection module in optical engineering. WC is often used as a metal core of the aspheric glass lens, but the long life time is issued because it fabricated in high temperature and high pressure environment. High hard thin film coating of lens core increases the core life time critically. Diamond Like Carbon(DLC) thin film coating shows very high hardness and low surface roughness, i.e. low friction between a glass lens and a metal core, and thus draw interests from an optical manufacturing industry. In addition, DLC thin film coating can removed by etching process and deposit the film again, which makes the core renewable. In this study, DLC films were deposited on the SiC ceramic core. The process variable in FVA(Filtered Vacuum Arc) method was the substrate bias-voltage. Deposited thin film was evaluated by raman spectroscopy, AFM and nano indenter and measured its crystal structure, surface roughness, and hardness. After applying optimum thin film condition, the life time and crystal structure transition of DLC thin film was monitored.

Assessment of DVC measurement uncertainty on GFRPs with various fiber architectures

  • Bartulovic, Ante;Tomicevic, Zvonimir;Bubalo, Ante;Hild, Francois
    • Coupled systems mechanics
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    • 제11권1호
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    • pp.15-32
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    • 2022
  • The comprehensive understanding of the fiber reinforced polymer behavior requires the use of advanced non-destructive testing methods due to its heterogeneous microstructure and anisotropic mechanical proprieties. In addition, the material response under load is strongly associated with manufacturing defects (e.g., voids, inclusions, fiber misalignment, debonds, improper cure and delamination). Such imperfections and microstructures induce various damage mechanisms arising at different scales before macrocracks are formed. The origin of damage phenomena can only be fully understood with the access to underlying microstructural features. This makes X-ray Computed Tomography an appropriate imaging tool to capture changes in the bulk of fibrous materials. Moreover, Digital Volume Correlation (DVC) can be used to measure kinematic fields induced by various loading histories. The correlation technique relies on image contrast induced by microstructures. Fibrous composites can be reinforced by different fiber architectures that may lead to poor natural contrast. Hence, a priori analyses need to be performed to assess the corresponding DVC measurement uncertainties. This study aimed to evaluate measurement resolutions of global and regularized DVC for glass fiber reinforced polymers with different fiber architectures. The measurement uncertainties were evaluated with respect to element size and regularization lengths. Even though FE-based DVC could not reach the recommended displacement uncertainty with low spatial resolution, regularized DVC enabled for the use of fine meshes when applying appropriate regularization.

미소 교류 자기장 측정을 위한 Mach-Zehnder 광섬유 간섭계 자기센서 특성분석 (Fiber-optic Mach-Zehnder Interferometer for the Detection of Small AC Magnetic Field)

  • 김대연;안준태;공홍진;김병윤
    • 한국광학회지
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    • 제2권3호
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    • pp.139-148
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    • 1991
  • 광섬유를 사용하여 미소 교류자기장 (200Hz-2kHz) 감지를 위한 광섬유 간섭계 자기센서시스템을 구성하였다. 자왜효과(magnetostriction effect)가 큰 비정질 metallic glass(2605SC)를 광섬유에 부착하여 자기장 감지부를 제작하고 방향성 결합기 metallic glass(2605SC)를 광섬유에 부착하여 자기장 감지부를 제작하고 방향성 결합기(directional coupler)를 사용한 광섬유 일체식(all-fiber type)으로 Mach-Zehnder 간섭계를 구성하여 외부 자기장의 변화를 간섭계의 위상변화로 변환시켜 그 크기를 측정하였다. 온도변화, 진동 등 주위환경에서 오는 불규칙한 신호에 의한 간섭계의 신호소멸(signal fading) 문제는 능동 위상추적방법(active phase tracking method)으로 간섭계의 기준 광통로(reference arm)에 위치한 위상 변조기에 보상신호를 되먹임으로써, 직각조건(quadrature condition)을 이루어 안정시켰다. 측정 결과 metallic glass의 주파수 반응특성은 900Hz-2kHz 대역에서 거의 비슷한 경향을 보였으며 최대 감도를 나타내는 직류 바이어스 자기장은 3.5 Oe 였다. 미소 교류자기장에 대한 간섭계의 출력은 $\pm$0.5 Oe 범위 안에서 좋은 선형성을 보였다. 1 kHz 교류자기장에 대한 scale factor S는 8.0 rad/Oe 이었으며 최소감지자기장은 $3X10^{-6} Oe/\sqrt{Hz}$(1Hz detection bandwidth)이었다.

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Damage characterization in fiber reinforced polymer via Digital Volume Correlation

  • Vrgoc, Ana;Tomicevic, Zvonimir;Smaniotto, Benjamin;Hild, Francois
    • Coupled systems mechanics
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    • 제10권6호
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    • pp.545-560
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    • 2021
  • An in situ experiment imaged via X-ray computed tomography was performed on a continuous glass fiber mat reinforced epoxy resin composite. The investigated dogbone specimen was subjected to uniaxial cyclic tension. The reconstructed scans (i.e., gray level volumes) were registered via Digital Volume Correlation. The calculated maximum principal strain fields and correlation residual maps exhibited strain localization areas within the material bulk, thus indicating damage inception and growth toward the specimen surface. Strained bands and areas of elevated correlation residuals were mainly concentrated in the narrowest gauge section of the investigated specimen, as well as on the specimen ligament edges. Gray level residuals were laid over the corresponding mesostructure to highlight and characterize damage development within the material bulk.

Investigating the deflection of GLARE and CARALL laminates under low-velocity impact test, experimentally and FEM simulation

  • Meisam Mohammadi;Mohammad Javad Ramezani
    • Steel and Composite Structures
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    • 제47권3호
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    • pp.395-403
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    • 2023
  • The main objective of this article is to investigate the response of different fiber metal laminates subjected to low velocity impact experimentally and numerically via finite element method (FEM). Hence, two different fiber metal laminate (FML) samples (GLARE/CARALL) are made of 7075-T6 aluminum sheets and polymeric composites reinforced by E-glass/carbon fibers. In order to study the responses to the low velocity impacts, samples are tested by drop weight machine. The projectiles are released from 1- and 1.5-meters height were the speed reaches to 4.42 and5.42 meter per second and the impact energies are measured as 6.7 and 10 Joules. In addition to experimental study, finite element simulation is done and results are compared. Finally, a detailed study on the maximum deflection, delamination and damages in laminates and geometry's effect of projectiles on the laminate response is done. Results show that maximum deflection caused by spherical projectile for GLARE samples is more apparent in comparison with the CARALL samples. Moreover, the maximum deflection of GLARE samples subjected to spherical projectile with 6.7 Joules impact energy, 127% increases in comparison with the CARALL samples in spite of different total thickness.

환경 인자에 따른 FRP의 표면화특성에 관한 연구 (A Study on the Surface Degradation Properties of Glass Fiber Reinforced Plastics by Environmental Factors)

  • 임경범;정기현;이백수;황명환;박종관;박종국;정의남;이덕출
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 D
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    • pp.1627-1629
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    • 1999
  • In order to analysis the degradation process of epoxy/glass fiber for outdoor condition, FRP laminate was exposed to high temperature and water. Then the degradation process was evaluated by comparing contact angle, surface potential decay, and surface resistivity. For the change of wettability, the contact angle of thermal-treated specimen with the high temperature of $200^{\circ}C$ increased. But that of water-treated specimen decreased. The characteristic of surface potential decay shows the tendency of the remarkable decrease on water-treated specimens, but no difference on thermal-treated specimen compared with untreated one. Also, for the surface resistivity, it shows the same trend compared with the change of contact angle.

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Experimental behavior of eccentrically loaded RC slender columns strengthened using GFRP wrapping

  • Elwan, S.K.;Omar, M.A.
    • Steel and Composite Structures
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    • 제17권3호
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    • pp.271-285
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    • 2014
  • This paper aims to examine the behavior of slender reinforced concrete columns confined with external glass fiber reinforced polymers (GFRP) sheets under eccentric loads. The experimental work conducted in this paper is an extension to previous work by the author concerning the behavior of eccentrically loaded short columns strengthened with GFRP wrapping. In this study, nine reinforced concrete columns divided into three groups were casted and tested. Three eccentricity ratios corresponding to e/t = 0, 0.10, and 0.50 in one direction of the column were tested in each group. The first group was the control one without confinement with slenderness ratio equal 20. The second group was the same as the first group but fully wrapped with one layer of GFRP laminates. The third group was also fully wrapped with one layer of GFRP laminates but having slenderness ratio equal 15. The experimental results of another two groups from the previous work were used in this study to investigate the difference between short and slender columns. The first was control one with slenderness ratio equal 10 and the second was fully wrapped and having the same slenderness ratio. All specimens were loaded until failure. The ultimate load, axial deformation, strain in steel bars, and failure mechanisms of each specimen were generated and analyzed. The results show that GFRP laminates confining system is less effective with slender columns compared with short one, but this solution is still applied and it can be efficiently utilized especially for slender columns with low eccentric ratio.

필라멘트 와인딩 복합적층재의 환경가속 노화시험 평가 (Degradation Characteristics of Filament-Winding-Laminated Composites Under Accelerated Environmental Test)

  • 김덕재;윤영주;최낙삼
    • 대한기계학회논문집A
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    • 제31권3호
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    • pp.295-303
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    • 2007
  • Degradation behaviors of filament-winded composites have been evaluated under the accelerated environmental test of high temperature, water immersion and thermal impact conditions. Two kinds of laminated composites coated by an urethane resin have been used: carbon-fiber reinforced epoxy(T700/Epon-826, CFRP) and glass-fiber reinforced phenolic (E-glass/phenolic, GFRP). For tensile strength of $0^{\circ}$ composites, CFRP showed little degradation while GFRP did high reduction by 25% under the influence of high temperature and water However for water-immersed $90^{\circ}$ composites tensile strength of both CFRP and GFRP showed high reduction. Bending strength and modulus of $90^{\circ}$ composites were largely reduced in water-immersion as well as high temperature environment. Urethane coating on the composite surface improved the bending properties by 20%, however hardly showed such improvement for water-immersed $90^{\circ}$ composites. In case of shear strength and modulus, both CFRP and GFRP showed high reduction by water-Immersion test but did a slight increase by high temperature and thermal impact conditions.

노후화된 교량 바닥판 대체용 복합재료 교량 바닥판의 거동에 관한 실험적 연구 (An Experimental study on the Behavior of Composite Materials Bridge Decks for Use in Deteriorated Bridge Decks Replacement)

  • 지효선;손병직;장석윤
    • 한국강구조학회 논문집
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    • 제13권6호
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    • pp.631-640
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    • 2001
  • 본 연구에서는 노후화된 교량 대체용으로 복합재료 교량 바닥판의 거동에 대하여 실험적인 방법으로 조사하였다. 바닥판의 성능평가와 관련하여 총 5개의 시험체를 1/10 축소모형 시험체로 제작하고 실험을 실시하였다. 3개의 시험체는 강성을 확보키 위해 알루미늄 코아를 갖는 샌드위치 상부플랜지와 라미네이트(Laminate) 상부플랜지 형식 2개, 총 5개의 시험체를 제작 하였다. 바닥판 구성요소는 유리섬유와 에폭시재료(glass fiber/epoxy)를 사용하여 제작하였다. 시험체의 최대내력, 강성 및 변형성능에 대한 결과를 요약하였다. 또한 실험결과의 타당성을 검증하고자 유한요소해석의 결과와 비교하였다.

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