• 제목/요약/키워드: E-glass fiber

검색결과 152건 처리시간 0.027초

내압을 받는 복합 적층 파이프(GFRP) 구조의 유한요소 해석 (Finite Element Analysis of Glass Fiber Reinforced Plastic Pipes Under Internal Pressure)

  • 조병완
    • 전산구조공학
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    • 제7권2호
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    • pp.101-109
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    • 1994
  • 내압을 받는 섬유강화 복합적층 파이프 구조를 해석하기 우해 감절점 원통형 쉘 유한요소를 이용하였다. 이요소는 lockintg현상을 제거하고, 수렴성을 개선하기 위해 감차적분기법, 변위형의 추가, 가정된 전단 변형 도장을 사용한 9절점의 3차원 쉘 유한요소이다. 이 유한요소를 이용하여 여러개의 예제를 해석하고, 결과를 이론식 및 다른 구조해석 프로그램과 비교하였다. 비교결과 유한요소의 수렴도 양호하였고, 섬유강과 복합적층 파이프 구조의 섬유 배향 각도를 증가시킴에 따라 파이프의 처짐은 감소하면서 파이프의 강성이 증가함을 알 수 있고 이는 또한 90.deg.적층 각도가 내압을 받는 파이프 구조의 hoop tension을 유효하게 받을 수 있음을 보여주고 있다.

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끝단이 막힌 중공 원통형 광섬유 하이드로폰의 감도 해석 (Sensitivity Analysis of Fiber Optic Hydrophone for an End-Capped Hollow Cylinder)

  • 이종길;윤형규;서인창
    • 소음진동
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    • 제6권4호
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    • pp.475-479
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    • 1996
  • Recently, fiber optic hydrophone is a subject which has attracted as a underwater acoustic sensor. In this paper, a length of optical fiber is bonded to an end-capped hollow cylinder of some elastic material, e. g. aluminum and glass-pyres. The normalized sensitivity is derived according to the direction of polarization. Derived sensitivity equations are simulated for two different mandrel materials. The results are also compared to the McMahon's results which calculated for an average Pockel coefficient. Based on the numerical simulation normalized sensitivity is propotional to the inner to outer diameter ratio.

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저온.고온고습 환경시험에 의한 GFRP의 미시계면 접착상태 및 노치형상강도 특성에 관한 연구 (A study on characteristic adgesive condition at microscopic interfaces and notch shape strength of GFRP composites laminates under low-hot-wet environment)

  • 김옥만;박귀성;한길영;이동기;김이곤
    • 한국해양공학회지
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    • 제10권4호
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    • pp.58-66
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    • 1996
  • The purpose of this investigation is to estimate the strength with the variations of the notch shape and the adgesive condition at the fiber/matrix micro interface of E-glass/PP laminates. To promote the degradation of the adhesive condition at the fiber/matrix micro interface without matrix dissolution loss, low-, hot-wet and spiking tests were carried out. The absorpotion properties and the tensile properties were compared accrding to the fiber orientation and the content. The results show that, firstly, saturated moisture absorption was reached at 5cycles and their absorptions of RD-40, UD-42 and UD-50 are 0.68%, 0.63%, 0.60%, respectively. Secondly, all the specimens investigated were mostly degraded at 5cycle, whereas UD-50 having ellipse shaped notch the least decrement of strength.

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복합소재 선체 외판의 초음파 탐상을 위한 탐촉자 주파수와 수신기 음향 속력의 상관관계 (Correlation between Probe Frequency and Echo-Pulse Velocity for Ultrasonic Testing of a Fiber-Reinforced Plastic Hull Plate)

  • 이상규;;이창우;오대균
    • 해양환경안전학회지
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    • 제26권2호
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    • pp.219-226
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    • 2020
  • 선체구조의 품질검사 중 가장 일반적인 방법의 하나는 비파괴검사이다. 하지만 복합소재 선체는 강화재와 수지로 구성된 여러가지 재료가 섞여 있고 또 생산환경과 작업자에 따라 FRP(Fiber-Reinforced Plastics) 제작품질에 차이가 발생할 가능성이 크기 때문에 정확한 검사평가는 쉽지 않은 일이다. 특히 FRP 선박의 경우에는 다른 구조물보다 두께가 매우 두껍고 주로 수척층 공법을 이용하기 때문에 더욱 그렇다. 초음파 탐상의 조건 중 검사체의 밀도가 매우 중요하기 때문에 본 연구에서는 FRP 선박 제작에 널리 사용되고 있는 소재와 유리섬유강화재 중량 비율로 제작된 선박의 외판을 검사체로 선정하고, Pulse-Echo 초음파 탐상기를 활용하여 GFRP(Glass Fiber-Reinforced Plastics) 선체 외판의 초음파 탐상을 위한 적정 조건을 조사하였다. 1.00 MHz, 2.25 MHz, 5.00 MHz 세 종류 탐촉자로 A-Scan을 실시하였으며 선체 외판의 두께 검사결과와 비교분석함으로써 적정 초음파 탐상 조건을 찾고자 하였다. 연구결과 탐촉자의 초음파 주파수가 높아질수록 수신자의 반사파 음향 속력을 감소시켜야 더 정도 높은 두께 측정 결과를 얻을 수 있었으며, 상대적으로 낮은 초음파 주파수 탐촉자에서 더 적은 오차가 발생함을 확인할 수 있었다.

유리섬유/에폭시 복합절연재료의 계면 접착력 개선에 관한 연구 1

  • 이종호;황영한;이규철
    • E2M - 전기 전자와 첨단 소재
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    • 제8권2호
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    • pp.136-143
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    • 1995
  • With the contact angle of phase dropping epoxy resin on the inorganic filler(glass plate) surface treated with air plasma, we have studied about the interfacial wettability between epoxy resin and glass plate as a simple model of glass fiber reinforced composite materials. The contact angle on the inorganic filler surface varied with surface treatment conditions. The contact angle significantly depends on plasma treating time and environment temperature in the oven. From the view point of plasma treatment condition in this work, when discharge conditions were pressure 200mtorr, voltage 800V, magnetic flux density 8OGauss, optimum treatment time were proved as 3,4 and 5 minutes for the environment of >$80^{\circ}C$, >$100^{\circ}C$ and >$120^{\circ}C$, respectively.

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Green Composites. I. Physical Properties of Ramie Fibers for Environment-friendly Green Composites

  • Nam Sung-Hyun;Netravali Anil N.
    • Fibers and Polymers
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    • 제7권4호
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    • pp.372-379
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    • 2006
  • The surface topography, tensile properties, and thermal properties of ramie fibers were investigated as reinforcement for fully biodegradable and environmental-friendly 'green' composites. SEM micrographs of a longitudinal and cross sectional view of a single ramie fiber showed a fibrillar structure and rough surface with irregular cross-section, which is considered to provide good interfacial adhesion with polymer resin in composites. An average tensile strength, Young's modulus, and fracture strain of ramie fibers were measured to be 627 MPa, 31.8 GPa, and 2.7 %, respectively. The specific tensile properties of the ramie fiber calculated per unit density were found to be comparable to those of E-glass fibers. Ramie fibers exhibited good thermal stability after aging up to $160^{\circ}C$ with no decrease in tensile strength or Young's modulus. However, at temperatures higher than $160^{\circ}C$ the tensile strength decreased significantly and its fracture behavior was also affected. The moisture content of the ramie fiber was 9.9 %. These properties make ramie fibers suitable as reinforcement for 'green' composites. Also, the green composites can be fabricated at temperatures up to $160^{\circ}C$ without reducing the fiber properties.

Advanced 'green' composites

  • Netravali, Anil N.;Huang, Xiaosong;Mizuta, Kazuhiro
    • Advanced Composite Materials
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    • 제16권4호
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    • pp.269-282
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    • 2007
  • Fully biodegradable high strength composites or 'advanced green composites' were fabricated using yearly renewable soy protein based resins and high strength liquid crystalline cellulose fibers. For comparison, E-glass and aramid ($Kevlar^{(R)}$) fiber reinforced composites were also prepared using the same modified soy protein resins. The modification of soy protein included forming an interpenetrating network-like (IPN-like) resin with mechanical properties comparable to commonly used epoxy resins. The IPN-like soy protein based resin was further reinforced using nano-clay and microfibrillated cellulose. Fiber/resin interfacial shear strength was characterized using microbond method. Tensile and flexural properties of the composites were characterized as per ASTM standards. A comparison of the tensile and flexural properties of the high strength composites made using the three fibers is presented. The results suggest that these green composites have excellent mechanical properties and can be considered for use in primary structural applications. Although significant additional research is needed in this area, it is clear that advanced green composites will some day replace today's advanced composites made using petroleum based fibers and resins. At the end of their life, the fully sustainable 'advanced green composites' can be easily disposed of or composted without harming the environment, in fact, helping it.

Fatigue resistance, debonding force, and failure type of fiber-reinforced composite, polyethylene ribbon-reinforced, and braided stainless steel wire lingual retainers in vitro

  • Foek, Dave Lie Sam;Yetkiner, Enver;Ozcan, Mutlu
    • 대한치과교정학회지
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    • 제43권4호
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    • pp.186-192
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    • 2013
  • Objective: To analyze the fatigue resistance, debonding force, and failure type of fiber-reinforced composite, polyethylene ribbon-reinforced, and braided stainless steel wire lingual retainers in vitro. Methods: Roots of human mandibular central incisors were covered with silicone, mimicking the periodontal ligament, and embedded in polymethylmethacrylate. The specimens (N = 50), with two teeth each, were randomly divided into five groups (n = 10/group) according to the retainer materials: (1) Interlig (E-glass), (2) everStick Ortho (E-glass), (3) DentaPreg Splint (S2-glass), (4) Ribbond (polyethylene), and (5) Quad Cat wire (stainless steel). After the recommended adhesive procedures, the retainers were bonded to the teeth by using flowable composite resin (Tetric Flow). The teeth were subjected to 10,00,000 cyclic loads (8 Hz, 3 - 100 N, $45^{\circ}$ angle, under $37{\pm}3^{\circ}C$ water) at their incisoproximal contact, and debonding forces were measured with a universal testing machine (1 mm/min crosshead speed). Failure sites were examined under a stereomicroscope (${\times}40$ magnification). Data were analyzed by one-way analysis of variance. Results: All the specimens survived the cyclic loading. Their mean debonding forces were not significantly different (p > 0.05). The DentaPreg Splint group (80%) showed the highest incidence of complete adhesive debonding, followed by the Interlig group (60%). The everStick Ortho group (80%) presented predominantly partial adhesive debonding. The Quad Cat wire group (50%) presented overlying composite detachment. Conclusions: Cyclic loading did not cause debonding. The retainers presented similar debonding forces but different failure types. Braided stainless steel wire retainers presented the most repairable failure type.

Relationship between Barcol hardness and flexural modulus degradation of composite sheets subjected to flexural fatigue

  • Sakin, Raif
    • Steel and Composite Structures
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    • 제19권6호
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    • pp.1531-1548
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    • 2015
  • The aim of this study is to investigate the relationship between Barcol hardness (H) and flexural modulus (E) degradation of composite sheets subjected to flexural fatigue. The resin transfer molding (RTM) method was used to produce 3-mm-thick composite sheets with fiber volume fraction of 44%. The composite sheets were subjected to flexural fatigue tests and Barcol scale hardness measurements. After these tests, the stiffness and hardness degradations were investigated in the composite sheets that failed after around one million cycles (stage III). Flexural modulus degradation values were in the range of 0.41-0.42 with the corresponding measured hardness degradation values in the range of 0.25-0.32 for the all fatigued composite sheets. Thus, a 25% reduction in the initial hardness and a 41% reduction in the initial flexural modulus can be taken as the failure criteria. The results showed that a reasonably well-defined relationship between Barcol hardness and flexural modulus degradation in the distance range.

본딩 구조에 따른 광섬유 자왜변환기의 응답특성 (Magnetostrictive response characteristics of fiber-optic transducers with different bonding configurations)

  • 박무윤;김태균;이경식
    • 한국광학회지
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    • 제7권1호
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    • pp.72-76
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    • 1996
  • Metallic glass 1605SC, 2826MB 두 재질에 대해 세 가지 본딩 구조를 가지는 광섬유 자왜변환기를 구성하여 구조에 따른 여러가지 자왜응답특성을 측정해 보았다. 측정결과 두 재질 모두에서 양끝 본딩이 경우 가장 좋은 자왜응답특성을 보였다. 2605SC의 경우 양끝 본딩구조를 가진 자왜변환기의 유효자왜상수 $C_{eff}$, saturation magnetostriction .lambda.$_{s}$ , 최소감지자계 $H_{min}$은 각각 1.2*$10^{-5}$O $e^{-2}$ , 7.4*$10^{-4}$ , 1.6*$10^{-7}$ Oe/.root.Hz로 측정되었고, 2826MB재질의 경우 양끝 본딩구조에서의 유효자왜상수 $C_{eff}$, saturation magnetostriction .lambda.$_{s}$ 는 각각 7.6*$10^{-6}$ O $e^{-2}$ , 3.4*$10^{-4}$ 로 측정되었다.되었다.

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