• 제목/요약/키워드: Unidirectional CFRP

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탄소섬유강화복합재료의 마식에 관한 연구 (Study on Erosion of Carbon Fiber Reinforced Plastic Composite)

  • 김엄기;김일현
    • 한국산학기술학회논문지
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    • 제9권2호
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    • pp.291-297
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    • 2008
  • 일방향 탄소섬유 강화 복합재료(CFRP)의 고체입자 마식 거동을 다양한 충돌각도 (${\alpha}$), 속도 (V) 및 섬유 방향 (${\beta}$)에 대하여 연구하였다. 실험결과 30o 충돌각도에서 최대 마식률을 나타내었고, 마식률은 멱함수 법칙 $E{\propto}\;V^n$에 따라 충돌속도에 크게 의존하였다. 본 연구에서는 이상의 결과로부터 일방향 탄소섬유 강화 복합재료의 마식률을 충돌속도, 충돌각도 및 섬유방향 각도로부터 예측하는 방법을 제안하였다.

탄소섬유강화 복합재의 열전도율 평가에 관한 연구 (A Study on Evaluation of Thermal Conductivity for Carbon -Fiber-Reinforced-Plastics)

  • 임재규;송준희;최창호
    • 대한기계학회논문집A
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    • 제26권3호
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    • pp.553-559
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    • 2002
  • Carbon-fiber which has very small radial dimension makes us difficult to measure it's properties. So in this paper, we suggest a simple method to measure the thermal conductivity of a carbon-fiber's and carbon-fiber-reinforced-plastics(CFRP) laminates. The thermal conductivity of CFRP laminates was measured experimentally at the same time analytically. The experimental model is based on the one-dimensional analysis of fin sample because CFRP laminates has a thin geometric configuration. The analytical model to measure the thermal conductivity of carbon-fiber is expressed by use of mean-field model which is based on Eshelby's elliptical inclusion problem. Therefore the thermal conductivity of angle-ply laminates can be computed by use of effective longitudinal and transverse thermal conductivities of unidirectional composite of the constituents.

Guided wave field calculation in anisotropic layered structures using normal mode expansion method

  • Li, Lingfang;Mei, Hanfei;Haider, Mohammad Faisal;Rizos, Dimitris;Xia, Yong;Giurgiutiu, Victor
    • Smart Structures and Systems
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    • 제26권2호
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    • pp.157-174
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    • 2020
  • The guided wave technique is commonly used in structural health monitoring as the guided waves can propagate far in the structures without much energy loss. The guided waves are conventionally generated by the surface-mounted piezoelectric wafer active sensor (PWAS). However, there is still lack of understanding of the wave propagation in layered structures, especially in structures made of anisotropic materials such as carbon fiber reinforced polymer (CFRP) composites. In this paper, the Rayleigh-Lamb wave strain tuning curves in a PWAS-mounted unidirectional CFRP plate are analytically derived using the normal mode expansion (NME) method. The excitation frequency spectrum is then multiplied by the tuning curves to calculate the frequency response spectrum. The corresponding time domain responses are obtained through the inverse Fourier transform. The theoretical calculations are validated through finite element analysis and an experimental study. The PWAS responses under the free, debonded and bonded CFRP conditions are investigated and compared. The results demonstrate that the amplitude and travelling time of wave packet can be used to evaluate the CFRP bonding conditions. The method can work on a baseline-free manner.

적층각 및 형상 변화에 따른 CFRP 구조부재의 동적 특성 (Dynamic Characteristics of CFRP Structure Member According to Change the Stacking Angle and Shape)

  • 여인구;최주호;양인영
    • 한국생산제조학회지
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    • 제22권3호
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    • pp.388-393
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    • 2013
  • Carbon fiber reinforced plastic (CFRP) has many desirable qualities, including being lightweight and very strong. These characteristics have led to its use in applications ranging from small consumer products to vehicles. Circular and square CFRP members were fabricated using 8ply unidirectional prepreg sheets stacked at different angles ($[+15^{\circ}/-15^{\circ}]_4$, $[+45^{\circ}/-45^{\circ}]_4$ and $[90]_8$, where $0^{\circ}$ coincides with the axis of the member). Based on the collapse characteristics of a CFRP circular member, the collapse characteristics and energy absorption capability were analyzed. Impact collapse tests were carried out for each section member. In this study, the impact energies at crossheads speeds of 5.52 m/s, 5.14 m/s and 4.57 m/s were 611.52 J, 529.2 J and 419.44 J (circular member) 2.16 m/s, 1.85 m/s and 1.67 m/s are 372.4 J, 274.4 J and 223.44 J (square member). The purpose is to experimentally examine the absorption behavior and evaluation the strength in relation to changes in the stacking configuration when the CFRP circular members with different stacking configurations were exposed to various impact velocities. In addition, the dynamic characteristics were considered.

적층구성과 충돌에너지의 변화에 따른 CFRP 구조부재의 충격특성 (Impact Characteristics of CFRP Structural Member according to the Variation of Stacking Condition and Impact Energy)

  • 여인구;최주호;최영민;양용준;황우채;양인영
    • 한국생산제조학회지
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    • 제22권6호
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    • pp.976-981
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    • 2013
  • This aims to examine experimentally the absorption behavior and strength of circular CFRP members with different stacking configurations on exposure to a separate impact velocity. In addition, considered the dynamic characteristics. Circular and square CFRP members were prepared from 8-ply unidirectional prepreg sheets stacked at different angles ($0^{\circ}/90^{\circ}$ and $90^{\circ}/0^{\circ}$, where the $0^{\circ}$ direction coincides with the axis of the member) and interface numbers (2, 4, and 6). Based on the collapse characteristics of the circular CFRP members. In this study, for the circular members, the impact energies at crosshead speeds of 5.52 m/s, 5.14 m/s, and 4.57 m/s are 611.52 J, 529.2 J, and 419.44 J (at circular members), respectively. Likewise, for the square members, the impact energies at crosshead speeds of 2.16 m/s, 1.85 m/s, and 1.67 m/s are 372.4 J, 274.4 J, and 223.44 J (at square members).

엘리베이터용 와이어로프와 CFRP UD의 벤딩 해석 비교 (Comparison between Wire Rope and CFRP UD on Bending Analysis)

  • 박성민;신동우;권일준;유성훈;문완기
    • Composites Research
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    • 제28권6호
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    • pp.378-382
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    • 2015
  • 인구밀도가 증가하고 매년 고층건물의 수가 늘어나고, 대부분의 사람들이 하루에 엘리베이터를 이용하는 시간이 많아짐에 따라 일상생활 속에서 엘리베이터는 중요한 역할을 하고 있다. 매년 고층건물이 늘어남에 따라 고속 고층 승강기의 기술 요구 수준도 높아져 가고 있다. Carbon-fiber-reinforced plastics (CFRPs)는 높은 강성과 경량화 및 낮은 마찰력 등을 장점으로 하고 있으며, 엘리베이터용 wire rope에 매우 적합한 재료이다. 본 논문에서는 CFRP의 특성을 분석하기 위하여, wire rope와 CFRP UD의 인장 강도 및 수치 해석을 통한 벤딩 해석 비교를 진행하였다.

다양한 적층을 갖는 CFRP 적층판의 인장강도 예측 (Estimating Tensile Strengths of CFRP Laminates Having Various Stacking Sequences)

  • 박찬익;이명건;김상용;장세용
    • 한국항공우주학회지
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    • 제50권5호
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    • pp.309-316
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    • 2022
  • 본 논문에서는 14개의 다른 적층을 갖는 CFRP 적층판의 강도를 비선형 수치해석으로 계산하고 시험 결과와 비교하였다. 복합재 적층판 쿠폰은 일방향 테이프로 만들어진 프리프레그를 오토클레이브에서 경화하여 제작하였다. 라미나 시험으로 획득한 메트릭스의 비선형 특성을 해석에 고려하였다. Hashin 파손조건과 점진적 손상모델을 사용하여 비선형 유한요소 해석을 수행하였다. 비교 결과 본 논문의 접근 방법이 다양한 적층을 갖고, 손상이 없는 CFRP 적층판의 인장강도를 예측할 수 있음을 보여주었다. 그러나 구멍이 있는 적층판 시편의 강도 예측에는 부적합하였다.

강화재파단이 있는 복합재료의 저속 충격특성 (Impact Properties of CFRP Laminates with Initial Fiber Failures)

  • 박중권;강창규;김철;김태우
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 춘계학술발표대회 논문집
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    • pp.67-70
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    • 2005
  • The carbon fiber reinforced/epoxy laminated composites were fabricated with initial fiber failures within the unidirectional fiber pre-pregnated ply. The fiber failures were made intentionally either parallel to and/or perpendicular to the unidirectional fibers within the ply. The pre-made clear-cut cracks were found to be healed partially after laminating process. The laminates were impacted with or without initial fiber failures within the laminates. The force versus deflection curves were compared. The partially healed laminates showed the reduced laminate stiffness as compared to those without any intentional fiber failures. The impact curves were compared with size and the location of the initial failures varied.

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Tension-Compression Asymmetry in the Off-Axis Nonlinear Rate-Dependent Behavior of a Unidirectional Carbon/Epoxy Laminate at High Temperature and Incorporation into Viscoplasticity Modeling

  • Kawai, M.;Zhang, J.Q.;Saito, S.;Xiao, Y.;Hatta, H.
    • Advanced Composite Materials
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    • 제18권3호
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    • pp.265-285
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    • 2009
  • Off-axis compressive deformation behavior of a unidirectional CFRP laminate at high temperature and its strain-rate dependence in a quasi-static range are examined for various fiber orientations. By comparing the off-axis compressive and tensile behaviors at an equal strain rate, the effect of different loading modes on the flow stress level, rate-dependence and nonlinearity of the off-axis inelastic deformation is elucidated. The experimental results indicate that the compressive flow stress levels for relatively larger off-axis angles of $30^{\circ}$, $45^{\circ}$ and $90^{\circ}$ are about 50 percent larger than in tension for the same fiber orientations, respectively. The nonlinear deformations under off-axis tensile and compressive loading conditions exhibit significant strain-rate dependence. Similar features are observed in the fiber-orientation dependence of the off-axis flow stress levels under tension and compression and in the off-axis flow stress differential in tension and compression, regardless of the strain rate. A phenomenological theory of viscoplasticity is then developed which can describe the tension-compression asymmetry as well as the rate dependence, nonlinearity and fiber orientation dependence of the off-axis tensile and compressive behaviors of unidirectional composites in a unified manner. It is demonstrated by comparing with experimental results that the proposed viscoplastic constitutive model can be applied with reasonable accuracy to predict the different, nonlinear and rate-dependent behaviors of the unidirectional composite under off-axis tensile and compressive loading conditions.

전개형 경량 위성 안테나 반사판의 재료분석 및 형상 최적화 (Material Analysis and Shape Optimization of a Deployable Lightweight Satellite Antenna Reflector)

  • 곽도혁;정화영;이재은;강광희
    • 한국생산제조학회지
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    • 제26권2호
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    • pp.185-192
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    • 2017
  • In this paper, we reviewed major design parameters for a solid type of deployable antenna and its structural design. We performed modal analysis for a single reflector panel made of aluminum and CFRP (carbon fiber reinforced plastic) to confirm the appropriateness of selected materials. We then predicted the elastic modulus of CFRP using the principles of unidirectional composite elasticity stiffness predictions such as the ROM (Rule of Mixture) and HSR (Hart Smith 10% Rule). To optimize the shape of the antenna reflector, a structural stiffness analysis was performed using derived numerical optimization factors. Six structural stiffness analyses were performed using the constructed experimental design method. The resulting optimal shape conditions are proposed to meet the structural stiffness requirements while minimizing weight.