• Title/Summary/Keyword: fiber shape

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연속섬유가 보강된 3상 복합재료의 종방향 전단계수 해석 (Effective Longitudinal Shear Modulus of Continuous Fiber-Reinforced 3-Phase Composites)

  • 정태헌;이동주
    • 대한기계학회논문집A
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    • 제20권9호
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    • pp.2782-2791
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    • 1996
  • The effective longitudinal shear modulus(LSM) of continuous composites is studied theoretically and numerically using 3-phase unit cell model. Circular, hexagonal and rectangular shapes of reinforced fiber are considered to predict the shear modulus as a function of elastic modulus of each phase and volume fraction of interphase and reinforced fiber. It is found that rectangular fiber shape in low fiber volume fraction($v_f$<30%) and circular fiber shape in high volume fraction($v_f$>40%) shows the higher longitudinal shear modulus. Also the obtained values of LSM for rectangular array and by numerical analysis are higher than those of hexagonal array and by theoretical analysis respectively. The reinforcing effects of interphase are more significant in cases of higher fiber volume fraction and circular fiber shape. Not only the spatial distribution and shape of reinforcing fiber but also the volume of interphase have a pronounced effects on the overall LSM. It is also found that the tangent moduous of 2-and 3-phase polymer matrix composites is insensitive to the shape and distribution of reinforcing fibers.

탄소섬유 복합재료를 적용한 ANG 연료용기의 최적 형상설계 (Optimal Shape Design of ANG Fuel Vessel Applied to Composite Carbon Fiber)

  • 김건회
    • 한국기계가공학회지
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    • 제18권1호
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    • pp.65-71
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    • 2019
  • The development of adsorbed natural gas (ANG) has emerged as one of potential solutions. It is desirable to reduce the weight of vessel by applying light-weighed a composite carbon fiber in order to response to a egulation of $CO_2$ emission. Through understanding of a composite carbon fiber, and material characteristic of a composite carbon fiber is required in order for better application of a reduction of weight and an analysis of material characteristic. Herein, this study suggest the composite carbon fiber vessel applied to the characteristic of carbon fiber, and it decides the preliminary shape based on the test of material characteristic for ANG vessel applied to a composite carbon fiber, and its basic shape calculate through on the netting theory. Moreover, the detail shape design is analyzed by a finite element analysis, and in the stage of detail sahp design and analysis of stress was performed on the typical shape using a finite element analysis, and the result of preliminary design was verified.

형상기억효과를 가진 투과형 광탄성 실험용 모델재료 개발에 관한 연구 (A study on the development of photoelastic model material with shape memory effect)

  • 이효재;황재석
    • 대한기계학회논문집A
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    • 제22권3호
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    • pp.624-634
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    • 1998
  • The photoelastic model material with shape memory effect and the molding processes for the material are developed in this research. The matrix and fiber of the photoelastic model material developed in this research are epoxy resin (Araldite to hardner 10 to 3 (weight ratio)) and wire of $Ti_50-Ni_50$ shape memory alloy, respectively. It is called Ti50-Ni50 Shape Memory Alloy Fiber Epoxy Composite $(Ti_50-Ni_50SMA-FEC).$ Ti50-Ni50 SMA-FEC is satisfied with the requirements of the photoelastic model material and can be used as a photoelastic model material. The maximum recovering strain of $Ti_50-Ni_50$SMA-FEC is occurred at $80^{\circ}C$ in any prestrain of $Ti_50-Ni_50$ shape memory alloy fiber and in any fiber volume ratio. Recovering strain(force) is increased with the increment of the prestrain and the fiber volume ratio. The best prestrain of $Ti_50-Ni_50$SMA-FEC is 5% for the recovering force among 1%, 3%, 5%.

Ti_{50}-Ni_{50} 형상기억합금 복합체의 계면 접학 전단강도 향상에 관한 연구 (A Study on the Improvement of Interfacial Bonding Shear Strength of Ti50-Ni50 Shape Memory Alloy Composite)

  • 이효재;황재석
    • 대한기계학회논문집A
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    • 제24권10호
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    • pp.2461-2468
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    • 2000
  • In this paper, single fiber pull-out test is used to measure the interfacial bonding shear strength of $Ti_{50}-Ni_{50}$ shape memory alloy composite with temperature. Fiber and matrix of $Ti_{50}-Ni_{50}$ shape memory alloy composite are respectively $Ti_{50}-Ni_{50}$ shape memory alloy and epoxy resin. To strengthen the interfacial bonding shear stress, various surface treatments are used. They are the hand-sanded surface treatment, the acid etched surface treatment and the silane coupled surface treatment etc.. The interfacial bonding shear strength of surface treated shape memory alloy fiber is greater than that of surface untreated shape memory alloy fiber by from 10% to 16%. It is assured that the hand-sanded surface treatment and the acid etched surface treatment are the best way to strengthen the interfacial bonding shear strength of $Ti_{50}-Ni_{50}$ shape memory composite. The best treatment condition of surface is 10% HNO$_3$ solution in the etching method to strengthen the interfacial bonding shear strength of $Ti_{50}-Ni_{50}$ shape memory alloy composite.

형상기억합금을 이용한 지능형 고분자 복합재료의 설계 (Design of an Intelligent Polymer-Matrix-Composite Using Shape Memory Alloy)

  • 정태헌
    • 대한기계학회논문집A
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    • 제21권10호
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    • pp.1609-1618
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    • 1997
  • Thermo-mechanical behaviors of polymer matrix composite(PMC) with continuous TiNi fiber are studied using theoretical analysis with 1-D analytical model and numerical analysis with 2-D multi-fiber finite element(FE) model. It is found that both compressive stress in matrix and tensile stress in TiNi fiber are the source of strengthening mechanisms and thermo-mechanical coupling. Thermal expansion of continuous TiNi fiber reinforced PMC has been compared with various mechanical behaviors as a function of fiber volume fraction, degree of pre-strain and modulus ratio between TiNi fiber and polymer matrix. Based on the concept of so-called shape memory composite(SMC) with a permanent shape memory effect, the critical modulus ratio is determined to obtain a smart composite with no or minimum thermal deformation. The critical modulus ratio should be a major factor for design and manufacturing of SMC.

연속섬유가 보강된 2상 복합재료의 종방향 전단계수 해석 (Effective Longitudinal Shear Modulus of Continuous Fiber-Reinforced 2-Phase Composites)

  • 이동주;정태현
    • 대한기계학회논문집A
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    • 제20권9호
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    • pp.2770-2781
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    • 1996
  • Longitudinal shear modulus of continuous fiber reinforced 2-phase composites is predicted by theoretical and numerical analysis methods. In this paper, circular, hexagonal and rectangular shapes of reinforced fiber are considered using unit cell concept. And fiber array is regular rectangular and hexagonal fiber arrangement. Longitudinal shear modulus is a function of fiber distribution pattern and fiber volume change. It is found that the rectangular array has a higher longitudinal shear modulus than the hexagonal one. Also, the rectangular fiber shape in lower fiber volume fraction and the circular fiber shape in higher fiber volume fraction show the higher longitudinal shear modulus. And it has been found that the theoretical and numerical predictions of the longitudinal shear modulus give a good agreement with the experimental data at lower fiber volume fraction. Both the distance and stress transfer between the fibers are discussed as the major determing factors.

TiNi/Al기 형상기억복합재료의 강도평가를 위한 전문가시스템의 개발 (The Development of Expert System for Strength Evaluation of TiNi Fiber Reinforced Al Matrix Composite)

  • 박영철;이동화;박동성
    • 대한기계학회논문집A
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    • 제28권8호
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    • pp.1099-1108
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    • 2004
  • In this paper, a study on the development of expert system for Al matrix composite with shape memory alloy fiber is performed to evaluate termomechanical behavior and mechanical properties. Expert system is very useful computer-based analysis system designed to make analysis technique and knowledge conveniently available to a lot of fabricable condition. In the developed system, it is possible to predict termomechanical behavior and mechanical properties for other composite with shape memory alloy fiber. The smartness of the shape memory alloy is given due to the shape memory effect of the TiNi fiber which generates compressive residual stress in the matrix material when heated after being prestrained. For finite element analysis, an analytical model is assumed two dimensional axisymmetric model compared of one fiber and the matrix. To evaluate the strength of composite using FEM, the concept of smart composite was simulated on computer Thus, in this paper, the FEA was carried out at two critical temperature conditions; room temperature and high temperature(363k). The finite element analysis result was compared with the test result for the analysis validity.

이중형코어를 갖는 W형 단일모드 광섬유의 전파특성에 대한 연구 (A Study on the Propagation Characteristics of W-type Single Mode Fiber with Dual Shape Core)

  • 김정근;이대형;최병하
    • 한국통신학회논문지
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    • 제16권1호
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    • pp.57-63
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    • 1991
  • 본 논문에서는 이중형 코어(Dual Shape Core)를 갖는 W형 단일모드 광섬유의 전파특성을 이론적으로 조사하였다. 스칼라 근사화방법을 이용하여 넓은 파장범위에서 저분산을 갖는 이중형 코어 W 형 단일모다 광섬유의 설계변수를 계산하였다. 그 계산결과를 단일형코어를 갖는 기존의 W형 광섬유와 비교하였을 때 보다 큰 코어반경을 갖고, 코어내의 모드필드의 접속효과가 보다 큼을 확인하였다.

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potential of Noncircular Fiber as Reinforcing Material l. C-type carbon fiber

  • Boh, Shim-Hwan;Rhee Bo sung
    • 한국재료학회지
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    • 제4권7호
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    • pp.817-822
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    • 1994
  • 비슷한 역학적 특성을 갖는 단면의 형상이 C형인 탄소섬유와 전형적인 원형탄소섬유를 에폭시를 모재로 하여 상호의 단면 형상이 강화 효과에 미치는 영향을 실험하였다. 실험결과 C 형 탄소 섬유 강화 복합재가 굴곡강도(218%), 굴곡탄성률(223%), 충간전단강도(157%), 충격강도(227%), 횡굴곡강도(184%)등의 모든 기계적 특성 부분에서 우수한 성능을 보였으며, 또한 재료의피로수명, 마찰/마모계수와 같은 기계적 특성과도 많은 상관을 보이는 것으로 알려진 제진(damping)특성에 있어서도 약 185% 정도의 높은 값을 보였다. 본 연구팀은 이와 같은 비원형 탄소섬유(C형)의 강화 효과및 가능성을 확인하여 제시하는 바 이다.

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폴리프로필렌섬유 보람 고유동 콘크리트의 공학적 특성 (Engineering Property of Polyprofilene Fiber Reinforced High Flowable Concrete)

  • 노경희;김영익;성찬용
    • 한국농공학회:학술대회논문집
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    • 한국농공학회 2002년도 학술발표회 발표논문집
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    • pp.185-188
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    • 2002
  • This study is performed to examine the engineering properties of polyprofilene fiber reinforced high flowable concrete. For the estimation of the flow ability and filling ability, the slump flow, box height difference and L-shape filling appearence are measured and compared. The test result shows that the slump flow and L-shape filling appearence is decreased with increase containing polyprofilene fiber and box height difference is increased with increase containing polyprofilene fiber. Also, compressive strength is decreased with increase containing polyprofilene fiber.

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