• 제목/요약/키워드: laminate sequence

검색결과 81건 처리시간 0.021초

탄소/에폭시 복합재 적층판과 강판의 저속충격 거동에 관한 비교 연구 (Comparative Study on Low-velocity Impact Behavior of Graphite/Epoxy Composite laminate and Steel Plate)

  • 공창덕;김영광;이승현
    • Composites Research
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    • 제20권5호
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    • pp.1-6
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    • 2007
  • 본 연구에서는 탄소/에폭시 복합재 적층판과 강철평판의 저속충격 거동에 관한 비교 연구를 수행하였다. 각각의 평판의 해석을 위한 판의 충격거동의 타당성을 검증하기 위해 Karas 모델을 사용하여 해석 검증을 하였다. 충격거동 비교연구를 위한 모델은 Karas 모델과 동일한 두께의 강철평판을 모사하였고, 같은 두께의 복합재 적층판을 모사하기 위하여 $[0/90/45/-45/-45/45/90/0]_{8S}$ 적층각을 이용하여 모델링 하였다. 각각의 판에 대한 저속충격 거동을 비교하기 위해 일정한 속도로 낙하하는 충격체 무게별 해석과 일정한 무게를 가진 충격체의 속도변화에 따른 해석 결과를 비교 연구하였다. 연구결과 복합재 적층판과 강철평판의 물성치로 인하여 접촉하중과 판의 변위에서는 결과값의 차이를 보였으나 복합재 적층판의 경우가 판의 유연한 특성으로 충격완화 효과가 보였으며 강철평판 보다 무게비와 충격손상에 대한 우수성을 확인하여 볼 수 있었다.

복합재료 골프샤프트의 적층최적화 (Optimization of stacking sequence for composite golf club shafts)

  • 김무선;한동철;김선진;이우일
    • Composites Research
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    • 제20권1호
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    • pp.1-7
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    • 2007
  • 본 논문에서는 골프클럽샤프트의 정적특성의 최적화 방법론을 제시하였다. 복합재료를 사용한 샤프트의 최적성능향상을 위한 쉬트 프리프레그의 적층순서를 구하였다. 클럽샤프트의 굽힘 강성과 비틀림 강성의 동시 최적화를 위하여 새로운 최적화 목적함수를 제시하였다. 샤프트의 정적특성 분석을 위하여 고전적층 이론을 적용하였으며 최적화 방법으로서 적층순서를 설계변수로 정의하는 유전알고리즘을 사용하였다. 또한 얻어진 최적적층순서를 바탕으로 한 샤프트의 동적특성을 분석하였다.

기계적으로 체결된 복합재료 평판에서 다양한 인자의 영향에 따른 원공 주위의 응력분포 (Effect of Various Parameters on Stress Distribution around Holes in Mechanically Fastened Composite Laminates)

  • 최재민;전흥재;변준형
    • Composites Research
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    • 제18권6호
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    • pp.9-18
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    • 2005
  • 복합재료가 항공기 구조물 및 기계부품 등에 폭 넓게 적용됨에 따라, 복합재료 구조물에서 가장 취약한 복합재료 체결부의 설계는 매우 중요한 연구 분야로 대두되고 있다. 본 논문에서는 기계적으로 체결이 된 단일 및 다중 핀 하중을 받는 복합재료 평판에서 응력분포에 대한 해석적인 연구를 수행하였다. 또한, 기계적체결부인 핀과 구멍간에서 접촉 문제를 다루기 위하여 접촉응력해석을 이용한 유한요소 모델이 사용되었으며, 응력분포를 정량적으로 비교하기 위하여 무차원화한 응력집중계수를 이용하였다. 단일 핀 하중을 받는 경우에 대하여 적층순서, 원공의 지름에 대한 평판 폭의 비 (W/D ratio), 원공의 지름에 대한 끝단에서 원공까지의 길이의 비 (En ratio), 마찰계수, 와셔의 조임력 등에 대한 영향을 알아보았으며, 다중 핀 하중을 받는 경우에 응력집중계수를 이용하여 핀의 개수, 피치, 열의 개수, 열 간격 및 원공의 배치형상의 영향에 대하여 알아보았다. 단일 핀 하중을 받는 경우에 대한 결과로부터, DBLT (Double-Bias-Longitudinal Transverse) 복합재료 평판에서 응력이 가장 민감하게 나타나는 것을 알 수 있었고, 원공의 지름에 대한 평판 폭의 비와끝단에서 원공까지의 길이의 비에 따른 응력의 변화가 민감하게 나타나는 것을 확인할 수 있었다. 또한, 다중핀 하중을 받는 경우에 대한 응력해석의 결과로부터, 원공이 2열로 배치된 복합재료 평판에서 응력집중현상이 가장 적게 일어나는 것을 확인하였다. 이러한 해석을 통하여, 체결부에서 나타나는 응력분포로부터 복합재료 평판에서의 파손형태를 예측할 수 있다.

Automatic analysis of thin-walled laminated composite sections

  • Prokic, A.;Lukic, D.;Ladjinovic, Dj.
    • Steel and Composite Structures
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    • 제16권3호
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    • pp.233-252
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    • 2014
  • In this paper a computer program is developed for the determination of geometrical and material properties of composite thin-walled beams with arbitrary open cross-section and any arbitrary laminate stacking sequence. Theory of thin-walled composite beams is based on assumptions consistent with the Vlasov's beam theory and classical lamination theory. The program is written in Fortran 77. Some numerical examples are given, with complete information about input and output.

적층된 ACM 경사판의 기하학적 비선형 동적 해석 (Geometrical nonlinear dynamic analysis of laminated skew plates made of advanced composite materials)

  • 이상열;장석윤
    • 복합신소재구조학회 논문집
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    • 제1권4호
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    • pp.28-34
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    • 2010
  • W e performed a geometrical nonlinear dynamic analysis of laminated skew plates made of advanced composite materials (ACM ) based on the first-order shear deformation plate theory (FSDT). The Newmark method and Newton-Raphson iteration are used for the nonlinear dynamic solution. The effects of skew angles and layup sequences on the nonlinear dynamic response for various parameters are studied using a nonlinear dynamic finite element program developed for this study. The several numerical results were in good agreement with those reported by other investigators for square composite and skew plates, and the new results reported in this paper show the significant interactions between the skew angle and layup sequence in the skew laminate. Key observation points are discussed and a brief design guideline is given.

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적층구성 및 곡률 변화에 따른 CFRP 적층쉘의 관통특성 (The Penetration Characteristics of CFRP Laminated Shells on the Change of Stacking Sequences and Curvatures)

  • 조영재;김영남;양인영
    • 한국자동차공학회논문집
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    • 제14권1호
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    • pp.79-85
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    • 2006
  • CFRP(Carbon Fiber Reinforced Plastics) of the advanced composite materials as structural materials for vehicle, has a wide application in light-weigh structural materials of airplanes, ships and automobiles because of high strength and stiffness, However, there is a design variable to be considered in practical application of the laminate composite materials, these materials are vulnerable to transverse impact. This paper is to study the effects of stacking sequence and curvature on the penetration characteristics of composite laminate shell. They are stacked to $[0_3/90_3]S,\;[90_3/0_3]s\;and\;[0_2/90_3/0]s,\;[90_2/0_3/90]s$ and their interlaminar number two and four. They are manufactured to various curvature radius (R=100, 150, 200mm and $\infty$), When the specimen is subjected to transverse impact by a steel ball, the velocity of the steel ball was measured both before and after impact by determing the time for it to pass two ballistics-screen sensors located a known distance apart. The critical penetration energy of specimen A and B with less interfaces were a little higher than those of C and D. As the curvature increases, the critical penetration energy increases linearly because the resistance to the in-plane deformation as well as bending deformation increases, which need higher critical penetration energy. The specimen A and C have higher critical penetration energy than B and D because of different stacking sequences. We examined crack length through a penetration test. For the specimen A with 2interfaces, the longest circumferential direction crack length were observed on the first interface from the impact point. For the specimen B 4-interface, the longest circumferential direction crack length were observed on the second interface from the impact point.

Optimal lay-up of hybrid composite beams, plates and shells using cellular genetic algorithm

  • Rajasekaran, S.;Nalinaa, K.;Greeshma, S.;Poornima, N.S.;Kumar, V. Vinoop
    • Structural Engineering and Mechanics
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    • 제16권5호
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    • pp.557-580
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    • 2003
  • Laminated composite structures find wide range of applications in many branches of technology. They are much suited for weight sensitive structures (like aircraft) where thinner and lighter members made of advanced fiber reinforced composite materials are used. The orientations of fiber direction in layers and number of layers and the thickness of the layers as well as material of composites play a major role in determining the strength and stiffness. Thus the basic design problem is to determine the optimum stacking sequence in terms of laminate thickness, material and fiber orientation. In this paper, a new optimization technique called Cellular Automata (CA) has been combined with Genetic Algorithm (GA) to develop a different search and optimization algorithm, known as Cellular Genetic Algorithm (CGA), which considers the laminate thickness, angle of fiber orientation and the fiber material as discrete variables. This CGA has been successfully applied to obtain the optimal fiber orientation, thickness and material lay-up for multi-layered composite hybrid beams plates and shells subjected to static buckling and dynamic constraints.

Characterization of CFRP Laminates′Layups Using Through-Transmitting Ultrasound Waves

  • Im, Kwang-Hee;David K. Hsu;Cho, Young-Tae;Park, Jae-Woung;Sim, Jae-Ki;Yang, In-Young
    • Journal of Mechanical Science and Technology
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    • 제16권3호
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    • pp.292-301
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    • 2002
  • Ultrasound waves interact strongly with the orientation and sequence of the plies in a layup when propagating in the thickness direction of composite laminates. Also the layup orientation greatly influences its properties in a composite laminate. If the layup orientation of a ply is misaligned, it could result in the part being rejected and discarded. Now, most researchers cut a small coupon from the waste edge and use a microscope to optically verify the ply sequences on important parts. This may add a substantial cost to the production since the test is both labor intensive and performed after the part is cured. A nondestructive technique would be very beneficial, which could be used to test the part after curing and requires less time than the optical test. Therefore we have developed, reduced, and implemented a novel ply-by-ply vector decomposition model for composite laminates fabricated from unidirectional plies. This model decomposes the transmission of a linearly polarized ultrasound wave into orthogonal components through each ply of a laminate. High probability is found, by comparisons between the model and tests, in characterizing cured layups of the laminates by using the proposed method.

초음파 트랜스듀셔 투과법을 이용한 CFRP 복합적층판의 특성평가 (Characteristics Evaluation of CFRP Composite Laminates Using a Through-Transmission Method of Ultrasonic Transducers)

  • 임광희;나승우;강태식;김선규;김지훈;이현;박제웅;심재기;양인영
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집A
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    • pp.401-406
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    • 2001
  • When propagating the thickness direction of composite laminates ultrasound waves interacts strongly with the orientation and sequence of the plies in a layup. Also the layup orientation greatly influences its properties in a composite laminate. If one ply of the layup orientation is misaligned, it could result in the part being rejected and discarded. Now, most researchers cut a small coupon from the waste edge and use a microscope to optically verify the ply sequences on important parts. Those may add a substantial cost to the product since the test is both labor hard and performed after the part is cured. A nondestructive technique would be very beneficial, which could be used to test the part after curing and require less time than the optical test. Therefore we have developed, reduced, and implemented a novel ply-by-ply vector decomposition model for composite lam mates fabricated from unidirectional plies. This model decomposes the transmission of a linearly polarized ultrasound wave into orthogonal components through each ply of a laminate. It is found that a high probability shows between the model and tests developed in characterizing cured layups of the laminates.

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A new hierarchic degenerated shell element for geometrically non-linear analysis of composite laminated square and skew plates

  • Woo, Kwang-Sung;Park, Jin-Hwan;Hong, Chong-Hyun
    • Structural Engineering and Mechanics
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    • 제17권6호
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    • pp.751-766
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    • 2004
  • This paper extends the use of the hierarchic degenerated shell element to geometric non-linear analysis of composite laminated skew plates by the p-version of the finite element method. For the geometric non-linear analysis, the total Lagrangian formulation is adopted with moderately large displacement and small strain being accounted for in the sense of von Karman hypothesis. The present model is based on equivalent-single layer laminate theory with the first order shear deformation including a shear correction factor of 5/6. The integrals of Legendre polynomials are used for shape functions with p-level varying from 1 to 10. A wide variety of linear and non-linear results obtained by the p-version finite element model are presented for the laminated skew plates as well as laminated square plates. A numerical analysis is made to illustrate the influence of the geometric non-linear effect on the transverse deflections and the stresses with respect to width/depth ratio (a/h), skew angle (${\beta}$), and stacking sequence of layers. The present results are in good agreement with the results in literatures.