• 제목/요약/키워드: Stacking Design

검색결과 323건 처리시간 0.026초

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.

축류 압축기 설계 및 성능/유동 해석 프로그램 개발 (Development of Axial Compressor Design and Performance/Flow Analysis Program)

  • 윤성호;이광렬;박준영;박태진;최민석;백제현
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집B
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    • pp.658-663
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    • 2001
  • In this study, the axial-compressor design and performance/flow analysis program is developed. A mean-line analysis was used to determine optimum arrangement of overall geometry and its off-design performance is predicted by stage-stacking method. Three dimensional blade shape is generated using radial equilibrium equation and vortex methods. Various blade shape is generated and their performance is compared. Finally the quasi-three dimensional flow analysis is applied to investigate the detailed flow phenomena.

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구간 조합 복합재료 판의 충격 특성에 미치는 겹침부 설계에 관한 연구 (Effect of Overlap Design on the Impact Characteristics of Piecewise Integrated Composite Plates)

  • 황희윤
    • Composites Research
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    • 제36권1호
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    • pp.25-31
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    • 2023
  • 복합재료 구조는 필요한 기계적 성능을 충족하기 위해 서로 다른 적층 각도로 적층하여 설계되었다. 외부 하중을 받는 복합재료 구조물에 대한 발생하는 응력은 위치에 따라 다르지만, 최대 응력을 바탕으로 적층 순서를 결정하는데, 이는 효율적이지 않으며 일반적으로 최적의 설계가 아니다. 최근 이러한 비효율성을 해결하기 위해 구간 조합 복합재료(PIC)가 제안되었다. PIC는 인접한 조각들 사이의 완벽한 결합을 가정하지만, 이것은 매우 이상적이고 달성하기 어렵다. 따라서 경계에서의 중첩은 서로 분리되지 않도록 하기 위해 필수적이다. 본 연구에서는 중첩 설계가 PIC 플레이트의 충격 파손 모드에 미치는 영향을 조사하였다. 속경화 탄소섬유 프리프레그를 이용하여 서로 다른 겹침부 형상 및 절개선 간격을 가지는 시험편을 제작하였으며, ASTM D 7136에 따라 충격시험을 수행하였다. 복합재료 적층판의 충격 파손 형태는 겹침부 설계에 따라 서로 다른 양상을 가졌으며, 이로 인해 충격흡수에너지 및 충격하중곡선의 경향에도 영향을 주었음을 알 수 있었다.

적층각도에 따른 CFRP 평판에서의 굽힘으로 발생한 크랙 파손에 관한 해석적 연구 (Analysis Study on the Damage of Crack Happening with the Bending at CFRP Plate due to Stacking Angle)

  • 황규완;조재웅
    • 한국융합학회논문지
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    • 제8권3호
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    • pp.185-190
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    • 2017
  • 본 논문은 탄소섬유로 구성된 평판형태의 시험편에 굽힘 모멘트가 작용할 때 내부의 섬유구조에서 발생되는 굽힘 응력과 전단응력, 변형에너지에 관한 것이다. CFRP는 무수히 많은 섬유가 다축구조를 형성하고 있어 굽힘조건에서 응력을 효과적으로 분산할 수 있다. 이때 적층각도에 따라 다양한 물성을 보이게 되는데, 섬유의 수평방향인 Stacking angle $0^{\circ}$에서부터 수직방향인 $90^{\circ}$에 이르기까지의 결과에 있어, Stacking angle이 증가함에 따라 등가 응력과 전단응력이 점차 줄어들며 $60^{\circ}$를 기점으로 다시 증가함을 보이고 있다. 본 연구결과를 토대로,적층각도에 따른 평판에서의 굽힘으로 인한 파손특성을 해석적 접근을 통해 고찰하였으며, 본연구는 파손방지와 내구성 향상을 위한 안전설계에 기여할 수 있다고 사료된다. 또한 평판 형상으로서의 디자인적 요소를 융합기술에 접목함으로서 그 미적인 감각을 나타낼 수 있다.

피라미드 형태의 적재장 최적 설계 (Designing Stacking Facilities of Pyramid Type)

  • 박퇴경;김갑환
    • 대한산업공학회지
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    • 제33권2호
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    • pp.227-236
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    • 2007
  • This paper proposes a method for designing stacking warehouses of pyramid type which can be found in storage rooms for steel coils, paper rolls, and drums for oils. Formulas were derived for estimating the expected travel time of cranes and the expected time for rehandling activities. Based on the derived formulas, this study derives the cost function for determining the optimal numbers of rows, bays, tiers of stacks under the condition that the requirement for storage space is satisfied. Numerical examples were given.

합성곱 신경망 기반의 딥러닝을 이용한 섬유 강화 복합재료의 적층 각도 예측 (Prediction of Stacking Angles of Fiber-reinforced Composite Materials Using Deep Learning Based on Convolutional Neural Networks)

  • 홍현수;김원기;전도윤;이관호;김성수
    • Composites Research
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    • 제36권1호
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    • pp.48-52
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    • 2023
  • 섬유 강화 복합재료는 방향성을 가지고 있기 때문에 적층 순서에 따라서 구조물의 기계적인 특성은 매우 달라질 수 있다. 따라서, 상황과 용도에 따른 복합재료 구조물의 적층 설계는 필수적이다. 그러나 제작된 복합재료 구조물의 적층 각도는 제작 환경이나 구조물 형상에 따라 설계 값과 편차를 가지는 경우가 많으며, 이는 구조적 성능에 영향을 끼칠 수 있다. 따라서 구조물의 신뢰성 확보를 위해서는 적층 설계 뿐만 아니라 제작된 복합재료의 적층각에 대한 분석 또한 매우 중요하다. 본 연구에서는 합성곱 신경망(Convolutional neural network; CNN) 기반의 딥러닝(Deep learning)을 이용하여 섬유 강화 복합재료의 실제 단면 이미지로부터 적층 각도를 예측하였다. 여러 적층 각도를 가지는 탄소 섬유 강화 복합재료 시편을 제작하고, 광학 현미경을 이용하여 Micro-scale로 실제 단면을 촬영하였다. 다양한 적층 각도에 따른 복합재료 시편의 단면 이미지 데이터를 이용하여 합성곱 신경망 기반의 딥러닝 모델에 대하여 학습을 수행하였다. 그 결과 높은 정확도로 실제 섬유 강화 복합재료 단면 이미지로부터 적층 각도를 예측할 수 있었다.

Optimization of scarf patch stacking sequences using the design of experiments method

  • Salma Aminallah;Sidi Mohamed Fekih;Abdelrahmen Sahli
    • Advances in aircraft and spacecraft science
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    • 제10권4호
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    • pp.335-346
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    • 2023
  • In this study, The Von Mises stresses in composite plate loaded in tension and repaired by a boron/epoxy scarf patch were analyzed using the finite element method. The performance of the repairs depends on several parameters: the dimensions and the intrinsic properties of the patch and the adhesive which are dependent on each other. Therefore, the method of experiment designs is used to determine the interaction effect of different parameters (patch folds), their optimum and the most influential parameter. The optimum of stacking sequences allows reducing stresses significantly, and thus permits designers to improve the quality of repairs.

대형 풍력 발전용 필라멘트 와인딩 복합재 타워의 고유 진동수 해석에 관한 연구 (Modal Analysis of Filament-wound Composite Towers for Large Scale Wind-Turbine)

  • 홍철현
    • 한국해양공학회지
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    • 제25권2호
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    • pp.73-78
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    • 2011
  • The purpose of this study was to investigate the natural frequency of filament-wound composite towers for large scale wind-turbines using the finite element method (FEM). To define the material properties, we used both the effective property method and the stacking properties method. The effective properties method assumes that a composite consists of one ply. The stacking properties method assumes that a composite consists of several stacked plies. First, a modal analysis of the tower, filament-wound with angles of $[{\pm}30]$, was carried out using the two methods for composite material properties, the stacking method and effective method. Then, an FE analysis was performed for composite towers using filament winding angles of $[{\pm}30]$, $[{\pm}45]$, and $[{\pm}60]$. The FE analysis results using the stacking properties of the composite were in good agreement with the results from the effective properties method. The difference between the FEM and material properties methods was approximately 0~0.6%

Novel Bumping and Underfill Technologies for 3D IC Integration

  • Sung, Ki-Jun;Choi, Kwang-Seong;Bae, Hyun-Cheol;Kwon, Yong-Hwan;Eom, Yong-Sung
    • ETRI Journal
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    • 제34권5호
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    • pp.706-712
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    • 2012
  • In previous work, novel maskless bumping and no-flow underfill technologies for three-dimensional (3D) integrated circuit (IC) integration were developed. The bumping material, solder bump maker (SBM) composed of resin and solder powder, is designed to form low-volume solder bumps on a through silicon via (TSV) chip for the 3D IC integration through the conventional reflow process. To obtain the optimized volume of solder bumps using the SBM, the effect of the volumetric mixing ratio of resin and solder powder is studied in this paper. A no-flow underfill material named "fluxing underfill" is proposed for a simplified stacking process for the 3D IC integration. It can remove the oxide layer on solder bumps like flux and play a role of an underfill after the stacking process. The bumping process and the stacking process using the SBM and the fluxing underfill, respectively, for the TSV chips are carefully designed so that two-tier stacked TSV chips are sucessfully stacked.

NSGA-II 를 통한 송풍기 블레이드의 다중목적함수 최적화 (Multi-Objective Optimization of a Fan Blade Using NSGA-II)

  • 이기상;김광용;압두스사마드
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회B
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    • pp.2690-2695
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    • 2007
  • This work presents numerical optimization for design of a blade stacking line of a low speed axial flow fan with a fast and elitist Non-Dominated Sorting of Genetic Algorithm (NSGA-II) of multi-objective optimization using three-dimensional Navier-Stokes analysis. Reynolds-averaged Navier-Stokes (RANS) equations with ${\kappa}-{\varepsilon}$ turbulence model are discretized with finite volume approximations and solved on unstructured grids. Regression analysis is performed to get second order polynomial response which is used to generate Pareto optimal front with help of NSGA-II and local search strategy with weighted sum approach to refine the result obtained by NSGA-II to get better Pareto optimal front. Four geometric variables related to spanwise distributions of sweep and lean of blade stacking line are chosen as design variables to find higher performed fan blade. The performance is measured in terms of the objectives; total efficiency, total pressure and torque. Hence the motive of the optimization is to enhance total efficiency and total pressure and to reduce torque.

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