• 제목/요약/키워드: Sandwich panel structure

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샌드위치패널 건축물 플래시오버 지연을 위한 화재확산방지플레이트 시공방법 연구 (A Study on Flash Over Delay Effects on Applied Plate-Fire Spread Prevention Method at Sandwich Panels Structure)

  • 김도현;조남욱
    • 한국화재소방학회논문지
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    • 제31권3호
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    • pp.79-87
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    • 2017
  • 샌드위치패널은 양면이 철판이며 단열재로 접착된 특징을 갖는 건축자재로서 시공의 간편성, 자재비용의 경제성 등의 장점으로 공장 및 창고 구조물 등에 사용되고 있다. 그러나 샌드위치패널의 연속적 결합으로 시공되는 패널구조물은 패널과 패널이 연결되는 조인트 부위가 발생하게 된다 조인트부위는 화재시 철판의 용융과 변형으로 화염이 쉽게 유입되며 화재에 취약한 부위이다. 패널 내에 유입된 화염은 급속한 연소로 인해 화재확산을 유발하며 인명 및 재산피해를 발생시킨다. 본 연구에서는 샌드위치패널의 화재확산을 방지하기 위한 화재확산방지플레이트를 개발하였다. 이는 기존 선행연구에서 4면의 패널 접합면을 화재확산방지 재료로 시공하는 방법에서 접합면에 개발 플레이트를 끼우는 방식으로 시공이 용이하게 개선된 것으로서 패널과 패널이 결합되는 연결부에 자립하여 적용 가능하며 화염의 유입 및 화재확산을 방지하도록 고안하였다. 샌드위치패널 시험체에 대해 KS F ISO 13784-1 시험방법의 실물화재시험을 수행하였으며, 패널 연결부에 화재확산방지플레이트의 적용 유무에 따른 연소거동을 파악하고 그 효과를 측정하였다. 시험결과 패널 연결부에 화재확산방지플레이트를 삽입하는 것은 플래시오버의 지연, 시험체의 붕괴방지, 개구부의 온도상승을 지연시키는 것으로 측정되었으며, 효과적으로 패널구조물이 화재안전성을 확보할 수 있는 방안으로 확인되었다. 화재에 취약한 패널 연결부에 시공성과 경제성이 확보된 다양한 방식의 화재확산방지용 시공방법을 적용하는 것은 구조물의 화재안전성을 확보하는데 기여할 것으로 판단된다.

Nonlinear finite element solutions of thermoelastic flexural strength and stress values of temperature dependent graded CNT-reinforced sandwich shallow shell structure

  • Mehar, Kulmani;Panda, Subrata K.
    • Structural Engineering and Mechanics
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    • 제67권6호
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    • pp.565-578
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    • 2018
  • This research article reported the nonlinear finite solutions of the nonlinear flexural strength and stress behaviour of nano sandwich graded structural shell panel under the combined thermomechanical loading. The nanotube sandwich structural model is derived mathematically using the higher-order displacement polynomial including the full geometrical nonlinear strain-displacement equations via Green-Lagrange relations. The face sheets of the sandwich panel are assumed to be carbon nanotube-reinforced polymer composite with temperature dependent material properties. Additionally, the numerical model included different types of nanotube distribution patterns for the sandwich face sheets for the sake of variable strength. The required equilibrium equation of the graded carbon nanotube sandwich structural panel is derived by minimizing the total potential energy expression. The energy expression is further solved to obtain the deflection values (linear and nonlinear) via the direct iterative method in conjunction with finite element steps. A computer code is prepared (MATLAB environment) based on the current higher-order nonlinear model for the numerical analysis purpose. The stability of the numerical solution and the validity are verified by comparing the published deflection and stress values. Finally, the nonlinear model is utilized to explore the deflection and the stresses of the nanotube-reinforced (volume fraction and distribution patterns of carbon nanotube) sandwich structure (different core to face thickness ratios) for the variable type of structural parameter (thickness ratio, aspect ratio, geometrical configurations, constraints at the edges and curvature ratio) and unlike temperature loading.

Analysis of Mechanical Characteristics of Polymer Sandwich Panels Containing Injection Molded and 3D Printed Pyramidal Kagome Cores

  • Yang, K.M.;Park, J.H.;Choi, T.G.;Hwang, J.S.;Yang, D.Y.;Lyu, M.-Y.
    • Elastomers and Composites
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    • 제51권4호
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    • pp.275-279
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    • 2016
  • Additive manufacturing or 3D printing is a new manufacturing process and its application is getting growth. However, the product qualities such as mechanical strength, dimensional accuracy, and surface quality are low compared with conventional manufacturing process such as molding and machining. In this study not only mechanical characteristics of polymer sandwich panel having three dimensional core layer but also mechanical characteristics of core layer itself were analyzed. The shape of three dimensional core layer was pyramidal kagome structure. This core layer was fabricated by two different methods, injection molding with PP resin and material jetting type 3D printing with acrylic photo curable resin. The material for face sheets in the polymer sandwich panel was PP. Maximum load, stiffness, and elongation at break were examined for core layers fabricated by two different methods and also assembled polymer sandwich panels. 3D printed core showed brittle behavior, but the brittleness decreased in polymer sandwich panel containing 3D printed core. The availability of 3D printed article for the three dimensional core layer of polymer sandwich panel was verified.

도로구조물 경량화를 위한 복합재료 샌드위치 패널에 관한 연구 (The Advanced Composite Sandwich Panels for Light Weight of Road Structures)

  • 한봉구
    • 한국도로학회논문집
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    • 제16권3호
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    • pp.1-8
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    • 2014
  • PURPOSES : The purpose of this paper is to demonstrate to the practicing engineers, how to apply the advanced composite materials theory to the road structures. For general construction material used, there is certain theoretical limit in sizes. For super road structure construction, the reduction in panel weight is the first step to take in order to break such size limits. METHODS : For a typical road structures panel, both concrete and advanced composite sandwich panels are considered. The concrete panel is treated as a special orthotropic plate. RESULTS : All types of advanced composite sandwich panels are considered as a self-weights less than one tenth of that of concrete panel. The concrete panel is treated as a special orthotropic plate to obtain more accurate result. CONCLUSIONS : Advanced composite sandwich panels are considered as a self-weights less than one tenth (10%) of that of concrete panel, with deflections less than that of the concrete panel. This conclusion gives good guide line for design of the light weight of road structures.

Probabilistic assessment on buckling behavior of sandwich panel: - A radial basis function approach

  • Kumar, R.R.;Pandey, K.M.;Dey, S.
    • Structural Engineering and Mechanics
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    • 제71권2호
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    • pp.197-210
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    • 2019
  • Probabilistic buckling behavior of sandwich panel considering random system parameters using a radial basis function (RBF) approach is presented in this paper. The random system properties result in an uncertain response of the sandwich structure. The buckling load of laminated sandwich panel is obtained by employing higher-order-zigzag theory (HOZT) coupled with RBF and probabilistic finite element (FE) model. The in-plane displacement variation of core as well as facesheet is considered to be cubic while transverse displacement is considered to be quadratic within the core and constant in the facesheets. Individual and combined stochasticity in all elemental input parameters (like facesheets thickness, ply-orientation angle, core thickness and properties of material) are considered to know the effect of different degree of stochasticity, ply- orientation angle, boundary conditions, core thickness, number of laminates, and material properties on global response of the structure. In order to achieve the computational efficiency, RBF model is employed as a surrogate to the original finite element model. The stiffness matrix of global response is stored in a single array using skyline technique and simultaneous iteration technique is used to solve the stochastic buckling equations.

Higher order static analysis of truncated conical sandwich panels with flexible cores

  • Fard, Keramat Malekzadeh
    • Steel and Composite Structures
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    • 제19권6호
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    • pp.1333-1354
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    • 2015
  • A higher order analytical solution for static analysis of a truncated conical composite sandwich panel subjected to different loading conditions was presented in this paper which was based on a new improved higher order sandwich panel theory. Bending analysis of sandwich structures with flexible cores subjected to concentrated load, uniform distributed load on a patch, harmonic and uniform distributed loads on the top and/or bottom face sheet of the sandwich structure was also investigated. For the first time, bending analysis of truncated conical composite sandwich panels with flexible cores was performed. The governing equations were derived by principle of minimum potential energy. The first order shear deformation theory was used for the composite face sheets and for the core while assuming a polynomial description of the displacement fields. Also, the in-plane hoop stresses of the core were considered. In order to assure accuracy of the present formulations, convergence of the results was examined. Effects of types of boundary conditions, types of applied loads, conical angles and fiber angles on bending analysis of truncated conical composite sandwich panels were studied. As, there is no research on higher order bending analysis of conical sandwich panels with flexible cores, the results were validated by ABAQUS FE code. The present approach can be linked with the standard optimization programs and it can be used in the iteration process of the structural optimization. The proposed approach facilitates investigation of the effect of physical and geometrical parameters on the bending response of sandwich composite structures.

항공기 적용 샌드위치 복합재 구조의 충격 손상 거동 연구 (Study on Impact Damage Behavior of Sandwich Composite Structure for aircraft)

  • 박현범;공창덕
    • Composites Research
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    • 제26권1호
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    • pp.36-41
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    • 2013
  • 본 연구에서는 복합재 샌드위치 적층판의 저속 충격 해석을 수행하였다. 샌드위치 구조 형상의 스킨은 탄소/에폭시(Carbon-Epoxy) 재질이 채택되었고 코어(Core)의 재질은 폼(Foam)이 적용되었다. 연구의 타당성을 입증하기 위해 관련 문헌에서의 연구 결과에서 제시한 실험 결과와 유한 요소 해석 결과의 비교가 선행되었다. 타당성 검증을 바탕으로 본 연구에서 손상이 시작되는 충격체의 속도를 평가하고, 예측된 충격 속도에서 충격 거동을 분석하기위해 유한요소법을 이용하여 충격 해석을 수행하였다. 샌드위치 복합재 적층판의 충격 해석 결과 예측된 충격 속도에서 손상이 발생함을 확인하였다. 최종 시편 시험 결과와 수치 해석 결과의 비교 값이 잘 일치함을 확인하였다.

복합재 샌드위치 패널 발사관의 폭발충격 영향도 분석 (The Effect of Pyro Shock on Canister with Composite Sandwich Panel)

  • 최원홍
    • 한국소음진동공학회논문집
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    • 제26권6_spc호
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    • pp.667-673
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    • 2016
  • Canister with composite sandwich panel has been suggested owing to its higher stiffness and strength over a weight for square shaped canisters. The pyro shock induced by a short time explosion inside a canister is generally considered to be the most severe source of load affecting on the entire structure. Therefore, in this study, the approach and modeling method to identify the effect of pyro shock on canister with composite sandwich panel in a numerical way were mainly discussed. Moreover, the verification was implemented through comparison with test results.

다층 구조 폼 코아 샌드위치 복합재의 기계적 거동 연구 (Mechanical behaviors of multi-layered foam core sandwich composite)

  • 오진오;윤성호
    • 한국정밀공학회:학술대회논문집
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    • 한국정밀공학회 2006년도 춘계학술대회 논문집
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    • pp.381-382
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    • 2006
  • The mechanical behaviors of multi-layered foam core sandwich composite were investigated through a 3-point bending test. The sandwich specimens were obtained from sandwich panel consisting of aluminum faces and urethane foam core. Three types of sandwich specimens such as a single structure, a double structure and a triple structure were considered. The span of sandwich specimens were varied from 170mm to 350mm. According to the results, the flexural and shear properties of multi-layered sandwich composite were found to be higher than those of single-layered sandwich composite.

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터보팬 엔진 나셀용 샌드위치 복합재 구조물의 손상 거동 연구 (Study on Impact Damage Behavior of Turbo Fan Engine Nacelle Sandwich Composite Structure)

  • 공창덕;박현범;이승현
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2007년도 제28회 춘계학술대회논문집
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    • pp.75-78
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    • 2007
  • 본 연구에서는 터보 팬 엔진 나셀 복합재 구조의 충격 손상에 관한 연구를 수행하였다. 연구 결과의 신뢰성 검증을 위해 선행 연구된 결과와 비교 분석하였다. 샌드위치 구조의 형상은 카본/에폭시 면재와 폼 코어로 형성되어있다. 샌드위치 패널의 유한 요소 해석 결과 해석 결과의 타당성을 확인하였다. 초기 손상이 발생하는 속도가 평가되었고 예측된 속도에서 충격 해석이 수행되었다. 충격 해석 결과 예측된 충격 손상에서 손상이 발생하는 것으로 확인되었다.

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