• 제목/요약/키워드: plastic foam

검색결과 85건 처리시간 0.022초

구조용 폼과 플라스틱 보강재를 적용한 모자 단면 부재의 좌굴 특성 분석 (Analysis of Buckling Characteristics for Hat Section Member Using Structural Foam and Plastic Reinforcement)

  • 이태현;신성기
    • 한국자동차공학회논문집
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    • 제16권2호
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    • pp.114-119
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    • 2008
  • The modern automotive industry develops innovative vehicle designs to meet increasing stability of car and performance demands of their customers. The improvement of frame rigidity by the structural foam is thought to be an effective means to improve the performance because of high applicability and minimum weight. The object of this paper is to examine the use of structural foam in a hat section as an optimum reinforcing means, to compare the reinforcing performance of structural foam versus a plastic reinforcement. The result of this paper indicated that reinforcing efficiencies are achieved by structural foam and plastic reinforcement shape.

Bending behavior of aluminum foam sandwich with 304 stainless steel face-sheet

  • Yan, Chang;Song, Xuding
    • Steel and Composite Structures
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    • 제25권3호
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    • pp.327-335
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    • 2017
  • To gain more knowledge of aluminum foam sandwich structure and promote the engineering application, aluminum foam sandwich consisting of 7050 matrix aluminum foam core and 304 stainless steel face-sheets was studied under three-point bending by WDW-T100 electronic universal tensile testing machine in this work. Results showed that when aluminum foam core was reinforced by 304 steel face-sheets, its load carrying capacity improved dramatically. The maximum load of AFS in three-point bending increased with the foam core density or face-sheet thickness monotonically. And also when foam core was reinforced by 304 steel panels, the energy absorption ability of foam came into play effectively. There was a clear plastic platform in the load-displacement curve of AFS in three-point bending. No crack of 304 steel happened in the present tests. Two collapse modes appeared, mode A comprised plastic hinge formation at the mid-span of the sandwich beam, with shear yielding of the core. Mode B consisted of plastic hinge formation both at mid-span and at the outer supports.

Local buckling behaviour of steel plate elements supported by a plastic foam material

  • Mahendran, M.;Jeevaharan, M.
    • Structural Engineering and Mechanics
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    • 제7권5호
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    • pp.433-445
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    • 1999
  • Sandwich panels comprising steel facings and a polystyrene foam core are increasingly used as roof and wall claddings in buildings in Australia. When they are subjected to loads causing bending and/or axial compression, the steel plate elements of their profiled facing are susceptible to local buckling. However, when compared to panels with no foam core, they demonstrate significantly improved local buckling behaviour because they are supported by foam. In order to quantify such improvements and to validate the use of available design buckling stress formulae, an investigation using finite element analyses and laboratory experiments was carried out on steel plates that are commonly used in Australia of varying yield stress and thickness supported by a polystyrene foam core. This paper presents the details of this investigation, the buckling results and their comparison with available design buckling formulae.

콘칼로리미터를 이용한 플라스틱 단열재의 화재특성 (Fire Characteristics of Plastic Insulating Materials from Cone Calorimeter Test)

  • 이근원;김관응
    • 한국화재소방학회논문지
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    • 제17권1호
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    • pp.76-84
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    • 2003
  • 본 연구는 산업현장에서 단열재로 .사용되고 있는 폴리스티렌 폼, 폴리우레탄 폼, 폴리에틸렌 폼과 같은 플라스틱 단열재의 화재특성을 구명하고자 하였다. 플라스틱 단열재의 화재특성은 ISO 5660에 따라 콘칼로리미터 시험을 수행하였다. 사용된 실험재료는 국내에서 생산되는 상업용 플라스틱 단열재를 사용하였고 그들의 조성은 제조자에 의해 밝혀지지 않았다. 연구 결과플라스틱 단열재의 열방출율은 재료의 밀도와 열플럭스의 증가에 따라 증가하였다. 플라스틱 단열재 중 폴리에틸렌 폼이 최대열방출율 및 평균열방출율이 가장 크게 나타났고, 열플럭스 및 밀도의 증가에 따른 최대열방출율의 증가율도 가장 큰 것으로 나타났다. 플라스틱 단열재에 의한 화재예방을 위해 제품의 종류 및 열플럭스의 크기에 따른 열방출 평가 기준을 제시하였다.

난연 및 전기전도성 폐PET/PE 복합 발포체의 제조 및 특성

  • 송종혁;강영구
    • 한국산업안전학회:학술대회논문집
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    • 한국안전학회 2001년도 공동학술대회
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    • pp.242-247
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    • 2001
  • Foam Plastics, cellular plastics, expanded plastics, plastic foam 등 여러 가지 이름으로 불리우고 있는 발포플라스틱은 plastic matrix 내에 무수한 cell이 open 형태 혹은 closed 형태로 존재하는 플라스틱 재료이며/sup 1)/ 원료플라스틱 보다 경량성, 열전도성, 충격흡수성 등 제반물성이 우수하여 포장재료, 보온재, 완충재 및 각종 구조재료로써 널리 사용되고 있으며 소재 plastic의 특성에 따라 PE, PP, PVC, PS, ABS 등 다양하게 개발되어 있다.(중략)

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Polystyrene Biodegradation Using Zophobas morio

  • 최인학;기예림;양수정;이서하;이의정;이준협;정태호
    • 한국환경과학회:학술대회논문집
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    • 한국환경과학회 2020년도 정기학술대회 발표논문집
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    • pp.208-208
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    • 2020
  • The aim of this study was to investigate changes in the weight of Zophobas morio larvae and mass of polystyrene foam when the larvae were fed polystyrene for 27 days. Fourier-transform infrared (FTIR) spectrometry was used to determine whether the polystyrene was broken down by the larvae. Forty Z. morio larvae (four replicates with 10 larvae per replicate) were reared in a chamber under controlled conditions with polystyrene foam blocks as their sole diet. The weight of the Z. morio larvae and mass of the polystyrene foam decreased as a function of time. The average weight of the larvae and mass of the polystyrene foam blocks decreased by 16.3 and 6.5%, respectively, over the 27-day period. The FTIR spectrum of Z. morio larvae fed with polystyrene foam did not reveal the unique peaks associated with polystyrene. In conclusion, this study suggests the possibility of using Z. morio larvae as a management technology for degrading waste plastics without a negative environmental effect. Key words : FTIR spectra, plastic biodegradation, polystyrene foam, Zophobas morio larvae.

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보로노이 셀을 이용한 2 원 비등방성 폼 구조 모델링 및 탄소성 압축변형 해석 (Modeling of the Elasto-plastic Deformation Behavior of Two-Dimensional Anisotropic Foam under Compressive Loads using Voronoi Cells)

  • 한원희;최병호;김일현;이정무
    • 한국정밀공학회지
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    • 제29권7호
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    • pp.785-792
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    • 2012
  • Foam structure is usually hard to model due to the complexity of the geometry of cells. So, many simplified models to represent complicated foam structures have been proposed, but most of them are not actually describe the random feature of the cell structure well. So, in this study, two dimensional isotropic and anisotropic closed cell structures of the foam were modeled using the concept of Voronoi cells. The elasto-plastic deformation behavior under compressive loads was investigated by finitie element analysis, and the results were compared with ideal honeycomb structure. In addition, the effect of anisotropy of Voronoi cell structures of the foam on Young's modulus and yield stress under compressive loads was studied.

Effects of face-sheet materials on the flexural behavior of aluminum foam sandwich

  • Xiao, Wei;Yan, Chang;Tian, Weibo;Tian, Weiping;Song, Xuding
    • Steel and Composite Structures
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    • 제29권3호
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    • pp.301-308
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    • 2018
  • Properties of AFS vary with the changes in the face-sheet materials. Hence, the performance of AFS can be optimized by selecting face-sheet materials. In this work, three types of face-sheet materials representing elastic-perfectly plastic, elastic-plastic strain hardening and purely elastic materials were employed to study their effects on the flexural behavior and failure mechanism of AFS systematically. Result showed face-sheet materials affected the failure mechanism and energy absorption ability of AFS significantly. When the foam cores were sandwiched by aluminum alloy 6061, the AFS failed by face-sheet yielding and crack without collapse of the foam core, there was no clear plastic platform in the Load-Displacement curve. When the foam cores were sandwiched by stainless steel 304 and carbon fiber fabric, there were no face-sheet crack and the sandwich structure failed by core shear and collapse, plastic platform appeared. Energy absorption abilities of steel and carbon fiber reinforced AFS were much higher than aluminum alloy reinforced one. Carbon fiber was suggested as the best choice for AFS for its light weight and high performance. The versus strength ratio of face sheet to core was suggested to be a significant value for AFS structure design which may determine the failure mechanism of a certain AFS structure.

초음파와 탄성 구조 모델을 이용한 캘빈 폼 재료의 탄성계수 평가 (Characterization of Elastic Modulus of Kelvin Foam Using Elastic Structural Model and Ultrasound)

  • 김우찬;김노유
    • 비파괴검사학회지
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    • 제36권6호
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    • pp.474-482
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    • 2016
  • 가벼운 다공성 구조재로서 널리 사용되는 캘빈 폼(foam) 재료의 탄성특성을 초음파를 이용하여 조사하였다. 캘빈 폼의 구조는 tetrakaidecahedron의 단위 셀(unit cell)이 규칙적으로 3차원 배열된 구조를 갖고 있는데 본 연구에서는 SoildWorks 프로그램에서 캘빈 단위 셀을 설계하고 ABS 플라스틱 재료를 이용하여 3차원 프린터로 제작한 후 초음파시험을 수행하였다. 캘빈 구조체는 기공이 많은 재료이기 때문에 초음파가 투과할 수 없어서 빈 공간을 모두 파라핀 왁스로 충진하여 초음파가 투과할 수 있도록 하였다. 파라핀을 충진한 캘빈 구조체는 초음파의 비행시간(TOF)을 이용하여 초음파 속도를 계산한 후, 이 복합 구조체에 대한 탄성 구조 모델을 기반으로 캘빈 구조체만의 탄성계수를 계산하였다. 측정된 캘빈 구조체의 탄성계수 값은 모재(ABS 플라스틱) 탄성계수의 약 3.4%가 되는 것으로 나타났는데 이 평가 결과는 선행된 연구 결과들에서 나타난 실험값이나 이론 해석 결과와 잘 일치하는 것을 확인할 수 있었다.