International Journal of
Physical Sciences

  • Abbreviation: Int. J. Phys. Sci.
  • Language: English
  • ISSN: 1992-1950
  • DOI: 10.5897/IJPS
  • Start Year: 2006
  • Published Articles: 2572

Full Length Research Paper

Sandwich panels from cork and polyester in presence of epoxy resin as interfacial adhesive

C. Belkacemi*
  • C. Belkacemi*
  • Research Unit Materials, Processes and Environment (URMPE) quoted Frantz Fanon, 35000 Boumerdes, Algeria.
  • Google Scholar
B. Bezzazi
  • B. Bezzazi
  • Research Unit Materials, Processes and Environment (URMPE) quoted Frantz Fanon, 35000 Boumerdes, Algeria.
  • Google Scholar


  •  Received: 25 July 2016
  •  Accepted: 11 November 2016
  •  Published: 30 December 2016

References

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Belkacemi C, Bezzazi B (2014). Quasi-static mechanical characterization and fatigue of a composite laminates. Adv. Appl. Sci. Res. 5(3):328-335.

 

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Gameiro CP, Cirne J, Gary G (2007). Experimental study of the quasi-static and dynamic behaviour of cork under compressive loading. J. Mater. Sci. 42:4316-4324.
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Gibson LJ, Easterling KE, Ashby MF (1981). The structure and mechanics of cork. Proc. R. Soc. London A 377:99-117.
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Gil L (2009) Cork composites: a review. Materials 2:776-789.
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Kim S, Wallace D (2010). Designing and testing of cork composite core material. In: Ravichandran G, editor. 9th International conference on Sandwich Structures 2010.

 

Mano JF (2007). Creep-recovery behaviour of cork. Mater. Lett. 61:2473-2477.
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Mir A, Bezzazi B (2011). Caractérisation mécanique d'un panneau sandwich à âme en liège et peaux jute/époxy. Comptes Rendus des JNC 17 - Poitiers 2011.

 

Moreira RAS, de Melo FJQ, Rodrigues JFD (2010). Static and dynamic characterization of composition cork for sandwich beam cores. J. Mater. Sci. 45:3350-3366.
Crossref

 

NF T54-606 Norme (1987). structures sandwiches à base de plastiques. Essai de flexion.

View

 

Pereira H (2007). Cork: biology, production and uses. Amsterdam: Elsevier; 2007.

 

Pereira H, Rosa ME, Fortes MA (1987). The cellular structure of cork from Quercus suber L. Iawa Bull. 8(3):213-218.
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Reis L, Silva A (2009). Mechanical behavior of sandwich structures using natural cork agglomerates as core materials. J. Sandwich Struct. Mater. 11(6):487-500.
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Silva JM, Devezas T, Silva A, Gil L, Nunes C, Franco N (2010). Exploring the use of cork based composites for aerospace applications. Mater. Sci. Forum 636-637:260-265.
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Sousa-Martins J, Kakogiannis D, Coghe F, Reymen B, Teixeira-Dias F (2013). Behaviour of sandwich structures with cork compound cores subjected to blast waves. Eng. Struct. 46:140-146.
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Steeves CA, Fleck NA (2004). Material selection in sandwich beam construction. Scr. Mater. 50:1335-1339.
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Tadeu A, Santos P (2003). Assessing the effect of a barrier between two rooms subjected to low frequency sound using the boundary element method. Appl. Acoustics 64(3):287-310.
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Vinson JR (1999). The behaviour of sandwich structures of isotropic and composite materials. Lancaster: Technomic Publishing Co. Inc. 1999.

 

Zenkert D (1997). The handbook of sandwich construction. North European engineering and science conference series. Cradley Heath: EMAS Publishing P 442.