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Study by Genetic Algorithm of the Role of Alfa Natural Fibre in Enhancing the Mechanical Properties of Composite Materials Based on Epoxy Matrix

Research and development

Authors:

  • Ziani N.
    Department of Materials Technology, Faculty of Physics, U.S.T.O BP, Oran, Algeria
  • Boudali A.
    Laboratoire des Etudes Physico-Chimiques, Université de Saïda, Saida, Algeria
  • Mokaddem Allel
    Department of Materials and Components, Faculty of Physics, U.S.T.H.B, Algiers, Algeria
  • Doumi B.
    Department of Physics, Faculty of Science, Dr. Tahar Moulay University of Saïda, Saida, Algeria
  • Beldjoudi N.
    Department of Materials and Components, Faculty of Physics, U.S.T.H.B, Algiers, Algeria
  • Boudali A.
    Department of Materials Technology, Faculty of Physics, U.S.T.O BP, Oran, Algeria

Nr DOI: 10.5604/12303666.1196613

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Abstract:

Natural fibres have a very important role in improving the mechanical properties of composite materials. Our objective in this study was to use alfa natural fibre in a composite material based essentially on epoxy matrix and calculate the interface fibre-matrix damage of carbon-epoxy, glass-epoxy and alfa-epoxy. Each sample was reinforced with the same volume fraction before being subjected to various mechanical tests. The results found by genetic simulation showed that the level of damage to the alfa-epoxy material was lower compared to other composite materials studied. We can say that alfa natural fibre has a high resistance to the mechanical stress applied; but the question remains whether the new material has the same resistance to thermal stress.

Tags:

damage, interface, alfa, fibre, matrix, genetic algorithm.

Citation:

Ziani N, Boudali A, Mokaddem A, Doumi B, Beldjoudi N. Boutaous A. Study by Genetic Algorithm of the Role of Alfa Natural Fibre in Enhancing the Mechanical Properties of Composites Materials Based on Epoxy Matrix FIBRES & TEXTILES in Eastern Europe 2016; 24, 3(117): 58-62. DOI: 10.5604/12303666.1196613

Published in issue no 3 (117) / 2016, pages 58–62.

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