Effect of Alternating Hybridisation of Fibres on the Physico - Mechanical Behaviour of Composite Materials

Author:

Harb Noura1,Dilmi Hamid1,Bezzazi Boudjema1,Hamitouche Kahina1

Affiliation:

1. 1 Research Unit-Materials, Processes and Environment , M'Hammed Bougara University , FSI, Cité Frantz Fanon, 35000, Boumerdès , Algeria .

Abstract

Abstract The performance/weight ratio of fiber reinforced polymer matrix composites makes them the material of choice for structural applications in many fields such as aerospace, aeronautics, automotive and civil engineering...etc. In polymer matrix composites, the fibers used as reinforcement are mainly synthetic fibers such as carbon and/or glass fibers. To ensure the low cost of using fiber-reinforced materials in motor vehicles, it is proposed to selectively incorporate carbon fibers to enhance glass fiber composites along the roadway, and to enhance glass fiber composites along the main load path. For this purpose, we conducted a behavioral study of hybrid epoxy thermoset polymer matrix laminates to highlight the influence of alternate hybridization of glass and carbon fibers on the physical-mechanical behavior of the materials.The results obtained show that the alternated hybridation of the fibers has a significant influence on the tensile properties; and it affected the density, hardness and flexural properties significantly.

Publisher

Walter de Gruyter GmbH

Reference23 articles.

1. BERTHOLOT, J. M.: Composite materials,mechanical behavior and analysis of structures. 5th edition Lavoisier, Paris, 2012.

2. GAY, D.: Composite materials. Edition LAVOISIER, Paris, 2005.

3. Glossary of composite materials. Regional animation center for advanced materials, C.A.R.M.A. 2006.

4. HARRIS, B.: Fatigue in composites: sciences and technology of the fatigue respense of fiber reinforced plastics. Edition B. Harris, University of Bath, UK, 1983.

5. KAWAI, M. – MORISHITA, M. – FUZI, K. – SAKURAI, T.: Effect of matrix ductility and progressive damage on fatigue strength of unnotched and notched carbon fibre plain woven roving laminates. Compos Part A, 27, 1996, pp. 493–502.

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