Improvement of the Interfacial Adhesion Between Fiber and Matrix

Author:

Abdelhak Benaoum1,Noureddine Mahmoudi2,Hacen Mahmoudi3

Affiliation:

1. Laboratoire Génie Industriel et Développement Durable

2. Centre Universitaire Relizane , Relizane , Algérie

3. Universite Hassiba ben bouali Chlef , Algeria

Abstract

Abstract In this work, the influence of carbon fiber surface treatment on mechanical properties of unsaturated polyester was investigated. Two approaches have been used in the surface treatment; the first is the desizing of the carbon fiber by the release of the epoxy layer. The second is with the release of epoxy layer and etching the fibers. It was concluded that both methods give good results on adhesion between the matrix and the fibers. It is found that the treatment of carbon fibers is efficient and greatly improves the CFRP handress. The tensile strength of composite materials increases by 30% for etched carbon fibers compared to untreated carbon fibers.SEM images confirm the results obtained.

Publisher

Walter de Gruyter GmbH

Subject

General Medicine

Reference25 articles.

1. Jing Zhang: Different surface treatments of carbon fibers and their influence on the interfacial properties of carbon fiber/epoxy composites, Materials. Ecole Centrale Paris, Ph.D. Thesis, 2012.

2. Miller, T.C., Chajes, M.J., Mertz, D.R., Hastings, J.N.: Strengthening of a steel bridge girder using CFRP plates, J. Bridge Eng., 6(6), 514–522, 2001.

3. Donghwan, C. and Suk, H. Y: Effects of fiber surface treatment and sizing on the dynamic mechanical and interfacial properties of carbon/nylon 6 composite, Carbon Science, 5(1), 1–5, 2004.

4. West, T.D.: Enhancement to the bond between advanced composite materials and steel for bridge rehabilitation (CCM report 2001–04), Newark: DE, USA, University of Delaware Center Composite Materials, University of Delaware, 226, 2001.

5. Dobreva, D., Nenkova, S. and Vasileva, St.: Investigation of the microstructure of polypropylene composites filled with wood flour modified with monochloroacetic acid, NATO Science Ser. II, 223, 177–180, 2005.

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