Influence of Tool Geometry and Machining Parameters on the Surface Quality and the Effect of Surface Quality on Compressive Strength of Carbon Fibre Reinforced Plastic

Author:

Haddad Madjid1,Zitoune Redouane2,Eyma Florent1,Castanié Bruno1

Affiliation:

1. Toulouse University

2. IUT-University of Paul Sabatier

Abstract

In this chapter the influence of tool geometry and cutting conditions on cutting forces, surface defects and the percetage of dust generated durring trimming and reaching the pulmonary alveoli is investigated. The surface defects were analysed using a scanning electron microscope and diferent surface roughness measurement devices. It was observed that these leters were highly depend on the cutting condition and the tool geometry, and more important that the effect of cutting parameters can be completely diferent from a tool to an other or even when considering different ranges of cutting parameters (standard cutting speed and high cutting speed). The compressive strenght after machining is also investigated. It is observed that whatever tool geometry, cutting conditions, surface roughnesses (defects) are, the response still the same for all the composite samples except for those machined at cutting temperatures higher than the glass fiber transition.

Publisher

Trans Tech Publications, Ltd.

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference28 articles.

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2. P. Guegan. (1994) Contribution à la qualification de l'usinage de matériaux composites à matrice organique, PHD thesis n° 2025. Génie Mécanique. E.C. Nantes.

3. P. Ghidossi, M. El Mansori and Fabrice Pierron. (2004) Edge machining effects on the failure of polymer matrix composite coupons, Composites: Part A. Vol. 35, p.989–999.

4. P. Ghidossi, M. El Mansori and Fabrice Pierron. (2005) Influence of specimen preparation by machining on the failure of polymer matrix off-axis tensile coupons,. Composites Science and Technology. Vol. 66 p.1857–1872.

5. J. P. Davim and P. Reis. (2005) Damage and dimensional precision on milling carbon fibre-reinforced plastics using design experiments,. Journal of Materials Processing Technology. Vol. 160, p.160–167.

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