In the present study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of a 30 W Q-Switched Yb:YAG fiber laser, is investigated with the aim to improve adhesive bonding. The process parameters pulse power, scanning speed, hatch distance and scanning strategy, were varied to the aim to study the influence of the process condition on the first top resin layer removal and fibre damage. The operating window was experimentally determined. The effectiveness of laser treatment was verified by single lap shear test.

Genna, S., Leone, C., Ucciardello, N., Giuliani, M. (2016). Laser treatment of carbon fibre reinforced thermoplastic matrix for adhesive bonding. In VIII INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS AND COMPOSITES: FROM AEROSPACE TO NANOTECHNOLOGY (pp.020073). Naples : American Institute of Physics Inc. [10.1063/1.4949648].

Laser treatment of carbon fibre reinforced thermoplastic matrix for adhesive bonding

GENNA, SILVIO;UCCIARDELLO, NADIA;
2016-01-01

Abstract

In the present study, laser surface treatment of CFRP made of PPS thermoplastic matrix by means of a 30 W Q-Switched Yb:YAG fiber laser, is investigated with the aim to improve adhesive bonding. The process parameters pulse power, scanning speed, hatch distance and scanning strategy, were varied to the aim to study the influence of the process condition on the first top resin layer removal and fibre damage. The operating window was experimentally determined. The effectiveness of laser treatment was verified by single lap shear test.
8th International Conference on Times of Polymers and Composites: From Aerospace to Nanotechnology
ita
2016
Rilevanza internazionale
2016
2016
Settore ING-IND/16 - TECNOLOGIE E SISTEMI DI LAVORAZIONE
English
Adhesion improving; CFRP; Fiber lasers; Laser surfaces treatment;
Intervento a convegno
Genna, S., Leone, C., Ucciardello, N., Giuliani, M. (2016). Laser treatment of carbon fibre reinforced thermoplastic matrix for adhesive bonding. In VIII INTERNATIONAL CONFERENCE ON TIMES OF POLYMERS AND COMPOSITES: FROM AEROSPACE TO NANOTECHNOLOGY (pp.020073). Naples : American Institute of Physics Inc. [10.1063/1.4949648].
Genna, S; Leone, C; Ucciardello, N; Giuliani, M
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/184221
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