Clancy_2018_steering.pdf (2.85 MB)
Steering of carbon fiber/thermoplastic pre-preg tapes using laser-assisted tape placement
conference contribution
posted on 2022-12-02, 15:58 authored by GEAROID CLANCY, Daniël Peeters, Vincenzo OliveriVincenzo Oliveri, RONAN O'HIGGINSRONAN O'HIGGINS, DAVID JONESDAVID JONES, PAUL WEAVERPAUL WEAVERThe weight saving benefits of fiber-reinforced composite materials in structural applications
are well established. However, there is an increasing requirement to develop processing
techniques that can produce highly repeatable and accurate components more efficiently than
using autoclave processing; Laser-assisted Automated Tape Placement (LATP) in-situ
consolidation of thermoplastic composites has significant potential to fulfil this requirement.
In addition, LATP can process layers with Variable Angle Tow (VAT), an advanced tailoring
option that allows modification of load paths within the laminate to result in more favorable
stress distributions and improved laminate performance. Studies of VAT laminate
manufacture using dry fiber placement and thermoset pre-preg tape placement have been
previously reported. This work examines the ability to produce VAT laminates from carbon
fiber/PEEK pre-preg tapes using LATP. A VAT laminate was successfully manufactured
which had three steering radii of 800 mm, 600 mm and 400 mm with little defects.
Characterization and mechanical testing were completed on steered samples to examine the
effect of lay-down speed and radius on bond strength of steered tapes. Measurements showed
that the width and thickness of the carbon fiber/PEEK tapes were changed during steering.
Mechanical testing showed that bond strength was a function of lay-down speed, yet the effect
of steering radius was inconclusive due to undesired failures.
History
Publication
2018 AIAA/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference, AIAA SciTech Forum;(AIAA 2018-0478)Publisher
American Institute of Aeronautics and Astronautics: AIAANote
peer-reviewedOther Funding information
SFILanguage
EnglishAlso affiliated with
- Bernal Institute
External identifier
Department or School
- School of Engineering