TY - JOUR
T1 - Failure modes of CF-PEEK overmoulded onto unidirectionally reinforced CF-LM-PAEK
T2 - Multi-scale pull-off testing and microscopy investigation of rib stiffened geometries
AU - Parsons, Andrew
AU - Molinar-Díaz, Jesús
AU - Koptelov, Anatoly
AU - Darby, Will T W
AU - Hooshmand, Helia
AU - Hernandez Ledezma, Francisco
AU - Thomsen, Ole
AU - Belnoue, Jonathan P
AU - Harper, Lee
N1 - Publisher Copyright:
© 2025 The Authors
PY - 2025/10/1
Y1 - 2025/10/1
N2 - Overmoulding is a manufacturing technique used to create structural composite components with complex shapes, combining regions of continuous and short fibre reinforcement. It is possible to produce structural parts at high rates, whilst minimising materials costs. The interface between the regions of continuous and short fibre material is key to the performance of the structure. This work investigates pull-off testing as a direct method for measuring rib-on-plate bonding strength, a common structural feature of overmoulding. Different rib joint types (Butt, Radius, Step) and specimen sizes (1, 5, 20 mm) are used to investigate the fidelity of the test, when applied to unidirectionally-reinforced low melting point (LM)-PAEK bonded to PEEK ribs.The main findings are that the Butt joint appears to provide the most reliable pull-off test data in terms of determining the interface strength. While the Radius and Step configurations improve local strain and moulding consistency respectively, they tend to promote failure through the ply structure rather than the interface. Recommendations are made in relation to specimen length, ply structure and allowable deformation during manufacture.
AB - Overmoulding is a manufacturing technique used to create structural composite components with complex shapes, combining regions of continuous and short fibre reinforcement. It is possible to produce structural parts at high rates, whilst minimising materials costs. The interface between the regions of continuous and short fibre material is key to the performance of the structure. This work investigates pull-off testing as a direct method for measuring rib-on-plate bonding strength, a common structural feature of overmoulding. Different rib joint types (Butt, Radius, Step) and specimen sizes (1, 5, 20 mm) are used to investigate the fidelity of the test, when applied to unidirectionally-reinforced low melting point (LM)-PAEK bonded to PEEK ribs.The main findings are that the Butt joint appears to provide the most reliable pull-off test data in terms of determining the interface strength. While the Radius and Step configurations improve local strain and moulding consistency respectively, they tend to promote failure through the ply structure rather than the interface. Recommendations are made in relation to specimen length, ply structure and allowable deformation during manufacture.
KW - PEEK/PAEK
KW - Injection overmoulding
KW - Failure mode
KW - Pull-off test
KW - Micromechanics
KW - Interface
KW - Thermoplastic composites
U2 - 10.1016/j.compositesb.2025.112700
DO - 10.1016/j.compositesb.2025.112700
M3 - Article (Academic Journal)
SN - 1359-8368
VL - 305
JO - Composites Part B: Engineering
JF - Composites Part B: Engineering
M1 - 112700
ER -