Polymer Composites · 2021 · 19 citations · 24 references
Materials ScienceFiber ReinforcementFibre-reinforced PlasticEngineeringMechanical PropertiesBonding StrengthMechanical EngineeringPolymer ScienceLaser AblationComposite TechnologyContinuous FiberContinuous-fibre CompositeShort FiberPolymer CompositesThermoplastic CompositeEpoxy CompositesPolymer ChemistryFiber-reinforced Composite
Abstract Hybrid thermoset‐thermoplastic composites were fabricated by injection overmolding technique in this paper. To improve the interfacial bonding between short fiber reinforced polyamide 6 and continuous fiber reinforced epoxy composites, three different surface pretreatment methods (i.e., surface silanization, plasma treatment and CO 2 laser ablation) were employed. The results show that surface silanization leads to a weak increase in polar functional groups of thermoset composites surface, resulting in a weak increase in interfacial bonding strength of overmolded composites. Compared with plasma pretreatment, CO 2 laser ablation can achieve a highest shear bonding strength due to the formation of interface between injected melt polymer and carbon fibers. This kind of structure is favorable for the bonding strength due to mechanical interlocking. CO 2 laser ablation is a promising technology to improve the bonding strength between short fiber reinforced polyamide 6 and continuous fiber reinforced epoxy composites.
24
Processing of fibre reinforced thermoplastic composites
Uday Vaidya, Kapil Chawla · International Materials Reviews · 2008 · 314 citations
Irene Fernández Villegas, Lars Moser, Ali Yousefpour et al. · Journal of Thermoplastic Composite Materials · 2012 · 210 citations
Materials Science, Fibre-reinforced Plastic, Friction Welding +12
Yuyao Li, Shun Meng, Qianming Gong et al. · ACS Applied Materials & Interfaces · 2019 · 101 citations
Materials Science, Fibre-reinforced Plastic, Advanced Laser Processing +14