An Efficient Thermoplastic Composite (TpC) Manufacture for High-Performance Parts: Comparison of Three Liquid Composite Moulding Processes
[EN] Although light and performing, common thermosetting-matrix composite material cannot be recycled. Designing thermoplastic-infusion equipment is thus a technological as well as an ecological achievement. The context of the fuel-efficiency competition Eco-Marathon sponsored by Shell is perfectly...
Gespeichert in:
Hauptverfasser: | , , , |
---|---|
Format: | Artikel |
Sprache: | eng |
Schlagworte: | |
Online-Zugang: | Volltext bestellen |
Tags: |
Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
|
Zusammenfassung: | [EN] Although light and performing, common thermosetting-matrix composite material
cannot be recycled. Designing thermoplastic-infusion equipment is thus a technological as well as
an ecological achievement. The context of the fuel-efficiency competition Eco-Marathon sponsored
by Shell is perfectly suited for such an innovation.
Our team is designing a process based on injecting thermoplastic monomer with initiator and
activator letting the polymerization occur within the mold and thus avoiding the high viscosity of
liquid thermoplastic [1]-[2].
Choosing the adequate process to produce a high performance composite part is essential. In this
paper are compared three LCM processes, the classic Resin Transfer Molding (RTM), the Vacuum
Assisted Resin Infusion (VARI) and Seeman¿s Composite Resin Infusion Molding Process
(SCRIMP) using the example of the Shell Eco-Marathon vehicle¿s body.
Our parameters of comparison are the quality of the produced part (void content) and the
production time. The main issue in composite part quality is the formation of porosity. This
entrapment is linked to the fiber tow impregnation and thus to the different liquid velocities within
and between these fiber tows. The tow impregnation was taken in account by using an empirical
model of evolution of the permeability: the more saturated the tow, the lower the permeability.
Molle, G.; García Manrique, JA.; Masquelier, I.; Andrés De La Esperanza, FJ. (2011). An Efficient Thermoplastic Composite (TpC) Manufacture for High-Performance Parts: Comparison of Three Liquid Composite Moulding Processes. International Review of Chemical Engineering (IRECHE). 3(1):128-133. http://hdl.handle.net/10251/108474 |
---|