Multiple welding of long fiber epoxy vitrimer composites

Многократная сварка композиционных материалов на основе эпоксидного витримера с длинными волокнами
François Tournilhac, Erwan Chabert, Jérôme Vial, Jean-Pierre Cauchois, Marius Mihaluta
2016-01-01

bond strengthepoxy vitrimerlong fiber compositesresin transfer moldingwelding / weldability
Vitrimers appear as a new class of polymers that exhibit mechanical strength and are insoluble even at high temperatures, like thermosets, and yet, like thermoplastics, they are heat processable, recyclable and weldable. The question arises whether this welding property is maintained in composite materials made of more than 50 vol% of reinforcing fibers. In this paper, we quantitatively analyze the bond strength of epoxy vitrimer-based composite plates made by resin transfer molding and compare them to their non-vitrimer counterparts made of a standard thermoset epoxy. It is demonstrated that only epoxy vitrimer samples show substantial bond strength and the ability to be repeatedly welded thanks to the exchange reactions, which promote improved surface conformity and chemical bonding between the adherands at the joint interface. This opens the way towards joining composite parts without adhesives nor mechanical fasteners.
1
Epoxy vitrimer composite plates (made by resin transfer molding) retain weldability even with >50 vol% reinforcing fibers.
2
Epoxy vitrimer composites can be repeatedly welded due to exchange reactions that enhance surface conformity and chemical bonding at the interface.
3
Only epoxy vitrimer samples, not standard thermoset epoxy composites, show substantial bond strength upon welding.
4
Vitrimer-based composites enable joining of composite parts without adhesives or mechanical fasteners.

Epoxy vitrimer-based long-fiber composite plates produced by resin transfer molding

Bond strength and repeatable welding ability of these long-fiber epoxy vitrimer composites (including surface conformity and chemical bonding at joint interfaces) compared to non-vitrimer thermoset epoxy composites

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Publication Date
2016-01-01
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Authors
François Tournilhac
Erwan Chabert
Jérôme Vial
Jean-Pierre Cauchois
Marius Mihaluta
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