IP Library Granted Patent US 12679019
Granted Patent B2
US 12679019 · App. 18/888,449 · Granted Jul 14, 2026

Method of manufacturing a part made of composite material

Inventors: Florent Denis Fauchery (Montmeyran, FR); Florian Vincent Bardy (Perrigny, FR); Nicolas Gabriel Pierre Lebossé (Viry, FR); Eric Jean-Marie Deneux (Metz, FR)
Assignee: SKF Aerospace France S.A.S
B29C53/566B29C53/005B29C70/003B29C70/342B29K2063/00B29K2307/04B29K2309/08
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Quick Facts
Patent No.
US 12679019
App. No.
18/888,449
Granted
Jul 14, 2026
Kind
B2
Abstract

A method for manufacturing a part made of composite material including a thermoplastic or thermosetting matrix reinforced with fibers includes the following steps: winding or depositing pre-impregnated fibers about a mandrel so as to form a preform, the fibers being formed of a thermoplastic or thermosetting material and being pre-impregnated with a thermoplastic or thermosetting matrix; winding a heat-shrinkable film around the preform; polymerizing the intermediate product obtained by winding the film about the preform at a polymerization temperature depending on the composite material used; and removing the heat-shrinkable film from the intermediate product so as to obtain a one-piece part made of composite material and including the mandrel.

Claims (14)

1 . A method for manufacturing a part formed of composite material including a thermoplastic or thermosetting matrix reinforced with fibers, the method comprising the steps of:

winding or depositing pre-impregnated fibers about a mandrel so as to form a preform, the pre-impregnated fibers being pre-impregnated with a thermoplastic matrix or a thermosetting matrix and the mandrel being formed of a thermoplastic material or a thermosetting material;

winding a heat-shrinkable film around the preform;

polymerizing an intermediate product including the preform and the heat-shrinkable film at a temperature of polymerization of the thermoplastic material or the thermosetting material of the preform; and

removing the heat-shrinkable film from the intermediate product so as to obtain a one-piece part including the composite material and the mandrel;

wherein the mandrel includes a main tubular part with a first end and a second end and at least one forked part assembled to the first end of the main tubular part or to the second end of the main tubular part;

further comprising a step of adding at least one reinforcement patch only around the at least one forked part before the step of winding or depositing pre-impregnated fibers around the mandrel.

2 . The manufacturing method according to claim 1 , wherein the mandrel is formed of a composite material including a thermoplastic matrix reinforced with fibers or a thermosetting matrix reinforced with fibers.

3 . The manufacturing method according to claim 1 , wherein a pressure is applied inside the mandrel during the step of winding or depositing pre-impregnated fibers about the mandrel, the step of winding a heat-shrinkable film around the preform and/or the step of polymerizing the intermediate product.

4 . The manufacturing method according to claim 1 , wherein the material of the mandrel includes particles having electrical conductivity properties and/or anti-corrosion properties.

5 . The manufacturing method according to claim 1 , further comprising a step of at least partially forming the mandrel before the step of winding the fibers about the mandrel by one or more of the following techniques: extrusion, extrusion blow molding, injection molding, injection blow molding, blow molding, rotational molding, thermoforming, 3D printing, pultrusion and filament winding.

6 . A connecting rod formed of a composite material and produced by the manufacturing method according to claim 1 .

7 . The manufacturing method according to claim 1 , wherein the pre-impregnated fibers include carbon fibers and/or glass fibers.

8 . The manufacturing method according to claim 7 , wherein the thermoplastic matrix or the thermosetting matrix of the pre-impregnated fibers is an epoxy resin.