IP Library Granted Patent US 8,689,670
Granted Patent B2
US 8,689,670 · App. 13/541,175 · Granted Apr 8, 2014

Composite material, composite part and methods for making such

Inventor: Martin Levesque (Lachenais, CA)
Assignee: Hutchinson Aerospace & Industry Limited
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Quick Facts
Patent No.
US 8,689,670
App. No.
13/541,175
Granted
Apr 8, 2014
Kind
B2
Abstract

A composite material comprising a plurality of fiber tape strips woven or braided together. Each of the plurality of fiber tape strips is made of a single layer of unidirectional fibers. The fibers are at least partially embedded in a thermoplastic matrix. A tubular composite part is made from this composite material and of an internal film. A method of manufacturing the composite material comprises weaving or braiding the fiber tape strips, especially in the form of a tube. A method of manufacturing a composite part comprises pressurizing the film inside the tube while heating both the tube and the film up to their forming temperature so as to bond the film to the woven fiber tape strips.

Claims (22)

1. A composite material comprising:

a plurality of fiber tape strips assembled together so as to form a tube, each of said plurality of fiber tape strips being made of a single layer of unidirectional fibers, said fibers being at least partially embedded in a thermoplastic matrix, wherein said plurality of fiber tape strips are loosely assembled and define a plurality of voids thereinbetween, said tube comprising a thermoplastic film configured to seal the voids between the fiber tape strips, thereby making the tube air-tight.

2. The composite material of claim 1 wherein said film is made of a resin selected from the group consisting of cyanate ester, polyphenylene sulfide, polyetherimide and polyamide.

3. The composite material of claim 1 wherein said fiber is selected from the group consisting of carbon fiber, aramid fiber and glass fiber.

4. The composite material of claim 1 wherein said thermoplastic matrix is made of a resin selected from the group consisting of polyphenylene sulfide, polyetherimide and polyamide or a thermoset matrix made of a resine cyanate ester.

5. The composite material of claim 1 wherein said each of said plurality of fiber tape strips has a width of less than 0.75 inch (19.05 millimeters).

6. A composite part made from a material comprising:

a plurality of fiber tape strips loosely assembled together so as to form a duct, each of said plurality of fiber tape strips being made of a single layer of unidirectional fibers, said fibers being at least partially embedded in a thermoplastic matrix, wherein the fiber tape strips include voids thereinbetween and the duct comprises a thermoplastic film configured to seal the voids, thereby making the duct air-tight.

7. The composite part of claim 6 further comprising a peripheral band attached to on an exterior of said duct, said band being proximate to an extremity of said duct, said band being operative to lock said plurality of fiber tape strips.

8. The composite part of claim 7 further comprising a bead on said peripheral band.

9. The composite part of claim 7 wherein said film extends from said duct.

10. The composite part of claim 7 further comprising an inflated balloon inside said duct, said balloon providing support to said duct.

11. The composite part of claim 7 wherein said film is made of a resin selected from the group consisting of cyanate ester, polyphenylene sulfide, polyetherimide and polyamide.

12. The composite part of claim 6 wherein said fiber is selected from the group consisting of carbon fiber, aramid fiber and glass fiber.

13. The composite part of claim 6 wherein said thermoplastic matrix is made of a resin selected from the group consisting of cyanate ester, polyphenylene sulfide, polyetherimide and polyamide.

14. The composite part of claim 6 wherein said each of said plurality of fiber tape strips has a width of less than 0.75 inch (19.05 millimeters).

15. A method of making an air duct comprising:

loosely assembling together in the form of a duct a plurality of fiber tape strips so as to provide voids thereinbetween, wherein each of said plurality of fiber tape strips comprises a single layer of unidirectional fibers, said fibers being at least partially embedded in a thermoplastic matrix;

sealing the voids between the fiber tape strips using a thermoplastic film, thereby making the duct air-tight.

16. A method of manufacturing a composite part comprising:

pressurizing a film inside a tube made from a plurality of loosely assembled fiber tape strips having voids thereinbetween while heating said tube and said film up to their forming temperature so as to bond said film to said tube and seal the voids between the fiber tape strips, wherein each one of said plurality of fiber tape strips is made of a single layer of unidirectional fibers, said fibers being at least partially embedded in a thermoplastic matrix.

17. The method of claim 16 wherein said heating comprises pressurizing said film with an inflatable bladder.

Assignments (2)
CHANGE OF NAME Recorded Mar 28, 2013
From: MARQUEZ TRANSTECH LTEE
To: HUTCHINSON AERONAUTIQUE & INDUSTRIE LIMITEE/HUTCHINSON AEROSPACE & INDUSTRY LIMITED
Reel/Frame 030103/0777 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 6, 2013
From: LEVESQUE, MARTIN
To: MARQUEZ TRANSTECH LTEE
Reel/Frame 029767/0020 →
Continuity (3)
Continuation 12766035 · Apr 23, 2010
Provisional Application 61172924 · Apr 27, 2009
Related Publication 20120295046A1 · Nov 22, 2012