IP Library Granted Patent US 7,964,131
Granted Patent B2
US 7,964,131 · App. 10/983,395 · Granted Jun 21, 2011

Method and apparatus for activating the binder on a semi-finished fiber preform by direct heating of carbon fibers through an applied electrical voltage

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Quick Facts
Patent No.
US 7,964,131
App. No.
10/983,395
Granted
Jun 21, 2011
Kind
B2
Abstract

The present invention relates to an apparatus and a method to activate a binder on a semi-finished fiber material containing carbon fibers or on a preform. The binder is applied to the semi-finished fiber material or the fiber preform and subsequently activated through increasing the temperature by conducting an electrical current through the carbon fibers of the preform.

Claims (24)

1. Method for fixating a fiber preform comprising the steps of:

molding a dry semi-finished fiber material containing carbon fibers or consisting thereof into a fiber preform of a predetermined shape;

one of subsequently applying a binder to the fiber preform and bonding the binder substance with the fiber preform or applying a binder to the semi-finished fiber material and bonding the binder substance with the semi-finished fiber material prior to molding the fiber preform, wherein at least one of a mass of the binder substance amounts to more than 2 and up to 5 percent of a mass of the semi-finished fiber material or of the fiber preform;

activating the binder substance by increasing a temperature of the fiber preform and the binder substance wherein an electrical current is conducted through at least one part of the carbon fibers to increase the temperature of the fiber preform; and

subsequently saturating the fiber preform with a matrix, wherein the quantity of the matrix amounts to 25 to 85 percent by volume of the finished fiber preform.

2. Method in accordance with claim 1 wherein the step of activation is done with a fiber preform shaping apparatus comprising at least two electrodes to be integrated or disposed on the fiber preform and the binder substance to apply a voltage to at least one part of the carbon fibers to increase the temperature of the fiber preform.

3. Method in accordance with claim 1 , wherein the binder substance contains a thermosetting or thermoplastic substance or consists thereof and the binder substance is present in a powdered form.

4. Method in accordance with claim 1 , wherein the binder substance contains at least one of a copolyamide adhesive stabilizer of adhesive polymer or consists thereof and an epoxy resin preferably on a bisphenol-A base or consists thereof.

5. Method in accordance with claim 2 , wherein a voltage source is integrated into the fiber shaping apparatus or is positioned outside the fiber shaping apparatus to apply a voltage to the electrodes.

6. Method in accordance with claim 2 , wherein at least one of the semi-finished fiber material or the fiber preform containing carbon fibers or consisting thereof is disposed at or between the electrodes in such a way to conduct the electrical current in at least a part of the carbon fibers.

7. Method in accordance with claim 1 , wherein the semi-finished fiber material contains a woven material, a multiaxial reinforcement or another semi-finished cloth material or consists thereof.

8. Method in accordance with claim 2 , wherein the step of applying a binder is done with a binder substance feeder device that is integrated into the fiber preform shaping apparatus or is located thereon.

9. Method for fixating a fiber preform comprising the steps of:

molding a dry semi-finished fiber material containing carbon fibers or consisting thereof into a fiber preform with a predetermined shape;

one of subsequently applying a binder to the fiber preform and bonding the binder substance with the fiber preform or applying a binder to the semi-finished fiber material and bonding the binder substance with the semi-finished fiber material prior to molding the fiber preform, wherein the binder substance contains at least a copolyamide adhesive stabilizer of adhesive polymer;

activating the binder substance by increasing a temperature of the fiber preform and the binder substance wherein an electrical current is conducted through at least one part of the carbon fibers to increase the temperature of the fiber preform; and

subsequently saturating the fiber preform with a matrix, wherein the quantity of the matrix amounts to 25 to 85 percent by volume in the fixated and saturated fiber preform, and wherein a mass of the binder substance amounts to more than 2 and up to 5 percent of a mass of one of the semi-finished fiber material or of the fiber preform.

10. Method in accordance with claim 9 , wherein the step of activation is done with a fiber preform shaping apparatus comprising at least two electrodes to be integrated or disposed on the fiber preform and the binder substance to apply a voltage to at least one part of the carbon fibers to increase the temperature of the fiber preform.

11. Method in accordance with claim 9 , wherein the binder substance contains a thermosetting or thermoplastic substance and, the binder substance is present in a powered form.

12. Method in accordance with claim 9 , wherein the binder substance further contains an epoxy resin on a bisphenol-A base.

13. Method in accordance with claim 10 , wherein a voltage source is integrated into the fiber shaping apparatus or is positioned outside the fiber shaping apparatus to apply a voltage to the electrodes.

14. Method in accordance with claim 10 , wherein at least one of the semi-finished fiber material or the fiber preform containing carbon fibers or consisting thereof is disposed at or between the electrodes in such a way to conduct the electrical current in at least a part of the carbon fibers.

15. Method in accordance with claim 9 , wherein the semi-finished fiber material contains a woven material, a multiaxial reinforcement or another semi-finished cloth material or consists thereof.

16. Method in accordance with claim 10 , wherein the step of applying a binder is done with a binder substance feeder device that is integrated into the fiber preform shaping apparatus or is located thereon.

Assignments (1)
CHANGE OF NAME Recorded May 31, 2011
From: AIRBUS DEUTSCHLAND GMBH
To: AIRBUS OPERATIONS GMBH
Reel/Frame 026360/0849 →