IP Library Granted Patent US 10,899,090
Granted Patent B2
US 10,899,090 · App. 16/016,926 · Granted Jan 26, 2021

Method for producing fiber composite components by means of a vacuum injection method

Inventor: Dominik Dierkes (Ibbenbüren, DE)
Assignee: Faserverbund Innovations UG (haftungsbeschränkt)
B29C70/443B29C70/547B29C70/548B29C2791/006
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Quick Facts
Patent No.
US 10,899,090
App. No.
16/016,926
Granted
Jan 26, 2021
Kind
B2
Abstract

In a method for producing a fiber composite component by vacuum injection, a fiber composite semifinished product is arranged in a component chamber of a tool. A vacuum chamber is arranged adjacent to the component chamber. The vacuum chamber is separated from the component chamber by a separation material. Component chamber and vacuum chamber are sealed relative to the tool environment by a gas-tight and matrix-material tight cover material. Vacuum is applied to the vacuum chamber and a matrix material is introduced into the component chamber. The matrix material is cured and the finished fiber composite component is removed from the component chamber. The separation material separating the vacuum chamber from the component chamber has a pore size between 0.4 μm and 30 μm and provides a matrix material-slowing action but is not matrix material-tight.

Claims (12)

1. A method for producing a fiber composite component by vacuum injection, the method comprising:

arranging a fiber composite semifinished product in a component chamber of a tool;

arranging a vacuum chamber adjacent to the component chamber and separating the vacuum chamber from the component chamber by a separation material comprising a pore size between 0.4 μm and 30 μm, the pore size configured to provide a matrix material-slowing action for a matrix material;

sealing the component chamber and the vacuum chamber relative to a tool environment of the tool by a gas-tight and matrix-material tight cover material;

applying a vacuum to the vacuum chamber and evacuating gas from the component chamber through the separation material;

introducing the matrix material into the component chamber and filling the component chamber with the matrix material while allowing the matrix material to pass through the separation material into the vacuum chamber subject to the matrix material-slowing action;

the matrix material-slowing action slowing a flow of the matrix material through the separation material for such a length of time until the component chamber is completely filled and the fiber composite semifinished product is completely impregnated with the matrix material;

curing the matrix material and removing the finished fiber composite from the component chamber.

2. The method according to claim 1 , wherein the pore size of the separation material is matched to a cross-linking rate of the matrix material.

3. The method according to claim 1 , wherein the pore size of the separation material is matched to a viscosity of the matrix material.

4. The method according to claim 1 , wherein the pore size of the separation material is matched to a differential pressure of the matrix material.

5. The method according to claim 1 , further comprising blocking an inflow of the matrix material into the component chamber while maintaining a vacuum in the vacuum chamber and compensating pressure by migration of the matrix material from the component chamber through the separation material into the vacuum chamber.

Assignments (2)
CHANGE OF NAME Recorded Apr 7, 2025
From: FASERVERBUND INNOVATIONS UG (HAFTUNGSBESCHRÄNKT)
To: TWIM HOLDING GMBH
Reel/Frame 070752/0691 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 25, 2018
From: DIERKES, DOMINIK
To: FASERVERBUND INNOVATIONS UG (HAFTUNGSBESCHRÄNKT)
Reel/Frame 046190/0241 →
Priority Claims (3)
DE 10 2017 114 140 · Jun 26, 2017 · national
DE 10 2017 130 201 · Dec 15, 2017 · national
EP 17210651 · Dec 27, 2017 · regional
Continuity (1)
Related Publication 20180370160A1 · Dec 27, 2018