IP Library Granted Patent US 10,093,268
Granted Patent B2
US 10,093,268 · App. 15/331,578 · Granted Oct 9, 2018

Trim component for vehicle interior

Inventors: Glenn A Cowelchuk (Holland, MI); Bart W Fox (Zeeland, MI); Jeffrey A Deyoung (Holland, MI)
Assignee: Shanghai Yanfeng Jinqiao Automotive Trim Systems Co. Ltd.
B60R21/215B29C37/0057B29C45/0081B29C45/1671B60R13/02B60R21/2165B29C43/003B29C45/14786B29K2105/04B29L2031/3038B60R2013/0287
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Quick Facts
Patent No.
US 10,093,268
App. No.
15/331,578
Granted
Oct 9, 2018
Kind
B2
Abstract

A vehicle interior component is disclosed. The component may be a trim component configured to support an airbag module providing an airbag configured to be deployed through an opening into the vehicle interior. The trim component may comprise a panel comprising a first material and providing a front side and a back side; and a structure formed from a second material molded on the back side of the panel. The panel may comprise a compression-formed component. The compression-formed component may be configured to provide the opening through a door established upon deployment of the airbag to facilitate deployment of the airbag. The structure may be configured to support the airbag module and to direct the airbag toward the door during deployment of the airbag. The compression-formed component may comprise a feature formed within the panel configured to establish the opening at the door to be created by the airbag at the feature upon deployment of the airbag from the airbag module so that the airbag will deploy through the panel at the opening. A method of manufacturing a vehicle trim component is also disclosed. The method includes disposing a fiber panel within a mold cavity and aligning an airbag chute assembly with the fiber panel and compressing the fiber panel within the mold cavity to form the fiber panel into a desired shape. At least a portion of the fiber panel is compressed between a surface of the mold cavity and a surface of the airbag chute assembly.

Claims (36)

1. A trim component for a vehicle interior configured to support an airbag module providing an airbag configured to be deployed through an opening into the vehicle interior comprising:

(a) a panel comprising a first material and providing a front side and a back side; and

(b) a structure formed from a second material molded on the back side of the panel;

wherein the panel comprises a compression-formed component;

wherein the compression-formed component is configured to provide the opening through a door established upon deployment of the airbag to facilitate deployment of the airbag;

wherein the structure is configured to support the airbag module and to direct the airbag toward the door during deployment of the airbag; and

wherein the compression-formed component comprises a feature formed within the panel configured to establish the opening at the door to be created by the airbag at the feature upon deployment of the airbag from the airbag module so that the airbag will deploy through the compression-formed component at the opening.

2. The trim component of claim 1 wherein the feature comprises a recess formed within the panel configured to facilitate deployment of the airbag.

3. The trim component of claim 2 wherein the recess is formed in the back side of the panel.

4. The trim component of claim 2 wherein the feature comprises a resin feature injection molded within the recess configured to facilitate deployment of the airbag.

5. The trim component of claim 1 wherein the door extends between the structure and the feature formed within the panel.

6. The trim component of claim 1 wherein contact between the airbag and the door induces the door to establish the opening in the compression-formed component along the feature formed within the panel.

7. The trim component of claim 1 further comprising a support coupled to the compression-formed component and the structure; wherein the support is configured to secure the door to the compression-formed component during deployment of the airbag.

8. The trim component of claim 7 wherein the support is comprised of at least one of (a) fabric, (b) woven fibers, (c) non-woven fibers, (d) glass fibers, (e) carbon fibers, (f) metal fibers, (g) ceramic fibers, (h) polymeric fibers.

9. The trim component of claim 7 wherein the support comprises a resin feature configured to secure the support to the door.

10. The trim component of claim 1 wherein the structure is configured to secure the airbag module to the vehicle trim component; and wherein the structure is configured to reinforce the compression-formed component.

11. The trim component of claim 1 wherein the structure is configured to enhance the structural rigidity of the compression-formed component.

12. The trim component of claim 1 wherein the structure comprises at least one rib.

13. The trim component of claim 1 wherein the panel is formed at least partially from fibers.

14. The trim component of claim 1 further comprising a cover to provide a surface on the compression-formed component.

15. The trim component of claim 14 wherein contact between the airbag and the door induces tearing of the cover to establish the opening for the airbag and to facilitate deployment of the airbag through the opening.

16. A trim component for a vehicle interior configured to support an airbag module providing an airbag for deployment through an opening into the vehicle interior prepared using a mold by a process comprising the steps of:

(a) disposing a fiber panel onto a first surface of the mold;

(b) compressing the fiber panel between the first surface and a second surface of the mold to form the fiber panel into a compression-formed component having a shape; and

(c) forming a structure on a side of the compression-formed component;

wherein the shape corresponds to a first contour of the first surface and a second contour of the second surface; and

wherein the structure is configured to support the airbag module and to direct the airbag toward the compression-formed component to establish the opening during deployment of the airbag.

17. The trim component of claim 16 wherein forming the structure on a side of the compression-formed component comprises injecting resin into the mold.

18. The trim component of claim 16 wherein compressing the fiber panel between the first surface and a second surface of the mold comprises forming a recess within a surface of the fiber panel; wherein the recess is configured to facilitate deployment of the airbag.

19. The trim component of claim 16 wherein the process further comprises the step of providing a fabric support on a side of the fiber panel; wherein the fabric support is configured to reinforce the compression-formed component.

20. A method of manufacturing a vehicle trim component configured to support an airbag module providing an airbag for deployment from the airbag module through an opening into the vehicle interior comprising the steps of:

(a) providing a fiber panel on a first surface of a mold;

(b) compressing the fiber panel between the first surface and a second surface of the mold to form the fiber panel into a compression-formed component having a shape; and

(c) injecting resin into the mold to form a structure on a side of the compression-formed component;

wherein the shape corresponds to a first contour of the first surface and a second contour of the second surface; and

wherein the structure is configured to support the airbag module and to direct the airbag toward the compression-formed component to establish the opening during deployment of the airbag.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 29, 2018
From: COWELCHUK, GLENN A.; FOX, BART W.; DEYOUNG, JEFFREY A.
To: JOHNSON CONTROLS TECHNOLOGY COMPANY
Reel/Frame 046743/0011 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2017
From: JOHNSON CONTROLS TECHNOLOGY COMPANY
To: SHANGHAI YANFENG JINQIAO AUTOMOTIVE TRIM SYSTEMS CO. LTD.
Reel/Frame 042923/0460 →
Continuity (3)
Continuation In Part 14424671
Provisional Application 61693634 · Aug 27, 2012
Related Publication 20170036638A1 · Feb 9, 2017
Cited By (1)
US 12,377,796