IP Library Granted Patent US 11,752,970
Granted Patent B1
US 11,752,970 · App. 17/853,091 · Granted Sep 12, 2023

One-way multiple chambers and cushions airbag

Inventors: Chin-Hsu Lin (Troy, MI); Yi-pen Cheng (Troy, MI)
Assignee: GM GLOBAL TECHNOLOGY OPERATIONS LLC
B60R21/239B60R21/276
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Quick Facts
Patent No.
US 11,752,970
App. No.
17/853,091
Granted
Sep 12, 2023
Kind
B1
Abstract

A one-way multiple cushions and chambers vehicle airbag assembly includes an airbag body having a primary airbag chamber and a secondary airbag chamber. At least one one-way vent valve provides a gas interconnection passage between the primary airbag chamber and the secondary airbag chamber.

Claims (37)

1. A one-way multiple cushions and chambers vehicle airbag assembly, comprising:

an airbag body having a primary airbag chamber and a secondary airbag chamber; and

at least one one-way vent valve providing a gas interconnection passage between the primary airbag chamber and the secondary airbag chamber,

wherein the at least one one-way vent valve includes a first one-way vent valve and a second one-way vent valve individually having a stitched border providing stiffness to maintain an opening port to allow gas flow through the first one-way vent valve and the second one-way vent valve during deflation of the airbag body.

2. The one-way multiple cushions and chambers vehicle airbag assembly of claim 1 , including a connecting wall positioned between and separating the primary airbag chamber and the secondary airbag chamber, the connecting wall defining a substantially impermeable barrier to gas transfer between the secondary airbag chamber and the primary airbag chamber when the airbag is inflated during an airbag deployment event.

3. The one-way multiple cushions and chambers vehicle airbag assembly of claim 2 , wherein the at least one one-way vent valve extends through the connecting wall.

4. The one-way multiple cushions and chambers vehicle airbag assembly of claim 2 , wherein when fully inflated with a gas during the airbag deployment event the secondary airbag chamber defines a supplementary cushion volume bounded between the connecting wall and an outer occupant facing wall.

5. The one-way multiple cushions and chambers vehicle airbag assembly of claim 2 , wherein the at least one one-way vent valve penetrates the connecting wall allowing a first portion of a gas filling the airbag body during the airbag deployment event to be directed from the primary airbag chamber into the secondary airbag chamber.

6. The one-way multiple cushions and chambers vehicle airbag assembly of claim 2 , wherein the at least one one-way vent valve penetrates the connecting wall allowing a first portion of a gas filling the airbag body during the airbag deployment event to be directed from the secondary airbag chamber into the primary airbag chamber.

7. The one-way multiple cushions and chambers vehicle airbag assembly of claim 1 , wherein the primary airbag chamber includes a first chamber portion and a second chamber portion in open fluid communication.

8. The one-way multiple cushions and chambers vehicle airbag assembly of claim 7 , including a tether positioned between the first chamber portion and the second chamber portion, wherein the first chamber portion and the second chamber portion together define the primary airbag chamber.

9. The one-way multiple cushions and chambers vehicle airbag assembly of claim 1 , further including a vent hole positioned in the primary airbag chamber to vent the primary airbag chamber to atmosphere following an airbag deployment event.

10. A one-way multiple cushions and chambers vehicle airbag assembly, comprising:

an airbag body having a primary airbag chamber and a secondary airbag chamber, the airbag body connected to a source of a gas used to inflate the airbag body during an airbag deployment event;

a connecting wall between the primary airbag chamber and the secondary airbag chamber; and

first and second one-way vent valves penetrating the connecting wall and individually providing a gas interconnection passage between the primary airbag chamber and the secondary airbag chamber allowing a primary flow of the gas from one of the primary airbag chamber and the secondary airbag chamber into the other one of the primary airbag chamber and the secondary airbag chamber during the airbag deployment event.

11. The one-way multiple cushions and chambers vehicle airbag assembly of claim 10 , wherein the connecting wall defines a substantially impermeable barrier to gas transfer between the secondary airbag chamber and the primary airbag chamber.

12. The one-way multiple cushions and chambers vehicle airbag assembly of claim 10 , wherein the first one-way vent valve and the second one-way vent valve do not preclude but restrict a reverse flow of the gas back into the primary airbag chamber, allowing the secondary airbag chamber to deflate after the airbag deployment event slower than a deflation rate of the primary airbag chamber.

13. The one-way multiple cushions and chambers automobile vehicle airbag assembly of claim 10 , wherein the connecting wall defines an outer face of the primary airbag chamber.

14. The one-way multiple cushions and chambers vehicle airbag assembly of claim 10 , wherein the connecting wall defines an outer face of the secondary airbag chamber.

15. The one-way multiple cushions and chambers vehicle airbag assembly of claim 10 , wherein the first and second one-way vent valves individually include:

a first edge wall having a first wall thickness;

a second edge wall oppositely positioned with respect to the first edge wall having a second wall thickness greater than the first wall thickness to permit the first edge wall to collapse more easily than the second edge wall; and

a first height of the first edge wall being shorter than a second height of the second edge wall to control a collapse direction of the first and second one-way vent valves.

16. The one-way multiple cushions and chambers vehicle airbag assembly of claim 10 , wherein the first and second one-way vent valves individually include:

opposing wall edges having an equal thickness; and

an opening port having a stitched border providing stiffness to maintain the opening port open during collapse of the first and second one-way vent valves when the airbag body deflates.

17. A method for inflating multiple cushions and chambers of a vehicle airbag assembly, comprising:

positioning a connecting wall between a primary airbag chamber and a secondary airbag chamber of an airbag body;

extending first and second one-way vent valves through the connecting wall to individually provide a gas interconnection passage between the primary airbag chamber and the secondary airbag chamber; and

configuring the airbag body to receive a gas into the airbag body including the primary airbag chamber and the secondary airbag chamber with a primary flow of the gas directed through the first and second one-way vent valves from one of the primary airbag chamber and the secondary airbag chamber into the other one of the primary airbag chamber and the secondary airbag chamber during an airbag deployment event.

18. The method for inflating multiple cushions and chambers of the vehicle airbag assembly of claim 17 , further including:

configuring the airbag body having the secondary airbag chamber directed toward an occupant of the vehicle during inflation of the airbag body to use the secondary airbag chamber as a cushion for a head of the occupant; and

selectively arranging the primary flow of the gas from the primary airbag chamber into the secondary airbag chamber to permit the secondary airbag chamber to deflate slower than the primary airbag chamber to maintain at least a portion of the cushion to remain between the head of the occupant and structure of the vehicle.

19. The method for inflating multiple cushions and chambers of the vehicle airbag assembly of claim 17 , further including:

configuring the airbag body having the primary airbag chamber directed toward an occupant of the vehicle during inflation of the airbag body to allow the primary airbag chamber to be first contacted by a head of the occupant; and

selectively arranging the primary flow of the gas from the secondary airbag chamber into the primary airbag chamber having the secondary airbag chamber deflating slower than the primary airbag chamber to maintain at least a portion of the secondary airbag chamber to remain between the head of the occupant and a structure of the vehicle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 30, 2022
From: LIN, CHIN-HSU; CHENG, YI-PEN
To: GM GLOBAL TECHNOLOGY OPERATIONS LLC
Reel/Frame 060366/0389 →
Cited By (1)
US 12,269,413