IP Library › Granted Patent US 10,696,266
Granted Patent B2
US 10,696,266 · App. 15/809,723 · Granted Jun 30, 2020

Inflatable knee airbag assemblies

Inventors: Mark L. Enders (Pleasant View, UT); Quin Soderquist (South Weber, UT)
Assignee: Autoliv ASP, Inc.
B60R21/2338B60R21/206B60R2021/23169B60R2021/23386
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Quick Facts
Patent No.
US 10,696,266
App. No.
15/809,723
Granted
Jun 30, 2020
Kind
B2
Abstract

An inflatable airbag assembly, such as a knee airbag assembly, including a support strap, wherein the support strap may be secured to an inflatable airbag cushion. The support strap may be configured to direct the deployment trajectory of the airbag cushion such that the airbag cushion is deployed rearwardly and upwardly within a vehicle. The inflatable airbag assembly may be configured to prevent injury to an occupant's hip, femur, knee, and/or lower leg.

Claims (59)

1. An airbag assembly comprising:

a housing configured to be mounted in a vehicle, wherein the housing comprises a wall comprising a first aperture;

an inflator configured to provide inflation gas during deployment;

an airbag cushion, wherein the airbag cushion is configured to receive inflation gas from the inflator to expand the airbag cushion during deployment; and

a first strap, wherein a first end of the first strap is secured to the airbag cushion; and

wherein a second end of the first strap is configured to be secured to a vehicle structure by a support bracket, wherein the support bracket comprises a slot configured to align with the first aperture, and wherein the first strap passes through the first aperture such that the second end of the first strap is secured to the vehicle structure, and

wherein the second end of the first strap comprises a longitudinal portion and a cross-arm portion such that the cross-arm portion is oriented transverse to the longitudinal portion, wherein the cross-arm portion comprises a first arm and a second arm, wherein the second end is prevented from pulling through the slot and the first aperture into the housing.

2. The airbag assembly of claim 1 , further comprising:

a second aperture disposed in the wall of the housing; and

a second strap, wherein a first end of the second strap is secured to the airbag cushion;

wherein a second end of the second strap passes through the second aperture such that the second end of the second strap is configured to be secured to the vehicle structure.

3. The airbag assembly of claim 1 , wherein the first strap is configured to direct deployment of the airbag cushion such that the airbag cushion is deployed in front of a vehicle seating position.

4. The airbag assembly of claim 1 , further comprising a first tab secured to the airbag cushion, wherein the first end of the first strap is secured to the first tab.

5. The airbag assembly of claim 4 , further comprising;

a second aperture disposed in the wall of the housing;

a second tab secured to the airbag cushion; and

a second strap, wherein a first end of the second strap is secured to the second tab;

wherein a second end of the second strap passes through the second aperture such that the second end of the second strap is configured to be secured to the vehicle structure.

6. The airbag assembly of claim 1 , wherein the vehicle structure is a mounting member.

7. The airbag assembly of claim 1 , wherein the second end of the first strap passes through the first aperture and the slot such that the second end engages with the support bracket.

8. The airbag assembly of claim 1 , wherein the support bracket is fixedly secured to the vehicle structure.

9. The airbag assembly of claim 1 , wherein the support bracket is fixedly secured to the wall of the housing.

10. The airbag assembly of claim 1 , wherein a thickness of the cross-arm portion, when a left arm and a right arm are folded upward together such that the cross-arm portion is axially aligned with the longitudinal portion, is greater than a width of the slot.

11. The airbag assembly of claim 1 , wherein the first strap is configured to direct airbag deployment rearward and upward within the vehicle.

12. The airbag assembly of claim 1 , wherein the weight of the airbag assembly is between 500 grams and 900 grams.

13. The airbag assembly of claim 1 , further comprising a mounting bracket, wherein the housing is secured to the mounting bracket, wherein the mounting bracket is configured to mount the airbag assembly to the vehicle structure.

14. The airbag assembly of claim 13 , wherein the mounting bracket is configured as an “L” bracket.

15. The airbag assembly of claim 14 , wherein the length of the mounting bracket is less than 75% of the length of the housing.

16. The airbag assembly of claim 1 , wherein the housing comprises a plastic material.

17. The airbag assembly of claim 1 , wherein the housing comprises a plastic material selected from a group consisting of nylon, styrene ethylene butylene styrene, polyolefin, polypropylene, thermoplastic elastomer olefin, and thermoplastic polyester elastomers.

18. The airbag assembly of claim 1 , wherein the housing comprises:

a plurality of walls configured to form a closure;

a cover coupled to the housing by a hinge; and

a plurality of closure structures configured to secure the cover in a closed configuration until adequate pressure is applied to the cover by the deploying airbag cushion;

wherein the housing, the cover, the hinge, and the the plurality of closure structures are formed as a unitary structure.

19. The airbag assembly of claim 1 , wherein the first strap is configured to restrict a volume of a proximal portion of the airbag cushion when the airbag cushion is deployed.

20. The airbag assembly of claim 1 , wherein the airbag assembly is configured to be mounted below a knee level of an occupant seated in a vehicle seating position.

21. The airbag assembly of claim 1 , wherein the airbag cushion, when deployed, is configured to protect a knee, a femur, a lower leg and/or a hip of an occupant from injury.

22. The airbag assembly of claim 1 , wherein the airbag cushion is configured to have a larger volume adjacent a distal portion relative to a middle portion.

23. A method of deploying a knee airbag system, the method comprising:

obtaining the knee airbag system comprising:

a housing configured to be mounted in a vehicle, wherein the housing comprises a wall comprising a first aperture and a second aperture;

a first support bracket comprising a first slot and a second support bracket comprising a second slot wherein the first slot is aligned with the first aperture and the second slot is aligned with the second aperture;

an inflator configured to provide inflation gas during deployment;

an airbag cushion disposed within the housing comprising a first tab and a second tab, wherein a first end of a first strap is secured to the first tab and a first end of a second strap is secured to the second tab, and wherein a second end of the first strap passes through the first aperture and the first slot and a second end of the second strap passes through the second aperture and the second slot, wherein the second ends are prevented from pulling through the apertures and slots; and

activating the inflator such that the airbag cushion is deployed from the housing, wherein the airbag cushion is directed to a position in front of a vehicle seating position.

24. The method of claim 23 , further comprising restricting a volume of a proximal portion of the airbag cushion.

25. The method of claim 23 , wherein the airbag cushion is configured to protect an occupant from injuring a knee, a femur, a lower leg and/or a hip.

26. An airbag deployment system comprising:

an airbag housing configured to be mounted in a vehicle, wherein the airbag housing comprises a wall comprising a first aperture and a second aperture;

an inflator configured to provide inflation gas during deployment;

an airbag cushion coupled to the airbag housing and comprising a first tab and a second tab, wherein the airbag cushion is configured to receive inflation gas from the inflator to expand the airbag cushion during deployment; and

a first strap and a second strap, wherein a first end of the first strap is secured to the first tab and a first end of the second strap is secured to the second tab; and

a first support bracket comprising a first slot and a second support bracket comprising a second slot, wherein the first and second support brackets are configured to be mounted to a vehicle structure with the first slot aligned with the first aperture and the second slot aligned with the second aperture;

wherein a second end of the first strap passes through the first aperture and the first slot and a second end of the second strap passes through the second aperture and the second slot such that the first strap is coupled to the first support bracket and second strap is coupled to the second support bracket;

wherein the first strap and the second strap are configured to direct deployment of the airbag cushion in front of a vehicle seating position.

27. The airbag deployment system of claim 26 , wherein the second ends of the straps comprise a longitudinal portion and a cross-arm portion oriented transverse to the longitudinal portion, wherein the cross-arm portion comprises a left arm and a right arm, wherein the second ends are prevented from pulling through the apertures and the slots into the airbag housing.

28. The airbag deployment system of claim 27 , wherein a thickness of the cross-arm portion, when the left arm and the right arm are folded upward together such that the cross-arm portion is axially aligned with the longitudinal portion, is greater than the width of the slots.

29. The airbag deployment system of claim 26 , further comprising a mounting bracket, wherein the airbag housing is secured to the mounting bracket, wherein the mounting bracket is configured to mount the airbag deployment system to the vehicle structure.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 10, 2017
From: ENDERS, MARK L.; SODERQUIST, QUIN
To: AUTOLIV ASP, INC.
Reel/Frame 044096/0120 →
Continuity (1)
Related Publication 20190143931A1 · May 16, 2019
Cited By (1)
US 12,528,437