IP Library Granted Patent US 7,147,246
Granted Patent B2
US 7,147,246 · App. 11/065,668 · Granted Dec 12, 2006

Method for airbag inflation control

Assignee: Automotive Technologies International, Inc.
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Quick Facts
Patent No.
US 7,147,246
App. No.
11/065,668
Granted
Dec 12, 2006
Kind
B2
Abstract

Method for controlling deployment of an airbag into a passenger compartment of a vehicle including detecting a position of an occupant whose forward-facing surface will be the surface which interacts with the airbag upon its deployment, determining a desired amount of gas within the airbag during inflation of the airbag based at least in part on the detected position of the occupant, and adjusting the amount of gas within the airbag during inflation of the airbag to provide the airbag with the desired amount of gas during its inflation. Adjustment of the amount of gas within the airbag may entail varying the amount of gas being directed into the airbag based on the morphology of the occupant (inflow control) and/or controlling the outflow of gas from the airbag based on the morphology of the occupant (outflow control).

Claims (43)

1. A method for controlling deployment of an airbag into a passenger compartment of a vehicle, comprising:

determining a size of an occupant whose forward-facing surface will be the surface which interacts with the airbag upon its deployment;

determining a desired amount of gas within the airbag during inflation of the airbag based at least in part on the determined size of the occupant; and

adjusting the amount of gas within the airbag during inflation of the airbag to provide the airbag with the desired amount of gas during its inflation, the step of adjusting the amount of gas within the airbag comprising controlling the outflow of gas from the airbag based on the determined size of the occupant.

2. The method of claim 1 , wherein the step of adjusting the amount of gas within the airbag further comprises varying the amount of gas being directed into the airbag based on the size of the occupant.

3. The method of claim 1 , further comprising detecting the occupant's position and determining the desired amount of gas within the airbag during inflation of the airbag based at least in part on the detected position of the occupant and the determined size of the occupant.

4. The method of claim 3 , wherein the step of adjusting the amount of gas within the airbag further comprises reducing the amount of gas being directed into the airbag when the detected position of the occupant is indicative of a small occupant.

5. The method of claim 3 , wherein the step of adjusting the amount of gas within the airbag further comprises increasing the amount of gas being directed into the airbag when the detected position of the occupant is indicative of a large occupant.

6. The method of claim 3 , wherein the step of adjusting the amount of gas within the airbag further comprises reducing the amount of gas being directed into the airbag when the detected position of the occupant is indicative of an occupant positioned close to a compartment in which the airbag is stored.

7. The method of claim 3 , wherein the step of adjusting the amount of gas within the airbag further comprises reducing the size of at least one gas exit passage formed in association with the airbag when the detected position of the occupant is indicative of a large occupant.

8. The method of claim 3 , wherein the step of adjusting the amount of gas within the airbag further comprises increasing the size of at least one gas exit passage formed in association with the airbag when the detected position of the occupant is indicative of a small occupant.

9. The method of claim 3 , wherein the step of detecting a position of the occupant comprises transmitting waves toward the occupant, receiving waves reflected from the occupant and analyzing the received waves.

10. The method of claim 1 , wherein the step of adjusting the amount of gas within the airbag comprises venting the airbag through at least one gas exit passage formed in the airbag material.

11. The method of claim 1 , wherein the step of adjusting the amount of gas within the airbag further comprises arranging an exit control valve adjacent the inflator and in fluid communication with the airbag and controlling the valve to provide an opening through which gas flows.

12. The method of claim 1 , further comprising:

determining at least one morphological characteristic of the occupant in addition to the determination of the size of the occupant; and

determining the desired amount of gas within the airbag during inflation of the airbag based at least in part on at least one morphological characteristic of the occupant and the determined size of the occupant.

13. The method of claim 12 , wherein the at least one morphological characteristic is the weight of the occupant.

14. The method of claim 12 , wherein the step of determining the size of the occupant comprises determining the height of the occupant from a vehicle seat on which the occupant is seated.

15. The method of claim 1 , wherein the step of determining the size of the occupant comprises determining the height of the occupant from a vehicle seat on which the occupant is seated.

16. A method for controlling deployment of an airbag into a passenger compartment of a vehicle, comprising:

determining a size of an occupant whose forward-facing surface will be the surface which interacts with the airbag upon its deployment;

obtaining information about an amount of energy the airbag needs to absorb during impact of the occupant with the airbag based on the determined size of the occupant; and

adjusting the amount of gas within the airbag during inflation of the airbag based at least in part on the information about the amount of energy the airbag needs to absorb during impact of the occupant with the airbag to thereby provide the airbag with the ability to absorb the needed amount of energy,

the step of adjusting the amount of gas within the airbag comprising controlling the outflow of gas from the airbag based on the determined size of the occupant.

17. The method of claim 16 , further comprising determining at least one morphological characteristic of the occupant in addition to the determination of the size of the occupant and the step of obtaining information comprises deriving the information from the determined at least one morphological characteristic and from the determined size of the occupant.

18. The method of claim 17 , wherein the at least one morphological characteristic is the weight of the occupant.

19. The method of claim 16 , wherein the step of adjusting the amount of gas within the airbag comprising varying the amount of gas being directed into the airbag based on the determined size of the occupant.

20. The method of claim 16 , further comprising detecting the occupant's position and obtaining information about the amount of energy the airbag needs to absorb during impact of the occupant with the airbag based on the detected position of the occupant and the determined size of the occupant.

21. The method of claim 20 , wherein the step of adjusting the amount of gas within the airbag further comprises reducing the amount of gas being directed into the airbag when the detected position of the occupant is indicative of an occupant positioned close to a compartment in which the airbag is stored.

22. The method of claim 20 , wherein the step of detecting a position of the occupant comprises transmitting waves toward the occupant, receiving waves reflected from the occupant and analyzing the received waves.

23. The method of claim 16 , wherein the step of adjusting the amount of gas within the airbag comprises venting the airbag through at least one gas exit passage formed in material of the airbag.

24. The method of claim 16 , wherein the step of adjusting the amount of gas within the airbag further comprises arranging an exit control valve adjacent the inflator and in fluid communication with the airbag and controlling the valve to provide an opening through which gas flows.

25. A method for controlling deployment of an airbag into a passenger compartment of a vehicle, comprising:

determining a size of an occupant whose forward-facing surface will be the surface which interacts with the airbag upon its deployment;

determining a desired amount of gas within the airbag during inflation of the airbag based at least in part on the determined size of the occupant; and

adjusting the amount of gas within the airbag during inflation of the airbag to provide the airbag with the desired amount of gas during its inflation,

the step of adjusting the amount of gas within the airbag comprising varying the amount of gas being directed into the airbag and controlling a variable outflow of gas from the airbag such that the amount of gas within the airbag during inflation of the airbag is the desired amount.

26. A method for controlling deployment of an airbag into a passenger compartment of a vehicle, comprising:

determining a size of an occupant whose forward-facing surface will be the surface which interacts with the airbag upon its deployment;

obtaining information about an amount of energy the airbag needs to absorb during impact of the occupant with the airbag based at least in part in the determined size of the occupant; and

adjusting the amount of gas within the airbag during inflation of the airbag based at least in part on the information about the amount of energy the airbag needs to absorb during impact of the occupant with the airbag to thereby provide the airbag with the ability to absorb the needed amount of energy,

the step of adjusting the amount of gas within the airbag comprising varying the amount of gas being directed into the airbag and controlling a variable outflow of gas from the airbag such that the airbag has the ability to absorb the needed amount of energy during deployment.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 10, 2012
From: AUTOMOTIVE TECHNOLOGIES INTERNATIONAL, INC.
To: AMERICAN VEHICULAR SCIENCES LLC
Reel/Frame 028023/0087 →
Continuity (42)
Division 1093128800 · Aug 31, 2004
Continuation In Part 1017480300 · Jun 19, 2002
Continuation In Part 0950034600 · Feb 8, 2000
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1997
Continuation In Part 0984955800 · May 4, 2001
Continuation In Part 0919320900 · Nov 17, 1998
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1997
Continuation In Part 0984955900 · May 4, 2001
Continuation In Part 0919320900 · Nov 17, 1998
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1997
Continuation In Part 0990187900 · Jul 9, 2001
Continuation 0984955900 · May 4, 2001
Continuation In Part 0919320900 · Nov 17, 1998
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1997
Continuation In Part 0975318600 · Jan 2, 2001
Continuation In Part 0976702000 · Jan 23, 2001
Continuation In Part 0977097400 · Jan 26, 2001
Continuation In Part 1006101600 · Jan 30, 2002
Continuation In Part 0990187900 · Jul 9, 2001
Continuation 0984955900 · May 4, 2001
Continuation In Part 0919320900 · Nov 17, 1998
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1997
Continuation In Part 1022778100 · Aug 26, 2002
Continuation In Part 1006101600 · Jan 30, 2002
Continuation In Part 0950034600 · Feb 8, 2000
Continuation In Part 0912849000 · Aug 4, 1998
Continuation In Part 0847478300 · Jun 7, 1995
Continuation In Part 0897082200 · Nov 14, 1995
Continuation In Part 1041342600 · Apr 14, 2003
Continuation In Part 1006101600 · Jan 30, 2002
Continuation In Part 1022778100 · Aug 26, 2002
Related Publication 20050248136A1 · Nov 10, 2005