The present invention generally relates to air bags and more particularly to apparatus and methods that optimize the interaction of air bags with vehicle occupants who are seated within their respective seat in what is referred to, in the art, as being in an out-of-position (OOP) seating position.
Accordingly the invention comprises: an apparatus that purposely encourages the air bag to inflate, at least initially, in an asymmetric manner. More particularly, the invention comprises an air bag assembly or module including: a folded air bag, means for inflating the air bag, and a partial, external tethering (or covering) mechanism positionable about a portion of the folded air bag to prevent the air bag from inflating symmetrically during the first moments of inflation, the external tether directing the air bag to inflate in a preferred direction.
The preferred embodiment of the present invention incorporates an external tether or hood spanning approximately one-third to about one-half the width of a folded air bag. The tether slows the motion of one-half of the air bag and urges or re-directs the air bag to inflate away from the partial tether toward a preferred initial trajectory. This construction advantageously assists in protecting an occupant that is seated in what would be considered an out-of-position seating orientation. During the initial moments of inflation, the symmetric inflation of the air bag is retarded by use of the partial tether. As the air bag more fully inflates, the partial tether is pushed to the side, permitting the air bag to inflate more symmetrically.
Many other objects and purposes of the invention will be clear from the following detailed description of the drawings.
a shows a panel of air bag material used to make the tether.
b shows an alternate embodiment of the invention.
a shows the external tether positioned relative to a folded air bag; the external tether is shown in an active position for the purpose of illustration.
Reference is made to
As is known in the art, when inflation gas is uniformly input or delivered into the inlet or neck of the air bag from a source of inflation gas, the air bag will generally tend to inflate in a symmetric manner. However, in the present invention, it is desirable to force the air bag to inflate in a non-symmetric manner primarily to try and protect the out-of-position occupant (OOP occupant). This asymmetric inflation is accomplished by enveloping the folded air bag by an external tether or hood 40 (see
In the first embodiment of the invention, the tether 40 is formed by folding a single piece of material such as panel 41, also shown in
As can be appreciated the tether can be made using two smaller panels, each of which would resemble one-half of the panel 41 fully separated along the centerline. If two half-panels were used, the seam 46 (see phantom line) would extend from the top 44 along the sides 48b of the two half-panels. Further, in an alternate embodiment of the invention the opposite side 48b of the tether 40 can also be open or partially open as shown for example by slit 49, which can extend along the length of side 48b.
Reference is again briefly made to
Reference is briefly made to
The enveloping, inhibiting, holding or cradling of one side of the inflating air bag temporarily inhibits the symmetric inflation of the air bag. For example, as illustrated, the right-hand portion (with reference to the drawings) of the air bag will engage the inner surfaces of the partial tether 40. Until the tether is either torn or moved away, the right-hand portion of the air bag will not inflate. During the next subsequent moments of inflation, the air bag will inflate generally away from restriction imposed by the tether 40. The air bag will tend to inflate generally in a direction opposite the location of the partial tether 40 and expand or continue to expand about the open side 48a. As the air bag inflates the air bag itself will generate a reaction force, F, on the walls of the tether 40, as the unrestricted size of the air bag is greater than the size of the tether 40.
While not mentioned above, the air bag and tether can be made from woven nylon, pliable air bag material, which may or may not be covered by silicone or urethane. As the air bag continues to inflate, the air bag 24, in view of the reaction force F, will urge the tether to slide off of the air bag, encouraged by the interplay of the inflating air bag with the curved or angled configuration of the top of the tether 40, thereby disengaging the tether 40 from the air bag and permitting the air bag to continue to inflate more symmetrically.
Many changes and modifications in the above-described embodiment of the invention can, of course, be carried out without departing from the scope thereof. Accordingly, that scope is intended to be limited only by the scope of the appended claims.
This is a regularly filed utility patent application claiming priority of provisional patent application 60/370,789, filed Apr. 6, 2002.
Number | Name | Date | Kind |
---|---|---|---|
5004266 | Miller et al. | Apr 1991 | A |
5348343 | Hawthorn | Sep 1994 | A |
5364124 | Donegan et al. | Nov 1994 | A |
5380038 | Hawthorn et al. | Jan 1995 | A |
5560648 | Rhule et al. | Oct 1996 | A |
5727812 | Dykstra et al. | Mar 1998 | A |
5746447 | Dyer et al. | May 1998 | A |
5765867 | French | Jun 1998 | A |
5865466 | Yamamoto et al. | Feb 1999 | A |
6164696 | Ellerbrok et al. | Dec 2000 | A |
6209911 | Igawa et al. | Apr 2001 | B1 |
6334627 | Heym et al. | Jan 2002 | B1 |
6371510 | Marriott et al. | Apr 2002 | B1 |
20030178832 | Dominissini et al. | Sep 2003 | A1 |
Number | Date | Country | |
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20030189327 A1 | Oct 2003 | US |
Number | Date | Country | |
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60370789 | Apr 2002 | US |