THE PRESENT INVENTION relates to an air-bag and more particularly relates to a side air-bag.
A side air-bag is an air-bag intended to be mounted in a motor vehicle in such a location that, when the air-bag is inflated, the air-bag is located at a position adjacent the side of an occupant of a seat. Typically such a side air-bag is mounted in the back-rest of the seat, although the air-bag may be mounted in a side-wall of the vehicle. Most commonly the side air-bag is positioned so that, when inflated, it lies between the occupant and an adjacent side part of the vehicle. The air-bag may thus act to prevent the seat occupant from impacting severely with the side of the vehicle and, in a side impact situation, may provide a degree of protection if the side of the vehicle is driven inwardly towards the seat occupant.
When a side air-bag is mounted in the back-rest of the seat, the air-bag is typically mounted in a recess or pocket which is provided in the side part of the back-rest. On inflation, therefore, the air-bag initially emerges in a generally side-ways direction from the back-rest of the seat, but then it has to move forwardly so that the main inflated part of the air-bag lies adjacent and to one side of the seat occupant.
Various proposals have been made as to the design of an air-bag to cause the air-bag to effect this initial side-ways and subsequent forward movement. The present invention seeks to provide an improved side air-bag.
According to this invention there is provided a side air-bag, the side air-bag incorporating an internal tether, the internal tether serving to interconnect two spaced-apart regions of the air-bag, the distance around the periphery of the air-bag, in horizontal section, between the ends of the tether being greater in one direction than in the other direction, the length of the tether being less than the shorter distance.
Preferably the tether has an overall vertical extent of at least 50 mm.
Conveniently the side air-bag incorporates a region to receive a gas generator and an inflatable region extending therefrom, the tether extending from a point in or adjacent the said region to receive the gas generator to a point within the inflatable region which is remote from the gas generator.
In one embodiment the air-bag is formed from two super-imposed substantially identical layers of fabric, the layers of fabric being interconnected by a peripheral seam, the tether extending from the said region to receive a gas generator to, part of one of said layers of fabric spaced from said peripheral seam.
In another embodiment the air-bag is formed from two super-imposed layers of fabric interconnected by a peripheral seam, the internal tether extending from part of the peripheral seam to a point adjacent the region to receive the gas generator.
In a further embodiment the air-bag is formed from two super-imposed substantially identical layers of fabric interconnected by a peripheral seam there being a gusset or third layer of fabric interposed between said two layers of fabric over at least part of the peripheral seam, the tether extending from the said region to receive an air-bag to a side edge part of said gusset.
In yet a further embodiment of the invention the air-bag is formed from two adjacent layers of fabric of different sizes interconnected by a peripheral seam, the internal tether extending from the said region to receive the gas generator to part of the peripheral seam.
In order that the invention may be more readily understood, and so that further features thereof may be appreciated, the invention will now be described, by way of example, with reference to the accompanying drawings in which:
In the described embodiment of the invention, a side air-bag is provided which is intended to be mounted on a seat although it is to be appreciated that other embodiments of the invention may be mounted on part of the side of a motor vehicle. In each described embodiment of the air-bag, the air-bag is formed from two adjacent or super-imposed layers of fabric. The layers may be identical or, alternatively, may be of different sizes. The fabric layers are interconnected, for example, by means of a peripheral seam, although at least part of the peripheries of the layers being interconnected may have, between them, a third layer or “gusset” so as to provide a so-called “three-dimensional” air-bag.
In each embodiment of the invention an internal strap or tether is provided which interconnects, internally, two parts of the air-bag. The strap may be a single panel having a vertical extent of at least 50 mm or, alternatively, may comprise a plurality of straps which act together to replicate the action of the panel, with the distance between the lowermost edge of the lower strap and the uppermost edge of the upper strap exceeding 50 mm.
The strap or tether is mounted to the air-bag in such a way that the distance around the periphery of the air-bag, when conceded in horizontal section, from one end of the tether to the other end of the tether is greater in one direction than the other direction. Also the overall length of the tether is less than the lesser of the two distances around the periphery of the air-bag. The tether serves to divide the interior of the air-bag into two chambers, one chamber having a greater volume than the other chamber. The orientation of the tether is selected so that, on inflation of the air-bag, the air-bag effects an appropriate forward movement so that the air-bag may be positioned adjacent the side of a seat occupant to provide an appropriate degree of protection in an accident situation. Additionally, the internal tether serves the function of preventing excessive movement of part of the air-bag away from the point where the air-bag is initially mounted in position, thus helping ensure that the air-bag, when inflated, has a substantial thickness.
Referring initially to FIGS. 1 to 3 of the accompanying drawings, a side air-bag is illustrated, the side air-bag being formed from two substantially identical layers of fabric 1, 2. The layers of fabric may be two totally separate layers of fabric but, as shown, are regions of a single layer of fabric cut to a substantially “butterfly” shape and folded about a fold-line 3 so as to overlie each other. The super-imposed layers of fabric 1, 2 are interconnected by means of a peripheral seam 4 which, together with the fold-line 3, effectively seals the two layers of fabric together to form an inflatable air-bag. A gas generator 5 is provided located in position within the air-bag adjacent the fold-line 3. The side air-bag as thus far described is conventional.
Contained within the side air-bag is an internal tether 6. The tether 6, in this embodiment, is a panel of fabric, the panel of fabric having a width in excess of one-half of the total height of the air-bag 1. The width of the fabric is thus in excess of 50 mm. However, in alternative embodiments, the internal tether could be constituted by a plurality of straps which may be parallel with each other, acting in concert, the distance between the top of the uppermost strap and the bottom of the lowermost strap being in excess of 50 mm.
In the illustrated embodiment of the invention the internal tether 6 is secured to the two identical layers of fabric 1, 2 in the region of the fold-line 3. The internal tether is also connected, by means of stitching 7, to one layer of fabric the panel 2 at a point which is spaced away from the fold-line 3 at a point which is relatively close to (but still spaced from) the peripheral seam 4. The stitching 7 is at a point within the inflatable region of the air-bag which is remote. Thus, when considering the air-bag in horizontal section, the distance around the periphery of the bag from the fold-line 3, as connected to one end of the tether 6 and the stitching 7 connecting the other end of the tether to the air-bag is greater in one direction, namely the clockwise direction, than the other direction, namely the anti-clockwise direction. Also, the length of the internal tether 6, that is to say the distance between that part of the tether which is connected to the fold 3 and that part of the tether which is connected to the fabric 2 by the stitching 7, is less than the shorter distance around the periphery of the bag from the fold-line 3 to the stitching 7, that is to say the distance around the periphery in the anti-clockwise direction.
The tether 6 can be considered to divide the air-bag into two adjacent notional chambers. One chamber is of greater volume than the other chamber.
It is to be appreciated that the air-bag is to be mounted in the side part of a back-rest 10 of a vehicle seat which is located adjacent one side 11 of the vehicle.
The air-bag will be inflated, in a conventional manner, in the event that an accident should arise. On inflation of the air-bag gas from the gas generator will fill the volume between the two super-imposed layers 1 and 2. The effect of the tether 6, and the two notional chambers will be to tend to pull the air-bag, as it inflates, so that the air-bag will extend forwardly adjacent the side of the vehicle as shown in
Whilst the invention has been described with reference to one embodiment of
Turning now to
The air-bag of
In the present Specification “comprises” means “includes or consists of” and “comprising” means “including or consisting of”.
Number | Date | Country | Kind |
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0326258.1 | Nov 2003 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/EP04/12425 | 11/3/2004 | WO | 4/19/2007 |