AIRBAG FOR A VEHICLE OCCUPANT RESTRAINING SYSTEM
20220089117 · 2022-03-24
Inventors
Cpc classification
B60R21/203
PERFORMING OPERATIONS; TRANSPORTING
B60R2021/2395
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to an airbag (14) for a vehicle occupant restraint system comprising an airbag panel (16) defining an inflatable airbag volume, a tether (22) extending inside the airbag (14) through the inflatable airbag volume, a discharge port (24) formed in the airbag panel (16) and a discharge port closure (26) for closing the discharge port (24), wherein the tether (22) extends from a first tether end (32) tightly connected to the airbag panel (16) in the direction of the discharge port (24) to an opposite second tether end (34), wherein the discharge port closure (26) is connected both to the second tether end (34) and to the airbag panel (16), wherein the tether (22) at least in portions has a two-ply design and includes two strap layers (36, 38), wherein further a control strap (40) is provided which extends transversely to the tether (22) through the inflatable airbag volume as well as two control strap portions (42, 44), and wherein a first control strap portion (42) is fastened to the airbag panel (16) as well as to the first strap layer (36) and a second control strap portion (44) is fastened to the airbag panel (16) as well as to the second strap layer (38).
Claims
1. An airbag for a vehicle occupant restraint system, comprising an airbag panel (16) which defines an inflatable airbag volume, a tether (22) which extends in the interior of the airbag (14) through the inflatable airbag volume, a discharge port (24) which is formed in the airbag panel (16), and a discharge port closure (26) for closing the discharge port (24), wherein the tether (22) extends from a first tether end (32) tightly connected to the airbag panel (16) in the direction of the discharge port (24) to an opposite second tether end (34), wherein the discharge port closure (26) is connected both to the second tether end (34) and to the airbag panel (16), and wherein the tether (22) at least in portions has a two-ply design and includes two strap layers (36, 38), wherein a control strap (40) is provided which extends transversely to the tether (22) through the inflatable airbag volume and includes two control strap portions (42, 44), wherein a first control strap portion (42) is fastened to the airbag panel (16) as well as to the first strap layer (36) and a second control strap portion (44) is fastened to the airbag panel (16) as well as to the second strap layer (38).
2. The airbag according to claim 1, wherein the tether (22) has a two-ply design between a first branching point (50) and a second branching point (52), wherein the first control strap portion (42) is fastened to the first strap layer (36) in a first coupling point (54) substantially centrally between the branching points (50, 52) and the second control strap portion (44) is fastened to the second strap layer (38) in a second coupling point (56) substantially centrally between the branching points (50, 52).
3. The airbag according to claim 1, wherein in the inflated state of the airbag (14) the two strap layers (36, 38) form a diamond, wherein each of the two branching points (50, 52) and the two coupling points (54, 56) form a vertex of the diamond.
4. The airbag according to claim 1, wherein with a completely inflated airbag (14) a connecting point (46) of the first control strap portion (42) to the airbag panel (16) and a connecting point (48) of the second control strap portion (44) to the airbag panel (16) are substantially opposed to each other.
5. The airbag according to claim 1, characterized in that the discharge port closure (26) for closing the discharge port (24) comprises two closure tabs (28) which in the interior of the airbag (14) is fastened to the second tether end (34), wherein the closure tabs (28) extend from the interior of the airbag (14) through the discharge port (24) to the outside of the airbag (14) and are fastened from outside to the airbag panel (16).
6. The airbag according to claim 1, wherein, when the airbag (14) is inflated, the internal airbag pressure acts on the discharge port closure (26) in the direction of an open position which releases the discharge port (24) for a gas flow.
7. The airbag according to claim 1, wherein a tether length, a control strap length and a length of the two strap layers (36, 38) are adapted to a geometry of the airbag (14) so that, when the airbag (14) is completely inflated, the discharge port closure (26) adopts a closing position in which the discharge port (24) is substantially closed.
8. The airbag according to claim 1, wherein the airbag panel (16) includes a front panel portion (18) and a rear panel portion (20), with the discharge port (24) being formed in the rear panel portion (20) and the first tether end (32) being tightly connected to the front panel portion (18).
9. A steering wheel assembly comprising a vehicle steering wheel (12) which is rotatable about a steering axle (A) and an airbag module which includes an airbag (14) according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Further features and advantages of the invention will be resulting from the following description of a preferred embodiment with reference to the drawings, wherein:
[0019]
[0020]
[0021]
[0022]
DESCRIPTION
[0023]
[0024] The general functional principle of the airbag 14 explained in detail in the following can be easily conferred upon other fields of application of airbag modules as well, however. Consequently, the airbag 14 need not absolutely be a driver-side front airbag but can be used also otherwise with minor adaptations, for example as a passenger airbag.
[0025] The airbag 14 comprises an airbag panel 16 that includes a front panel portion 18 and a rear panel portion 20 and defines an inflatable airbag volume, a tether 22 which extends inside the airbag 14 through the inflatable airbag volume, a discharge port 24 which is formed in the rear panel portion 20 of the airbag panel 16 as well as a discharge port closure 26 for closing the discharge port 24. In this context, a portion of the airbag panel 16 is referred to as a front panel portion 18 which in the inflated state of the airbag 14 faces a vehicle occupant 30, wherein in
[0026] The tether 22 extends, in the inflated state of the airbag 14, from a first tether end 32 tightly connected, especially stitched, to the front panel portion 18 in the direction of the discharge port 24 to an opposite second tether end 34.
[0027] The discharge port closure 26 is connected, especially stitched, both to the second tether end 34 and to the airbag panel 16. Concretely speaking, in the present example embodiment the discharge port closure 26 comprises for closing the discharge port 24 two closure tabs 28 which are connected, especially stitched, inside the airbag 14 to the second tether end 34, wherein the closure tabs 28 extend from the interior of the airbag 14 through the discharge port 24 to the outside of the airbag 14 and are connected, especially stitched, from outside to the rear panel portion 20 of the airbag panel 16 on opposite sides of the discharge port 24.
[0028] When the airbag 14 is inflated, an internal airbag pressure acts on the discharge port closure 26 in the direction of an open position in which the discharge port 24 is released for a gas flow (see
[0029] According to
[0030] Furthermore, the airbag 14 comprises a control strap 40 which includes two control strap portions 42, 44 and is coupled to the tether 22. With the exception of the coupling area to the tether, the control strap 40 extends transversely in the interior of the airbag 14, in the completely inflated and non-deformed state of the airbag 14 especially substantially perpendicularly to the tether 22. A first control strap portion 42 is fastened to the airbag panel 16 and to the first strap layer 36 and a second control strap portion 44 is fastened to the airbag panel 16 as well as to the second strap layer 38.
[0031] In the shown embodiment, in the inflated state of the airbag 14 a connecting point 46 of the first control strap portion 42 to the airbag panel 16 and a connecting point 48 of the second control strap portion 44 to the airbag panel 16 are substantially opposed to each other, wherein the control strap 40 extends through an airbag center. According to
[0032] In the present example embodiment, the tether 22 has a two-ply design between a first branching point 50 and a second branching point 52, wherein the first control strap portion 42 is fastened to the first strap layer 36 in a first coupling point 54 centrally between the branching points 50, 52. The second control strap portion 44 correspondingly is fastened to the second strap layer 38 in a second coupling point 56 centrally between the branching points 46, 48.
[0033] The first strap layer 36 and the second strap layer 38 are unconnected between the two branching points 50, 52 and in the inflated state of the airbag 14 form a diamond, wherein each of the two branching points 50, 52 and the two coupling points 54, 56 show a vertex of the diamond.
[0034] In the detailed cutouts of
[0035]
[0036]
[0037] The rear panel portion 20 of the airbag 14 bears against the vehicle steering wheel 12 and the first tether end 32 moves in the direction of the rear panel portion 20. Due to this movement of the tether end 32 and the pressurization of the discharge port closure 26 by the internal airbag pressure in the direction of its open position, the discharge port 24 is released for a gas flow.
[0038] At the beginning of the airbag deformation according to
[0039] The general functional principle for releasing the discharge port 24 in the case of frontal impact of the vehicle occupant 30 according to
[0040]
[0041] From such occupant contact an airbag deformation is resulting which removes the tension from the control strap 40 so that the control strap 40 extends loosely in the interior of the airbag and no more tensile force acts on the control strap.
[0042] The tether 22 continues to remain tensile-loaded, however, as the internal airbag pressure acts on the discharge port closure 26 in the direction of its open position. Accordingly, the diamond formed between the tether 22 and the control strap 40 deforms so that the two strap layers 36, 38 extend substantially in the longitudinal direction of the tether 22 (see