Abstract:
An apparatus for an airbag arrangement including a frame part and an airbag package. The frame part may be a part of a base body of a motor vehicle seat. The airbag package is fastened to the frame part. The airbag package includes a folded-up airbag that may be inflated with gas. The airbag package further includes at least one clamping element that is configured to press the airbag package against the frame part. The clamping element includes a first and a second end region via which the clamping element is secured to the frame part. The two end regions are connected to one another via a pretensionable bearing region of the clamping element. The clamping element includes an intermediate layer extending between the airbag package and the frame part, that together with the bearing region encompasses the airbag package in cross section by 360°.
Abstract:
A vehicle seat arrangement having a motor vehicle seat, in which arrangement it is possible to control the kinematics of the motor vehicle seat and/or of a vehicle occupant situated thereon, in such a way that, in the event of a crash, there is as small a relative movement as possible between the vehicle occupant and the motor vehicle seat along the direction of the crash forces.
Abstract:
The invention relates to a gas flow distributor for a lateral airbag module. Said distributor is used to distribute a gas ON flow leaving a gas generator by the outflow openings thereof, in a targeted manner, in a gas bag which is to be inflated by the gas generator. According to the invention, the gas flow distributor is formed by a dimensionally stable receiving element (1) surrounding the gas generator, at least in the region of the outflow openings.
Abstract:
An airbag for a vehicle occupant restraint system of a motor vehicle is provided. The airbag comprising at least one first and one second layer of an airbag material, at least one inflatable chamber formed between the first and the second layer, which is inflatable for the protection of a vehicle occupant and at least one seam, by which the first and the second layer are connected with each other along at least a portion of their respective circumference. The airbag is deployed between a vehicle occupant and a vehicle side structure. The airbag is formed such that when the airbag is mounted in the vehicle and inflated, the seam extends along a plane which is oriented obliquely or transversely to a plane formed by the longitudinal and the height direction of the vehicle.
Abstract:
An airbag for a vehicle occupant restraining system is provided. The airbag comprises a first inflatable area; a second inflatable area; a shoulder area arranged between the first and seconds area. The shoulder area extends in the inflated status of the airbag in the area of a shoulder and/or in an upper arm region of the vehicle occupant to be protected. The shoulder area has a thickness lower than the thickness of the first and second areas as determined in a direction vertical to the main plane of extension of the inflated airbag or comprises a recess in the airbag. The airbag is to be arranged in a vehicle such that, in case of a side collision of the vehicle, the shoulder and/or the upper arm region of the vehicle occupant strikes the shoulder area of the airbag.
Abstract:
A side gas bag arrangement for a vehicle occupant restraint system of a motor vehicle is provided. The side gas bag arrangement comprising at least one side gas bag inflatable for the protection of a vehicle occupant, which with a side gas bag arrangement mounted in the vehicle and in the inflated condition of the side gas bag extends along a long side of the vehicle, wherein the side gas bag includes at least one inflatable chamber which is formed such that in the inflated condition of the side gas bag it extends over a side window of the vehicle and in direction of the vehicle floor beyond a door sill adjoining the side window; and sealing means which at least seal a partial region of the side gas bag, so that gas is prevented from flowing out of this partial region to the outside.
Abstract:
The invention relates to an airbag arrangement, comprising a gas bag, a gas generator for inflating the gas bag, a flexible chamber arranged within the gas bag, into which the gas from the gas generator flows, at least one outlet opening through which the gas is led into the gas bag in order to inflate the same and at least one ventilating opening, through which gas can escape into the environment. According to the invention, the ventilating opening (E) is arranged such that gas from the flexible chamber (2) can reach the ventilating opening (E) without passing through the outlet opening of the flexible chamber (2).
Abstract:
The disclosed apparatus can control the cross section of at least one vent opening of an airbag module, through which gases can escape into the environment. The apparatus can include: at least one covering part for at least partially covering the at least one vent opening and an operating mechanism comprising a gas source and an inflatable element in fluid communication with the gas source. The inflatable element can be configured to produce a variation in the outlet cross section of the vent opening in cooperation with the covering part.
Abstract:
An airbag fabric including a tear resistant structure is provided. The tear resistant structure may include tear resisting threads positioned parallel to the warp and weft threads. The tear resistant structure may also include a plurality of tear barriers positioned on the fabric in separate island shaped structures.
Abstract:
The invention relates to an airbag arrangement, comprising a gas bag, a gas generator for inflating the gas bag, a flexible chamber arranged within the gas bag, into which the gas from the gas generator flows, at least one outlet opening through which the gas is led into the gas bag in order to inflate the same and at least one ventilating opening, through which gas can escape into the environment. According to the invention, the ventilating opening (E) is arranged such that gas from the flexible chamber (2) can reach the ventilating opening (E) without passing through the outlet opening of the flexible chamber (2).