MODULE BASE ELEMENT FOR A VEHICLE OCCUPANT PROTECTION SYSTEM AND VEHICLE OCCUPANT PROTECTION SYSTEM
20210122316 · 2021-04-29
Assignee
Inventors
Cpc classification
B60R21/231
PERFORMING OPERATIONS; TRANSPORTING
B60N2/14
PERFORMING OPERATIONS; TRANSPORTING
B60R2021/23107
PERFORMING OPERATIONS; TRANSPORTING
B60R2021/2173
PERFORMING OPERATIONS; TRANSPORTING
B60R21/20
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R21/20
PERFORMING OPERATIONS; TRANSPORTING
B60N2/14
PERFORMING OPERATIONS; TRANSPORTING
B60N3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure describes a module base element for a vehicle occupant protection system comprising at least one module carrier for receiving at least one airbag module wherein the airbag module comprises at least one airbag and the airbag is connected to a gas source, especially a gas generator, and comprising a hinged arm having at least one hinged element so that the module carrier can be moved from an idle position to an operating position and from an operating position to an idle position, and comprising a lap restraint element. The present disclosure further describes a vehicle occupant protection system for protecting a vehicle occupant in a vehicle seat comprising at least one restraint element, wherein at least one restraint element of the vehicle occupant protection system is disposed in a module base element according to the present disclosure.
Claims
1. A module base element for a vehicle occupant protection system comprising: a module carrier for receiving at least one airbag module, wherein the airbag module comprises at least one airbag and the airbag is connected to a gas source, especially a gas generator, a hinged bracket including at least one hinged element so that the module carrier can be moved from an idle position to an operating position and from the operating position to an idle position, and a lap restraint element.
2. The module base element according to claim 1, characterized by a torso and head restraint element.
3. The module base element according to claim 1, characterized in that the airbag module comprises a front airbag in the form of a torso and head restraint element and a lap restraint airbag in the form of a lap restraint element, or in that a first airbag module is configured as a front airbag module including a front airbag as a torso and head restraint element, and a second airbag module is configured as a lap restraint airbag module including a lap restraint airbag as lap restraint element.
4. The module base element according to claim 1 wherein the lap restraint element comprises a lap restraint member which is disposed in the module carrier.
5. The module base element according to wherein the module base element is a control element.
6. The module base element according to claim 1 wherein the module carrier is in the form of a restraint element, wherein the module carrier is a rebound element and at least partly has an energy-absorbing structure which is not formed by the head airbag and the lap restraint airbag.
7. The module base element according to claim 1 wherein the module carrier comprises a central airbag module including a lateral airbag on the far side, or in that the front airbag module is configured such that, in the idle position of the module carrier, the front airbag constitutes a lateral airbag on the far side.
8. The module base element according to claim 1 wherein the module carrier can be mechanically, electromechanically or electrically adjusted, especially swiveled, via a module carrier adjusting mechanism.
9. The module base element according to claim 1 wherein the module carrier comprises a user interface, especially a control panel and/or a display and/or an interface for an electronic mobile device.
10. The module base element according to claim 1 wherein the airbag module is activated by the control element in the operating position only.
11. The module base element according to claim 1 wherein the hinged bracket comprises a connection element for attaching the module base element to a vehicle structure element and/or a vehicle seat element.
12. The module base element according to claim 1 wherein the module carrier adjusting mechanism can be coupled to a vehicle seat adjusting mechanism via the control element.
13. The module base element according to claim 1 further comprising a retaining element for locking the module carrier in the operating position.
14. A vehicle occupant protection system for protecting a vehicle occupant in a vehicle seat comprising; at least one restraint element wherein the at least one restraint element of the vehicle occupant protection system is arranged in a module base element further comprising, a module carrier for receiving at least one airbag module, wherein the airbag module comprises at least one airbag and the airbag is connected to a gas source, especially a gas generator, a hinged bracket including at least one hinged element so that the module carrier can be moved from an idle position to an operating position and from the operating position to an idle position, and a lap restraint element.
15. The vehicle occupant protection system according to claim 14, characterized in that the module base element is assigned to each vehicle seat.
16. The vehicle occupant protection system according to claim 14 wherein the module base element is connected to the vehicle structure or the vehicle seat via the connection element.
17. The vehicle occupant protection system according to claim 14 wherein a position of the module carrier relative to the vehicle seat can be adapted, especially automatically adapted, via the hinged bracket and/or the module carrier adjusting mechanism.
18. The vehicle occupant protection system according to claim 14 wherein the airbag module and/or the lap restraint element disposed in the module base element can be activated in a situation of restraint only if the module carrier is in the operating position.
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Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0065] Further advantages, features and details of the present disclosure will be evident from the following description of an example embodiment which is not intended to be limiting, as well as from the drawings, wherein
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DETAILED DESCRIPTION
[0085]
[0086] In
[0087] The module base element 2 further comprises a hinged bracket 6 including hinged elements 8. The hinged bracket 6 is attached to the vehicle structure, here to the vehicle seat 14, via a connection element. The module carrier 4 can be moved, by the hinged bracket 6, to an operating position shown in
[0088] The illustrated module base element 2 comprises plural airbag modules 30 arranged within the module carrier 4. It is evident from
[0089] The lap restraint airbag module 32 comprises a lap restraint element 28 in the form of a lap restraint airbag 34 (cf.
[0090] The front airbag module 40 comprises a torso and head restraint element in the form of a front airbag 46 (cf.
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[0092] In the manual driving operation as shown in
[0093] In an alternative embodiment, in the module carrier 4 a front airbag module 40′ can be arranged whose front airbag is designed so that in the idle position the front airbag can adopt the function of a central airbag, especially a lateral airbag on the far side. In such embodiment, the front airbag module 40′ can be activated even in the idle position of the module carrier 4 shown in
[0094] Moreover, in
[0095] In
[0096] The module carrier 4 comprises a retaining element 36 in the shown example embodiment. The retaining element 36 is connected to a retaining element holder 38 which in turn is connected to the vehicle structure. The module carrier 4 of the module base element 2 can be additionally locked in the operating position by the retaining element 36. The retaining element 36 and the retaining element holder 38 and/or the hinged bracket 6 and the hinged elements 8 are designed, in one embodiment, such that they can transmit forces generated in a situation of restraint to the vehicle structure.
[0097] The retaining element 36 and/or the retaining element holder 38 comprise an adjusting element controllable by the module carrier adjusting mechanism. The module base element may further comprise sensor elements which are coupled to the control element of the module base element 2 so that an operating position of the module carrier 4 which is optimally aligned with the vehicle occupant 18 is adjustable via the module carrier adjusting mechanism of the module carrier 4.
[0098] In the shown module carrier 4, furthermore different user interfaces 22 are integrated. Apart from a screen/display 24, the shown module carrier 4 comprises a control panel 26. The control panel 26 and the display 24 can be in the form of comfort elements for the vehicle occupant 18. In addition, the control panel 26 and the display 24 can be adapted to be coupled to the vehicle control system so that the vehicle occupant 18 can control and/or check various functions of the vehicle through said user interfaces 22.
[0099] If the module carrier 4 is arranged and locked in the operating position, it is possible to achieve sufficient protection for the vehicle occupant 18 without the seat belt of the belt system 58. In such an embodiment, the protecting and restraining functions of the belt system must be taken over by the module carrier 4, the restraint elements integrated in the module carrier 4 as well as the further restraint elements of the vehicle occupant protection system 10.
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[0101] The module carrier adjusting mechanism in the illustrated example embodiment is coupled to the vehicle seat adjusting mechanism. The coupling helps to achieve, when the vehicle seat 14 is adjusted, that the position of the module carrier 4 is automatically adapted to the changed position of the vehicle seat 14 and of the vehicle occupant 18. Alternatively, the position of the module carrier 4 can be adapted by the module carrier adjusting mechanism via the control element by sensor data of the module base element. Accordingly, the position of the module carrier 4 is changed so that the lap restraint element 28 and/or the torso and head restraint element are aligned preferably optimally with the vehicle occupant 18. The arrows 60 exemplify possible directions of movement and rotation into which the module carrier 4 can be moved/swiveled for adapting the position.
[0102] The module carrier 4 of the module base element 2 of the shown vehicle occupant protection system 10 moreover can be a rebound element which is made at least partly from energy-absorbing material and/or has an energy-absorbing structure.
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[0104] In the area of the lower side 62 of the module carrier 4, the lap restraint airbag module 32 is disposed. In the shown situation of restraint, the lap restraint airbag 34 helps to limit or, in the ideal case, almost prevent any forward movement of the pelvis/pelvic region 66 of the vehicle occupant 18. In this way, e.g. the risk of the vehicle occupant 18 submarining beneath the module carrier 4 and/or the lap element of the belt system not shown in
[0105] Furthermore, by limiting the lap movement it is possible to improve the course of the forward displacement of the vehicle occupant 18, as a rotation 68 of the torso 64 of the vehicle occupant 18 toward the module carrier 4 and the torso and head restraint element in the form of a front airbag 46 is generated. In the shown embodiment, both the lap restraint airbag 34 and the front airbag 46 are filled with gas by a gas generator 48 assigned to the respective airbag module 30 (lap airbag module 32 and front airbag module 40).
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[0109] In this embodiment, the vehicle occupant protection system 10 moreover comprises additional restraint elements such as front airbag modules 40 known from prior art which are arranged within the steering wheel 20 or the instrument panel 12. For example, the vehicle occupant protection system 10 may further include belt systems 58 and/or head airbag modules arranged in the area of the roof edge. Furthermore, in the shown example embodiment, restraint elements can also be arranged in the A, B, C and/or D pillars 70, 72, 74 and 76.
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[0111] In order to reduce the risk of the side member extension 78 of the front airbag 46 bending away, in addition the lateral airbags 52 disposed in the seat side members 82 can be activated and filled with gas. Preferably, only the lateral airbag 52 that faces the impact side is activated. The lateral airbag 52 helps to additionally stabilize the front airbag 46 in such a situation of restraint. In the event of an oblique frontal crash on the driver side, such stabilization is effectuated in the shown stabilizing areas 80.
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[0113] Moreover, in the shown embodiment, only the respective lateral airbags 52 located in the direction of movement 84 of the vehicle occupant 18 were filled with gas by the control of the vehicle occupant protection system 10.
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[0115] The front airbags 42 and the lateral airbags 52 serve as backup elements for the front airbags 46. Preferably, the front airbags 42 and the lateral airbags 52 can be activated and filled with gas by a control of the vehicle occupant protection system 10 in response to a severity of the crash which triggers the situation of restraint.
[0116] In
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