ROLLOVER PROTECTIVE DEVICE
20170361799 ยท 2017-12-21
Inventors
Cpc classification
B60R2021/132
PERFORMING OPERATIONS; TRANSPORTING
B60R2021/134
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A rollover protective device (1) for a passenger vehicle has a supporting device (3) extending in the vertical elevation (2) when installed correctly. A crossbar (5) is fastened to the supporting device (3) and extends in a lateral direction (4) when installed correctly. The crossbar (5) is of beam-shaped design and is formed by a sheet metal construction (6) with a deformed front side and/or upper side (7, 8) and an inner supporting structure (9).
Claims
1. A rollover protective device for a passenger vehicle, with a supporting device extending in the vertical elevation when installed correctly, and a crossbar fastened to the supporting device, the crossbar extending in a lateral direction when installed correctly, the crossbar being formed from sheet metal that has been deformed to define a front side and/or upper side and an inner supporting structure.
2. The rollover protective device of claim 1, wherein the supporting structure comprises a plurality of rib- or foot-like supporting units.
3. The rollover protective device of claim 2, wherein cavities are provided between the supporting units.
4. The rollover protective device of claim 3, wherein at least one of the supporting units forms a cavity.
5. The rollover protective device of claim 3, wherein at least one of the supporting units is an integral component part of the sheet metal.
6. The rollover protective device of claim 2, wherein the supporting structure is integrally with the sheet metal.
7. The rollover protective device of claim 2, wherein the supporting structure or at least one supporting unit is formed by at least one punched/bent part.
8. The rollover protective device of claim 2, wherein the sheet metal of the crossbar is deep drawn.
9. The rollover protective device of claim 8, wherein the front side of the crossbar is a deep-drawn metal sheet, and wherein a rear side is a punched/bent part.
10. The rollover protective device of claim 2, wherein the sheet metal of the crossbar and at least one supporting unit are connected to each other by a weld seam or by rivets.
11. The rollover protective device of claim 1, wherein the crossbar is provided with rounded portions at the lateral ends.
12. The rollover protective device of claim 1, wherein the crossbar has a rounded surface on a front side.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION
[0047]
[0048] In the embodiment of
[0049] The sheet metal construction 6 is produced from a metallic sheet that is formed by a deep drawing deformation process to form the substantially beam-shaped structure of the crossbar 5. The deformation process results in the formation of the interior of the sheet metal construction 6, and the interior subsequently is stiffened by the supporting structure 9 with supporting units 10, 11 and 12.
[0050] Cavities 14, 15 are formed between and next to the supporting units 10 to 12. Overall, five cavities are provided here, with the cavities 14, 15 extending substantially in a longitudinal direction 13 of a vehicle when the crossbar 5 and the rollover protective device 1 are installed correctly.
[0051] Each supporting unit 10-12 has a rear wall 21. Lateral walls 22 and 23 are formed on the individual supporting units 10 to 12 by a bending process and extend substantially in the longitudinal direction 13 of the vehicle and at least partially in the vertical direction. Lateral supporting feet 24, 25 are bent over at the lower end of the supporting units 10 to 12 and are supported on the lower side 29 of the sheet metal construction and provide better dissipation of forces.
[0052] In this embodiment, the central middle supporting unit 11 is connected unitarily with the lower side 29 of the sheet metal construction 6 and, after being punched out, is bent up. A fastening 18 for the rear window penetration element is provided at the upper end and is stabilized by the supporting unit 11. The upper end of the supporting unit 11 of tab-shaped design can be riveted, welded or screwed to the upper side 8 of the sheet metal construction. A frictional connection is also conceivable.
[0053] The side walls 22, 23 of the middle support unit 11 extend virtually perpendicularly upward in this view. However, the side walls 22 and 23 of the left supporting unit 10 and the right supporting unit 12 are more greatly inclined with respect to the vertical for optimal dissipation of forces occurring during a rollover.
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[0057] The supporting structure 9 with the 3 supporting units 10 to 12 is premanufactured as a separate part and subsequently is inserted into the interior of the sheet metal construction 6 or of the (basic) body of the crossbar 5. Subsequently, the supporting structure 9 is fixed to the sheet metal construction 6 by suitable connecting means 19. In particular, the adjoining edges of the supporting structure 9 and of the sheet metal construction 6 are welded to each other (at least at points and in particular in sections or else circumferentially).
[0058] In contrast to the previous exemplary embodiment, on the individual supporting units 10 to 12, impressions 17 are formed on the respective rear walls, and therefore the stability can be increased even further.
[0059] The two-part structure of the crossbar 5 can be seen in
[0060]
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[0062] Cavities 14, 15 are provided adjacent the supporting units 10 to 12. The supporting units 10 to 12 can have a, for example, U- or V-shaped cross section.
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[0065]
[0066] Yet another embodiment of a rollover protective device according to the invention is illustrated in
[0067]
[0068] Overall, the safety and the stability in a passenger vehicle and in particular a convertible are increased with the rollover protective device 1 according to the invention. The crossbar 5 of the rollover protective device 1 according to the invention is distinguished by a low weight and a high degree of stability and high and uniform deformability while at the same time the production is possible relatively simply and cost-effectively.
[0069] In all of the refinements, cushions or end caps can be avoided by means of a suitable rounded portion. At the same time, high dissipation of energy is possible. In all of the refinements and developments, use is preferably made of metal sheets and in particular aluminum sheets in order to form an integral or two-part aluminum sheet metal construction with a deformed front and upper side and an inserted or retracted inner supporting structure. The supporting structure can be fixed in position by rivets or by weld seams or else by screws or other suitable connecting means.
LIST OF REFERENCE NUMBERS
[0070] 1 Rollover protective device [0071] 2 Vertical elevation [0072] 3 Supporting device [0073] 4 Lateral direction [0074] 5 Crossbar [0075] 6 Sheet metal construction, basic body [0076] 7 Front side [0077] 8 Upper side [0078] 9 Supporting structure [0079] 10 Supporting unit [0080] 11 Supporting unit [0081] 12 Supporting unit [0082] 13 Longitudinal direction [0083] 14 Cavity [0084] 15 Cavity [0085] 16 Rear side [0086] 17 Impression [0087] 18 Fastening of the rear window penetration element [0088] 19 Connecting means [0089] 20 Bend [0090] 21 Rear wall [0091] 22 Side wall [0092] 23 Side wall [0093] 24 Supporting foot [0094] 25 Supporting foot [0095] 26 Cavity [0096] 27 Arch [0097] 29 Lower side [0098] 30 Punched/bent part [0099] 31 Weld seam [0100] 32 Upper shell [0101] 33 Lower shell [0102] 34 Inner reinforcement [0103] 35 Deep drawn region of upper shell [0104] 36 Deep drawn region of lower shell [0105] 37 Blank