This application claims priority from German Patent Application No. 20304712.5 filed Mar. 17, 2003, which is hereby incorporated by reference.
The invention is for a steering wheel with at least one device for the fastening of build-on parts according to the preamble of claim 1.
It is known to fasten build-on parts of various types, for example different switches, to steering wheels. In this context, in practice, each vehicle manufacturer has his own ideas regarding the type and mounting location of the build-on parts. Since a steering wheel manufacturer will as far as possible like to satisfy the various requirements by means of existing steering wheel skeleton structures for reasons of cost, he has two possibilities for making these structures practicable.
One possibility is to mount domes, straps and other devices for the fastening of build-on parts to a steering wheel onto the existing skeleton structure at a later stage by means of die changes. The disadvantage of this procedure is that changes are possible only via a 3-D model. The original skeleton die, that is to say the mold for producing the skeleton, has to be dismantled for the change and the mold has to be modified by erosion, for which purpose a new electrode has to be made. Furthermore, it is necessary, after the change has been concluded, once again to carry out a free-testing method. This procedure results, overall, in high additional costs. A further disadvantage is that, as a result of the accumulation of material at the spokes due to domes and straps, the bending strength of the steering wheel skeleton is adversely influenced.
The second possibility is to drill into the steering wheel skeleton, for example in the region of the spokes, in order to screw on build-on parts there. The disadvantage, here, is that the strength characteristics of the aluminum or magnesium skeleton are impaired, above all, during drilling into the spokes. This increases the risk that a spoke fracture will occur in the event of a crash.
The object on which the invention is based is to mount build-on parts onto a standard steering wheel skeleton, without the strength values of the steering wheel skeleton being modified and without considerable additional costs being incurred.
This is achieved, according to the invention, according to the features of claim 1.
In a steering wheel with at least one device for the fastening of build-on parts, the steering wheel having a steering wheel skeleton surrounded by foam, the device provided according to the invention for the fastening of build-on parts is, on the steering wheel skeleton, a holding part which is fixed by means of a foam surround which projects out of the foam surround for the fastening of at least one build-on part. One advantage of this arrangement is that standard steering wheels can be adapted to customer stipulations without high outlay and without any loss of strength in a steering wheel skeleton, since no structural changes have to be carried out on the steering wheel or there is no need to drill into the steering wheel skeleton. It is necessary merely to make the additional holding part and to position it, together with the steering wheel skeleton, in the steering wheel foaming mold before said steering wheel skeleton is surrounded by foam. As a result, development times and development costs can be saved, in particular also due to additional tests being dispensed with. Even at the start of development, different design variants of a steering wheel are often necessary. Even in this case, fewer dies are required through the use of the invention.
A further advantage is that fixing is possible, irrespective of the material of the steering wheel skeleton, that is to say fixing is possible both to aluminum and to magnesium skeletons.
In one embodiment, there is provision for the holding part to bear against the steering wheel skeleton. It is fixed in this position by the foam surround. In addition, in this embodiment, the holding part may be adhesively bonded to the steering wheel skeleton. As a result, increased durability is achieved and fixing within the foaming mold is also made easier.
In the second embodiment, there is provision for an interspace, which is filled by the steering wheel foam surround, to be present between the steering wheel skeleton and the holding part.
The holding part may be designed differently. Thus, in one embodiment, there is provision for the holding part to surround the steering wheel skeleton at least partially at one point, in each case said holding part may, for example, have a U-shaped or L-shaped design.
Furthermore, however, the holding part may also have a flat design in the region of the steering wheel skeleton. In this case, therefore, the holding part lies against the steering wheel skeleton on only one side, without at least partially surrounding the latter.
The holding part is preferably provided on a spoke of the steering wheel. Furthermore, the holding part is preferably designed as a sheet metal part. A sheet metal part can be produced in the most diverse dimensions and shapes without complicated tools and therefore cost-effectively. However, the holding part provided may also be a plastic part.
To adapt to the most diverse requirements, it is expedient not to fasten the build-on parts directly to the holding part, but to an adaptor, for example an adaptor plate, which is connected as the first build-on part to the holding part. As a result, the holding part can be configured in a simple way, irrespective of the type and size of the build-on parts, and, under some circumstances, can be used for the different customer orders.
The holding part may be connected to the build-on parts by means of screws or rivets. These can be used at this point, since the steering wheel skeleton does not have to be drilled into and therefore the strength of the steering wheel skeleton is not impaired.
In one embodiment, there is provision for that portion of the holding part which lies within the steering wheel foam surround to have a smaller longitudinal extent than the portion which lies outside the steering wheel foam surround. The longitudinal extent refers, in relation to the holding part on the spoke, to the extent in the direction of the spoke longitudinal axis. Other length ratios are, of course, possible according to the different requirements.
The invention will be explained in exemplary embodiments with reference to drawings in which:
The advantage of this arrangement is that complex build-on parts can be fastened to standard steering wheel skeletons, without the steering wheels having to be modified. Only the holding part is to be adapted in size and shape to that portion of the steering wheel skeleton to which it is to be fastened.
In the present embodiment, an adaptor plate 6 is fastened as a first build-on part to the holding part 3 by means of screws 7. This adaptor plate makes it possible to bring a further build-on part 8 into a position which allows the latter to be mounted by means of a screw 9 past the steering wheel skeleton, without the latter being adversely weakened in terms of strength. In the embodiment illustrated, the build-on part 8 is a paddle switch.
Insofar as simple build-on parts are to be mounted on the steering wheel skeleton, these may be fastened directly to the holding part 3, even without an adaptor, by means of screws or rivets.
The embodiment of
The embodiment of
Number | Date | Country | Kind |
---|---|---|---|
203 04 712 U | Mar 2003 | DE | national |
Number | Name | Date | Kind |
---|---|---|---|
3977271 | Becker | Aug 1976 | A |
5794968 | Yamamoto et al. | Aug 1998 | A |
6079736 | Koide | Jun 2000 | A |
6098494 | Kellogg et al. | Aug 2000 | A |
6244620 | Bathon et al. | Jun 2001 | B1 |
6312012 | Bohn et al. | Nov 2001 | B1 |
6354622 | Ulbrich et al. | Mar 2002 | B1 |
6418814 | Emeneth et al. | Jul 2002 | B1 |
6889436 | Derrick | May 2005 | B2 |
20020033321 | Miyako et al. | Mar 2002 | A1 |
20020034972 | Verbeek et al. | Mar 2002 | A1 |
20020124682 | Schutz | Sep 2002 | A1 |
20030024798 | Kreuzer | Feb 2003 | A1 |
Number | Date | Country |
---|---|---|
94 21 012 | Apr 1995 | DE |
199 14 653 | Jul 2000 | DE |
000945310 | Sep 1999 | EP |
1 142 771 | Oct 2001 | EP |
1 188 638 | Mar 2002 | EP |
1 281 597 | Feb 2003 | EP |
2002093273 | Mar 2002 | JP |
Number | Date | Country | |
---|---|---|---|
20040216551 A1 | Nov 2004 | US |