The invention relates to a clamping device of an adjustable steering column for motor vehicles, where a bracket, which is fixedly connected to the vehicle chassis, is connected to two clamping jaws, which surround an outer casing of the steering column and between which the outer casing of the steering column, which receives a steering spindle, is clampable, having a clamp bolt which connects the two clamping jaws and which is connected at its one end portion to an actuating lever, which is rotatable about the bolt axis and interacts with a closing device which is arranged on at least one clamping jaw in such a manner that when the actuating lever is rotated in the closing direction about the bolt axis, the two clamping jaws clamp the outer casing securely and that when the actuating lever is rotated counter the closing direction, the clamping jaws release the outer casing for the adjustment of the steering column.
The invention is consequently concerned with a clamping device which changes between an open and a closed position as a result of actuating the clamping lever. In the open position, a clamp bolt is moved along the slots of a console in order, as a result, to enable longitudinal or vertical adjustment of the steering column. In the closed position, the clamp bolt is pre-tensioned and, as a result, the steering column is retained.
DE 10 2010 000 504 B3 discloses a clamping device where the clamp bolt is connected to the actuating lever by the clamp bolt comprising a toothing, onto which the actuating lever, produced from plastics material, is pressed in a joint region such that the toothing portions are embedded into the joint region.
A disadvantage of said solution is that a toothing portion, which requires installation space during production when the clamp bolt protrudes behind the actuating lever, is needed for connecting the clamp bolt to the actuating lever.
In
A disadvantage of said solution is that during production of the indentation in the actuating lever, large forming radii are generated in the transition region, as a result of which it is not possible to arrange a clamping mechanism directly on the actuating lever. In addition, it is disadvantageous that the toothing portion, necessary for the connection of the clamp bolt to the actuating lever, requires an additional operating step during production and gives rise to additional costs.
It is the object of the invention to create an improved connection between clamp bolt and actuating lever which requires a smaller installation space, can be produced in a cost-efficient manner, avoids large forming radii, and is able to be realized and mounted in a simple manner.
The solution according to the invention provides that the end portion of the clamp bolt is configured as a disk-shaped bolt head, that the actuating lever comprises, on its end region connected to the clamp bolt, a stepped through-opening with an inner portion, which is intended for the passage of the clamp bolt, faces the steering column and has a small diameter, and an outer portion which is intended for receiving the disk-shaped bolt head, is remote from the steering column and has a large diameter.
Said embodiment manages without toothing on the clamp bolt and without locknut. The clamp bolt is first of all inserted by way of its other end, which is remote from the disk-shaped bolt head, into the stepped through-opening of the actuating lever, from the outside first of all through the outer portion and then through the inner portion until the bolt head is received in its entirety or predominantly by the outer portion of the through-opening of the actuating lever. As a result, the clamp bolt does not protrude or only protrudes by an insignificantly small amount on the outside of the actuating lever, remote from the steering column. As an option, additional securing elements, which prevent the actuating lever rotating in relation to the bolt head, can be arranged between bolt head and actuating lever.
In an advantageous embodiment, the bolt head is realized in a flat and circular-cylindrical manner. The space between the side facing the actuating lever and the side of the bolt head remote from the actuating lever is narrow. The bolt head comprises a larger diameter in the region of the outer portion of the actuating lever than in the region of the inner portion.
In addition, it is conceivable and possible for the bolt head to be able to accept rectangular, hexagonal, an external thread or other geometries and to form a positive locking closure with the complementary outer portion of the through-opening of the actuating lever via a press connection, weld connection or solder connection.
The bolt shank is realized in a circular cylindrical manner and is connected to the actuating lever in the region of the inner portion by way of said inner portion by means of a press connection, weld connection or solder connection. In a further advantageous configuration of the invention, a positive locking closure between clamp bolt and actuating lever can be achieved via a matching contour of the bolt shank, in the region of the inner portion of the actuating lever, and the inner portion of the actuating lever of both components. The complementary geometry can be realized as a square or hexagonal profile or can comprise an external thread which can be connected to the internal thread of the lever.
An advantageous configuration of the invention provides that the actuating lever is a sheet metal part, where the stepped through-opening is formed after the inner portion is punched as a result of half cut embossing of the outer portion. The half cut embossing enables the deforming to be limited to as small as possible a radius around the through-opening. This is, in particular, advantageous when components of the closing device are to be arranged in the direct vicinity of the through-opening.
In an advantageous configuration of the invention, the depth of the embossing reaches between 30% and 50% of the thickness of the material of the actuating lever. As a result, a particularly compact design of the clamping device can be achieved.
In a first embodiment of the invention, it is provided that the closing device is configured as a cam clamping device which is arranged on the clamp bolt between the outside of a clamping jaw and the actuating lever. Said arrangement of the closing device is particularly simple and cost-efficient to realize in the case of the clamping device according to the invention.
In a further embodiment of the invention, it is provided that the closing device is configured as a pin clamping device which is arranged on the clamp bolt between the outside of a clamping jaw and the actuating lever. The pin clamping device is also particularly advantageous to realize at this point in the case of the clamping device according to the invention.
In a further development of the named embodiment, it is recommended that the actuating lever is configured as a component of the pin clamping device by comprising preferably two pockets, which are formed at a radial spacing from the through-opening, for receiving the ends of tilt pins of the pin clamping device. The end region of the actuating lever is consequently a component of the pin clamping device such that separate production of said component is advantageously omitted.
The last-named embodiment can be improved further as a result of the measure that the actuating lever comprises an elongated breakthrough, which is arranged at a radial spacing from the through-opening and together with a projection, which is fixedly attached to the steering column and protrudes through the breakthrough, forms two stops for the actuating lever in the totally open position and totally closed position of the pin clamping device. In this way, the limiting of the rotational range of the actuating lever is ensured in a structural manner by the configuration of the actuating lever itself.
Exemplary embodiments of the invention are explained in more detail below by way of the drawings. The figures, in detail, are as follows:
As can be seen the best in
The clamping device comprises a clamp bolt 6 which interacts with a closing device 7 in order to move the two clamping jaws 2, 3 toward one another such that said clamping jaws clamp the outer casing 1 securely between them.
As can be seen the best in
According to an embodiment, as shown in
It is conceivable and possible for the clamping device to be provided with a steering column 1 which does not comprise a pivot lever 400.
The connection between the actuating lever 10 and the clamp bolt 6 is configured in such a manner that the end portion 13 of the clamp bolt 6 is realized as a disk-shaped bolt head 13 which comprises a diameter d1, and that the actuating lever 10 comprises in its end region 11 a stepped through-opening 14, through which the clamp bolt 6 projects. The stepped through-opening 14 consists of an inner portion 15 with a smaller diameter d0 and an outer portion 16 with a larger diameter D. The diameter d1 of the bolt head 13 is smaller than the diameter D of the outer portion 16 of the actuating lever 10. The clamp bolt 6 is pushed with its narrow end 31 first of all through the through-opening 14, from the outside 29 of the actuating lever 10 in the direction of the inside 30 of the actuating lever 10. Consequently, the bolt head 13 is received in its entirety in the outer portion 16 of the through-opening 14 of the actuating lever 10 such that it does not protrude beyond the outside 29 of the actuating lever 10 or only protrudes in an insignificant manner. This can also be seen equally well in
As an alternative to this, the bolt head can be realized with a circumferential contour which can be inscribed in the diameter D of the outer portion 16 of the actuating lever 10.
In the case of the embodiment shown in
In the case of the embodiment of the invention shown in
An even more compact and more space-saving embodiment is shown in
The function of the pin clamping device 20 is shown in detail in
The pin clamping device 20 can be opened by the actuating lever 10 being rotated in the opening direction; in
The through-opening 14 is consequently in the form of a stepped bore. However, it is not generated as a result of boring, but as a result of stamping and deforming the sheet metal part which makes the actuating lever 10. In particular, the outer portion 16 is formed by means of half cut embossing (or a semi-shear process) in the sheet metal material. This occurs on the outside 29 of the actuating lever 10 remote from the steering column. On the oppositely situated inside 30 of the actuating lever 10, the sheet metal material, which has been pressed away in the outer portion 16, has to appear as a projection 35.
It is then a particular advantage of the named half cut method that the expansion of the projection 35 in the radial direction, when seen from the bolt axis 19, can be kept relatively small. This means that a radius 12 of the deformation is relatively small. This, in turn, enables the arrangement of other operating elements of the pin clamping mechanism 20, in particular of the pockets 21, 22, to be arranged close and nevertheless outside the space 12 of the bolt axis 19. This can be seen the best in
The best results with half cut embossing are obtained when the embossing depth is between 30% and 50% of the thickness of the material of the actuating lever 10.
As can be seen the best in
Number | Date | Country | Kind |
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10 2015 216 348.2 | Aug 2015 | DE | national |
Filing Document | Filing Date | Country | Kind |
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PCT/EP2016/069507 | 8/17/2016 | WO | 00 |