The present invention relates to a rack and pinion steering gear having a thrust piece or element which can be inserted in a steering gear housing or box for pressing a rack and pinion against each other.
A generic rack and pinion steering gear is known from EP 1 507 694 B1. The thrust piece of this steering gear comprises a pressure element for abutment against the rack, and a guide element that is partially slotted and can be spread apart and extends along the cylindrical inner wall of the receiving space. A resilient element is arranged between a stop and the pressure element and at its outer side that faces the inner wall of the receiving space is surrounded by the guide element. When the pressure element moves in the direction of the stop the resilient element tends to yield or expand in the radial direction, whereby the guide element is spread apart against the receiving space. This construction is complicated. Moreover, the required contact pressure is not guaranteed over time owing to the resilient element.
The object of the present invention is to provide a rack and pinion steering gear which is simple in terms of construction and compensates for wear of the parts.
This object is achieved according to the invention by a rack and pinion steering gear with the features of claim 1. Further advantageous embodiments are given by the features of the sub-claims.
The rack and pinion steering gear according to the invention is advantageously characterized in that adjustment of the. thrust piece clearance, required as a result of wear, is automatically compensated for by the wedge-like part and swinging-up as well as the generation of noise at the thrust piece and rack and pinion teeth is avoided thereby.
Loading of the rack that results during driving is supported by the additional compression spring and also by the adjusting force of the wedge-like part that is loaded by the annular spring. In the event of high rack loading, in particular during parking, the conical end faces of thrust piece, set screw and the part that is wedge-like only in cross-section and is also in particular conical are spread further apart from each other until all parts as well as thrust piece and rack rest securely on each other and are compressed.
The wedge-like part is advantageously formed in two parts from two semicircular annular elements, wherein these elements have conical surfaces which cooperate with surfaces of the thrust piece and/or set screw that are also conical. The thickness of the annular elements decreases from the outside in, so the thrust piece and the set screw are driven apart by compression of the annular elements by way of the annular spring.
However it is of course possible to construct the wedge-like part in one piece (
It is of course possible to configure the angular faces of the parts so as not to be rotationally symmetrical but to chose inclined, level or planar pressure surfaces. However, the rotationally symmetrical embodiment has the advantage that the parts do not tilt in the housing.
One possible embodiment of the rack and pinion steering gear according to the invention will be described in more detail hereinafter with reference to the drawings, in which:
The thrust piece 4 and the set screw 5 have conical angular faces 4a, 5a which cooperate with the conical surfaces 7k of the wedge-like part 7. The semicircular annular elements 7a and 7b form the wedge-like part 7. Due to the pressures of the set screw 5 and the thrust piece 4, the annular elements 7a and 7b are pressed apart to a distance or diameter y by the wedge surfaces, whereby the annular spring 6 is in turn pre-tensioned.
The clearance x between thrust piece 4 and set screw 5 is increased (
| Number | Date | Country | Kind |
|---|---|---|---|
| 10 2006 016 110.6 | Apr 2006 | DE | national |
| Filing Document | Filing Date | Country | Kind | 371c Date |
|---|---|---|---|---|
| PCT/EP07/00631 | 1/25/2007 | WO | 00 | 10/1/2008 |