Twist prevention of the rack by complementary shapes
A steering system for steering a wheel of a vehicle includes a track rod for deflecting the wheel, a rack which, by axial movement, leads to control of the track rod, and a housing. The rack is at least partially arranged within the housing. The rack has a convex and/or concave cross-sectional portion. The housing-mounted complementary geometry includes a complementary concave and/or convex shaping, as a result of which a form-fitting connection is produced for realizing the twist prevention.
1. A steering system for steering a wheel of a vehicle according to steer-by-wire principle or for autonomous driving, comprising:
a tie rod configured to redirect the wheel;
a toothed rack with a convex and/or concave cross-sectional portion;
a ball screw drive configured to act on the toothed rack, wherein the toothed rack, as a result of an axial displacement, is configured to lead to control of the tie rod;
a housing, wherein the toothed rack is arranged at least partially inside the housing; and
a component, with a portion having complementary geometry to the convex and/or concave cross-sectional portion of the toothed rack, fixedly positioned with respect to the housing,
wherein the complementary geometry portion of the component and the concave and/or convex cross-sectional portion of the toothed rack provide a positive-locking connection to produce a torsion prevention.
2. The steering system as claimed in claim 1 , wherein the component fixedly positioned with respect to the housing is located directly in the housing.
3. The steering system as claimed in claim 1 , wherein the component which is fixedly positioned with respect to the housing is constituted by an insertion bush which is connected to the housing.
4. The steering system as claimed in claim 3 , further comprising an intermediate element arranged between the housing and the toothed rack.
5. The steering system as claimed in claim 4 , wherein the insertion bush is connected to the housing, wherein the insertion brush is provided between the housing and the intermediate element.
6. The steering system as claimed in claim 4 , wherein the intermediate element is constructed integrally with the housing or integrally with the insertion bush or integrally with the toothed rack.
7. The steering system as claimed in claim 4 , wherein the intermediate element is injected or placed between the housing and toothed rack.
8. The steering system as claimed in claim 4 , wherein the intermediate element has in a radial and/or in an axial direction a wave form.
9. The steering system as claimed in claim 1 , wherein the steering system is configured to be a rear-axle steering system.
10. The steering system as claimed in claim 1 , wherein a metal protuberance or recess of the housing protrudes into a suitable metal recess or protuberance of the toothed rack.
11. The steering system as claimed in claim 3 , wherein a metal protuberance or recess of the insertion bush protrudes into a suitable metal recess or protuberance of the toothed rack.
12. A vehicle, wherein the vehicle has a steering system as claimed in claim 1 .
13. The steering system as claimed in claim 8 , wherein the intermediate element has in a radial and/or in an axial direction a sinusoidal wave form.