WHEEL SUSPENSION SYSTEM WITH A CONTROL ARM
20180126814 ยท 2018-05-10
Inventors
- Dennis Fluerenbrock (Lippstadt, DE)
- Thomas Henksmeier (Wadersloh, DE)
- Aloys Schroeder (Paderborn, DE)
- Peter Stastny (Delbrueck, DE)
Cpc classification
B60G2200/1322
PERFORMING OPERATIONS; TRANSPORTING
B60G7/008
PERFORMING OPERATIONS; TRANSPORTING
B60G7/001
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The disclosure relates to a wheel suspension system for a wheel suspension on an axle beam of a vehicle using a fastening screw, including: an entrainment element non-rotatably joinable with the fastening screw and configured to apply a torque to the fastening screw to release a force-locking fastening; and a control arm configured to be attached to the axle beam by the fastening screw and configured to act on the entrainment element during a rotational movement of the control arm with respect to the axle beam to produce the torque to release the force-locking fastening.
Claims
1. A wheel suspension system for a wheel suspension on an axle beam of a vehicle using a fastening screw, comprising: an entrainment element non-rotatably joinable with the fastening screw and configured to apply a torque to the fastening screw to release a force-locking fastening; and a control arm configured to he attached to the axle beam by the fastening screw and configured to act on the entrainment element during a rotational movement of the control arm with respect to the axle beam to produce the torque to release the force-locking fastening.
2. The wheel suspension system according to claim 1, wherein the entrainment element comprises an entrainment leg, and wherein the control arm is configured to act on the entrainment leg during the rotational movement of the control arm.
3. The wheel suspension system according to claim 2, wherein the entrainment leg is shaped to laterally engage around the control arm.
4. The wheel suspension system according to claim 1, wherein the control arm is configured to act on the entrainment element during the rotational movement of the control arm to a tangential force or configured to put the entrainment element in a rotational movement around a longitudinal axis of the fastening screw.
5. The wheel suspension system according to claim 1, wherein the control arm comprises a protrusion configured to act on the entrainment element.
6. The wheel suspension system according to claim 5, wherein the protrusion comprises a radial protrusion or a collar section.
7. The wheel suspension system according to claim 5, wherein the control arm comprises a protrusion configured to act on an entrainment leg of the entrainment element during the rotational movement of the control arm.
8. The wheel suspension system according to claim 1, wherein the entrainment element comprises an opening that is penetrable by the fastening screw, and wherein the fastening screw is receivable in the opening in a form fitting manner.
9. The wheel suspension system according to claim 8, wherein the fastening screw comprises a screw section with an angular or polygonal cross section, and wherein the opening is angular or polygonal to receive the angular or polygonal cross section in a form fitting manner.
10. The wheel suspension system according to claim 9, wherein the screw section comprises a shaft portion or a screw head.
11. The wheel suspension system according to claim 9, wherein the angular or polygonal cross section comprises a quadrangular, pentagonal or hexagonal cross section.
12. The wheel suspension system according to claim 1, wherein the entrainment element is configured to apply the torque against a release direction of the fastening screw.
13. The wheel suspension system according to claim 1, wherein the entrainment element is configured to release the force-locking fastening by a break of the fastening screw.
14. The wheel suspension system according to claim 1, comprising the axle beam, wherein the axle beam comprises a rotation lock to lock a rotational movement of the fastening screw.
15. The wheel suspension system according to claim 10, wherein the axle beam comprises an aperture, that is penetrable by the fastening screw, and wherein the rotation lock comprises, laterally to the aperture a collar, configured to secure a screw head of the fastening screw against rotation.
16. The wheel suspension system according to claim 10, wherein the axle beam comprises an aperture, wherein the aperture comprises a trough configured to receive a screw head of the fastening screw in a form fitting manner.
17. The wheel suspension system according to claim 1, wherein the axle beam comprises an aperture, wherein the control arm comprises a bearing opening, and wherein the bearing opening and the aperture are arranged or are arrangeable in alignment with each other and are penetrable by the fastening screw.
18. The wheel suspension system according to claim 1, wherein the control arm comprises a lateral edge with a retaining bead, wherein the axle beam comprises a receptacle recess for receiving the retaining bead, and wherein the receptacle recess is deformable during the rotational movement of the control arm to release the retaining bead for the rotation of the control arm.
19. The wheel suspension system according to claim 1, wherein the entrainment element is mounted between the axle beam and the control arm or between a nut of the fastening screw and the axle beam.
20. The wheel suspension system according to claim 1, wherein the control arm is a wishbone.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Examples of the principles of this disclosure are described with reference to the accompanying figures.
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DETAILED DESCRIPTION OF THE DRAWINGS
[0038]
[0039] The wheel suspensions system 100 comprises an entrainment element 105, which is non-rotatably joinable with the fastening screw 103 and configured to subject the fastening screw 103 to a torque to release, especially by means of breaking, the force-locking fastening. Thereby, the fastening screw 103 provides a predetermined breaking point for the mechanical coupling.
[0040] The wheel suspension system 100 further comprises a control arm 107, which is attachable to the axle beam 101 by means of the fastening screw 103 and configured to act on the entrainment element 105 during a rotational movement of the control arm 107 with respect to the axle beam 101 in order to produce the torque to release the force-locking fastening. For this purpose the entrainment element 105 is subjected with a tangential force by the rotating control arm 107.
[0041] In an example the control arm 107 comprises a protrusion 109, which, for example, is molded as an axial collar section and which acts on the entrainment element 105 during the rotational movement of the control arm 107.
[0042] The entrainment element 105 is, for example, bent and comprises an entrainment leg 111, on which the control arm 107 acts during the rotation, especially over the protrusion 109. The entrainment leg 111 is connected to the base section 201 depicted in
[0043] The axle beam 101 comprises a rotation lock 115, 117 in the area of the screw receptacle, which, for example, is formed by two oppositely disposed collars 115, 117, which non-rotatably fix a polygonal screw head 104 of the fastening screw. For this purpose the screw head 104 can comprise a plate section 114, which is laterally flattened in the area of the collars 115, 117.
[0044] In
[0045] The control arm 107 can be molded shell-shaped or as profile element.
[0046] In an example the entrainment element 105 is molded as a toothed element.
[0047] In the example depicted in
[0048] In the examples depicted in
[0049] In the examples of the wheel suspension system 100 depicted in
[0050] Furthermore, in the examples depicted in
[0051] Furthermore, as depicted in
[0052] The entrainment element 105 can be produced integrally from bent sheet metal.
[0053] In
[0054] In
[0055] In
[0056] As shown in
[0057] In
[0058] In