ROLLING BEARING FOR THE MOUNTING OF A DRIVE WORM OF AN ELECTROMECHANICAL POWER STEERING SYSTEM OF A MOTOR VEHICLE
20210300462 · 2021-09-30
Assignee
Inventors
Cpc classification
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/24
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/585
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/077
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2380/27
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2361/61
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/546
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B62D5/04
PERFORMING OPERATIONS; TRANSPORTING
F16C19/16
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A rolling bearing for mounting a driving worm of a power-assisted steering system of a vehicle includes a rotatable inner ring and a rotationally fixed outer ring. Rolling elements arranged between the inner and outer ring are guided by a channel-shaped first raceway arranged on a radially outer side of the inner ring and by a channel-shaped second raceway arranged on a radially inner side of the outer ring. The second raceway includes a cross-sectional profile that varies around its circumference. The cross-sectional profile allows laterally offset rolling elements to roll and thus tilting of the inner ring about a tilting axis orthogonal to the axis of rotation of the rolling bearing if the tilting axis assumes a predetermined tilted position in the circumferential direction of the second raceway and limits tilting of the inner ring to a minimum when the tilting axis is angled 90° to the tilted position.
Claims
1.-8. (canceled)
9. A rolling bearing for mounting a driving worm of an electromechanical power-assisted steering system of a motor vehicle, having an inner ring, an outer ring, and rolling elements arranged between the inner ring and outer ring, the rolling elements guided by a channel-shaped first raceway arranged on a radially outer side of the inner ring and by a channel-shaped second raceway arranged on a radially inner side of the outer ring, wherein the second raceway comprises a cross-sectional profile that varies around its circumference.
10. The rolling bearing of claim 9, wherein the cross-sectional profile varies sinusoidally around the circumference of the second raceway.
11. The rolling bearing of claim 9, wherein a lateral extent of an osculation of the second raceway is varied around the circumference.
12. The rolling bearing of claim 9, wherein the second raceway includes lateral flanks and a radial extent of the lateral flanks is varied around the circumference.
13. The rolling bearing of claim 9, wherein the rolling element is in the form of a ball.
14. The rolling bearing of claim 9, wherein the rolling element is guided in a cage.
15. The rolling bearing of claim 9, wherein the outer ring is provided with a marking of a circumferential position that indicates the orientation of the tilted position of the tilting axis.
16. The rolling bearing of claim 15, wherein the marking is configured as a protrusion or indentation in the material of the outer ring.
Description
[0018] Exemplary embodiments of the invention are explained in more detail in the following text with reference to the drawings. In the figures, specifically:
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[0034] In an embodiment that is not shown, provision may likewise be made for the ball bearing 13 and the rocker 130 to be arranged on the side facing the electric motor 9 and for the ball bearing 12 to be arranged on the side facing away from the electric motor 9.
[0035] As can be seen best in
[0036] The two raceways 20, 21 have a cross-sectional profile that varies around their circumference. The circumferential direction 22 is indicated by an arrow in
[0037] In the exemplary embodiment illustrated in
[0038] The course of the possible tilting about the tilting axis 27 between a maximum and a minimum depending on the orientation of the tilting axis 27 in the circumferential direction 22 starting from the tilted position 28 is illustrated in the diagram in
[0039] A second exemplary embodiment of the invention is illustrated in
[0040] With regard to the course of the variation in the lateral extent of the osculation of the second raceway 21, the information given in connection with the first exemplary embodiment illustrated in
[0041] In both embodiments, the respective outer rings 17, 18 are provided with a marking 30 of a circumferential position that indicates the orientation of the tilting axis 27 in the tilted position 28. Specifically, the marking 30 is applied at two points at which the tilting axis 27 encloses an angle α of 0° and 180°, respectively, with the tilted position 28. The markings 30 are configured as indentations in the material of the outer ring 17, 18, but can also be embodied as protrusions or colored markings.
[0042] With the aid of the markings 30, it is possible, when constructing the device, to align the orientation of the rolling bearing 12 such that the driving worm 10 can tilt or bend in the direction of the worm wheel 11 and away from the latter (i.e. radially with respect to the axis of rotation of the worm wheel 11), while tilting or bending transversely thereto (i.e. axially with respect to the axis of rotation of the worm wheel 11) is prevented. The rolling bearing 12 according to the invention that is oriented in this way therefore allows tilting of the inner ring 14 about a defined tilting axis 27 in order to allow tilting of the driving worm 10 under high load, but prevents tilting about a tilting axis 27 oriented transversely to the tilted position 28.
LIST OF REFERENCE SIGNS
[0043] 1 Steering shaft [0044] 2 Steering wheel [0045] 3 Steering gear [0046] 4 Gearwheel [0047] 5 Rack [0048] 6 Track rod [0049] 7 Vehicle wheel [0050] 8 Housing [0051] 9 Electric motor [0052] 10 Driving worm [0053] 11 Worm wheel [0054] 12 Ball bearing/rolling bearing [0055] 13 Ball bearing [0056] 14 Inner ring [0057] 15 Rolling element [0058] 16 Cage [0059] 17 Outer ring [0060] 18 Outer ring [0061] 19 First raceway [0062] 20 Second raceway [0063] 21 Second raceway [0064] 22 Circumferential direction [0065] 23 Lateral flanks [0066] 24 Radial direction [0067] 25 Angle [0068] 26 Tilting direction [0069] 27 Tilting axis [0070] 28 Tilted position [0071] 29 Direction [0072] 30 Marking