AXIAL BEARING ARRANGEMENT
20180087568 ยท 2018-03-29
Assignee
Inventors
Cpc classification
F16C41/004
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/581
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/55
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C19/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An axial bearing arrangement with a first and second bearing rings that are rotatable relative to each other. First rolling bodies are arranged axially between the rings for supporting the rotation of the two bearing rings. The rolling bodies are arranged running on raceways of the first bearing ring and of the second bearing ring during rotation. At least one third bearing ring is arranged offset axially with respect to the second bearing ring, and therefore the second bearing ring is arranged so as to be rotatable relative to the third bearing ring. Second rolling bodies are arranged axially between the second bearing ring and the third bearing ring for supporting the rotation of the second bearing ring relative to the third bearing ring. The second rolling bodies are arranged running on raceways of the second bearing ring and of the third bearing ring during rotation.
Claims
1. An axial bearing arrangement comprising: a first bearing ring and a second bearing ring, wherein the first bearing ring and the second bearing ring are each arranged rotatably in a plane, wherein the planes of the first bearing ring and of the second bearing ring are spaced apart from each other in an axial direction, wherein the first bearing ring and the second bearing ring are arranged so as to be rotatable relative to each other about an axis of rotation, wherein the axis of rotation is perpendicular to the two planes of the first bearing ring and of the second bearing ring, and the first bearing ring and the second bearing ring being spaced apart from each other in the axial direction and rotatable relative to each other, and each bearing ring extending substantially in a radial direction, and first rolling bodies for supporting rotation of the two bearing rings and being arranged axially between the first bearing ring and the second bearing ring, said first rolling bodies running on raceways of the first bearing ring and of the second bearing ring during rotation, at least one third bearing ring offset axially with respect to the second bearing ring, and the second bearing ring being arranged so as to be rotatable relative to the third bearing ring, and second rolling bodies for supporting rotation of the second bearing ring relative to the third bearing ring, and being arranged axially between the second bearing ring and the third bearing ring, said second rolling bodies running on raceways of the second bearing ring and of the third bearing ring during rotation.
2. The axial bearing arrangement as claimed in claim 1, wherein the second bearing ring is of single-part design and has raceways on both sides for the first rolling bodies and for the second rolling bodies.
3. The axial bearing arrangement as claimed in claim 1, wherein the second bearing ring is of two-part design in such a manner that a fourth bearing ring which is arranged adjacent to the second bearing ring is arranged in such a manner that the second rolling bodies support rotation of the fourth bearing ring relative to the third bearing ring, wherein the second rolling bodies are arranged (i) axially between the second bearing ring and the third bearing ring, (ii) between the fourth bearing ring and the third bearing ring, and (iii) running on raceways of the fourth bearing ring and of the third bearing ring during rotation.
4. The axial bearing arrangement as claimed in claim 3, wherein the first bearing ring and the second bearing ring are substantially identical to the third bearing ring and the fourth bearing ring, wherein the fourth bearing ring is arranged adjacent to the second bearing ring.
5. The axial bearing arrangement as claimed in claim 3, wherein the second bearing ring or the fourth bearing ring are drivable via a driving element.
6. The axial bearing arrangement as claimed in claim 5, wherein either the second bearing ring or the fourth bearing ring has an internal toothing or an external toothing which is driven by a gearwheel driven by an actuator.
7. The axial bearing arrangement as claimed in claim 3, wherein the raceways of the first rolling bodies and of the second rolling bodies have an identical radius.
8. A method for driving one of the bearing rings of the axial bearing arrangement of claim 1 using an actuator, the method comprising the step of activating the actuator either permanently, periodically or randomly in terms of time in order to at least temporarily set the bearing ring into rotation.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0014] The invention is explained in detail below using are exemplary embodiment with reference to the drawing. In the drawing:
[0015]
[0016]
[0017]
DETAILED DESCRIPTION OF THE INVENTION
[0018]
[0019] First rolling bodies 7 are arranged axially between the first bearing ring 2 and the second bearing ring 3, said rolling bodies being arranged running on raceways 8, 9 of the first bearing ring 2 and of the second bearing ring 3 during rotation, for supporting the rotation of the two bearing rings 2, 3.
[0020] As a result, a load 10 perpendicular to the bearing ring 2 can be supported axially.
[0021]
[0022] The first bearing ring 52, the second bearing ring 53 and the third bearing ring 61 are therefore arranged spaced apart from one another in the axial direction and are arranged so as to be rotatable relative to one another. The bearing rings 52, 53 and 61 each extend substantially in a radial direction with respect to the axis of rotation 56.
[0023] First rolling bodies 57 and second rolling bodies 63 are respectively arranged axially between the first bearing ring 52 and the second bearing ring 53 and also axially between the second bearing ring 53 and the third bearing ring 61, said rolling bodies being arranged running on raceways 58, 59, 64, 65 of the first bearing ring 52 and of the second bearing ring 53 during rotation, for supporting the rotation of the bearing rings 52, 53 and 61.
[0024] As a result, a load 60 which is perpendicular to the bearing ring 52 can be supported axially.
[0025] The exemplary embodiment of
[0026] It can also be seen in
[0027]
[0028] As a result, a method for driving a bearing ring 53 of an axial bearing arrangement 51, such as in particular an axial bearing, in particular a second bearing ring 53, can be carried out or used, with an actuator 68 for driving the bearing ring 53. The drive here can be activated permanently in terms of time, periodically in terms of time or stochastically in terms of time in order to at least temporarily set the bearing ring 53 into rotation, i.e., permanently, periodically or at stochastic points in time and optionally over a fixedly predetermined period of time or over a variable period of time.
[0029]
[0030]
[0031] The design of the first bearing ring 102 and of the second bearing ring 103 with the first rolling bodies 107 is substantially identical to the design of the third bearing ring 111 and of the fourth bearing ring 120, wherein the fourth bearing ring 120 is arranged adjacent to the second bearing ring 103. It is therefore also possible to arrange two structurally identical axial bearings.
[0032] In accordance with the design according to
[0033]
[0034] The activation for driving the second and/or the fourth bearing ring can likewise take place by the fact that the drive takes place permanently in terms of time, periodically in terms of time or stochastically in terms of time in order at least temporarily to set the bearing ring or the bearing rings into rotation.
LIST OF REFERENCE NUMBERS
[0035] 1 Axial bearing arrangement
[0036] 2 First bearing ring
[0037] 3 Second bearing ring
[0038] 4 Plane
[0039] 5 Plane
[0040] 6 Axis of rotation
[0041] 7 First rolling bodies
[0042] 8 Raceway
[0043] 9 Raceway
[0044] 10 Load
[0045] 51 Axial bearing arrangement
[0046] 52 First bearing ring
[0047] 53 Second bearing ring
[0048] 54 Plane
[0049] 55 Plane
[0050] 56 Axis of rotation
[0051] 57 First rolling bodies
[0052] 58 Raceway
[0053] 59 Raceway
[0054] 60 Load
[0055] 61 Third bearing ring
[0056] 62 Plane
[0057] 63 Second rolling bodies
[0058] 64 Raceway
[0059] 65 Raceway
[0060] 66 Internal toothing
[0061] 67 Gearwheel
[0062] 68 Actuator
[0063] 101 Axial bearing arrangement
[0064] 102 First bearing ring
[0065] 103 Second bearing ring
[0066] 107 First rolling bodies
[0067] 108 Raceway
[0068] 109 Raceway
[0069] 111 Third bearing ring
[0070] 113 Second rolling bodies
[0071] 114 Raceway
[0072] 115 Raceway
[0073] 120 Fourth bearing ring