ROLLER BEARING WITH A SEAL
20230082969 · 2023-03-16
Assignee
Inventors
- Andreas Bierlein (Haßfurt, DE)
- Rainer Schroeder (Egenhausen, DE)
- Lukas Paehler (Schöneck, DE)
- Simon Wolf (Kleinlangheim, DE)
Cpc classification
F16C33/586
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/7856
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/784
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2226/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2300/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/7889
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/7869
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C23/086
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2360/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/364
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/7886
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C23/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/36
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/38
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/58
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A rolling bearing has an inner and an outer bearing ring. Each bearing ring has an inner and an outer shell surface. The roller bearing has rolling elements, which roll on raceways provided on the respective shell surfaces of the bearing rings, and a sealing disc connected to one of the bearing rings and operatively connected in a sealing manner to the other bearing ring. To connect the sealing disc to the bearing ring, one of the shell surfaces of the one bearing ring includes a first connecting means and the sealing disc includes a second connecting means. The first connecting means provide a rotating engagement in which the second connecting means engage in a connected state of the bearing ring and the sealing disc.
Claims
1. A rolling bearing, comprising: an inner bearing ring and an outer bearing ring, each bearing ring having an inner shell surface defining respective raceways and an outer shell surface, rolling elements received in the raceways, and a sealing disc connected to one of the bearing rings and operatively connected in a sealing manner to the other bearing ring, wherein one of the shell surfaces of the one bearing ring, includes a first connecting means and the sealing disc includes a second connecting means, wherein the first connecting means provide a rotating engagement in which the second connecting means engage in a connected state of the bearing ring and the sealing disc.
2. The rolling bearing according to claim 1, wherein the first and second connecting means are each formed as threads.
3. The rolling bearing according to claim 1, wherein the one bearing ring, includes a radial shoulder on which the first connecting means are formed, a diameter of the radial shoulder being different from respective diameters of the inner and the outer shell surfaces of the one bearing ring.
4. The rolling bearing according to claim 1, wherein the first connecting means has a first annular edge and the second connecting means has a second annular edge, wherein, in the connected state of the respective bearing ring and the sealing disc, both annular edges overlap one another in an overlap region, wherein the first annular edge includes at least one opening, wherein the second annular edge is formed by at least one shoulder segment, wherein a plane in which the at least one shoulder segment lies maintains an axial distance from a plane of the sealing disc, and wherein the respective openings and the at least one shoulder segments are complementary to one another.
5. The rolling bearing according to claim 4, wherein the at least one shoulder segment has first and second ends in a circumferential direction, wherein axial distances of the first and second ends of the at least one shoulder elements to the plane of the sealing disc are different.
6. The rolling bearing according to claim 1, further comprising an O-ring compressed between the sealing disc and an end face of the one bearing ring.
7. The rolling bearing according to claim 1, wherein the sealing disc is formed of metal or plastic and includes a sealing lip made of rubber or plastic.
8. The rolling bearing according to claim 1, wherein the sealing disc includes receptacles configured to receive tools or grub screws.
9. The rolling bearing according to claim 1, wherein the rolling bearing is a spherical roller bearing.
10. The rolling bearing according to claim 1, wherein the rolling bearing has an outer diameter greater than 320 millimeters.
11. A rolling bearing, comprising: an inner bearing ring and an outer bearing ring, each bearing ring including a shell surface; and a sealing disc non-rotatably connected to one of the bearing rings and engaged with the other of the bearing rings, the sealing disc being rotatable relative to the other of the bearing rings; wherein the shell surface of the one bearing ring includes first threads, and the sealing disc includes second threads configured to rotatably engage the first threads, the sealing disc being non-rotatably connected to the one bearing ring via the first and second threads.
12. The rolling bearing of claim 11, wherein the one bearing ring includes a radial shoulder extending from the one bearing ring towards the other bearing ring, the first threads being disposed on the radial shoulder.
13. The rolling bearing of claim 11, further comprising an O-ring compressed between the sealing disc and the one bearing ring.
14. The rolling bearing of claim 11, wherein the sealing disc includes receptacles configured to receive grub screws.
15. The rolling bearing of claim 11, wherein the sealing disc includes an inner lip abutting the other bearing ring, the inner lip being formed of an elastomer.
16. A rolling bearing, comprising: an inner bearing ring and an outer bearing ring, each bearing ring including a shell surface; and a sealing disc non-rotatably connected to one of the bearing rings and engaged with the other of the bearing rings, the sealing disc being rotatable relative to the other of the bearing rings; wherein the sealing disc includes a shoulder segment and the shell surface of the one bearing ring includes a first annular edge having an opening configured to receive the shoulder segment, the sealing disc being non-rotatably connected to the one bearing ring via the shoulder segment and the opening.
17. The rolling bearing of claim 16, wherein the shoulder segment includes a second annular edge, the first and second annular edges overlapping each other when the sealing disc is non-rotatably connected to the one bearing ring.
18. The rolling bearing of claim 17, further comprising an O-ring compressed between the first and second annular edges.
19. The rolling bearing of claim 16, wherein the shoulder segment is wedged against the first annular edge.
20. The rolling bearing of claim 16, wherein the shoulder segment includes a first end and second end spaced from the first end in a circumferential direction relative to the rolling bearing, the first end and the second end extending different amounts in an axial direction relative to the rolling bearing.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The disclosure will now be explained in more detail with reference to the figures. In the figures:
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION
[0022]
[0023] According to the embodiment in
[0024] Furthermore, the embodiment in
[0025] An inner edge 16 of the sealing disc 11 is provided with a sealing lip 17, which is formed from an elastomer and which abuts against the inner bearing ring 2 and is thus operatively connected in a sealing manner.
[0026] For sealing an annular space 18 between the two bearing rings 2, 3, the sealing disc 11 with its internal thread 15 provided on the axial flange 13 is screwed onto the external thread 10 on the lowered shell surface 8 of the outer bearing ring 3. To facilitate screwing of the sealing disc 11 onto the outer bearing ring 3, a receptacle 19 in the form of a blind hole is indicated in the sealing disc 11, which is suitable for receiving a tool in the form of a rod (not shown) to rotate the sealing disc 11 relative to the outer bearing ring 3.
[0027] Even though the lowering of the outer shell surface 5 of the bearing ring 3 and the receiving of the axial flange 13 in the lowering has advantages with respect to the flushness of the rolling bearing 1, in another exemplary embodiment not shown, the first connecting means in the form of the external thread 10 can also be mounted directly on the outer shell surface 5 of this bearing ring 3, which then results in a radial projection of the sealing disc 11 from the outer shell surface 5 when the sealing disc 11 is screwed on.
[0028]
[0029] Furthermore, the receptacle 19 according to
[0030]
[0031] As already shown in connection with
[0032] For the sake of completeness only, it should be noted that in the case of an outer bearing ring 3 without a rib 23 according to
[0033] The exemplary embodiment according to
[0034] As an additional sealing, according to the exemplary embodiment shown in
[0035] In
[0036] The first annular edge 30 is provided on the outer bearing ring 3 and is formed by the circumstance that, in this exemplary embodiment, a circumferential groove 31 is formed in the inner shell surface 4 of this bearing ring 3. The first annular edge 30 thus exposed is provided with openings 32, of which, however, only one opening 32 is shown in
[0037] A hook-shaped shoulder segment 34 is provided on an inner side 33 of the scaling disc 11 as shown in
[0038] To connect the sealing disc 11 to the bearing ring 3, the sealing disc 11 (
[0039] As can be seen from the detailed drawing, which shows a view into the shoulder segment 34 according to
[0040] This positioning of the second annular edge 36 relative to the inner side 33 of the sealing disc 11 can be used to connect the sealing disc 11 to the bearing ring 3 in a captive manner, namely by wedging. When the respective shoulder segments 34 of the sealing disc 11 are inserted into the openings 32 in the bearing ring 3, the conditions shown in
[0041] To improve the sealing effect, the O-ring 21 is provided, which in this case is arranged in an overlap region U between both annular edges 30, 36.
LIST OF REFERENCE SYMBOLS
[0042] 1 Rolling bearing [0043] 2 Inner bearing ring [0044] 3 Outer bearing ring [0045] 4 Inner shell surface [0046] 5 Outer shell surface [0047] 6 Raceway [0048] 7 Rolling element [0049] 8 Radial shoulder [0050] 9 Ring wall [0051] 10 External thread [0052] 11 Sealing disc [0053] 12 Outer edge [0054] 13 Flange [0055] 14 Inner edge surface [0056] 15 Internal thread [0057] 16 Inner edge [0058] 17 Scaling lip [0059] 18 Annular space [0060] 19 Receptacle [0061] 20 End face [0062] 21 O-ring [0063] 22 Internal thread [0064] 23 Rib [0065] 24 Rib shell surface [0066] 25 Outer edge surface [0067] 26 Annular groove [0068] 27 Axial retraction [0069] 28 Groove [0070] 29 Grub screw [0071] 30 First annular edge [0072] 31 Circumferential groove [0073] 32 Opening [0074] 33 Inner side [0075] 34 Shoulder segment [0076] 35 Axial region [0077] 36 Second annular edge