Device for adjusting the bearing play of components that are mounted such that they can rotate coaxially in relation to one another, and assembly of components that are mounted such that they can rotate coaxially in relation to one another
10138933 ยท 2018-11-27
Assignee
Inventors
Cpc classification
F16C25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62K25/02
PERFORMING OPERATIONS; TRANSPORTING
B62M3/003
PERFORMING OPERATIONS; TRANSPORTING
F16C29/126
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2326/26
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16C25/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B62M3/00
PERFORMING OPERATIONS; TRANSPORTING
B62K25/02
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device for adjusting the bearing play of components mounted coaxially rotatable to one another and rotatably joined to one another via two axially separated roller bearings is operatively connected to one roller bearing by an end side and to a counter bearing by the opposing end side. The device is formed by two coaxially adjacent rings on one of the components. Each opposing end surface thereof has at least one contour projecting from the plane of the end surfaces. At least one contour has an incline on which the at least one opposing contour slides. One ring is operatively connected to the counter bearing by the other end surface. The other ring is operatively connected to the roller bearing. A device for mutual radial rotation and a device for locking the axially moving ring in the assumed axial position are on both rings.
Claims
1. An apparatus for adjustment of bearing play of a first component and a second component mounted so as to rotate coaxially relative to one another by way of a first roller bearing and a second roller bearing disposed at an axial distance from one another, wherein the first component is accommodated by a cap, the apparatus comprising: (a) a first ring and a second ring disposed next to one another, coaxially, on the first component connected with the cap, wherein the first ring has a first inner face surface extending in a first plane and comprising a first contour projecting out of the first plane of the first inner face surface and the second ring has a second inner face surface facing the first inner face surface and extending in a second plane, the second inner face surface comprising a second contour projecting out of the second plane of the second inner face surface, wherein the first contour comprises an incline and the second contour slides on the incline, (b) a pin projecting axially out of at least one of the first and second rings into a circumferentially extending recess of the other of the first and second rings, and (c) an adjustment element projecting into the recess, wherein the adjustment element is movable and lockable against the pin, wherein the first ring has a first outer face surface and the second ring has a second outer face surface, wherein at least one of the first and second outer face surfaces is disposed on the first component connected with the cap, in an axially movable manner, in an installed state, and lies against the cap of the first component, wherein the cap forms a counter-bearing, and the other of the first and second outer face surfaces stands in interaction coaxially with the first roller bearing and exerts an axial pressure on the second roller bearing; and wherein the second ring stands in interaction with the first roller bearing and has an inner seal on an inner circumference of the second outer face surface and an outer seal on an outer circumference of the second outer face surface.
2. The apparatus according to claim 1, wherein the second ring stands in interaction with the first roller bearing and has the pin and the first ring has the recess and the adjustment element.
3. The apparatus according to claim 2, wherein the adjustment element is an adjustment screw.
4. The apparatus according to claim 1, wherein the first ring comprises a polymer material.
5. The apparatus according to claim 3, wherein the adjustment screw has a self-locking thread.
6. The apparatus according to claim 1, wherein the inner seal and the outer seal are laid into or injection-molded on the second ring.
7. An arrangement comprising: (a) an axle; (b) a hub body of a bicycle rotatably mounted on the axle by a first roller bearing and a second roller bearing disposed in the hub body at an axial distance from one another, the bicycle comprising a fork or a frame, the axle being clamped in the fork or the frame; and (c) a bearing play adjustment apparatus disposed between one of the first and second roller bearings and a shank of the fork or the frame, the bearing play adjustment apparatus exerting an axial pressure on one of the first and second roller bearings; wherein the bearing play adjustment apparatus comprises an axially movable first ring and an axially movable second ring disposed next to one another coaxially on the axle; wherein the first ring has an inner face surface extending in a first plane and comprising a first contour projecting out of the first plane of the first inner face and the second ring has a second inner face surface facing the first inner face surface and extending in a second plane, the second inner face surface comprising a second contour projecting out of the second plane of the second inner face surface; wherein the first contour comprises an incline and the second contour slides on the incline; wherein the first ring has a first outer face surface and the second ring has a second outer face surface, the first outer face surface standing in interaction with the fork or the frame of the bicycle and the second outer face of the second ring standing in interaction with the first roller bearing; wherein each of the first and the second rings is movable axially and lockable in a selected axial position; and wherein the first ring stands in interaction with the fork or the frame of the bicycle with the first outer face surface, by way of an end cap disposed on the axle.
8. The apparatus according to claim 7, wherein the second ring has a pin that projects axially out of the second inner face surface, and the first ring has a circumferentially extending recess wherein the pin projects into the recess, wherein an adjustment element projects into the recess, wherein the adjustment element is movable and lockable against the pin.
9. The arrangement according to claim 7, wherein the second ring stands in interaction with the first roller bearing and has an inner seal on an inside circumference of the second outer surface that lies against the first roller bearing and an outer seal on an outer circumference of the second outer surface.
Description
DRAWING
(1) The apparatus according to the invention, for adjustment of axial bearing plays, is represented in the drawing using the example of the front wheel hub and rear wheel hub of a bicycle, and will be explained in greater detail below. The figures show:
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(8)
DESCRIPTION OF THE EXEMPLARY EMBODIMENTS
(9)
(10)
(11) On the drive side, in other words on its right side, the hub body 11 is connected with a free-running body 17, in torque-proof manner, in an axial extension in one direction, wherein a lock washer 18 is disposed between their opposite face surfaces. The free-running body 17 is mounted on the hollow axle 16 by way of a right and a left free-running body bearing 19, 20, wherein the axle accommodates the two inner rings here, too, in the manner of a sliding seat. For this reason, the two free-running body bearings 19, 20 are secured, relative to one another, by means of an inner and an outer spacer sleeve 21, 22 axially relative to one another, and, secured axially in the hub body 11 by means of a further spacer sleeve 23 disposed between the left free-running body 20 and the right ball bearing 14 of the hub body 11. The right free-running body bearing 19 is axially secured by means of a clamping ring 24. The hollow axle 16 is provided with a right and a left end cap 25, 26 on both sides, wherein here, too, the right end cap 25 is screwed onto the hollow axle 16, the left one is pressed on or glued on.
(12) The apparatus according to the invention for bearing play adjustment 27 is disposed between the left ball bearing 15 of the hub body 11 and the left end cap 26 in the case of the rear wheel axle, as well. The force flow between the two ball bearings 14, 15 is represented as a black free-hand line in
(13) Because the structure and the method of functioning of the two bearing play adjustment apparatuses 9, 27 are the same, they will be described together using
(14) As can be seen in
(15) As can be seen in
(16) Furthermore, it can be seen in
(17) From the view of the face side of the pressure ring 31 that lies against the left ball bearing 5, 15 of the front wheel hub or rear wheel hub, in each instance, shown in
(18) In the following, installation and functioning of the apparatus according to the invention for adjustment of axial bearing plays will be described in greater detail:
(19) As can be seen in
(20) First, the left end cap 8, 26 is glued onto the hollow axle 6, 16; afterward, the bearing play adjustment apparatus 9, 27 is pushed on and the assembly pre-assembled in this manner is pushed into the hub body 1, 11 completed with the ball bearings 4, 5, 14, 15. Finally, the right end cap 7, 25 is screwed on.
(21) Afterward, the front wheel or rear wheel completed in this manner can be inserted into the fork 40 or the frame 42 and locked in place in the fork 40 or the frame 42 using quick-release mechanisms or other known means of attachment. In the finished, installed state of the wheels, the shanks 44 of the bicycle fork 40 or the shanks 46 of the bicycle frame 42 are pressed on the screw ring 30 by way of the left end cap 8, 26, so that these shanks 44, 46 serve as a counter-bearing for the screw ring 30. Finally, only the adjustment screw 36 on the screw ring 30 is still turned into the recess 34 to such an extent until it makes contact with the pin 37 of the pressure ring. As the adjustment screw 36 continues to be screwed in further, the pressure ring 31 moves about the hollow axle 6, 16, causing the wedge-shaped elevations 32, 33 to slide on one another and thereby to press the pressure ring, in the axial direction, against the inner ring of the left ball bearings 5, 15. In this way, the ball bearing 5, 15 is subjected to axial stress, and a force flow occurs between the track of the inner ring, the balls, and the track of the outer ring.
(22) In the same manner, the balls of the ball bearing 4, 14 situated on the right side are pressed against the tracks of the outer ring of the right ball bearing 4, 14, by way of the force flow through the hub body 1, 11 toward the right end cap 7, 25 firmly screwed into the hollow axle 6, 16, so that the play in each ball bearing 4, 5, 14, 15 approaches zero. If the adjustment screw 36 continues to be turned, a defined preload, also referred to as negative play, can be adjusted within the ball bearings 4, 5, 14, 15.
(23) The placement of the screw rings 30 and the pressure ring 31 can also be interchanged, i.e. the adjustment screw 36 is then situated in the ring that lies against the ball bearing 4, 5, 14, 15, while the ring that lies against the counter-bearing has the pin 37 that projects into the recess 34 of the screw ring 30.
(24) All the characteristics represented here can be essential to the invention both individually and in any desired combination with one another.
REFERENCE SYMBOL LIST
(25) 1 hub body, front wheel 2 right spoke flange 3 left spoke flange 4 right ball bearing 6 hollow axle 7 right end cap 8 left end cap 9 bearing play adjustment, front wheel hub 11 hub body, rear wheel 12 right spoke flange 13 left spoke flange 14 right ball bearing 15 left ball bearing 16 hollow axle 17 free-running body 18 lock washer 19 right free-running body bearing 20 left free-running body bearing 21 inner spacer sleeve 22 outer spacer sleeve 23 spacer sleeve 24 clamping ring 25 right end cap 26 left end cap 27 bearing play adjustment, rear wheel hub 28 force flow line 30 screw ring 31 pressure ring 32 wedge-shaped elevation, screw ring 33 wedge-shaped elevation, pressure ring 34 recess 35 bore 36 adjustment screw 37 pin 38 inner seal 39 lip seal 40 fork 42 frame 44 shank of the fork 46 shank of the frame