The present invention refers to a sealed hub-bearing assembly for agricultural applications.
For a better understanding of the state of the art and problems related thereto, there will be at first described a hub-bearing assembly for agricultural applications known from WO 2007/105185, shown in
It is an object of the invention to provide an arrangement for mounting the sealing device to the bearing unit, thereby allowing them to be handled and shipped together as a single piece. Furthermore, it is desirable to allow a component to be dispensed with, while not increasing the axial size of the inner bearing rings. Particularly, the axial dimension of the inner bearing rings must not be increased. These rings must be identical for manufacturing reasons, symmetrical in order to assure proper balancing of the bearing.
It is also desirable to improve the effectiveness of the sealing device, particularly by preventing water from leaking into the bearing along a path which, in the conventional design of
The present invention is directed at providing such improvements over existing bearing designs for agricultural applications. The above and other objects and advantages, which will be better understood in the following, are achieved according to the invention by a hub-bearing assembly having the features defined in claim 1. Preferred embodiments of the invention are set forth in the dependent claims.
Preferred, but not limiting embodiments of the invention will now be described, reference being made to the appended drawings, in which:
In the text below, the structure of the hub-bearing assembly will be described only to such an extent as is necessary for the understanding of the invention. Referring now to
The hub-bearing unit 10 comprises:
The sealing device 20 is fitted within the seat 13. As shown more clearly in
The axle 40 is formed with a cylindrical portion 41 on which the inner bearing rings 16, 17 are inserted, and two annular steps 42, 43. The first annular step 42, of smaller diameter, defines a radial shoulder 44 against which the inner bearing rings are axially clamped. The second annular step, of larger diameter, defines an annular seat 45 for the sealing device 20.
The sealing device 20 includes a resilient annular gasket 32 of elastomeric or rubber-like material, and an annular metal stiffening insert 28 which has a substantially L-shaped axial cross section and supports the gasket 32. The insert 28 has a cylindrical portion 28a which is coaxial to an axis x of rotation of the hub-bearing unit 10 and a flanged portion 28b which is integral with the portion 28a and is perpendicular to the axis x from which it extends towards the periphery of the sealing device 20.
The gasket 32 is provided with an annular bulge or protrusion 34 and with a set of parallel, radially outwardly extending lips 33 (three in the illustrated example) that are arranged to slide against the inner cylindrical wall 22 of the outer bearing ring 11, thereby sealingly bridging the annular space between the inner ring 17 and the outer ring 11. All the lips 33 are outer radially bounded by a common cylindrical surface 33s in sliding contact with the seat 13, and have three different radial lengths: the shortest lip 33a is placed nearby the portion 28b and the longest lip 33c is placed axially far from the portion 28b and is provided with a flat annular surface 33d substantially parallel to the portion 28b. It should be noted that in the appended drawings the gasket 32 is depicted in its non-deformed condition.
As best seen in
The protrusion 34 extends from the axially outer and radially inner part of the body 32a and is close to the portion 28a so that it can exploit the stiffness that the portion 28a gives the body 32a in that area in order to ensure a stable connection with the inner ring 17.
The protrusion 34 is snap-fitted into the circumferential groove 18 in order to mount the sealing device 20 onto the hub-bearing unit 10 and in order to make the surface 32s to be adherent to the side surface of the inner ring 17 and to allow the inner ring 17 to be inserted in the undercut 34c.
The sealing device 20 furthermore comprises resilient coating portions 46 and 47 which are coupled respectively with the portion 28a and the portion 28b to be pressed against the cylindrical 48 and, in some circumstances, also against the radial 49 sides of the annular seat 45.
The coating portions 46 and 47 are provided with a number of slots 46a and 47b to improve elasticity of the same coating portions 46 and 47 and continuously surround the axle 40, providing static sealing action around the axle and interrupting any leakage path towards the inner parts of the bearing unit. The slots 46a are circumferentially spaced from each other and are parallel to the axis x, while the slots 47a are perpendicular to the axis x and are also separated by the relevant slots 46a.
The disc 50 comprises a fixing portion 51 which is defined by a folded annular metal sheet and it is suitable to be mounted in the seat 13, and a flange 52, which is integral with the fixing portion 51 facing the coating portion 47 and which has an inner diameter the dimensions of which are greater than the dimensions of an inner diameter of the coating portion 46. The steel labyrinth 50 has a double function: firstly, it improves the overall sealing performance of the sealing device 20 by providing an additional labyrinth sealing action; secondly, it keeps the annular gasket 32 in its operative configuration while the sealed hub-bearing unit 10 ahs to be dismounted from the axle 40. The fixing portion 51 is suitable to occupy the gap between the cylindrical wall 22 and the annular step 43, and the flange 52 is suitable to occupy the gap between the coating portion 47 and radial 49 sides of the annular seat 45 without being in touch neither with the former nor the latter.
It will be appreciated that, by virtue of the above arrangement, the sealing device may be handled with the bearing unit. The axial size of the bearing assembly is kept very compact. Particularly, the inner rings need not be extended in order to provide a supporting surface for the sealing device. A conventional component, the side shield 39, is dispensed with. Improved, watertight sealing action is provided between the bearing unit and its supporting axle.
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/EP2009/055203 | 4/29/2009 | WO | 00 | 10/26/2011 |