This is a Non-Provisional patent application, filed under the Paris Convention, claiming the benefit of Europe (EP) Patent Application Number 14306331.1, filed on 29 Aug. 2014 (29 Aug. 2014), which is incorporated herein by reference in its entirety.
The invention relates to a rolling bearing, in particular a rolling bearing for use in a steering column of a motor vehicle.
Rolling bearings comprising at least one ring provided with two half-raceways, for example formed by toric wires, mounted in an envelope and pre-stressed by an elastic element are known from EP-B-1 956 254. Such rolling bearings are often used in steering columns to mitigate the effects of column misalignment.
Such rolling bearings imply friction and contacts between a relatively high number of metallic parts at each rotation, and therefore produce significant noise.
The aim of the invention is to provide a new rolling bearing having a structure and materials which reduce noise emission.
To this end, the invention concerns a rolling bearing comprising an outer ring and an inner ring, both having a raceway for rolling elements placed between the inner and outer rings in contact with the raceways, at least one of the rings comprising an envelope having an axial portion and, connected to the edges of the axial portion, two radial portions, and two half-raceways arranged in the envelope to form the raceway of this ring. This rolling bearing is characterized in that the half-raceways are made of a plastic material.
Thanks to the invention, the plastic half-raceways reduce the noise generated by the rolling bearing. In particular, the use of a plastic material implies a damping of vibrations that occur in the rolling bearing, the vibrations coming from the exterior of rolling bearing and from the rolling of rolling elements onto the raceways.
Another advantage of plastic half-raceways is to permit a weight reduction of the bearing compared to standard rolling bearing equipped with metallic half-raceways.
According to further aspects of the invention which are advantageous but not compulsory, such a rolling bearing may incorporate one or several of the following features:
The invention will now be explained in reference to the annexed figures, as an illustrative example. In the annexed figures:
A rolling bearing 1 according to the invention is represented on
Each of outer ring 3 and inner ring 5 has raceways for balls 7. The raceway of outer ring 3 is formed by two half-raceways. In the example of
Outer ring 3 comprises an envelope 34 in which rings 30 and 32 are arranged. Envelope 34 comprises an axial portion 340, which extends along a rotation axis X-X′ of rolling bearing 1. Envelope 34 also comprises two radial portions 342 and 344 connected to the edges of axial portion 340, and which respectively face rings 30 and 32 along axis X-X′.
In this description, the adjectives “axial” and “radial” are used in reference to rotation axis X-X′.
According to the invention, the half raceways of outer ring 3 formed by rings 30 and 32 are made of a plastic material. Advantageously, the plastic material in which rings 30 and 32 are made is polyoxymethylene.
The plastic material has preferably a friction coefficient with steel inferior to 0.3.
The use of a plastic material to manufacture the half raceways reduces the emission of noise during operation of rolling bearing 1.
Outer ring 3 comprises at least one pre-stressing element, made of an elastic material, and arranged between envelope 34 and contact surfaces 300 and 320. In the example of
In a free state which occurs before ring 30 is mounted in envelope 34, rim 306 extends axially in the extension of radial surface 304. Rim 306 is then in a deformed state when mounted in envelope 34 against inner surface 346. In the deformed state, rim 306 exerts the pre-stressing and damps vibrations.
According to a non-shown embodiment, an elastic ring may be inserted in inner groove 348 to limit the deformation of rim 306. To this end, the elastic ring, which may have a toric shape and be made of a polymer material, exerts a radial outwards elastic force against rim 306 when the elastic ring is mounted and pre-stressed by an inwards radial force. This permits to avoid damage or breaking of the rim 306 under excessive inwards deformation. Such an elastic ring may be mounted on one or each half-raceways of bearing 1.
In the example of
A second embodiment of the invention is represented on
In the embodiment of
In the embodiment of
According to an optional feature, elements 9 and 11 may be over-moulded on rings 40 and 42.
In this embodiment, pre-stressing elements 9 and 11 may be made of a different material from half-raceways 40 and 42. Pre-stressing elements 9 and 11 are preferably made of a synthetic material, such as rubber.
In the example, pre-stressing elements 9 and 11 provide a radial and an axial pre-stressing. According to a non-shown embodiment of the invention, pre-stressing elements 9 and 11 may provide only a radial pre-stressing or only an axial pre-stressing.
According to another non-shown embodiment, outer ring 3 may comprise a unique pre-stressing element arranged between the half-raceways 40 and 42 and envelope 34.
According to another non-shown embodiment of the invention, the half-raceways of outer ring 3 and inner ring 5 may be formed by toric rings having a shape similar to the toric wires disclosed in EP-B-1 956 254.
According to another non-shown embodiment of the invention, the rolling elements of rolling bearing 1 may be, instead of balls 7, rollers or needles.
The technical features of the embodiments and variants described here-above may be combined to obtain new embodiments of the invention.
Number | Date | Country | Kind |
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14306331.1 | Aug 2014 | EP | regional |