WHEEL UNIT WITH DISENGAGEABLE DRIVE FOR AN ELECTRIC VEHICLE, HUB UNIT FOR THIS WHEEL UNIT, AND MOUNTING METHOD
20220324320 ยท 2022-10-13
Inventors
Cpc classification
F16C2326/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60B27/0036
PERFORMING OPERATIONS; TRANSPORTING
F16D2011/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/186
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C19/546
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K17/02
PERFORMING OPERATIONS; TRANSPORTING
F16D48/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B60K17/3515
PERFORMING OPERATIONS; TRANSPORTING
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
F16C19/548
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A wheel unit for an electric vehicle with a disengageable drive includes a wheel support, a wheel hub rotatably supported by the wheel support, and a wheel pin carried by a member driven by the electric motor and rotatably mounted within the wheel hub, by means of two rolling bearings. A coupling device connects in a releasable way the driven member to the wheel hub. The two rolling bearings that support in rotation the wheel pin have respective outer rings mounted by interference fit within a cylindrical wall of a central opening of the wheel hub, and respective inner rings rigidly connected together by means of a spacer sleeve having a predetermined length. The wheel-hub unit with the two rolling bearings and the spacer sleeve can be assembled before being mounted on the wheel pin.
Claims
1. A wheel unit with a disengageable drive for an electric vehicle, comprising: a wheel support, a wheel hub rotatably supported by the wheel support, a wheel pin rotatably mounted, by means of two rolling bearings axially spaced apart from each other, within a cylindrical wall of a central opening of the wheel hub, wherein the wheel pin is carried by a rotatable member configured to be driven by an electric motor of the electric vehicle, and a coupling device for releasably connecting said driven rotatable member to the wheel hub, wherein: the wheel pin is rotatably mounted within the cylindrical wall of the wheel hub by means of the two rolling bearings that are axially spaced apart from each other and have respective outer rings mounted by interference fit within said cylindrical wall, against two respective annular shoulders of said cylindrical wall that face two opposite ends of the cylindrical wall, said rolling bearings having respective inner rings rigidly mounted on said wheel pin and rigidly connected together by means of a spacer sleeve having a length predetermined as a function of an axial distance between said annular shoulders, and the wheel unit consisting of said wheel hub with said rolling bearings and said spacer sleeve being assemblable before being mounted on said wheel pin.
2. The wheel unit according to claim 1, wherein: said two rolling bearings are ball bearings, wherein a first ball bearing of said ball bearings; which is further away from a free end of the wheel pin has its inner ring resting against an annular shoulder of said driven rotatable member, and wherein a second ball bearing of said ball bearings has its inner ring that is axially fastened by a nut screwed on a threaded portion of a free end of said wheel pin so as to press axially an ensemble of the two inner rings of said ball bearings; with the spacer sleeve interposed therebetween, against said annular shoulder of the driven rotatable member.
3. The wheel unit according to claim 1, wherein an end of the cylindrical wall of the central opening of the wheel hub that faces outwards is protected and isolated from the atmosphere by a covering element rigidly connected to the wheel hub.
4. A wheel-hub unit, for a wheel unit with a disengageable drive for an electric vehicle, comprising: a hub-supporting member configured to be rigidly connected on a wheel support, a wheel hub rotatably supported by said hub-supporting member, and having a central opening with a cylindrical wall which is configured to receive and rotatably support a wheel pin carried by a driven member, two rolling bearings axially spaced apart from each other are assembled within the cylindrical wall of the central opening of the wheel hub, the two rolling bearings have respective outer rings mounted by interference fit within said cylindrical wall against two respective annular shoulders of said cylindrical wall that face two opposite ends of the cylindrical wall, said rolling bearings have respective inner rings rigidly connected together by means of a spacer sleeve having a length that is predetermined as a function of an axial distance between said annular shoulders, and said wheel-hub unit, with said rolling bearings and said spacer sleeve, being configured to be assemblable on said wheel pin.
5. The wheel-hub unit according to claim 4, wherein an end of the cylindrical wall of the central opening of the wheel hub that faces outwards is protected and isolated from the atmosphere by a covering element rigidly mounted on the wheel hub.
6. A method for mounting the wheel-hub unit according to claim 4 on the wheel pin, comprising: in a first step said wheel-hub unit is assembled, with the inclusion therein of said roping bearings and said spacer sleeve, and in a second step said wheel-hub unit that has been assembled in the first step is mounted on the wheel pin, axially fastening the wheel hub unit in a mounted position by means of a nut screwed on a threaded end of the wheel pin, so as to press axially an ensemble of the two inner rings of said rolling bearings, with the spacer sleeve interposed therebetween, against a shoulder of said driven member.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0039] Further characteristics and advantages of the invention will emerge from the ensuing description with reference to the annexed drawings, which are provided purely by way of non-limiting example and in which:
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
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[0047]
DETAILED DESCRIPTION OF A PREFERRED EMBODIMENT
[0048] In
[0049]
[0050] As already mentioned above, the wheel unit according to the invention is of the type with disengageable drive for an electric vehicle that is to operate both with a first electric motor that is permanently connected to a wheel axle (typically the rear axle) and with a second electric motor that is connected in a releasable way with the hubs of the front wheels.
[0051]
[0052] With reference to
[0053] The driven member 6 of the constant-velocity universal joint has a shaft constituting the wheel pin 5. As in the case of the known solution illustrated in
[0054]
[0055] With reference in particular to
[0056] The ball bearings 19, 20 moreover have respective inner rings 19B, 20B that are mounted on the wheel pin 5.
[0057] Set between the inner rings 19B, 20B of the two ball bearings 19, 20 is a spacer sleeve 21, preferably made of steel, having a length rigorously predetermined as a function of the axial distance H between the two shoulders 1A, taking into account the configuration of the two bearings 19, 20. In the example, the length of the sleeve 21 is equal to the distance H.
[0058] The spacer sleeve 21 is rigidly connected, for example by means of a crimping operation, to the inner rings 19B, 20B of the two bearings 19, 20, respectively. Consequently, the wheel-hub unit, designated as a whole in
[0059] With reference once again to
[0060] Consequently, the final operation of mounting of the hub unit can be carried out in a fast and efficient way, with the assurance of obtaining proper operation of the wheel unit, without any need for complex operations of adjustment.
[0061] A further important characteristic of the invention lies in the fact that rigidly mounted on the body of the hub 1 is a cover 23, which has the purpose of protecting and isolating from the outside the central opening of the hub 1, where the bearings 19 and 20 are mounted, thus preventing any infiltration of water, mud, or dirt. Preferably, the cover 23 is made of metal material so as to perform also a function of protection against impact.
[0062] In the example illustrated (see
[0063] Of course, without prejudice to the principle of the invention, the details of construction and the embodiments may vary widely with respect to what has been described and illustrated herein purely by way of example, without thereby departing from the scope of the present invention, as defined in the annexed claims.