Rotating electrical machine provided with a bracket produced from two over-moulded parts
11791686 · 2023-10-17
Assignee
Inventors
Cpc classification
B60R16/02
PERFORMING OPERATIONS; TRANSPORTING
B60K6/26
PERFORMING OPERATIONS; TRANSPORTING
B60K2006/268
PERFORMING OPERATIONS; TRANSPORTING
H02K5/1732
ELECTRICITY
H02K5/15
ELECTRICITY
B60K1/00
PERFORMING OPERATIONS; TRANSPORTING
H02K7/083
ELECTRICITY
International classification
H02K5/15
ELECTRICITY
H02K5/173
ELECTRICITY
Abstract
The invention mainly concerns a rotating electrical machine, in particular for a motor vehicle, comprising a bearing (15) comprising a recess (17) for receiving a shaft bearing guiding the rotation of the shaft, characterised in that the bearing (15) comprises: —a first part (15. I) produced from a first material comprising: —the recess (17) for receiving the shaft bearing, —an interface (51) for mounting a bearing (50) of a pinion (49) external to the rotating electrical machine, and —a second part (15.2) produced from a second material comprising: —a transverse wall (53), and —a skirt (54) extending from the transverse wall (53) at least partially surrounding the stator (11), —the second part (15.2) being overmoulded on the first part (15.1) so as to form a strong bearing (15).
Claims
1. A rotary electrical machine for a motor vehicle, comprising: a shaft; a rotor fitted on the shaft; a stator surrounding the rotor; a bracket comprising a receptacle for receipt of a shaft bearing which ensures guiding of the shaft in rotation, wherein the bracket comprises: a first part produced from a first material comprising: the receptacle for receipt of the shaft bearing; an interface for fitting of a bearing of a pinion external to the rotary electrical machine; and a second part produced from a second material comprising: a transverse wall; and a skirt obtained from the transverse wall, surrounding the stator at least partly; the second part being over-moulded on the first part such as to form a strong bracket.
2. The rotary electrical machine according to claim 1, wherein the first part is produced from a material which is stronger than the material of the second part.
3. The rotary electrical machine according to claim 1, wherein the first part is produced from steel.
4. The rotary electrical machine according to claim 1, wherein the second part-is produced from aluminium.
5. The rotary electrical machine according to claim 1, wherein the fitting interface extends projecting in order to be inserted in the interior of an inner ring of the bearing of the corresponding pinion.
6. The rotary electrical machine according to claim 1, wherein the receptacle for receipt of the shaft bearing of the first part is configured to receive an outer ring of the shaft bearing.
7. The rotary electrical machine according to claim 1, wherein the first part comprises an alternation of ribs and recesses on its rear face.
8. The rotary electrical machine according to claim 1, wherein the transverse wall is provided with openings for the passage of ends of windings of the stator.
9. An assembly comprising: a rotary electrical machine as defined according to claim 1 and a reducer element.
10. The assembly according to claim 9, wherein the reducer element is a motor vehicle gearbox.
11. The assembly according to claim 9, wherein the reducer element is a reducer which is fitted on a train of the vehicle, and is coupled to the rotary electrical machine.
Description
(1) The invention will be better understood by reading the following description and examining the figures which accompany it. These figures are provided purely by way of illustration of the invention which is in no way limiting.
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(7) Elements which are identical, similar or analogous retain the same reference from one figure to another.
(8) Hereinafter in the description, an orientation from the front to the rear is considered to be an orientation going from left to right in
(9)
(10) This electrical machine 10 is designed to be coupled to a speed reducer element 22. The reducer element 22 can be in the form of a motor vehicle gearbox or a reducer which is fitted on a train of the vehicle and is coupled to the rotary electrical machine 10.
(11) The electrical machine 10 can operate in an alternator mode, in particular in order to supply energy to the battery and to the on-board network of the vehicle, and in a motor mode, in order to ensure the starting of the thermal engine of the vehicle, and if applicable to participate in the traction of the vehicle, alone or in combination with the thermal engine. The power of the machine can for example be comprised between 15 kW and 50 kW.
(12) More specifically, as can be seen in
(13) In addition, the rotor 12 comprises two flanges 28, 29, which are each placed against an axial end face of the rotor 12. These flanges 28, 29 ensure axial retention of the magnets 25, and are also used to balance the rotor 12.
(14) In addition, the stator 11 comprises a body 31 constituted by a set of metal plates, as well as a winding 32. The body 31 is formed by a stack of metal plate sheets, which are retained in the form of a set by means of an appropriate securing system, such as rivets.
(15) The stator body 11 is provided with teeth delimiting notches for fitting of the winding 32. The winding 32 comprises an assembly of phase windings passing through the notches and forming chignons extending projecting on both sides of the stator body 11. In this case, the winding 32 is obtained from conductive elements in the form of pins which are connected to one another for example by welding. The winding 32 comprises phase windings of the double three-phase type connected in the form of a star and/or a triangle. Phase outputs are designed to be connected to an electronic control module 34.
(16) The electronic control module 34 comprises a heat dissipater 35, on which power modules 36 in particular are secured, for example by screwing. These power modules 36 incorporate in a known manner switches, which for example are in the form of transistors of the MOS type, making it possible to ensure control of the phases of the rotary electrical machine 10 in motor mode or in alternator mode. The switching of these transistors is controlled by a control unit. The electronic control module 34 is fitted placed, via the heat dissipater 35, against the rear face of a transverse wall of the rear bracket 16.
(17) Advantageously, the electrical machine 10 comprises a cooling circuit 38 with an input 39 and an output 40 for cooling liquid, such as a liquid based on water or oil. The cooling circuit 38 has a cooling chamber 41 provided in the mass of the heat dissipater 35, and a cooling chamber 42 surrounding the stator 11.
(18) The cooling chamber 42 can be delimited by the outer periphery of an annular wall of the front bracket 15, and the inner periphery of an annular wall of the rear bracket 16. This cooling chamber 42 is closed at its axial ends by two seals 46 of the O-ring type. The stator 11 is fitted shrunk in the interior of the front bracket 15, such as to establish close contact between the outer periphery of the stator body 31 and the inner periphery of the lateral wall of the front bracket 15.
(19) As a variant, the stator 11 is fitted clamped between the front bracket 15 and the rear bracket 16 by means of securing tie rods, as shown in
(20) As can be seen in
(21) As shown in
(22) More specifically, as can be seen in
(23) In this embodiment, the receptacle 17 for receipt of the first part 15.1 is configured to receive an outer ring of the shaft bearing 19. The fitting interface 51 extends projecting in order to be inserted in the interior of an inner ring of the bearing 50 of the intermediate pinion 49. As a variant, the fitting interface 51 can comprise a receptacle for receipt of the outer ring of the bearing 50 of the intermediate pinion 49.
(24) The fitting interface 51 is offset radially relative to the receptacle 17 for receipt of the bearing. An axis X1 of the receptacle 17 corresponding to the axis of the bracket 15 is parallel to an axis X2 of the fitting interface 51. The axis X1 is designed to be combined with the axis X of the rotary electrical machine 10.
(25) As illustrated by
(26) On its rear face, the first part 15.1 preferably comprises an alternation of ribs 57 and recesses 58, as shown in
(27) It will be appreciated that the foregoing description has been provided purely by way of example, and does not limit the scope of the invention, a departure from which would not be constituted by replacing the different elements by any other equivalents.
(28) In addition, the different characteristics, variants, and/or embodiments of the present invention can be associated with one another according to different combinations, provided that they are not incompatible or mutually exclusive.