ELECTRIC MOTOR WITH MAGNETIC SHIELD INTEGRATED INTO END SHIELD
20230070628 ยท 2023-03-09
Inventors
Cpc classification
B22D19/0054
PERFORMING OPERATIONS; TRANSPORTING
H02K11/012
ELECTRICITY
B22D21/007
PERFORMING OPERATIONS; TRANSPORTING
H02K3/42
ELECTRICITY
H02K5/15
ELECTRICITY
International classification
H02K11/01
ELECTRICITY
H02K3/42
ELECTRICITY
H02K5/22
ELECTRICITY
B22D19/00
PERFORMING OPERATIONS; TRANSPORTING
H02K5/15
ELECTRICITY
Abstract
An electric motor includes a rotor mounted rotatably about an axis of rotation in a bearing accommodated in an end shield, and a stator including wound coils such that windings are defined by at least one winding wire with winding wire ends electrically connected to busbars of a busbar unit. The busbar unit is on an upper side of the stator and the end shield is seated on an upper side of the busbar unit. A magnetic shield is integrated into the end shield.
Claims
1. An electric motor comprising: an end shield; a bearing in the end shield; a rotor mounted rotatably about an axis of rotation in the bearing; and a stator including coils wound such that windings are provided by at least one winding wire with winding wire ends electrically connected to busbars of a busbar unit located on a top side of the stator and the end shield being seated on a top side of the busbar unit; wherein a magnetic shield is integrated into the end shield.
2. The electric motor according to claim 1, wherein the magnetic shield includes a shield plate and the end shield is defined by an injection molded material around the shield plate.
3. The electric motor according to claim 2, the injection molded material is aluminum.
4. The electric motor according to claim 1, wherein the end shield with the magnetic shield extends in an axial direction between the busbar unit and a printed circuit board carrying a controller.
5. The electric motor according to claim 2, wherein the shield includes a tubular portion fully circumferentially surrounding the bearing.
6. The electric motor according to claim 5, wherein the shield includes an annular rim adjoining the tubular portion and extending in the axial direction between the printed circuit board and the busbar unit.
7. A method of manufacturing an electric motor including a rotor mounted rotatably about an axis of rotation in a bearing accommodated in an end shield, and a stator including coils wound to provide windings defined by at least one winding wire with winding wire ends electrically connected to busbars of a busbar unit located on an upper side of the stator, the method comprising: providing a die casting tool to produce the end shield; inserting a magnetic shield into the die casting tool; injecting aluminum into the die casting tool to form the end shield; mounting the end shield on top of the stator; and electrically connecting a printed circuit board with the busbar unit; wherein the printed circuit board is on the end shield.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012]
DETAILED DESCRIPTION
[0013]
[0014] Two bearing systems are usually provided for fixing the rotor 2. Often these bearings are designed as ball bearings, with the electromagnetic assemblies located between the bearings.
[0015] The bearing 8 is seated in an end shield 13. The end shield 13 includes a central opening 14 and an annular shoulder 15 located in the opening to receive the bearing 8. The opening 14 is penetrated by the rotor shaft 4. The end shield 13 is formed integrally with the housing 5. The bearing 8 lies with one side in contact with the shoulder 15 of the end shield 13. The end shield 13 is arranged on the side remote from the stator above the busbar unit 9 and is penetrated by power source connection elements 16 of the busbars. The end shield 13 does not touch the busbar unit 9. The power source connection elements 16 provide an electrical contact to a control unit (not shown) to control the electric motor 1. The power source connection elements 16 penetrate the end shield 13. A magnetic shield 17 is integrated into the end shield 13. The magnetic shield 17 preferably includes a metal plate, for example, a steel plate, which is overmolded during the manufacture of the end shield 13. The end shield 13 is preferably formed from aluminum or plastic. To manufacture the end shield 13, aluminum preferably is injected into a die casting tool. During manufacture, the magnetic shield 17 is located in the die casting tool and is overmolded by the aluminum.
[0016] The shield 17 is a tubular sheet, with an annular rim 19 at a first end of the tubular section 18. The tubular section 18 preferably has a circular cross-section. The opening of the second end of the tubular section opposite to the first end, when installed, is penetrated by the rotor shaft 4 and coaxially surrounds it. The tubular section 18 thus fully surrounds the bearing 8 on the outside. The tubular section 18 is located in a radial direction to the axis of rotation of the rotor shaft between bearing 8 and a connecting area between the busbars 11 and the winding wire ends 12. The annular rim 19 of the shielding 17 is located above the busbar unit 9 (parallel to it) and completely covers it. The shielding 17 is penetrated by the power source connections of the busbar unit 16. The annular rim 19 lies in the axial direction between the busbar unit 9 and a printed circuit board (not shown) on which the control unit is located.
[0017] The magnetic shield has a particularly simple design and can therefore be manufactured cost-effectively. By overmolding the shield during manufacture of the end shield, an otherwise necessary fastening step during assembly is eliminated. Since no fastening of the shield to the housing is necessary, a holding force check can also be dispensed with.
[0018] While example embodiments of the present disclosure have been described above, it is to be understood that variations and modifications will be apparent to those skilled in the art without departing from the scope and spirit of the present disclosure. The scope of the present disclosure, therefore, is to be determined solely by the following claims.