STATOR FOR AN ELECTRICAL MACHINE AND ELECTRICAL MACHINE
20220407379 ยท 2022-12-22
Inventors
Cpc classification
International classification
Abstract
A stator for an electrical machine has a stator core (16) with stator grooves (19). Stator windings (17) are received in the stator grooves (19) of the stator core (16). Groove insulators (20) are received in the stator grooves (19) of the stator core (16) such that the groove insulators (20) are arranged between the stator core (16) and the stator windings (17). The groove insulators (20) are made of of plastic, namely a first plastic that provides the isolation function of the groove insulator (20) and a second plastic and/or a third plastic that provides a function of the respective groove insulator (20) differing from the isolating function.
Claims
1. A stator (14) for an electrical machine, comprising: a stator core (16) having stator grooves (19); stator windings (17) received in the stator grooves (19) of the stator core (16); and groove insulators (20) received in the stator grooves (19) of the stator core (16) such that the groove insulators (20) are arranged between the stator core (16) and the stator windings (17), wherein the groove insulators (20) are formed from at least first and second different plastics, the first plastic providing an electrical isolation function between the stator core (16) and the stator windings (17) in the respective stator groove (19), and the second plastic provides a function of the respective groove insulator (20) differing from the electrical isolation function.
2. The stator of claim 1, wherein the groove insulators (20) comprise at least one first portion (21) of the first plastic and at least one second portion (22) of the second plastic and/or at least one third portion (23) of the third portion.
3. The stator of claim 2, wherein the at least one first portion (21) of the first plastic is arranged between the stator windings (17) and the at least one second portion (22) of the second plastic.
4. The stator of claim 3, wherein the second plastic of the at least one second portion (22) is selected from a plastic material that provides a mechanical protection function for the at least one first portion (21) of the first plastic.
5. The stator of claim 4, wherein the second plastic is harder than the first plastic.
6. The stator of claim 4, wherein the second plastic is softer than the first plastic.
7. The stator of claim 2, further comprising at least one third portion (23) of a third plastic arranged between the stator windings (17) and the at least one first portion (21) of the first plastic.
8. The stator of claim 7, wherein the third plastic of the at least one third portion (23) is selected and configured to provide at least one of a holding function and a pretension function for the stator windings (17).
9. The stator of claim 8, wherein the third plastic is rubber-elastic or spring-elastic.
10. The stator of claim 7, wherein the third plastic swells under the action of a fluid.
11. The stator of claim 2, wherein the at least one first portion (21) of the first plastic and the at least one second portion (22) of the second plastic and/or the at least one third portion (23) of the third plastic are co-extruded.
12. An electrical machine (19) with a rotor (11) and the stator (14) of claim 1 radially outwardly surrounding the rotor (11) with an air gap (L) between the rotor (11) and the stator (14).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
[0022]
DETAILED DESCRIPTION
[0023]
[0024]
[0025] The stator core 16 has stator grooves 19 that receive the stator windings 17.
[0026] The stator windings 17 received in the stator grooves 19 typically comprise several electrical conductors 17a.
[0027] Groove insulators 20 also are arranged in the stator grooves 19 of the stator core 16, such that the groove insulators 20 are arranged between the stator core 16 and the stator windings 17. The groove insulators 20 provide an electrical isolation of the stator windings 17 against the stator core 16.
[0028] The groove insulators 20 of the stator 14 according to the invention consist of at least two different plastics and may be configured as integral or monolithic units.
[0029] A first plastic of the groove insulator 20 provides the electrical isolation function of the groove insulator 20 to electrically isolate the stator windings 17 against the stator core 16. The groove insulators 20 have at least one first portion 21 of the first plastic as well as a second plastic and/or a third plastic that provides a function of the respective groove insulator 20 differing from the electrical isolation function.
[0030] At least one second portion 22 is formed of the second plastic, and/or at least one third portion 23 is formed of the third plastic. If the groove insulator 20 has only the first portion 21 of the first plastic and the third portion 23 of the third plastic, the third plastic may be designated the second plastic and the third portion also the second portion.
[0031] In the embodiment of
[0032] Suitable materials for the first plastic are in particular a PEEK plastic, a PSU plastic, a PPS plastic, a PEI plastic or a PPSU plastic. If, in
[0033] In the embodiment of
[0034] A suitable plastic for the third portion 23 may be a spring-elastic plastic or a rubber-elastic plastic, and preferably a plastic that swells under the action of a fluid, such as a cooling fluid used for cooling the stator windings 17. For this, PA plastics are suitable.
[0035] The groove insulator 20 of
[0036] The embodiments of
[0037] The groove insulators 20 preferably are integral or monolithic.
[0038] Preferably, the first, second and/or third portions 21, 22 and/or 23 of the groove insulators 20 are formed together by co-extrusion so that accordingly, these portions 21, 22 and/or 23 are jointly co-extruded. In this way, a particularly thin-walled groove insulator 20 can be provided which has all desired functions but requires little installation space within the stator groove 19.
[0039] The invention further concerns an electrical machine 10 with a rotor 11 and a stator 14. The stator 14 is configured as described above, and comprises the above-described groove insulators 20. An air gap L is here formed between the rotor 11 and the stator 14. The stator 14 surrounds the rotor 11 radially on the outside.
[0040] The electrical machine 10 may be an electrical machine 10 that is used as a drive device in a motor vehicle 25.