ELECTRICAL MACHINE
20210021173 ยท 2021-01-21
Inventors
Cpc classification
H02K7/085
ELECTRICITY
H02K7/1815
ELECTRICITY
H02K5/16
ELECTRICITY
H02K5/10
ELECTRICITY
H02K5/1735
ELECTRICITY
F16C19/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C33/768
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C2361/63
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H02K7/10
ELECTRICITY
H02K5/173
ELECTRICITY
Abstract
An electrical machine, e.g., a power generator such as an alternator for a motor vehicle, is disclosed. The electrical machine includes a rotor and a stator, and the rotor is non-rotatably secured to a shaft having a shaft end that protrudes out of the rotor. A belt pulley is arranged at the shaft end for coupling to a drive. A bearing is non-rotatably secured to the shaft between the belt pulley and the rotor. A spacer ring is non-rotatably secured to the shaft between the belt pulley and the bearing. A gap which encircles the shaft is disposed between the belt pulley and the spacer ring, and between the spacer ring and the bearing, respectively. A plurality of blades directed radially outwards are arranged in at least one of the respective gaps. The blades convey incoming contaminated air to the outside and protect the respective gap against dirt.
Claims
1. An electrical machine, comprising: a rotor and a stator, the rotor non-rotatably secured to a shaft having a shaft end that protrudes out of the rotor, the shaft has, at the shaft end, a belt pulley that can be coupled in a torque-transmitting manner to a drive, a bearing non-rotatably secured to the shaft between the belt pulley and the rotor, wherein the shaft with the rotor is rotatably mounted about a rotation axis within the stator via the bearing, a spacer ring non-rotatably secured to the shaft between the belt pulley and the bearing, wherein a respective gap that encircles the shaft is disposed between the belt pulley and the spacer ring, and between the spacer ring and the bearing, respectively, and a plurality of blades directed radially outwards arranged in at least one of the respective gaps, wherein the plurality of blades convey incoming contaminated air to the outside and protect the respective gap against dirt.
2. The electrical machine according to claim 1, wherein the plurality of blades provide a labyrinth within the respective gap.
3. The electrical machine according to claim 1, wherein at least some of the plurality of blades are disposed on the spacer ring and engage into the respective gap between the spacer ring and the bearing.
4. The electrical machine according to claim 1, wherein at least some of the plurality of blades are disposed on the spacer ring and engage into the respective gap between the belt pulley and the spacer ring.
5. The electrical machine according to claim 3, wherein the plurality of blades are integrally formed on the spacer ring.
6. The electrical machine according to claim 3, wherein the spacer ring is in one piece and is composed of one material.
7. The electrical machine according to claim 3, wherein the spacer ring is composed of a composite material.
8. The electrical machine according to claim 1, wherein at least some of the plurality of blades are disposed on the belt pulley and engage into the respective gap between the belt pulley and the spacer ring.
9. The electrical machine according to claim 8, wherein the plurality of blades are integrally formed on the belt pulley.
10. The electrical machine according to claim 1, wherein the plurality of blades axially partially bridge the respective gap.
11. The electrical machine according to claim 1, wherein: the bearing is received from the outside in a bearing cover that axially separates the rotor from the belt pulley, and the bearing cover is at a radial distance from the spacer ring.
12. The electrical machine according to claim 1, wherein: the spacer ring includes an inner part and an outer part, wherein the outer part is attached to the inner part and comprises the plurality of blades, and the inner part of the spacer ring and the belt pulley are integrally formed from one piece.
13. The electrical machine according to claim 2, wherein at least some of the plurality of blades are disposed on the spacer ring and engage into the respective gap between the spacer ring and the bearing ring.
14. The electrical machine according to claim 4, wherein the plurality of blades are integrally formed on the spacer ring.
15. The electrical machine according to claim 7, wherein the composite material of the spacer ring includes metal and plastic.
16. An alternator for a motor vehicle, comprising: a rotor and a stator; the rotor being non-rotatably secured to a shaft having a shaft end that protrudes out of the rotor; a belt pulley disposed at the shaft end of the shaft that can be coupled in a torque-transmitting manner to a drive; a bearing non-rotatably secured to the shaft between the belt pulley and the rotor, wherein the shaft with the rotor is rotatably mounted about a rotation axis within the stator via the bearing; a spacer ring non-rotatably secured to the shaft between the belt pulley and the bearing; wherein a first gap and a second gap that encircle the shaft are disposed between the belt pulley and the spacer ring, and between the spacer ring and the bearing, respectively; and a plurality of blades directed radially outwards arranged in at least one of the first gap and the second gap, wherein the plurality of blades convey incoming contaminated air to the outside to protect the first gap and the second gap against dirt.
17. The alternator according to claim 16, wherein the plurality of blades provide a labyrinth within the at least one of the first gap and the second gap.
18. The alternator according to claim 16, wherein at least some of the plurality of blades are disposed on the spacer ring and engage into the second gap provided between the spacer ring and the bearing.
19. The alternator according to claim 16, wherein at least some of the plurality of blades are disposed on the spacer ring and engage into the first gap provided between the belt pulley and the spacer ring.
20. The alternator according to claim 16, wherein at least some of the plurality of blades are disposed on the belt pulley and engage into the first gap provided between the belt pulley and the spacer ring.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017] In the drawings,
[0018]
[0019]
DETAILED DESCRIPTION
[0020]
[0021] A spacer ring 11 is non-rotatably secured to the shaft 4 between the belt pulley 9 and the bearing 7. The spacer ring 11 is generally disc shaped and extends radially with a minimal gap to the bearing cover 8. A gap 12a is formed between the belt pulley 9 and the spacer ring 11. In the same way, a gap 12b is formed between the spacer ring 11 and the bearing 7. In this case, the gaps 12a and 12b encircle the shaft 4. A plurality of blades 13 which are directed radially to the outside and, in this exemplary embodiment, are integrally formed on the spacer ring 11 are arranged in the gaps 12a and 12b. In this case, the blades 13 form a labyrinth within the respective gap 12a and 12b. The bearing 7 can be protected by the blades 13 against dirt which enters the respective gap 12a and 12b together with the incoming contaminated air. The service life of the bearing 7 and also of the electrical machine 1 can be extended in this way. Furthermore, free outflow of water and of steam from the respective gap 12a and 12b is rendered possible, so that the working temperature in the bearing 7 can be reduced.
[0022]