Electric machine
11355992 ยท 2022-06-07
Assignee
Inventors
Cpc classification
F16C2202/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K5/1732
ELECTRICITY
F16C35/07
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16C35/042
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02K7/083
ELECTRICITY
F16C19/52
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
H02K5/15
ELECTRICITY
F16C35/07
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
An electric machine (10) has a rotor (15) and a stator (11). The rotor (15) has a rotor shaft (16) and a rotor laminated core (17). The stator (11) has a housing (12) with a housing cover (14) and a stator laminated core (13). The rotor shaft (16) is mounted rotatably in the housing (12) via bearings (18, 19). Each bearing (18, 19) has a bearing inner ring (18a, 19a) that bears against the rotor shaft (16), and a bearing outer ring (18b, 19b) that bears against the housing (12). Sections (24) of the housing (12) against which the respective bearing outer ring (18b, 19b) bears are formed from a light metal alloy material or a light metal material that has a transformed material structure such that the housing (12) is of electrically insulating configuration in these sections (24).
Claims
1. An electric machine, comprising: a rotor with a rotor shaft and a rotor laminated core; a stator having a housing with a housing cover and a stator laminated core, the housing being manufactured from a light metal alloy material or a light metal material; and bearings via which the rotor shaft is mounted rotatably in the housing, each bearing having a bearing inner ring that bears against a bearing surface of the rotor shaft, and a bearing outer ring that bears against a bearing surface of the housing, wherein A section of the housing that includes the bearing surface of the housing is subjected to a plasma electrochemical process to define a transformed material structure that is transformed relative to sections of the housing remote from the bearing surface of the housing, the transformed material structure being electrically insulating.
2. The electric machine of claim 1, further comprising at least one rotor shaft grounding ring for grounding the rotor shaft.
3. The electric machine of claim 1, wherein the light metal alloy material or light metal material that has a transformed material structure is an aluminum alloy or aluminum material.
4. The electric machine of claim 1, wherein the light metal alloy material or light metal material that has a transformed material structure forms an electrically insulating functional layer on its edge layer region.
5. The electric machine of claim 1, wherein the light metal alloy material or light metal material that has a transformed material structure is a functionally graded material.
6. The electric machine of claim 1, wherein the material structure of the light metal material or light metal alloy material is transformed using plasma electrochemistry.
7. An electric machine, comprising: a rotor with a rotor shaft and a rotor laminated core, the rotor being manufactured from a light metal alloy material or a light metal material; a stator having a housing with a housing cover and a stator laminated core; and bearings via which the rotor shaft is mounted rotatably in the housing, each bearing having a bearing inner ring that bears against a bearing surface of the rotor shaft, and a bearing outer ring that bears against a bearing surface of the housing, wherein a section of the rotor shaft that includes the bearing surface of the rotor shaft is subjected to a plasma electrochemical process to define a transformed material structure that is transformed relative to sections of the rotor shaft remote from the bearing surface of the rotor shaft, the transformed material structure being electrically insulating.
8. The electric machine of claim 7, further comprising at least one rotor shaft grounding ring for grounding the rotor shaft.
9. The electric machine of claim 7, wherein the light metal alloy material or light metal material that has a transformed material structure is an aluminum alloy or aluminum material.
10. The electric machine of claim 7, wherein the light metal alloy material or light metal material that has a transformed material structure forms an electrically insulating functional layer on its edge layer region.
11. The electric machine of claim 7, wherein the light metal alloy material or light metal material that has a transformed material structure is a functionally graded material.
12. The electric machine of claim 7, wherein the material structure of the light metal material or light metal alloy material is transformed using plasma electrochemistry.
13. The electric machine of claim 7, wherein a section of the housing that includes the bearing surface of the housing has a transformed material structure that is transformed relative to sections of the housing remote from the bearing surface of the housing, the transformed material structure of the housing being electrically insulating so that sections of both the rotor shaft and the housing that include the respective bearing surfaces have the transformed material structures that are electrically insulating.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
DETAILED DESCRIPTION
(5)
(6) As shown in
(7) The bearing 18 shown on the right side in
(8) The bearing inner ring 18a and 19a of the respective bearing 18 and 19 bears against the rotor shaft 16, namely against an axial end of the radially inner section 16a of the rotor shaft 16. The respective bearing outer ring 18b and 19b bears against the stator 11; namely, the bearing outer ring 18b of the bearing 18 bears against a section of the housing 12, and the bearing outer ring 19b of the bearing 19 bears against a section of the housing cover 14.
(9)
(10)
(11)
(12) The housing 12 preferably is manufactured from an aluminum material or aluminum alloy material. The aluminum material or aluminum alloy material has an electrically insulating functional layer on its edge layer region in the sections 24.
(13) A functionally graded material is provided by way of the transformation of the material structure of the light metal material or light metal alloy material, in particular of the aluminum material or aluminum alloy material. This functionally graded material forms the electrically insulating functional layer in its edge layer region in the sections 24. In particular, a plasma electrochemical transformation of the material structure is suitable for the transformation of the material structure of the aluminum material or aluminum alloy material or else other light metal materials. Plasma electrochemical transformation of the material structure is known from METAKER Surface methods.
(14) The invention performs a transformation of the material structure of this type on sections of an electric machine that are in contact with bearings to provide electric insulation and to prevent bearing currents from flowing via the bearings 18 and 19 and running faces of the bearings for the bearing bodies being damaged as a consequence of the bearing currents and as a consequence of electro-erosion.
(15) The electric machine also has a rotor shaft grounding ring 25 to ground the rotor shaft 16 and thus to provide a defined current path. As a result, electric currents will not flow via gearwheels and bearings of the transmission that is coupled to the rotor shaft 16 to avoid damage there as a consequence of electro-erosion.
(16) The first aspect of the invention can be used in the region of a single bearing or two bearings. More particularly, the housing 12 can have a section 24 consisting of the light metal alloy material or light metal material that has a transformed metal structure in the region of the bearing 18 and/or in the region of the bearing 19 to provide the electric insulation for the respective bearing 18, 19. The use of a single rotor shaft grounding ring 25 is sufficient, however.
(17)
(18) It is also possible to combine the two aspects of the invention with one another.
(19) It is possible by way of the invention to avoid a premature failure of the bearings on an electric machine. Bearing currents flow via the bearings and damage running faces of the bearings as a consequence of electro-erosion are avoided by way of the invention without using expensive ceramic bearings. The invention utilizes a transformation of the material structure of a light metal material or a light metal alloy material. In addition, a rotor shaft grounding ring also preferably is used. As a result of the transformation of the material structure, the respective sections are not only electrically insulating, but also are corrosion-resistant and abrasion-resistant.