IP Library › Granted Patent US 10,985,627
Granted Patent B2
US 10,985,627 · App. 16/087,784 · Granted Apr 20, 2021

Vehicle main electric motor

Inventor: Kenta Kaneko (Tokyo, JP)
Assignee: MITSUBISHI ELECTRIC CORPORATION
H02K5/1732B61C3/00F16C19/49F16C33/6696F16C2326/10
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Quick Facts
Patent No.
US 10,985,627
App. No.
16/087,784
Granted
Apr 20, 2021
Kind
B2
Abstract

A vehicle main electric motor includes: a ring-shaped filling chamber, which is formed in contact with a ball bearing and a roller bearing in a direction of a rotation shaft, for filling with a semi-solid lubricant, and which has a central axis concentric with the rotation shaft; and a discharge section connected to the filling chamber, for inflow of the semi-solid lubricant from the filling chamber. A display member, which has a specific gravity lower than a specific gravity of the semi-solid lubricant, is arranged, in an interior of the discharge section, at an initial position that is a position not reached by the semi-solid lubricant during an initial greasing. The discharge section has a retaining part for retaining, at a movement position that is a determined position within the discharge section, the display member moving in a greasing direction due to pressure of the semi-solid lubricant during a supplemental greasing. At least a portion of visible light from the exterior reaches at least a portion of the movement position.

Claims (77)

1. A vehicle main electric motor comprising:

a bearing disposed around a rotation shaft for transferring power to wheels and driving a vehicle;

a filling chamber formed in contact with the bearing along the rotation shaft, to be filled with a semi-solid lubricant, the filling chamber having a ring shape having a central axis concentric with the rotation shaft;

a greasing tube to be supplied with semi-solid lubricant from a greasing port formed in one end of the greasing tube, and to supply the semi-solid lubricant to the bearing and the filling chamber from another end of the greasing tube; and

a discharge section connected to the filling chamber, for inflow of the semi-solid lubricant from the filling chamber, wherein

a display member having a specific gravity lower than a specific gravity of the semi-solid lubricant is disposed at an initial position within the discharge section, the initial position not being reached by the semi-solid lubricant during an initial greasing by supplying the semi-solid lubricant,

the discharge section comprises a retaining part for stopping, at a movement position, the display member moving in a greasing direction due to pressure of the semi-solid lubricant during a supplemental greasing to supply the semi-solid lubricant performed after the initial greasing, the movement position being a predetermined position within the discharge section, and

at least a portion of visible light from the exterior reaches at least a portion of the movement position.

2. The vehicle main electric motor according to claim 1 , wherein

the discharge section is a plurality of discharge sections, and

a timing at which the display member moving in the greasing direction reaches the movement position differs among each of the discharge sections.

3. The vehicle main electric motor according to claim 2 , wherein

at least one discharge section is connected to a position, within the filling chamber, nearer to a vehicle body of the vehicle than the rotation shaft, and

the semi-solid lubricant is supplied to the filling chamber from a position, within the filling chamber, axially symmetric, relative to the rotation shaft, with respect to the position of one of the at least one discharge section.

4. The vehicle main electric motor according to claim 3 , wherein

the at least one discharge section is connected to a position, within the filling chamber, nearest to the vehicle body, and

the semi-solid lubricant is supplied to the filling chamber from a position, within the filling chamber, farthest from the vehicle body.

5. The vehicle main electric motor according to claim 4 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

6. The vehicle main electric motor according to claim 5 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

7. The vehicle main electric motor according to claim 3 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

8. The vehicle main electric motor according to claim 7 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

9. The vehicle main electric motor according to claim 2 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

10. The vehicle main electric motor according to claim 9 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

11. The vehicle main electric motor according to claim 2 , wherein

the discharge section comprises:

(a) a first discharge tube in which a diameter in a cross section perpendicular to a greasing direction of the first discharge tube is smaller than a diameter in a cross section perpendicular to the greasing direction of the display member, an end of the discharge tube connecting to the filling chamber, a vertical direction position of the one end of the discharge tube being lower than a vertical direction position of another end of the discharge tube,

(b) a second discharge tube in which a diameter of a cross section perpendicular to a greasing direction of the second discharge tube is greater than or equal to the diameter in the cross section perpendicular to the greasing direction of the display member, one end of the second discharge tube connecting to the first discharge tube, the display member being disposed at the initial position that is a location of connection with the first discharge tube, a vertical direction position of the one end being lower than the vertical direction position of another end of the second discharge tube,

(c) a third discharge tube having a diameter of a cross section perpendicular to a greasing direction of the third discharge tube is greater than or equal to the diameter of the cross section perpendicular to the greasing direction of the display member, one end of the third discharge tube connecting to the second discharge tube, a vertical direction position of the one end being higher than a vertical direction position of another end of the third discharge tube that is the movement position, and

in a cross section perpendicular to the rotation shaft, shape of the third discharge tube extends, in the cross section, toward a center of the rotation shaft.

12. The vehicle main electric motor according to claim 1 , wherein

at least one discharge section is connected to a position, within the filling chamber, nearer to a vehicle body of the vehicle than the rotation shaft, and

the semi-solid lubricant is supplied to the filling chamber from a position, within the filling chamber, axially symmetric, relative to the rotation shaft, with respect to the position of one of the at least one discharge section.

13. The vehicle main electric motor according to claim 12 , wherein

the at least one discharge section is connected to a position, within the filling chamber, nearest to the vehicle body, and

the semi-solid lubricant is supplied to the filling chamber from a position, within the filling chamber, farthest from the vehicle body.

14. The vehicle main electric motor according to claim 13 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

15. The vehicle main electric motor according to claim 14 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

16. The vehicle main electric motor according to claim 12 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

17. The vehicle main electric motor according to claim 16 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

18. The vehicle main electric motor according to claim 1 , further comprising:

a discharge chamber connected to the filling chamber or the discharge section,

wherein the semi-solid lubricant flows into the discharge chamber after the display members moving in the greasing direction reach the movement position in each of the discharge sections, and

at least a portion of visible light from the exterior reaches at least a portion of an interior of the discharge chamber.

19. The vehicle main electric motor according to claim 18 , wherein

at least one discharge section is connected to a position, within the filling chamber, closest to the vehicle body, and

the discharge chamber is connected to a discharge section for which a timing at which the display member moving in the greasing direction reaches the movement position is latest among the at least one discharge section.

20. The vehicle main electric motor according to claim 1 , wherein

the discharge section comprises:

(a) a first discharge tube in which a diameter in a cross section perpendicular to a greasing direction of the first discharge tube is smaller than a diameter in a cross section perpendicular to the greasing direction of the display member, an end of the discharge tube connecting to the filling chamber, a vertical direction position of the one end of the discharge tube being lower than a vertical direction position of another end of the discharge tube,

(b) a second discharge tube in which a diameter of a cross section perpendicular to a greasing direction of the second discharge tube is greater than or equal to the diameter in the cross section perpendicular to the greasing direction of the display member, one end of the second discharge tube connecting to the first discharge tube, the display member being disposed at the initial position that is a location of connection with the first discharge tube, a vertical direction position of the one end being lower than the vertical direction position of another end of the second discharge tube,

(c) a third discharge tube having a diameter of a cross section perpendicular to a greasing direction of the third discharge tube is greater than or equal to the diameter of the cross section perpendicular to the greasing direction of the display member, one end of the third discharge tube connecting to the second discharge tube, a vertical direction position of the one end being higher than a vertical direction position of another end of the third discharge tube that is the movement position, and

in a cross section perpendicular to the rotation shaft, shape of the third discharge tube extends, in the cross section, toward a center of the rotation shaft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2018
From: KANEKO, KENTA
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 046949/0810 →
Continuity (1)
Related Publication 20200076267A1 · Mar 5, 2020