IP Library › Granted Patent US 11,005,318
Granted Patent B2
US 11,005,318 · App. 16/529,250 · Granted May 11, 2021

Rotor for rotary electric machine and vehicle drive device including the rotor for rotary electric machine

Inventors: Hiroki Nakane (Kariya, JP); Takefumi Komaki (Okazaki, JP); Masayuki Ikemoto (Anjo, JP); Yoshinari Nakagawa (Nishio, JP); Minoru Anai (Toyota, JP); Shinya Sano (Toyota, JP)
Assignees: AISIN AW CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
H02K1/27H02K9/19
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Quick Facts
Patent No.
US 11,005,318
App. No.
16/529,250
Granted
May 11, 2021
Kind
B2
Abstract

A rotor for a rotary electric machine, the rotor including: a rotor core; a rotor shaft having a tubular shape, passing through a radially inner side of the rotor core to be coupled to the rotor core, and extending along an axial direction; an oil supply path that supplies oil to the rotor shaft, a portion to be lubricated that is disposed on a first axial side with respect to the rotor core, wherein one side in the axial direction is defined as the first axial side and another side in the axial direction is defined as a second axial side; and a lubrication oil path through which oil is supplied to the portion to be lubricated.

Claims (54)

1. A rotor for a rotary electric machine, the rotor comprising:

a rotor core;

a rotor shaft having a tubular shape, passing through a radially inner side of the rotor core to be coupled to the rotor core, and extending along an axial direction;

an oil supply path that supplies oil to the rotor shaft,

a portion to be lubricated that is disposed on a first axial side with respect to the rotor core, wherein one side in the axial direction is defined as the first axial side and another side in the axial direction is defined as a second axial side; and

a lubrication oil path through which oil is supplied to the portion to be lubricated, wherein:

the rotor shaft includes:

an inner peripheral portion surrounded by an inner peripheral surface of the tubular shape,

a radial oil path that has an opening that opens in the inner peripheral surface and that extends along a radial direction,

an annular weir disposed on the first axial side with respect to the opening and disposed so as to project radially inward from the inner peripheral surface and extend in a circumferential direction along the inner peripheral surface, and

an axial communication path;

the oil supply path supplies oil to a portion of the inner peripheral portion on the second axial side with respect to the weir;

the lubrication oil path is disposed on the first axial side with respect to the weir; and

the axial communication path is provided in the inner peripheral surface or the weir to communicate between a portion of the inner peripheral portion on the first axial side with respect to the weir and the portion of the inner peripheral portion on the second axial side with respect to the weir and communicate with the lubrication oil path.

2. The rotor for a rotary electric machine according to claim 1 , wherein

the portion to be lubricated is a bearing that rotatably supports the rotor shaft.

3. The rotor for a rotary electric machine according to claim 2 , wherein

an end of the axial communication path on the second axial side is disposed on the second axial side with respect to the opening.

4. The rotor for a rotary electric machine according to claim 3 , wherein

the axial communication path and the opening are at different positions in the circumferential direction at the same position in the axial direction.

5. The rotor for a rotary electric machine according to claim 4 , wherein

the axial communication path is provided in the inner peripheral surface to be dented radially outward, and formed so as to extend in the axial direction through a radially outer side with respect to the weir.

6. The rotor for a rotary electric machine according to claim 5 , further comprising a circumferential groove provided in the inner peripheral surface to extend in the circumferential direction, wherein

the circumferential groove is disposed on the second axial side with respect to the opening, and connected to the axial communication path.

7. The rotor for a rotary electric machine according to claim 6 , wherein:

a plurality of the axial communication paths are disposed side by side in the circumferential direction of the inner peripheral surface; and

the circumferential groove is connected to at least two of the axial communication paths.

8. The rotor for a rotary electric machine according to claim 7 , wherein:

the oil supply path includes a first supply path and a second supply path;

the first supply path supplies oil to the inner peripheral portion from an end of the rotor shaft on the first axial side; and

the second supply path supplies oil to the inner peripheral portion from an end of the rotor shaft on the second axial side.

9. The rotor for a rotary electric machine according to claim 8 , wherein:

the weir is a first weir; and

an annular second weir disposed on the second axial side with respect to the opening and disposed so as to project radially inward from the inner peripheral surface and extend in the circumferential direction along the inner peripheral surface is further provided.

10. The rotor for a rotary electric machine according to claim 1 , wherein

an end of the axial communication path on the second axial side is disposed on the second axial side with respect to the opening.

11. The rotor for a rotary electric machine according to claim 1 , wherein

the axial communication path is provided in the inner peripheral surface to be dented radially outward, and formed so as to extend in the axial direction through a radially outer side with respect to the weir.

12. The rotor for a rotary electric machine according to claim 1 , wherein

the axial communication path is formed so as to pass through the weir in the axial direction.

13. The rotor for a rotary electric machine according to claim 1 , wherein:

the oil supply path includes a first supply path and a second supply path;

the first supply path supplies oil to the inner peripheral portion from an end of the rotor shaft on the first axial side; and

the second supply path supplies oil to the inner peripheral portion from an end of the rotor shaft on the second axial side.

14. The rotor for a rotary electric machine according to claim 1 , wherein:

the weir is a first weir; and

an annular second weir disposed on the second axial side with respect to the opening and disposed so as to project radially inward from the inner peripheral surface and extend in the circumferential direction along the inner peripheral surface is further provided.

15. A vehicle drive device comprising:

a rotary electric machine that includes the rotor for a rotary electric machine according to claim 1 ; and

an oil pump that supplies oil to the oil supply path, wherein

the oil pump includes a first oil pump drivably coupled to the rotor shaft to be driven by rotation of the rotor shaft.

16. The vehicle drive device according to claim 15 , wherein:

an internal combustion engine and the rotary electric machine are provided as drive force sources for wheels; and

the oil pump includes a second oil pump drivably coupled to the internal combustion engine to be driven by a drive force of the internal combustion engine.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 1, 2019
From: NAKANE, HIROKI; KOMAKI, TAKEFUMI; IKEMOTO, MASAYUKI; NAKAGAWA, YOSHINARI; ANAI, MINORU; SANO, SHINYA
To: AISIN AW CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 049935/0849 →
Priority Claims (2)
JP JP2018-149317 · Aug 8, 2018 · national
JP JP2019-095360 · May 21, 2019 · national
Continuity (1)
Related Publication 20200052534A1 · Feb 13, 2020
Cited By (12)
US 12,208,908 US 12,227,300 US 12,234,021 US 12,286,234 US 12,312,091 US 12,384,547 US 12,473,074 US 12,486,021 US 12,486,022 US 12,515,515 US 12,583,593 US 12,649,582