IP Library › Granted Patent US 10,060,519
Granted Patent B2
US 10,060,519 · App. 15/116,017 · Granted Aug 28, 2018

Power transfer device

Inventor: Mitsumasa Matsubara (Nagoya, JP)
Assignees: AISIN AW CO. LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
F16H57/0424F16H48/08F16H48/42F16H57/021F16H57/037F16H57/045F16H57/0471F16H57/0483F16H3/663F16H37/0813F16H2048/423F16H2200/006F16H2200/0086F16H2200/2007F16H2200/2025F16H2200/2046F16H2200/2066F16H2200/2082F16H2200/2097
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Quick Facts
Patent No.
US 10,060,519
App. No.
15/116,017
Granted
Aug 28, 2018
Kind
B2
Abstract

An extending curved portion is provided below a bearing used in a bearing that supports a counter shaft of a reservoir plate to extend so as to receive the bearing, and to swell toward a differential chamber with respect to a bearing support portion that supports the bearing. In addition, the bearing support portion is provided with drainpipe-like ribs that serve as drainpipes that lead working oil to the extending curved portion. Consequently, working oil supplied from a working oil supply hole to the bearing and flowing down from the center of rotation of the bearing can be led to a working oil storage chamber.

Claims (41)

1. A power transfer device comprising: a differential ring gear disposed below a drive pinion gear on the input side and meshed with the drive pinion gear; a differential gear coupled to the differential ring gear; a case that houses the differential ring gear and the differential gear; and a partitioning member that partitions a space in the case into a differential chamber, in which the differential ring gear and the differential gear are disposed, and a working oil storage chamber, in which working oil is stored, wherein:

the partitioning member forms the working oil storage chamber together with a first case member of the case, and forms the differential chamber together with a second case member of the case;

the first case member has a bearing support portion that supports a bearing that rotatably supports a rotary shaft of the drive pinion gear, and a working oil supply hole through which working oil is supplied to the bearing; and

the partitioning member has an extending curved portion positioned below the bearing on the differential ring gear side with respect to the bearing and curved to swell toward the differential chamber with respect to the bearing support portion in order to lead working oil flowing down from the bearing to the working oil storage chamber.

2. The power transfer device according to claim 1 , wherein

the extending curved portion is formed such that a curved portion of the extending curved portion extends over a range that includes a vertical line that extends from a rotational axis of the bearing.

3. The power transfer device according to claim 2 , wherein

the extending curved portion is formed such that a first range of the curved portion on a side in a rotational direction of the drive pinion gear during forward travel with respect to the vertical line which extends vertically from the rotational axis of the bearing is larger than a second range of the curved portion on the opposite side of the vertical line from the first range.

4. The power transfer device according to claim 3 , wherein:

the partitioning member has a tubular portion that is tubular and a flange portion that extends radially outward from an end surface of the tubular portion; and

the extending curved portion is formed to extend from the flange portion along a side surface of the differential ring gear.

5. The power transfer device according to claim 4 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

6. The power transfer device according to claim 5 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

7. The power transfer device according to claim 1 , wherein:

the partitioning member has a tubular portion that is tubular and a flange portion that extends radially outward from an end surface of the tubular portion; and

the extending curved portion is formed to extend from the flange portion along a side surface of the differential ring gear.

8. The power transfer device according to claim 7 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

9. The power transfer device according to claim 8 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

10. The power transfer device according to claim 1 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

11. The power transfer device according to claim 10 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

12. The power transfer device according to claim 2 , wherein:

the partitioning member has a tubular portion that is tubular and a flange portion that extends radially outward from an end surface of the tubular portion; and

the extending curved portion is formed to extend from the flange portion along a side surface of the differential ring gear.

13. The power transfer device according to claim 12 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

14. The power transfer device according to claim 13 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

15. The power transfer device according to claim 2 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

16. The power transfer device according to claim 15 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

17. The power transfer device according to claim 3 , wherein

the extending curved portion is formed in an arc shape along an outer peripheral edge of the differential ring gear as seen in an axial direction of a rotational axis of the differential ring gear.

18. The power transfer device according to claim 17 , wherein

the extending curved portion is formed so as to overlap the bearing support portion as seen in an axial direction of a rotational axis of the differential ring gear.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 2, 2016
From: MATSUBARA, MITSUMASA
To: AISIN AW CO., LTD.; TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 039316/0851 →
Priority Claims (1)
JP 2014-066504 · Mar 27, 2014 · national
Continuity (1)
Related Publication 20170130818A1 · May 11, 2017
Cited By (1)
US 12,607,257