IP Library › Granted Patent US 10,291,175
Granted Patent B2
US 10,291,175 · App. 15/659,717 · Granted May 14, 2019

Rotary electric machine system

Inventor: Tomoya Matsubara (Nagoya, JP)
Assignee: TOYOTA JIDOSHA KABUSHIKI KAISHA
H02P31/00B60L3/0061H02K7/08H02K11/21H02P29/024Y02T10/641Y02T10/642
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Quick Facts
Patent No.
US 10,291,175
App. No.
15/659,717
Granted
May 14, 2019
Kind
B2
Abstract

A rotary electric machine system includes: a rotary electric machine; a lubrication mechanism configured to supply lubricating oil to a bearing of the rotary electric machine; and a control unit configured to control the supply of lubricating oil from the lubrication mechanism. The control unit is configured to acquire an operation status of the rotary electric machine and determine whether there is a possibility of occurrence of electrolytic corrosion in the bearing. The control unit is configured to, when it is determined that there is a possibility of occurrence of electrolytic corrosion, increase the supply of lubricating oil to the bearing by controlling the lubrication mechanism as compared to the supply of lubricating oil to the bearing at a time when it is not determined that there is a possibility of occurrence of electrolytic corrosion.

Claims (26)

1. A rotary electric machine system comprising:

a rotary electric machine including a stator and a rotor, a rotor shaft fixed to the rotor being rotatably supported by a case via a bearing;

a lubrication mechanism configured to supply lubricating oil to the bearing of the rotary electric machine; and

a control unit configured to control the supply of lubricating oil from the lubrication mechanism, wherein

the control unit is configured to acquire an operation status of the rotary electric machine and determine whether there is a possibility of occurrence of electrolytic corrosion in the bearing, and

the control unit is configured to, when it is determined that there is a possibility of occurrence of electrolytic corrosion, increase the supply of lubricating oil to the bearing by controlling the lubrication mechanism as compared to the supply of lubricating oil to the bearing at a time when it is not determined that there is a possibility of occurrence of electrolytic corrosion.

2. The rotary electric machine system according to claim 1 , wherein

the rotary electric machine is mounted on a vehicle together with an internal combustion engine as a power source,

the lubrication mechanism includes an electric oil pump that is able to supply lubricating oil to the bearing, and

the control unit is configured to increase the supply of lubricating oil to the bearing by controlling a rotation speed of the electric oil pump.

3. The rotary electric machine system according to claim 1 , wherein

the rotary electric machine is mounted on a vehicle together with an internal combustion engine as a power source,

the lubrication mechanism includes an oil pump that is able to supply lubricating oil to the bearing,

the lubrication mechanism includes a first oil passage in which a pressure reducing valve is interposed, a second oil passage that bypasses the pressure reducing valve, and a switching unit configured to open or close the second oil passage, on a discharge side of the oil pump, and

the control unit is configured to increase the supply of lubricating oil to the bearing by switching from a state where the second oil passage is closed by the switching unit and the first oil passage is used as a path for supplying lubricating oil to a state where the second oil passage is used as a path for supplying lubricating oil.

4. The rotary electric machine system according to claim 1 , wherein

the control unit is configured to measure an elapsed time from when the supply of lubricating oil to the bearing is increased, and

the control unit is configured to, when the elapsed time exceeds a preset elapsed time threshold, return the supply of lubricating oil to the bearing to the supply of lubricating oil before the supply of lubricating oil is increased.

5. The rotary electric machine system according to claim 1 , wherein

the control unit is configured to, when it is not determined that there is a possibility of occurrence of electrolytic corrosion after the supply of lubricating oil to the bearing is increased, return the supply of lubricating oil to the bearing to the supply of lubricating oil before the supply of lubricating oil is increased.

6. The rotary electric machine system according to claim 1 , wherein

the control unit is configured to acquire an output torque of the rotary electric machine as the operation status of the rotary electric machine, and

the control unit is configured to, when the output torque exceeds a preset torque threshold, determine that there is a possibility of occurrence of electrolytic corrosion in the bearing.

7. The rotary electric machine system according to claim 1 , wherein

the control unit is configured to acquire a current value that is supplied to the rotary electric machine or a rotation speed of the rotary electric machine as the operation status of the rotary electric machine, and

the control unit is configured to, when the current value exceeds a preset current threshold or when the rotation speed exceeds a preset speed threshold, determine that there is a possibility of occurrence of electrolytic corrosion in the bearing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 26, 2017
From: MATSUBARA, TOMOYA
To: TOYOTA JIDOSHA KABUSHIKI KAISHA
Reel/Frame 043335/0341 →
Priority Claims (1)
JP 2016-191987 · Sep 29, 2016 · national
Continuity (1)
Related Publication 20180091086A1 · Mar 29, 2018
Cited By (1)
US 12,525,856