IP Library Granted Patent US 12700770
Granted Patent B2
US 12700770 · App. 18/447,356 · Granted Aug 4, 2026

Rotating electric machine system, and combined power system equipped therewith

Inventors: Manabu Yazaki (Wako, JP); Tatsuya Choji (Wako, JP); Naoki Ito (Wako, JP)
Assignee: HONDA MOTOR CO., LTD.
H02K7/08F02B63/042H02K5/04H02K7/003
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Quick Facts
Patent No.
US 12700770
App. No.
18/447,356
Granted
Aug 4, 2026
Kind
B2
Abstract

A rotating electric machine housing of a rotating electric machine system supports a rotating shaft via a first bearing and a second bearing. A housing internal oil passage is formed inside the rotating electric machine housing. A gas supplied from a gas supplying device flows in the rotating electric machine housing. The gas flows in a first direction from the first bearing to the second bearing. A lubricating oil supplied from an oil circulation supply device flows through a housing internal oil passage. The lubricating oil flows in a second direction from the second bearing to the first bearing.

Claims (46)

1 . A rotating electric machine system equipped with a rotating electric machine including a rotor and a stator, and equipped with a rotating electric machine housing in which the rotating electric machine is accommodated,

the rotating electric machine system including a partition wall member configured to divide a hollow interior portion into a rotor chamber accommodating the rotor and a housing internal oil passage accommodating the stator,

the rotor including a rotating shaft and a permanent magnet provided on the rotating shaft,

the rotating electric machine housing including a first insertion hole and a second insertion hole communicating the rotor chamber, in an interior of the rotating electric machine housing, the rotating electric machine system comprising:

a first bearing and a second bearing that are interposed between the rotating electric machine housing and the rotating shaft, wherein the first insertion hole is configured to accommodate the first bearing, and the second insertion hole is configured to accommodate the second bearing;

an oil circulation supply device configured to circulate and supply a lubricating oil to the first bearing, the second bearing, and the housing internal oil passage; and

a gas supplying device configured to supply a gas to the first bearing and the second bearing,

wherein the oil circulation supply device includes a first oil supply line, a second oil supply line, a first oil recovery line, and a second oil recovery line;

the oil circulation supply device is configured to supply the lubricating oil to the first bearing and the second bearing via the first oil supply line, and supply the lubricating oil toward the housing internal oil passage via the second oil supply line;

the gas supplied to the first bearing and the second bearing simultaneously with the lubricating oil supplied to the first bearing and the second bearing;

the oil circulation supply device is configured to recover, via the first oil recovery line, the lubricating oil and the gas supplied from the rotor chamber to the first bearing and the second bearing via the first insertion hole and the second insertion hole, and recover, via the second oil recovery line, the lubricating oil and the gas that have flowed through the housing internal oil passage; and

the gas flowing in the rotor chamber flows in a first direction from the first bearing toward the second bearing, and the lubricating oil flowing through the housing internal oil passage flows in a second direction from the second bearing to the first bearing.

2 . The rotating electric machine system according to claim 1 , wherein the rotating electric machine housing further includes, on an outer circumference of the housing internal oil passage, a cooling jacket through which a cooling medium flows, and the cooling medium flowing through the cooling jacket flows in the first direction.

3 . The rotating electric machine system according to claim 1 , wherein the rotating electric machine housing is formed with a gas branching passage configured to divide the gas into a first branched gas flow and a second branched gas flow;

the first branched gas flow is supplied to the first insertion hole, and the second branched gas flow is supplied to the second insertion hole; and

the first branched gas flow flows from the first insertion hole toward the second insertion hole via a rotor chamber in which the rotor is accommodated.

4 . The rotating electric machine system according to claim 3 , wherein in the second insertion hole, the first branched gas flow flows toward the second bearing in one direction and the second branched gas flow flows toward the second bearing in another direction that is opposite to the one direction.

5 . The rotating electric machine system according to claim 1 , wherein the rotating electric machine housing further includes:

a first oil supply passage configured to supply the lubricating oil that has flowed through the first oil supply line to the first bearing and the second bearing;

a first oil recovery passage configured to deliver the lubricating oil supplied to the first bearing and the second bearing, to the first oil recovery line;

a second oil supply passage configured to supply the lubricating oil that has flowed through the second oil supply line, to the housing internal oil passage; and

a second oil recovery passage configured to deliver the lubricating oil supplied to the housing internal oil passage, to the second oil recovery line.

6 . The rotating electric machine system according to claim 5 , wherein the first oil supply passage includes a first oil branching passage facing toward the first bearing, and a second oil branching passage facing toward the second bearing.

7 . The rotating electric machine system according to claim 6 , wherein the first oil recovery passage comprises:

a first oil pathway configured to guide the lubricating oil supplied to the first bearing from the first oil branching passage, to the oil circulation supply device; and

a second oil pathway configured to guide the lubricating oil supplied to the second bearing from the second oil branching passage, to the oil circulation supply device.

8 . The rotating electric machine system according to claim 1 , wherein the oil circulation supply device includes a gas-liquid separation device configured to separate the gas and the lubricating oil.

9 . The rotating electric machine system according to claim 1 , wherein the partition wall member is made of a ceramic.

10 . A combined power system comprising a rotating electric machine system and an internal combustion engine,

wherein the rotating electric machine system comprises:

a rotating electric machine including a rotor and a stator;

a rotating electric machine housing in which the rotating electric machine is accommodated;

a partition wall member configured to divide a hollow interior portion into a rotor chamber accommodating the rotor and a housing internal oil passage accommodating the stator,

a first bearing and a second bearing that are interposed between the rotating electric machine housing and the rotating shaft;

an oil circulation supply device configured to circulate and supply a lubricating oil to the first bearing, the second bearing and a housing internal oil passage; and

a gas supplying device configured to supply a gas to the first bearing and the second bearing, and

wherein the rotor includes a rotating shaft and a permanent magnet provided on the rotating shaft;

the rotating electric machine housing includes a first insertion hole and a second insertion hole communicating the rotor chamber, in an interior of the rotating electric machine housing, wherein the first insertion hole is configured to accommodate the first bearing, and the second insertion hole is configured to accommodate the second bearing;

the oil circulation supply device includes a first oil supply line, a second oil supply line, a first oil recovery line, and a second oil recovery line;

the oil circulation supply device is configured to supply the lubricating oil to the first bearing and the second bearing via the first oil supply line, and supply the lubricating oil toward the housing internal oil passage via the second oil supply line;

the gas supplied to the first bearing and the second bearing simultaneously with the lubricating oil supplied to the first bearing and the second bearing;

the oil circulation supply device is configured to recover, via the first oil recovery line, the lubricating oil and the gas supplied from the rotor chamber to the first bearing and the second bearing via the first insertion hole and the second insertion hole, and recover, via the second oil recovery line, the lubricating oil and the gas that have flowed through the housing internal oil passage;

the gas flowing in the rotor chamber flows in a first direction from the first bearing toward the second bearing, and the lubricating oil flowing through the housing internal oil passage flows in a second direction from the second bearing to the first bearing; and

the internal combustion engine includes an output shaft configured to rotate integrally with the rotating shaft.

11 . The rotating electric machine system according to claim 1 , wherein both ends of the partition wall member in a longitudinal direction are supported by the rotating electric machine system via a first seal member and a second seal member.

12 . The rotating electric machine system according to claim 1 , wherein one end of the partition wall member in a longitudinal direction extends in an axial direction so as to surround part of an outer circumference of the first bearing.