IP Library › Granted Patent US 10,090,741
Granted Patent B2
US 10,090,741 · App. 14/955,620 · Granted Oct 2, 2018

Double-stator rotating electric machine

Inventor: Shin Kusase (Kariya, JP)
Assignee: DENSO CORPORATION
H02K16/04H02K1/276H02K1/2786H02K3/28
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Quick Facts
Patent No.
US 10,090,741
App. No.
14/955,620
Granted
Oct 2, 2018
Kind
B2
Abstract

A double-stator rotating electric machine includes a rotor, an outer stator having an outer multi-phase coil wound thereon, and an inner stator having an inner multi-phase coil wound thereon. Each corresponding pair of phase windings of the outer and inner multi-phase coils are formed of at least one common electric conductor wire. The electric conductor wire includes a bridging portion that bridges the corresponding pair of phase windings of the outer and inner multi-phase coils across the rotor. The bridging portion extends obliquely with respect to both radial and circumferential directions of the rotor so that radially outer and radially inner ends of the bridging portion, which are respectively connected to the corresponding pair of phase windings of the outer and inner multi-phase coils, are circumferentially offset from each other by an offset angle θ. The offset angle θ is greater than 0° and less than 180° in electrical angle.

Claims (18)

1. A double-stator rotating electric machine comprising:

a rotor;

an outer stator disposed radially outside the rotor with an outer gap formed therebetween, the outer stator having an outer multi-phase coil wound thereon; and

an inner stator disposed radially inside the rotor with an inner gap formed therebetween, the inner stator having an inner multi-phase coil wound thereon,

wherein

each corresponding pair of phase windings of the outer and inner multi-phase coils are formed of at least one common electric conductor wire,

the electric conductor wire includes a bridging portion that bridges the corresponding pair of phase windings of the outer and inner multi-phase coils across the rotor,

the bridging portion extends obliquely with respect to both radial and circumferential directions of the rotor so that radially outer and radially inner ends of the bridging portion, which are respectively connected to the corresponding pair of phase windings of the outer and inner multi-phase coils, are circumferentially offset from each other by an offset angle θ, and

the offset angle θ is greater than 0° and less than 180° in electrical angle.

2. The double-stator rotating electric machine as set forth in claim 1 , wherein the offset angle θ is greater than or equal to 60° and less than or equal to 150° in electrical angle.

3. The double-stator rotating electric machine as set forth in claim 2 , wherein the offset angle θ is equal to 90° in electrical angle.

4. The double-stator rotating electric machine as set forth in claim 1 , wherein the rotor includes a rotor core that is formed of a soft-magnetic material and shaped so as to allow magnetic flux having both a circumferential component and a radial component to flow through the rotor.

5. The double-stator rotating electric machine as set forth in claim 4 , wherein the rotor core includes an annular main body and a plurality of protrusions each of which radially protrudes from the main body, and

0.5≤W 2 /W 1 ≤1, where W 1 is a circumferential width of the protrusions and W 2 is a radial width of the main body.

6. The double-stator rotating electric machine as set forth in claim 1 , wherein the rotor has a plurality of outer permanent magnets provided in a radially outer part of the rotor facing the outer stator and a plurality of inner permanent magnets provided in a radially inner part of the rotor facing the inner stator, and

each of the outer permanent magnets is circumferentially offset from a corresponding one of the inner permanent magnets based on the offset angle θ of the bridge portion.

7. The double-stator rotating electric machine as set forth in claim 1 , wherein the rotor has an outer yoke part facing the outer stator and an inner yoke part facing the inner stator, and

the outer yoke part and the inner yoke part are circumferentially offset from each other based on the offset angle θ of the bridge portion.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 16, 2016
From: KUSASE, SHIN
To: DENSO CORPORATION
Reel/Frame 037743/0517 →
Priority Claims (1)
JP 2014-247850 · Dec 8, 2014 · national
Continuity (1)
Related Publication 20160164386A1 · Jun 9, 2016