IP Library › Granted Patent US 12,519,381
Granted Patent B2
US 12,519,381 · App. 17/972,175 · Granted Jan 6, 2026

Rotating electric machine

Inventor: Yuuki Mawatari (Kariya, JP)
Assignee: DENSO CORPORATION
H02K21/125H02K3/34H02K3/522H02K5/20
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Quick Facts
Patent No.
US 12,519,381
App. No.
17/972,175
Granted
Jan 6, 2026
Kind
B2
Abstract

A rotating electric machine includes a multi-phase armature coil having phase windings each constituted of a plurality of partial windings, and a winding support member supporting the partial windings from a radially outer or radially inner side thereof. Each of the partial windings has a pair of intermediate conductor portions and a pair of bridging portions connecting the pair of intermediate conductor portions. All the intermediate conductor portions of the partial windings are arranged in alignment with each other in a circumferential direction. In each of the partial windings, insulating members are mounted respectively on the bridging portions of the partial winding. Brackets are provided respectively in corresponding ones of the insulating members of the partial windings in such a manner as to partially protrude from the corresponding insulating members. Protruding portions of the brackets, which protrude from the corresponding insulating members, are mechanically joined to the winding support member.

Claims (49)

1 . A rotating electric machine comprising:

a field system having a plurality of magnetic poles;

a multi-phase armature coil radially opposed to the field system, the armature coil having phase windings each constituted of a plurality of partial windings; and

a winding support member provided on a radially opposite side of the armature coil to the field system and supporting the partial windings,

wherein

each of the partial windings has a pair of intermediate conductor portions and a pair of bridging portions, the pair of intermediate conductor portions each extending in an axial direction and being spaced at a predetermined interval in a circumferential direction, the pair of bridging portions being located respectively on opposite axial sides of the pair of intermediate conductor portions and connecting the pair of intermediate conductor portions in a ring shape,

all the partial windings constituting the phase windings of the armature coil are arranged in the circumferential direction so that the intermediate conductor portions of the partial windings are aligned with each other in the circumferential direction,

in each of the partial windings, insulating members are mounted respectively on corresponding ones of the bridging portions of the partial winding so as to electrically insulate the partial winding from the other partial windings,

brackets, which are separate members from the partial windings, are provided respectively in corresponding ones of the insulating members of the partial windings in such a manner as to partially protrude from the corresponding insulating members, and

protruding portions of the brackets, which protrude from the corresponding insulating members, are mechanically joined to the winding support member.

2 . The rotating electric machine as set forth in claim 1 , wherein

each of the brackets has a bent portion that is axially bent at an end of the bracket on a radially opposite side to a location where the bracket partially protrudes from the corresponding insulating member, and

the bent portion is radially opposed to the corresponding bridging portion covered by the corresponding insulating member.

3 . The rotating electric machine as set forth in claim 2 , wherein

each of the bridging portions of the partial windings is radially bent to axially overlap the winding support member,

each of the insulating members is arranged, at a corresponding one of axial ends of the winding support member, to axially overlap the winding support member, and

each of the brackets has the bent portion thereof radially opposed to an inner side of a radially-convex curved part of the corresponding bridging portion.

4 . The rotating electric machine as set forth in claim 2 , wherein

each of the brackets is sandwiched between two electrical conductor portions of the corresponding bridging portion which are spaced apart in the circumferential direction.

5 . The rotating electric machine as set forth in claim 2 , wherein

each of the insulating members is an insulating cover that surrounds the corresponding bridging portion from both the axial direction and a radial direction,

the insulating cover includes a plurality of divided cover members that are mounted to the corresponding bridging portion in the axial direction or in the radial direction, and

each of the brackets is provided integrally with one of the divided cover members of the corresponding insulating cover into one piece.

6 . The rotating electric machine as set forth in claim 1 , wherein

in each of the partial windings, there is interposed, between the pair of intermediate conductor portions of the partial winding, one of the pair of intermediate conductor portions of another of the partial windings which is of a different phase from the partial winding,

all the intermediate conductor portions of the partial windings constituting the phase windings of the armature coil are arranged in a predetermined sequence and in alignment with each other in the circumferential direction,

the bridging portions of the partial windings of different phases axially overlap one another at coil ends of the armature coil, and

for each pair of the insulating members mounted respectively on an axially-overlapping pair of the bridging portions, the protruding portions of the corresponding brackets provided respectively in the pair of the insulating members are arranged to axially overlap each other and together joined to the winding support member by a corresponding one of joining members.

7 . The rotating electric machine as set forth in claim 6 , wherein

for each of the partial windings, the bridging portions of the partial winding are arranged to axially overlap the bridging portions of two different ones of the partial windings respectively on one circumferential side and the other circumferential side of the partial winding, and

the combination of every two of the partial windings together joined to the winding support member by the corresponding joining member at one axial end of the armature coil is different from the combination of every two of the partial windings together joined to the winding support member by the corresponding joining member at the other axial end of the armature coil.

8 . The rotating electric machine as set forth in claim 6 , wherein

each of the brackets located on a same axial side of the winding support member has a boss portion formed in the protruding portion thereof and extending in the axial direction, and

each axially-overlapping pair of the brackets located on the same axial side of the winding support member are together joined, with the boss portions of the pair of the brackets abutting each other in the axial direction, to the winding support member by the corresponding joining member inserted through hollow portions of the boss portions.

9 . The rotating electric machine as set forth in claim 6 , wherein

the winding support member has a cooling portion configured to cool the armature coil, and

each of the brackets is joined by the corresponding joining member to a corresponding one of axial end faces of the winding support member.

10 . The rotating electric machine as set forth in claim 9 , wherein

the winding support member includes:

an armature core assembled to a radially inner periphery or a radially outer periphery of the armature coil; and

an armature holding member provided on a radially opposite side of the armature core to the armature coil and has the cooling portion formed therein, and each of the brackets is joined by the corresponding joining member to a corresponding one of axial end faces of the armature holding member.

11 . The rotating electric machine as set forth in claim 9 , wherein

the winding support member has a cylindrical portion and a pair of pedestal portions formed respectively at opposite axial ends of the cylindrical portion and each radially extending from the cylindrical portion,

each of the brackets is mechanically joined to a corresponding one of the pedestal portions of the winding support member,

the winding support member has, as the cooling portion, a coolant passage formed in an annular shape in the cylindrical portion of the winding support member, and

the coolant passage is formed in at least one of the pedestal portions as well as in the cylindrical portion of the winding support member.

12 . The rotating electric machine as set forth in claim 1 , wherein

the winding support member has a cylindrical portion and a pair of pedestal portions formed respectively at opposite axial ends of the cylindrical portion and each radially extending from the cylindrical portion, and

each of the brackets is mechanically joined to a corresponding one of the pedestal portions of the winding support member.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 11, 2023
From: MAWATARI, YUUKI
To: DENSO CORPORATION
Reel/Frame 063291/0736 →
Priority Claims (1)
JP 2020-079443 · Apr 28, 2020 · national
Continuity (2)
Continuation PCTJP2021014940 · Apr 8, 2021
Related Publication 20230039361A1 · Feb 9, 2023
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