IP Library Granted Patent US 10,396,613
Granted Patent B2
US 10,396,613 · App. 14/509,047 · Granted Aug 27, 2019

Armature, rotating electrical device, and armature manufacturing method

Inventors: Hidenori Kanda (Toyohashi, JP); Shigeaki Kageme (Toyohashi, JP)
Assignee: DENSO CORPORATION
H02K3/28H02K1/148H02K1/185H02K1/187H02K1/26H02K3/18H02K15/022Y10T29/49009
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 10,396,613
App. No.
14/509,047
Granted
Aug 27, 2019
Kind
B2
Abstract

An armature provided with: plural core configuration members that configure an armature core and are segmented from each other on progression along the circumferential direction of the armature core; plural insulators that each include plural insulating portions mounted to the core configuration members and a coupling portion that couples the plural insulating portions together; plural windings that respectively include plural winding portions, wound on the core configuration members with the insulating portions interposed between the winding portions and the core configuration members, and a crossing wire that connects the plural winding portions together; a fitting portion that couples together adjacent core configuration members out of the plural core configuration members; and an exposing portion that is formed to the plural insulators and exposes the fitting portion when viewed along the axial direction of the armature core.

Claims (37)

1. An armature comprising:

a plurality of core configuration members that configure an armature core and are segmented from each other on progression along the circumferential direction of the armature core;

a plurality of insulators that each include a plurality of insulating portions mounted to the core configuration members and a coupling portion that couples the plurality of insulating portions together;

a plurality of windings that respectively include a plurality of winding portions, wound on the core configuration members with the insulating portions interposed between the winding portions and the core configuration members, and a crossing wire that connects the plurality of winding portions together;

a fitting portion, having a protrusion-shaped engagement portion and an indented-shaped engaged portion, that couples together adjacent core configuration members among the plurality of core configuration members; and

an exposing portion that is configured as a first cutaway portion at the insulator in a position corresponding to the engagement portion of the fitting portion and a second cutaway portion at the insulator in a position corresponding to the engaged portion of the fitting portion, and that exposes the fitting portion through the first cutaway portion and the second cutaway portion combined together, which form a shape corresponding to the cross-sectional profile of a pressing jig when viewed along the axial direction of the armature core, the fitting portion being configured to be pressed through the first cutaway portion and the second cutaway portion combined together by the pressing jig in the axial direction, such that the engagement portion and the engaged portion engage together, the exposing portion and the fitting portion being located at a radial direction inside of the winding portion of the respective windings and outside of the coupling portion of the respective insulators, the armature being used for an outer rotor type motor,

wherein guide projections project from a top face of connecting portions of the insulators, which connect the insulating portions and the coupling portions, and

wherein end portions of the crossing wires are positioned above the top face of the connecting portions so as to pass between and not above pairs of fitting portions, which are provided at both sides of the core configuration members, by being guided by the guide projections.

2. The armature of claim 1 , wherein:

exposing portions are provided at every 360°/n, or at every 360°/(n/2), about an axial center portion of the armature core, wherein n is the number of slots between a plurality of teeth portions formed to the plurality of core configuration members.

3. The armature of claim 2 , wherein:

the first cutaway portion and the second cutaway portion together form a circular profile when viewed along the axial direction of the armature core.

4. The armature of claim 2 , wherein:

the first cutaway portion and the second cutaway portion together form a profile other than a circular profile when viewed along the axial direction of the armature core.

5. A rotating electrical device comprising the armature of claim 2 .

6. A manufacturing method of the armature of claim 2 , wherein the armature manufacturing method comprises:

an armature configuration section assembly process that assembles the plurality of armature configuration sections, in which the core configuration members are assembled to the insulating portions of each of the insulators, and the windings are wound on the core configuration members; and

an armature assembly process that assembles the armature by fitting the plurality of armature configuration sections together in the axial direction, and by pressing and fitting the fitting portions together in the axial direction through the exposing portions using a pressing jig.

7. The armature of claim 1 , wherein:

the first cutaway portion and the second cutaway portion together form a circular profile when viewed along the axial direction of the armature core.

8. A rotating electrical device comprising the armature of claim 7 .

9. A manufacturing method of the armature of claim 7 , wherein the armature manufacturing method comprises:

an armature configuration section assembly process that assembles the plurality of armature configuration sections, in which the core configuration members are assembled to the insulating portions of each of the insulators, and the windings are wound on the core configuration members; and

an armature assembly process that assembles the armature by fitting the plurality of armature configuration sections together in the axial direction, and by pressing and fitting the fitting portions together in the axial direction through the exposing portions using a pressing jig.

10. The armature of claim 1 , wherein:

the first cutaway portion and the second cutaway portion together form a profile other than a circular profile when viewed along the axial direction of the armature core.

11. The armature of claim 10 , wherein:

guide projections are provided at connecting portions of the insulators between the insulating portions and the coupling portions; and

end portions of the crossing wires are positioned between pairs of fitting portions provided at both sides of the core configuration members by being guided by the guide projections.

12. A rotating electrical device comprising the armature of claim 10 .

13. A manufacturing method of the armature of claim 10 , wherein the armature manufacturing method comprises:

an armature configuration section assembly process that assembles the plurality of armature configuration sections, in which the core configuration members are assembled to the insulating portions of each of the insulators, and the windings are wound on the core configuration members; and

an armature assembly process that assembles the armature by fitting the plurality of armature configuration sections together in the axial direction, and by pressing and fitting the fitting portions together in the axial direction through the exposing portions using a pressing jig.

14. A rotating electrical device comprising the armature of claim 1 .

15. A manufacturing method of the armature of claim 1 , wherein the armature manufacturing method comprises:

an armature configuration section assembly process that assembles the plurality of armature configuration sections, in which the core configuration members are assembled to the insulating portions of each of the insulators, and the windings are wound on the core configuration members; and

an armature assembly process that assembles the armature by fitting the plurality of armature configuration sections together in the axial direction, and by pressing and fitting the fitting portions together in the axial direction through the exposing portions using a pressing jig.

Assignments (3)
MERGER Recorded Aug 6, 2018
From: ASMO CO., LTD.
To: DENSO CORPORATION
Reel/Frame 046718/0906 →
CORRECTIVE ASSIGNMENT TO CORRECT THE ATTORNEY DOCKET NUMBER PREVIOUSLY RECORDED AT REEL: 033948 FRAME: 0728. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Oct 22, 2014
From: KANDA, HIDENORI; KAGEME, SHIGEAKI
To: ASMO CO., LTD.
Reel/Frame 034030/0695 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 14, 2014
From: KANDA, HIDENORI; KAGEME, SHIGEAKI
To: ASMO CO., LTD.
Reel/Frame 033948/0728 →
Priority Claims (1)
JP 2013-214925 · Oct 15, 2013 · national
Continuity (1)
Related Publication 20150102696A1 · Apr 16, 2015