Axial gap type rotating electric machine and stator

US11190062B2 · US · B2

Patent metadata
FieldValue
Publication numberUS-11190062-B2
Application numberUS-201515555259-A
CountryUS
Kind codeB2
Filing dateMar 4, 2015
Priority dateMar 4, 2015
Publication dateNov 30, 2021
Grant dateNov 30, 2021

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  1. Title

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  2. Abstract

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  3. Assignees and inventors

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  4. Key dates

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  5. First independent claim

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  6. CPC / IPC classifications

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  7. Citations and related patents

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Abstract

Official abstract text for this publication.

The moldability of the stator of an axial gap type rotating electric machine improved. The axial gap type rotating electric machine has: a stator comprising core members disposed about a rotating shaft in a ring shape with a predetermined space from adjacent core members, said core members each having a core around which a coil is wound, the number of the turns of the coil being less on the outer perimeter side than on the inner perimeter side, the core members being molded with mold material; and a rotor facing an end surface of the core in the shaft direction through a predetermined gap. The core members comprise: a first core member in which the number of coil winding layers on one side in the shaft direction is larger than the number of winding layers on the other side; and a second core member in which the number of coil winding layers on one side in the shaft direction is less than the number of winding layers on the other side. In the stator, the first and second core members are alternately disposed, with the coil on the side where the number of the winding layers of the first core member is larger and the coil on the side where the number of the winding layers of the second core member is smaller opposed to each other.

First claim

Opening claim text (preview).

The invention claimed is: 1. An axial gap type rotating electric machine comprising: a stator formed by arranging core members annularly around a rotary shaft with a predetermined void between each adjacent ones of the core members, and molding the core members with a molding material, the core members each having a core around which a coil is wound such that a number of turns of the coil is smaller on an outer peripheral side than on an inner peripheral side; and a rotor facing an end surface of the core in a shaft direction with the predetermined void therebetween, wherein the core members comprise: a first core member in which a first number of winding layers of the coil on one side in the shaft direction is larger than a second number of winding layers on another side opposite from the one side; and a second core member in which a third number of winding layers of the coil on the one side in the shaft direction is smaller than a fourth number of winding layers on the another side; and in the stator, the first and second core members are arranged alternately such that the coil on the one side of the first core member faces the coil on the one side of the second core member; and the predetermined void is present between the coil of the first core member and the coil of the second core member; the second and third number of winding layers remains unchanged over a majority of a length of the first and second core members between the one side and the another side; and in a radial direction of the stator, a central portion of the predetermined void between an inner periphery of the stator and an outer periphery of the stator is wider than a remainder of the predetermined void between the first and second core members. 2. The axial gap type rotating electric machine according to claim 1 , wherein in the second core member, the third and fourth number of winding layers of the coil gradually increases in the shaft direction. 3. The axial gap type rotating electric machine according to claim 2 , wherein numbers of winding layers of the coil increase by at least two or more successive layers. 4. The axial gap type rotating electric machine according to claim 1 , wherein a winding start terminal and a winding end terminal of the coil wound around each core member are drawn out on an output side or an opposite-output side of the rotary shaft. 5. The axial gap type rotating electric machine according to claim 4 , wherein in the second core member, coils wound in an outermost layer and an even layer are wound in outermost peripheries of all layers. 6. The axial gap type rotating electric machine according to claim 1 , wherein the molding material is resin. 7. The stator according to claim 1 , wherein the predetermined void is filled with the molding material. 8. A stator formed by arranging a plurality of core members annularly around a rotary shaft, each of the plurality of core members having a core which has a magnetic flux surface in a direction of the rotary shaft and a coil wound around the core such that a number of turns of the coil is smaller on an outer peripheral side than on an inner peripheral side, wherein the plurality of core members includes: a first core member in which a first number of winding layers of the coil on one side in the shaft direction is larger than a second number of winding layers on another side; and a second core member in which a third number of winding layers of the coil on the one side in the shaft direction is smaller than a fourth number of winding layers on the another side, the first and second core members are arranged alternately such that the coil on the one side of the first core member faces the coil on the one side of the second core member with a predetermined void therebetween, and the plurality of core members are integrally molded together with a molding material; and the predetermined void is present between the coil of the first core member and the coil of the second core member; and the second and third number of winding layers remains unchanged over a majority of a length of the first and second core members between the one side and the another side. 9. The stator according to claim 8 , wherein the molding material is resin. 10. The stator according to claim 8 , wherein the predetermined void is filled with the molding material.

Assignees

Inventors

Classifications

  • Impregnating, moulding insulation, heating or drying of windings, stators, rotors or machines · CPC title

  • Machines characterised by the wiring leads, i.e. conducting wires for connecting the winding terminations · CPC title

  • Windings for salient poles · CPC title

  • with magnets axially facing the armatures, e.g. hub-type cycle dynamos · CPC title

  • Layout of windings or of connections between windings (windings for pole-changing H02K17/06, H02K17/14, H02K19/12, H02K19/32) · CPC title

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What does patent US11190062B2 cover?
The moldability of the stator of an axial gap type rotating electric machine improved. The axial gap type rotating electric machine has: a stator comprising core members disposed about a rotating shaft in a ring shape with a predetermined space from adjacent core members, said core members each having a core around which a coil is wound, the number of the turns of the coil being less on the out…
Who is the assignee on this patent?
Hitachi Industry Equipment Systems Co Ltd
What technology area does this patent fall under?
Primary CPC classification H02K1/182. Mapped technology areas include Electricity.
When was this patent published?
Publication date Tue Nov 30 2021 00:00:00 GMT+0000 (Coordinated Universal Time) (B2). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 3 related publications on this page (citations in our corpus or others sharing the same primary CPC).