IP Library Granted Patent US 11,329,538
Granted Patent B2
US 11,329,538 · App. 16/855,013 · Granted May 10, 2022

Rotor of rotary electric machine

Inventors: Katsutoku Takeuchi (Kokubunji, JP); Makoto Matsushita (Fuchu, JP); Yuji Yamamoto (Mie, JP); Masaaki Matsumoto (Mie, JP)
Assignees: TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION; Toshiba Industrial Products and Systems Corporation
H02K19/14H02K1/246
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Quick Facts
Patent No.
US 11,329,538
App. No.
16/855,013
Granted
May 10, 2022
Kind
B2
Abstract

According to one embodiment, in a lateral cross section, a rotor core includes a plurality of layers of barrier regions formed to be arranged in a radial direction with intervals in each magnetic pole. Each barrier region includes a flux barrier extending from near a part of an outer circumferential surface through d axis to near another part thereof. At least a flux barrier of a barrier region provided at an outermost circumferential surface side is filled with a nonmagnetic conductive material. A barrier-side edge on a side of the central axis, which defines the flux barrier of the barrier region provided in an outermost circumferential surface side is located within a range of 0.55<2a/R 2 <0.84.

Claims (12)

1. A rotor of a rotary electric machine, comprising:

a shaft rotatable around a central axis; and

a rotor core comprising a plurality of magnetic poles arranged in a circumferential direction around the central axis, and coaxially fixed to the shaft,

when, in a lateral cross section of the rotor core, normal to the central axis, an axis extending through a boundary between adjacent magnetic poles and the central axis is defined as a d axis and an axis magnetically intersecting perpendicular to the d axis is defined as a q axis,

the rotor core comprising a plurality of layers of barrier regions formed to be arranged in a radial direction with intervals respectively therebetween, in the plurality of magnetic poles, and

the plurality of barrier regions each comprising a flux barrier extending from near a part of an outer circumferential surface of the rotor core through the d axis to near another part of the outer circumferential surface, a first bridge portion formed of an iron core located between one end of the flux barrier and the outer circumferential surface and a second bridge portion formed of an iron core located between an other end of the flux barrier and the outer circumferential surface, and at least a flux barrier of a barrier region provided at an outermost circumferential surface side being filled with a nonmagnetic conductive material, and

when a radius of a circle circumscribed on the outer circumferential surface is represented by R and an equation of a hyperbola X coordinates and Y coordinates of which are two q axes adjacent to each other in the circumferential direction is defined as xy−a=0,

a barrier-side edge on a side of the central axis, which defines the flux barrier of the barrier region provided in an outermost circumferential surface side being located within a range of 0.55<2a/R 2 <0.84.

2. The rotor of claim 1 , wherein

the barrier-side edge on the side of the central axis is located within a range of 0.55<2a/R 2 <0.78.

3. The rotor of claim 1 , wherein

each of the plurality of barrier regions is curved in a convex manner toward the central axis.

Assignments (2)
MERGER Recorded Jul 29, 2025
From: TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION
To: KABUSHIKI KAISHA TOSHIBA
Reel/Frame 072239/0263 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 22, 2020
From: TAKEUCHI, KATSUTOKU; MATSUSHITA, MAKOTO; YAMAMOTO, YUJI; MATSUMOTO, MASAAKI
To: TOSHIBA INFRASTRUCTURE SYSTEMS & SOLUTIONS CORPORATION; TOSHIBA INDUSTRIAL PRODUCTS AND SYSTEMS CORPORATION
Reel/Frame 052460/0816 →
Priority Claims (1)
JP JP2019-082034 · Apr 23, 2019 · national
Continuity (1)
Related Publication 20200343798A1 · Oct 29, 2020