IP Library Granted Patent US 12706495
Granted Patent B2
US 12706495 · App. 19/258,542 · Granted Aug 11, 2026

Electric pump rotor

Inventors: Yuji Minemura (Kariya, JP); Shuji Hattori (Kariya, JP); Feng Li (Kariya, JP)
Assignee: AISIN CORPORATION
H02K1/278
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Quick Facts
Patent No.
US 12706495
App. No.
19/258,542
Granted
Aug 11, 2026
Kind
B2
Abstract

An electric pump rotor includes: a permanent magnet; a cylindrical rotor core that holds the permanent magnet; an adjacent member that is provided adjacent to one side in an axial direction of the permanent magnet and the rotor core; and a resin molded portion in which a drive unit that covers the permanent magnet, the rotor core, and the adjacent member, and a blade portion that pressure-feeds a working fluid are integrally formed by resin molding.

Claims (32)

1 . An electric pump rotor, comprising:

a permanent magnet;

a cylindrical rotor core that holds the permanent magnet;

an adjacent member that is provided adjacent to one side in an axial direction of the permanent magnet and the rotor core; and

a resin molded portion in which a drive unit that covers the permanent magnet, the rotor core, and the adjacent member, and a blade portion that pressure-feeds a working fluid are integrally formed by resin molding, wherein

the adjacent member includes

a closed surface portion that includes a closed portion that closes the other side in the axial direction of an entire circumference hole portion formed over an entire circumference in a circumferential direction at an end portion of the drive unit on the one side in the axial direction, an inner extending portion that extends toward a radial inner side continuously from the closed portion, and an outer extending portion that extends toward a radial outer side continuously from the closed portion, and

at least one first entire circumference protrusion portion that is formed over the entire circumference in the circumferential direction toward the one side in the axial direction at each of the inner extending portion and the outer extending portion, and is welded to the resin molded portion.

2 . The electric pump rotor according to claim 1 , wherein

at least two of the at least one first entire circumference protrusion portions are formed at each of the inner extending portion and the outer extending portion.

3 . The electric pump rotor according to claim 1 , wherein

the adjacent member further includes:

a plurality of positioning portions that are formed to be separated from one another in the circumferential direction and are used for positioning the adjacent member in a radial direction with respect to a mold for molding the resin molded portion; and

a second entire circumference protrusion portion that is formed over an entire outer circumference of each of the plurality of positioning portions on a surface perpendicular to the radial direction and is welded to the resin molded portion.

4 . The electric pump rotor according to claim 2 , wherein

the adjacent member further includes:

a plurality of positioning portions that are formed to be separated from one another in the circumferential direction and are used for positioning the adjacent member in the radial direction with respect to a mold for molding the resin molded portion; and

a second entire circumference protrusion portion that is formed over an entire outer circumference of each of the plurality of positioning portions on a surface perpendicular to the radial direction and is welded to the resin molded portion.

5 . The electric pump rotor according to claim 1 , wherein

the rotor core includes:

a plurality of arrangement portions that are arranged in the circumferential direction on an outer diameter portion forming a surface of the cylindrical rotor core on the radial outer side, a plurality of permanent magnets being arranged in the plurality of arrangement portions; and

projecting portions that project in the circumferential direction at both ends in the circumferential direction of each of the plurality of arrangement portions and face each other on the radial outer side of each of the plurality of permanent magnets, and

the adjacent member further includes:

a plurality of press-fit protrusion portions that are formed separately in the circumferential direction and are press-fitted into an inner diameter portion forming a surface of the cylindrical rotor core on the radial inner side; and

an overlapping portion that is provided on the one side in the axial direction of the permanent magnet and at least partially overlaps the permanent magnet when viewed from the axial direction.

6 . The electric pump rotor according to claim 2 , wherein

the rotor core includes:

a plurality of arrangement portions that are arranged in the circumferential direction on an outer diameter portion forming a surface of the cylindrical rotor core on the radial outer side, a plurality of permanent magnets being arranged in the plurality of arrangement portions; and

projecting portions that project in the circumferential direction at both ends in the circumferential direction of each of the plurality of arrangement portions and face each other on the radial outer side of each of the plurality of permanent magnets, and

the adjacent member further includes:

a plurality of press-fit protrusion portions that are formed separately in the circumferential direction and are press-fitted into an inner diameter portion forming a surface of the cylindrical rotor core on the radial inner side; and

an overlapping portion that is provided on the one side in the axial direction of the permanent magnet and at least partially overlaps the permanent magnet when viewed from the axial direction.