IP Library › Granted Patent US 12,597,817
Granted Patent B2
US 12,597,817 · App. 18/642,055 · Granted Apr 7, 2026

Rotor and method for manufacturing rotor

Inventors: Makoto Kitahara (Toyota, JP); Masaki Sugiyama (Okazaki, JP)
Assignee: TOYOTA BOSHOKU KABUSHIKI KAISHA
H02K1/28B29C45/0025B29C45/14311B29C45/14467B29C45/14639H02K1/274H02K15/03H02K15/12B29C2045/0027B29C2045/14327B29K2105/0079B29K2105/16B29K2105/203B29L2031/7498
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Quick Facts
Patent No.
US 12,597,817
App. No.
18/642,055
Granted
Apr 7, 2026
Kind
B2
Abstract

A rotor includes a rotor core including multiple housing holes, multiple magnets accommodated in the housing holes, and multiple plastic portions. Each plastic portion is formed by plastic that fills corresponding one of the housing holes and fixes the corresponding magnet to the rotor core. Each plastic portion includes an end face exposed from an opening of the corresponding housing hole. A gate mark is formed in the end face. A quotient obtained by dividing an area of the end face of each plastic portion by an area of the gate mark is in a range of 24 to 150.

Claims (31)

1 . A rotor, comprising:

a rotor core including multiple housing holes;

multiple magnets accommodated in the housing holes; and

multiple plastic portions, each plastic portion being formed by plastic that fills corresponding one of the housing holes and fixes the corresponding magnet to the rotor core, wherein

each plastic portion includes an end face exposed from an opening of the corresponding housing hole,

a gate mark is formed on the end face of each plastic portion, the gate mark being a trace created when a plastic gate portion formed in a gate passage of a plastic filling device is separated during a process of filling the housing hole with the plastic through the gate passage, and

a quotient obtained by dividing an area of the end face of each plastic portion by an area of the gate mark is in a range of 24 to 150.

2 . The rotor according to claim 1 , wherein

the plastic includes a base plastic made of a liquid-crystal polymer base plastic, and a filler,

each opening is elongate,

a distance in an axial direction of the rotor core between each magnet and an end face of the rotor core on a side on which the openings are located is less than 0.28 mm,

the gate mark formed on the end face of each plastic portions is one of multiple gate marks, and

at least one of the gate marks on the end face of each plastic portion is formed at each of opposite ends in a lengthwise direction of the opening in the end face.

3 . The rotor according to claim 1 , wherein

the plastic includes a base plastic made of a liquid-crystal polymer base plastic, and a filler,

each opening is elongate,

a distance in an axial direction of the rotor core between each magnet and an end face of the rotor core on a side on which the openings are located is greater than or equal to 0.28 mm, and

the gate mark on the end face of each plastic portion is formed at a center portion in a lengthwise direction of the opening in the end face.

4 . A method for manufacturing a rotor, the rotor including

a rotor core including multiple housing holes;

multiple magnets accommodated in the housing holes; and

multiple plastic portions, each plastic portion being formed by plastic that fills corresponding one of the housing holes and fixes the corresponding magnet to the rotor core, wherein

the method for manufacturing the rotor comprises:

filling each housing hole with the plastic through a gate passage of a plastic filling device and openings of the housing holes, the plastic filling device being arranged adjacent to an end face of the rotor core; and

setting an area of each opening and a cross-sectional area of the gate passage such that a quotient obtained by dividing the area of the opening by the cross-sectional area of the gate passage is in a range of 24 to 150.

5 . The method for manufacturing the rotor according to claim 4 , wherein

the plastic includes a base plastic made of a liquid-crystal polymer base plastic, and a filler,

each opening is elongate,

the method comprises:

when a distance in an axial direction of the rotor core between each magnet and an end face of the rotor core on a side on which the openings are located is less than 0.29 mm, providing the gate passage at each of opposite ends in a lengthwise direction of each opening; and

when the distance is greater than or equal to 0.29 mm, providing the gate passage at a center portion in the lengthwise direction of each opening.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2024
From: KITAHARA, MAKOTO; SUGIYAMA, MASAKI
To: TOYOTA BOSHOKU KABUSHIKI KAISHA
Reel/Frame 067193/0952 →
Priority Claims (1)
JP 2023-071632 · Apr 25, 2023 · national
Continuity (1)
Related Publication 20240364158A1 · Oct 31, 2024
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