IP Library › Granted Patent US 12,613,198
Granted Patent B2
US 12,613,198 · App. 18/438,672 · Granted Apr 28, 2026

Laminated block correctness determining method

Inventor: Keita Namba (Nagoya, JP)
Assignee: TOYOTA BOSHOKU KABUSHIKI KAISHA
G01N21/9515G01N21/8851G06T7/0008G06T2207/30164
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Quick Facts
Patent No.
US 12,613,198
App. No.
18/438,672
Granted
Apr 28, 2026
Kind
B2
Abstract

Laminated blocks include a laminated block that has a groove formed on an outer circumferential surface of each laminated block and a laminated block that does not have the groove. A laminated block correctness determining method includes detecting presence or absence of the groove in the laminated block. The detecting presence or absence of the groove includes detecting a position of the groove when detecting the groove. The laminated block correctness determining method further includes determining whether a laminating order of the laminated blocks is correct from a detection result of the detecting presence or absence of the groove.

Claims (45)

1 . A laminated block correctness determining method for determining whether a laminated block to be laminated is a correct laminated block when manufacturing a laminated iron core by laminating cylindrical laminated blocks, each including laminated iron core pieces, wherein

the laminated blocks include a laminated block that has a groove formed on an outer circumferential surface of the laminated block and a laminated block that does not have the groove, and

the laminated block correctness determining method comprises:

detecting presence or absence of the groove in the laminated block, the detecting presence or absence of the groove includes detecting a position of the groove when detecting the groove; and

determining whether a laminating order of the laminated blocks is correct from a detection result of the detecting presence or absence of the groove,

wherein, in a state in which the laminating order of the laminated blocks is determined to be correct from the detection result, the laminated blocks are laminated, and

wherein, in a state in which the laminating order of the laminated blocks is determined to be incorrect from the detection result, the laminated blocks are prevented from being laminated.

2 . The laminated block correctness determining method according to claim 1 , wherein

opposite end surfaces of each of the laminated blocks in an axial direction respectively include line identification portions used to identify a production line of the laminated block, and

the laminated block correctness determining method further comprises:

acquiring, with an imaging device, a captured image of the laminated block by capturing one end surface of the laminated block in the axial direction; and

determining whether the production line of the laminated block is correct by comparing the line identification portion in a registered image with the line identification portion in the captured image, the registered image being an image of one end surface of the correct laminated block in the axial direction registered in advance.

3 . The laminated block correctness determining method according to claim 2 , wherein

orientation identification portions are respectively disposed on the opposite end surfaces of each of the laminated blocks, the orientation identification portions being used to identify an orientation of the laminated block, and

the laminated block correctness determining method further comprises:

determining whether the orientation of the laminated block is correct by comparing the orientation identification portion in the registered image with the orientation identification portion in the captured image.

4 . The laminated block correctness determining method according to claim 3 , wherein

each of the laminated blocks includes:

a central hole;

cooling passages which are arranged at intervals in a circumferential direction, which open in the opposite end surfaces, and through which a cooling medium flows; and

a key that protrudes from an inner surface of the central hole,

the cooling passages include:

a first cooling passage located in a predetermined region as the one end surface is viewed; and

a second cooling passage symmetric to the first cooling passage with respect to an imaginary axis extending in a protruding direction of the key, the second cooling passage having an opening shape that is different from an opening shape of the first cooling passage,

the orientation identification portions each include the first cooling passage and the second cooling passage, and

the determining whether the orientation of the laminated block is correct includes determining whether the orientation of the laminated block is correct by comparing the opening shape of the cooling passage located in the predetermined region in the registered image with the opening shape of the cooling passage located in the predetermined region in the captured image.

5 . The laminated block correctness determining method according to claim 1 , wherein

opposite end surfaces of each of the laminated blocks in an axial direction respectively include type identification portions used to identify a type of the laminated block, and

the laminated block correctness determining method further comprises:

acquiring, with an imaging device, a captured image of the laminated block by capturing one end surface of the laminated block in the axial direction; and

determining whether the type of the laminated block is correct by comparing the type identification portion in a registered image with the type identification portion in the captured image, the registered image being an image of one end surface of the correct laminated block in the axial direction registered in advance.

6 . The laminated block correctness determining method according to claim 5 , wherein

orientation identification portions are respectively disposed on the opposite end surfaces of each of the laminated blocks, the orientation identification portions being used to identify an orientation of the laminated block, and

the laminated block correctness determining method further comprises:

determining whether the orientation of the laminated block is correct by comparing the orientation identification portion in the registered image with the orientation identification portion in the captured image.

7 . The laminated block correctness determining method according to claim 6 , wherein

each of the laminated blocks includes:

a central hole;

cooling passages which are arranged at intervals in a circumferential direction, which open in the opposite end surfaces, and through which a cooling medium flows; and

a key that protrudes from an inner surface of the central hole,

the cooling passages include:

a first cooling passage located in a predetermined region as the one end surface is viewed; and

a second cooling passage symmetric to the first cooling passage with respect to an imaginary axis extending in a protruding direction of the key, the second cooling passage having an opening shape that is different from an opening shape of the first cooling passage,

the orientation identification portions each include the first cooling passage and the second cooling passage, and

the determining whether the orientation of the laminated block is correct includes determining whether the orientation of the laminated block is correct by comparing the opening shape of the cooling passage located in the predetermined region in the registered image with the opening shape of the cooling passage located in the predetermined region in the captured image.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 12, 2024
From: NAMBA, KEITA
To: TOYOTA BOSHOKU KABUSHIKI KAISHA
Reel/Frame 066441/0685 →
Priority Claims (1)
JP 2023-023678 · Feb 17, 2023 · national
Continuity (1)
Related Publication 20240280507A1 · Aug 22, 2024
References Cited (5)
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US 20180358871A1 · Hasuo · 2018 [cited by examiner]
US 20190089229A1 · Sameshima · 2019 [cited by examiner]
US 20210194336A1 · Nagasugi · 2021 [cited by examiner]
JP 202172675 · 2021 [cited by applicant]