MANUFACTURING METHOD OF ROTATING ELECTRIC MACHINE, STATOR, AND ROTATING ELECTRIC MACHINE

PROBLEM TO BE SOLVED: To manufacture a highly reliable rotating electric machine by reducing a risk that there may be generated a short-circuit or a partial discharge between conductors which constitute a coil of each phase. SOLUTION: After a coil winding process (S101) for winding the coil of each...

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Main Authors INNAN TOSHIO, MATSUBARA MASAKATSU, ITO WATARU, HANAI TAKASHI
Format Patent
LanguageEnglish
Published 16.06.2011
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Abstract PROBLEM TO BE SOLVED: To manufacture a highly reliable rotating electric machine by reducing a risk that there may be generated a short-circuit or a partial discharge between conductors which constitute a coil of each phase. SOLUTION: After a coil winding process (S101) for winding the coil of each phase to a stator core, an insulation test process between in-phase parallel conductors is performed (S104) via a coil-end forming process (S102) and a first lacing process (S103). After that, after performing a three-phase lead line caulking process (S105) for connecting power supply terminals, a neutral point caulking process (S106) for forming a neutral point, a neutral point insulation process (S107) for covering the neutral point with an insulation tape, and a second lacing process (S108) for tightly binding the neutral point by a thread, a stator which is manufactured via an integrated insulation test/inspection process (S109), a varnish impregnation process (S110), and a stator inspection (S111) for inspecting the state of the stator is combined with a rotor, thus manufacturing the rotating electric machine. COPYRIGHT: (C)2011,JPO&INPIT
AbstractList PROBLEM TO BE SOLVED: To manufacture a highly reliable rotating electric machine by reducing a risk that there may be generated a short-circuit or a partial discharge between conductors which constitute a coil of each phase. SOLUTION: After a coil winding process (S101) for winding the coil of each phase to a stator core, an insulation test process between in-phase parallel conductors is performed (S104) via a coil-end forming process (S102) and a first lacing process (S103). After that, after performing a three-phase lead line caulking process (S105) for connecting power supply terminals, a neutral point caulking process (S106) for forming a neutral point, a neutral point insulation process (S107) for covering the neutral point with an insulation tape, and a second lacing process (S108) for tightly binding the neutral point by a thread, a stator which is manufactured via an integrated insulation test/inspection process (S109), a varnish impregnation process (S110), and a stator inspection (S111) for inspecting the state of the stator is combined with a rotor, thus manufacturing the rotating electric machine. COPYRIGHT: (C)2011,JPO&INPIT
Author INNAN TOSHIO
HANAI TAKASHI
MATSUBARA MASAKATSU
ITO WATARU
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Snippet PROBLEM TO BE SOLVED: To manufacture a highly reliable rotating electric machine by reducing a risk that there may be generated a short-circuit or a partial...
SourceID epo
SourceType Open Access Repository
SubjectTerms CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION
CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
DYNAMO-ELECTRIC MACHINES
ELECTRICITY
GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS
GENERATION
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE
Title MANUFACTURING METHOD OF ROTATING ELECTRIC MACHINE, STATOR, AND ROTATING ELECTRIC MACHINE
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