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`
`- 6-
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`Mitsuba - 1003
`Page 6 of 15
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`1
`'' THE PATENT OFFICE OF JAPAN (JP)
`i: OFFICIAL GAZETTE FOR UNEXAMINED PATENTS (A)
`
`11 Disclosure Number
`13 Date o[ Disclosure
`•
`
`11-89128
`March 30, 1999
`
`51 Int. Cl6
`
`Identi[ication
`Symbols
`
`FI
`
`H02 K 1/18
`3/46
`15/02
`15/095
`
`Request for Examination
`
`21 Application Number
`9-248321
`
`22 Filing Date
`September 12. 1997
`
`H 02 K 1/18
`3/46
`15/02
`15/095
`
`C
`B
`G
`
`Not yet requested Number of Claims 11 OL
`(total 6 a es)
`
`71 Applicant 0000003078
`Toshiba Corp.
`72 Horikawa-cho, Saiwai-ku, Kawasaki, Kanagawa
`Prefecture
`
`72 Inventor ISHIHARA Harnhiko
`991-Anada-cho, Seto-chi, Aichi
`Toshiba Aichi Plant
`
`7
`
`~ Agent Attorney OOGO Norio
`and 1 other
`
`5
`
`1 [Title o[ Invention]
`'
`
`Stator of electric motor and its method of manufacture
`
`57 [Abstract]
`[Subject] The stator of ,m electric motor in which fixed units
`comprising coil bobbins about which coils have been wound
`and magnetic pole teeth arc mated to an mmular shaped stator
`iron core and its method of manufacture, specifically the st,1tor
`of 811 electric motor thal is assembled by connecting coil
`bobbins and its method o[ manuracturc.
`fMeans of Rcsolulionl A coil bobbin unit 20 is manufactured
`by connccli ng a predetermined number o[ coil bobbins 23 via
`connecting members 32. Each coil bobbin 23 is wound by wire
`22. ancr which the coil bobbin unit 20 is formed into annular
`shape, 1rnted lo :m annular slrnpcd stator core 29 and [ixcc\ in
`place to complete assembly of the sl,1lor 24.
`
`1
`-1-
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`Mitsuba - 1003
`Page 7 of 15
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`!Scope of Patent Claim]
`I Claim 11 The stator of m1 electric motor comprising coils,
`a coil bobbin unit comprising coil bobbins about which coils arc wound tlrnt lrnvc connection members. s,1icl coil
`bobbin units being able to be coupled lo other coil bobbins via the aforementioned co1mcction members so as to
`freely piYot with them,
`magnetic pole teeth to which the ,1forcmcntionccl coil bobbins arc fitted and fixed. and
`a fixed iron core to which are mated ,md held in place a plurality of coil bobbin units to which the aforementioned
`magnetic pole teeth lrnd been fitted and fixed , said units being formed in annular shape via the aforementioned
`connection members.
`[Claim 21 The stator of an electric motor of Claim l in which the aforementioned co1mection member is fonned by a
`strnclurc in which a recess member and a protmsion member are fitted together so as to freely pivol.
`I Claim 31 The stator of an electric motor of Claim l in which the aforementioned com1ection member is formed
`from an insertion pin and an insertion hole.
`l Claim --1-J The stator of an elect1ic motor of Claim l in which U1e aforementioned magnetic pole teeth and coil
`bobbins arc integrated.
`[Claim 5] The stator of an electric motor of Claim 1 in which the aforementioned coil bobbins are split in two with
`upper and lower symmetry reliltive to the axial direction of the rotor of the electric motor.
`[Clnim 6] The stator of an electric motor of Claim l in which projections to hold in place crossover wires between
`coils of the same phase or coil terminal connection members are installed in the aforementioned coil bobbins.
`[Claim 7] The stator of an electric motor of Claim l in which flange members that close the slots between adjacent
`coil bobbins when forming the aforementioned coil bobbins in annular shape are formed in the aforementioned coil
`bobbins.
`[Claim 8] The stator of an electric motor of Claim l in which insulating partition plates that fasten the connection
`members of adjacent coil bobbins arc installed between the aforementioned coil bobbins.
`[Claim 91 The stator of an electric motor of Claim 1 in which at least one of the aforementioned coil bobbins or the
`aforementioned partition plates is formed from electrical insulating material having high magnetic permeability.
`f Claim l 01 A method of manufacturing the stator of an electric motor in which units comprising coil bobbins about
`which coils have been wound m1d magnetic pole lee th are mated lo an annular shaped stator iron core, wherein said
`method comprises a step in which the aforementioned coil bobbins are connected in band shape via a predetermined
`number of connection members and a step of winding of wire about the aforementioned coil bobbins.
`[Claim 11] A method of manufacturing the stator of an electric motor in which units comprising coil bobbins about
`which coils have been wound and magnetic pole teeil1 are mated to an annular shaped yoke iron core, wherein said
`method comprises a step of winding of wire about the stator of the aforementioned coil bobbins, a step of
`connecting said coil bobbins via connection members, and a step of connecting wound wire of the same phase.
`[Detailed Description of the Invention J
`[0001]
`[Technical Field of Invention] The present invention concerns the stator of an electric motor in which fixed units
`of coil bobbins comprising a plurality of connected frames about which coils have been wound ,me! magnetic pole
`teeth are mated to an annular shaped yoke iron core and its method of manufacture, especially to the str1tor of an
`electric motor that is assembled by manufacturing split coil bobbins and then connecting them.
`(0002]
`[Related Art] The stator (stator) of an electric motor that uses coil bobbins has the configuration presented in the
`gazette of fopancsc Kokai Publication Hei-7-245895. Specifically, as explained based on Figure 10 and Figure l L
`the stator (stator) 8 comprises a stator core 1. coils 4, and coil bobbins 5 made of resin, while the rotor (rotor) 10 is
`inserted in the stator 8 and is re movably supported so ,is to freely rotate. A plurality of coil bobbins 5 arc connected
`in b,mcl shape at uniform separations continuously cormected via thin parts 15a. The properties of the coil bobbins 5
`prcfernbly would be insulating. but they need not be made of resin.
`[0003 J Magnetic pole teeth 2 arc first fitted to each of the coil bobbins 5 in the manufacture of the stator 8. The
`magnetic pole teeth 2 arc columnar shaped but a crescent shaped expanded rotor-facing member 2a is formed at one
`tip of each of the teeth. In short, the thin parts 15a arc bent so that the rotor-facing member 2a of each of the
`magnetic pole teeth 2 of the coil bobbins 5 facing the rotor lO would face the outer circumrcrcncc. as a result of
`which a rounded shape opposite from the normal asscmblccl Stille is adopted. Then. the rotor-facing member 2,1 of
`each of the 1mignctic pole teeth 2 is positioned and fo,cd in place so as to be at a predetermined position on wound
`
`- 2 -
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`Mitsuba - 1003
`Page 8 of 15
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`wire (not illustrntcd). E;1ch of the coil bobbins 5 is coupled on the outer-diameter side rather than on !he inner(cid:173)
`dimnclcr side, as a result of the magnetic pole teeth 2 Ccll1 be ,Yidely opened.
`[000.tl In this stale. predetermined magnetic pole teeth 2 are positioned on a reference line for wire winding and the
`wire that is wound via a winding device can be aligned on each of !he coil bobbins 5. After all coil bobbins 5 have
`been woumL thc:y would be reverted to !heir normal state to complete assembly of the stc11or core l and the stator, in
`turn.
`I ooosJ
`I Problems Solved h)' the Invention] In the aforementioned method of manufacturing the stator of an electric
`motor, a plurality of coil bobbins are integrated as a bm1d shaped continuous coil bobbin unit with !he discrete coil
`bobbins held at uniform separations by thin parts. Consequently, large molding dies arc required in the manufacture
`of !he coil bobbin units and the manufacturing properties me quite poor.
`[0006] Struclmally, coil bobbins are susceptible to deformation, including shifting and warping, when formed into
`annular shape and coil bobbins or magnetic pole teeth must be held in place by a jig when assembled. An additional
`defect is the fact tlrnt a fixed spatial distance must be nrnintained to ensure insulc1ting properties between coils. This
`constitutes a high rnte of spatial occupation that complicc1tes the winding of wire c1bout each coil.
`[0007] The present invention was devised in light of the aforementioned circumstc1nces. The objective is to provide
`a method of manufacture that does not necessitate a large molding die in the manufacture of coil bobbin units.
`(0008[ In addition, the stator of an electric motor that has good assembly properties is provided with a structure that
`does not suffer deformation such as shifting or warping c1s a result of closure of the slot by adjacent rotor-facing
`members when fanning coil bobbins in annular slrnpe.
`(0009] Furthermore, the stator of an electric motor in which the separation for insulation can be reduced as cl result
`of the installation of partition plates that insulate adjacent coils.
`[00101
`[Means of Solving the Problems] The present invention provides the stator of an electric mo Lor comprising coils, cl
`coil bobbin unit comprising coil bobbins about which coils are wound that have connection members, said coil
`bobbin units being able to be coupled to other coil bobbins via the aforementioned connection members so as to
`freely pivot wilh them, magnetic pole teeth to which the aforementioned coil bobbins arc fitted and fixed, and a
`fixed iron core to which arc mated and held in place a plurnlity of coil bobbin units to which the aforementioned
`magnetic pole teeth lrncl been filled and fixed, said units being formed in ammlar slrnpe via the aforementioned
`connection members.
`(0011 [ ln addition, the present invention concerns the slc1tor of an electric motor in which the aforementioned
`connection member is formed by a slrncture in which a recess member and a protrusion member are fitted together
`so as lo freely pivot.
`(0012 J In addition, the present invention concerns the stator of an electric motor in which the aforementioned
`connection member is formed from an insertion pin and c1n insertion hole.
`[0013] In addition, the aforemenlioncd invention concerns the stator of an electric motor in which lhe
`aforementioned magnetic pole teeth and coil bobbins are integrated.
`(OOU] In addition, the aforementioned invention concerns the stator of an electric motor in which the
`aforementioned coil bobbins are split in two with upper c1nd lower symmetry relative to the axial direction of lhc
`rotor or the elcct1ic motor.
`(0015] !11 addition. !he aforc111e11lioncd invention concerns the s tator of an elect1ic motor in which projec