JP5421180B2 - Stator for rotating electrical machine and method for manufacturing the same - Google Patents

Stator for rotating electrical machine and method for manufacturing the same Download PDF

Info

Publication number
JP5421180B2
JP5421180B2 JP2010091027A JP2010091027A JP5421180B2 JP 5421180 B2 JP5421180 B2 JP 5421180B2 JP 2010091027 A JP2010091027 A JP 2010091027A JP 2010091027 A JP2010091027 A JP 2010091027A JP 5421180 B2 JP5421180 B2 JP 5421180B2
Authority
JP
Japan
Prior art keywords
stator
core
electrical machine
rotating electrical
temporary
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2010091027A
Other languages
Japanese (ja)
Other versions
JP2011223759A (en
Inventor
政洋 湯谷
展明 三宅
治之 長谷川
豪則 青海
文昭 土屋
亮子 小牧
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Mitsubishi Electric Corp
Original Assignee
Mitsubishi Electric Corp
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Mitsubishi Electric Corp filed Critical Mitsubishi Electric Corp
Priority to JP2010091027A priority Critical patent/JP5421180B2/en
Publication of JP2011223759A publication Critical patent/JP2011223759A/en
Application granted granted Critical
Publication of JP5421180B2 publication Critical patent/JP5421180B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Description

この発明は、分割積層コアからなる回転電機のステータ及びその製造方法に関するものである。   The present invention relates to a stator for a rotating electrical machine composed of a split laminated core and a method for manufacturing the same.

従来、回転電機の積層鉄心として、特許文献1に示すような積層鉄心がある。ここに開示されている積層鉄心の製造方法では、電磁鋼板から所定の形状のコアシートを打ち抜く際に、コアシートの中心部であって最終的に除去する部分(仮カシメ部)の上下面に仮カシメ用の凹凸を設けておく。そして、コアシートの積層時に、上下に積層するコアシート同士を仮に固定しておいて、積層鉄心を本固着した後、仮カシメ部分を打ち抜く。
また、特許文献2に示すような、積層鉄心のティース部に電着塗装して巻線を施す技術が利用されている。
Conventionally, as a laminated iron core of a rotating electrical machine, there is a laminated iron core as shown in Patent Document 1. In the method of manufacturing a laminated core disclosed herein, when punching a core sheet having a predetermined shape from an electromagnetic steel sheet, the upper and lower surfaces of the core sheet that are finally removed (temporary caulking portion) are removed. Provide irregularities for temporary caulking. And at the time of lamination | stacking of a core sheet, the core sheets laminated | stacked up and down are temporarily fixed, and after fixing a lamination | stacking iron core permanently, a temporary crimping part is punched out.
Further, a technique of applying a winding by electrodeposition coating on a tooth portion of a laminated iron core as shown in Patent Document 2 is used.

特開平6−165447(P5、図3)JP-A-6-165447 (P5, FIG. 3) 特開2001−231191(P4、段落0023)JP 2001-231191 (P4, paragraph 0023)

積層鉄心のコイルを巻回するティース部には、コイルとの絶縁を確保するために絶縁用ボビンを装着したり、電着塗装による絶縁層を形成したりする。ボビンを装着するより電着塗装を施す方が、コイルの占積率の向上には適しているが、積層鉄心のコイル巻回部のみを電着塗装しようとすると、電着塗装部の硬化収縮時に積層鉄心に変形が生じるという問題があった。
この変形は、積層鉄心外周面や内周面には塗装をしないようにマスクする必要があり、硬化収縮の力が不均等に積層鉄心に働くために生じるものである。
特許文献1の図5に示す積層鉄心の場合であれば、塗装膜が硬化する時、ティース部が図5の積層方向であって圧縮する方向に収縮する。結果的に、鉄心を構成する各コア片の外周側及び内周側は、上下に開く方向に応力が働く。特許文献1のように回転子鉄心の場合は、従来からの製造工程において、打ち抜いて最終的に捨て去る部分に凹凸を設けることで仮固定できる。この仮固定が電着塗装皮膜の硬化収縮に対する抗力となり得る。しかし、ステータの鉄心に電着塗装を施す場合、従来からの製造工程では仮固定を施し得る適当な部分が存在せず、電着塗装皮膜の硬化収縮による変形を効果的に防止できないという問題があった。
An insulating bobbin is attached to the teeth portion around which the coil of the laminated iron core is wound to ensure insulation from the coil, or an insulating layer is formed by electrodeposition coating. Electrodeposition coating is more suitable for improving the coil space factor than installing a bobbin. However, if only the coil winding part of the laminated core is to be electrodeposited, the shrinkage of the electrodeposition coating will be cured. There was a problem that the laminated iron core sometimes deformed.
This deformation occurs because it is necessary to mask the outer peripheral surface and inner peripheral surface of the laminated core so as not to paint, and the force of curing shrinkage acts on the laminated core unevenly.
In the case of the laminated iron core shown in FIG. 5 of Patent Document 1, when the coating film is cured, the teeth portion contracts in the laminating direction in FIG. As a result, on the outer peripheral side and inner peripheral side of each core piece constituting the iron core, stress acts in the direction of opening up and down. In the case of a rotor core as in Patent Document 1, in a conventional manufacturing process, it can be temporarily fixed by providing irregularities in a portion that is punched and finally discarded. This temporary fixation can be a resistance against cure shrinkage of the electrodeposition coating film. However, when electrodeposition coating is applied to the iron core of the stator, there is no suitable part that can be temporarily fixed in the conventional manufacturing process, and deformation due to curing shrinkage of the electrodeposition coating film cannot be effectively prevented. there were.

この発明は、このような課題を解決するためになされたものであり、電着塗装皮膜の硬化収縮による影響を極力受けない回転電機のステータ及びその製造方法を提供することを目的とする。   The present invention has been made to solve such problems, and an object of the present invention is to provide a stator for a rotating electrical machine that is not affected by hardening shrinkage of an electrodeposition coating as much as possible, and a method for manufacturing the same.

この発明に係る回転電機のステータは、複数のコア片を積層して構成する分割積層コアを電着塗装してコイルを巻回し、前記分割積層コアを複数環状に連結固定する回転電機のステータにおいて、
コア片は、バックヨーク部の外周部中心から外側に突出するブリッジ部を介して、上下に隣接するコア片同士を互いに固定する仮カシメ部に接続され、
電着塗装はティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、仮カシメ部に施されていることを特徴とするものである。
A stator of a rotating electrical machine according to the present invention is a stator of a rotating electrical machine in which a plurality of core pieces are laminated and electrodeposited on a divided laminated core and wound with a coil, and the divided laminated core is connected and fixed in a plurality of rings. ,
The core piece is connected to a temporary caulking portion that fixes the core pieces adjacent to each other vertically through a bridge portion that protrudes outward from the center of the outer peripheral portion of the back yoke portion,
The electrodeposition coating is characterized in that it is applied to the wall surface of the teeth portion, the coil side of the shoe, the inner peripheral surface of the back yoke portion, and the temporary caulking portion.

また、この発明に係る回転電機のステータの製造方法は、複数のコア片を積層して分割積層コアを構成する積層工程と
分割積層コアを電着塗装する電着塗装工程と、
電着塗装した複数の分割積層コアにコイルを巻回する巻線工程と、
を有する回転電機のステータ製造方法であって、
積層工程は、コア片のバックヨーク部の外周部中心から外側に突出するブリッジ部を介して接続された仮カシメ部を、上下に隣接するコア片に接続された仮カシメ部と互いに固定し、
電着塗装工程は、仮カシメ部を電極の接続部分として利用し、
ティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、積層した仮カシメ部に電着塗装を施すことを特徴とするものである。
Further, the method for manufacturing a stator of a rotating electrical machine according to the present invention includes a laminating process for laminating a plurality of core pieces to form a divided laminated core, and an electrodeposition coating process for electrodeposition coating the divided laminated core,
A winding process in which a coil is wound around a plurality of divided laminated cores that have been electrodeposited;
A stator manufacturing method for a rotating electrical machine having
The stacking step fixes the temporary crimping portion connected via the bridge portion protruding outward from the center of the outer periphery of the back yoke portion of the core piece to the temporary crimping portion connected to the upper and lower adjacent core pieces,
The electrodeposition coating process uses the temporary crimping part as the electrode connection part,
Electrodeposition coating is applied to the teeth wall surface, the coil side of the shoe, the inner peripheral surface of the back yoke, and the laminated temporary crimping portion.

この発明に係る回転電機のステータは、ステータを構成するコア片が、バックヨーク部の外周部中心から外側に突出するブリッジ部を介して、上下に隣接するコア片同士を互いに固定する仮カシメ部に接続され、
電着塗装は、ティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、仮カシメ部に施されているので、ティース部の電着塗装皮膜が硬化する時に発生する硬化収縮のバランスを取って、ステータの変形を防止することができる。
The stator of the rotating electrical machine according to the present invention is a temporary caulking portion in which core pieces constituting the stator fix the upper and lower adjacent core pieces to each other via a bridge portion protruding outward from the center of the outer peripheral portion of the back yoke portion. Connected to
Since the electrodeposition coating is applied to the teeth wall surface, the coil side of the shoe, the inner peripheral surface of the back yoke, and the temporary crimping portion, the shrinkage of curing that occurs when the electrodeposition coating film on the teeth is cured. A balance can be taken to prevent deformation of the stator.

また、この発明に係る回転電機のステータの製造方法では、
積層工程は、コア片のバックヨーク部の外周部中心から外側に突出するブリッジ部を介して接続された仮カシメ部を、上下に隣接するコア片に接続された仮カシメ部と互いに固定し、
電着塗装工程は、仮カシメ部を電極の接続部分として利用し、
ティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、積層した仮カシメ部に電着塗装を施すことを特徴とするものなので、分割積層コア自体に電極を接続する必要がない。これにより、特定の分割積層コアにストレスがかからないので、電着塗装皮膜の硬化収縮による変形を防止して精度良くステータを製造できる。
Moreover, in the method for manufacturing a stator for a rotating electrical machine according to the present invention,
The stacking step fixes the temporary crimping portion connected via the bridge portion protruding outward from the center of the outer periphery of the back yoke portion of the core piece to the temporary crimping portion connected to the upper and lower adjacent core pieces,
The electrodeposition coating process uses the temporary crimping part as the electrode connection part,
Since it is characterized by electrodeposition coating on the teeth wall surface, the coil side of the shoe, the inner peripheral surface of the back yoke, and the laminated temporary crimping portion, there is no need to connect electrodes to the divided laminated core itself. . Thereby, since a stress is not applied to a specific division | segmentation laminated | stacked core, the deformation | transformation by hardening shrinkage | contraction of an electrodeposition coating film can be prevented, and a stator can be manufactured accurately.

実施の形態1における、本発明に係る回転電機のステータを構成するコアシートを示す斜視図である。It is a perspective view which shows the core sheet which comprises the stator of the rotary electric machine which concerns on this invention in Embodiment 1. FIG. 実施の形態1における、コアシートの要部拡大斜視図である。FIG. 3 is an enlarged perspective view of a main part of a core sheet in the first embodiment. 図3を裏面から見た斜視図である。It is the perspective view which looked at FIG. 3 from the back surface. 実施の形態1における、コアシートの積層順序を示す斜視図及び斜視断面図である。FIG. 4 is a perspective view and a perspective sectional view showing a stacking order of core sheets in the first embodiment. 実施の形態1における、コアシートを仮に固定した状態を示す斜視図である。It is a perspective view which shows the state which temporarily fixed the core sheet | seat in Embodiment 1. FIG. 実施の形態1における、本発明に係る回転電機のステータの電着塗装後の積層コアを示す図である。It is a figure which shows the laminated core after the electrodeposition coating of the stator of the rotary electric machine which concerns on this invention in Embodiment 1. FIG. 実施の形態1における、本発明に係る回転電機のステータに、コイルを巻回して環状に整形した状態を示す斜視図である。It is a perspective view which shows the state which wound the coil around the stator of the rotary electric machine which concerns on this invention in Embodiment 1, and was shaped cyclically | annularly. 図7に示す回転電機のステータをモールド加工した状態を示す平面図である。It is a top view which shows the state which carried out the mold process of the stator of the rotary electric machine shown in FIG.

実施の形態1.
本発明に係る回転電機のステータの実施の形態1を、図を用いて説明する。
図1は、回転電機のステータを構成するコアシート1a及び1bを示す斜視図である。
コアシート1a,1bは、薄板の鋼板からエッチィング処理によって一体成型されている。コアシート1a,1bを構成するコア片11のバックヨーク部13の外周側端部は、エッチィング加工時に薄肉に残してある。この薄肉部を隣接するコア片11と共有することによってすべてのコア片11が連結されている。
コアシート1aとコアシート1bを交互に積層して、ステータを構成するのであるが、コアシート1aとコアシート1bの違いを含めて詳細を次に説明する。
Embodiment 1 FIG.
Embodiment 1 A stator of a rotating electrical machine according to the present invention will be described with reference to the drawings.
FIG. 1 is a perspective view showing core sheets 1a and 1b constituting a stator of a rotating electrical machine.
The core sheets 1a and 1b are integrally formed from a thin steel plate by an etching process. The outer peripheral side end portion of the back yoke portion 13 of the core piece 11 constituting the core sheets 1a and 1b is left thin during the etching process. All the core pieces 11 are connected by sharing this thin portion with the adjacent core pieces 11.
The core sheet 1a and the core sheet 1b are alternately stacked to constitute the stator. Details including the difference between the core sheet 1a and the core sheet 1b will be described below.

図2(a)は、コアシート1aの要部拡大図である。図2(b)は、コアシート1bの要部拡大図である。また、図3(a)は、図2(a)を裏面から見た図であり、図3(b)は、図2(b)を裏面から見た図である。
図2(a)に示すように、コア片11のバックヨーク部13の外周側中央には外側に向かって突出するブリッジ部14を設けている。そしてコア片11はこのブリッジ部14を介して、仮カシメ部15aに接続されている。仮カシメ部15aは、フレーム151aと、このフレームに片持ちで支持された雄カシメ部152a及び、雌カシメ部となるスリット153aを備えている。裏側から見た図3(a)に示すように、エッチング処理時に、スリット153aの長手方向の両側には、コアシート1a、1bの半分の厚み分だけ、板バネ状の凸部154aを残してある。
Fig.2 (a) is a principal part enlarged view of the core sheet 1a. FIG.2 (b) is a principal part enlarged view of the core sheet 1b. 3A is a diagram of FIG. 2A viewed from the back surface, and FIG. 3B is a diagram of FIG. 2B viewed from the back surface.
As shown in FIG. 2A, a bridge portion 14 that protrudes outward is provided at the center of the outer peripheral side of the back yoke portion 13 of the core piece 11. The core piece 11 is connected to the temporary crimping portion 15a via the bridge portion 14. The temporary caulking portion 15a includes a frame 151a, a male caulking portion 152a supported by the frame in a cantilever manner, and a slit 153a serving as a female caulking portion. As shown in FIG. 3A as viewed from the back side, at the time of the etching process, the leaf spring-like convex portions 154a are left on both sides in the longitudinal direction of the slit 153a by the half thickness of the core sheets 1a and 1b. is there.

図2(a)と図2(b)に示すようにコアシート1aとコアシート1bとでは、雄カシメ部と雌カシメ部の位置が左右逆になっている。次に説明する積層工程で、この部分を上下に嵌合させながらコアシートを積層する。   As shown in FIG. 2A and FIG. 2B, in the core sheet 1a and the core sheet 1b, the positions of the male caulking portion and the female caulking portion are reversed left and right. In the laminating process described next, the core sheet is laminated while fitting this portion up and down.

図4(a)はコアシート1a、1bを仮カシメしながら積層する積層工程を示す図とその斜視断面図である。図4(b)は積層後の状態を示す図及びその断面図である。積層工程では2種類のコアシート1a、1bを交互に積み重ねる。コアシート1a、1bを積層する度に、雄カシメ部152a、152bを上方から下方へ押圧して、直下の雌カシメ部であるスリット153a、153bと嵌合させる。スリット153a、153bには上述のように板バネ状の凸部154a、154bを長手方向両脇に設けているので、スリット153a、153bに圧入された雄カシメ部152a、152bは、凸部154a、154bによって、コア片11の水平方向へ押圧される。そしてこの押圧力によって上下の仮カシメ部15a、15b同士の嵌合状態が安定して保持される。全コアシート1a、1bを積層して嵌合すると、図5に示す分割積層コア2を連結した分割積層コア群構造体100ができあがる。   FIG. 4A is a diagram showing a laminating process for laminating core sheets 1a and 1b while temporarily crimping, and a perspective sectional view thereof. FIG. 4B is a view showing a state after lamination and a cross-sectional view thereof. In the laminating step, two types of core sheets 1a and 1b are alternately stacked. Each time the core sheets 1a and 1b are stacked, the male caulking portions 152a and 152b are pressed downward from above to fit with the slits 153a and 153b which are the female caulking portions immediately below. Since the slits 153a and 153b are provided with the leaf spring-like convex portions 154a and 154b on both sides in the longitudinal direction as described above, the male caulking portions 152a and 152b press-fitted into the slits 153a and 153b are provided with the convex portions 154a, The core piece 11 is pressed in the horizontal direction by 154b. And the fitting state of the upper and lower temporary crimping portions 15a, 15b is stably held by this pressing force. When all the core sheets 1a and 1b are laminated and fitted, a divided laminated core group structure 100 in which the divided laminated cores 2 shown in FIG. 5 are connected is completed.

次に、電着塗装工程を説明する。図6は塗装後の分割積層コア群構造体100を示す斜視図である。電着塗装は、ステータのティース部と、このティース部に巻回するコイル6との絶縁を確保するためにおこなう。電着塗装を施す前に、塗装の必要がない部分及び、塗装すると不都合が発生する部分にマスキング処理を施す。
ここでは、バックヨーク13外周面と、ティース内周面、薄肉部の内側であって折り曲げて隣接するコア片11同士が接触する部分、そして分割積層コア群構造体100の両端部をマスクする。ここで、仮カシメ部15a、15bはマスクしない。
Next, the electrodeposition coating process will be described. FIG. 6 is a perspective view showing the divided laminated core group structure 100 after painting. Electrodeposition coating is performed to ensure insulation between the teeth portion of the stator and the coil 6 wound around the teeth portion. Before applying electrodeposition coating, a masking process is performed on a portion that does not need to be painted and a portion where inconvenience occurs when painting.
Here, the outer peripheral surface of the back yoke 13, the inner peripheral surface of the teeth, the inner portion of the thin portion, the portion where the adjacent core pieces 11 are bent and contacted, and both ends of the divided laminated core group structure 100 are masked. Here, the temporary crimping portions 15a and 15b are not masked.

電着塗装時の電極は、両端の積層した仮カシメ部を上下から把持して取り付ければよい。
これにより、コア片11にかかる応力を防止すると同時に仮カシメ部15a、15bの結合状態を安定して保持できる。
The electrode at the time of electrodeposition coating may be attached by grasping the temporary crimping portions laminated at both ends from above and below.
Thereby, the stress applied to the core piece 11 can be prevented, and at the same time, the coupled state of the temporary crimping portions 15a and 15b can be stably maintained.

分割積層コア群構造体100のマスク処理しなかった部分に電着塗装皮膜が形成されたら、電着塗装皮膜を硬化させるために、所定の時間をかけて乾燥させる。この時、各分割積層コア2の電着塗装を施したティース部には、主に積層方向に塗装皮膜が収縮する力が集中して働く。そうすると、バックヨーク部13外周面は塗装を施していないので、バックヨーク部13には、積層方向上下に向かって開く応力がかかる。
しかし、この実施の形態によれば、コア片11のバックヨーク部13にブリッジ部14を介して接続する仮カシメ部15a、15bが上下に互いに嵌合されている。しかも、仮カシメ部15a、15bにも電着塗装しているので、この部分にも積層方向に硬化収縮が起こる。ブリッジ部14の横幅は狭いのであるが、仮カシメ部15a、15bの嵌合力と先の硬化収縮力と合わせて、ティース部の硬化収縮力によって発生するバックヨーク部13を積層上下方向に開こうとする応力に抗することができる。
When the electrodeposition coating film is formed on the portion of the divided laminated core group structure 100 that has not been masked, the electrodeposition coating film is dried for a predetermined time in order to cure the electrodeposition coating film. At this time, the force that contracts the coating film mainly in the laminating direction is concentrated on the teeth portion of each divided laminated core 2 that has been subjected to electrodeposition coating. Then, since the outer peripheral surface of the back yoke portion 13 is not coated, the back yoke portion 13 is subjected to a stress that opens upward and downward in the stacking direction.
However, according to this embodiment, the temporary crimping parts 15a and 15b connected to the back yoke part 13 of the core piece 11 via the bridge part 14 are fitted to each other vertically. In addition, since the temporary crimping portions 15a and 15b are also electrodeposited, curing shrinkage occurs in these portions in the stacking direction. Although the lateral width of the bridge portion 14 is narrow, the back yoke portion 13 generated by the cure shrinkage force of the teeth portion is combined with the fitting force of the temporary crimping portions 15a and 15b and the previous cure shrinkage force, and the stacking vertical direction is opened. It can resist the stress.

電着塗装皮膜が乾燥すると次の巻線工程に移る。巻線工程では、まずティースに所定のコイル6を巻回する。分割積層コア2のバックヨーク部内周面、ティース部壁面とシューのコイル6側壁面には塗装皮膜が形成されている。この塗装皮膜によって、ティース部は既に固定されているので精度良くコイル6を巻回することができる。   When the electrodeposition coating film dries, it moves to the next winding process. In the winding process, first, a predetermined coil 6 is wound around the teeth. A coating film is formed on the inner peripheral surface of the back yoke portion of the split laminated core 2, the wall surface of the teeth portion, and the side wall surface of the coil 6 of the shoe. Since the tooth portion is already fixed by this coating film, the coil 6 can be wound with high accuracy.

巻線を終えたら、外周が真円の図示しない心棒に沿って分割積層コア群構造体100を図7のように成型してステータ101を得る。
これを更に図示しない金型に入れ、外周部を樹脂でモールドすると、図8に示すモールドステータ102が完成する。
When the winding is finished, the divided laminated core group structure 100 is molded as shown in FIG. 7 along a mandrel (not shown) whose outer periphery is a perfect circle to obtain the stator 101.
When this is further put into a mold (not shown) and the outer peripheral portion is molded with resin, the molded stator 102 shown in FIG. 8 is completed.

この発明の実施の形態1による回転電機のステータは、バックヨーク13の外周側中央から突出したブリッジ部14を介して上下に積層するコアシート1a、1bを仮にカシメて嵌合する仮カシメ部15a、15bを備えていて、この部分も電着塗装するので、ティース部の電着塗装皮膜が硬化する時に発生する応力に抗して、ステータの変形を防止することができる。
その結果、磁気特性にすぐれた効率の良い回転電機のステータを提供することができる。
また、仮カシメ部15a、15bは所定の分割積層コアを構成するコア片11にのみ設ければよいので、積層工程におけるミスロードを低減できる。
The stator of the rotating electrical machine according to the first embodiment of the present invention has a temporary crimping portion 15a in which the core sheets 1a and 1b that are stacked one above the other through the bridge portion 14 protruding from the center on the outer peripheral side of the back yoke 13 are temporarily crimped and fitted. 15b, and this portion is also electrodeposited, so that the deformation of the stator can be prevented against the stress generated when the electrodeposition coating film on the teeth portion is cured.
As a result, it is possible to provide an efficient stator for a rotating electrical machine having excellent magnetic characteristics.
Moreover, since temporary crimping parts 15a and 15b should just be provided only in the core piece 11 which comprises a predetermined | prescribed division | segmentation laminated | stacked core, the misload in a lamination process can be reduced.

この発明の実施の形態1による回転電機のステータの製造方法は、積層した仮カシメ部15a、15bを電着塗装時の電極把持部とするものなので、分割積層コア2自体に電極を接続する必要がない。これにより、特定の分割積層コア2に応力がかからないので、電着塗装皮膜の硬化収縮による変形を防止して精度良くステータを製造できる。   The stator manufacturing method for a rotating electrical machine according to Embodiment 1 of the present invention uses the laminated temporary crimping portions 15a and 15b as electrode gripping portions at the time of electrodeposition coating. Therefore, it is necessary to connect electrodes to the divided laminated core 2 itself. There is no. As a result, no stress is applied to the specific divided laminated core 2, so that the stator can be manufactured with high accuracy by preventing deformation due to curing shrinkage of the electrodeposition coating film.

また、電着塗装時の電極を積層した仮カシメ部15a、15bに取り付ける時に、積層方向の上下から把持することにより、この把持力によっても電着塗装皮膜の硬化収縮時の応力に確実に抗することができる。   In addition, when attaching the electrodes during electrodeposition coating to the temporary crimping portions 15a and 15b, the gripping force from the upper and lower sides in the laminating direction ensures resistance to the stress at the time of hardening shrinkage of the electrodeposition coating film. can do.

また、コアシート1a、1bの成型にはエッチィング処理を利用できるので、小型モータ用のステータであっても精度良く製造できる。   Moreover, since the etching process can be used for molding the core sheets 1a and 1b, even a stator for a small motor can be manufactured with high accuracy.

さらに、ステータの外周面をモールドすることにより、積層した仮カシメ部を切断する必要がなく、仮カシメ部を取り囲んでモールドできるので、剛性の高いステータを製造できる。   Further, by molding the outer peripheral surface of the stator, it is not necessary to cut the stacked temporary crimping portions, and the temporary crimping portions can be surrounded and molded, so that a highly rigid stator can be manufactured.

実施の形態1では、ステータに用いる1層のコア片11全てが接続されたコアシート1a、1bを使用する例を示したが、等分に分割したコアシートを利用し、後で組み合わせても良い。また、分割積層コアを単体で積層して塗装を施した後で、個別にコイルを巻回した後ステータを組み立てても良い。   In Embodiment 1, although the example which uses the core sheet | seat 1a, 1b to which all the one-layer core pieces 11 used for a stator were connected was shown, even if it combines later, using the core sheet | seat divided | segmented equally good. Further, after the divided laminated cores are laminated and coated, the stator may be assembled after winding the coils individually.

また、この実施の形態では、エッチングによってコアシート1a、1bを鋼板から形成したが、プレス加工で打ち抜いても良い。   Moreover, in this embodiment, although the core sheets 1a and 1b were formed from the steel plate by etching, they may be punched out by pressing.

1a,1b コアシート、11 コア片、13 バックヨーク部、14 ブリッジ部、15a,15b 仮カシメ部、151a フレーム、152a,152b 雄カシメ部、153a,153b スリット、154a,154b 凸部、2 分割積層コア、
6 コイル、100 分割積層コア群構造体、101 ステータ、
102 モールドステータ。
1a, 1b Core sheet, 11 core pieces, 13 Back yoke part, 14 Bridge part, 15a, 15b Temporary caulking part, 151a Frame, 152a, 152b Male caulking part, 153a, 153b Slit, 154a, 154b Convex part, Divided lamination core,
6 coils, 100-divided laminated core group structure, 101 stator,
102 Molded stator.

Claims (10)

複数のコア片を積層して構成する分割積層コアを電着塗装してコイルを巻回し、前記分割積層コアを複数環状に連結固定する回転電機のステータにおいて、
前記コア片は、バックヨーク部の外周部中心から外側に突出するブリッジ部を介して、上下に隣接する前記コア片同士を互いに固定する仮カシメ部に接続され、
電着塗装はティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、前記仮カシメ部に施されていることを特徴とする回転電機のステータ。
In a stator of a rotating electrical machine in which a plurality of core pieces are laminated and electrodeposited on a divided laminated core and wound with a coil, and the divided laminated core is connected and fixed in a plurality of rings,
The core piece is connected to a temporary caulking portion that fixes the core pieces adjacent to each other vertically through a bridge portion that protrudes outward from the outer peripheral center of the back yoke portion,
The stator for a rotating electrical machine, wherein the electrodeposition coating is applied to a tooth portion wall surface, the coil side of the shoe, a back yoke portion inner peripheral surface, and the temporary caulking portion.
同一積層に使用する複数のコア片が、前記バックヨーク部の外周両端部に設けた薄肉部で連結され、前記仮カシメ部は、所定の分割積層コアを構成するコア片にのみ設けられていることを特徴とする、請求項1に記載の回転電機のステータ。 A plurality of core pieces used for the same lamination are connected by thin portions provided at both ends of the outer periphery of the back yoke portion, and the temporary caulking portion is provided only on a core piece constituting a predetermined divided laminated core. The stator for a rotating electrical machine according to claim 1, wherein the stator is a rotating electrical machine. 前記仮カシメ部は、上下に隣接する仮カシメ部同士を嵌合する凹凸を有することを特徴とする請求項1又は請求項2に記載の回転電機のステータ。 The stator of a rotating electrical machine according to claim 1, wherein the temporary crimping portion has irregularities for fitting the temporary crimping portions adjacent to each other vertically. 前記コア片及び前記仮カシメ部はエッチング加工によって成形されていることを特徴とする請求項1乃至請求項3のいずれか1項に記載の回転電機のステータ。 The stator of a rotating electrical machine according to any one of claims 1 to 3, wherein the core piece and the temporary caulking portion are formed by etching. 環状に成形した複数の分割積層コアの外周面は、モールド固定されていることを特徴とする請求項1乃至請求項4のいずれか1項に記載の回転電機のステータ。 5. The stator for a rotating electrical machine according to claim 1, wherein outer peripheral surfaces of the plurality of divided laminated cores formed in an annular shape are fixed by molding. 複数のコア片を積層して分割積層コアを構成する積層工程と
前記分割積層コアを電着塗装する電着塗装工程と、
電着塗装した複数の前記分割積層コアにコイルを巻回する巻線工程と、
を有する回転電機のステータ製造方法であって、
前記積層工程は、前記コア片のバックヨーク部の外周部中心から外側に突出するブリッジ部を介して接続された仮カシメ部を、上下に隣接するコア片に接続された仮カシメ部と互いに固定し、
前記電着塗装工程は、前記仮カシメ部を電極の接続部分として利用し、
ティース部壁面と、シューの前記コイル側と、バックヨーク部内周面と、積層した前記仮カシメ部に電着塗装を施すことを特徴とする回転電機のステータの製造方法。
A lamination step of laminating a plurality of core pieces to form a divided laminated core, and an electrodeposition coating step of electrodeposition coating the divided laminated core;
A winding step of winding a coil around the plurality of divided laminated cores that have been electrodeposited;
A stator manufacturing method for a rotating electrical machine having
In the laminating step, the temporary caulking portion connected via the bridge portion protruding outward from the center of the outer periphery of the back yoke portion of the core piece is fixed to the temporary caulking portion connected to the upper and lower adjacent core pieces. And
The electrodeposition coating process uses the temporary caulking portion as an electrode connection portion,
A method of manufacturing a stator for a rotating electrical machine, wherein electrodeposition coating is applied to a tooth portion wall surface, a coil side of a shoe, a back yoke portion inner peripheral surface, and the laminated temporary caulking portion.
同一積層に使用する複数のコア片が、前記バックヨーク部の外周両端部に設けた薄肉部で連結され、前記仮カシメ部は、所定の分割積層コアを構成するコア片にのみ設けられていることを特徴とする、請求項6に記載の回転電機のステータの製造方法。 A plurality of core pieces used for the same lamination are connected by thin portions provided at both ends of the outer periphery of the back yoke portion, and the temporary caulking portion is provided only on a core piece constituting a predetermined divided laminated core. The method of manufacturing a stator for a rotating electrical machine according to claim 6. 前記塗装工程における電極の接続は、前記積層された仮カシメ部を積層方向に把持することを特徴とする請求項7に記載の回転電機のステータの製造方法。 The method of manufacturing a stator for a rotating electric machine according to claim 7, wherein the electrodes are connected in the coating step by gripping the stacked temporary crimping portions in the stacking direction. 前記ブリッジ部を介して接続された前記コア片と前記仮カシメ部を、鋼板からエッチングによって成型するエッチング工程を有することを特徴とする請求項6乃至請求項8のいずれか1項に記載の回転電機のステータの製造方法。 The rotation according to any one of claims 6 to 8, further comprising an etching step of forming the core piece and the temporary caulking portion connected via the bridge portion by etching from a steel plate. A method for manufacturing an electric stator. 環状に成形した複数の分割積層コアの外周面をモールドして固定するモールド工程を有する請求項6乃至請求項9のいずれか1項に記載の回転電機のステータの製造方法。 The method for manufacturing a stator for a rotating electrical machine according to any one of claims 6 to 9, further comprising a molding step of molding and fixing outer peripheral surfaces of a plurality of divided laminated cores formed in an annular shape.
JP2010091027A 2010-04-12 2010-04-12 Stator for rotating electrical machine and method for manufacturing the same Expired - Fee Related JP5421180B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2010091027A JP5421180B2 (en) 2010-04-12 2010-04-12 Stator for rotating electrical machine and method for manufacturing the same

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2010091027A JP5421180B2 (en) 2010-04-12 2010-04-12 Stator for rotating electrical machine and method for manufacturing the same

Publications (2)

Publication Number Publication Date
JP2011223759A JP2011223759A (en) 2011-11-04
JP5421180B2 true JP5421180B2 (en) 2014-02-19

Family

ID=45039973

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2010091027A Expired - Fee Related JP5421180B2 (en) 2010-04-12 2010-04-12 Stator for rotating electrical machine and method for manufacturing the same

Country Status (1)

Country Link
JP (1) JP5421180B2 (en)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP6641966B2 (en) * 2015-12-15 2020-02-05 富士電機株式会社 Rotating electric machine
JP2019068568A (en) * 2017-09-29 2019-04-25 日本電産株式会社 Motor and stator
JP7035418B2 (en) * 2017-09-29 2022-03-15 日本電産株式会社 Motor and stator
CN216530747U (en) * 2021-12-22 2022-05-13 中山大洋电机股份有限公司 Bar stator core structure and stator module and motor
JP2023150514A (en) * 2022-03-31 2023-10-16 株式会社三井ハイテック Method for manufacturing core part of rotary electric machine, apparatus for manufacturing core part, and core part

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0666257U (en) * 1993-02-19 1994-09-16 ミネベア株式会社 motor
JP3180687B2 (en) * 1996-10-16 2001-06-25 三菱電機株式会社 Laminated core and method of manufacturing the laminated core
JP3432391B2 (en) * 1997-06-26 2003-08-04 三菱電機株式会社 Mold stator
JPH11308821A (en) * 1998-04-22 1999-11-05 Mitsui High Tec Inc Manufacture of layered core
JP2004059963A (en) * 2002-07-25 2004-02-26 Daido Electronics Co Ltd Electrodeposition coating method for core in rotary electric machine

Also Published As

Publication number Publication date
JP2011223759A (en) 2011-11-04

Similar Documents

Publication Publication Date Title
JP5296888B2 (en) Method for manufacturing molded stator of rotating electric machine
JP6633212B2 (en) Laminated core, manufacturing method of laminated core, and armature using laminated core
JP4938389B2 (en) Laminated core and stator
KR102573664B1 (en) Manufacturing method of laminated core, core block, rotary electric machine and core block
TWI724690B (en) Laminated iron core and rotating electric machine
JP5421180B2 (en) Stator for rotating electrical machine and method for manufacturing the same
US20150188372A1 (en) Armature for rotary electric machine
JP2013526261A (en) Motor stator assembly
KR20130118955A (en) Stator for rotating electrical machine, and method for producing same
TWI732384B (en) Laminated iron core and rotating electric machine
US11915860B2 (en) Laminated core and electric motor
JP5505661B2 (en) Manufacturing method of electric motor
JP5352979B2 (en) Stator for rotating electric machine and method for manufacturing the same
JPWO2018131392A1 (en) Split core unit, rotary electric machine, method of manufacturing split core unit, and method of manufacturing rotary electric machine
EP1376830A2 (en) Method for manufacturing a coil winding assembly of a concentrated winding motor
JP6814568B2 (en) Laminated iron core
JP6206051B2 (en) Concentric winding coil forming method and forming apparatus
CN210577969U (en) Stator chip and rotating electrical machine
JP5991011B2 (en) Motor stator structure and manufacturing method thereof
WO2015053070A1 (en) Stator core for dynamo-electric machine
JP2001008388A (en) Core structure for smooth core armature ac servo motor
JP2007166759A (en) Stator manufacturing method therefor, and motor employing the stator
JP2009071948A (en) Stator for rotary electric machine and method of manufacturing the same
JP7229402B2 (en) Armature manufacturing method and armature
JP2018117440A (en) Rotary electric machine

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20120926

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20131113

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20131119

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20131121

R150 Certificate of patent or registration of utility model

Ref document number: 5421180

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees