JP2012223039A - Winding apparatus for rotary electric machine - Google Patents

Winding apparatus for rotary electric machine Download PDF

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JP2012223039A
JP2012223039A JP2011088953A JP2011088953A JP2012223039A JP 2012223039 A JP2012223039 A JP 2012223039A JP 2011088953 A JP2011088953 A JP 2011088953A JP 2011088953 A JP2011088953 A JP 2011088953A JP 2012223039 A JP2012223039 A JP 2012223039A
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laminated
magnetic pole
core member
winding
nozzle
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JP2012223039A5 (en
JP5645205B2 (en
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Hiroyuki Akita
裕之 秋田
Daisuke Tsukasaki
大輔 司城
Masahiro Yutani
政洋 湯谷
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Mitsubishi Electric Corp
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Mitsubishi Electric Corp
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Abstract

PROBLEM TO BE SOLVED: To provide a winding apparatus for a rotary electric machine that uses a laminated frame body provided on outer peripheries of laminated magnetic pole members for positioning and gripping of a core and that facilitates gripping of the core and allows windings to be wound around the core regardless of shape of the laminated magnetic pole members encompassed with the laminated frame body.SOLUTION: A winding apparatus 70 for a rotary electric machine includes: a transport mechanism that places, on a transport path 72, a laminated core member 100 that includes a laminated frame body 50, and laminated connected magnetic pole members 40, where a plurality of core members, each having magnetic pole members attached to a frame body, are laminated; a nozzle 8 that sends out wires; a nozzle control mechanism 71 that moves the nozzle 8 in directions of x, y, and z axes for winding; and a cutting mechanism 76 that separates the laminated connected magnetic pole members 40 from the laminated frame body 50 after winding.

Description

この発明は、回転電機の巻線機に関するものである。   The present invention relates to a winding machine for a rotating electrical machine.

回転電機に用いられる鉄心のうち製造の合理化の工夫がなされた鉄心として特許文献1に記載の鉄心が挙げられる。
磁極ブロックが薄肉で直線状に連結されて構成されており、巻線のための空間が広く巻線工程で高速に巻線できる効果、整列して巻線できる効果、同時に複数の巻線処理ができる効果などが得られる。
そしてこのような鉄心へのコイルの巻線については、専用の巻線機が使用される。
Among the iron cores used in rotating electrical machines, an iron core described in Patent Document 1 is given as an iron core that has been devised for rationalization of manufacturing.
The magnetic pole block is thin and connected in a straight line, and the space for winding is wide, the effect of winding at high speed in the winding process, the effect of winding in alignment, and simultaneous multiple winding processing Effects that can be obtained.
A dedicated winding machine is used for winding the coil around the iron core.

特許第3307888号公報Japanese Patent No. 3307888

特許文献1に記載するような直線状のコアは、金型によるプレス加工で製造する。直線状に磁極ブロックを連結して並べた鉄心部材の単位でプレス打ち抜きして製造する。
薄板材料から打ち抜かれた鉄心部材は、それ自体に設けられた突起が嵌り合ってカシメられることで金型の中で積層され固定される。
金型の中で突起の加工、打ち抜き、積層、カシメが実施されるので高速に、自動化して、連続的な生産を実現でき、時間当たりの生産効率が高い。
A linear core as described in Patent Document 1 is manufactured by press working with a mold. Manufactured by press punching in units of iron core members arranged by connecting magnetic pole blocks in a straight line.
The iron core member punched out from the thin plate material is laminated and fixed in the mold by fitting and fitting the protrusions provided on itself.
Protrusion processing, punching, stacking, and caulking are performed in the mold, enabling high-speed, automated, continuous production, and high production efficiency per hour.

鉄心製造の巻線工程においては、鉄心を動かないように把持する必要がある。
鉄心の把持には、鉄心の外形の形状を活用し、コアの形状に応じた特殊ツールでコアを把持し、その状態で絶縁物装着工程、巻線工程の処理を行う。
In the winding process of iron core manufacturing, it is necessary to hold the iron core so as not to move.
For gripping the iron core, the outer shape of the iron core is utilized, the core is gripped with a special tool corresponding to the shape of the core, and the insulator mounting process and the winding process are performed in that state.

また、一つのコアを処理した後は、処理済みのコアと未処理のコアを入れ替える必要がある。
この入れ替えには、コアのつかみ替えが必要である。
把持と位置決めの難易度はコアの形状、大きさに依存し、把持に時間を要すると、後工程のそれぞれで処理時間が増加し、時間当たりの生産効率を悪化させ製造コストが高くなる。
鉄心の把持、位置決めを容易化するために、鉄心自体に形成する形状としては、例えば突起、溝、穴等が挙げられる。
このように、鉄心自体を把持して磁極ティース部に巻線をする場合は、常に巻線機の把持機構を個別に調整する必要があり、多品種少量生産の回転電機の製造に対応できないという問題があった。
Moreover, after processing one core, it is necessary to replace the processed core and the unprocessed core.
This replacement requires changing the core.
The difficulty of gripping and positioning depends on the shape and size of the core, and if time is required for gripping, the processing time increases in each of the subsequent processes, and the production efficiency per hour is deteriorated and the manufacturing cost is increased.
In order to facilitate gripping and positioning of the iron core, examples of the shape formed on the iron core itself include protrusions, grooves, holes, and the like.
In this way, when gripping the iron core itself and winding it around the magnetic teeth portion, it is necessary to always adjust the gripping mechanism of the winding machine individually, which means that it is not possible to handle the manufacture of rotating electrical machines of high-mix low-volume production. There was a problem.

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、鉄心の位置決め、把持は、積層磁極部材の外周に設けた積層枠体を利用し、積層枠体が包含する積層磁極部材の形状に関係なく容易に把持して巻線を施すことができる回転電機の巻線機の提供を目的とする。   The present invention has been made to solve such a problem, and the laminated magnetic pole member included in the laminated frame body is used for positioning and gripping the iron core by utilizing the laminated frame body provided on the outer periphery of the laminated magnetic pole member. It is an object of the present invention to provide a winding machine for a rotating electrical machine that can be easily gripped and wound regardless of the shape of the wire.

この発明に係る回転電機の巻線機は、
枠体に取り付けられた磁極ティースを有する鉄心部材を複数積層した、積層枠体と積層磁極部材からなる積層鉄心部材を、搬送路に載置して搬送する搬送機構と、
コイル線材を送出するノズルと、
ノズルをXYZ軸方向に移動させて巻線するノズル制御機構と、
巻線後に積層磁極部材を分離する切断機構とを備えたものである。
A winding machine for a rotating electrical machine according to the present invention is:
A transport mechanism that stacks a plurality of core members each having magnetic teeth attached to the frame body, and that transports the stacked core member composed of the stacked frame body and the stacked magnetic pole member on the transport path;
A nozzle for delivering coil wire,
A nozzle control mechanism that winds by moving the nozzle in the XYZ axial directions;
And a cutting mechanism for separating the laminated magnetic pole member after winding.

この発明に係る回転電機の巻線機は、枠体に取り付けられた磁極ティースを有する鉄心部材を複数積層した、積層枠体と積層磁極部材からなる積層鉄心部材を、搬送路に載置して搬送する搬送機構と、コイル線材を送出するノズルと、ノズルをXYZ軸方向に移動させて巻線するノズル制御機構と、巻線後に積層磁極部材を分離する切断機構とを備えたものなので、積層枠体を把持することにより、搬送工程、巻線工程、分離工程における、積層鉄心部材の位置決め、固定、搬送が容易になる。
また、製品となる積層連結磁極部材自体に把持部を設ける必要がなく、簡易なツールで容易に積層枠体50に包含される積層連結磁極部材を間接的に固定して積層連結磁極部材の磁極ティースに巻線することができる。
A winding machine for a rotating electrical machine according to the present invention is configured such that a laminated core member composed of a laminated frame body and a laminated magnetic pole member, in which a plurality of iron core members having magnetic teeth attached to a frame body are laminated, is placed on a conveyance path. It is equipped with a transport mechanism that transports, a nozzle that sends out coil wire, a nozzle control mechanism that winds by moving the nozzle in the XYZ axial directions, and a cutting mechanism that separates the laminated magnetic pole member after winding. By gripping the frame, the laminated core member can be easily positioned, fixed, and transported in the transport process, winding process, and separation process.
Further, it is not necessary to provide a grip portion on the laminated coupling magnetic pole member itself that is a product, and the laminated coupling magnetic pole member included in the laminated frame body 50 can be easily fixed with a simple tool and the magnetic poles of the laminated coupling magnetic pole member can be fixed. Can be wound on teeth.

本実施の形態1に係る巻線機70の構成を示すブロック図である。It is a block diagram which shows the structure of the winding machine 70 which concerns on this Embodiment 1. FIG. 本発明の実施の形態1に係る巻線機70の斜視図である。It is a perspective view of the winding machine 70 which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る巻線機70の平面図である。It is a top view of the winding machine 70 which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る巻線機70の側面図である。It is a side view of the winding machine 70 which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る巻線機70の正面図である。It is a front view of the winding machine 70 which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る積層鉄心部材100の斜視図である。1 is a perspective view of a laminated core member 100 according to Embodiment 1 of the present invention. 鉄心部材30aの要部拡大平面図である。It is a principal part enlarged plan view of the iron core member 30a. 本発明の実施の形態1に係る位置決め構造の一例を示す平面図である。It is a top view which shows an example of the positioning structure which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る連結磁極部材12と枠体20の接続部の他の一例を示す図である。It is a figure which shows another example of the connection part of the connection magnetic pole member 12 which concerns on Embodiment 1 of this invention, and the frame 20. FIG. プッシュバック工法を示す図である。It is a figure which shows a pushback construction method. 本発明の実施の形態1に係る巻線方法を示す図である。It is a figure which shows the winding method which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る巻線後の積層枠体50の切断状態を示す図である。It is a figure which shows the cutting state of the laminated frame 50 after the winding which concerns on Embodiment 1 of this invention. 本発明の実施の形態1に係る積層連結磁極部材40と積層枠体50を分離した図である。It is the figure which isolate | separated the lamination | stacking connection magnetic pole member 40 and lamination | stacking frame 50 which concern on Embodiment 1 of this invention. 本発明の実施の形態1に係る積層枠体50から分離した積層連結磁極部材40を環状に組み立てた固定子41の斜視図である。It is a perspective view of the stator 41 which assembled | stacked the lamination | stacking connection magnetic pole member 40 isolate | separated from the lamination | stacking frame 50 which concerns on Embodiment 1 of this invention in cyclic | annular form. 本発明の実施の形態2に係る鉄心部材230の要部拡大図である。It is a principal part enlarged view of the iron core member 230 which concerns on Embodiment 2 of this invention. この発明の実施の形態3に係る鉄心部材330の要部拡大図である。It is a principal part enlarged view of the iron core member 330 which concerns on Embodiment 3 of this invention. 本発明の実施の形態3に係る位置決め、薄肉リンク兼用構造の他の一例を示す平面図である。It is a top view which shows another example of the positioning which concerns on Embodiment 3 of this invention, and a thin link combined structure. 本実施の形態4に係る巻線機470の構成を示すブロック図である。It is a block diagram which shows the structure of the winding machine 470 which concerns on this Embodiment 4. FIG. 本発明の実施の形態4に係る巻線機470の側面図である。It is a side view of the winding machine 470 which concerns on Embodiment 4 of this invention. この発明の実施の形態4に係る鉄心部材430の要部拡大図である。It is a principal part enlarged view of the iron core member 430 which concerns on Embodiment 4 of this invention. この発明の実施の形態4に係る積層鉄心部材400の斜視図である。It is a perspective view of the laminated core member 400 which concerns on Embodiment 4 of this invention. 本発明の実施の形態5に係る積層鉄心部材の斜視図である。It is a perspective view of the laminated core member which concerns on Embodiment 5 of this invention. 本発明の実施の形態5に係る積層鉄心部材の他の一例を示す斜視図である。It is a perspective view which shows another example of the laminated iron core member which concerns on Embodiment 5 of this invention.

実施の形態1.
以下、この発明の実施の形態1に係る回転電機の巻線機を図を用いて説明する。
図1は、本実施の形態1に係る巻線機70のブロック図である。
図2は、本実施の形態で使用する巻線機70の斜視図である。
図3は、巻線機70の平面図である。
図4は、巻線機70の側面図である。
図5は、巻線機70の正面図である。
巻線機70は、大きく分けて、ノズル8と、このノズル8をXYZ軸方向に移動させるノズル制御機構と、巻線を施す対象である積層鉄心部材100(詳細は後述)を載置して搬送する搬送機構と、積層鉄心部材100から積層連結磁極部材40を切り離す切断機構とで構成される。
Embodiment 1 FIG.
Hereinafter, a winding machine for a rotary electric machine according to Embodiment 1 of the present invention will be described with reference to the drawings.
FIG. 1 is a block diagram of a winding machine 70 according to the first embodiment.
FIG. 2 is a perspective view of the winding machine 70 used in the present embodiment.
FIG. 3 is a plan view of the winding machine 70.
FIG. 4 is a side view of the winding machine 70.
FIG. 5 is a front view of the winding machine 70.
The winding machine 70 is roughly divided by placing a nozzle 8, a nozzle control mechanism for moving the nozzle 8 in the XYZ axial directions, and a laminated core member 100 (details will be described later) on which winding is performed. It is comprised by the conveyance mechanism which conveys, and the cutting mechanism which cut | disconnects the lamination | stacking connection magnetic pole member 40 from the lamination | stacking iron core member 100. FIG.

搬送機構の搬送路72には、搬送路72の横幅方向を変更自在に規制し、積層鉄心部材100を案内するガイド73が設けられている。
搬送路72の上部には、搬送路と平行に搬送方向に移動する把持搬送ロボット74が設けられている。
The conveyance path 72 of the conveyance mechanism is provided with a guide 73 that guides the laminated core member 100 by restricting the width direction of the conveyance path 72 to be changeable.
A gripping and transporting robot 74 that moves in the transporting direction in parallel with the transporting path is provided above the transporting path 72.

把持搬送ロボット74は、搬送路72の上部から降下して、搬送路72上の所定の位置に載置されている積層鉄心部材100の積層枠体50に設けられた丸穴21に把持棒75を挿入する。
そして、把持搬送ロボット74は、積層鉄心部材100をノズル8の前に搬送する。
ノズル制御機構によって制御される3軸ロボット71は、積層連結磁極部材40の磁極ティースに所定の順に巻線をする。
巻線を終えた積層連結磁極部材40は、切断機構であるカッター76によって積層枠体50ごと切断される。
The gripping and transporting robot 74 descends from the top of the transporting path 72 and holds the gripping rod 75 in the round hole 21 provided in the laminated frame body 50 of the laminated core member 100 placed at a predetermined position on the transporting path 72. Insert.
The gripping and transporting robot 74 transports the laminated core member 100 in front of the nozzle 8.
The three-axis robot 71 controlled by the nozzle control mechanism winds the magnetic pole teeth of the laminated connecting magnetic pole member 40 in a predetermined order.
The laminated connecting magnetic pole member 40 that has finished winding is cut together with the laminated frame 50 by a cutter 76 that is a cutting mechanism.

次に、この巻線機70で、巻線をする対象である積層鉄心部材100について、図6を用いて詳細に説明する。
図6は、積層鉄心部材100の斜視図である。
図7は、図6の積層鉄心部材100を構成する1枚の鉄心部材30aの右上端部の拡大図である。
Next, the laminated core member 100 that is the object to be wound by the winding machine 70 will be described in detail with reference to FIG.
FIG. 6 is a perspective view of the laminated core member 100.
FIG. 7 is an enlarged view of the upper right end portion of one core member 30a constituting the laminated core member 100 of FIG.

鉄心部材30aは、1枚の電磁鋼板から打ち抜き、又はエッチィングによって形成される。
また、1個のT型の磁極部材11は、磁極ティース部11aとバックヨーク部11bから構成され、9個の磁極部材11のバックヨーク部11bの端部同士を薄肉に残して結合した状態で連結磁極部材12を構成する。
そして、複数の連結磁極部材12を梯子状に並べて、それぞれの連結磁極部材12の両端部が保持部13に薄肉部15で一体として接続されている。
磁極部材11の磁極ティース部11a側を前方としたとき、最後列の連結磁極部材12の各バックヨーク部11bの後方において、2つの保持部13の端部同士が一体としてブリッジ部14で接続されており、2個の保持部13とブリッジ部14でコ字形の枠体20を構成し、更に枠体20と、連結磁極部材12で鉄心部材30aを構成する。
The iron core member 30a is formed by punching or etching from one electromagnetic steel sheet.
Further, one T-shaped magnetic pole member 11 is composed of a magnetic pole tooth portion 11a and a back yoke portion 11b, and the end portions of the back yoke portions 11b of the nine magnetic pole members 11 are joined in a thin state. The connecting magnetic pole member 12 is configured.
Then, a plurality of connecting magnetic pole members 12 are arranged in a ladder shape, and both end portions of each connecting magnetic pole member 12 are integrally connected to the holding portion 13 with a thin portion 15.
When the magnetic pole teeth portion 11a side of the magnetic pole member 11 is the front side, the ends of the two holding portions 13 are integrally connected by the bridge portion 14 behind the back yoke portions 11b of the last connected magnetic pole member 12. The two holding portions 13 and the bridge portion 14 constitute a U-shaped frame 20, and the frame 20 and the connecting magnetic pole member 12 constitute an iron core member 30 a.

鉄心部材30aには、位置決め構造として丸穴21を設けている。
丸穴21は、連結磁極部材12の列幅と同じピッチで配置されており、積層鉄心部材100の位置決め、把持、固定に利用される。
A round hole 21 is provided in the iron core member 30a as a positioning structure.
The round holes 21 are arranged at the same pitch as the row width of the connecting magnetic pole member 12, and are used for positioning, gripping, and fixing the laminated core member 100.

積層鉄心部材100は、上述の鉄心部材30aを複数枚数積層して構成される。
連結磁極部材12を積層した部分が積層連結磁極部材40であり、枠体20を積層した部分が積層枠体50となる。
The laminated core member 100 is configured by laminating a plurality of the above-described iron core members 30a.
The portion where the connecting magnetic pole member 12 is laminated is the laminated connecting magnetic pole member 40, and the portion where the frame body 20 is laminated becomes the laminated frame 50.

積層枠体50があれば、巻線工程においてその形状自体を利用して把持することも可能であるが、本実施の形態に示す丸穴21のような簡素な構造を枠体20に追加するだけで、容易に、確実に積層枠体の把持、搬送をすることができる。   If there is the laminated frame 50, it is possible to hold the shape itself by using the shape itself in the winding process, but a simple structure such as the round hole 21 shown in the present embodiment is added to the frame 20. Only by this, the laminated frame can be gripped and conveyed easily and reliably.

図8に示す位置決め構造は、切り欠き22である。
位置決め構造は、穴や、切り欠きの他、突起でも良い。
また、穴や突起の形状は、当該形状を利用して積層鉄心部材を搬送し、固定できるものであればどのような構造でも良い。
The positioning structure shown in FIG. 8 is a notch 22.
The positioning structure may be a hole, a notch, or a protrusion.
Further, the shape of the hole or the protrusion may be any structure as long as the laminated core member can be transported and fixed using the shape.

図9は、連結磁極部材12と枠体20の接続部の他の一例を示す図である。
図10は、プッシュバック工法を示す図である。
図6、図7では連結磁極部材12と枠体20は薄肉部15で繋がっていた。
図9に示す鉄心部材30bでは、プレス加工の過程で連結磁極部材12の両端部を、枠体20から刃60で一旦打ち抜き、この部分を再度プッシュバック機構61で枠体20に嵌め戻すことによって連結磁極部材12を枠体20に固定する。
FIG. 9 is a view showing another example of the connecting portion between the connecting magnetic pole member 12 and the frame body 20.
FIG. 10 is a diagram showing a pushback method.
In FIG. 6 and FIG. 7, the connecting magnetic pole member 12 and the frame body 20 are connected by the thin portion 15.
In the iron core member 30b shown in FIG. 9, both end portions of the connecting magnetic pole member 12 are once punched from the frame body 20 with a blade 60 in the process of pressing, and these portions are fitted back to the frame body 20 by the pushback mechanism 61 again. The connecting magnetic pole member 12 is fixed to the frame body 20.

積層間の固定には、枠体20自体に加工して設けた図示しない凹凸部を上下の鉄心部材間で嵌め合わせたカシメや、溶接、接着が用いられる。
製品となる積層連結磁極部材に直接カシメや溶接が用いられる場合、加工による歪みのために電磁鋼板の磁気特性が損なわれるが、枠体20に固定部位を設け、積層連結磁極部材40に積層間の固定部位を設けないことで積層連結磁極部材40の磁気特性の劣化を防止することができる。
For fixing between the layers, caulking, welding, and bonding in which uneven portions (not shown) processed by being provided on the frame body 20 are fitted between the upper and lower iron core members are used.
When caulking or welding is directly used for the laminated connecting magnetic pole member to be a product, the magnetic properties of the electromagnetic steel sheet are impaired due to distortion caused by processing. By not providing the fixed portion, it is possible to prevent the magnetic characteristics of the laminated connecting magnetic pole member 40 from deteriorating.

このようにして積層した、積層鉄心部材100の磁極ティースには絶縁処理が施される。   The magnetic pole teeth of the laminated core member 100 laminated in this way are subjected to insulation treatment.

次に、巻線機70における積層鉄心部材100の搬送工程を説明する。
積層鉄心部材100を搬送する際は、積層枠体50に設けた位置決め用の丸穴21に把持搬送ロボット74の把持棒75を挿入して搬送路72上を搬送する。積層枠体50の位置決め用の丸穴21を把持することにより、積層枠体50が包含する積層連結磁極部材40を間接的に固定できる。
Next, the conveyance process of the laminated core member 100 in the winding machine 70 will be described.
When transporting the laminated core member 100, the gripping rod 75 of the gripping and transporting robot 74 is inserted into the positioning round hole 21 provided in the stacked frame body 50 and transported on the transporting path 72. By grasping the positioning round hole 21 of the laminated frame 50, the laminated connecting magnetic pole member 40 included in the laminated frame 50 can be indirectly fixed.

次に、巻線工程を説明する。
図11は、積層連結磁極部材40の各磁極ティースに絶縁のための樹脂成型物6を装着した状態で電線7を巻線している状態を示す図である。
電線7は、3軸ロボットに取り付けられたノズル8から供給され、磁極ティースの周囲を周回して巻き付けられて電磁コイルを形成する。
ノズル8は、積層連結磁極部材40の種類によって個別に、或いは渡り線を形成しながら積層枠体50の開放面(図11左下側)側から、全ての磁極ティースに巻線をする。
Next, the winding process will be described.
FIG. 11 is a view showing a state in which the electric wire 7 is wound in a state where the resin molding 6 for insulation is attached to each magnetic pole tooth of the laminated connecting magnetic pole member 40.
The electric wire 7 is supplied from a nozzle 8 attached to the three-axis robot and is wound around the magnetic pole teeth to form an electromagnetic coil.
The nozzle 8 is wound around all the magnetic teeth from the open surface (lower left side in FIG. 11) of the laminated frame body 50 individually or depending on the type of the laminated connecting magnetic pole member 40 while forming a crossover.

次に、積層連結磁極部材40の分離工程について説明する。
図12は、巻線後に積層枠体50を切断した状態を示す図である。
図13は、積層連結磁極部材40と積層枠体50を分離した図である。
図14は、積層枠体50から分離した巻線後の積層連結磁極部材40を環状に組み立てた固定子41の斜視図である。
Next, the separation process of the laminated connecting magnetic pole member 40 will be described.
FIG. 12 is a diagram illustrating a state in which the laminated frame body 50 is cut after winding.
FIG. 13 is a view in which the laminated connecting magnetic pole member 40 and the laminated frame 50 are separated.
FIG. 14 is a perspective view of a stator 41 obtained by assembling the laminated connecting magnetic pole member 40 after winding separated from the laminated frame 50 into an annular shape.

最前列の積層連結磁極部材40への巻線が終わると、カッター76を用いて積層枠体50ごと最前列の積層連結磁極部材40を切り離して押し出す。
ここまでが、巻線機70の担当する工程である。
その後、引き続いて薄肉部15を切断し、組み立て工程で、積層連結磁極部材40を環状に組み立てると、図14に示す固定子41となり、これに図示しない回転子を装着して回転電機を得る。
When the winding to the foremost layered laminated magnetic pole member 40 is completed, the foremost laminated layered magnetic pole member 40 is cut and extruded together with the laminated frame 50 using the cutter 76.
This is the process in charge of the winding machine 70.
Thereafter, the thin-walled portion 15 is subsequently cut, and when the laminated connecting magnetic pole member 40 is assembled into an annular shape in the assembly process, the stator 41 shown in FIG. 14 is obtained, and a rotor (not shown) is attached thereto to obtain a rotating electrical machine.

この発明の実施の形態1に係る回転電機の巻線機70によれば、積層枠体50を把持することにより、搬送工程、巻線工程、分離工程における、積層鉄心部材100の位置決め、固定、搬送が容易になるので、製品となる積層連結磁極部材40自体に把持部を設ける必要がなく、簡易なツールで容易に積層枠体50に包含される積層連結磁極部材40を間接的に固定して積層連結磁極部材40の磁極ティースに巻線することができる。   According to the winding machine 70 of the rotating electrical machine according to the first embodiment of the present invention, the laminated core member 100 is positioned, fixed and fixed in the conveying process, the winding process, and the separating process by gripping the laminated frame 50. Since the conveyance becomes easy, it is not necessary to provide a grip portion on the laminated coupling magnetic pole member 40 itself that is a product, and the laminated coupling magnetic pole member 40 included in the laminated frame body 50 can be easily fixed indirectly with a simple tool. Thus, the magnetic pole teeth of the laminated connecting magnetic pole member 40 can be wound.

また、巻線工程では、積層枠体50を把持するので、把持のための作業空間を十分に確保できる。   Further, since the laminated frame 50 is gripped in the winding process, a work space for gripping can be sufficiently secured.

また、積層連結磁極部材40自体に把持部を設ける必要がないので製品の外形を大型化したり、重量が増加する等の問題もなく、どのような大きさの積層連結磁極部材でも巻線できる。   Further, since there is no need to provide a gripping portion on the laminated connecting magnetic pole member 40 itself, any size laminated laminated magnetic pole member can be wound without causing problems such as an increase in the size of the product or an increase in weight.

また、使用する積層鉄心部材100の積層間の固定部位は、積層枠体50を構成する枠体20に設ければ良いので、製品となる磁極部材11の表面にはカシメ用の凹凸を設けたり、接着を施す必要がない。これにより、磁気特性に優れた回転電機を得ることができる。
なお、積層枠体50から積層連結磁極部材40を分離後も樹脂成型物6や電着塗装及び巻線により、積層固定状態は確保される。
In addition, since the fixing portion between the laminated core members 100 to be used may be provided in the frame 20 constituting the laminated frame 50, the surface of the magnetic pole member 11 to be a product is provided with unevenness for caulking. , No need to glue. Thereby, the rotary electric machine excellent in the magnetic characteristic can be obtained.
Even after the laminated connecting magnetic pole member 40 is separated from the laminated frame body 50, the laminated fixed state is ensured by the resin molding 6, electrodeposition coating, and winding.

なお、本実施の形態では、保持部13の端部同士をブリッジ部14で接続して枠体20を構成したが、ブリッジ部14無しの構成でも巻線できる利点がある。   In the present embodiment, the end portion of the holding portion 13 is connected by the bridge portion 14 to configure the frame body 20, but there is an advantage that winding can be performed even in a configuration without the bridge portion 14.

実施の形態2.
以下、この発明の実施の形態2に係る回転電機の巻線機について実施の形態1と異なる部分を中心に説明する。
図15は、本実施の形態に係る巻線機で巻線をする対象である、鉄心部材230の要部拡大図である。
枠体220の一部に四角形状の穴23を設けており、枠体220は、穴23の縁である薄肉リンク部24で繋がっている。
鉄心部材230を積層すると、この薄肉リンク部24もそのまま積層される。
薄肉リンク部24の切断は、薄肉リンク部24を設けていない場所の切断に比べて格段に容易である。
これにより、巻線機に備える簡易な切断機構で積層枠体の切断が可能となり、最終製品の製造工数、製造コストを低減できる。
Embodiment 2. FIG.
Hereinafter, a winding machine for a rotating electrical machine according to a second embodiment of the present invention will be described focusing on differences from the first embodiment.
FIG. 15 is an enlarged view of a main part of an iron core member 230 that is a target to be wound by the winding machine according to the present embodiment.
A rectangular hole 23 is provided in a part of the frame body 220, and the frame body 220 is connected by a thin link portion 24 that is an edge of the hole 23.
When the core member 230 is laminated, the thin link portion 24 is also laminated as it is.
Cutting the thin link portion 24 is much easier than cutting at a place where the thin link portion 24 is not provided.
Thereby, the laminated frame body can be cut with a simple cutting mechanism provided in the winding machine, and the man-hours and cost of manufacturing the final product can be reduced.

実施の形態3.
以下、本発明の実施の形態3に係る回転電機の巻線機について、実施の形態1〜実施の形態2と異なる部分を中心に説明する。
図16は、鉄心部材330の要部拡大図である。
この実施の形態では、実施の形態1で述べた位置決め構造と、実施の形態2で述べた薄肉リンク部とを兼ね備えた構造を採用している。
即ち、位置決め構造である丸穴321を、連結磁極部材12が薄肉部15を介して枠体320に接続される部分の中間部分に設け、更に丸穴321の縁と、枠体320の内壁面及び外壁面の間に薄肉リンク部324が形成されるように丸穴321の大きさを調整している。
Embodiment 3 FIG.
Hereinafter, a winding machine for a rotating electrical machine according to a third embodiment of the present invention will be described focusing on the differences from the first to second embodiments.
FIG. 16 is an enlarged view of a main part of the iron core member 330.
In this embodiment, a structure having both the positioning structure described in the first embodiment and the thin link section described in the second embodiment is employed.
That is, the round hole 321 which is a positioning structure is provided in an intermediate portion of the portion where the connecting magnetic pole member 12 is connected to the frame body 320 via the thin portion 15, and the edge of the round hole 321 and the inner wall surface of the frame body 320 are provided. The size of the round hole 321 is adjusted so that the thin link portion 324 is formed between the outer wall surfaces.

このように丸穴321を形成することにより、積層鉄心部材を搬送して磁極ティースに巻線を施す際は、丸穴321に、実施の形態1で説明した把持棒75を挿入して積層枠体ごと、積層鉄心部材を搬送又は固定し、積層連結磁極部材を積層枠体から分離するときは、積層枠体の当該丸穴321の部分を切断することにより容易に積層枠体付きの積層連結磁極部材を分離できる。   By forming the round hole 321 in this way, when the laminated core member is transported and the magnetic teeth are wound, the gripping rod 75 described in the first embodiment is inserted into the round hole 321 to form the laminated frame. When the laminated core member is transported or fixed and separated from the laminated frame, the laminated connection with the laminated frame can be easily performed by cutting the portion of the round hole 321 of the laminated frame. The magnetic pole member can be separated.

図17は、位置決め、薄肉リンク兼用構造の他の一例を示す平面図である。深い切り欠き322を枠体320に設けることにより、位置決め構造と薄肉リンク部を兼ねることができる。
なお、位置決め、搬送用の構造と、薄肉リンク部を兼ねることができる構造であれば、どのような構造でも良い。
FIG. 17 is a plan view showing another example of the positioning and thin link combined structure. By providing the deep cutout 322 in the frame 320, it is possible to serve as a positioning structure and a thin link portion.
It should be noted that any structure may be used as long as the structure for positioning and conveyance can also serve as the thin link portion.

この実施の形態に係る回転電機の巻線機によれば、積層鉄心部材の位置決め構造と薄肉リンク部を兼用できるので、使用する積層鉄心部材の製造工数を削減でき、製品の製造コストを削減することができる。   According to the winding machine of the rotating electrical machine according to this embodiment, since the laminated core member positioning structure and the thin link portion can be used together, the number of manufacturing steps of the laminated core member to be used can be reduced, and the manufacturing cost of the product can be reduced. be able to.

実施の形態4.
以下、この発明の実施の形態4に係る回転電機の巻線機について実施の形態1乃至実施の形態3と異なる部分を中心に説明する。
図18は、本実施の形態に係る巻線機470の構成を示すブロック図である。
図19は、巻線機470の側面図である。
図20は、本実施の形態に係る鉄心部材430の要部拡大図である。
図21は、鉄心部材430を積層した積層鉄心部材400の斜視図である。
Embodiment 4 FIG.
Hereinafter, a winding machine for a rotating electrical machine according to a fourth embodiment of the present invention will be described focusing on differences from the first to third embodiments.
FIG. 18 is a block diagram showing a configuration of winding machine 470 according to the present embodiment.
FIG. 19 is a side view of the winding machine 470.
FIG. 20 is an enlarged view of a main part of the iron core member 430 according to the present embodiment.
FIG. 21 is a perspective view of a laminated core member 400 in which iron core members 430 are laminated.

本実施の形態に係る巻線機470は、実施の形態1の巻線機70の構成に加えて、識別子読取手段としてのスキャナ477と、この巻線機470が対応する全ての積層鉄心部材の構成を記憶させた部材データベース17と、この部材データベース17から各種制御データを取得する制御データ取得手段とを備える。   In addition to the configuration of the winding machine 70 of the first embodiment, the winding machine 470 according to the present embodiment includes a scanner 477 as an identifier reading unit and all the laminated core members to which the winding machine 470 corresponds. A member database 17 in which the configuration is stored, and control data acquisition means for acquiring various control data from the member database 17 are provided.

図21に示す鉄心部材430は、連結磁極部材12と連結磁極部材412という大きさの異なる2種類の連結磁極部材を包含する。
そして、枠体420に設けた位置決め用の丸穴21及び薄肉リンク部24の位置も、連結磁極部材12,412の接続位置に合わせて調整している。
すなわち、位置決め用の丸穴21間の間隔(ピッチ)も、薄肉リンク部24の配置も、鉄心部材430が包含する連結磁極部材の構成によって変動することになる。
An iron core member 430 shown in FIG. 21 includes two types of connecting magnetic pole members having different sizes, ie, a connecting magnetic pole member 12 and a connecting magnetic pole member 412.
The positions of the positioning round holes 21 and the thin link portions 24 provided in the frame 420 are also adjusted in accordance with the connection positions of the connecting magnetic pole members 12 and 412.
That is, both the spacing (pitch) between the positioning round holes 21 and the arrangement of the thin link portions 24 vary depending on the configuration of the connecting magnetic pole member included in the iron core member 430.

このような鉄心部材430を複数枚数積層した積層鉄心部材400が包含する積層連結磁極部材440a、440bの磁極ティースに対して巻線を施す場合は、どのような種類の積層連結磁極部材が、どのような位置に配置されているかを把握する必要がある。   When winding is applied to the magnetic pole teeth of the laminated connecting magnetic pole members 440a and 440b included in the laminated iron core member 400 in which a plurality of such iron core members 430 are laminated, what type of laminated connecting magnetic pole member is which It is necessary to grasp whether it is arranged at such a position.

図21の積層枠体450には、この積層鉄心部材400が包含する積層連結磁極部材440a、440bの位置と種類等を示す識別子9が貼付又は刻印されている。
この識別子9は、図19に示す巻線機470のスキャナ477で読み取られて、更に、制御データ取得手段によって、当該識別子9と紐付けられた各種制御データが取得される。
取得された各種制御データは、巻線工程におけるノズルの動作制御、積層鉄心部材400の搬送ピッチの決定、積層枠体450の分離位置の決定等に利用される。
An identifier 9 indicating the position, type, and the like of the laminated connecting magnetic pole members 440a and 440b included in the laminated iron core member 400 is affixed or stamped on the laminated frame 450 of FIG.
This identifier 9 is read by the scanner 477 of the winding machine 470 shown in FIG. 19, and various control data associated with the identifier 9 is further acquired by the control data acquisition means.
The acquired various control data is used for nozzle operation control in the winding process, determination of the conveyance pitch of the laminated core member 400, determination of the separation position of the laminated frame 450, and the like.

例えば、部材データベース17では、積層鉄心部材400に表示されている識別子9は、図21手前を前方として、9個の積層磁極部材を連結した積層連結磁極部材440aと6個の積層磁極部材を連結した積層連結磁極部材440bが、前から1列−3列−1列−3列−1列の順に並んでいる積層鉄心部材400の諸データと紐付けられている。
更に、部材データベース17には、積層鉄心部材400の位置決め構造、薄肉リンク部の配置、積層鉄心部材400の積層枚数に関する諸データとともに、ノズル制御機構が3軸ロボットの移動を制御するために使用するベクトルデータが記載されている。
For example, in the member database 17, the identifier 9 displayed on the laminated core member 400 is connected to the laminated magnetic pole member 440 a obtained by connecting nine laminated magnetic pole members and six laminated magnetic pole members with the front of FIG. 21 as the front. The laminated connecting magnetic pole member 440b is associated with various data of the laminated core member 400 arranged in the order of 1 row-3 rows-1 rows-3 rows-1 rows from the front.
Further, in the member database 17, the nozzle control mechanism is used for controlling the movement of the three-axis robot, together with various data relating to the positioning structure of the laminated core member 400, the arrangement of the thin link portions, the number of laminated layers of the laminated core member 400. Vector data is described.

このように、積層鉄心部材400と、それに表示された識別子9と、部材データベース17を使用して、巻線機470は、異なった種類の積層連結磁極部材440a,440bが混在する積層鉄心部材400に対しても自在に所定のピッチで搬送し、各磁極ティースの位置で所定の方向に、所定の回数だけ巻線し、更に積層連結磁極部材440a、440bを切断して排出することができる。   As described above, using the laminated core member 400, the identifier 9 displayed on the laminated core member 400, and the member database 17, the winding machine 470 uses the laminated core member 400 in which different types of laminated connecting magnetic pole members 440a and 440b are mixed. Also, it can be freely conveyed at a predetermined pitch, wound a predetermined number of times in a predetermined direction at the position of each magnetic pole tooth, and further, the stacked connecting magnetic pole members 440a and 440b can be cut and discharged.

また、識別子9を読み取ることができれば、ICタグとICタグリーダを使用しても良い。
更に、識別子読取手段としてカメラを、識別子9の代わりに積層鉄心部材の画像を利用し、部材データベース17に蓄積した画像と、カメラが撮影した画像とを比較して、部材データベース17から巻線機470を制御する諸データを取得しても良い。
If the identifier 9 can be read, an IC tag and an IC tag reader may be used.
Further, the camera is used as the identifier reading means, and the image of the laminated core member is used in place of the identifier 9, and the image stored in the member database 17 is compared with the image taken by the camera. Various data for controlling 470 may be acquired.

この実施の形態に係る回転電機の巻線機470によれば、積層枠体450に包含される積層連結磁極部材の種類と配置、位置決め構造、薄肉リンク部の配置、3軸ロボットの制御データ等の情報と紐付けられた識別子9を利用して、積層鉄心部材の搬送、巻線、分離工程を自動化できる。
また、種類の異なる積層鉄心部材が同じ搬送路に流れてきても、積層鉄心部材の種類を自動判定して巻線をすることができるので、大幅に製品の製造工程を自動化し、製造コストを削減できる。
According to the winding machine 470 of the rotating electrical machine according to this embodiment, the type and arrangement of the laminated connecting magnetic pole members included in the laminated frame body 450, the positioning structure, the arrangement of the thin link portion, the control data of the three-axis robot, etc. By using the identifier 9 associated with the information, it is possible to automate the transport, winding, and separation processes of the laminated core member.
In addition, even if different types of laminated core members flow in the same conveyance path, the type of laminated core member can be automatically determined and wound, so the production process of the product can be greatly automated, reducing the production cost. Can be reduced.

また、1つの積層鉄心部材400に複数種類の積層連結磁極部材440a、440bを包含でき、小ロット製品を1つの金型に少数だけ混在させて生産することも可能なので、金型の製造コストを削減できる。
また、これによって安価、且つ短納期に需用者の要求する製品を供給できる。
In addition, a plurality of types of laminated connecting magnetic pole members 440a and 440b can be included in one laminated core member 400, and a small number of small-lot products can be produced in a single mold. Can be reduced.
In addition, this makes it possible to supply a product requested by the customer at a low cost and with a short delivery time.

また、異なる種類の製品の製造を交互に繰り返すような場合に必要な、各種機器の設定やツールの入れ替えが必要ないので、製品の製造に要する全体としての時間を短縮でき、時間当たりの生産性を高めることができる。   In addition, since it is not necessary to set up various devices and replace tools, which are necessary when manufacturing different types of products alternately, it is possible to reduce the overall time required to manufacture products and improve productivity per hour. Can be increased.

また、大小の積層連結磁極部材440a、440bが混在しても、搬送ピッチを大きさに合わせて自動調整して巻線できるので、電磁鋼板を無駄なく利用できる。   Moreover, even if the large and small laminated connecting magnetic pole members 440a and 440b are mixed, the winding can be automatically adjusted according to the size and the winding can be performed, so that the electromagnetic steel sheet can be used without waste.

また、鉄心部材430の積層枚数を識別子9のデータとして含むことにより、使用する鉄心部材は同じでも積層枚数の異なる製品にも対応できる。
なお、鉄心部材430の積層枚数が同一の積層鉄心部材400のみを製造する場合は、鉄心部材430の枠体420にのみ識別子9を貼付等しても良い。
In addition, by including the number of stacked core members 430 as the data of the identifier 9, it is possible to deal with products having the same number of stacked core members but different numbers of stacked core members.
When only the laminated core member 400 having the same number of laminated iron core members 430 is manufactured, the identifier 9 may be attached only to the frame 420 of the iron core member 430.

実施の形態5.
以下、この発明の実施の形態5を図を用いて実施の形態1〜4と異なるところを中心に説明する。
これまで説明した各実施の形態では積層連結磁極部材を包含する積層鉄心部材について説明したが、枠体を用いて位置決め搬送できるものであれば、積層枠体に包含する積層磁極部材の形状はどのようなものでも良い。
例えば、図22に示す積層環状磁極部材80を包含しても良い。
この場合は、巻線機のノズルの位置を制御する三軸ロボットに対して、ノズルを鉛直方向に回転できる機能を付加すれば良い。
積層環状磁極部材80の巻線をする場合は、識別子から判断して巻線機のノズル8の向きを制御すれば良い。
Embodiment 5 FIG.
Hereinafter, the fifth embodiment of the present invention will be described with reference to the drawings, focusing on differences from the first to fourth embodiments.
In each of the embodiments described so far, the laminated core member including the laminated connecting magnetic pole member has been described. However, as long as it can be positioned and conveyed using the frame, what is the shape of the laminated magnetic pole member included in the laminated frame? Something like that.
For example, a laminated annular magnetic pole member 80 shown in FIG. 22 may be included.
In this case, what is necessary is just to add the function which can rotate a nozzle to a perpendicular direction with respect to the triaxial robot which controls the position of the nozzle of a winding machine.
When winding the laminated annular magnetic pole member 80, the direction of the nozzle 8 of the winding machine may be controlled based on the identifier.

また、図23に示すような積層T型積層磁極部材90の製造にも対応できる。この場合は、ノズルの方向はこれまで説明した積層連結磁極部材の場合と同様である。   Moreover, it can respond also to manufacture of the lamination | stacking T-type lamination | stacking magnetic pole member 90 as shown in FIG. In this case, the direction of the nozzle is the same as in the case of the laminated connecting magnetic pole member described so far.

本実施の形態に係る回転電機の巻線機によれば、鉄心部材に包含する磁極部材の形状、配置、大きさに関わりなく、様々な積層磁極部材を有する積層鉄心部材を効率よく低コストに巻線できる。
これを実現するために連続して各種鉄心部材を搬送路に供給する鉄心部材供給機構を設けても良い。
According to the winding machine of the rotating electrical machine according to the present embodiment, the laminated core member having various laminated magnetic pole members can be efficiently and at low cost regardless of the shape, arrangement, and size of the magnetic pole members included in the iron core member. Can be wound.
In order to realize this, an iron core member supply mechanism that continuously supplies various iron core members to the conveyance path may be provided.

100,400 積層鉄心部材、11 磁極部材、11a 磁極ティース部、
11b バックヨーク部、12,412 連結磁極部材、13 保持部、
14 ブリッジ部、15 薄肉部、17 部材データベース、
20,220,320,420 枠体、21,321 丸穴、22,322 切り欠き、
30a,30b,230,330,430 鉄心部材、24,324 薄肉リンク部、
50,450 積層枠体、40,440a,440b 積層連結磁極部材、
41 固定子、7 電線、70,470 巻線機、8 ノズル、9 識別子、
80 積層環状磁極部材、90 積層T型磁極部材。
100, 400 Laminated core member, 11 magnetic pole member, 11a magnetic pole teeth part,
11b Back yoke part, 12, 412 Connecting magnetic pole member, 13 Holding part,
14 Bridge part, 15 Thin part, 17 Member database,
20, 220, 320, 420 Frame, 21, 321 Round hole, 22, 322 Notch,
30a, 30b, 230, 330, 430 Iron core member, 24, 324 Thin link part,
50, 450 Laminated frame, 40, 440a, 440b Laminated connecting magnetic pole member,
41 Stator, 7 Electric wire, 70, 470 Winding machine, 8 Nozzle, 9 Identifier,
80 laminated annular magnetic pole members, 90 laminated T-type magnetic pole members.

Claims (9)

枠体に取り付けられた磁極部材を有する鉄心部材を複数積層した、積層枠体と積層磁極部材からなる積層鉄心部材を、搬送路に載置して搬送する搬送機構と、
コイル線材を送出するノズルと、
前記ノズルをXYZ軸方向に移動させて巻線するノズル制御機構と、
巻線後に前記積層磁極部材を前記積層枠体から分離する切断機構とを備えた回転電機の巻線機。
A transport mechanism that stacks a plurality of core members each having a magnetic pole member attached to the frame body, and transports the stacked core member composed of the stacked frame body and the stacked magnetic pole member on the transport path;
A nozzle for delivering coil wire,
A nozzle control mechanism for winding the nozzle by moving it in the XYZ axial directions;
A winding machine for a rotating electrical machine comprising a cutting mechanism for separating the laminated magnetic pole member from the laminated frame after winding.
前記ノズルは、前記搬送路の短手方向に平行な回転軸を有し、回転可能である請求項1に記載の回転電機の巻線機。 The winding machine for a rotating electrical machine according to claim 1, wherein the nozzle has a rotating shaft parallel to a short direction of the conveyance path and is rotatable. 前記搬送機構は、前記積層枠体に設けた位置決め構造を利用して、前記積層鉄心部材を搬送する請求項1又は請求項2に記載の回転電機の巻線機。 The winding machine for a rotating electrical machine according to claim 1 or 2, wherein the transport mechanism transports the laminated core member using a positioning structure provided on the laminated frame. 前記搬送路の搬送方向に対して垂直方向に複数の前記積層磁極部材の磁極ティースが配置されている前記積層鉄心部材の前記磁極ティースに連続して巻線する請求項1乃至請求項3のいずれか1項に記載の回転電機の巻線機。 4. The coil according to claim 1, wherein a plurality of magnetic pole teeth of the laminated magnetic pole member are arranged in a direction perpendicular to the conveying direction of the conveying path, and the magnetic pole teeth of the laminated iron core member are continuously wound. A rotary electric machine winding machine according to claim 1. 前記搬送機構の搬送方向に対して垂直方向に梯子状に複数列配置されている前記積層磁極部材の内、前記ノズル側最前列の前記積層磁極部材の前記磁極ティースへの巻線をすべて終了すると、前記切断機構は、当該積層磁極部材が前記積層枠体に接続されている部分と、次列の前記積層磁極部材が前記積層枠体に接続されている部分との中間で前記積層枠体を切断し、
前記搬送機構は、前記最前列の積層磁極部材を、切断された前記積層枠体ごと排出すると同時に次列の前記積層磁極部材を巻線位置に搬送する請求項3又は請求項4に記載の回転電機の巻線機。
When all the windings to the magnetic pole teeth of the laminated magnetic pole member in the nozzle side front row among the laminated magnetic pole members arranged in a plurality of rows in a ladder shape in a direction perpendicular to the conveying direction of the conveying mechanism are completed. The cutting mechanism is configured such that the laminated magnetic pole member is intermediate between a portion where the laminated magnetic pole member is connected to the laminated frame body and a portion where the laminated magnetic pole member of the next row is connected to the laminated frame body. Cut and
5. The rotation according to claim 3, wherein the transport mechanism discharges the laminated magnetic pole member in the foremost row together with the cut laminated frame body and simultaneously conveys the laminated magnetic pole member in the next row to a winding position. Electric winding machine.
前記切断機構は、前記積層枠体に設けた薄肉リンク部を切断する請求項1乃至5のいずれか1項に記載の回転電機の巻線機。 The winding machine for a rotating electrical machine according to any one of claims 1 to 5, wherein the cutting mechanism cuts a thin link provided in the laminated frame. 前記積層鉄心部材に表示した、前記積層鉄心部材の識別子を読み取る識別子読取手段と、
前記回転電機の巻線機に使用する前記積層鉄心部材の前記識別子、前記積層鉄心部材の構成、及び当該積層鉄心部材に対する前記ノズルの制御データを記録した部材データベースと、
前記部材データベースの記録から、搬送路上の積層鉄心部材を特定し、
更に、前記積層鉄心部材を構成する前記積層磁極部材の種類、配置を特定し、
前記搬送機構、前記ノズル制御機構、前記切断機構が当該積層鉄心部材への巻線に使用する前記制御データを取得する制御データ取得手段
とを備える請求項1乃至請求項6のいずれか1項に記載の回転電機の巻線機。
An identifier reading means for reading the identifier of the laminated core member displayed on the laminated core member;
A member database that records the identifier of the laminated core member used in the winding machine of the rotating electrical machine, the configuration of the laminated core member, and control data of the nozzle for the laminated core member;
From the record of the member database, identify the laminated core member on the conveyance path,
Further, the type and arrangement of the laminated magnetic pole member constituting the laminated iron core member are specified,
7. The control data acquisition unit according to claim 1, further comprising: a control data acquisition unit configured to acquire the control data used by the conveyance mechanism, the nozzle control mechanism, and the cutting mechanism for winding on the laminated core member. A winding machine for a rotating electric machine as described.
前記回転電機の巻線機に使用する前記積層鉄心部材の前記識別子、前記積層鉄心部材の画像、前記積層鉄心部材の構成、及び当該積層鉄心部材に対する前記ノズルの制御データを記録した部材データベースと、
搬送中の前記積層鉄心部材を撮影するカメラと、
前記カメラで撮影した搬送路上の前記積層鉄心部材の画像を、前記部材データベースに保存された各積層鉄心部材の画像と比較して、搬送路上の前記鉄心部材を特定し、
更に、前記積層鉄心部材を構成する前記積層磁極部材の種類、配置を特定し、
前記搬送機構、前記ノズル制御機構、前記切断機構が当該積層鉄心部材への巻線に使用する制御データを取得する制御データ取得手段
とを備える請求項1乃至請求項6のいずれか1項に記載の回転電機の巻線機。
A member database that records the identifier of the laminated core member used in the winding machine of the rotating electrical machine, an image of the laminated core member, a configuration of the laminated core member, and control data of the nozzle for the laminated core member;
A camera for photographing the laminated core member being conveyed;
Compare the image of the laminated core member on the conveyance path photographed by the camera with the image of each laminated core member stored in the member database, identify the core member on the conveyance path,
Further, the type and arrangement of the laminated magnetic pole member constituting the laminated iron core member are specified,
7. The control data acquisition unit according to claim 1, further comprising: a control data acquisition unit configured to acquire control data used by the conveyance mechanism, the nozzle control mechanism, and the cutting mechanism for winding to the laminated core member. Winding machine for rotating electrical machines.
前記積層鉄心部材を搬送路に連続して供給する鉄心部材供給機構を備えた請求項1乃至請求項8のいずれか1項に記載の回転電機の巻線機。 The winding machine of the rotary electric machine of any one of Claim 1 thru | or 8 provided with the iron core member supply mechanism which supplies the said laminated iron core member continuously to a conveyance path.
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