JP2010011710A - Method of welding stator coil - Google Patents

Method of welding stator coil Download PDF

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JP2010011710A
JP2010011710A JP2008171503A JP2008171503A JP2010011710A JP 2010011710 A JP2010011710 A JP 2010011710A JP 2008171503 A JP2008171503 A JP 2008171503A JP 2008171503 A JP2008171503 A JP 2008171503A JP 2010011710 A JP2010011710 A JP 2010011710A
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joint
welding
pair
stator coil
joining
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JP5098854B2 (en
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Yukinori Sawada
幸典 沢田
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Denso Corp
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Denso Corp
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a method of welding a stator coil which secures the stable welding quality of the joint end of a segment conductor. <P>SOLUTION: The method of welding the stator coil includes a process of welding first to fourth joint pairs 33p<SB>1</SB>-33p<SB>4</SB>of joint ends 33c arrayed from the inner periphery side in its radial direction, at one end of a stator core 1. The welding process includes a step of connecting a joint end 33c at the innermost periphery to earth, a step of connecting a joint end 33c at the outermost periphery to earth, and a step of arc-welding the first to fourth joint pairs 33p<SB>1</SB>-33p<SB>4</SB>. In the step of arc welding, the second joint pair 33p<SB>2</SB>is welded after welding the first joint pair 33p<SB>1</SB>, and the third joint pair 33p<SB>3</SB>is welded after welding the fourth joint pair 33p<SB>4</SB>. <P>COPYRIGHT: (C)2010,JPO&amp;INPIT

Description

本発明は、回転電機のステータコイルの溶接方法に関するものである。   The present invention relates to a method for welding a stator coil of a rotating electrical machine.

ステータコアのスロットに挿通された多数の略U字状のセグメント導体を順次接合して形成された略U字状のセグメント導体順次接合型ステータコイルが、例えば特許文献1及び2等で提案されている。この略U字状のセグメント導体順次接合型ステータコイルは、セグメント導体の一対の脚部を回転子の略磁極ピッチだけ互いに離れたステータコアの一対のスロットに個別に挿通し、スロットから飛び出したセグメント導体の両端部を周方向へ曲げ、各セグメント導体の両脚部の先端の接合端部をアーク溶接により順次接合して形成されている。   For example, Patent Documents 1 and 2 propose a substantially U-shaped segment conductor sequential joining type stator coil formed by sequentially joining a large number of substantially U-shaped segment conductors inserted into slots of a stator core. . This substantially U-shaped segment conductor sequential joining type stator coil is formed by inserting a pair of leg portions of a segment conductor individually into a pair of slots of a stator core separated from each other by a substantially magnetic pole pitch of a rotor, and protruding from the slot. Both end portions of the segment conductors are bent in the circumferential direction, and the joining end portions at the ends of both leg portions of each segment conductor are sequentially joined by arc welding.

特許文献2に記載されているような8層のセグメント導体を有するステータコイルを製造する場合、セグメント導体の溶接すべき8個の接合端部が半径方向に整列された接合端部の列をステータコア1の一端側に多数形成する。図7はそのような接合端部の一つの列及びその周辺に配置される電極類を模式的に示したものである。8個の接合端部に内周側から1番、2番、・・・、8番と序数を付けたとき、1番2番、3番4番、5番6番、及び7番8番の接合端部がそれぞれ第1〜第4の接合ペア33p1〜33p4を作って溶接される。溶接は、溶接対象の接合端部の上方に配置された溶接トーチ104と接合端部との間に発生するアークによってなされ、溶接電流は共通電極103及び内押圧電極101又は外押圧電極102をとおして流れる。従来、溶接は図中の丸数字で示してある順序で内周側から外周側へ順に進むように行われている。 When manufacturing a stator coil having eight-layer segment conductors as described in Patent Document 2, a row of joint end portions in which eight joint end portions to be welded of the segment conductors are aligned in the radial direction is used as a stator core. Many are formed on one end side of 1. FIG. 7 schematically shows one row of such joint ends and the electrodes disposed in the periphery thereof. When the ordinal number is assigned to the 8 joint ends from the inner circumference, 1, 2, ..., 8, the number 1, 2, 3, 4, 5, 6, and 7 Are joined to form first to fourth joint pairs 33p 1 to 33p 4 , respectively. Welding is performed by an arc generated between the welding torch 104 disposed above the joining end portion to be welded and the joining end portion, and the welding current flows through the common electrode 103 and the inner pressing electrode 101 or the outer pressing electrode 102. It flows through. Conventionally, welding is performed so as to proceed from the inner circumference side to the outer circumference side in the order indicated by the circled numbers in the drawing.

特開2004−48941号公報JP 2004-48941 A 特開2008−79353号公報JP 2008-79353 A

しかしながら、前述したように内周側から外周側へ順に接合端部の溶接を進めると、第3の接合ペア33pの溶接の不良率が他に比べて高いという問題があった。また発生した溶接不良は接合端部のアースの不良が原因であって、このアースの不良は、6番の接合端部に本来接触すべき共通電極103が接触しないことにより生じることがわかった。 However, as described above, when welding of the joint end portion is sequentially performed from the inner peripheral side to the outer peripheral side, there is a problem that the defective rate of welding of the third joint pair 33p3 is higher than the others. Further, it has been found that the welding failure that has occurred is caused by a ground failure at the joint end, and this ground failure is caused by the common electrode 103 that should originally be in contact with the 6th joint end not contacting.

本発明は前述した課題に鑑みてなされたもので、その目的は、セグメント導体の接合端部の安定した溶接品質を確保できるステータコイルの溶接方法を提供することである。   The present invention has been made in view of the above-described problems, and an object of the present invention is to provide a stator coil welding method capable of ensuring stable welding quality of the joint ends of the segment conductors.

本発明は、上記課題を達成するための技術的手段として、たとえ接合端部と共通電極との接触が不十分であったとしても接合端部がアースに確実に接続されるステータコイルの溶接方法を提供する。   The present invention provides, as technical means for achieving the above object, a method for welding a stator coil in which the joint end is securely connected to the ground even if the contact between the joint end and the common electrode is insufficient. I will provide a.

請求項1に記載された本発明は、ステータコア(1)のスロット(35)に挿通された略U字状の多数のセグメント導体(33)を具備するステータコイル(3)の溶接方法であって、ステータコア(1)の一端側で半径方向に一列に整列されたセグメント導体(33)の8個の接合端部(33c)からなる接合端部(33c)の列が多数列形成されたステータコイル(3)の半完成品にして、整列された8個の接合端部(33c)に内周側から1番、2番、・・・、8番と序数を付したとき、1番と2番、3番と4番、5番と6番、及び7番と8番の一対の接合端部(33c)が第1、第2、第3、及び第4の接合ペア(33p1、33p2、33p3、33p4)をそれぞれ形成し、接合端部(33c)の一の列における1番と4番、2番と3番、6番と7番、及び5番と8番の接合端部(33c)がセグメント導体(33)によってそれぞれ互いに電気的に接続しているステータコイル(3)の半完成品の第1〜第4の接合ペア(33p1〜33p4)を溶接する工程を含み、溶接する工程が、1番の接合端部(33c)をアースに接続する段階と、8番の接合端部(33c)をアースに接続する段階と、第1〜第4の接合ペア(33p1〜33p4)をアーク溶接する段階とを含んでおり、アーク溶接する段階において、第2の接合ペア(33p2)が第1の接合ペア(33p1)の溶接後に溶接され、及び第3の接合ペア(33p3)が第4の接合ペア(33p4)の溶接後に溶接されることを特徴とするものである。 The present invention described in claim 1 is a method for welding a stator coil (3) comprising a plurality of substantially U-shaped segment conductors (33) inserted into slots (35) of the stator core (1). A stator coil in which a plurality of rows of joining end portions (33c) composed of eight joining end portions (33c) of segment conductors (33) aligned in a row in the radial direction on one end side of the stator core (1) are formed. When the semi-finished product of (3) is attached with the ordinal numbers of No. 1, No. 2, No. 8, etc. from the inner peripheral side to the eight joined end portions (33c) arranged, No. 1 and No. 2 No. 3, No. 4, No. 5, No. 6 and No. 7, and No. 7 and No. 8 of a pair of joining end portions (33c) are first, second, third and fourth joining pairs (33p 1 , 33p). 2, 33p 3, 33p 4) is formed respectively, No.1 and fourth in one row of the joint end portion (33c), 2 No. 3 and No. 3, No. 6 and No. 7, and No. 5 and No. 8 of joint ends (33c) are electrically connected to each other by segment conductors (33). Including a step of welding the first to fourth joint pairs (33p 1 to 33p 4 ), the step of welding connecting the first joint end (33c) to ground, and the eighth joint end ( 33c) to the ground and arc welding the first to fourth joint pairs (33p 1 to 33p 4 ). In the arc welding stage, the second joint pair (33p 2) ) Are welded after welding the first joint pair (33p 1 ), and the third joint pair (33p 3 ) is welded after welding the fourth joint pair (33p 4 ). is there.

これにより、第2又は第3の接合ペアを溶接するときにはそれぞれ第1又は第4の接合ペアが既に溶接されており、その結果、3番と4番及び5番と6番の接合端部(33c)に共通電極(103)が接触していない場合であっても、3番と4番及び5番と6番の接合端部(33c)は、1番と2番及び7番と8番の接合端部(33c)をそれぞれ介してアースに接続されており、従ってそれらは安定に溶接され得る。   Thereby, when welding the 2nd or 3rd joint pair, the 1st or 4th joint pair is already welded, respectively, and as a result, the joint end part of No. 3 and No. 4 and No. 5 and No. 6 ( Even if the common electrode (103) is not in contact with 33c), the joint ends (33c) of Nos. 3 and 4 and Nos. 5 and 6 are Nos. 1 and 2, and Nos. 7 and 8. Are connected to the ground via respective joint ends (33c), so that they can be stably welded.

本発明では、アーク溶接する段階において、接合端部(33c)の一の列における異なる番号の接合ペアよりも、接合端部(33c)の他の列における同一番号を有する接合ペアを先に溶接するように溶接の順序が定められていることが好適である。   In the present invention, at the stage of arc welding, a joint pair having the same number in another row of the joint end portion (33c) is welded first, rather than a joint pair having a different number in one row of the joint end portion (33c). Thus, it is preferable that the welding order is determined.

なお、上記各手段の括弧内の符号は、後述する実施形態に記載の具体的手段との対応関係を示す一例である。   In addition, the code | symbol in the bracket | parenthesis of each said means is an example which shows a corresponding relationship with the specific means as described in embodiment mentioned later.

以下、本発明による好適な実施形態の、略U字状のセグメント導体を具備するステータコイルの溶接方法について図面を参照しながら説明する。最初に、本発明による方法が適用されるステータコイル及びその構成要素である略U字状のセグメント導体について説明する。ただし、そのようなステータコイル及び略U字状のセグメント導体及びその製造方法は、前述した特許文献1及び特許文献2等から良く知られているので概略的に記すにとどめる。   Hereinafter, a welding method for a stator coil having a substantially U-shaped segment conductor according to a preferred embodiment of the present invention will be described with reference to the drawings. First, a stator coil to which the method according to the present invention is applied and a substantially U-shaped segment conductor which is a component thereof will be described. However, since such a stator coil, a substantially U-shaped segment conductor, and a manufacturing method thereof are well known from Patent Document 1 and Patent Document 2 described above, only a brief description thereof will be given.

図1は、本発明による溶接方法によって製造されたステータコイル3を含む回転電機10の縦断面図である。図2は、略U字状のセグメント導体33がステータコア1のスロット35に挿入されるところを示す斜視図である。図3は、略U字状のセグメント導体33がスロットに挿入された後の形態を示す斜視図である。図4は、ステータコア1に設けられたスロット35内におけるセグメント導体33の収容状態を示す部分断面図である。   FIG. 1 is a longitudinal sectional view of a rotating electrical machine 10 including a stator coil 3 manufactured by a welding method according to the present invention. FIG. 2 is a perspective view showing a substantially U-shaped segment conductor 33 being inserted into the slot 35 of the stator core 1. FIG. 3 is a perspective view showing a form after the substantially U-shaped segment conductor 33 is inserted into the slot. FIG. 4 is a partial cross-sectional view showing a state in which the segment conductors 33 are accommodated in the slots 35 provided in the stator core 1.

図1に示される回転電機10は、車両のエアコンの圧縮機動力発生用のモータ10として使用されるものである。モータ10は、ステータコア1、ロータ2、ステータコイル3、ハウジング4、及び回転軸7を含んで構成されている。ステータコア1は、ハウジング4の周壁内周面に固定されている。また、ステータコア1は、本実施形態では96個のスロット35を有しており、これらのスロット35にステータコイル3が巻装されている。ロータ2は、ハウジング4に回転自在に支持された回転軸7に固定されたIPM型ロータ2であり、ステータコア1の内径側に配置されている。ステータコイル3は、三相電機子巻線であって、外部のバッテリに接続された三相インバータから給電されている。   A rotating electrical machine 10 shown in FIG. 1 is used as a motor 10 for generating compressor power for a vehicle air conditioner. The motor 10 includes a stator core 1, a rotor 2, a stator coil 3, a housing 4, and a rotating shaft 7. The stator core 1 is fixed to the inner peripheral surface of the peripheral wall of the housing 4. Further, the stator core 1 has 96 slots 35 in the present embodiment, and the stator coil 3 is wound around these slots 35. The rotor 2 is an IPM type rotor 2 fixed to a rotating shaft 7 rotatably supported by a housing 4, and is disposed on the inner diameter side of the stator core 1. The stator coil 3 is a three-phase armature winding and is fed by a three-phase inverter connected to an external battery.

このモータ10は、永久磁石型三相ブラシレスDCモータ10(同期モータ)であるが、モータ構造としては、公知の種々の形式に置換可能である。このような種々の形式の同期機自体は周知であるので動作原理についての説明は省略する。   The motor 10 is a permanent magnet type three-phase brushless DC motor 10 (synchronous motor), but the motor structure can be replaced with various known types. Since the various types of synchronous machines are well known, description of the operation principle is omitted.

ステータコイル3は、ステータコア1の一方の端面側に全体としてリング状に存在する頭部側コイルエンド部31と、ステータコア1の他方の端面側に全体としてリング状に存在する端部側コイルエンド部32と、スロット35内に存在するスロット導体部とに区分される。図1において、頭部側コイルエンド部31は、各セグメント導体33の略U字状の頭部により構成され、端部側コイルエンド部32は、各セグメント導体33の後述する飛び出し端部及び接合端部により構成されている。   The stator coil 3 includes a head-side coil end portion 31 that exists in a ring shape as a whole on one end surface side of the stator core 1 and an end-side coil end portion that exists as a ring shape as a whole on the other end surface side of the stator core 1. 32 and a slot conductor portion existing in the slot 35. In FIG. 1, the head-side coil end portion 31 is constituted by a substantially U-shaped head portion of each segment conductor 33, and the end-side coil end portion 32 is a protruding end portion and joint of each segment conductor 33 to be described later. It is comprised by the edge part.

ステータコイル3は、図2に示す一対の略U字状のセグメント導体33をステータコア1の一方の端面側からステータコア1の異なる二つのスロット35に挿通し、各セグメント導体33の飛び出し端部をスロット35からステータコア1の他方の端面側に必要な長さだけ突出させる。次いで、図示しない専用の成形装置を使って各セグメント導体33の飛び出し端部を周方向にほぼ電気角でπ/2だけそれぞれ捻り、図3に示されるように成形した後、各セグメント導体33の飛び出し端部の先端の接合端部を所定の組み合わせで溶接することにより形成される。また、セグメント導体33は、溶接部分即ち前記接合端部を除いて樹脂皮膜で被覆されている。   The stator coil 3 inserts a pair of substantially U-shaped segment conductors 33 shown in FIG. 2 into two different slots 35 of the stator core 1 from one end face side of the stator core 1, and the protruding end portions of the segment conductors 33 are slotted. A required length is projected from 35 to the other end face side of the stator core 1. Next, using a dedicated molding device (not shown), the protruding end portion of each segment conductor 33 is twisted by π / 2 in the circumferential direction at an electrical angle of approximately π / 2 and molded as shown in FIG. It is formed by welding the joining end portion at the tip of the protruding end portion in a predetermined combination. Moreover, the segment conductor 33 is coat | covered with the resin film except the welding part, ie, the said junction edge part.

セグメント導体33はその略U字状の頭部の大きさの違う2種類のものをペアにしてスロット35に挿入される。今後、サイズを区別して呼ぶ必要があるとき、参照符号に添え字1又は2が付され、大きいセグメント導体33を大セグメント導体331、小さいセグメント導体33を小セグメント導体332と呼ぶ。また、大セグメント導体331と小セグメント導体とのペアをセグメント導体セットSと呼び、前記セグメント導体セットSは、図1に示されるように、内周側に配置されたものの参照符号がS1及び外周側に配置されたものの参照符号がS2と付番される。 The segment conductor 33 is inserted into the slot 35 as a pair of two types of substantially U-shaped heads having different sizes. In the future, when it is necessary to distinguish between the sizes, subscripts 1 or 2 are added to the reference numerals, and the large segment conductor 33 is referred to as a large segment conductor 33 1 and the small segment conductor 33 is referred to as a small segment conductor 33 2 . A pair of the large segment conductor 33 1 and the small segment conductor is referred to as a segment conductor set S, and the segment conductor set S is arranged on the inner peripheral side as shown in FIG. The reference numeral of the one arranged on the outer peripheral side is numbered S2.

次に、大セグメント導体331及び小セグメント導体332とからなるセグメント導体セットSについて図2及び図3を参照してより詳しく説明する。
大小のセグメント導体331、332は、矩形断面を有する線材あるいは板材から形成されており、ほぼU字状のターン部としての頭部33b1、33b2と、この頭部の両端から直線的に延びて異なるスロット35に収容される一対のスロット導体部33aL1、33aR1及び33aL2、33aR2をそれぞれ備えている。ここで前記参照符号の添え字のLとRは、一対のスロット導体部33aのうち図2の左側のスロット35L又は右側のスロット35Rに挿入されるものであることを表している。各セグメント導体331及び332はスロットに挿入された後、図示しない成形機によって図3に示されるように成形されることにより、両スロット導体部から半径方向かつ図の上方へ延びる一対の飛び出し端部33dL1,33dR1及び33dL2,33dR2と、前記一対の飛び出し端部の先端にそれぞれ形成された接合端部33cL1、33cR1及び33cL2、33cR2とを有する。
Next, the segment conductor set S composed of the large segment conductor 33 1 and the small segment conductor 33 2 will be described in more detail with reference to FIGS.
The large and small segment conductors 33 1 and 33 2 are formed of a wire or plate having a rectangular cross section, and are substantially straight from both ends of the heads 33b 1 and 33b 2 as U-shaped turn parts. Are provided with a pair of slot conductor portions 33a L1 and 33a R1 and 33a L2 and 33a R2 respectively. Here, the subscripts L and R of the reference numerals indicate that they are inserted into the left slot 35 L or the right slot 35 R in FIG. 2 of the pair of slot conductor portions 33 a. After each segment conductor 33 1 and 33 2 is inserted into the slot, it is molded as shown in FIG. 3 by a molding machine (not shown), so that a pair of protrusions extending radially from both slot conductors and upward in the figure. It has end portions 33d L1 , 33d R1 and 33d L2 , 33d R2, and joint end portions 33c L1 , 33c R1 and 33c L2 , 33c R2 formed at the tips of the pair of protruding end portions, respectively.

図3に示されるように、大セグメント導体331の二つのスロット導体部33aL1と33aR1は異なるスロット35にそれぞれ収容され、小セグメント導体332の二つのスロット導体部33aL2と33aR2は大セグメント導体331のスロット導体部33aL1及びスロット導体部33aR1とそれぞれ同じスロットに収容される。 As shown in FIG. 3, the two slot conductor portions 33a L1 and 33a R1 of the large segment conductor 33 1 are accommodated in different slots 35, respectively, and the two slot conductor portions 33a L2 and 33a R2 of the small segment conductor 33 2 are The large segment conductor 33 1 is accommodated in the same slot as the slot conductor portion 33a L1 and the slot conductor portion 33a R1 .

図3では、実線で示された大小のセグメント導体331,332と共に別の大小のセグメント導体331´、332´の各部分が破線で示されており、別のセグメント導体331´、332´の各部分は、実線で示されたセグメント導体と同様の参照符号にダッシュ「´」を付加された参照符号を有している。 In FIG. 3, the large and small segment conductors 33 1 and 33 2 indicated by the solid lines and the other large and small segment conductors 33 1 ′ and 33 2 ′ are indicated by broken lines, and the other segment conductors 33 1 ′ are indicated. , 33 2 ′ have the same reference numerals as those of the segment conductors indicated by solid lines, with the reference numerals added with a dash “′”.

図3では、スロットは図示されないが、最内周側のスロット導体部33aL1と中内層のスロット導体部33aL2がステータコア1の一のスロット35Lに収容される場合、同じ大セグメント導体331及び小セグメント導体332の最外層のスロット導体部33aR1と中外層のスロット導体部33aR2は、この一のスロット35Lから所定奇数磁極ピッチT離れた他のスロット35Rに収容されている。また、小セグメント導体332の頭部33b2は大セグメント導体331の頭部33b1に囲まれるようにして配置されている。 In Figure 3, although slots are not shown, if the slot conductor portion 33a L2 of the middle inner layer and the slot conductor portion 33a L1 of the innermost peripheral side are accommodated in one slot 35 L of the stator core 1, the same large conductor segments 33 1 and small conductor segments 33 and second slot conductor portions 33a of the outermost layer of the slot conductor portion 33a R1 and Chugai layer R2 is accommodated from the first slot 35 L in a predetermined odd pole pitch T apart other slots 35 R . The head 33b 2 of the small segment conductor 33 2 is disposed so as to be surrounded by the head 33b 1 of the large segment conductor 33 1 .

ステータコア1の各スロット35におけるセグメント導体33のスロット導体部の配置の状態を図4を用いて説明する。本実施形態の場合、各スロット35には半径方向に一列に8本のスロット導体部33aが収容されており、スロット導体部33aは内周側から33aL1、33aL2、33aR2´、33aR1´の順で4本が収容され、さらに同様の4本のセットがその外側に収容されている。本明細書では説明のために、このようにスロット35に収容されたスロット導体部33aに対して内周側から1番、2番、...8番の序数を付すこととする。 The arrangement state of the slot conductor portions of the segment conductors 33 in the slots 35 of the stator core 1 will be described with reference to FIG. In the present embodiment, each slot 35 accommodates eight slot conductor portions 33a in a line in the radial direction, and the slot conductor portions 33a are 33a L1 , 33a L2 , 33a R2 ′, 33a R1 from the inner peripheral side. Four pieces are accommodated in the order of ′, and a similar four set is accommodated on the outside thereof. In the present specification, for explanation, the first, second,... From the inner peripheral side with respect to the slot conductor portion 33a accommodated in the slot 35 in this way. . . An ordinal number of 8 is attached.

次に、ステータコイル3の溶接が施される接合端部33cについて、図5及び図6を参照して説明する。図5は、ステータコアの一端側で溶接のために整列された接合端部33cと、溶接のために配置された内押圧電極101と、外押圧電極102と、串状の共通電極103を模式的に示すステータコイル3と電極の部分平面図である。図6は、一列の接合端部33cと各電極を模式的に示すステータコイル3と電極の部分縦断面図である。   Next, the joining end portion 33c to which the stator coil 3 is welded will be described with reference to FIGS. FIG. 5 schematically shows a joint end 33c aligned for welding on one end side of the stator core, an inner pressing electrode 101, an outer pressing electrode 102, and a skew-shaped common electrode 103 arranged for welding. FIG. 3 is a partial plan view of the stator coil 3 and electrodes shown in FIG. FIG. 6 is a partial vertical cross-sectional view of the stator coil 3 and the electrodes schematically showing one row of joining end portions 33c and each electrode.

図5に示されるように接合端部33cは8個が一列に整列される。8個の接合端部33cに内周側から1番、2番、・・・、8番と序数を付したとき、8個の接合端部33cは、隣接する奇数番と偶数番のものが余りを作らないようにペアにされて互いに溶接される。本明細書では、溶接されるそのような接合端部33cのペアを接合ペア33pと呼ぶこととする。具体的には、1番2番、3番4番、5番6番、及び7番8番の接合端部33cが第1〜第4の接合ペア33p1〜33p4をそれぞれ作っている。 As shown in FIG. 5, eight joining end portions 33c are aligned in a line. When eight ordinal numbers are attached to the eight joint ends 33c from the inner circumference side, the first, second,..., And the ordinal number are assigned to the eight joint ends 33c. They are paired and welded together so as not to make a surplus. In this specification, such a pair of joining end portions 33c to be welded is referred to as a joining pair 33p. Specifically, the first, second, third, fourth, fifth, sixth and seventh joint ends 33c form the first to fourth joint pairs 33p 1 to 33p 4 , respectively.

また、図6に示されるように、2番と3番の接合端部33cは一つの小セグメント導体332の一対の接合端部33cL2と33cR2からそれぞれなるものであり、同様に6番と7番の接合端部33cは他の一つの小セグメント導体332の一対の接合端部33cL2と33cR2からそれぞれなるものである。一方、1番と4番の接合端部33cは互いに異なる大セグメント導体331の接合端部33cL1と33cR1からなるものであり、同様に5番と8番の接合端部33cも互いに異なる大セグメント導体331の接合端部33cL1と33cR1からなるものである。但し、1番と4番、及び5番と8番の接合端部33cは図示されない他のセグメント導体を介してそれぞれ互いに電気的に接続している。 Further, as shown in FIG. 6, No. 2 and the joint end portion 33c of the third is made of each of one of the small conductor segments 33 and second pair of joint end portions 33c L2 and 33c R2, likewise number 6 And the seventh joint end portion 33c are respectively composed of a pair of joint end portions 33c L2 and 33c R2 of another small segment conductor 33 2 . On the other hand, the first and fourth joint ends 33c are composed of joint ends 33c L1 and 33c R1 of different large segment conductors 331. Similarly, the fifth and eighth joint ends 33c are different from each other. The segment conductor 331 is composed of joint end portions 33c L1 and 33c R1 . However, the joint ends 33c of Nos. 1 and 4 and Nos. 5 and 8 are electrically connected to each other via other segment conductors (not shown).

本実施形態では、溶接はアーク溶接により行われるため、内押圧電極101、外押圧電極102、共通電極103、及び溶接トーチ104が用いられる。内押圧電極101及び外押圧電極102は1番及び8番の接合端部33cにそれぞれ接触して1番及び8番の接合端部33cを半径方向に押圧することができる。   In this embodiment, since welding is performed by arc welding, the inner pressing electrode 101, the outer pressing electrode 102, the common electrode 103, and the welding torch 104 are used. The inner pressing electrode 101 and the outer pressing electrode 102 can contact the first and eighth joint ends 33c, respectively, and press the first and eighth joint ends 33c in the radial direction.

共通電極103は、内周側に先細のテーパの付いた串状の平面形状を有しており、隣接する2列の接合端部33cの列の間に配置され、2列の各接合端部33cの側面に接触するように形成されている。   The common electrode 103 has a skewer-like planar shape with a taper taper on the inner peripheral side, and is disposed between two adjacent rows of joint end portions 33c. It is formed so as to contact the side surface of 33c.

溶接は、溶接対象となる接合ペア33pの軸方向上方に所定の空間をあけて配置された溶接トーチ104と接合ペア33pとの間に発生するアークによってなされ、溶接電流は接合端部33cから共通電極103に流れるだけでなく、内押圧電極101及び外押圧電極102にも流れる。   Welding is performed by an arc generated between the welding torch 104 and the joint pair 33p arranged with a predetermined space above the joint pair 33p to be welded, and the welding current is common to the joint end 33c. It flows not only to the electrode 103 but also to the inner pressing electrode 101 and the outer pressing electrode 102.

また、ステータコイル3が巻装されたステータコア1及び各電極は図示しない回転移動装置に連結されて一体に回転し且つ所定の角度位置で停止されることが可能であり、また溶接トーチ104は図示しない移動アームに連結されて半径方向に移動し所定の半径方向位置で停止されることが可能である。したがって本実施形態では、ステータコイル側の回転と溶接トーチ104の半径方向の移動を組み合わせることにより、溶接トーチ104の接合ペア33pに対する位置決めが行われる。   Further, the stator core 1 and the respective electrodes around which the stator coil 3 is wound are connected to a rotational movement device (not shown) so as to rotate integrally and be stopped at a predetermined angular position, and the welding torch 104 is shown in the figure. It can be connected to a moving arm that does not move and move in the radial direction and stop at a predetermined radial position. Therefore, in the present embodiment, the positioning of the welding torch 104 with respect to the joining pair 33p is performed by combining the rotation on the stator coil side and the radial movement of the welding torch 104.

本実施形態の溶接方法では、溶接順序は図6の丸数字で示されるように、第1の接合ペア33p1の溶接の後に第2の接合ペア33p2が溶接され、第4の接合ペア33p4の溶接の後に第3の接合ペア33p3が溶接される。さらに本実施形態では、接合端部33cの一つの列内における異なる番号の接合ペアよりも、接合端部33cの他の列における同一番号を有する接合ペアが先に溶接される。 In the welding method of the present embodiment, the welding order is indicated by the circled numbers in FIG. 6, the second joint pair 33p 2 is welded after the first joint pair 33p 1 is welded, and the fourth joint pair 33p. After the welding of 4 , the third joint pair 33p 3 is welded. Furthermore, in this embodiment, the joint pair having the same number in the other row of the joint end portion 33c is welded first, rather than the joint pair having a different number in one row of the joint end portion 33c.

次に、前述した溶接方法のより具体的な手順の一例を示す。なお、接合端部33cの列数はNであるとする。
最初に、内押圧電極101を1番の接合端部33cに、外押圧電極102を8番の接合端部33cに、及び共通電極103を1番〜8番の接合端部33cに接触させる。
接合端部33cの第1の列における第1の接合ペア33p1の溶接を行う。
次に、前記第1の列に隣接する第2の列から第Nの列における第1の接合ペア33p1の溶接を同様に行う。
次に、第1の列における第2の接合ペア33p2の溶接を行う。
次に、第2の列から第Nの列における第2の接合ペア33p2の溶接を同様に行う。
次に、第1の列における第4の接合ペア33p4の溶接を行う。
次に、第2の列から第Nの列における第4の接合ペア33p4の溶接を同様に行う。
次に、第1の列における第3の接合ペア33p3の溶接を行う。
次に、第2の列から第Nの列における第3の接合ペア33p3の溶接を同様に行い、一つのステータコイルにおける接合ペア33pの溶接が完了する。
Next, an example of a more specific procedure of the above-described welding method will be shown. It is assumed that the number of rows of the joining end portion 33c is N.
First, the inner pressing electrode 101 is brought into contact with the first joining end 33c, the outer pressing electrode 102 is brought into contact with the eighth joining end 33c, and the common electrode 103 is brought into contact with the first to eighth joining ends 33c.
Performing a first weld bonding the pair 33p 1 in the first row of the joint end portion 33c.
Next, the welding of the first joint pair 33p 1 in the second to Nth rows adjacent to the first row is similarly performed.
Next, the second joint pair 33p 2 in the first row is welded.
Next, the second joint pair 33p 2 in the second to Nth rows is similarly welded.
Next, the fourth joint pair 33p 4 in the first row is welded.
Next, the fourth joint pair 33p 4 in the second to Nth columns is similarly welded.
Next, the third joint pair 33p 3 in the first row is welded.
Next, the third joint pair 33p 3 in the second to Nth rows is similarly welded, and the welding of the joint pair 33p in one stator coil is completed.

本発明の実施形態において溶接の順序を前述したように規定している理由を5番と6番の接合端部33cからなる第3の接合ペア33p3を例に以下に説明する。
5番の接合端部33cは、それに共通電極103が接触していない場合であっても、8番の接合端部33cに電気的に接続しているので8番の接合端部33cを介して外押圧電極102に電気的に接続しており、一方6番の接合端部33cは、それに共通電極103が接触していない場合であっても、同一のセグメント導体の7番の接合端部33cに電気的に接続し、そして、第3の接合ペア33p3を溶接するときに第4の接合ペア33p4が既に溶接されていることにより、6番の接合端部33cも、7番の接合端部33cと、7番の接合端部33cに既に溶接された8番の接合端部33cとを介して外押圧電極102に電気的に接続されるためである。
The reason why the welding order is defined as described above in the embodiment of the present invention will be described below by taking the third joint pair 33p 3 composed of the fifth and sixth joint ends 33c as an example.
The fifth joint end 33c is electrically connected to the eighth joint end 33c even when the common electrode 103 is not in contact with the fifth joint end 33c via the eighth joint end 33c. Even if the common electrode 103 is not in contact with the sixth joining end portion 33c, the sixth joining end portion 33c of the same segment conductor is electrically connected to the outer pressing electrode 102. Since the fourth joint pair 33p 4 is already welded when the third joint pair 33p 3 is welded, the sixth joint end 33c is also joined to the seventh joint This is because it is electrically connected to the outer pressing electrode 102 through the end 33c and the eighth joint end 33c already welded to the seventh joint end 33c.

(その他の実施形態)
前述の実施形態の溶接方法では、第1の接合ペア33p1を最初に溶接したが、最初に第4の接合ペア33p4を溶接し、次に第3の接合ペア33p3、第1の接合ペア33p1、及び第2の接合ペア33p2という順序で溶接を進めてもよい。
(Other embodiments)
In the welding method of the above-described embodiment, the first joint pair 33p 1 is welded first, but the fourth joint pair 33p 4 is first welded, and then the third joint pair 33p 3 and the first joint are joined. The welding may proceed in the order of the pair 33p 1 and the second joining pair 33p 2 .

本発明による方法によって製造されたステータコイルを含む回転電機の縦断面図である。1 is a longitudinal sectional view of a rotating electrical machine including a stator coil manufactured by a method according to the present invention. ステータコアのスロットに挿入される略U字状のセグメント導体を示す斜視図である。It is a perspective view which shows the substantially U-shaped segment conductor inserted in the slot of a stator core. スロットに挿入されて成形された略U字状のセグメント導体を示す斜視図である。It is a perspective view which shows the substantially U-shaped segment conductor shape | molded by inserting in a slot. スロット内におけるセグメント導体の収容状態を示す部分断面図である。It is a fragmentary sectional view which shows the accommodation state of the segment conductor in a slot. ステータコイル及び電極の模式的な部分平面図である。It is a typical fragmentary top view of a stator coil and an electrode. ステータコイル及び電極の模式的な部分縦断面図である。It is a typical fragmentary longitudinal cross-sectional view of a stator coil and an electrode. ステータコイル及び電極の模式的な部分縦断面図である。It is a typical fragmentary longitudinal cross-sectional view of a stator coil and an electrode.

符号の説明Explanation of symbols

1 ステータコア
3 ステータコイル
33 セグメント導体
33c 接合端部
33p 接合ペア
101 内押圧電極
102 外押圧電極
103 共通電極
104 溶接トーチ
DESCRIPTION OF SYMBOLS 1 Stator core 3 Stator coil 33 Segment conductor 33c Joining end part 33p Joined pair 101 Inner pressing electrode 102 Outer pressing electrode 103 Common electrode 104 Welding torch

Claims (4)

ステータコア(1)のスロット(35)に挿通された略U字状の多数のセグメント導体(33)を具備するステータコイル(3)の溶接方法であって、
前記ステータコア(1)の一端側で半径方向に一列に整列された前記セグメント導体(33)の8個の接合端部(33c)からなる接合端部(33c)の列が多数列形成されたステータコイル(3)の半完成品にして、前記整列された8個の接合端部(33c)に内周側から1番、2番、・・・、8番と序数を付したとき、1番と2番、3番と4番、5番と6番、及び7番と8番の一対の接合端部(33c)が第1、第2、第3、及び第4の接合ペア(33p1、33p2、33p3、33p4)をそれぞれ形成し、前記接合端部(33c)の一の列における前記1番と4番、2番と3番、6番と7番、及び5番と8番の接合端部(33c)がセグメント導体(33)によってそれぞれ互いに電気的に接続しているステータコイル(3)の半完成品の前記第1〜第4の接合ペア(33p1〜33p4)を溶接する工程を含み、
前記溶接する工程が、前記1番の接合端部(33c)をアースに接続する段階と、前記8番の接合端部(33c)をアースに接続する段階と、前記第1〜第4の接合ペア(33p1〜33p4)をアーク溶接する段階とを含んでおり、
前記アーク溶接する段階において、前記第2の接合ペア(33p2)が前記第1の接合ペア(33p1)の溶接後に溶接され、及び前記第3の接合ペア(33p3)が前記第4の接合ペア(33p4)の溶接後に溶接されることを特徴とする、ステータコイル(3)の溶接方法。
A stator coil (3) welding method comprising a plurality of substantially U-shaped segment conductors (33) inserted into slots (35) of a stator core (1),
A stator in which a plurality of rows of joining end portions (33c) including eight joining end portions (33c) of the segment conductors (33) aligned in a row in the radial direction on one end side of the stator core (1) are formed. When the semi-finished product of the coil (3) is attached with the ordinal numbers of No. 1, No. 2, No. 8, etc. from the inner peripheral side to the aligned eight joint ends (33c), No. 1 , No. 2, No. 3, No. 4, No. 5, No. 6, and No. 7 and No. 8 of a pair of joining end portions (33c) are first, second, third and fourth joining pairs (33p 1). 33p 2 , 33p 3 , 33p 4 ), and the first and fourth, second and third, sixth and seventh, and fifth in one row of the joint end (33c) Half of the stator coil (3) in which the eighth joining end (33c) is electrically connected to each other by the segment conductor (33). Comprising the step of welding the adult products first to fourth bonding pair (33p 1 ~33p 4),
The welding step includes connecting the first joint end (33c) to ground, connecting the eighth joint end (33c) to ground, and the first to fourth joints. pair of (33p 1 ~33p 4) includes a step of arc welding,
In the arc welding step, the second joint pair (33p 2 ) is welded after welding the first joint pair (33p 1 ), and the third joint pair (33p 3 ) is the fourth joint pair (33p 3 ). A welding method for a stator coil (3), wherein the welding is performed after welding of a joining pair (33p 4 ).
前記アーク溶接する段階において、前記接合端部(33c)の一の列における異なる番号の前記接合ペア(33p)よりも、前記接合端部(33c)の他の列における同一番号を有する接合ペア(33p)を先に溶接するように溶接の順序が定められていることを特徴とする、請求項1に記載のステータコイル(3)の溶接方法。   In the arc welding step, the bonding pair having the same number in the other row of the bonding end portion (33c) rather than the bonding pair (33p) having a different number in the row of the bonding end portion (33c) ( The welding method of the stator coil (3) according to claim 1, characterized in that the welding order is determined so that 33p) is welded first. 前記1番の接合端部(33c)をアースに接続する前記段階において、前記1番の接合端部(33c)に接触するとともに前記1番の接合端部(33c)を半径方向に押圧する内押圧電極が用いられ、
前記8番の接合端部(33c)をアースに接続する前記段階において、前記8番の接合端部(33c)に接触するとともに前記8番の接合端部(33c)を半径方向に押圧する外押圧電極が用いられることを特徴とする、請求項1又は2に記載のステータコイル(3)の溶接方法。
In the step of connecting the first joint end (33c) to the ground, the first joint end (33c) is brought into contact with the first joint end (33c) and pressed in the radial direction. A pressure electrode is used,
In the step of connecting the No. 8 joint end (33c) to the ground, it is in contact with the No. 8 joint end (33c) and presses the No. 8 joint end (33c) in the radial direction. The method of welding a stator coil (3) according to claim 1 or 2, characterized in that a pressing electrode is used.
ステータコア(1)のスロット(35)に挿通された略U字状の多数のセグメント導体(33)を具備するステータコイル(3)を製造する方法であって、
前記ステータコア(1)の一端側で半径方向に一列に整列された前記セグメント導体(33)の8個の接合端部(33c)からなる接合端部(33c)の列が多数列形成されたステータコイル(3)の半完成品にして、前記整列された8個の接合端部(33c)に内周側から1番、2番、・・・、8番と序数を付したとき、1番と2番、3番と4番、5番と6番、及び7番と8番の一対の接合端部(33c)が第1、第2、第3、及び第4の接合ペア(33p1、33p2、33p3、33p4)をそれぞれ形成し、前記接合端部(33c)の一の列における前記1番と4番、2番と3番、6番と7番、及び5番と8番の接合端部(33c)がセグメント導体(33)によってそれぞれ互いに電気的に接続しているステータコイル(3)の半完成品を準備する工程と、
前記第1〜第4の接合ペア(33p1〜33p4)を溶接する工程とを含む、ステータコイル(3)を製造する方法において、
前記溶接する工程が、前記1番の接合端部(33c)をアースに接続する段階と、前記8番の接合端部(33c)をアースに接続する段階と、前記第1〜第4の接合ペア(33p1〜33p4)をアーク溶接する段階とを含んでおり、
前記アーク溶接する段階において、前記第2の接合ペア(33p2)が前記第1の接合ペア(33p1)の溶接後に溶接され、及び前記第3の接合ペア(33p3)が前記第4の接合ペア(33p4)の溶接後に溶接されることを特徴とする、ステータコイル(3)を製造する方法。
A method for producing a stator coil (3) comprising a number of substantially U-shaped segment conductors (33) inserted into slots (35) of a stator core (1),
A stator in which a plurality of rows of joining end portions (33c) including eight joining end portions (33c) of the segment conductors (33) aligned in a row in the radial direction on one end side of the stator core (1) are formed. When the semi-finished product of the coil (3) is attached with the ordinal numbers of No. 1, No. 2, No. 8, etc. from the inner peripheral side to the aligned eight joint ends (33c), No. 1 , No. 2, No. 3, No. 4, No. 5, No. 6, and No. 7 and No. 8 of a pair of joining end portions (33c) are first, second, third and fourth joining pairs (33p 1). 33p 2 , 33p 3 , 33p 4 ), and the first and fourth, second and third, sixth and seventh, and fifth in one row of the joint end (33c) Half of the stator coil (3) in which the eighth joining end (33c) is electrically connected to each other by the segment conductor (33). A step of preparing the finished products,
Welding the first to fourth joint pairs (33p 1 to 33p 4 ), and manufacturing the stator coil (3),
The welding step includes connecting the first joint end (33c) to ground, connecting the eighth joint end (33c) to ground, and the first to fourth joints. pair of (33p 1 ~33p 4) includes a step of arc welding,
In the arc welding step, the second joint pair (33p 2 ) is welded after welding the first joint pair (33p 1 ), and the third joint pair (33p 3 ) is the fourth joint pair (33p 3 ). A method for producing a stator coil (3), characterized in that the stator coil (3) is welded after welding of a joining pair (33p 4 ).
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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2014147174A (en) * 2013-01-28 2014-08-14 Asmo Co Ltd Motor
CN104584392A (en) * 2012-08-31 2015-04-29 日立汽车系统株式会社 Rotating electric machine and method for manufacturing same
JP2019054693A (en) * 2017-09-19 2019-04-04 日立オートモティブシステムズ株式会社 Manufacturing method of stator, manufacturing method of rotary electric machine, stator, and rotary electric machine

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000350422A (en) * 1999-03-30 2000-12-15 Denso Corp Manufacture of dynamo-electric machine
JP2004032897A (en) * 2002-06-25 2004-01-29 Denso Corp Segments-sequentially-joined stator coil for rotary electric machine and its manufacturing method
JP2004254362A (en) * 2003-02-18 2004-09-09 Denso Corp Method for manufacturing stator of rotary electric machine

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2000350422A (en) * 1999-03-30 2000-12-15 Denso Corp Manufacture of dynamo-electric machine
JP2004032897A (en) * 2002-06-25 2004-01-29 Denso Corp Segments-sequentially-joined stator coil for rotary electric machine and its manufacturing method
JP2004254362A (en) * 2003-02-18 2004-09-09 Denso Corp Method for manufacturing stator of rotary electric machine

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104584392A (en) * 2012-08-31 2015-04-29 日立汽车系统株式会社 Rotating electric machine and method for manufacturing same
US20150222155A1 (en) * 2012-08-31 2015-08-06 Hitachi Automotive Systems, Ltd. Rotating Electric Machine and Method for Manufacturing Same
US9906086B2 (en) * 2012-08-31 2018-02-27 Hitachi Automotive Systems, Ltd. Rotating electric machine including a stator with a connection portion having a corner portion and method for manufacturing same
JP2014147174A (en) * 2013-01-28 2014-08-14 Asmo Co Ltd Motor
JP2019054693A (en) * 2017-09-19 2019-04-04 日立オートモティブシステムズ株式会社 Manufacturing method of stator, manufacturing method of rotary electric machine, stator, and rotary electric machine

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