Nothing Special   »   [go: up one dir, main page]

JP2007135339A - Unit for combining bus bar used for stator in dynamo-electric machine - Google Patents

Unit for combining bus bar used for stator in dynamo-electric machine Download PDF

Info

Publication number
JP2007135339A
JP2007135339A JP2005327285A JP2005327285A JP2007135339A JP 2007135339 A JP2007135339 A JP 2007135339A JP 2005327285 A JP2005327285 A JP 2005327285A JP 2005327285 A JP2005327285 A JP 2005327285A JP 2007135339 A JP2007135339 A JP 2007135339A
Authority
JP
Japan
Prior art keywords
bus bar
holder
stator
bus bars
bus
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.)
Granted
Application number
JP2005327285A
Other languages
Japanese (ja)
Other versions
JP4816017B2 (en
Inventor
Masaki Matsuyama
雅樹 松山
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.)
Sumitomo Electric Industries Ltd
Original Assignee
Sumitomo Electric Industries Ltd
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 Sumitomo Electric Industries Ltd filed Critical Sumitomo Electric Industries Ltd
Priority to JP2005327285A priority Critical patent/JP4816017B2/en
Publication of JP2007135339A publication Critical patent/JP2007135339A/en
Application granted granted Critical
Publication of JP4816017B2 publication Critical patent/JP4816017B2/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02TCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO TRANSPORTATION
    • Y02T10/00Road transport of goods or passengers
    • Y02T10/60Other road transportation technologies with climate change mitigation effect
    • Y02T10/64Electric machine technologies in electromobility

Landscapes

  • Windings For Motors And Generators (AREA)
  • Insulation, Fastening Of Motor, Generator Windings (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To reduce the manufacturing cost of bus bars used for a stator in a dynamo-electric machine of a hybrid vehicle and a fuel cell vehicle or the like. <P>SOLUTION: In a unit for combining the bus bars used for the stator in the dynamo-electric machine, coils are wound onto respective annularly disposed teeth and connected by linear bus bars 3(3a, 3b, 3c) annularly arranged for each phase of respective coils. Insulative holders 11 of the bus bars are provided in regions for connecting coils, maintain gaps between the bus bars, and ensure insulation properties. If the holder is divided, the cost of the holder can be reduced. If the bus bar is formed from a linear material, the cost of the bus bar can be reduced. Accordingly, the cost of the unit for combining the bus bars can be reduced. <P>COPYRIGHT: (C)2007,JPO&INPIT

Description

この発明は、ハイブリッド自動車用、燃料電池自動車用等の回転電機のステータ用バスバ結合ユニット及びその製造方法に関するものである。   The present invention relates to a bus bar coupling unit for a stator of a rotating electric machine for a hybrid vehicle, a fuel cell vehicle, and the like, and a method for manufacturing the same.

今日、環境問題の点から、ハイブリッド自動車や燃料電池自動車が開発され、これらの自動車は、回転電機を補助駆動源又は主駆動源とし、その回転電機は当然のこととして小型化が要求される。その回転電機の小型化への一手段として、ステータの小型化がある。   Today, hybrid vehicles and fuel cell vehicles have been developed from the viewpoint of environmental problems. These vehicles use a rotating electrical machine as an auxiliary drive source or a main drive source, and the rotating electrical machine is naturally required to be downsized. One means for reducing the size of the rotating electrical machine is to reduce the size of the stator.

そのステータに、円環状に配置された各ティース(各コイルスロット)のそれぞれにコイルが巻回され、その各コイルを各相毎に、前記各ティースの円環状配置に沿う環状バスバにより接続したものがある(特許文献1〜3参照)。
特開平06−233483号公報 特開2000−69705号公報 特開2003−134724号公報
A coil is wound around each of the teeth (each coil slot) arranged in an annular shape on the stator, and each coil is connected to each phase by an annular bus bar along the annular arrangement of each tooth. (See Patent Documents 1 to 3).
Japanese Patent Laid-Open No. 06-234383 JP 2000-69705 A JP 2003-134724 A

そのバスバは、金属板材から円環状に打ち抜いて形成したものが一般的であり(特許文献3参照)、ケーブルを使用したものもある(特許文献2、4参照)。
また、各相の同一大きさの環状バスバを絶縁層を介して重ねて一体化して結線用ユニット(特許文献1:符号16、特許文献3:符号17、特許文献4:符号20)としたものがあり、この結線用ユニットは、円環状配置の各コイルに沿って設けてそのバスバに各コイルの端末を各相毎に接続している。
特開2004−56873号公報
The bus bar is generally formed by punching out from a metal plate in an annular shape (see Patent Document 3), and there is also one using a cable (see Patent Documents 2 and 4).
Also, annular bus bars of the same size for each phase are stacked and integrated via an insulating layer to form a connection unit (Patent Document 1: Reference 16, Patent Reference 3: Reference 17, Patent Reference 4: Reference 20). This connection unit is provided along each coil in an annular arrangement, and the terminal of each coil is connected to the bus bar for each phase.
JP 2004-56873 A

今日のコストダウンの要請の下、この回転電機のステータ用バスバも例外ではなく、例えば、上記各従来技術の結線用ユニットの各バスバの絶縁保持用ホルダーは、そのバスバの全周に亘る円環状の態様であるが、そのホルダーにもそのコストダウンが要求される。また、各バスバに電源接続用端子を接続するためのリード線(接続片)等もコストダウンの点から削減の要請がある。   Under today's demand for cost reduction, the stator bus bar of this rotating electric machine is no exception. For example, the insulation holding holder of each bus bar of each of the above conventional connection units has an annular shape around the entire circumference of the bus bar. However, the holder is also required to reduce the cost. In addition, there is a demand for reducing lead wires (connection pieces) for connecting a power connection terminal to each bus bar from the viewpoint of cost reduction.

この発明は、以上の状況に鑑み、バスバの製作コストを下げることを課題とする。   This invention makes it a subject to lower the manufacturing cost of a bus bar in view of the above situation.

上記課題を達成するために、この発明は、まず、上記バスバの絶縁保持用ホルダーを、各コイルの各バスバへの各接続部位にそれぞれ別々に設けることとしたのである。
各バスバは、その周囲の適宜位置で絶縁性を持って全周に亘り相互間に間隙を保持されれば、何らかの外力が加わらなければ、十分に相互に絶縁性を担保できる。このため、各コイルとの各接続部位にホルダーを設ければ、十分に相互に絶縁性を担保できる。
因みに、後述のように、その各バスバを絶縁樹脂被覆によりモールドすれば、それ以後は絶縁性がその絶縁樹脂被覆により確保されるため、そのモールドするまで、上記間隙を維持すれば良く、その維持は上記各接続部位のホルダーで十分である。
In order to achieve the above object, according to the present invention, first, the insulation holding holder of the bus bar is separately provided at each connection portion of each coil to each bus bar.
If each bus bar has an insulating property at an appropriate position around the bus bar and a gap is maintained between the entire circumferences, the insulating property can be sufficiently secured if no external force is applied. For this reason, if a holder is provided in each connection site | part with each coil, insulation can fully be mutually ensured.
Incidentally, as will be described later, if each bus bar is molded with an insulating resin coating, the insulation is secured by the insulating resin coating thereafter, so that the gap may be maintained until the molding. For the above, a holder at each of the above connection sites is sufficient.

つぎに、この発明は、上記バスバを線材によって形成することとしたのである。
金属板材からの打ち抜きによる形成は材料無駄が多いが、線材は、引き抜きなどによって形成されるため、その打ち抜き品に比べれば、はるかに安価である。また、線材は、保形性があるため、環状へのフォーミングも容易である。
Next, this invention decided to form the said bus bar with a wire.
Forming by punching from a metal plate is wasteful in material, but wire is formed by drawing or the like, and is much cheaper than its punched product. In addition, since the wire has shape retention, it can be easily formed into a ring shape.

この発明は、以上のように、バスバの絶縁保持用ホルダーを、各コイルの各バスバへの各接続部位にそれぞれ別々に設けた分割部材により構成することにより、ホルダーのコストダウンを図ることができる。また、バスバを線材によって形成することにより、バスバ単体のコストダウンを図ることができる。これらによって、バスバ結合ユニットのコストダウンを図ることができる。   As described above, the present invention can reduce the cost of the holder by configuring the insulation holding holder of the bus bar by the divided members separately provided at the connection portions of the coils to the bus bars. . Further, by forming the bus bar with a wire rod, the cost of the bus bar alone can be reduced. As a result, the cost of the bus bar coupling unit can be reduced.

この発明の一実施形態としては、円環状のティースにコイルが各相毎に巻回され、その各コイルを各相毎に、前記ティースの円環状に沿う同一心の環状バスバにより接続し、その各相のバスバをホルダーによりその全周に亘ってそれぞれ離した回転電機のステータ用バスバ結合ユニットにおいて、前記各コイルが各相毎に接続されるティースの円環状に沿う同一心の環状バスバと、その各相のバスバをその全周に亘ってそれぞれ離すホルダーと、各コイルを各相毎に前記各バスバに接続する接続片とから成り、接続片は、各バスバに接続されてそのバスバの側方に導出されて上記各コイルに接続されるものであり、ホルダーは、長片状として絶縁材料から成って、各接続片の各コイルとの接続部位毎にそれぞれ別々にその各バスバに交差するように設けられ、その各ホルダーには、各バスバの嵌る溝がそのホルダーの長さ方向に順々に形成され、その各ホルダーの溝は、前記接続片が通るものはその接続片の反対面に開口する構成を採用する。   As one embodiment of the present invention, a coil is wound around an annular tooth for each phase, and each coil is connected to each phase by a concentric annular bus bar along the annular shape of the tooth. In a bus bar coupling unit for a stator of a rotating electrical machine in which the bus bars of each phase are separated from each other by a holder, the concentric annular bus bars along the ring of teeth to which the coils are connected for each phase; It consists of a holder that separates the bus bar of each phase over the entire circumference, and a connection piece that connects each coil to each bus bar for each phase, and the connection piece is connected to each bus bar and connected to the side of the bus bar. The holder is made of an insulating material in the form of a long piece, and crosses each bus bar separately for each connection portion with each coil of each connection piece. In each of the holders, a groove into which each bus bar fits is formed in order in the length direction of the holder, and the groove of each of the holders passes through the connection piece on the opposite surface of the connection piece. Adopt a configuration that opens.

このように、コイルとバスバの各接続部位のホルダーがその各バスバに交差すれば、そのホルダーの長さ方向に順々に形成された溝にバスバを順々に嵌めることによってそのバスバを支持できる。
このとき、そのホルダーの各溝は、コイルに接続された接続片が通るものはその接続片の反対面に開口するので、その接続片とバスバはホルダーの溝内面壁で電気絶縁される。
Thus, if the holder of each connection part of a coil and a bus bar crosses each bus bar, the bus bar can be supported by fitting the bus bar in the groove formed in order in the length direction of the holder. .
At this time, since each groove of the holder passes through the connection piece connected to the coil, the connection piece and the bus bar are electrically insulated by the groove inner wall of the holder.

この構成のバスバ結合ユニットは、例えば、各バスバに各接続片をそれぞれ接続し、その各バスバの接続片の各接続部位に、ホルダーをその溝にバスバを嵌めることによりそれぞれ取付け、その各ホルダー付の各バスバを各ホルダーの対応する溝にそれぞれ嵌め込んで製造する。   The bus bar coupling unit having this configuration is, for example, connected by connecting each connection piece to each bus bar, and attaching the holder to each connection portion of the connection piece of each bus bar by fitting the bus bar into the groove, and attaching each holder to the connection part. Each bus bar is inserted into the corresponding groove of each holder.

このように、各バスバを前もって、電気的に絶縁して一体化し、その結合ユニット(結線用ユニット)を回転電機のステータを成すティースに取付けるようにすれば、バスバをティースに取付けてそのコイルに接続する作業が容易となる。
なお、上記接続片は、金属板材の打ち抜き片等の片状部材のみならず、各種の電線も含む。また、各ホルダーに、上記バスバ用溝とは異なるそのホルダーの長さ方向の溝を形成し、その溝に接続片を嵌めるようにすれば、接続片の取付状態が安定する。
As described above, if each bus bar is electrically insulated and integrated in advance, and its connecting unit (connection unit) is attached to the teeth forming the stator of the rotating electrical machine, the bus bar is attached to the teeth and attached to the coil. Connection work becomes easy.
The connecting piece includes not only a piece-like member such as a punched piece of a metal plate material but also various electric wires. If each holder is formed with a groove in the length direction of the holder different from the groove for the bus bar, and the connection piece is fitted in the groove, the attachment state of the connection piece is stabilized.

上記各ホルダーの溝は、上記コイルに接続された接続片が通らないものはその接続片の側に開口するようにすることができる。接続片が通らなければ、その接続片側に開口した溝にバスバを嵌めても、そのバスバは接続片に触れることが無く、絶縁性が担保されるからである。
この構成であると、後述の実施例のように、そのホルダーへのバスバの嵌め込み取付けが容易となって、生産性が向上する。
The groove of each of the holders can be opened to the side of the connection piece if the connection piece connected to the coil cannot pass therethrough. If the connection piece does not pass, even if the bus bar is fitted in the groove opened on the connection piece side, the bus bar does not touch the connection piece, so that insulation is ensured.
With this configuration, the fitting of the bus bar into the holder is facilitated and productivity is improved as in the embodiments described later.

また、上記バスバは、線材(無垢の線材)とすることができ、その線材の端を上記ティースから外側に引き出して電源接続用端子を設けた構成とすれば、各バスバに電源接続用端子を接続するためのリード線をそのバスバの端部が兼用するため、コストダウンを図ることができる。
線状バスバには、断面真円状、同楕円状、多角形状等の各種の断面形状のものを採用でき、また、裸線でも良いが、絶縁被覆を施したものとすることができる。
Also, the bus bar can be a wire (solid wire), and if the end of the wire is drawn out from the teeth and provided with a power connection terminal, the power connection terminal is provided on each bus bar. Since the end of the bus bar also serves as a lead wire for connection, the cost can be reduced.
The linear bus bar may have various cross-sectional shapes such as a perfect circular shape, the same elliptical shape, or a polygonal shape, and may be a bare wire, but may be provided with an insulating coating.

一実施例を図1〜図3に示し、この実施例は、燃料電池自動車用回転電機やハイブリッド自動車用回転電機のステータに係り、従来と同様に、円環状に配置された各ティースのそれぞれにコイルが巻回され、その各コイルの外側端を各相毎に、前記各ティースの円環状配置に沿う環状バスバ3(3a、3b、3c)により接続し、各内側端(中性点)を環状バスバ3dにより接続したものである。各ティースは円環状に並べて金属製円筒(図示省略)によって焼バメ等で固定されている。   An embodiment is shown in FIGS. 1 to 3, and this embodiment relates to a stator of a rotary electric machine for a fuel cell vehicle and a rotary electric machine for a hybrid vehicle, and each of the teeth arranged in an annular shape as in the prior art. Coils are wound, and the outer ends of the coils are connected for each phase by annular bus bars 3 (3a, 3b, 3c) along the annular arrangement of the teeth, and the inner ends (neutral points). They are connected by an annular bus bar 3d. Each tooth is arranged in an annular shape and fixed by shrinkage or the like with a metal cylinder (not shown).

各バスバ3a、3b、3c、3dは、単線(線材)からなり、図1に示すように、各絶縁樹脂製ホルダー11に電気絶縁支持されて結合ユニット10となっている。また、各バスバ3a、3b、3cの円環状の両端は重ねられてティースから外側に引き出されて電源接続用端子6a、6b、6c(総称符号:6)が圧着により設けられている。各ホルダー11は、円環状の絶縁樹脂製スペーサ7に嵌められてその周囲等間隔に維持される。このスペーサ7には、各バスバ3a、3b、3cの引き出し端(電源接続用端子6)を支持する脚8がそのアーム8a(図2参照)をその孔9(図3参照)を介し嵌めて一体化される。   Each bus bar 3a, 3b, 3c, 3d is made of a single wire (wire), and is electrically insulated and supported by each insulating resin holder 11 as shown in FIG. Further, the annular ends of each of the bus bars 3a, 3b, 3c are overlapped and pulled out from the teeth, and power connection terminals 6a, 6b, 6c (generic symbol: 6) are provided by pressure bonding. Each holder 11 is fitted into an annular insulating resin spacer 7 and is maintained at equal intervals around it. The spacer 7 is fitted with a leg 8 for supporting the lead-out end (the power connection terminal 6) of each bus bar 3a, 3b, 3c with its arm 8a (see FIG. 2) through its hole 9 (see FIG. 3). Integrated.

ホルダー11には各バスバ3a、3b、3c、3dが嵌る溝12がその長さ方向に順々に設けられており、最内側のバスバ(中性点用バスバ)3dの溝12dは、全てが同一面に開口している。一方、電力供給用のバスバ3a、3b、3cの溝12a、12b、12c(総称符号:3)は、コイルの端末に接続される接続片13が通る(跨ぐ)ものは、原則、その接続片13の反対面に開口するが、接続片13が通らない(跨がない)ものはその接続片13の側に開口している。接続片13はホルダー11にその溝13aへの嵌め込みによって取付けられる。   The holder 11 is provided with grooves 12 for fitting the bus bars 3a, 3b, 3c, and 3d in order in the length direction, and the grooves 12d of the innermost bus bar (neutral point bus bar) 3d are all Open in the same plane. On the other hand, in the grooves 12a, 12b, 12c (general symbol: 3) of the bus bars 3a, 3b, 3c for supplying power, the connection piece 13 connected to the end of the coil passes (strands) in principle. Those that open on the opposite surface of 13 but do not pass through (do not straddle) the connecting piece 13 are open on the side of the connecting piece 13. The connection piece 13 is attached to the holder 11 by fitting into the groove 13a.

この実施例では、ステータが3相(U、V、W)のため、各ホルダー11は3種類の態様11a、11b、11cのものがあり、図2において、一のホルダー11aは、全ての溝12a、12b、12cが同一面(同図において上面)に開口しており、他のホルダー11bは、バスバ3b、3cが嵌る溝12b、12cが上面に開口し、バスバ3aが嵌る溝12aはその反対面(同図において下面)に開口しており、さらに他のホルダー11cは、バスバ3cが嵌る溝12cのみが上面に開口し、バスバ3a、3bが嵌る溝12a、12bはその反対面に開口している。最内側のバスバ3dの溝12dは全てのホルダー11の上面に開口している。ホルダー11の態様は、相の数に対応させる。   In this embodiment, since the stator has three phases (U, V, W), each holder 11 has three types of modes 11a, 11b, and 11c. In FIG. 2, one holder 11a has all the grooves. 12a, 12b, 12c are open on the same surface (upper surface in the figure), the other holder 11b has grooves 12b, 12c into which the bus bars 3b, 3c fit, and grooves 12a into which the bus bar 3a fits. The other holder 11c has an opening on the opposite surface (the lower surface in the figure), and only the groove 12c into which the bus bar 3c is fitted opens on the upper surface, and the grooves 12a and 12b into which the bus bars 3a and 3b fit are opened on the opposite surface. is doing. Grooves 12 d of the innermost bus bar 3 d are open on the upper surfaces of all the holders 11. The mode of the holder 11 corresponds to the number of phases.

このように、ホルダー11が3種類の態様11a、11b、11cのものとされることにより、例えば、図3に示すように、外側のバスバ3aに溝12a、12b、12cが全て同一面に開口しているホルダー11aを、中間のバスバ3bに、2つの溝12b、12cが上面に開口し、他の溝12aはその反対面に開口するホルダー11bを、内側のバスバ3cに、1つの溝12cが上面に開口し、他の2つの溝12a、12bはその反対面に開口するホルダー11cを、それぞれ周方向の6等分位にその溝12a、12b、12cに嵌め込むことにより取付ける(図2と図3は各ホルダー11の上下が逆となっている)。これらのホルダー11付きバスバ3において、各バスバ3と接続片13の接触部は溶接等によって電気的に接続する。その接続は、バスバ3をホルダー11に嵌める前に行う。
また、最内側のバスバ3dには周方向の等分位にコイルの中性点(内側端)に接続される接続片13を溶接・圧接・ロウ付け等の周知の手段によって取付ける。
Thus, by making the holder 11 have three types of modes 11a, 11b, and 11c, for example, as shown in FIG. 3, the grooves 12a, 12b, and 12c are all opened on the same surface in the outer bus bar 3a. The holder 11a is opened on the intermediate bus bar 3b, the two grooves 12b and 12c are opened on the upper surface, and the other groove 12a is opened on the opposite surface. The holder 11b is opened on the inner bus bar 3c and the groove 12c is formed on the inner bus bar 3c. Is attached to the other two grooves 12a, 12b by fitting the holders 11c, which are opened on the opposite surfaces thereof, into the grooves 12a, 12b, 12c in the circumferential direction in six equal parts (FIG. 2). In FIG. 3, the top and bottom of each holder 11 are reversed. In these bus bars 3 with holders 11, the contact portions between the bus bars 3 and the connecting pieces 13 are electrically connected by welding or the like. The connection is made before the bus bar 3 is fitted into the holder 11.
Further, the connecting piece 13 connected to the neutral point (inner end) of the coil is attached to the innermost bus bar 3d in a circumferential equivalent manner by a known means such as welding, pressure welding, or brazing.

この各ホルダー11a、11b、11cを取付けた各バスバ3a、3b、3c、接続片13付最内側のバスバ3d及びスペーサ7を図3に示す位置関係となるように頭に入れ、例えば、外側バスバ3aと中間バスバ3bを、その両者のホルダー11a、11bの各溝12a、12bに嵌めることによって一体とする。
つぎに、その両バスバ3a、3bに内側のバスバ3cを、同様に、その3者のホルダー11a、11b、11cの各溝12a、12b、12cに嵌めることによって一体とする。
The bus bars 3a, 3b, and 3c to which the holders 11a, 11b, and 11c are attached, the innermost bus bar 3d with the connecting piece 13 and the spacer 7 are put in the head so as to have the positional relationship shown in FIG. 3a and the intermediate bus bar 3b are integrated by fitting them into the grooves 12a and 12b of both holders 11a and 11b.
Next, the inner bus bar 3c is integrated with the two bus bars 3a, 3b by fitting them into the grooves 12a, 12b, 12c of the three holders 11a, 11b, 11c.

さらに、その一体となった各バスバ3に、その各ホルダー11の溝12dに最内側のバスバ3dを嵌めることにより一体とするとともに、スペーサ7を各ホルダー11に嵌め、各バスバ3の引き出し端(電源接続用端子6)を支持する脚8をそのアーム8aをスペーサ7にその孔9を介し嵌めて一体化して、図1に示す結合ユニット10を得る。スペーサ7に各ホルダー11が嵌まることにより、各コイル各相の相対固定位置が決められる。   Further, the inner bus bar 3d is fitted into the integrated bus bar 3 in the groove 12d of each holder 11, and the spacer 7 is fitted into each holder 11, and the drawing end ( The legs 8 supporting the power connection terminals 6) are integrated by fitting their arms 8a to the spacers 7 through the holes 9, thereby obtaining the coupling unit 10 shown in FIG. By fitting each holder 11 to the spacer 7, the relative fixing position of each phase of each coil is determined.

この各バスバ3及びスペーサ7を一体化する順序は、上記のものに限らず、図3の態様の配置になるように、各バスバ3、スペーサ7を頭の中に浮かべて、適宜に相互に嵌め合えば、図1に示す結合ユニット10を得ることができる。   The order in which the bus bars 3 and the spacers 7 are integrated is not limited to the above, and the bus bars 3 and the spacers 7 are floated in the head so as to be arranged as shown in FIG. If it fits, the coupling unit 10 shown in FIG. 1 can be obtained.

この結合ユニット10でもって、各コイルを接続するには、従来と同様に、この結合ユニット10をティースにセットし、各コイルの端末を接続片13の端に周知の端子金具等を介して電気接続する(図4参照)。
この後、必要に応じて樹脂モールド等によってティースと結合ユニット10を一体化して、回転電機のステータを得る。
In order to connect the coils with the coupling unit 10, the coupling unit 10 is set on the teeth and the terminals of the coils are electrically connected to the end of the connection piece 13 via a known terminal fitting or the like, as in the past. Connect (see FIG. 4).
Thereafter, if necessary, the teeth and the coupling unit 10 are integrated by a resin mold or the like to obtain a stator of the rotating electrical machine.

接続片13とコイル端末2a、2bとの接続は、端子金具等による手段に限らず、例えば、TIG溶接、レーザ溶接などによって行なうことができ、また、接続片13とバスバ3との接続には、例えば、ヒュージング、圧接、圧着などを採用できる。このとき、図4に示すように、接続片13の端13e、13fは、U字状に曲げたり、対の挟持片からなる態様にして、そのU字状内又は挟持片の間にコイル端末2a、2bを挿入して、カシメ、圧着、溶接等して接続することもできる。   The connection between the connection piece 13 and the coil terminals 2a and 2b is not limited to means using terminal fittings, but can be performed, for example, by TIG welding, laser welding, or the like. For example, fusing, pressure welding, and pressure bonding can be employed. At this time, as shown in FIG. 4, the ends 13e and 13f of the connection piece 13 are bent into a U shape or are formed of a pair of holding pieces, and the coil terminal is placed in the U shape or between the holding pieces. 2a and 2b can be inserted and connected by caulking, crimping, welding, or the like.

この結合ユニット10は、必要に応じて絶縁樹脂モールドにより全体を被覆したものとすることができる。また、結合ユニット10は、上記実施例において、その表裏を逆にしてティースに一体化することもできる。さらに、バスバ3a、3b、3cのホルダーとバスバ3dのホルダーは別物とすることもできる。   The coupling unit 10 may be entirely covered with an insulating resin mold as necessary. Further, in the above embodiment, the coupling unit 10 can be integrated with the teeth with its front and back reversed. Further, the bus bar 3a, 3b, 3c holder and the bus bar 3d holder may be different.

一実施例の斜視図Perspective view of one embodiment 図1の要部拡大図1 is an enlarged view of the main part of FIG. 同実施例の組み立て作用図Assembly operation diagram of the embodiment 他の実施例の要部斜視図The principal part perspective view of another Example

符号の説明Explanation of symbols

2a コイル外側端
2b コイル内側端
3、3a、3b、3c、3d バスバ
5 端子金具
6、6a、6b、6c 電源接続用端子
10 バスバの結合ユニット
11、11a、11b、11c ホルダー
12、12a、12b、12c、12d バスバの嵌合溝
13 接続片
2a Coil outer end 2b Coil inner end 3, 3a, 3b, 3c, 3d Bus bar 5 Terminal fittings 6, 6a, 6b, 6c Power connection terminal 10 Bus bar coupling unit 11, 11a, 11b, 11c Holder 12, 12a, 12b 12c, 12d Bus bar fitting groove 13 Connection piece

Claims (5)

円環状のティースにコイルが各相毎に巻回され、その各コイルを各相毎に、前記ティースの円環状に沿う同一心の環状バスバ3a、3b、3cにより接続し、その各相のバスバ3a、3b、3cをホルダー11によりその全周に亘ってそれぞれ離した回転電機のステータに使用する前記バスバの結合ユニットであって、
上記各コイルが各相毎に接続される上記ティースの円環状に沿う同一心の環状バスバ3a、3b、3cと、その各相のバスバ3a、3b、3cをその全周に亘ってそれぞれ離すホルダー11と、前記各コイルを各相毎に前記各バスバ3a、3b、3cに接続する接続片13とから成り、
上記接続片13は、各バスバ3a、3b、3cに接続されてそのバスバの側方に導出されて上記各コイルに接続されるものであり、
上記ホルダー11は、長片状として絶縁材料から成って、上記各接続片13の各コイルとの接続部位毎にそれぞれ別々にその各バスバ3a、3b、3cに交差するように設けられ、
その各ホルダー11には、各バスバ3a、3b、3cの嵌る溝12がそのホルダー11の長さ方向に順々に形成され、その各ホルダー11の溝12は、上記接続片13が通るものはその接続片13の反対面に開口することを特徴とする回転電機のステータ用バスバ結合ユニット。
Coils are wound around the annular teeth for each phase, and each coil is connected to each phase by concentric annular bus bars 3a, 3b, 3c along the teeth ring. 3a, 3b, 3c is a bus bar coupling unit used for a stator of a rotating electrical machine separated by a holder 11 over its entire circumference,
Concentric annular bus bars 3a, 3b, 3c along the annular shape of the teeth to which the coils are connected for each phase, and holders for separating the bus bars 3a, 3b, 3c of the respective phases over the entire circumference thereof 11 and connection pieces 13 for connecting the coils to the bus bars 3a, 3b, 3c for each phase,
The connecting piece 13 is connected to each bus bar 3a, 3b, 3c, is led out to the side of the bus bar, and is connected to each coil.
The holder 11 is made of an insulating material in the form of a long piece, and is provided so as to cross the bus bars 3a, 3b, 3c separately for each connection portion with each coil of each connection piece 13,
In each of the holders 11, grooves 12 into which the bus bars 3a, 3b, 3c are fitted are formed in order in the length direction of the holder 11, and the grooves 12 of the holders 11 pass through the connection piece 13. A bus bar coupling unit for a stator of a rotating electrical machine, characterized in that it opens on the opposite surface of the connecting piece 13.
上記各ホルダー11の溝12は、上記コイルに接続された接続片13が通らないものはその接続片13の側に開口す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用バスバ結合ユニット。   2. The stator bus bar coupling of a rotating electrical machine according to claim 1, wherein the groove of each holder 11 is opened to the side of the connecting piece 13 where the connecting piece 13 connected to the coil does not pass. unit. 上記各ホルダー11には上記バスバ用溝12とは異なるそのホルダーの長さ方向の溝13aが形成され、その溝13aに上記接続片13が嵌っていることを特徴とする請求項1又は2に記載の回転電機のステータ用バスバ結合ユニット。   3. Each holder 11 is formed with a groove 13a in the length direction of the holder different from the bus bar groove 12, and the connecting piece 13 is fitted in the groove 13a. A bus bar coupling unit for a stator of a rotating electric machine as described. 上記各バスバ3a、3b、3cが線材からなり、その線材の端を上記ティースから外側に引き出して電源接続用端子を設けたことを特徴とする請求項1乃至3のいずれかに記載の回転電機のステータ用バスバ結合ユニット。   4. The rotating electrical machine according to claim 1, wherein each of the bus bars 3a, 3b, 3c is made of a wire, and an end of the wire is drawn out from the tooth to provide a power connection terminal. Busbar coupling unit for stator. 請求項1乃至4の何れかに記載の回転電機のステータ用バスバ結合ユニットの製造方法であって、各バスバ3a、3b、3cに上記各接続片13をそれぞれ接続し、その各バスバ3a、3b、3cの前記接続片13の各接続部位に、上記ホルダー11をその溝12に前記バスバ3を嵌めることによりそれぞれ取付け、その各ホルダー11付の各バスバ3a、3b、3cを各ホルダー11の対応する溝12にそれぞれ嵌め込んでバスバ結合ユニット10を製造することを特徴とする回転電機のステータ用バスバ結合ユニットの製造方法。   5. A method of manufacturing a stator bus bar coupling unit for a rotating electrical machine according to claim 1, wherein the connection pieces 13 are connected to the bus bars 3a, 3b, 3c, respectively, and the bus bars 3a, 3b. 3c is attached to each connection portion of the connection piece 13 by fitting the bus bar 3 in the groove 12, and each bus bar 3a, 3b, 3c with the holder 11 is associated with each holder 11. A method for manufacturing a bus bar coupling unit for a stator of a rotating electrical machine, wherein the bus bar coupling unit 10 is manufactured by being fitted in a groove 12 to be fixed.
JP2005327285A 2005-11-11 2005-11-11 Bus bar coupling unit for stator of rotating electrical machine Expired - Fee Related JP4816017B2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2005327285A JP4816017B2 (en) 2005-11-11 2005-11-11 Bus bar coupling unit for stator of rotating electrical machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2005327285A JP4816017B2 (en) 2005-11-11 2005-11-11 Bus bar coupling unit for stator of rotating electrical machine

Publications (2)

Publication Number Publication Date
JP2007135339A true JP2007135339A (en) 2007-05-31
JP4816017B2 JP4816017B2 (en) 2011-11-16

Family

ID=38156554

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2005327285A Expired - Fee Related JP4816017B2 (en) 2005-11-11 2005-11-11 Bus bar coupling unit for stator of rotating electrical machine

Country Status (1)

Country Link
JP (1) JP4816017B2 (en)

Cited By (12)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7518853B2 (en) * 2005-10-05 2009-04-14 Yazaki Corporation Electric power distribution device
CN102195382A (en) * 2010-03-08 2011-09-21 现代自动车株式会社 Terminal assembly for motor of hybrid vehicle
US8120218B2 (en) 2008-04-15 2012-02-21 Asmo Co., Ltd. Stator, motor, and method of manufacturing stator
JP2013201896A (en) * 2007-08-17 2013-10-03 Yaskawa Electric Corp Stator and rotary electric machine using the same
JP2013220005A (en) * 2012-03-12 2013-10-24 Hitachi Cable Ltd Motor and concentrated power distribution member
JP2014165999A (en) * 2013-02-22 2014-09-08 Mitsubishi Heavy Ind Ltd Bus ring
KR20150010796A (en) * 2012-05-24 2015-01-28 브로제 파르초이크타일레 게엠베하 운트 코. 카게, 뷔르츠부르크 Stator system for an electric motor
JPWO2013187501A1 (en) * 2012-06-15 2016-02-08 武延 本郷 Coiled member and coil device
JP2017225284A (en) * 2016-06-17 2017-12-21 矢崎総業株式会社 Power supply ring
WO2018148651A1 (en) * 2017-02-13 2018-08-16 Milwaukee Electric Tool Corporation Brushless direct current motor for power tools
JP2018160996A (en) * 2017-03-23 2018-10-11 本田技研工業株式会社 Feeding body of rotary electric machine
USD960086S1 (en) 2017-07-25 2022-08-09 Milwaukee Electric Tool Corporation Battery pack

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1118345A (en) * 1997-06-27 1999-01-22 Yaskawa Electric Corp Stator of rotating electric machine
JP2002154133A (en) * 2001-09-14 2002-05-28 Hitachi Cable Ltd Manufacturing method of injection molded terminal strip
JP2002300745A (en) * 2001-03-30 2002-10-11 Fuji Electric Co Ltd Wire connection device for stator coil of rotary electric machine
JP2004320986A (en) * 2003-04-17 2004-11-11 Minebea Co Ltd Stator
JP2005160137A (en) * 2003-11-20 2005-06-16 Sumitomo Wiring Syst Ltd Concentrated power distributing member for motor

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH1118345A (en) * 1997-06-27 1999-01-22 Yaskawa Electric Corp Stator of rotating electric machine
JP2002300745A (en) * 2001-03-30 2002-10-11 Fuji Electric Co Ltd Wire connection device for stator coil of rotary electric machine
JP2002154133A (en) * 2001-09-14 2002-05-28 Hitachi Cable Ltd Manufacturing method of injection molded terminal strip
JP2004320986A (en) * 2003-04-17 2004-11-11 Minebea Co Ltd Stator
JP2005160137A (en) * 2003-11-20 2005-06-16 Sumitomo Wiring Syst Ltd Concentrated power distributing member for motor

Cited By (25)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7518853B2 (en) * 2005-10-05 2009-04-14 Yazaki Corporation Electric power distribution device
JP2013201896A (en) * 2007-08-17 2013-10-03 Yaskawa Electric Corp Stator and rotary electric machine using the same
US8120218B2 (en) 2008-04-15 2012-02-21 Asmo Co., Ltd. Stator, motor, and method of manufacturing stator
CN102195382A (en) * 2010-03-08 2011-09-21 现代自动车株式会社 Terminal assembly for motor of hybrid vehicle
KR101163475B1 (en) * 2010-03-08 2012-07-18 현대자동차주식회사 Terminal assembly for motor of hybrid vehicle
US8373321B2 (en) 2010-03-08 2013-02-12 Hyundai Motor Company Terminal assembly for motor of hybrid vehicle
US8922079B2 (en) 2012-03-12 2014-12-30 Hitachi Metals Ltd. Electric motor and centralized power distribution member
JP2013220005A (en) * 2012-03-12 2013-10-24 Hitachi Cable Ltd Motor and concentrated power distribution member
KR101687157B1 (en) * 2012-05-24 2016-12-19 브로제 파르초이크타일레 게엠베하 운트 코. 카게, 뷔르츠부르크 Stator system for an electric motor
KR20150010796A (en) * 2012-05-24 2015-01-28 브로제 파르초이크타일레 게엠베하 운트 코. 카게, 뷔르츠부르크 Stator system for an electric motor
CN104335457A (en) * 2012-05-24 2015-02-04 博泽沃尔兹堡汽车零部件有限公司 Stator system for an electric motor
US9787155B2 (en) 2012-05-24 2017-10-10 Brose Fahrzeugteile Gmbh & Co. Kommanditgesellschaft Stator system for an electric motor
JPWO2013187501A1 (en) * 2012-06-15 2016-02-08 武延 本郷 Coiled member and coil device
JP2014165999A (en) * 2013-02-22 2014-09-08 Mitsubishi Heavy Ind Ltd Bus ring
JP2017225284A (en) * 2016-06-17 2017-12-21 矢崎総業株式会社 Power supply ring
DE102017209938A1 (en) 2016-06-17 2017-12-21 Yazaki Corporation Stromzuführring
US11114927B2 (en) 2017-02-13 2021-09-07 Milwaukee Electric Tool Corporation Brushless direct current motor for power tools
KR20190002364U (en) * 2017-02-13 2019-09-24 밀워키 일렉트릭 툴 코포레이션 Brushless DC Motors for Power Tools
US10848042B2 (en) 2017-02-13 2020-11-24 Milwaukee Electric Tool Corporation Brushless direct current motor for power tools
KR200493636Y1 (en) * 2017-02-13 2021-05-06 밀워키 일렉트릭 툴 코포레이션 Brushless DC motor for power tools
WO2018148651A1 (en) * 2017-02-13 2018-08-16 Milwaukee Electric Tool Corporation Brushless direct current motor for power tools
US11881750B2 (en) 2017-02-13 2024-01-23 Milwaukee Electric Tool Corporation Brushless direct current motor for power tools
JP2018160996A (en) * 2017-03-23 2018-10-11 本田技研工業株式会社 Feeding body of rotary electric machine
USD960086S1 (en) 2017-07-25 2022-08-09 Milwaukee Electric Tool Corporation Battery pack
US11462794B2 (en) 2017-07-25 2022-10-04 Milwaukee Electric Tool Corporation High power battery-powered system

Also Published As

Publication number Publication date
JP4816017B2 (en) 2011-11-16

Similar Documents

Publication Publication Date Title
JP5652004B2 (en) Distribution structure parts and manufacturing method thereof
CN103190060B (en) Busbar, motor and manufacture the process of busbar and motor
JP5282527B2 (en) Motor coil wiring components
US9318814B2 (en) Wire connection member, wire connection structure and annular power distribution member
US10090723B2 (en) Stator and manufacturing method of stator
EP2369722A2 (en) Stator for rotary electrical machine
JP5989496B2 (en) Bus ring for stator of rotating electrical machine
JP5991261B2 (en) Manufacturing method of electric motor
US9325214B2 (en) Electric power collection and distribution ring and electric motor
JP2010110144A (en) Wiring component for motor coil
JP4816017B2 (en) Bus bar coupling unit for stator of rotating electrical machine
JP6232449B2 (en) Rotating electric machine
JP2011120413A (en) Motor
JP4077673B2 (en) Rotating electric machine
JP2015149863A (en) Stator of rotary electric machine
JP4429757B2 (en) Electric motor bus ring structure
JP2007174869A (en) Insulator, stator assembly, segment stator, and stator for dynamo-electric machine
US10938256B2 (en) Motor stator and manufacturing method thereof
US11239719B2 (en) Transducer for converting between electrical energy and mechanical energy
JP2006180615A (en) Stator of rotating electric machine
JP6080964B2 (en) Rotating electric machine stator
JP4493652B2 (en) Motor stator
JP2007135340A (en) Stator of rotary electric machine
JP4650284B2 (en) Lead frame and power distribution component using the same
JP2006174547A (en) Stator of dynamo-electric machine

Legal Events

Date Code Title Description
A621 Written request for application examination

Free format text: JAPANESE INTERMEDIATE CODE: A621

Effective date: 20081104

A977 Report on retrieval

Free format text: JAPANESE INTERMEDIATE CODE: A971007

Effective date: 20110511

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20110517

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20110712

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: 20110802

A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20110815

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140909

Year of fee payment: 3

R150 Certificate of patent or registration of utility model

Ref document number: 4816017

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

Free format text: JAPANESE INTERMEDIATE CODE: R150

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140909

Year of fee payment: 3

S111 Request for change of ownership or part of ownership

Free format text: JAPANESE INTERMEDIATE CODE: R313114

R350 Written notification of registration of transfer

Free format text: JAPANESE INTERMEDIATE CODE: R350

FPAY Renewal fee payment (event date is renewal date of database)

Free format text: PAYMENT UNTIL: 20140909

Year of fee payment: 3

R250 Receipt of annual fees

Free format text: JAPANESE INTERMEDIATE CODE: R250

LAPS Cancellation because of no payment of annual fees