JP6398400B2 - Electric motor with integrated power converter - Google Patents

Electric motor with integrated power converter Download PDF

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JP6398400B2
JP6398400B2 JP2014142102A JP2014142102A JP6398400B2 JP 6398400 B2 JP6398400 B2 JP 6398400B2 JP 2014142102 A JP2014142102 A JP 2014142102A JP 2014142102 A JP2014142102 A JP 2014142102A JP 6398400 B2 JP6398400 B2 JP 6398400B2
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power converter
motor
electric motor
side housing
electric
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JP2016019399A (en
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山本 勉
勉 山本
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Fuji Electric Co Ltd
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Fuji Electric Co Ltd
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本発明は、電動機に電力変換装置が一体的に取付けられた電力変換装置一体型電動機に関し、例えば電力変換装置が電動機の回転軸の軸線方向に配置されるような場合に好適なものである。   The present invention relates to a power converter integrated motor in which a power converter is integrally attached to an electric motor, and is suitable, for example, when the power converter is arranged in the axial direction of a rotating shaft of the motor.

種々の機器の駆動源として用いられる電動機として、電力変換装置を一体的に備えた電動変換装置一体型電動機が知られている。このような電力変換装置一体型電動機としては、例えば下記特許文献1に記載されるものがある。この電力変換装置一体型電動機は、電動機を収納する電動機側筐体と電力変換装置を収納する電力変換装置側筐体が連結され、両者の連結部分に、電動機で回転される内部ファンを配置している。この内部ファンにより、外気が電力変換装置側筐体の内部に吸引され、電力変換装置側筐体の内部空間を通過して内部ファンに至り、内部ファンの外周壁から外部に排出される。これにより、電力変換装置側筐体の内部空間内の電力変換装置が冷却される。   2. Description of the Related Art As an electric motor used as a drive source for various devices, an electric conversion device-integrated electric motor integrally provided with a power conversion device is known. As such an electric power converter integrated motor, there is one described in Patent Document 1 below, for example. In this electric power converter integrated motor, an electric motor housing that houses the electric motor and an electric power converter housing that houses the electric power converter are connected to each other, and an internal fan that is rotated by the electric motor is arranged at the connecting portion between them. ing. By this internal fan, outside air is sucked into the inside of the power converter side housing, passes through the internal space of the power converter side housing, reaches the internal fan, and is discharged to the outside from the outer peripheral wall of the internal fan. Thereby, the power converter in the internal space of the power converter side housing is cooled.

特開2009−124829号公報JP 2009-124829 A

ところで、特許文献1では、内部ファンは電力変換装置側筐体を仕切る仕切り板と電動機側筐体を密閉する密閉板の間の空間に配置されている。しかしながら、電力変換装置側筐体の内部に外気を吸引するための開口部や、電力変換装置側筐体の内部空間を通過した空気を内部ファン側に吸引するための開口部が設けられており、電力変換装置側筐体は密閉されていない。電力変換装置側筐体が密閉されていないと、内部の配線基板の防塵・防水性を画することができない。一方、電力変換装置側筐体を密閉することは容易であるが、そのようにすると、内部ファンを設けても外気は電力変換装置側筐体の内部に吸引されないし、電力変換装置側筐体の内部空間の空気も外部に排出されないので、電力変換装置の冷却効率が低下する。
本発明は、上記のような問題点に着目してなされたものであり、電力変換装置側筐体を密閉しながら電力変換装置の冷却効率を向上することが可能な電力変換装置一体型電動機を提供することを目的とするものである。
By the way, in patent document 1, the internal fan is arrange | positioned in the space between the partition plate which partitions off a power converter device side housing | casing, and the sealing board which seals an electric motor side housing | casing. However, an opening for sucking outside air inside the power conversion device side housing and an opening for sucking air that has passed through the internal space of the power conversion device side housing to the internal fan side are provided. The power converter side housing is not sealed. If the casing of the power conversion device is not sealed, the internal wiring board cannot be protected against dust and water. On the other hand, it is easy to hermetically seal the power conversion device side housing. However, by doing so, even if an internal fan is provided, outside air is not sucked into the power conversion device side housing, and the power conversion device side housing Since the air in the interior space is not discharged to the outside, the cooling efficiency of the power conversion device is lowered.
The present invention has been made paying attention to the above-described problems, and provides a power converter integrated motor that can improve the cooling efficiency of the power converter while sealing the power converter side housing. It is intended to provide.

上記課題を達成するために、本発明の一態様によれば、電動機と、前記電動機への電力を変換する電力変換装置とが一体的に配置された電力変換装置一体型電動機であって、前記電動機を収納する電動機側筐体と、前記電動機側筐体に連結され、前記電力変換装置を収納する電力変換装置側筐体と、前記電動機側筐体及び前記電力変換装置側筐体を連結する連結部を有し、前記連結部に形成され且つ前記電動機側筐体及び前記電力変換装置側筐体の夫々を密閉する密閉板が二重構造となっている二重密閉板構造と、前記二重構造の前記密閉板の間で前記連結部に形成され、前記電動機の回転軸の径方向に対向して前記連結部の外部及び前記二重構造の前記密閉板の間を連通する2個一対の連通孔と、を備え、前記連結部は、2個一対の前記連通孔の一方の側から他方の側にかけて発生する自然対流の流れに接触可能となるように前記電動機の回転軸の径方向に沿って形成された複数の内部フィンを有する電力変換装置一体型電動機が提供される。 To achieve the above object, according to one aspect of the present invention, there is provided a power converter integrated motor in which an electric motor and a power converter that converts electric power to the electric motor are integrally disposed, An electric motor housing that houses an electric motor, an electric power converter housing that is connected to the electric motor housing and houses the electric power converter, and the electric motor housing and the electric power converter housing are connected to each other. a connecting portion, and the double sealing plate structure sealing plate for sealing the each of the formed in the connecting portion and the motor-side casing and said power conversion apparatus housing has a double structure, the two A pair of communication holes formed in the connecting portion between the sealing plates of a heavy structure and communicating between the outside of the connecting portion and the sealing plate of the double structure facing the radial direction of the rotating shaft of the electric motor; The connecting portion includes two pairs of the communication portions. Power converter integrated motor having one plurality of internal fins formed along the radial direction of the motor rotation shaft so as to be in contact with the flow of natural convection generated to the other side from the side of the hole Provided.

本発明の電力変換装置一体型電動機によれば、二重密閉板構造の二重構造の密閉板によって電力変換装置側筐体及び電動機側筐体の夫々を密閉すると共に、連通孔を上下方向に位置することで生じる自然対流が二重構造の密閉板間に生じ、電力変換装置の冷却効率が向上する。   According to the electric power converter integrated motor of the present invention, the power converter side housing and the electric motor side housing are sealed by the double-sealed sealing plate having a double sealed plate structure, and the communication hole is vertically arranged. The natural convection which arises by being located arises between the sealing plates of a double structure, and the cooling efficiency of a power converter device improves.

本発明の電力変換装置一体型電動機の第1実施形態を示す縦断面図である。It is a longitudinal section showing a 1st embodiment of a power converter integrated motor of the present invention. 図1の筐体連結部材兼蓋部材の縦断面図である。It is a longitudinal cross-sectional view of the housing connection member / lid member of FIG. 本発明の電力変換装置一体型電動機の第2実施形態を示す縦断面図である。It is a longitudinal cross-sectional view which shows 2nd Embodiment of the electric power converter integrated motor of this invention. 図3の筐体連結部材兼蓋部材の横断面図である。FIG. 4 is a cross-sectional view of the casing connecting member / lid member of FIG. 3. 本発明の電力変換装置一体型電動機の第3実施形態を示す筐体連結部材兼蓋部材の横断面図である。It is a cross-sectional view of the housing connection member / lid member showing the third embodiment of the electric power converter integrated motor of the present invention. 本発明の電力変換装置一体型電動機の比較例を示す縦断面図である。It is a longitudinal cross-sectional view which shows the comparative example of the electric power converter integrated motor of this invention. 図6の筐体連結部材兼蓋部材の横断面図である。FIG. 7 is a cross-sectional view of the casing connecting member / lid member of FIG. 6.

以下、本発明の電力変換装置一体型電動機の第1実施形態について、図面を引用して説明する。第1実施形態の電力変換装置一体型電動機の縦断面を示す図1では、図の左側に電力変換装置1が、図の右側に電動機2が配置されており、それらは一連に連結されている。このうち、電力変換装置1は電力変換装置側筐体3に収納され、電動機2は電動機側筐体4に収納され、電力変換装置側筐体3と電動機側筐体4とは筐体連結部材兼蓋部材5を介して連結されている。これらの筐体3、4や蓋部材5は、凡そ円筒形であり、熱伝導性に優れた金属材料、例えばアルミダイキャストで形成されている。   Hereinafter, a first embodiment of an electric motor integrated with a power converter according to the present invention will be described with reference to the drawings. In FIG. 1 showing a longitudinal section of the electric power converter integrated motor according to the first embodiment, the electric power converter 1 is arranged on the left side of the figure, and the electric motor 2 is arranged on the right side of the figure, and they are connected in series. . Among these, the power conversion device 1 is housed in the power conversion device side housing 3, the motor 2 is housed in the motor side housing 4, and the power conversion device side housing 3 and the motor side housing 4 are housing connection members. It is connected via the cum lid member 5. The casings 3 and 4 and the lid member 5 are approximately cylindrical and are formed of a metal material having excellent thermal conductivity, for example, aluminum die casting.

この電力変換装置一体型電動機では、電動機2の回転軸6が図の左右方向に向けて配置されている。電動機側筐体4は、円板状の底板部4aが図1の右方に配置される有底円筒体である。また、筐体連結部材兼蓋部材5は、電動機側筐体4と同じ外径の円筒体であり、その軸方向中央部には二枚の密閉板5i、5mが二重構造に形成されている。この二重の密閉板5i、5mは、筐体連結部材兼蓋部材5の内部を軸方向に密閉するように二枚平行に配置され、図1の左側が電力変換装置側密閉板5i、図1の右側が電動機側密閉板5mとなっている。電動機側筐体4は、図1の左方端部の開口部が筐体連結部材兼蓋部材5の電動機側密閉板5mで覆われ、これにより電動機側筐体4が密閉されている。回転軸6は、電動機側筐体4の底板部4aの中央部及び筐体連結部材兼蓋部材5の蓋部5aの中央部に圧入された軸受7で回転自在に支持されている。この回転軸6は、図1の右方端部、即ち軸方向一端部が電動機側筐体4の底板部4aを貫通して外部に突出しており、ここから出力の取出しが行われる。   In this electric power converter integrated motor, the rotating shaft 6 of the electric motor 2 is arranged in the left-right direction in the figure. The motor-side housing 4 is a bottomed cylindrical body in which a disk-like bottom plate portion 4a is disposed on the right side of FIG. The casing connecting member / lid member 5 is a cylindrical body having the same outer diameter as that of the motor-side casing 4, and two sealing plates 5 i and 5 m are formed in a double structure at the center in the axial direction. Yes. The double sealing plates 5i, 5m are arranged in parallel so as to seal the inside of the housing connecting member / lid member 5 in the axial direction, and the left side of FIG. 1 is the power converter side sealing plate 5i, FIG. The right side of 1 is the motor side sealing plate 5m. The opening at the left end of FIG. 1 is covered with the motor-side sealing plate 5m of the casing connecting member / lid member 5 so that the motor-side casing 4 is sealed. The rotating shaft 6 is rotatably supported by a bearing 7 press-fitted into the central portion of the bottom plate portion 4 a of the motor-side housing 4 and the central portion of the lid portion 5 a of the housing connecting member / lid member 5. The rotary shaft 6 has a right end in FIG. 1, that is, one end in the axial direction, protrudes outside through the bottom plate portion 4a of the motor-side casing 4, and outputs are taken out therefrom.

電動機側筐体4と筐体連結部材兼蓋部材5とで囲まれた電動機側内部空間では、回転軸6の外周にロータコア8が一体的に形成され、ロータコア8の径方向外側には、電動機側筐体4に固定されるステータコア9が形成されている。これにより、電動機側筐体4内には電動機2が構成され、例えばステータコア9に電力を供給することで回転軸6が回転される。また、例えばステータコア9への供給電力を調整することにより、回転軸6の回転状態を調整することが可能となる。なお、電動機側筐体4の周壁部4bの外側には、放熱用のフィン17が多数形成されている。   In the motor-side internal space surrounded by the motor-side casing 4 and the casing connecting member / lid member 5, the rotor core 8 is integrally formed on the outer periphery of the rotating shaft 6. A stator core 9 fixed to the side housing 4 is formed. Thereby, the electric motor 2 is comprised in the electric motor side housing | casing 4, and the rotating shaft 6 is rotated by supplying electric power to the stator core 9, for example. Further, for example, by adjusting the power supplied to the stator core 9, the rotation state of the rotating shaft 6 can be adjusted. A large number of heat dissipating fins 17 are formed on the outer side of the peripheral wall 4b of the motor-side casing 4.

一方、電力変換装置側筐体3は、円板状の底板部3aが図1の左方に配置される有底円筒体であり、図示右方端部の開口部が筐体連結部材兼蓋部材5の電力変換装置側密閉板5iで覆われている。更に、電力変換装置側筐体3の周壁部3bと筐体連結部材兼蓋部材5の周壁部5bの間にはOリング10が介在され、これにより電力変換装置側筐体3が密閉されている。この電力変換装置側筐体3と筐体連結部材兼蓋部材5とで囲まれた電力変換装置側内部空間には、電力変換装置1としての中核をなすインバータモジュール11が収納されている。このインバータモジュール11は、例えば交流電圧を直流電圧に変換する電力変換部や、電動機の回転軸の回転状態を制御する制御部を備えている。制御部は、例えば電力変換部で変換された直流電圧のパルス幅変調などによってステータコア9に供給する電力を調整することで、電動機2の回転軸6の回転状態を制御する。   On the other hand, the power conversion device side housing 3 is a bottomed cylindrical body in which a disc-shaped bottom plate portion 3a is disposed on the left side of FIG. 1, and an opening at the right end in the drawing is a housing connecting member / lid. The member 5 is covered with a power converter side sealing plate 5i. Further, an O-ring 10 is interposed between the peripheral wall portion 3b of the power conversion device side housing 3 and the peripheral wall portion 5b of the housing connecting member / lid member 5, whereby the power conversion device side housing 3 is sealed. Yes. An inverter module 11 that forms the core of the power conversion device 1 is housed in the internal space on the power conversion device side surrounded by the power conversion device side housing 3 and the housing connecting member / lid member 5. The inverter module 11 includes, for example, a power conversion unit that converts AC voltage into DC voltage, and a control unit that controls the rotation state of the rotating shaft of the electric motor. The control unit controls the rotation state of the rotating shaft 6 of the electric motor 2 by adjusting the power supplied to the stator core 9 by, for example, pulse width modulation of the DC voltage converted by the power conversion unit.

このインバータモジュール11は、実装基板12上に形成されている。この実装基板12は、例えばガラスエポキシなどの樹脂からなる基板の表面に配線パターンが形成されたものである。この実装基板12は、電力変換装置側筐体3の内部に形成されている基板固定部13にビスなどの固定具14を介して固定されている。この実装基板12には、種々の電子部品が実装されているが、それらの電子部品の中には、電力変換部に必要なダイオード用半導体装置や電解コンデンサ、制御部に必要なパワー半導体装置なども含まれている。例えば電子部品の損失などによって発生する熱は、電力変換装置側筐体3の内部空間から電力変換装置側筐体3や電力変換装置側密閉板5iに伝熱される。なお、実装基板12は、表裏両面に配線パターンを形成するようにしても良い。また、2以上の実装基板12を組合せて用いることもできる。また、電力変換装置側筐体3の周壁部3b及び底板部3aの外側にも、放熱用のフィン17が多数形成されている。   The inverter module 11 is formed on the mounting substrate 12. The mounting substrate 12 is obtained by forming a wiring pattern on the surface of a substrate made of a resin such as glass epoxy. The mounting substrate 12 is fixed to a substrate fixing portion 13 formed inside the power conversion device side housing 3 via a fixing tool 14 such as a screw. Various electronic components are mounted on the mounting substrate 12. Among these electronic components, a semiconductor device for a diode necessary for a power conversion unit, an electrolytic capacitor, a power semiconductor device necessary for a control unit, and the like. Is also included. For example, heat generated due to loss of electronic components is transferred from the internal space of the power converter side housing 3 to the power converter side housing 3 and the power converter side sealing plate 5i. The mounting substrate 12 may be formed with wiring patterns on both the front and back surfaces. Also, two or more mounting boards 12 can be used in combination. A large number of heat radiation fins 17 are also formed on the outside of the peripheral wall portion 3b and the bottom plate portion 3a of the power conversion device side housing 3.

前述のように、電力変換装置側筐体3と電動機側筐体4の連結部を構成する筐体連結部材兼蓋部材5には、電力変換装置側密閉板5iと電動機側密閉板5mの二枚の密閉板が二重構造に形成され、二重密閉板構造を構成している。そして、二枚の密閉板5i、5mの間で、筐体連結部材兼蓋部材5の周壁部5には、筐体連結部材兼蓋部材5の外部と二重構造の密閉板5i、5mの間を連通する連通孔15が形成されている。図2は、筐体連結部材兼蓋部材5を連通孔15の部分で切断した縦断面図であるが、同図から明らかなように、筐体連結部材兼蓋部材5の外部と二重構造の密閉板5i、5mの間を連通する連通孔15は、電動機2の回転軸6の径方向に対向して2個一対で形成されている。従って、図1に示すように、この2個一対の連通孔15が上下になるように電力変換装置一体型電動機を配置することで、上下方向の自然対流が下側の連通孔15から二枚の密閉板5i、5mの間に流れ込み、更に上側の連通孔15から外部に流れ出る。この自然対流によって、二枚の密閉板5i、5mが冷却されるので、電力変換装置側筐体3の内部空間及び電動機側筐体4の内部空間が冷却される。   As described above, the casing connecting member / lid member 5 constituting the connecting portion between the power converter side casing 3 and the motor side casing 4 includes the power converter side sealing plate 5i and the motor side sealing plate 5m. A sheet of sealing plates is formed in a double structure, forming a double sealing plate structure. Between the two sealing plates 5i and 5m, the outer wall of the casing connecting member / lid member 5 and the double-layered sealing plates 5i, 5m A communication hole 15 that communicates with each other is formed. FIG. 2 is a longitudinal cross-sectional view of the casing connecting member / lid member 5 cut at the portion of the communication hole 15. As is apparent from FIG. The communication holes 15 communicating between the sealing plates 5i and 5m are formed in pairs so as to face the radial direction of the rotating shaft 6 of the electric motor 2. Therefore, as shown in FIG. 1, by arranging the electric power converter integrated motor so that the two pairs of communication holes 15 are arranged vertically, the natural convection in the vertical direction is generated from the lower communication hole 15 by two sheets. Flows between the sealing plates 5i and 5m, and flows out from the upper communication hole 15 to the outside. Since the two sealing plates 5i and 5m are cooled by this natural convection, the internal space of the power converter side housing 3 and the internal space of the motor side housing 4 are cooled.

図6は、例えば第1実施形態の比較例として、密閉板5aが一枚だけの電力変換装置一体型電動機の縦断面図であり、図7は、その筐体連結部材兼蓋部材5の縦断面図である。つまり、この比較例では、一枚の密閉板5aが、電力変換装置側筐体3の開口部を密閉する役割と電動機側筐体4の開口部を密閉する役割を担う。この比較例でも、一枚の密閉板5aで電力変換装置側筐体3も電動機側筐体4も密閉することができるが、両者の間には隙間がないので、密閉板5aを冷却することはできない。そのため、密閉板5aを介して、電力変換装置側筐体3の内部空間を冷却することも電動機側筐体4の内部空間を冷却することもできない。   FIG. 6 is a longitudinal sectional view of a power converter integrated motor having only one sealing plate 5a as a comparative example of the first embodiment, for example, and FIG. 7 is a longitudinal section of the casing connecting member / lid member 5 FIG. That is, in this comparative example, the single sealing plate 5 a plays a role of sealing the opening of the power conversion device side housing 3 and a role of sealing the opening of the motor side housing 4. Even in this comparative example, both the power converter side housing 3 and the motor side housing 4 can be sealed with a single sealing plate 5a, but there is no gap between them, so the sealing plate 5a must be cooled. I can't. For this reason, neither the internal space of the power converter side housing 3 nor the internal space of the motor side housing 4 can be cooled via the sealing plate 5a.

以上のように、第1実施形態の電力変換装置一体型電動機では、筐体連結部材及び蓋部材5に形成された二重構造の密閉板5i、5mによって電力変換装置側筐体3及び電動機側筐体4の夫々を密閉することができる。また、電動機2の回転軸6の径方向に対向する連通孔15を二重構造の密閉板5i、5mの間で筐体連結部材兼蓋部材5に形成したことにより、連通孔15を上下方向に位置することで生じる自然対流が二重構造の密閉板5i、5m間に生じ、その結果、電力変換装置側密閉板5i及び電動機側密閉板5mが冷却され、電力変換装置1の冷却効率が向上する。   As described above, in the electric power converter integrated motor according to the first embodiment, the electric power converter side casing 3 and the electric motor side are provided by the double-structured sealing plates 5i and 5m formed on the casing connecting member and the lid member 5. Each of the housings 4 can be sealed. Further, the communication hole 15 facing the radial direction of the rotating shaft 6 of the electric motor 2 is formed in the casing connecting member / lid member 5 between the double-structured sealing plates 5i and 5m, so that the communication hole 15 is formed in the vertical direction. The natural convection generated by being located between the two sealing plates 5i and 5m is cooled, and as a result, the power converter side sealing plate 5i and the motor side sealing plate 5m are cooled, and the cooling efficiency of the power converter 1 is improved. improves.

次に、本発明の電力変換装置一体型電動機の第2実施形態について図3、図4を用いて説明する。第2実施形態の電力変換装置一体型電動機は、第1実施形態の電力変換装置一体型電動機に類似しているので、同等の構成には同等の符号を付して、その詳細な説明を省略する。第2実施形態の電力変換装置一体型電動機の縦断面を示す図3では、電力変換装置側密閉板5iと電動機側密閉板5mの間に、放熱用の内部フィン16が多数形成されている。この内部フィン16は、図4に示すように、対をなす2つの連通孔15が形成されている電動機2の回転軸6の径方向に沿って形成されている。また、この内部フィン16は、電力変換装置側密閉板5iと電動機側密閉板5mを連結するように形成されている。つまり、電力変換装置側密閉板5iにも電動機側密閉板5mにも接合するように内部フィン16が形成されている。   Next, a second embodiment of the electric power converter integrated motor according to the present invention will be described with reference to FIGS. Since the electric power converter integrated motor according to the second embodiment is similar to the electric power converter integrated electric motor according to the first embodiment, the same components are denoted by the same reference numerals, and detailed description thereof is omitted. To do. In FIG. 3 showing a longitudinal section of the electric power converter integrated motor according to the second embodiment, a large number of internal fins 16 for heat dissipation are formed between the electric power converter side sealing plate 5i and the electric motor side sealing plate 5m. As shown in FIG. 4, the internal fins 16 are formed along the radial direction of the rotating shaft 6 of the electric motor 2 in which two communication holes 15 forming a pair are formed. The internal fins 16 are formed so as to connect the power converter side sealing plate 5i and the motor side sealing plate 5m. That is, the internal fins 16 are formed so as to be joined to the power converter side sealing plate 5i and the motor side sealing plate 5m.

この実施形態では、第1実施形態同様に、2個一対の連通孔15が上下になるように電力変換装置一体型電動機を配置することで、上下方向の自然対流が下側の連通孔15から二枚の密閉板5i、5mの間に流れ込み、更に上側の連通孔15から外部に流れ出る。このとき、放熱用の内部フィン16は、対をなす2つの連通孔15が形成されている電動機回転軸径方向に沿って形成されている、つまり自然対流の方向に沿って形成されているので、この自然対流によって、内部フィン16が冷却され、この内部フィン16に連結している二枚の密閉板5i、5mが冷却されるので、電力変換装置側筐体3の内部空間及び電動機側筐体4の内部空間がより効率よく冷却される。   In this embodiment, similarly to the first embodiment, the electric power converter integrated motor is arranged so that the two pairs of communication holes 15 are vertically arranged, so that the natural convection in the vertical direction is generated from the lower communication holes 15. It flows between the two sealing plates 5i and 5m, and flows out from the upper communication hole 15 to the outside. At this time, the heat dissipating internal fins 16 are formed along the radial direction of the motor rotating shaft in which the two communicating holes 15 forming a pair are formed, that is, formed along the direction of natural convection. By this natural convection, the internal fin 16 is cooled, and the two sealing plates 5i and 5m connected to the internal fin 16 are cooled, so that the internal space of the power conversion device side housing 3 and the motor side housing are cooled. The internal space of the body 4 is cooled more efficiently.

以上のように、第2実施形態の電力変換装置一体型電動機では、第1実施形態の効果に加えて、対向する連通孔15の一方の側から他方の側にかけて通風可能な内部フィン16を筐体連結部材兼蓋部材5に形成し、その内部フィン16が電力変換装置側密閉板5i及び電動機側密閉板5mの双方に接合していることにより、電力変換装置側筐体3の内部空間及び電動機側筐体4の内部空間がより効率よく冷却され、電力変換装置1の冷却効率がより一層向上する。   As described above, in the electric power converter integrated motor according to the second embodiment, in addition to the effects of the first embodiment, the internal fins 16 that can ventilate air from one side to the other side of the opposing communication hole 15 are provided. It is formed on the body connecting member / lid member 5, and the internal fins 16 are joined to both the power converter side sealing plate 5 i and the motor side sealing plate 5 m, so that the internal space of the power converter side housing 3 and The internal space of the motor side housing 4 is cooled more efficiently, and the cooling efficiency of the power conversion device 1 is further improved.

次に、本発明の電力変換装置一体型電動機の第3実施形態について図5を用いて説明する。第3実施形態の電力変換装置一体型電動機は、第2実施形態の電力変換装置一体型電動機に類似しているので、同等の構成には同等の符号を付して、その詳細な説明を省略する。第3実施形態の電力変換装置一体型電動機でも、第2実施形態と同様に、電力変換装置側密閉板5iと電動機側密閉板5mの間に、放熱用の内部フィン16が多数形成されている。この内部フィン16は、図5に示すように、対をなす2つの連通孔15を連絡するようにして、電力変換装置側密閉板5iにも電動機側密閉板5mにも接合して形成されている。   Next, a third embodiment of the electric power converter integrated motor according to the present invention will be described with reference to FIG. Since the electric power converter integrated motor of the third embodiment is similar to the electric power converter integrated electric motor of the second embodiment, the same components are denoted by the same reference numerals, and detailed description thereof is omitted. To do. Also in the electric power converter integrated motor of the third embodiment, a large number of internal fins 16 for heat dissipation are formed between the electric power converter side sealing plate 5i and the electric motor side sealing plate 5m, as in the second embodiment. . As shown in FIG. 5, the internal fins 16 are formed so as to be connected to the power communication device side sealing plate 5i and the motor side sealing plate 5m so as to communicate with the two communication holes 15 forming a pair. Yes.

そして、この実施形態では、それらの内部フィン16は、対向する2つの連通孔15の中間位置で電動機2の回転軸径方向外側に凸になるように湾曲されている。また、この内部フィン16は、電動機2の回転軸径方向内側に形成されるものほど曲率半径が大きい。従って、2個一対の連通孔15が上下になるように電力変換装置一体型電動機を配置することで、上下方向の自然対流が下側の連通孔15から二枚の密閉板5i、5mの間に流れ込み、内部フィン16の間を通って上側の連通孔15から外部に流れ出る。このとき、内部フィン16の中間部分が電動機2の回転軸径方向外側に凸になるように湾曲され且つ電動機2の回転軸径方向内側の内部フィン16ほど曲率半径を大きくしていることで、内部フィン16の間を通る空気によって電力変換装置側密閉板5i及び電動機側密閉板5mのより広い範囲が冷却されることになり、電力変換装置側筐体3の内部空間及び電動機側筐体4の内部空間がより効率よく冷却され、電力変換装置1の冷却効率が更により一層向上する。   In this embodiment, the internal fins 16 are curved so as to protrude outward in the rotational axis radial direction of the electric motor 2 at an intermediate position between the two communicating holes 15 facing each other. In addition, the curvature radius of the internal fin 16 is larger as it is formed on the inner side in the radial direction of the electric motor 2. Accordingly, by arranging the electric power converter integrated motor so that the two pairs of communication holes 15 are vertically arranged, the natural convection in the vertical direction is transferred from the lower communication hole 15 to the two sealing plates 5i, 5m. Flows through the internal fins 16 and flows out from the upper communication hole 15 to the outside. At this time, the inner fin 16 is curved so that the intermediate portion of the inner fin 16 protrudes outward in the rotational axis radial direction of the electric motor 2 and the curvature radius is increased toward the inner fin 16 in the inner radial direction of the electric motor 2. Air passing between the internal fins 16 cools a wider range of the power converter side sealing plate 5i and the motor side sealing plate 5m, so that the internal space of the power converter side housing 3 and the motor side housing 4 are cooled. The internal space is more efficiently cooled, and the cooling efficiency of the power conversion device 1 is further improved.

なお、各実施形態では、2個一対の連通孔15を一対のみ形成したものについて説明したが、連通孔15の形成数は二対以上であってもよい。
また、先の実施形態では、筐体連結部材兼蓋部材5によって本発明の二重密閉板構造を構成したが、本発明の二重密閉板構造の態様は、これに限定されるものではない。例えば、先の実施形態では、電力変換装置1を収納する電力変換装置側筐体3と電動機2を収納する電動機側筐体4とを別体とし、これらを筐体連結部材兼蓋部材5で連結する構成としたが、電動機側筐体と電力変換装置側筐体とが二重密閉板構造の連結部で連結された一体構造であってもよい。その場合、電動機側筐体の電力変換装置側端部を密閉する密閉板と電力変換装置側筐体の電動機側端部を密閉する密閉板とは、一体構造の筐体部材の連結部に予め形成しておくこともできる。つまり、軸方向中間部が二重底板構造になっている円筒部材の軸方向両端部から電動機と電力変換装置を個別に組付けて本発明の電力変換装置一体型電動機を構成することもできる。
In addition, in each embodiment, although what demonstrated only one pair of two communication holes 15 was demonstrated, two or more pairs of communication holes 15 may be formed.
Further, in the previous embodiment, the double sealing plate structure of the present invention is configured by the casing connecting member / lid member 5, but the aspect of the double sealing plate structure of the present invention is not limited to this. . For example, in the previous embodiment, the power conversion device side housing 3 that houses the power conversion device 1 and the motor side housing 4 that houses the motor 2 are separated from each other, and these are connected by the housing connecting member / lid member 5. Although it was set as the structure connected, the integral structure where the electric motor side housing | casing and the power converter device side housing | casing were connected by the connection part of the double sealing board structure may be sufficient. In that case, the sealing plate that seals the power conversion device side end of the motor side housing and the sealing plate that seals the motor side end of the power conversion device side housing are connected in advance to the connecting portion of the housing member having an integral structure. It can also be formed. That is, the electric power converter integrated motor of the present invention can be configured by individually assembling the electric motor and the power converter from both axial ends of the cylindrical member having a double bottom plate structure in the axial intermediate portion.

1 電力変換装置
2 電動機
3 電力変換装置側筐体
4 電動機側筐体
5 筐体連結部材兼蓋部材(連結部)
5m 電動機側密閉板
5i 電力変換装置側密閉板
6 回転軸
7 軸受
8 ロータコア
9 ステータコア
10 Oリング
11 インバータモジュール
12 実装基板
13 基板固定部
14 固定具
15 連通孔
16 内部フィン
17 フィン
DESCRIPTION OF SYMBOLS 1 Power converter device 2 Electric motor 3 Power converter device side housing | casing 4 Electric motor side housing | casing 5 Case connection member and cover member (connection part)
5m Motor side sealing plate 5i Power conversion device side sealing plate 6 Rotating shaft 7 Bearing 8 Rotor core 9 Stator core 10 O-ring 11 Inverter module 12 Mounting substrate 13 Substrate fixing portion 14 Fixing tool 15 Communication hole 16 Internal fin 17 Fin

Claims (4)

電動機と、前記電動機への電力を変換する電力変換装置とが一体的に配置された電力変換装置一体型電動機であって、
前記電動機を収納する電動機側筐体と、
前記電動機側筐体に連結され、前記電力変換装置を収納する電力変換装置側筐体と、
前記電動機側筐体及び前記電力変換装置側筐体を連結する連結部を有し、前記連結部に形成され且つ前記電動機側筐体及び前記電力変換装置側筐体の夫々を密閉する密閉板が二重構造となっている二重密閉板構造と、
前記二重構造の前記密閉板の間で前記連結部に形成され、前記電動機の回転軸の径方向に対向して前記連結部の外部及び前記二重構造の前記密閉板の間を連通する2個一対の連通孔と、を備え、
前記連結部は、2個一対の前記連通孔の一方の側から他方の側にかけて発生する自然対流の流れに接触可能となるように前記電動機の回転軸の径方向に沿って形成された複数の内部フィンを有することを特徴とする電力変換装置一体型電動機。
A power converter integrated motor in which an electric motor and a power converter that converts electric power to the electric motor are integrally disposed;
An electric motor side housing for storing the electric motor;
A power converter side housing connected to the motor side housing and housing the power converter;
A sealing plate that includes a connecting portion that connects the motor-side housing and the power converter device-side housing, and that is formed in the connecting portion and seals each of the motor-side housing and the power converter device-side housing; A double sealed plate structure which is a double structure;
A pair of two connections formed in the connecting portion between the sealing plates of the double structure and communicating between the outside of the connecting portion and the sealing plate of the double structure facing the radial direction of the rotating shaft of the electric motor A hole, and
The connecting portion is formed of a plurality of lines formed along the radial direction of the rotating shaft of the electric motor so as to be able to contact a natural convection flow generated from one side to the other side of the pair of communication holes. An electric motor integrated with a power converter, characterized by having an internal fin .
前記内部フィンは、前記二重構造の密閉板の少なくとも一方に接合していることを特徴とする請求項1に記載の電力変換装置一体型電動機。 The electric power converter integrated motor according to claim 1, wherein the internal fin is joined to at least one of the double-structured sealing plates . 前記内部フィンは、対向する2個一対の前記連通孔の中間位置で前記電動機の回転軸の径方向外側に凸となるように湾曲していることを特徴とする請求項1又は2に記載の電力変換装置一体型電動機。 The inner fins, according to claim 1 or 2, characterized in that at an intermediate position of the two opposing pairs of the communication hole is curved to be convex radially outward of the rotating shaft of the electric motor Power converter integrated motor. 前記内部フィンは、前記電動機の回転軸の径方向内側に形成されるものほど曲率半径が大きいことを特徴とする請求項に記載の電力変換装置一体型電動機。 The electric power converter integrated motor according to claim 3 , wherein the inner fin has a larger radius of curvature as it is formed on a radially inner side of a rotating shaft of the electric motor.
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