JP5640424B2 - Power converter - Google Patents

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Publication number
JP5640424B2
JP5640424B2 JP2010072675A JP2010072675A JP5640424B2 JP 5640424 B2 JP5640424 B2 JP 5640424B2 JP 2010072675 A JP2010072675 A JP 2010072675A JP 2010072675 A JP2010072675 A JP 2010072675A JP 5640424 B2 JP5640424 B2 JP 5640424B2
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grommet
lid
case
main body
sealing material
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JP2011205001A (en
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智史 井口
智史 井口
高久 金子
高久 金子
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Denso Corp
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Denso Corp
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  • Installation Of Indoor Wiring (AREA)
  • Inverter Devices (AREA)
  • Insertion, Bundling And Securing Of Wires For Electric Apparatuses (AREA)
  • Cooling Or The Like Of Electrical Apparatus (AREA)
  • Connection Or Junction Boxes (AREA)

Description

本発明は、ケース内に複数の半導体モジュールから成るインバータ等を収納して構成される電力変換装置に関し、特にケースの側壁に設けられた貫通口に、半導体モジュールを冷却する冷媒供給管や導線ケーブル等を気密状態に挿通するためのグロメットを密閉状態に取り付ける構造に特徴を有する電力変換装置に関する。   The present invention relates to a power conversion device configured by housing an inverter or the like composed of a plurality of semiconductor modules in a case, and in particular, a refrigerant supply pipe and a lead wire cable for cooling a semiconductor module in a through-hole provided in a side wall of the case. It is related with the power converter device characterized by the structure which attaches the grommet for inserting etc. to an airtight state in the airtight state.

従来、電力変換装置として特許文献1の電気機器装置のように、図1(a)の側面図に示す箱型の開口端に凹状の取付部3aが形成されたケース本体3と該開口端に固定される蓋体4とからなり内部に電気機器を収納する筐体(ケース)と、電気機器に接続されるコードが貫装され得ると共に取付部3aに嵌装され、蓋体4に押圧されて取付部3aの内周面に密着する弾性シール部材からなるグロメット5とを備える電気機器装置において、取付部3aとグロメット5とを略半円状とした構造がある。   Conventionally, as in the electric device apparatus of Patent Document 1 as a power converter, a case main body 3 having a box-shaped opening end shown in a side view of FIG. A casing (case) that is composed of a fixed lid 4 and houses an electrical device therein, and a cord connected to the electrical device can be inserted therethrough and fitted into the mounting portion 3a and pressed by the lid 4 In the electrical equipment device provided with the grommet 5 made of an elastic seal member that is in close contact with the inner peripheral surface of the mounting portion 3a, there is a structure in which the mounting portion 3a and the grommet 5 are substantially semicircular.

この構造においては、ケース本体3の取付部3aと、グロメット5とが略半円状となっているため、グロメット5を蓋体4で押圧すると、取付部3aの内周面とグロメット5とが全体的に密着し、この密着面の各部に面圧が適切に作用する。従って、全体的なシール性が向上するといったメリットがある。   In this structure, since the attachment portion 3a of the case body 3 and the grommet 5 are substantially semicircular, when the grommet 5 is pressed by the lid body 4, the inner peripheral surface of the attachment portion 3a and the grommet 5 are formed. The entire surface is in close contact, and the surface pressure acts appropriately on each part of the contact surface. Therefore, there is an advantage that the overall sealing performance is improved.

特開2002−369346号公報JP 2002-369346 A

ところで、上記の特許文献1の構造においては、ケース本体3の取付部3aに嵌合されたグロメット5の上面(露出面)と、ケース本体3の側壁上面との間に、僅かな高さの段差d1が生じる。この場合、ケースを密閉するために、グロメット5及びケース本体3の双方の上面を蓋体4で押圧した際に、グロメット5の上面が均一に押圧されず、その上面の両角部分に隙間が生じることがある。   By the way, in the structure of the above-mentioned Patent Document 1, there is a slight height between the upper surface (exposed surface) of the grommet 5 fitted to the mounting portion 3 a of the case body 3 and the upper surface of the side wall of the case body 3. A step d1 occurs. In this case, when the upper surfaces of both the grommet 5 and the case body 3 are pressed by the lid body 4 in order to seal the case, the upper surface of the grommet 5 is not pressed uniformly, and gaps are generated at both corners of the upper surface. Sometimes.

そこで、図2に示すように、グロメット5及びケース本体3の双方の上面と蓋体4との間に、液状ガスケットや接着剤等の粘着性の高いシール材6を介挿する必要がある。しかし、この場合、グロメット5及びケース本体3の双方の上面と蓋体4とがシール材6によって接着されるので、これら組付けの後、各々を分解して再組付けを行う際の分解時に、シール材6が剥がし難く、また、剥がしたとしてもシール材6がグロメット5やケース本体3に付着して再利用不可能となる問題があった。   Therefore, as shown in FIG. 2, it is necessary to insert a highly sticky sealing material 6 such as a liquid gasket or an adhesive between the upper surface of both the grommet 5 and the case body 3 and the lid body 4. However, in this case, since the upper surfaces of both the grommet 5 and the case body 3 and the lid body 4 are bonded by the sealing material 6, after the assembly, after disassembling and reassembling each, The sealing material 6 is difficult to peel off, and even if it is peeled off, there is a problem that the sealing material 6 adheres to the grommet 5 or the case body 3 and cannot be reused.

また、シール材6が液状ガスケットや接着剤等のバネ定数が小さい部材である場合、蓋体4での押圧によってシール材6が押し潰され、グロメット5の圧縮が不十分となる。この場合、段差d1が完全に無くならないので隙間が生じる問題がある。   Further, when the sealing material 6 is a member having a small spring constant such as a liquid gasket or an adhesive, the sealing material 6 is crushed by the pressure on the lid 4, and the grommet 5 is not sufficiently compressed. In this case, there is a problem that a gap is generated because the step d1 is not completely eliminated.

更に、グロメット5の圧縮が不十分な場合に、ケース本体3とグロメット5の接触部が十分に密着せず、ケース本体3とグロメット5の気密状態が不十分となる問題がある。   Further, when the compression of the grommet 5 is insufficient, there is a problem that the contact portion between the case main body 3 and the grommet 5 does not sufficiently adhere, and the airtight state between the case main body 3 and the grommet 5 becomes insufficient.

更に、ケース本体3に付着したシール材6がカスとなってケース内の電子部品や配線パターン等に落ちて付着することがあり、この場合、インバータ等の電子装置が漏電や誤動作を起こすことになるので再利用不可能となる問題があった。   Furthermore, the sealing material 6 attached to the case body 3 may become a residue and fall on the electronic components or wiring patterns in the case, and in this case, an electronic device such as an inverter may cause leakage or malfunction. As a result, there is a problem that it cannot be reused.

更には、ケース内にシール材6が落ちないように分解するには、そのための養生が必要となり工数が係る問題が生じていた。   Furthermore, in order to disassemble the sealing material 6 so that it does not fall into the case, curing for that purpose is required, and there is a problem that man-hours are involved.

本発明は、このような事情に鑑みてなされたものであり、蓋体でシール材を介してグロメット及びケース本体を押圧した際にシール材が押し潰され、グロメットの圧縮が不十分とならないようにすることができ、ケース本体、グロメット、シール材及び蓋体を工数が掛からないように容易に分解して再組立することができ、分解時にシール材のカスがケース内に落ちないようにすることができる電力変換装置を提供することを目的とする。   This invention is made | formed in view of such a situation, and when a grommet and a case main body are pressed via a sealing material with a cover body, a sealing material is crushed and compression of a grommet does not become inadequate. The case body, grommet, sealing material and lid can be easily disassembled and reassembled so that no man-hours are required, so that the debris of the sealing material does not fall into the case during disassembly. An object of the present invention is to provide a power conversion device that can perform the above-described operation.

上記目的を達成するためになされた請求項1に記載の発明は、一方が開口した箱型の側壁に半円の凹状に貫通する取付部が形成されたケース本体と当該開口に蓋する蓋体とから成りケース内部に電力変換を行うインバータを含む電子部品が収納されるケースと、前記取付部に嵌合され、前記蓋体に押圧されて当該取付部の内周面に密着する弾性部材による半円状のグロメットと、前記ケース本体及び前記蓋体の間に押圧されて当該ケース本体及び当該蓋体に密着するシール材とを有する電力変換装置において、前記蓋体は、当該蓋体における前記ケース本体の側壁上面に当接する下面に、当該下面の前記グロメットに対向する部分に平行なレール状の2本の離間した凸部が配設された形状を成し、且つ当該凸部が前記グロメットの露出した上面よりも、前記凸部の突出方向及び前記取付部が形成された前記側壁の厚さ方向に直交する両側にやや長い寸法を有し、前記シール材は、前記2本の凸部の間に嵌合され、前記蓋体により前記ケース本体に蓋をしていない状態で、前記2本の凸部の間から前記凸部の突出方向に突き出る形状を成すことを特徴とする。
In order to achieve the above-mentioned object, the invention according to claim 1 is characterized in that a case main body in which a semicircular concave through-hole is formed on a box-shaped side wall with one open and a lid that covers the opening. And a case in which an electronic component including an inverter that performs power conversion is housed in the case, and an elastic member that is fitted to the mounting portion and pressed against the lid body and closely contacts the inner peripheral surface of the mounting portion In the power conversion device having a semicircular grommet and a sealing material that is pressed between the case body and the lid body and is in close contact with the case body and the lid body, the lid body includes the lid body in the lid body. The lower surface of the case main body is in contact with the upper surface of the side wall, and has a shape in which two rail-shaped protruding portions parallel to a portion of the lower surface facing the grommet are disposed, and the protruding portion is the grommet. On the exposed top Than, have a slightly longer size on both sides perpendicular to the thickness direction of the protruding direction and the side wall wherein the mount portion is formed of the convex portion, the sealing material is fitted between the two convex portions In a state where the case body is not covered with the lid body, a shape projecting in the projecting direction of the convex portion from between the two convex portions is formed.

この構成によれば、シール材がバネ定数の小さい部材によるものである場合に、2本の凸部を設けた蓋体によって、ケース本体の開口を蓋する際に、蓋体の押圧力によってシール材がグロメットで押し潰される。これによって、グロメットの上面とケース本体の側壁上面との間に段差が残ったとしても、更に蓋体を押圧すれば、2本の凸部でグロメットが押圧される。これによってグロメットがケース本体と段差がなくなるように圧縮されるので、蓋体をケース本体に密着固定することができる。   According to this configuration, when the sealing material is made of a member having a small spring constant, when the opening of the case body is covered with the lid provided with the two convex portions, the sealing is performed by the pressing force of the lid. The material is crushed with grommets. As a result, even if a step remains between the upper surface of the grommet and the upper surface of the side wall of the case body, if the lid is further pressed, the grommet is pressed by the two convex portions. As a result, the grommet is compressed so that there is no level difference with the case main body, so that the lid can be tightly fixed to the case main body.

請求項2に記載の発明は、一方が開口した箱型の側壁に半円の凹状に貫通する取付部が形成されたケース本体と当該開口に蓋する蓋体とから成りケース内部に電力変換を行うインバータを含む電子部品が収納されるケースと、前記取付部に嵌合され、前記蓋体に押圧されて当該取付部の内周面に密着する弾性部材による半円状のグロメットと、前記ケース本体及び前記蓋体の間に押圧されて当該ケース本体及び当該蓋体に密着するシール材とを有する電力変換装置において、前記蓋体は、当該蓋体における前記ケース本体の側壁上面に当接する下面に、当該下面の前記グロメットに対向する部分にレール状の1本の凸部が配設された形状を成し、前記凸部は、前記蓋体における前記ケース本体の側壁上面に当接する下面であって、当該下面の内側のみに形成されており、前記凸部は、前記グロメットの露出した上面よりも、前記凸部の突出方向及び前記取付部が形成された前記側壁の厚さ方向に直交する両側にやや長い寸法を有し、前記シール材は、前記蓋体により前記ケース本体に蓋をしていない状態で前記凸部よりも前記凸部の突出方向に突き出る形状を成すことを特徴とする。 The invention according to claim 2 comprises a case main body in which a semicircular concave through-hole is formed on a box-shaped side wall with one side open, and a lid that covers the opening. A case in which an electronic component including an inverter to be stored is housed, a semicircular grommet made of an elastic member that is fitted into the mounting portion and is pressed against the lid and closely contacts an inner peripheral surface of the mounting portion, and the case In the power converter having the seal member that is pressed between the main body and the lid body and is in close contact with the case main body and the lid body, the lid body is a lower surface that contacts the upper surface of the side wall of the case body in the lid body Further, a shape of a rail-like convex portion is provided on a portion of the lower surface facing the grommet, and the convex portion is a lower surface that contacts the upper surface of the side wall of the case body in the lid. Of the lower surface Is formed only on the side, the convex portion than the exposed upper surface of the grommet, slightly longer on both sides perpendicular to the thickness direction of the protruding direction and the side wall wherein the mount portion is formed of the protrusion dimension And the sealing material has a shape protruding in the protruding direction of the convex portion rather than the convex portion in a state where the case body is not covered with the lid.

この構成においても、請求項1と同様な作用効果を得ることが出来る。   Also in this configuration, the same effect as that of the first aspect can be obtained.

請求項に記載の発明は、前記グロメットは、前記蓋体で前記シール材を介して前記ケース本体に密閉状態に蓋をした際に、当該グロメットにおける前記ケース本体の内側と外側との間の幅の真中において前記凸部と当接するように配設されることを特徴とする。
According to a third aspect of the present invention, when the grommet covers the case main body in a sealed state via the sealing material with the lid, the grommet is provided between the inner side and the outer side of the case main body. It is arrange | positioned so that it may contact | abut with the said convex part in the middle of the width | variety.

この構成によれば、ケース本体の開口を蓋する際に、蓋体のケース本体の内側のみに設けられた凸部がグロメットの真中を押圧するので、グロメットが効率よく圧縮されることになる。   According to this configuration, when the opening of the case body is covered, the projection provided only on the inside of the case body of the lid presses the middle of the grommet, so that the grommet is efficiently compressed.

請求項に記載の発明は、前記グロメットは、当該グロメットの中心部に前記電子部品を冷却するための冷却管又は前記電子部品と信号を授受するための導線ケーブルを挿通する貫通口が開口されていることを特徴とする。
According to a fourth aspect of the present invention, the grommet has a through-hole through which a cooling pipe for cooling the electronic component or a conductive wire cable for transmitting and receiving signals to and from the electronic component is opened at the center of the grommet. It is characterized by.

この構成によれば、ケース本体の内部と外部を接続する必要がある部品において、すべてケース本体の一方向から組付けることが可能となるので、組付け性が向上する。   According to this configuration, all the components that need to be connected to the inside and outside of the case main body can be assembled from one direction of the case main body, so that the assemblability is improved.

請求項に記載の発明は、前記グロメットは、当該グロメットの中心部に前記電子部品と信号を授受するためのコネクタが配設されていることを特徴とする。
The invention according to claim 5 is characterized in that the grommet is provided with a connector for exchanging signals with the electronic component at the center of the grommet.

この構成によれば、ケース内の電子部品に電気的な接続を行う際に、ケース外部に配置されたコネクタを介して行うことができるので、電気的な接続が容易となる。   According to this configuration, when an electrical connection is made to an electronic component in the case, the electrical connection can be facilitated because the connection can be made via the connector disposed outside the case.

請求項に記載の発明は、前記シール材は、ゴムを含む弾性部材によるものであることを特徴とする。
The invention according to claim 6 is characterized in that the sealing material is made of an elastic member containing rubber.

この構成によれば、シール材が弾性部材なので、シール材が蓋体等に付着しないため、ケース本体、グロメット、シール材及び蓋体の各部品の分解が、より容易となって、各部品を全て再利用可能となる。   According to this configuration, since the sealing material is an elastic member, the sealing material does not adhere to the lid body, etc., so that the parts of the case main body, the grommet, the sealing material, and the lid body can be easily disassembled, All can be reused.

従来の電力変換装置の側壁のグロメット周辺の構成を示す一部側面図である。It is a partial side view which shows the structure of the grommet periphery of the side wall of the conventional power converter device. 従来の電力変換装置の側壁のグロメットと蓋体との間にシール材を介挿する際の構成を示す一部側面図である。It is a partial side view which shows the structure at the time of inserting a sealing material between the grommet and the cover body of the side wall of the conventional power converter device. 本発明の実施形態に係る電力変換装置のケースの蓋体を外した際の構成を示す平面図である。It is a top view which shows the structure at the time of removing the cover body of the case of the power converter device which concerns on embodiment of this invention. 図3の矢印Y1方向から見たケースの側面図である。FIG. 4 is a side view of the case as seen from the direction of arrow Y1 in FIG. 3. 上記ケースの側面の取付部にシール材を介して冷媒供給管及び冷媒排出管を挿通状態に嵌合した際の側面図である。It is a side view at the time of fitting the refrigerant | coolant supply pipe | tube and the refrigerant | coolant discharge pipe in the insertion state via the sealing material in the attaching part of the side surface of the said case. 図5に示す破線枠内部分におけるケース本体に蓋体で蓋した状態の一部透視図となった一部側面図である。It is the partial side view used as the partial perspective view of the state which covered the case main body in the part in the broken-line frame shown in FIG. 5 with the cover body. 上記ケースにおける蓋体の構造を示し、(a)は蓋体の一部側面図、(b)は(a)に示す線分A1−A2での断面図、(c)は(a)に示す蓋体の下面図である。The structure of the lid in the above case is shown, (a) is a partial side view of the lid, (b) is a sectional view taken along line A1-A2 shown in (a), and (c) is shown in (a). It is a bottom view of a lid. 上記ケース本体の開口を蓋体で蓋をする際の作用を説明するための図である。It is a figure for demonstrating the effect | action at the time of covering the opening of the said case main body with a cover body. 本実施形態の他の構成例の蓋体を示し、(a)は蓋体の下面図、(b)は蓋体の側面図である。The cover body of the other structural example of this embodiment is shown, (a) is a bottom view of a cover body, (b) is a side view of a cover body. 本実施形態の他の構成例の蓋体を示し、(a)は蓋体の一部側面図、(b)は(a)に示す線分B1−B2での断面図、(c)は(a)に示す蓋体の下面図である。The cover body of the other structural example of this embodiment is shown, (a) is a partial side view of the cover body, (b) is a sectional view taken along line B1-B2 shown in (a), and (c) is ( It is a bottom view of the lid shown in a). 図10に示す蓋体の凸部が幅広のグロメットの真中を当接する際の様子を示す図である。It is a figure which shows a mode when the convex part of the cover body shown in FIG. 10 contact | abuts the center of a wide grommet. グロメットの貫通口を示す側面図である。It is a side view which shows the through-hole of a grommet. (a)グロメットに配設されるコネクタの正面図、(b)は側面図である。(A) The front view of the connector arrange | positioned at a grommet, (b) is a side view.

以下、本発明の実施形態を、図面を参照して説明する。但し、本明細書中の全図において相互に対応する部分には同一符号を付し、重複部分においては後述での説明を適時省略する。   Embodiments of the present invention will be described below with reference to the drawings. However, parts corresponding to each other in all the drawings in this specification are denoted by the same reference numerals, and description of the overlapping parts will be omitted as appropriate.

図3は、本発明の実施形態に係る電力変換装置のケースの蓋体を外した際の構成を示す平面図である。   FIG. 3 is a plan view showing the configuration when the cover of the case of the power conversion device according to the embodiment of the present invention is removed.

図3に示す電力変換装置1は、DC−DC(直流−直流)コンバータ回路やインバータ回路等の電力変換回路の一部を構成する複数の半導体モジュール21並びにこれら半導体モジュール21を冷却する互いに連結された複数の冷却管22を交互に積層してなる半導体積層ユニット2と、この半導体積層ユニット2を内側に収容するケース本体3とを備え、例えば、電気自動車やハイブリッド自動車等の動力源である交流モータに通電する駆動電流を生成するために用いられる。この他、産業機器のモータ駆動インバータ、ビル空調用のエアコンインバータ等にも用いられる。   A power conversion apparatus 1 shown in FIG. 3 is connected to a plurality of semiconductor modules 21 constituting a part of a power conversion circuit such as a DC-DC (direct current-direct current) converter circuit or an inverter circuit, and to cool these semiconductor modules 21. The semiconductor laminated unit 2 formed by alternately laminating a plurality of cooling pipes 22 and the case main body 3 that accommodates the semiconductor laminated unit 2 inside, for example, an alternating current that is a power source of an electric vehicle, a hybrid vehicle, etc. Used to generate a drive current for energizing the motor. In addition, it is also used in motor drive inverters for industrial equipment, air conditioner inverters for building air conditioning, and the like.

半導体積層ユニット2は、ケース本体3の外部から複数の冷却管22の内部に冷却媒体を供給するための冷媒供給管41と、複数の冷却管22からケース本体3の外部に冷却媒体を排出するための冷媒排出管42とを、積層方向の一端の冷却管22にそれぞれ接続してなる。冷媒供給管41及び冷媒排出管42は、図3の矢印Y1方向から見たケース本体3の側面図である図4に示すように、ケース本体3の側面に形成された2つの概略半円形で凹状に切り欠いた取付部3aに、図5に示すように、防水用のゴム等の弾性部材によるグロメット5を介して挿通されている。つまり、グロメット5は取付部3aよりもややサイズの大きい概略半円形状を成す。更に、グロメット5の中央部分には貫通口が形成され、この貫通口に冷媒供給管41又は媒排出管42が気密状態に挿通されている。   The semiconductor stacked unit 2 discharges the cooling medium from the outside of the case body 3 to the outside of the case body 3 through the refrigerant supply pipe 41 for supplying the cooling medium to the inside of the plurality of cooling pipes 22 from the outside. The refrigerant discharge pipe 42 is connected to the cooling pipe 22 at one end in the stacking direction. The refrigerant supply pipe 41 and the refrigerant discharge pipe 42 are two substantially semicircular shapes formed on the side surface of the case body 3 as shown in FIG. 4 which is a side view of the case body 3 viewed from the direction of the arrow Y1 in FIG. As shown in FIG. 5, the mounting portion 3 a cut out in a concave shape is inserted through a grommet 5 made of an elastic member such as waterproof rubber. That is, the grommet 5 has a substantially semicircular shape that is slightly larger in size than the attachment portion 3a. Furthermore, a through-hole is formed in the central portion of the grommet 5, and the refrigerant supply pipe 41 or the medium discharge pipe 42 is inserted into the through-hole in an airtight state.

また、冷媒供給管41及び冷媒排出管42は、グロメット5よりもケース本体3の内側に冷媒供給管41及び冷媒排出管42を把持する把持治具(図示せず)を係合するための治具係合部61が外周に嵌合され、更に、ケース本体3の外部においてホース位置決め部62が外周に嵌合されている。このホース位置決め部62は、ケース本体3の外部から冷媒供給管41に冷却媒体を供給するための外部供給ホース621及び冷媒排出管42からケース本体3の外部に冷却媒体を排出するための外部排出ホース622を位置決めするためのものである。   Further, the refrigerant supply pipe 41 and the refrigerant discharge pipe 42 are jigs for engaging a holding jig (not shown) for holding the refrigerant supply pipe 41 and the refrigerant discharge pipe 42 inside the case body 3 rather than the grommet 5. A tool engaging portion 61 is fitted on the outer periphery, and a hose positioning portion 62 is fitted on the outer periphery outside the case body 3. The hose positioning portion 62 is provided with an external discharge hose 621 for supplying a cooling medium from the outside of the case body 3 to the refrigerant supply pipe 41 and an external discharge for discharging the cooling medium from the refrigerant discharge pipe 42 to the outside of the case body 3. The hose 622 is positioned.

また、半導体積層ユニット2は、複数の半導体モジュール21と複数の冷却管22とを交互に積層してなるが、冷却管22同士は、上流側においては供給側連結部221によって連結され、下流側においては排出側連結部222によって連結されている。その下流側のケース本体3と半導体積層ユニット2との間には、弾性力を有するバネ部材11が配設されている。ここで、ケース本体3は、バネ部材11の幅方向の両端部を係止する固定用部材12が当接する部材当接部32と、上流側端部の冷却管22の主面に当接する主面当接部33とを有する。バネ部材11は、下流側端部における冷却管22の主面に当接する当接板部13と固定用部材12との間において、半導体積層ユニット2を上流側に押圧した付勢状態で配設する。このバネ部材11の付勢力により、上流側端部における冷却管22の主面が主面当接部33と当接している。   Further, the semiconductor stacked unit 2 is formed by alternately stacking a plurality of semiconductor modules 21 and a plurality of cooling pipes 22. The cooling pipes 22 are connected to each other on the upstream side by a supply side connecting portion 221, and on the downstream side. Are connected by a discharge side connecting portion 222. A spring member 11 having an elastic force is disposed between the case body 3 and the semiconductor laminated unit 2 on the downstream side. Here, the case main body 3 includes a main member that contacts the main surface of the cooling pipe 22 at the upstream end and the member contact portion 32 that contacts the fixing member 12 that locks both ends of the spring member 11 in the width direction. And a surface contact portion 33. The spring member 11 is disposed between the contact plate 13 that contacts the main surface of the cooling pipe 22 at the downstream end and the fixing member 12 in a biased state in which the semiconductor stacked unit 2 is pressed upstream. To do. Due to the biasing force of the spring member 11, the main surface of the cooling pipe 22 at the upstream end is in contact with the main surface contact portion 33.

次に、ケース本体3の上方の開口に蓋がされた状態を図6に示す。この図6は、図5に破線枠W1で囲む部分を表した側面図である。図6に示すように、ケース本体3の開口には当該ケース本体3の側壁上面にシール材73を介して蓋体71で密閉状態に蓋が成されている。但し、シール材73は、液状ガスケットや接着剤等のバネ定数が小さい部材であるとする。   Next, FIG. 6 shows a state where the upper opening of the case body 3 is covered. FIG. 6 is a side view showing a portion surrounded by a broken line frame W1 in FIG. As shown in FIG. 6, the opening of the case body 3 is sealed with a lid 71 on the upper surface of the side wall of the case body 3 via a sealing material 73. However, the sealing material 73 is a member having a small spring constant such as a liquid gasket or an adhesive.

本実施形態の特徴は、蓋体71の構造に有り、この蓋体71を図7に示す。図7(a)は蓋体71の一部側面図、図7(b)は(a)に示す線分A1−A2での断面図、図7(c)は(a)に示す蓋体71の下面図である。   The feature of this embodiment is the structure of the lid 71, and this lid 71 is shown in FIG. 7A is a partial side view of the lid 71, FIG. 7B is a cross-sectional view taken along line A1-A2 shown in FIG. 7A, and FIG. 7C is the lid 71 shown in FIG. FIG.

この図7に示すように、蓋体71は、その下面におけるグロメット5の当接面に平行なレール状の凸部(以降、平行凸部と称す)71a,71bが設けられている。この平行凸部71a,71bは、グロメット5の露出した上面よりも両側にやや長い寸法(図6参照)となっており、当該平行凸部71a,71bの間の細長い溝部71cにシール材73が嵌合されるようになっている。   As shown in FIG. 7, the lid 71 is provided with rail-like convex portions (hereinafter referred to as parallel convex portions) 71a and 71b parallel to the contact surface of the grommet 5 on the lower surface. The parallel convex portions 71a and 71b have dimensions slightly longer on both sides than the exposed upper surface of the grommet 5 (see FIG. 6), and the sealing material 73 is provided in the elongated groove portion 71c between the parallel convex portions 71a and 71b. It is designed to be fitted.

このような平行凸部71a,71bを設けた蓋体71によって、図8(a)に示すように、ケース本体3の開口を蓋体71で蓋をする際に、図8(b)に示すように、蓋体71の押圧力によってシール材73がグロメット5で押し潰されたとする。この場合、グロメット5の上面とケース本体3の側壁上面との間に段差d1aが残る。しかし、更に蓋体71を押圧することによって、図8(c)に示すように、平行凸部71a,71bでグロメット5が押圧され、これによってグロメット5がケース本体3と段差がなくなるように圧縮される。この状態で蓋体71を固定すれば電力変換装置1のケースが気密状に保持される。   When the opening of the case main body 3 is covered with the lid body 71 as shown in FIG. 8A by the lid body 71 provided with the parallel convex portions 71a and 71b as shown in FIG. 8B. As described above, it is assumed that the sealing material 73 is crushed by the grommet 5 by the pressing force of the lid 71. In this case, a step d1a remains between the upper surface of the grommet 5 and the upper surface of the side wall of the case body 3. However, when the lid 71 is further pressed, the grommet 5 is pressed by the parallel protrusions 71a and 71b as shown in FIG. 8C, and the grommet 5 is compressed so that there is no step with the case body 3. Is done. If the lid 71 is fixed in this state, the case of the power converter 1 is kept airtight.

従って、図7(b)に示す平行凸部71a,71bの高さd2は、シール材73のバネ定数に応じて決定する。つまり、蓋体71での押圧時にシール材73が潰れた際に、平行凸部71a,71bでグロメット5を段差d1aが無くなるように適正に圧縮できる高さd2とする。   Therefore, the height d2 of the parallel protrusions 71a and 71b shown in FIG. 7B is determined according to the spring constant of the sealing material 73. That is, when the sealing material 73 is crushed when pressed by the lid 71, the grommet 5 is set to a height d2 that can be properly compressed by the parallel protrusions 71a and 71b so that the step d1a is eliminated.

このように本実施形態の電力変換装置1によれば、ケース本体3の側壁の取付部3aにグロメット5を嵌合し、ケース本体3の開口を当該開口側のグロメット露出面にシール材73を介挿して蓋体71でグロメット5を押圧して密閉状に蓋する構造において、蓋体71は、当該蓋体71におけるケース本体3の側壁上面に当接する下面に、当該下面のグロメット5への当接部分に平行なレール状の平行凸部(2本の凸部)71a,71bが配設された形状を成し、シール材73は、平行凸部71a,71bの間に嵌合されて突き出る形状を成すようにした。   As described above, according to the power conversion device 1 of the present embodiment, the grommet 5 is fitted to the attachment portion 3a on the side wall of the case body 3, and the opening of the case body 3 is placed on the grommet exposed surface on the opening side. In the structure of inserting and pressing the grommet 5 with the lid 71 to cover the grommet 5 in a hermetically sealed manner, the lid 71 is placed on the lower surface of the lid 71 that contacts the upper surface of the side wall of the case body 3. The rail-shaped parallel convex portions (two convex portions) 71a and 71b parallel to the contact portion are formed, and the seal material 73 is fitted between the parallel convex portions 71a and 71b. A protruding shape was made.

この構成によれば、平行凸部71a,71bを設けた蓋体71によって、ケース本体3の開口を蓋する際に、蓋体71の押圧力によってシール材73がグロメット5で押し潰され、これによって、グロメット5の上面とケース本体3の側壁上面との間に段差d1aが残ったとしても、更に蓋体71を押圧すれば、平行凸部71a,71bでグロメット5が押圧される。これによってグロメット5がケース本体3と段差d1aがなくなるように圧縮されるので、蓋体71をケース本体3に密着固定することができる。更に、シール材73は平行凸部71a,71bの間に嵌合されるので、従来のようにシール材が圧縮されすぎて千切れたりすることも無くなる。   According to this configuration, when the opening of the case body 3 is covered by the lid 71 provided with the parallel convex portions 71a and 71b, the sealing material 73 is crushed by the grommet 5 by the pressing force of the lid 71. Thus, even if the step d1a remains between the upper surface of the grommet 5 and the upper surface of the side wall of the case body 3, if the lid body 71 is further pressed, the grommet 5 is pressed by the parallel protrusions 71a and 71b. As a result, the grommet 5 is compressed so as to eliminate the step d1a from the case main body 3, so that the lid 71 can be tightly fixed to the case main body 3. Furthermore, since the sealing material 73 is fitted between the parallel convex portions 71a and 71b, the sealing material is not compressed too much and is not cut off as in the prior art.

また、蓋体71は、図9(a)の蓋体71の下面図、(b)の側面図に示すように、ケース本体3の側壁上面への当接面全てに周回して、平行なレール状の凸部(周回平行凸部と称す)71e,71fを配設した形状としても良い。この場合、シール材73は、その周回平行凸部71e,71fの間の溝部71gに嵌合されて突き出る形状を成す。   Further, as shown in the bottom view of the lid 71 of FIG. 9A and the side view of FIG. 9B, the lid 71 circulates around all the contact surfaces to the upper surface of the side wall of the case body 3 and is parallel. Rail-shaped convex portions (referred to as circumferential parallel convex portions) 71e and 71f may be provided. In this case, the sealing material 73 has a shape protruding by being fitted into the groove 71g between the circumferential parallel convex portions 71e and 71f.

この周回平行凸部71e,71fを設けた蓋体71によって、ケース本体3の開口を蓋する際に、蓋体71の押圧力によってシール材73がグロメット5で押し潰されても、前述同様に、更に蓋体71を押圧すれば、周回平行凸部71e,71fでグロメット5が押圧される。これによってグロメット5がケース本体3と段差d1aがなくなるように圧縮されるので、蓋体71をケース本体3に密着固定することができる。   Even when the sealing member 73 is crushed by the grommet 5 by the pressing force of the lid 71 when the opening of the case main body 3 is covered by the lid 71 provided with the circumferential parallel convex portions 71e and 71f, the same as described above. If the cover body 71 is further pressed, the grommet 5 is pressed by the circumferential parallel convex portions 71e and 71f. As a result, the grommet 5 is compressed so as to eliminate the step d1a from the case main body 3, so that the lid 71 can be tightly fixed to the case main body 3.

更に、この蓋体71に周回平行凸部71e,71fを配設した構造の場合、ケースを分解する際に、周回平行凸部71e,71fの間の溝部71gにバネ定数の小さいシール材73が付着した状態となるので、蓋体71をケース本体3及びグロメット5から容易に取り去ることができる。従って、ケース本体3、グロメット5、シール材73及び蓋体71の各部品を工数が掛からないように容易に分解して再組立することができる。   Further, in the case where the circumferential parallel convex portions 71e and 71f are arranged on the lid 71, when the case is disassembled, the sealing material 73 having a small spring constant is provided in the groove portion 71g between the circumferential parallel convex portions 71e and 71f. Since it becomes the state which adhered, the cover body 71 can be easily removed from the case main body 3 and the grommet 5. FIG. Accordingly, the case main body 3, the grommet 5, the sealing material 73, and the lid 71 can be easily disassembled and reassembled so that the number of man-hours is not increased.

また、シール材73は溝部71gに付着しているので、そのシール材73がカスとなってケース内に落ちて電子部品や配線パターン等に付着することはない。従って、電力変換装置1を再利用可能とすることができる。また、従来のようにケース内にシール材が落ちないようにするための養生が不要となるので、その分工数が掛からないようにすることが出来る。   Further, since the sealing material 73 is attached to the groove portion 71g, the sealing material 73 does not become a residue and falls into the case and does not adhere to an electronic component or a wiring pattern. Therefore, the power conversion device 1 can be reused. Moreover, since the curing for preventing the sealing material from falling into the case is not required as in the prior art, it is possible to prevent the number of man-hours from being increased.

また、蓋体71の下面に、図10に示すようにケース本体3の内側のみに凸部71bを有する形状としても良い。なお、図10(a)は蓋体71の一部側面図、図10(b)は(a)に示す線分B1−B2での断面図、図10(c)は(a)に示す蓋体71の下面図である。この構造の場合も、前述同様に蓋体71の押圧力によってシール材73がグロメット5で押し潰されても、更に蓋体71を押圧すれば凸部71bでグロメット5が押圧され、グロメット5がケース本体3と段差d1aがなくなるように圧縮されるので、蓋体71をケース本体3に密着固定することができる。また、蓋体71の下面のケース外側は開放されているので、この開放部分からシール材73を容易に差し込めるといったメリットもある。   Moreover, it is good also as a shape which has the convex part 71b only in the inner side of the case main body 3 in the lower surface of the cover body 71, as shown in FIG. 10A is a partial side view of the lid 71, FIG. 10B is a cross-sectional view taken along line B1-B2 shown in FIG. 10A, and FIG. 10C is a lid shown in FIG. 7 is a bottom view of a body 71. FIG. Also in this structure, even if the sealing material 73 is crushed by the grommet 5 by the pressing force of the lid 71 as described above, if the lid 71 is further pressed, the grommet 5 is pressed by the convex portion 71b, and the grommet 5 Since the case body 3 and the step d1a are compressed so as to be eliminated, the lid body 71 can be tightly fixed to the case body 3. Moreover, since the case outer side of the lower surface of the lid 71 is open, there is an advantage that the sealing material 73 can be easily inserted from this open portion.

更に、蓋体71が凸部71bを配設する構造の場合、図11に示すように、グロメット5のケース内側と外側との間のの真中(矢印Y2で指示)において凸部71bが当接するように、グロメット5が配設される。このようにすれば、凸部71bがグロメット5の真中を押圧するので、グロメット5が効率よく圧縮されることになる。 Furthermore, when the cover 71 has a structure in which the convex portion 71b is disposed, as shown in FIG. 11 , the convex portion 71b is applied in the middle of the width between the case inner side and the outer side of the grommet 5 (indicated by the arrow Y2) . Grommet 5 is disposed so as to come into contact . If it does in this way, since convex part 71b presses the middle of grommet 5, grommet 5 will be compressed efficiently.

但し、蓋体71の下面にケース本体3の内側のみに凸部71bを有する形状は、周回平行凸部71e,71fの場合も同様な構造としても良い。即ち、蓋体71が、周回平行凸部71e,71fの内のケース本体3の内側の凸部71fのみを備える。   However, the shape having the convex portion 71b only on the inner side of the case body 3 on the lower surface of the lid 71 may have the same structure in the case of the circumferential parallel convex portions 71e and 71f. That is, the lid body 71 includes only the convex portion 71f inside the case body 3 among the circumferential parallel convex portions 71e and 71f.

また、図12に示すように、グロメット5の中央部分の貫通口5aには、上述の実施形態では、冷却管としての冷媒供給管41又は冷媒排出管42が挿通されていたが、これに代え、ケース内のインバータ等の電子部品と図示せぬ外部装置とで信号を授受する導線ケーブルを気密状態に挿通しても良い。この場合でも前述同様の効果を得ることが出来る。また、ケース内部と外部を接続する必要がある部品において、すべてケース本体3の一方向から組付けることが可能となるので、組付け性が向上する。   Further, as shown in FIG. 12, the refrigerant supply pipe 41 or the refrigerant discharge pipe 42 as the cooling pipe is inserted into the through-hole 5a in the central portion of the grommet 5 in the above-described embodiment. In addition, a lead wire cable that transmits and receives signals between an electronic component such as an inverter in the case and an external device (not shown) may be inserted in an airtight state. Even in this case, the same effect as described above can be obtained. Moreover, since it is possible to assemble all the parts that need to be connected to the inside and outside of the case from one direction of the case body 3, the assembling property is improved.

更に、図13に示すようなコネクタ81をグロメット5の中央部分に取り付けても良い。図13(a)はコネクタ81の正面図、(b)は側面図である。コネクタ81は、グロメット5のケース内側で所定の電子部品と接続されており、ケース外側で図示せぬ外部装置のコネクタと接続するようになっている。このようにコネクタ81をグロメット5に取り付けた場合、ケース内の電子部品と外部装置とを容易に接続することができる。   Further, a connector 81 as shown in FIG. 13 may be attached to the central portion of the grommet 5. 13A is a front view of the connector 81, and FIG. 13B is a side view. The connector 81 is connected to a predetermined electronic component inside the case of the grommet 5 and is connected to a connector of an external device (not shown) outside the case. Thus, when the connector 81 is attached to the grommet 5, the electronic component in a case and an external device can be connected easily.

更には、シール材73がバネ定数の小さい部材に代え、ゴム等の弾性部材による部材で形成されていても良い。この場合も、平行凸部71a,71b又は周回平行凸部71e,71fの高さd2を考慮する必要がある。即ち、蓋体71の押圧力によってシール材73がグロメット5で圧縮された後、更に蓋体71を押圧すれば平行凸部71a,71b又は周回平行凸部71e,71fでグロメット5が押圧され、グロメット5がケース本体3と段差d1aがなくなるように圧縮されるような高さd2とする。   Furthermore, the sealing material 73 may be formed of a member made of an elastic member such as rubber instead of a member having a small spring constant. Also in this case, it is necessary to consider the height d2 of the parallel convex portions 71a and 71b or the circular parallel convex portions 71e and 71f. That is, after the sealing material 73 is compressed by the grommet 5 by the pressing force of the lid 71, if the lid 71 is further pressed, the grommet 5 is pressed by the parallel convex portions 71a, 71b or the circular parallel convex portions 71e, 71f, The height d2 is set so that the grommet 5 is compressed so that the step d1a is eliminated from the case body 3.

このシール材73をゴム等の弾性部材によるものとした場合、シール材73が蓋体71等に付着しないので、ケース本体3、グロメット5、シール材73及び蓋体71の各部品の分解が、より容易となって、各部品を全て再利用可能となる。   When the sealing material 73 is made of an elastic member such as rubber, the sealing material 73 does not adhere to the lid body 71 and the like, so that the parts of the case main body 3, the grommet 5, the sealing material 73, and the lid body 71 are disassembled. It becomes easier and all parts can be reused.

1 電力変換装置
2 半導体積層ユニット
3 ケース本体
3a 取付部
4,71 蓋体
71a,71b,71e,71f
5 グロメット
5a 貫通口
6,73 シール材
11 バネ部材
12 固定用部材
13 当接板部
21 半導体モジュール
22 冷却管
32 部材当接部
33 主面当接部
41 冷媒供給管
42 冷媒排出管
61 治具係合部
62 ホース位置決め部
81 コネクタ
221 供給側連結部
222 排出側連結部
621 外部供給ホース
622 外部排出ホース
DESCRIPTION OF SYMBOLS 1 Power converter 2 Semiconductor laminated unit 3 Case main body 3a Attachment part 4,71 Cover body 71a, 71b , 71e, 71f convex part 5 Grommet 5a Through-hole 6,73 Sealing material
DESCRIPTION OF SYMBOLS 11 Spring member 12 Fixing member 13 Contact plate part 21 Semiconductor module 22 Cooling pipe 32 Member contact part 33 Main surface contact part 41 Refrigerant supply pipe 42 Refrigerant discharge pipe 61 Jig engaging part 62 Hose positioning part 81 Connector 221 Supply side connection part 222 Discharge side connection part 621 External supply hose 622 External discharge hose

Claims (6)

一方が開口した箱型の側壁に半円の凹状に貫通する取付部が形成されたケース本体と当該開口に蓋する蓋体とから成りケース内部に電力変換を行うインバータを含む電子部品が収納されるケースと、前記取付部に嵌合され、前記蓋体に押圧されて当該取付部の内周面に密着する弾性部材による半円状のグロメットと、前記ケース本体及び前記蓋体の間に押圧されて当該ケース本体及び当該蓋体に密着するシール材とを有する電力変換装置において、
前記蓋体は、当該蓋体における前記ケース本体の側壁上面に当接する下面に、当該下面の前記グロメットに対向する部分に平行なレール状の2本の離間した凸部が配設された形状を成し、且つ当該凸部が前記グロメットの露出した上面よりも、前記凸部の突出方向及び前記取付部が形成された前記側壁の厚さ方向に直交する両側にやや長い寸法を有し、
前記シール材は、前記2本の凸部の間に嵌合され、前記蓋体により前記ケース本体に蓋をしていない状態で、前記2本の凸部の間から前記凸部の突出方向に突き出る形状を成すことを特徴とする電力変換装置。
An electronic component including an inverter for converting power is housed in the case, which is composed of a case main body having a semicircular concave mounting portion formed in a box-shaped side wall that is open on one side and a lid that covers the opening. Between the case main body and the lid body, and a semicircular grommet made of an elastic member that is fitted to the attachment portion and is pressed by the lid body and is in close contact with the inner peripheral surface of the attachment portion. In the power conversion device having the seal body closely attached to the case body and the lid body,
The lid has a shape in which two rail-like convex portions parallel to a portion of the lower surface facing the grommet are arranged on the lower surface of the lid that contacts the upper surface of the side wall of the case body. And the projection has a slightly longer dimension on both sides orthogonal to the protruding direction of the projection and the thickness direction of the side wall on which the mounting portion is formed than the exposed upper surface of the grommet ,
The sealing material is fitted between the two convex portions, and the case main body is not covered with the lid body, and between the two convex portions in the protruding direction of the convex portion. A power converter characterized by having a protruding shape.
一方が開口した箱型の側壁に半円の凹状に貫通する取付部が形成されたケース本体と当該開口に蓋する蓋体とから成りケース内部に電力変換を行うインバータを含む電子部品が収納されるケースと、前記取付部に嵌合され、前記蓋体に押圧されて当該取付部の内周面に密着する弾性部材による半円状のグロメットと、前記ケース本体及び前記蓋体の間に押圧されて当該ケース本体及び当該蓋体に密着するシール材とを有する電力変換装置において、
前記蓋体は、当該蓋体における前記ケース本体の側壁上面に当接する下面に、当該下面の前記グロメットに対向する部分にレール状の1本の凸部が配設された形状を成し、
前記凸部は、前記蓋体における前記ケース本体の側壁上面に当接する下面であって、当該下面の内側のみに形成されており、
前記凸部は、前記グロメットの露出した上面よりも、前記凸部の突出方向及び前記取付部が形成された前記側壁の厚さ方向に直交する両側にやや長い寸法を有し、
前記シール材は、前記蓋体により前記ケース本体に蓋をしていない状態で前記凸部よりも前記凸部の突出方向に突き出る形状を成すことを特徴とする電力変換装置。
An electronic component including an inverter for converting power is housed in the case, which is composed of a case main body having a semicircular concave mounting portion formed in a box-shaped side wall that is open on one side and a lid that covers the opening. Between the case main body and the lid body, and a semicircular grommet made of an elastic member that is fitted to the attachment portion and is pressed by the lid body and is in close contact with the inner peripheral surface of the attachment portion. In the power conversion device having the seal body closely attached to the case body and the lid body,
The lid body has a shape in which one rail-like convex portion is disposed on a lower surface of the lid body that is in contact with the upper surface of the side wall of the case main body and facing the grommet on the lower surface.
The convex portion is a lower surface that contacts the upper surface of the side wall of the case body in the lid, and is formed only on the inner side of the lower surface.
The convex part has a slightly longer dimension on both sides orthogonal to the protruding direction of the convex part and the thickness direction of the side wall on which the mounting part is formed, than the exposed upper surface of the grommet ,
The power conversion device according to claim 1, wherein the sealing material has a shape protruding in a protruding direction of the convex portion rather than the convex portion in a state where the case body is not covered with the lid.
前記グロメットは、前記蓋体で前記シール材を介して前記ケース本体に密閉状態に蓋をした際に、当該グロメットにおける前記ケース本体の内側と外側との間の幅の真中において前記凸部と当接するように配設され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。   The grommet is in contact with the convex portion in the middle of the width between the inner side and the outer side of the case main body in the grommet when the case main body is sealed with the lid through the sealing material. The power conversion device according to claim 1, wherein the power conversion device is disposed so as to be in contact with each other. 前記グロメットは、当該グロメットの中心部に前記電子部品を冷却するための冷却管又は前記電子部品と信号を授受するための導線ケーブルを挿通する貫通口が開口されていることを特徴とする請求項1〜3のいずれか1項に記載の電力変換装置。   The grommet is characterized in that a through-hole through which a cooling pipe for cooling the electronic component or a conductive wire cable for transmitting and receiving signals to and from the electronic component is opened at the center of the grommet. The power converter device of any one of 1-3. 前記グロメットは、当該グロメットの中心部に前記電子部品と信号を授受するためのコネクタが配設されていることを特徴とする請求項1〜3のいずれか1項に記載の電力変換装置。   The power converter according to any one of claims 1 to 3, wherein the grommet is provided with a connector for transmitting and receiving signals to and from the electronic component at a central portion of the grommet. 前記シール材は、ゴムを含む弾性部材によるものであることを特徴とする請求項1〜5のいずれか1項に記載の電力変換装置。
The power conversion device according to claim 1, wherein the sealing material is made of an elastic member including rubber.
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JP2004242434A (en) * 2003-02-06 2004-08-26 Yazaki Corp Waterproof structure of electric junction box
JP2007165175A (en) * 2005-12-15 2007-06-28 Calsonic Kansei Corp Enclosure seal structure
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