JP2005294154A - Wiring structure for fuel cell - Google Patents

Wiring structure for fuel cell Download PDF

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JP2005294154A
JP2005294154A JP2004110037A JP2004110037A JP2005294154A JP 2005294154 A JP2005294154 A JP 2005294154A JP 2004110037 A JP2004110037 A JP 2004110037A JP 2004110037 A JP2004110037 A JP 2004110037A JP 2005294154 A JP2005294154 A JP 2005294154A
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separator
pressing
fuel cell
clip member
portions
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JP4474976B2 (en
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Yasushi Sugiyama
靖 杉山
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Nok Corp
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    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/50Fuel cells

Abstract

<P>PROBLEM TO BE SOLVED: To provide a wiring structure for a fuel cell wherein wire arrangement is simply performed and wires are connected to a separator easily. <P>SOLUTION: The wiring structure for a fuel cell is equipped with a plurality of electrode parts contacting with each end face of laminated separator 1 and a flexible wiring material 3 having a plurality of conductive parts for conveying electrical signals respectively from the plurality of electrode parts and a clipping member 2 having a plurality of pressing parts 4 for pressing respective electrode parts to each separator 1 fixed by pinching the laminated separators 1. The fixing force of the clipping member 2 when being fixed by pinching the laminated separators 1 is used as pressing force to pressing the electrode parts to the end faces of the separators to contact. <P>COPYRIGHT: (C)2006,JPO&NCIPI

Description

本発明は、燃料電池用配線取付構造に関するものである。   The present invention relates to a fuel cell wiring mounting structure.

燃料電池は、電解質膜を挟んで設けられる一対の電極を1組として、各組間にそれぞれセパレータが挟み込まれた構成である。つまり、電解質膜と一対の電極により構成される単電池が、直列に複数接続された構成であると言える。そのため、燃料電池の出力電圧低下等の異常が発生した場合、どの箇所に異常が発生しているかを調べるためには、セパレータ間の電圧や各セパレータの電位を1箇所ずつ測定していく必要がある。   The fuel cell has a configuration in which a pair of electrodes provided with an electrolyte membrane interposed therebetween is set as one set, and a separator is inserted between each set. In other words, it can be said that a plurality of single cells each composed of an electrolyte membrane and a pair of electrodes are connected in series. For this reason, when an abnormality such as a drop in the output voltage of the fuel cell occurs, it is necessary to measure the voltage between the separators and the potential of each separator one by one in order to investigate where the abnormality has occurred. is there.

従来、このような測定は、例えば、以下の方法で行っていた。すなわち、まず、セパレータの側面に穴を形成する。そして、この穴に電線付き端子を挿入し、接着剤で固定する。そして、各電線の端部において、接触するセパレータの電位を測定する。   Conventionally, such measurement has been performed by the following method, for example. That is, first, a hole is formed on the side surface of the separator. And a terminal with an electric wire is inserted in this hole, and it fixes with an adhesive agent. And the electric potential of the separator which contacts in the edge part of each electric wire is measured.

かかる測定方法においては、複数の電線が入り乱れるため、作業性が悪く、電線の順番を間違えやすいという問題があった。また、複数の電線に広いスペースを取られてしまうという問題もあった。更に、セパレータの薄型化に伴い、セパレータの側面に穴を形成すること自体が困難になってきているという問題もある。   In such a measuring method, since a plurality of electric wires are disturbed, there is a problem that workability is poor and the order of the electric wires is easily mistaken. There is also a problem that a large space is taken up by a plurality of electric wires. Furthermore, as the thickness of the separator is reduced, it is difficult to form a hole on the side surface of the separator.

このため、最近では、特許文献1のように、FPC(フレキシブルプリンティッドサーキット)をセルシールに一体化させて、セルの薄肉化や配線の整理に対応して、上記セパレータの電位を測定する技術も開示されている。
国際公開第02/001659号パンフレット
For this reason, recently, as disclosed in Patent Document 1, an FPC (Flexible Printed Circuit) is integrated with a cell seal to measure the potential of the separator in response to thinning of the cell and arrangement of wiring. It is disclosed.
International Publication No. 02/001659 pamphlet

しかしながら、特許文献1に開示された構成は、各セパレータに対応して1本ずつFPCを設けており、未だ配線の整理が簡潔になされてはいなかった。   However, the configuration disclosed in Patent Document 1 is provided with one FPC corresponding to each separator, and the arrangement of wiring has not yet been simplified.

本発明は上記実情に鑑みてなされたもので、その目的とするところは、配線の整理を簡潔に行い、セパレータに配線を簡単に接続させる燃料電池用配線取付構造を提供することにある。   The present invention has been made in view of the above circumstances, and an object of the present invention is to provide a fuel cell wiring mounting structure in which wiring is simply arranged and wiring is easily connected to a separator.

上記目的を達成するために本発明にあっては、以下の構成を採用する。   In order to achieve the above object, the present invention adopts the following configuration.

すなわち、積層したセパレータの端面のそれぞれに接触する複数の電極部と該電極部からそれぞれの電気信号を導通する複数の導通部とを有するフレキシブル配線材と、
前記複数の電極部のそれぞれを各セパレータへ押圧する複数の押圧部を有し、前記積層したセパレータを挟み込んで固定されるクリップ部材と、
を備え、
前記クリップ部材が前記積層したセパレータを挟み込んで固定される際の固定力を、前記押圧部が前記電極部を接触するセパレータの端面へ押圧する押圧力に用いることを特徴とする。
That is, a flexible wiring material having a plurality of electrode portions that contact each of the end faces of the stacked separators and a plurality of conductive portions that conduct respective electric signals from the electrode portions;
A clip member that has a plurality of pressing portions that press each of the plurality of electrode portions to each separator, and is fixed by sandwiching the stacked separator;
With
A fixing force when the clip member is sandwiched and fixed between the clip members is used as a pressing force that the pressing portion presses against an end face of the separator that contacts the electrode portion.

ここで、フレキシブル配線材としては、FPC(フレキシブルプリンティッドサーキット)やFFC(フレキシブルフラットケーブル)等が挙げられる。フレキシブル配線材は
、ベースフィルムやカバーフィルムに、PI、PEN、PET、エポキシ系樹脂、フェノール系樹脂等を使用する。導通部には、銅、アルミ、ニッケル、ステンレス、チタン、タングステン、金、パーマロイ、ニクロム等の導電性の材料を用いる。銅、アルミ等の電解液等で腐食による性能劣化が起こるものにおいては、表面を金等の耐食性のある金属及びその合金や金属化合物、塗料等をメッキや塗布等で被覆することができる。
Here, as a flexible wiring material, FPC (flexible printed circuit), FFC (flexible flat cable), etc. are mentioned. A flexible wiring material uses PI, PEN, PET, an epoxy resin, a phenol resin, or the like for a base film or a cover film. For the conductive portion, a conductive material such as copper, aluminum, nickel, stainless steel, titanium, tungsten, gold, permalloy, or nichrome is used. In the case where performance deterioration due to corrosion occurs in an electrolytic solution such as copper or aluminum, the surface can be coated with a metal having corrosion resistance such as gold, an alloy thereof, a metal compound, a paint, or the like by plating or coating.

この構成では、クリップ部材の押圧部によってフレキシブル配線材に設けられた複数の電極部を各セパレータの端面に同時に接触させることができ、配線の整理が簡潔になされ、セパレータにフレキシブル配線材を簡単に接続させることができる。   In this configuration, the plurality of electrode portions provided on the flexible wiring material can be simultaneously brought into contact with the end surfaces of the separators by the pressing portion of the clip member, and the wiring is easily arranged, and the flexible wiring material can be easily attached to the separator. Can be connected.

前記押圧部は、前記クリップ部材に形成した板バネであると好適である。また、前記押圧部は、前記クリップ部材とは別体の弾性部材であると好適である。   The pressing portion is preferably a leaf spring formed on the clip member. In addition, it is preferable that the pressing portion is an elastic member that is separate from the clip member.

前記クリップ部材は、前記押圧部が設けられる本体部と、該本体部とはスリットを介して隔てられ前記積層したセパレータの外側に係止されるアーム部と、有し、
前記スリットの形状は、前記複数の押圧部の接点荷重が均一になるように調整されることを特徴とする。
The clip member has a main body portion provided with the pressing portion, and an arm portion that is separated from the main body portion via a slit and locked to the outside of the laminated separator,
The shape of the slit is adjusted so that contact loads of the plurality of pressing portions are uniform.

この構成では、各押圧部の接点荷重が均一になり、一部の押圧部が押圧力を発揮できず接触不良となることが防止できる。   In this structure, the contact load of each pressing part becomes uniform, and it can be prevented that a part of the pressing parts cannot exert the pressing force and contact failure occurs.

前記本体部の前記複数の押圧部が並んだ両端に、前記フレキシブル配線材を前記クリップ部材に固定する固定部を設けたことを特徴とする。   A fixing portion for fixing the flexible wiring material to the clip member is provided at both ends of the main body portion where the plurality of pressing portions are arranged.

この構成では、フレキシブル配線材をクリップ部材に固定して位置決めすることができ、フレキシブル配線材の電極部が各セパレータからずれて接触することが防止できる。   In this configuration, the flexible wiring material can be fixed and positioned on the clip member, and the electrode portion of the flexible wiring material can be prevented from being displaced from each separator.

本発明によると、配線の整理を簡潔に行い、セパレータに配線を簡単に接続させることができる。   According to the present invention, the wiring can be simply arranged and the wiring can be easily connected to the separator.

図1〜図4を参照して、実施の形態について説明する。図1(a)は実施の形態に係る燃料電池用配線取付構造を示す上視図であり、図1(b)は図1(a)の平面図である。図2は実施の形態に係る押圧部を示す図である。図3は実施の形態に係る押圧部の他の例を示す図である。図4は実施の形態に係る燃料電池用配線取付構造の他の例を示す上視図である。   The embodiment will be described with reference to FIGS. FIG. 1A is a top view showing a fuel cell wiring mounting structure according to the embodiment, and FIG. 1B is a plan view of FIG. FIG. 2 is a diagram illustrating a pressing portion according to the embodiment. FIG. 3 is a diagram illustrating another example of the pressing portion according to the embodiment. FIG. 4 is a top view showing another example of the fuel cell wiring mounting structure according to the embodiment.

<燃料電池の概略説明>
本実施の形態に係る燃料電池用配線が接続される燃料電池については、各種公知技術のものを適用できる。燃料電池は、一般的に単電池が複数積層される構造である。そして、単電池の基本的な構成は、例えば、電解質膜と、この電解質膜を挟むように設けられる一対の電極と、更にこれらの電極を挟んで設けられる一対のセパレータと、電極が設けられた領域を密封するためのガスケットとを備える構成である。
<Overview of fuel cell>
Various known technologies can be applied to the fuel cell to which the fuel cell wiring according to the present embodiment is connected. A fuel cell generally has a structure in which a plurality of unit cells are stacked. The basic configuration of the unit cell includes, for example, an electrolyte membrane, a pair of electrodes provided to sandwich the electrolyte membrane, a pair of separators provided to sandwich the electrodes, and an electrode. And a gasket for sealing the region.

一対の電極は、一方がアノード電極(燃料極)で、他方がカソード電極(空気極)となる。そして、これら一対の電極間で、電解質膜によってイオンの交換が行われることにより発電する仕組みである。また、アノード電極には燃料(通常、水素)が供給され、カソード電極には空気(酸素)と水が供給される。従って、これらが外部に漏れてしまわないように、ガスケットによって密封領域が形成される。   One of the pair of electrodes is an anode electrode (fuel electrode) and the other is a cathode electrode (air electrode). And it is the structure which generate | occur | produces electricity by exchanging ion by electrolyte membrane between these pair of electrodes. Further, fuel (usually hydrogen) is supplied to the anode electrode, and air (oxygen) and water are supplied to the cathode electrode. Therefore, a sealing region is formed by the gasket so that they do not leak to the outside.

このように構成された単電池の発電力は、一般的に0.7V程度である。そして、この単電池が複数積層されることで、導電材料からなるセパレータを介して、複数の単電池が直列に接続されるような構造となり、燃料電池全体で大きな発電力が得られる。   The power generation of the single battery configured in this way is generally about 0.7V. Then, by stacking a plurality of the single cells, a structure is obtained in which the plurality of single cells are connected in series via a separator made of a conductive material, and a large power generation is obtained in the entire fuel cell.

<燃料電池用配線取付構造の使用方法及び使用例>
本実施の形態に係る燃料電池用配線取付構造の使用方法や使用例について、図1を参照して説明する。本実施の形態に係る燃料電池用配線取付構造は、積層したセパレータ1の端面にクリップ部材2によって取り付けられて用いられる。複数のセパレータ1の端面にそれぞれフレキシブル配線材3の電極部(不図示)がクリップ部材2の押圧部4に押圧されることにより、セパレータ1の端面とフレキシブル配線材3の電極部がそれぞれ電気的に接続される。電極部は不図示であるが、一列に並んだ複数(図示10個)の押圧部4の真下にそれぞれ設けられている。
<Usage method and usage example of fuel cell wiring mounting structure>
The usage method and usage example of the fuel cell wiring mounting structure according to the present embodiment will be described with reference to FIG. The fuel cell wiring mounting structure according to the present embodiment is used by being attached to the end face of the laminated separator 1 by the clip member 2. When the electrode portions (not shown) of the flexible wiring material 3 are pressed against the end surfaces of the plurality of separators 1 by the pressing portions 4 of the clip member 2, the end surfaces of the separator 1 and the electrode portions of the flexible wiring material 3 are electrically connected to each other. Connected to. Although not shown, the electrode portions are provided directly below a plurality of (in the figure, 10) pressing portions 4 arranged in a line.

このように、各セパレータ1の端面にフレキシブル配線材3の電極部を電気的に接続させることで、各セパレータ1の電位を測定することができる。したがって、燃料電池の電圧が低下するなどの異常が生じた場合には、各セパレータ1の電位を測定することで、どこの部分に故障などの異常が発生しているかを検査することができる。なお、電位測定に限らず、温度センサなど、適宜のセンサにより、各種情報を検出することも可能である。   Thus, the electric potential of each separator 1 can be measured by electrically connecting the electrode portion of the flexible wiring member 3 to the end face of each separator 1. Therefore, when an abnormality such as a drop in the voltage of the fuel cell occurs, it is possible to inspect where a failure or other abnormality has occurred by measuring the potential of each separator 1. Note that not only potential measurement but also various information can be detected by an appropriate sensor such as a temperature sensor.

<燃料電池用配線取付構造の詳細>
積層したセパレータ1は、図示例では10枚重ね合わされたもので、その配置は水平や垂直に隣り合わせに並べられるものである。この積層したセパレータ1は、一対の絶縁体5に挟まれ、さらに一対の絶縁体5ごと一対の固定プレート6にて挟まれてボルト11とナット12にて固定されている。
<Details of fuel cell wiring mounting structure>
In the illustrated example, 10 stacked separators 1 are overlapped, and the arrangement thereof is arranged side by side horizontally or vertically. The laminated separator 1 is sandwiched between a pair of insulators 5 and further sandwiched between a pair of fixing plates 6 together with the pair of insulators 5 and fixed with bolts 11 and nuts 12.

フレキシブル配線材3は、可撓性を有する平面状の配線である。フレキシブル配線材3の具体的な好適例としては、フレキシブルプリンティッドサーキット(FPC)やフレキシブルフラットケーブル(FFC)を挙げることができる。   The flexible wiring member 3 is a planar wiring having flexibility. Specific preferred examples of the flexible wiring member 3 include a flexible printed circuit (FPC) and a flexible flat cable (FFC).

このフレキシブル配線材3は、絶縁基板としてのベースフィルムと、ベースフィルム上に形成される導電部としての電線と、電線を介してベースフィルムとは反対側に設けられるカバーフィルムと、から構成される。ベースフィルムとカバーフィルムはいずれも絶縁性と柔軟性を有しており、例えば、ポリイミド等の耐熱性樹脂材料により構成される。また、電線の材料として、例えば、銅を好適な例として挙げられるが、導電性を有する他の材料を適用することもできる。この電線はベースフィルム上に複数設けられる。   The flexible wiring member 3 includes a base film as an insulating substrate, an electric wire as a conductive portion formed on the base film, and a cover film provided on the opposite side of the base film via the electric wire. . Both the base film and the cover film have insulating properties and flexibility, and are made of, for example, a heat resistant resin material such as polyimide. Moreover, as a material of an electric wire, although copper is mentioned as a suitable example, for example, the other material which has electroconductivity is also applicable. A plurality of the electric wires are provided on the base film.

また、フレキシブル配線材3は、電線に接続された電極部を有する。電極部はセパレータ1の端面に当接されるべく、カバーフィルムに覆われずに、外部に露出されている。なお、電極部は、例えば、電線を金メッキされていることが好適な例として挙げられるが、導電性を有する他の材料を適用することもできる。この電極部は、背面をクリップ部材2の押圧部4で押圧されるようにしている。   Moreover, the flexible wiring material 3 has an electrode part connected to the electric wire. The electrode part is exposed to the outside without being covered with the cover film so as to be brought into contact with the end face of the separator 1. In addition, although the electrode part is mentioned as a suitable example that the electric wire is gold-plated, for example, the other material which has electroconductivity can also be applied. This electrode portion is configured such that the back surface is pressed by the pressing portion 4 of the clip member 2.

クリップ部材2は、積層した10枚のセパレータ1と同数の一列に並ぶ押圧部4が設けられた本体部2aと、本体部2aとはスリット7を介して隔てられ積層したセパレータ1の外側に係止される4本のアーム部2bと、を有する。   The clip member 2 includes a main body portion 2a provided with pressing portions 4 arranged in the same number of rows as the ten separators 1 stacked, and the main body portion 2a is separated from each other by the slits 7 and is connected to the outside of the stacked separators 1. And four arm portions 2b to be stopped.

本体部2aは、矩形の平板形状をしており、積層したセパレータ1の重なり方向に押圧部4を10個、一列に並べて配置している。これによって、フレキシブル配線材3の10個の電極部を各押圧部4で同時に押圧している。   The main body 2a has a rectangular flat plate shape, and 10 pressing portions 4 are arranged in a line in the overlapping direction of the stacked separators 1. As a result, the ten electrode portions of the flexible wiring member 3 are simultaneously pressed by the pressing portions 4.

また、アーム部2bは、本体部2aの中心付近に根本を有し、積層したセパレータ1の外側の絶縁体5の突起5aに係止され、積層したセパレータ1を挟み込む。このアーム部2bと本体部2aの間にスリット7が設けられている。このスリット7の形状は、複数の押圧部4の接点荷重が均一になるように調整されている。したがって、各押圧部4の接点荷重が均一になり、一部の押圧部4が押圧力を発揮できず接触不良となることが防止できる。   The arm portion 2b has a root in the vicinity of the center of the main body portion 2a, is locked to the protrusion 5a of the insulator 5 outside the stacked separator 1, and sandwiches the stacked separator 1 therebetween. A slit 7 is provided between the arm 2b and the main body 2a. The shape of the slit 7 is adjusted so that the contact loads of the plurality of pressing portions 4 are uniform. Therefore, the contact load of each pressing part 4 becomes uniform, and it is possible to prevent a part of the pressing parts 4 from exerting the pressing force and causing poor contact.

また、クリップ部材2の本体部2aは、本体部2aの複数の押圧部4が一列に並んだ両端に、フレキシブル配線材3をクリップ部材2に固定する固定部2cが設けられている。この2つの固定部2cは、ピン形状をしており、この固定部2cがフレキシブル配線材3に差し込まれ、差し込まれた部分がはんだ付けされることによってフレキシブル配線材3がクリップ部材2に固定されている。これによって、フレキシブル配線材3をクリップ部材2に固定して位置決めすることができ、フレキシブル配線材3の電極部が各セパレータ1からずれて接触することが防止できる。   Further, the main body 2a of the clip member 2 is provided with fixing portions 2c for fixing the flexible wiring member 3 to the clip member 2 at both ends where the plurality of pressing portions 4 of the main body 2a are aligned. The two fixing portions 2c have a pin shape. The fixing portion 2c is inserted into the flexible wiring member 3, and the inserted portion is soldered to fix the flexible wiring member 3 to the clip member 2. ing. Thereby, the flexible wiring material 3 can be fixed and positioned on the clip member 2, and the electrode portions of the flexible wiring material 3 can be prevented from being displaced from the separators 1.

そして、押圧部4は、図2に示すようにクリップ部材2の本体部2aに形成した板バネである。   And the press part 4 is a leaf | plate spring formed in the main-body part 2a of the clip member 2, as shown in FIG.

なお、押圧部4は、図3に示すように、クリップ部材2とは別体の弾性部材、例えばゴム状弾性体等で設けることもできる。図3のようにクリップ部材2とは別体で押圧部4を設けると、スリット7を設けていなくても各押圧部4の接点荷重が略均一となるので、図4のようにクリップ部材2にはスリット7を設けない構成も適用することができる。   As shown in FIG. 3, the pressing portion 4 can be provided by an elastic member separate from the clip member 2, for example, a rubber-like elastic body. If the pressing portion 4 is provided separately from the clip member 2 as shown in FIG. 3, the contact load of each pressing portion 4 becomes substantially uniform even if the slit 7 is not provided. Therefore, as shown in FIG. A configuration in which the slit 7 is not provided can also be applied.

これらの押圧部4によって、フレキシブル配線材3の複数の電極部が押圧され、複数の電極部がそれに対応するセパレータ1の端面にそれぞれ接触する。   The plurality of electrode portions of the flexible wiring member 3 are pressed by these pressing portions 4, and the plurality of electrode portions are in contact with the corresponding end surfaces of the separator 1.

<燃料電池用配線取付構造の取り付け方の説明>
フレキシブル配線材3と一体化したクリップ部材2のアーム部2bを突起5aに係止して、クリップ部材2が積層したセパレータ1を挟み込んで固定される。これによって、各押圧部4は、それぞれ異なるセパレータ1の端面に電極部を押圧し、全てのセパレータ1に各電極部が当接する。すなわち、クリップ部材2が積層したセパレータ1を挟み込んで固定される際の固定力を、押圧部4が電極部を接触するセパレータ1の端面へ押圧する押圧力に用いている。
<Explanation of fuel cell wiring mounting structure>
The arm portion 2b of the clip member 2 integrated with the flexible wiring member 3 is locked to the protrusion 5a, and the separator 1 on which the clip member 2 is stacked is sandwiched and fixed. Thereby, each pressing part 4 presses an electrode part to the end surface of a different separator 1, and each electrode part comes into contact with all the separators 1. That is, the fixing force when the clip member 2 is sandwiched and fixed is used as the pressing force that the pressing portion 4 presses against the end surface of the separator 1 that contacts the electrode portion.

このように、クリップ部材2が突起5aに係止されているので、押圧部4の押圧力は均一に常に発揮され、各電極部がセパレータ1に当接し続け、常にセパレータ1の電位を測定することができる。   Thus, since the clip member 2 is locked to the protrusion 5a, the pressing force of the pressing portion 4 is always exerted uniformly, and each electrode portion continues to contact the separator 1, and the potential of the separator 1 is always measured. be able to.

<本実施の形態に係る燃料電池用配線取付構造により得られる効果>
本実施の形態に係る燃料電池用配線取付構造によれば、クリップ部材2を積層したセパレータ1に係止するだけで、フレキシブル配線材3の複数の電極部を各セパレータ1の端面に同時に電気的に接続させることができる。そして、押圧部4によって、複数の電極部を各セパレータ1に押圧させるので、この電気的接続をより確実にすることができる。また、単一のフレキシブル配線材3及びクリップ部材2によって、複数のセパレータ1に対して、それぞれ電気的に接続させることができる。従って、配線の整理が簡潔になされ、セパレータ1にフレキシブル配線材3を簡単に接続させることができ、複数の独立した電線を各セパレータに接続させる場合に比べて、はるかに取付作業性及び取扱性が優れる。また、可撓性のある平面状のフレキシブル配線材3を燃料電池の外壁面に沿って設置できるため、フレキシブル配線材3の設置スペースも少なくて済む。フレキシブル配線材3の
電極部は、セパレータ1の端面に接触させるだけなので、セパレータ1間の密封領域内に手を施す必要がなく、密封性能への悪影響を抑制できる。
<Effect obtained by the fuel cell wiring mounting structure according to the present embodiment>
According to the fuel cell wiring mounting structure according to the present embodiment, the plurality of electrode portions of the flexible wiring material 3 are electrically connected to the end faces of the separators 1 at the same time by simply locking the clip member 2 to the separator 1 stacked thereon. Can be connected to. And since the some electrode part is pressed to each separator 1 by the press part 4, this electrical connection can be made more reliable. Further, the single flexible wiring member 3 and the clip member 2 can be electrically connected to the plurality of separators 1, respectively. Therefore, the arrangement of the wiring is simplified, the flexible wiring material 3 can be easily connected to the separator 1, and the mounting workability and handling are much higher than when a plurality of independent wires are connected to each separator. Is excellent. Further, since the flexible planar flexible wiring member 3 can be installed along the outer wall surface of the fuel cell, the installation space for the flexible wiring member 3 can be reduced. Since the electrode part of the flexible wiring material 3 is only brought into contact with the end face of the separator 1, it is not necessary to put a hand in the sealing region between the separators 1 and the adverse effect on the sealing performance can be suppressed.

本発明は、燃料電池用配線取付構造として用いられる。また、本発明は、クリップ部材とフレキシブル配線材とが一体化された配線取付構造が用いられる環境であればどのような産業分野でも用いることができる。   The present invention is used as a wiring mounting structure for a fuel cell. In addition, the present invention can be used in any industrial field as long as the wiring mounting structure in which the clip member and the flexible wiring material are integrated is used.

図1(a)は実施の形態に係る燃料電池用配線取付構造を示す上視図であり、図1(b)は図1(a)の平面図である。FIG. 1A is a top view showing a fuel cell wiring mounting structure according to the embodiment, and FIG. 1B is a plan view of FIG. 1A. 図2は実施の形態に係る押圧部を示す図である。FIG. 2 is a diagram illustrating a pressing portion according to the embodiment. 図3は実施の形態に係る押圧部の他の例を示す図である。FIG. 3 is a diagram illustrating another example of the pressing portion according to the embodiment. 図4は実施の形態に係る燃料電池用配線取付構造の他の例を示す上視図である。FIG. 4 is a top view showing another example of the fuel cell wiring mounting structure according to the embodiment.

符号の説明Explanation of symbols

1 セパレータ
2 クリップ部材
2a 本体部
2b アーム部
2c 固定部
3 フレキシブル配線材
4 押圧部
5 絶縁体
5a 突起
6 固定プレート
7 スリット
DESCRIPTION OF SYMBOLS 1 Separator 2 Clip member 2a Main part 2b Arm part 2c Fixing part 3 Flexible wiring material 4 Pressing part 5 Insulator 5a Protrusion 6 Fixing plate 7 Slit

Claims (5)

積層したセパレータの端面のそれぞれに接触する複数の電極部と該電極部からそれぞれの電気信号を導通する複数の導通部とを有するフレキシブル配線材と、
前記複数の電極部のそれぞれを各セパレータへ押圧する複数の押圧部を有し、前記積層したセパレータを挟み込んで固定されるクリップ部材と、
を備え、
前記クリップ部材が前記積層したセパレータを挟み込んで固定される際の固定力を、前記押圧部が前記電極部を接触するセパレータの端面へ押圧する押圧力に用いることを特徴とする燃料電池用配線取付構造。
A flexible wiring material having a plurality of electrode portions that contact each of the end faces of the laminated separator and a plurality of conductive portions that conduct respective electrical signals from the electrode portions;
A clip member that has a plurality of pressing portions that press each of the plurality of electrode portions to each separator, and is fixed by sandwiching the stacked separator;
With
A fuel cell wiring attachment, wherein a fixing force when the clip member is sandwiched and fixed between the stacked separators is used as a pressing force by which the pressing portion presses the end surface of the separator contacting the electrode portion. Construction.
前記押圧部は、前記クリップ部材に形成した板バネであることを特徴とする請求項1に記載の燃料電池用配線取付構造。   The fuel cell wiring mounting structure according to claim 1, wherein the pressing portion is a leaf spring formed on the clip member. 前記押圧部は、前記クリップ部材とは別体の弾性部材であることを特徴とする請求項1に記載の燃料電池用配線取付構造。   2. The fuel cell wiring mounting structure according to claim 1, wherein the pressing portion is an elastic member separate from the clip member. 3. 前記クリップ部材は、前記押圧部が設けられる本体部と、該本体部とはスリットを介して隔てられ前記積層したセパレータの外側に係止されるアーム部と、有し、
前記スリットの形状は、前記複数の押圧部の接点荷重が均一になるように調整されることを特徴とする請求項1〜3のいずれか1項に記載の燃料電池用配線取付構造。
The clip member has a main body portion provided with the pressing portion, and an arm portion that is separated from the main body portion via a slit and locked to the outside of the laminated separator,
The fuel cell wiring mounting structure according to any one of claims 1 to 3, wherein the shape of the slit is adjusted so that contact loads of the plurality of pressing portions are uniform.
前記本体部の前記複数の押圧部が並んだ両端に、前記フレキシブル配線材を前記クリップ部材に固定する固定部を設けたことを特徴とする請求項4に記載の燃料電池用配線取付構造。   The fuel cell wiring mounting structure according to claim 4, wherein fixing portions for fixing the flexible wiring material to the clip member are provided at both ends of the main body portion where the plurality of pressing portions are arranged.
JP2004110037A 2004-04-02 2004-04-02 Fuel cell wiring Expired - Fee Related JP4474976B2 (en)

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JP2008077933A (en) * 2006-09-20 2008-04-03 Hitachi Ltd Fuel cell
JP2009081060A (en) * 2007-09-26 2009-04-16 Nok Corp Wiring installation structure for fuel cell and wiring for fuel cell

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WO2002001659A1 (en) * 2000-06-27 2002-01-03 Nok Corporation Gasket for fuel cell
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JP2002367656A (en) * 2001-06-05 2002-12-20 Toyota Motor Corp Mounting structure of cell monitor
JP2003086205A (en) * 2001-09-11 2003-03-20 Toyota Motor Corp Cell voltage monitor part structure of fuel cell
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Publication number Priority date Publication date Assignee Title
WO2002001659A1 (en) * 2000-06-27 2002-01-03 Nok Corporation Gasket for fuel cell
JP2002358993A (en) * 2001-05-31 2002-12-13 Mitsubishi Electric Corp Laminated fuel cell and measuring method of cell voltage
JP2002367656A (en) * 2001-06-05 2002-12-20 Toyota Motor Corp Mounting structure of cell monitor
JP2003086205A (en) * 2001-09-11 2003-03-20 Toyota Motor Corp Cell voltage monitor part structure of fuel cell
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JP2008077933A (en) * 2006-09-20 2008-04-03 Hitachi Ltd Fuel cell
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JP2009081060A (en) * 2007-09-26 2009-04-16 Nok Corp Wiring installation structure for fuel cell and wiring for fuel cell

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