JP6047971B2 - Capacitor manufacturing method - Google Patents

Capacitor manufacturing method Download PDF

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JP6047971B2
JP6047971B2 JP2012159377A JP2012159377A JP6047971B2 JP 6047971 B2 JP6047971 B2 JP 6047971B2 JP 2012159377 A JP2012159377 A JP 2012159377A JP 2012159377 A JP2012159377 A JP 2012159377A JP 6047971 B2 JP6047971 B2 JP 6047971B2
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electrode foil
lead terminal
restraining jig
terminal
press
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JP2014022541A (en
JP2014022541A5 (en
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航太 福島
航太 福島
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Nippon Chemi Con 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
    • Y02E60/13Energy storage using capacitors

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Description

本発明は、電気二重層コンデンサ、電解コンデンサなどのコンデンサに関し、たとえばコンデンサ素子の引出し端子と電極箔との接続に冷間接続(コールドウエルド)法を用いたコンデンサの製造方法に関する。 The present invention is an electric double layer capacitor, relates capacitors such as electrolytic capacitor, a method of manufacturing a capacitor, for example using a cold connection (cold weld) method to connect to the lead-out terminals and the electrode foil of the capacitor element.

電解コンデンサ、電気二重層コンデンサなどのコンデンサに用いられるコンデンサ素子では、陽極側および陰極側の電極箔の間にセパレータを設置して巻回し、電解液を含浸させ、または、電極箔とセパレータを交互に積層し、電解液を含浸させている。陽極側の電極箔にはエッチング処理を経た箔に化成処理を施し、誘電体酸化皮膜が形成されている。陰極側の電極箔にはたとえば、エッチング処理された箔が用いられている。いずれの電極箔にも引出し端子が接続され、この引出し端子と電極箔との接続にはたとえば、冷間圧接が用いられる。冷間圧接は、重ね合わせた部材間を非加熱状態で圧接する方法である。   In capacitor elements used in capacitors such as electrolytic capacitors and electric double layer capacitors, a separator is placed between the anode and cathode electrode foils and wound to impregnate the electrolyte, or the electrode foils and separators are alternated. And impregnated with an electrolytic solution. The electrode foil on the anode side is subjected to a chemical conversion treatment on the foil that has undergone the etching treatment to form a dielectric oxide film. For the cathode side electrode foil, for example, an etched foil is used. A lead terminal is connected to any electrode foil, and for example, cold welding is used for connecting the lead terminal and the electrode foil. Cold pressure welding is a method of pressure welding the stacked members in a non-heated state.

冷間圧接法による接続では電極箔と引出し端子の接続部に押圧する金型に台形状の押圧面を持つ金型を使用することが知られている(たとえば、特許文献1、特許文献2)。
In the connection by the cold welding method, it is known to use a die having a trapezoidal pressing surface as a die that presses against a connection portion between an electrode foil and a lead terminal (for example, Patent Document 1 and Patent Document 2). .

特開平7−235453号公報JP 7-235453 A 特開2007−273645号公報JP 2007-273645 A

ところで、冷間圧接を用いた引出し端子と電極箔の接続では、平金型上に設置された引出し端子の上に電極箔を載せ、この電極箔の上から圧接金型を押圧する。電極箔は圧接金型と引出し端子との間に挟まれた状態となる。圧接金型の押圧により、圧接金型の先端部により電極箔および引出し端子の接合部が生成される。   By the way, in the connection between the extraction terminal and the electrode foil using the cold pressure welding, the electrode foil is placed on the extraction terminal installed on the flat mold, and the pressure welding mold is pressed from the electrode foil. The electrode foil is sandwiched between the pressure contact mold and the lead terminal. Due to the pressing of the press-contacting die, a joint portion of the electrode foil and the lead terminal is generated by the tip end portion of the press-contacting die.

圧接金型の押圧により、電極箔および引出し端子には圧接金型の先端形状に応じた変形を生じる。既述の接合部を中心に引出し端子には幅方向に金属流動を呈し、伸びを生じる。この伸びに追従し、電極箔には放射状方向の伸びを生じる。このように伸びが生じた部分では、電極箔と引出し端子の接続が不完全となるという課題がある。   Due to the pressing of the press contact mold, the electrode foil and the lead terminal are deformed according to the tip shape of the press contact mold. The lead terminal exhibits a metal flow in the width direction around the above-described joint and causes elongation. Following this elongation, the electrode foil is elongated in the radial direction. Thus, in the part where elongation has occurred, there is a problem that the connection between the electrode foil and the lead terminal becomes incomplete.

一方接合部では電極箔と引出し端子とが固定される。接合部を中心として伸びた電極箔には薄化を生じる。電極箔は引出し端子に比較して薄く、伸びによる薄化は電極箔を脆弱化し、引出し端子と電極箔との接続強度を低下させるという課題がある。   On the other hand, the electrode foil and the lead terminal are fixed at the joint. Thinning occurs in the electrode foil extending around the joint. The electrode foil is thinner than the lead terminal, and thinning due to elongation weakens the electrode foil, and there is a problem that the connection strength between the lead terminal and the electrode foil is lowered.

そこで、本発明の目的は、上記課題に鑑み、加圧による引出し端子の伸びを抑制し、電極箔の伸びおよび脆弱化を防止することにある。
Therefore, in view of the above problems, an object of the present invention is to suppress the elongation of the lead terminal due to pressurization and prevent the electrode foil from being elongated and weakened.

上記目的を達成するため、本発明のコンデンサの製造方法は、電極箔に接続される引出し端子の少なくとも側面に、該側面との間に前記引出し端子の変形を許容するとともに、所望の許容変形量以上の変形を防止する空間部を持つ拘束治具を設置する工程と、前記引出し端子と前記電極箔とを重ねる工程と、前記電極箔の上から圧接金型を押し付け、前記拘束治具の前記空間部への変形を許容させて前記引出し端子と前記電極箔とを接続する工程とを含んでいる。 In order to achieve the above object, the capacitor manufacturing method of the present invention allows at least the side surface of the extraction terminal connected to the electrode foil to allow deformation of the extraction terminal between the side surface and a desired allowable deformation amount. A step of installing a restraining jig having a space for preventing the above deformation, a step of overlapping the extraction terminal and the electrode foil, pressing a press-contact mold from the top of the electrode foil, and A step of allowing the deformation to the space portion and connecting the lead terminal and the electrode foil.

記コンデンサの製造方法において、前記拘束治具は前記引出し端子と接触する面部に単一または複数の凸部を備え、該面部に前記引出し端子を配置する工程と、前記引出し端子に前記電極箔を重ねる工程と、前記電極箔の上から圧接金型を押し付けて前記引出し端子と前記電極箔とを接続する工程とを含んでよい
In the method for manufacturing the above Kiko capacitor, the constraining jig is provided with protrusions single or multiple in surface contact with the lead terminal, placing said lead terminal to the surface, the electrode on the lead terminal A step of stacking the foils and a step of pressing the pressure contact mold from above the electrode foil to connect the lead terminal and the electrode foil may be included.

記コンデンサの製造方法において、引出し端子と接触する面部に単一または複数の凸部を備え、該面部に前記引出し端子を配置する工程と、前記引出し端子に前記電極箔を重ねる工程と、記引出し端子に圧接金型を押し付けて前記引出し端子に前記圧接金型による凹部および前記拘束治具の前記凸部による凹部を形成してもよい。
In the method for manufacturing the above Kiko capacitor, a step of superimposing comprises a single or a plurality of projections on surface portions in contact with the lead terminal, placing said lead terminal to the surface, the electrode foil to the lead terminal, recesses by the pressure die to the lead terminals against the press mold prior Symbol lead-out terminals, and may be formed concave by the convex portions of the restraining jig.

上記コンデンサの製造方法において、さらに、前記拘束治具の前記凸部は、前記引出し端子の軸方向の端部に形成してもよい。
In the method for manufacturing a capacitor, the convex portion of the restraining jig may be formed at an end portion in the axial direction of the lead terminal.

本発明によれば、次のような効果が得られる。   According to the present invention, the following effects can be obtained.

(1) 引出し端子の伸びが抑制され、電極箔の伸びを防止できる。   (1) The extension of the lead terminal is suppressed, and the extension of the electrode foil can be prevented.

(2) 伸びによる電極箔の脆弱化を防止でき、引出し端子との接続強度を高めることができる。   (2) The weakening of the electrode foil due to elongation can be prevented, and the connection strength with the lead terminal can be increased.

(3) 電極箔の伸び、脆弱化を防止でき、引出し端子との接続強度が高められることにより、信頼性の高いコンデンサを製造することができる。   (3) A highly reliable capacitor can be manufactured by preventing elongation and weakening of the electrode foil and increasing the connection strength with the lead terminal.

そして、本発明の他の目的、特徴および利点は、添付図面および各実施の形態を参照することにより、一層明確になるであろう。
Other objects, features, and advantages of the present invention will become clearer with reference to the accompanying drawings and each embodiment.

第1の実施の形態に係る引出し端子および拘束治具の一例を示す図である。It is a figure which shows an example of the extraction terminal and restraint jig which concern on 1st Embodiment. 引出し端子と電極箔の接続を示す図である。It is a figure which shows the connection of an extraction terminal and electrode foil. 第2の実施の形態に係る引出し端子と電極箔の接続を示す図である。It is a figure which shows the connection of the extraction terminal and electrode foil which concern on 2nd Embodiment. 拘束治具の変形例を示す斜視図である。It is a perspective view which shows the modification of a restraining jig | tool. 第3の実施の形態に係る引出し端子の予備成形および引出し端子と電極箔の接続の一例を示す断面図である。It is sectional drawing which shows an example of the preforming of the extraction terminal which concerns on 3rd Embodiment, and the connection of an extraction terminal and electrode foil. 第4の実施の形態に係る引出し端子の予備成形および引出し端子と電極箔の接続の一例を示す断面図である。It is sectional drawing which shows an example of the preforming of the extraction terminal which concerns on 4th Embodiment, and the connection of an extraction terminal and electrode foil. 第5の実施の形態に係る引出し端子の予備成形および引出し端子と電極箔の接続の一例を示す断面図である。It is sectional drawing which shows an example of the preforming of the extraction terminal which concerns on 5th Embodiment, and the connection of an extraction terminal and electrode foil.

〔第1の実施の形態〕 [First Embodiment]

図1のAおよびBは、第1の実施の形態に係る引出し端子および拘束治具を示している。図1のBは、図1のAのIB−IB線で切断した断面を示している。   1A and 1B show a lead terminal and a restraining jig according to the first embodiment. FIG. 1B shows a cross section taken along line IB-IB in FIG.

引出し端子2はコンデンサ素子の電極箔4(図2のB)に接続される。この引出し端子2には電極箔4に圧接接続される偏平部2−1を備えている。この偏平部2−1の軸線方向には本体部2−2およびリード部2−3を備えている。偏平部2−1および本体部2−2は電極箔4と同一の金属材料で形成されている。リード部2−3は半田付け可能な金属材料であり、本体部2−2より細く溶接により本体部2−2に接続されている。   The lead terminal 2 is connected to the electrode foil 4 (B in FIG. 2) of the capacitor element. The lead terminal 2 is provided with a flat portion 2-1 that is press-connected to the electrode foil 4. A main body portion 2-2 and a lead portion 2-3 are provided in the axial direction of the flat portion 2-1. The flat part 2-1 and the main body part 2-2 are made of the same metal material as the electrode foil 4. The lead portion 2-3 is a solderable metal material and is thinner than the main body portion 2-2 and connected to the main body portion 2-2 by welding.

偏平部2−1はたとえば、幅W1、長さL1、厚さD1を持つ偏平な直方体状である。この偏平部2−1は、電極箔4との接続に際し、図1のBに示すように、拘束治具6に配置される。   The flat part 2-1 is, for example, a flat rectangular parallelepiped shape having a width W1, a length L1, and a thickness D1. The flat part 2-1 is arranged on the restraining jig 6 as shown in FIG. 1B when connecting to the electrode foil 4.

拘束治具6は、平坦な底部6−1、コ字形の側壁部6−2とを備えている。底部6−1および側壁部6−2により、キャビティ8が形成されている。このキャビティ8は上面側が開放されているとともに、引出し端子2の偏平部2−1を挿入するための開口部6−3が形成されている。キャビティ8は、挿入される偏平部2−1に対し、幅W2、長さL2、深さD2を備えている。幅W2、長さL2、深さD2と幅W1、長さL1、厚さD1はたとえば、次の通りである。
W2>W1、L2>L1、D2≠D1
The restraining jig 6 includes a flat bottom 6-1 and a U-shaped side wall 6-2. A cavity 8 is formed by the bottom portion 6-1 and the side wall portion 6-2. The cavity 8 is open on the upper surface side, and has an opening 6-3 for inserting the flat portion 2-1 of the lead terminal 2. The cavity 8 has a width W2, a length L2, and a depth D2 with respect to the flat part 2-1. For example, the width W2, the length L2, the depth D2 and the width W1, the length L1, and the thickness D1 are as follows.
W2> W1, L2> L1, D2 ≠ D1

幅W1、W2および長さL1、L2には、W2−W1=ΔW、L2−L1=ΔLの関係がある。ΔW/2およびΔLをたとえば、ΔW/2=ΔL(すなわち、ΔW=2×ΔL)に設定する。図1のAに示すように、拘束治具6の開口部6−3の開口縁部の近傍に偏平部2−1の本体部2−2の縁部を配置すると、キャビティ8の内壁と偏平部2−1との間には、引出し端子2の変形を許容する幅ΔW/2(=ΔL)の空間部10が設定される。この空間部10が偏平部2−1の伸びの許容幅を構成する。図中、矢印は偏平部2−1の伸び方向を示している。また、破線は電極箔4との圧接接続部12を示している。   The widths W1 and W2 and the lengths L1 and L2 have a relationship of W2−W1 = ΔW and L2−L1 = ΔL. For example, ΔW / 2 and ΔL are set to ΔW / 2 = ΔL (that is, ΔW = 2 × ΔL). As shown in FIG. 1A, when the edge portion of the main body portion 2-2 of the flat portion 2-1 is disposed in the vicinity of the opening edge portion of the opening portion 6-3 of the restraining jig 6, the flat wall and the inner wall of the cavity 8 are flattened. A space portion 10 having a width ΔW / 2 (= ΔL) allowing deformation of the lead terminal 2 is set between the portion 2-1 and the portion 2-1. This space portion 10 constitutes an allowable width for the extension of the flat portion 2-1. In the figure, the arrow indicates the extending direction of the flat part 2-1. Moreover, the broken line has shown the press-contact connection part 12 with the electrode foil 4. FIG.

<製造工程> <Manufacturing process>

図2のAおよびBは、コンデンサの製造工程の一例を示している。この製造工程は、本発明のコンデンサの製造方法の一例である。   2A and 2B show an example of a manufacturing process of a capacitor. This manufacturing process is an example of a method for manufacturing a capacitor of the present invention.

図2のAに示すように、拘束治具6のキャビティ8に引出し端子2の偏平部2−1を設置する。この偏平部2−1に電極箔4を被せ、電極箔4は偏平部2−1と直交方向に配置する。電極箔4はアルミニウムなどの地金部4−1の表面に、エッチング層や誘電体酸化皮膜などの処理層4−2を備えている。   As shown in FIG. 2A, the flat part 2-1 of the lead terminal 2 is installed in the cavity 8 of the restraining jig 6. The flat portion 2-1 is covered with the electrode foil 4, and the electrode foil 4 is arranged in a direction orthogonal to the flat portion 2-1. The electrode foil 4 is provided with a treatment layer 4-2 such as an etching layer or a dielectric oxide film on the surface of a bare metal portion 4-1 such as aluminum.

図2のBに示すように、電極箔4の上面に配置した一対の圧接金型14を電極箔4および偏平部2−1に押し付け、両者の圧接接続を行う。圧接金型14には先端に球形部16が形成され、この球形部16と柱状部18との間には円錐状部20が形成されている。   As shown to B of FIG. 2, a pair of press-contact metal mold | die 14 arrange | positioned on the upper surface of the electrode foil 4 is pressed on the electrode foil 4 and the flat part 2-1, and both press-contact connection is performed. A spherical portion 16 is formed at the tip of the press-contacting die 14, and a conical portion 20 is formed between the spherical portion 16 and the columnar portion 18.

このような圧接金型14を電極箔4および偏平部2−1に圧接すると、図2のCに示すように、電極箔4および偏平部2−1は冷間圧接法により拘束治具6のキャビティ8内で接続される。この接続により偏平部2−1は、幅方向に金属流動を生じ成形される。   When such a press-contacting die 14 is pressed against the electrode foil 4 and the flat part 2-1, as shown in FIG. 2C, the electrode foil 4 and the flat part 2-1 are formed by the cold press-contacting method. Connected in the cavity 8. By this connection, the flat portion 2-1 is formed by causing a metal flow in the width direction.

この実施の形態では、拘束治具6の側壁部6−2と偏平部2−1との間に空間部10が形成されている。このため、押圧された偏平部2−1は、空間部10側に広がり、金属流動を生じる。このような空間部10への縦横方向への金属流動により、偏平部2−1の長手方向のみの伸びが防止される。この結果、引出し端子2と電極箔4との接続強度が高められる。   In this embodiment, a space portion 10 is formed between the side wall portion 6-2 and the flat portion 2-1 of the restraining jig 6. For this reason, the pressed flat part 2-1 spreads to the space part 10 side, and a metal flow is produced. Due to the metal flow in the vertical and horizontal directions to the space portion 10 as described above, the flat portion 2-1 is prevented from extending only in the longitudinal direction. As a result, the connection strength between the lead terminal 2 and the electrode foil 4 is increased.

このように引出し端子2の偏平部2−1の内面部に伸びを許容する空間部10を設けることにより、金属流動による偏平部2−1の変形量が均一化され、偏平部2−1の伸び(変形)が本体部2−2側への方向のみに偏ることがない。偏平部2−1の側面部側への変形は、拘束治具6の側壁部6−2により拘束されるので、その許容変形量以上の変形が防止される。また、この偏平部2−1側への伸びにより、偏平部2−1の本体部2−2方向への変形が低減される。これにより、拘束治具6を使用した場合に引出し端子2の本体部2−2やリード部2−3への伸びや変形による電極箔4の割れを抑えることができる。   In this way, by providing the space portion 10 that allows extension to the inner surface of the flat portion 2-1 of the lead terminal 2, the deformation amount of the flat portion 2-1 due to metal flow is made uniform, and the flat portion 2-1 The elongation (deformation) is not biased only in the direction toward the main body 2-2. Since the deformation of the flat part 2-1 toward the side surface part is restrained by the side wall part 6-2 of the restraining jig 6, the deformation exceeding the allowable deformation amount is prevented. Moreover, the deformation | transformation to the main-body-part 2-2 direction of the flat part 2-1 is reduced by extension to this flat part 2-1. Thereby, when the restraining jig 6 is used, the crack of the electrode foil 4 due to the extension or deformation of the lead terminal 2 to the main body part 2-2 or the lead part 2-3 can be suppressed.

〔第2の実施の形態〕 [Second Embodiment]

図3のAは、第2の実施の形態に係る引出し端子2を示している。図3のBは、電極箔4を省略した引出し端子2の成形状態を示している。   FIG. 3A shows the lead terminal 2 according to the second embodiment. B of FIG. 3 shows a molded state of the extraction terminal 2 from which the electrode foil 4 is omitted.

引出し端子2の偏平部2−1には、図3のAに示すように、圧接金型14の押圧位置を避けて円形の貫通部22が形成されている。このような貫通部22を備える偏平部2−1に電極箔4を重ね、既述の圧接金型14を押し付け、圧接接続を行う。   In the flat part 2-1 of the lead terminal 2, as shown in A of FIG. 3, a circular through part 22 is formed avoiding the pressing position of the press contact mold 14. The electrode foil 4 is overlapped on the flat part 2-1 having such a through part 22, and the above-described press contact mold 14 is pressed to perform press contact connection.

この圧接金型14の圧接時、偏平部2−1に生じる金属の伸び(金属流動)が貫通部22の空間側に生じる。つまり、貫通部22は金属流動の逃げ部として機能する。   At the time of press-contact of the press-contacting die 14, metal elongation (metal flow) generated in the flat portion 2-1 occurs on the space side of the through-hole 22. That is, the penetrating portion 22 functions as a metal flow escape portion.

このように引出し端子2の偏平部2−1の内面部に伸びを許容する部分を設けることにより、本体部2−2側への伸び(変形)が低減される。これにより、拘束治具6を使用した場合に引出し端子2の本体部2−2やリード部2−3への伸びや変形が低減され、電極箔4の割れを抑えることができる。   In this way, by providing the inner surface portion of the flat portion 2-1 of the lead terminal 2 with a portion that allows elongation, elongation (deformation) toward the main body portion 2-2 is reduced. Thereby, when the restraining jig 6 is used, the extension and deformation of the lead terminal 2 to the main body part 2-2 and the lead part 2-3 are reduced, and cracking of the electrode foil 4 can be suppressed.

拘束治具6を用いれば、引出し端子2の側面側への金属流動を制限し、引出し端子2の伸びや変形を抑制することができる。この引出し端子2の伸びに関し、引出し端子2の金属流動は拘束治具6で拘束されない本体部2−2やリード部2−3側への側へ逃げや変形を阻止できる。引出し端子2の伸びや変形に電極箔4が追従すると、電極箔4に伸びや薄肉部が生じる場合がある。これが原因で引出し端子2の本体部2−2側で電極箔4に割れを生じる場合がある。第2の実施の形態は斯かる不都合を回避することができる。   If the restraining jig 6 is used, the metal flow to the side surface side of the extraction terminal 2 can be restricted, and the extension and deformation of the extraction terminal 2 can be suppressed. With respect to the extension of the lead terminal 2, the metal flow of the lead terminal 2 can be prevented from escaping or deforming to the side of the main body part 2-2 or the lead part 2-3 that is not restrained by the restraining jig 6. When the electrode foil 4 follows the elongation or deformation of the lead terminal 2, the electrode foil 4 may be stretched or thin. This may cause cracks in the electrode foil 4 on the main body part 2-2 side of the lead terminal 2. The second embodiment can avoid such inconvenience.

<拘束治具6> <Restraining jig 6>

図4のA、BおよびCは、拘束治具6の内形状を示している。図4のAに示す拘束治具6では、平坦な底部6−1に凸部24−1、24−2が形成されている。凸部24−1は開口部6−3側に側壁部6−2に跨がって形成されている。凸部24−2は開口部6−3と反対側の側壁部6−2間に形成されている。   4A, 4B, and 4C show the inner shape of the restraining jig 6. FIG. In the restraining jig 6 shown in FIG. 4A, convex portions 24-1 and 24-2 are formed on the flat bottom portion 6-1. The convex portion 24-1 is formed on the opening 6-3 side so as to straddle the side wall portion 6-2. The convex part 24-2 is formed between the side wall part 6-2 opposite to the opening part 6-3.

図4のBに示す拘束治具6では、拘束治具6の底部6−1に凸部24−1、24−2(図4のA)に加え、底部6−1の中間部の凸部24−3が側壁部6−2に跨がって形成されている。つまり、拘束治具6には底部6−1を側壁部6−2および凸部24−1、24−3で包囲する拘束凹部、底部6−1を側壁部6−2および凸部24−2、24−3で包囲する拘束凹部が形成されている。   In the restraining jig 6 shown in FIG. 4B, in addition to the convex portions 24-1 and 24-2 (A in FIG. 4) on the bottom portion 6-1 of the restraining jig 6, the convex portion at the intermediate portion of the bottom portion 6-1. 24-3 is formed across the side wall 6-2. In other words, the restraining jig 6 includes a restraining concave portion that surrounds the bottom portion 6-1 with the side wall portion 6-2 and the convex portions 24-1 and 24-3, and the bottom portion 6-1 with the side wall portion 6-2 and the convex portion 24-2. , 24-3 is formed.

図4のCに示す拘束治具6では、拘束治具6の底部6−1に凸部26−1、26−2が形成されている。各凸部26−1、26−2は、圧接金型14の各押圧位置に形成されている。   In the restraining jig 6 shown in FIG. 4C, convex portions 26-1 and 26-2 are formed on the bottom 6-1 of the restraining jig 6. Each convex portion 26-1, 26-2 is formed at each pressing position of the press contact mold 14.

〔第3の実施の形態〕 [Third Embodiment]

第3の実施の形態では、図4のAに示す拘束治具6を用いることにより、引出し端子2の予備成形の後、電極箔4との冷間接続が行われている。図5のAは、第3の実施の形態に係る引出し端子2の予備成形を示している。図5のBは引出し端子2と電極箔4との接続を示している。   In the third embodiment, by using the restraining jig 6 shown in FIG. 4A, after the preforming of the lead terminal 2, the cold connection with the electrode foil 4 is performed. FIG. 5A shows preforming of the lead terminal 2 according to the third embodiment. FIG. 5B shows the connection between the lead terminal 2 and the electrode foil 4.

拘束治具6には引出し端子2の偏平部2−1が載せられ、この偏平部2−1の上面には上側拘束治具28が設置されている。この上側拘束治具28には圧接金型14を貫通させる貫通孔30が形成されている。各貫通孔30から圧接金型14を拘束治具6上の偏平部2−1に押し付けると、偏平部2−1には圧接金型14により凹部32が成形される。この実施の形態では、圧接金型14の先端部が半球形である。これにより、凹部32は半球形の窪みに成形される。   A flat part 2-1 of the lead terminal 2 is placed on the restraining jig 6, and an upper restraining jig 28 is installed on the upper surface of the flat part 2-1. The upper restraining jig 28 is formed with a through-hole 30 through which the press-contacting mold 14 passes. When the press contact mold 14 is pressed from each through hole 30 against the flat portion 2-1 on the restraining jig 6, a recess 32 is formed in the flat portion 2-1 by the press contact mold 14. In this embodiment, the tip end portion of the press contact mold 14 is hemispherical. Thereby, the recessed part 32 is shape | molded by the hemispherical hollow.

このような偏平部2−1の予備成形の後、偏平部2−1の上面には電極箔4が載せられ、冷間圧接処理が行われる。この圧接処理には既述の圧接金型14が用いられる。偏平部2−1上の電極箔4の上面には上側拘束治具28が設置される。予備成形と同様に各貫通孔30から圧接金型14を偏平部2−1上の電極箔4に押し付ける。これにより、偏平部2−1にある凹部32に沿って電極箔4が押圧により成形され、凹部32の内面に圧接された電極箔4と引出端子2の偏平部2−1とが冷間圧接により接続される。   After preforming the flat part 2-1, the electrode foil 4 is placed on the upper surface of the flat part 2-1, and a cold welding process is performed. The aforementioned pressure welding mold 14 is used for this pressure welding processing. An upper restraining jig 28 is installed on the upper surface of the electrode foil 4 on the flat part 2-1. Similar to the pre-molding, the press contact mold 14 is pressed from the through holes 30 against the electrode foil 4 on the flat part 2-1. Thereby, the electrode foil 4 is formed by pressing along the concave portion 32 in the flat portion 2-1, and the electrode foil 4 pressed against the inner surface of the concave portion 32 and the flat portion 2-1 of the extraction terminal 2 are cold-welded. Connected by

このような予備成形、冷間圧接では、拘束治具6に凸部24−1、24−2を備えているので、引出し端子2の偏平部2−1が拘束治具6の開口部6−3側への金属流動を抑制することができる。この冷間圧接では、引出し端子2を凸部24−1、24−2に載置するので、凸部24−1と24−2に空間が生じる。この空間に金属流動により変形した引出し端子2が収納される。このため、引出し端子2の幅方向および軸方向(本体部2−2方向)への偏平部2−1の金属流動を低減することができる。また、凸部24−1により、拘束治具6の開口部6−3側への偏平部2−1の金属流動を抑制でき、拘束治具6の開口部6−3側への電極箔4の伸びや変形を防止できる。この結果、引出端子2と電極箔4との接続強度を高めることができる。さらに、凸部24−1、24−2により、圧接金型14による押圧力が凹部32に向かう反発力として電極箔4側に作用し、これが電極箔4と引出し端子2との接続強度の増加に寄与する。   In such preforming and cold welding, since the restraining jig 6 is provided with the convex portions 24-1 and 24-2, the flat part 2-1 of the lead terminal 2 is the opening 6-6 of the restraining jig 6. The metal flow to the 3 side can be suppressed. In this cold welding, since the lead-out terminal 2 is mounted on the convex portions 24-1 and 24-2, space is generated in the convex portions 24-1 and 24-2. The drawer terminal 2 deformed by the metal flow is accommodated in this space. For this reason, the metal flow of the flat part 2-1 to the width direction and axial direction (main-body part 2-2 direction) of the drawer terminal 2 can be reduced. Moreover, the metal flow of the flat part 2-1 to the opening part 6-3 side of the restraining jig 6 can be suppressed by the convex part 24-1, and the electrode foil 4 to the opening part 6-3 side of the restraining jig 6 can be suppressed. Can be prevented from stretching or deforming. As a result, the connection strength between the lead terminal 2 and the electrode foil 4 can be increased. Further, due to the convex portions 24-1 and 24-2, the pressing force by the pressure welding die 14 acts on the electrode foil 4 side as a repulsive force toward the concave portion 32, which increases the connection strength between the electrode foil 4 and the extraction terminal 2. Contribute to.

この実施の形態では上側拘束治具28を備えているので、予備成形では引出端子2の上側への変形を防止でき、冷間圧接では引出端子2および電極箔4の上側への変形を防止する。   In this embodiment, since the upper restraint jig 28 is provided, the preforming can prevent the lead terminal 2 from being deformed to the upper side, and the cold press welding can prevent the lead terminal 2 and the electrode foil 4 from being deformed to the upper side. .

〔第4の実施の形態〕 [Fourth Embodiment]

第4の実施の形態では、図4のBに示す拘束治具6を用いることにより、引出し端子2の予備成形の後、電極箔4との冷間接続が行われている。図6のAは、第4の実施の形態に係る引出し端子2の予備成形を示している。図6のBは引出し端子2と電極箔4との接続を示している。図6において、図5と同一部分には同一符号を付してある。   In the fourth embodiment, by using the restraining jig 6 shown in FIG. 4B, after the lead terminal 2 is preformed, the cold connection with the electrode foil 4 is performed. FIG. 6A shows preforming of the lead terminal 2 according to the fourth embodiment. FIG. 6B shows the connection between the lead terminal 2 and the electrode foil 4. In FIG. 6, the same parts as those in FIG.

第3の実施の形態と同様に、拘束治具6には引出し端子2の偏平部2−1が載せられ、この偏平部2−1の上面には上側拘束治具28が設置されている。この上側拘束治具28には圧接金型14を貫通させる貫通孔30が形成されている。各貫通孔30から圧接金型14を拘束治具6上の偏平部2−1に圧接すると、偏平部2−1には圧接金型14により凹部32が成形される。この実施の形態では、圧接金型14の先端部が半球形である。これにより、凹部32は半球形の窪みに成形される。これらの事項は第3の実施の形態と同様である。   Similar to the third embodiment, a flat part 2-1 of the lead terminal 2 is placed on the restraining jig 6, and an upper restraining jig 28 is provided on the upper surface of the flat part 2-1. The upper restraining jig 28 is formed with a through-hole 30 through which the press-contacting mold 14 passes. When the press contact mold 14 is pressed from each through hole 30 to the flat portion 2-1 on the restraining jig 6, a recess 32 is formed in the flat portion 2-1 by the press contact mold 14. In this embodiment, the tip end portion of the press contact mold 14 is hemispherical. Thereby, the recessed part 32 is shape | molded by the hemispherical hollow. These matters are the same as in the third embodiment.

第4の実施の形態では、中間に凸部24−3が備えられているので、この凸部24−3により成形される偏平部2−1の金属流動が抑制される。   In 4th Embodiment, since the convex part 24-3 is provided in the middle, the metal flow of the flat part 2-1 shape | molded by this convex part 24-3 is suppressed.

偏平部2−1の予備成形の後、偏平部2−1の上面には電極箔4が載せられ、冷間圧接処理が行われる。この圧接処理には既述の圧接金型14が用いられる。偏平部2−1上の電極箔4の上面には上側拘束治具28が設置される。予備成形と同様に各貫通孔30から圧接金型14を偏平部2−1上の電極箔4に圧接する。これにより、偏平部2−1にある凹部32に沿って電極箔4が成形され、凹部32の内面に圧接された電極箔4と凹部32内で引出端子2の偏平部2−1とが冷間圧接により接続される。   After the preforming of the flat part 2-1, the electrode foil 4 is placed on the upper surface of the flat part 2-1, and a cold welding process is performed. The aforementioned pressure welding mold 14 is used for this pressure welding processing. An upper restraining jig 28 is installed on the upper surface of the electrode foil 4 on the flat part 2-1. Similar to the pre-molding, the press-contacting die 14 is pressed into contact with the electrode foil 4 on the flat part 2-1 from each through hole 30. As a result, the electrode foil 4 is formed along the concave portion 32 in the flat portion 2-1, and the flat portion 2-1 of the lead terminal 2 in the concave portion 32 is cooled by the electrode foil 4 pressed against the inner surface of the concave portion 32. Connected by intermediate pressure welding.

このような予備成形および冷間圧接では、引出し端子2を凸部24−1、24−2、24−3に載置し、凸部24−1と凸部24−3の間、凸部24−2と凸部24−3の間のそれぞれに空間を生じさせている。各空間には金属流動により変形した引出し端子2が収納される。このため、引出し端子2の幅方向および軸方向(本体部2−2方向)への金属流動を低減させることができる。凸部24−1により、引出し端子2の偏平部2−1が拘束治具6の開口部6−3側への金属流動を抑制させることができる。また、各圧接金型14毎に金属流動が抑えられる。電極箔4の伸びや変形を防止できる。この結果、引出端子2と電極箔4との接続強度を高めることができる。   In such preforming and cold welding, the lead-out terminal 2 is placed on the convex portions 24-1, 24-2, 24-3, and the convex portion 24 is interposed between the convex portions 24-1 and 24-3. -2 and a space between the convex portions 24-3. Each space accommodates a lead terminal 2 deformed by metal flow. For this reason, the metal flow to the width direction and axial direction (main-body part 2-2 direction) of the drawer terminal 2 can be reduced. The flat portion 2-1 of the lead terminal 2 can suppress the metal flow to the opening 6-3 side of the restraining jig 6 by the convex portion 24-1. Further, metal flow is suppressed for each press-contact mold 14. The elongation and deformation of the electrode foil 4 can be prevented. As a result, the connection strength between the lead terminal 2 and the electrode foil 4 can be increased.

この実施の形態においても、上側拘束治具28を備えているので、予備成形では引出端子2の上側への変形を防止でき、冷間圧接では引出端子2および電極箔4の上側への変形を防止する。   Also in this embodiment, since the upper restraining jig 28 is provided, it is possible to prevent the lead terminal 2 from being deformed to the upper side in the preforming, and in the cold welding, the lead terminal 2 and the electrode foil 4 are to be deformed to the upper side. To prevent.

この実施の形態では引出し端子2と電極箔4との圧接接続部12を囲むように引出し端子2を成形するので、金属流動による引出し端子2の長さ方向への変形を防止できる。これにより、電極箔4の引出し端子2の本体部2−2への伸びが防止され、電極箔4に脆弱部が形成されることを防止できる。   In this embodiment, since the extraction terminal 2 is formed so as to surround the press-contact connection portion 12 between the extraction terminal 2 and the electrode foil 4, deformation of the extraction terminal 2 in the length direction due to metal flow can be prevented. Thereby, extension to the main-body part 2-2 of the extraction terminal 2 of the electrode foil 4 is prevented, and it can prevent that a weak part is formed in the electrode foil 4. FIG.

圧接接続部12が各凸部24−1、24−2、24−3によって包囲されるので、圧接接続部12の周辺部の引出し端子2の金属流動を抑制できる。また、押圧力を各凸部24−1、24−2、24−3が受けると、各凸部24−1、24−2、24−3に反発力を生じ、この反発力と既述の押圧力とで電極箔4と引出し端子2が挟み込まれて圧接されるので、電極箔4と引出し端子2との接続強度を高めることができる。   Since the press-connecting portion 12 is surrounded by the convex portions 24-1, 24-2, and 24-3, the metal flow of the lead terminal 2 in the peripheral portion of the press-connecting portion 12 can be suppressed. Moreover, if each convex part 24-1, 24-2, 24-3 receives pressing force, a repulsive force will be produced in each convex part 24-1, 24-2, 24-3, and this repulsive force and above-mentioned are mentioned. Since the electrode foil 4 and the extraction terminal 2 are sandwiched and pressed by the pressing force, the connection strength between the electrode foil 4 and the extraction terminal 2 can be increased.

〔第5の実施の形態〕 [Fifth Embodiment]

第5の実施の形態では、図4のCに示す拘束治具6を用いることにより、引出し端子2の予備成形の後、電極箔4との冷間接続が行われている。図7のAは、第5の実施の形態に係る引出し端子2の予備成形を示している。図7のBは引出し端子2と電極箔4との接続を示している。図7において、図6と同一部分には同一符号を付してある。   In the fifth embodiment, by using the restraining jig 6 shown in FIG. 4C, after the preforming of the lead terminal 2, the cold connection with the electrode foil 4 is performed. FIG. 7A shows preforming of the lead terminal 2 according to the fifth embodiment. FIG. 7B shows the connection between the lead terminal 2 and the electrode foil 4. In FIG. 7, the same parts as those in FIG.

第3および第4の実施の形態と同様に、拘束治具6には引出し端子2の偏平部2−1が載せられ、この偏平部2−1の上面には上側拘束治具28が設置されている。この上側拘束治具28には圧接金型14を貫通させる貫通孔30が形成されている。各貫通孔30から圧接金型14を拘束治具6上の偏平部2−1に圧接すると、偏平部2−1には圧接金型14により凹部32が成形される。この実施の形態では、圧接金型14の先端部が半球形である。これにより、凹部32は半球形の窪みに成形される。これらの事項は第3および第4の実施の形態と同様である。   As in the third and fourth embodiments, the flat part 2-1 of the lead terminal 2 is placed on the restraining jig 6, and the upper restraining jig 28 is installed on the upper surface of the flat part 2-1. ing. The upper restraining jig 28 is formed with a through-hole 30 through which the press-contacting mold 14 passes. When the press contact mold 14 is pressed from each through hole 30 to the flat portion 2-1 on the restraining jig 6, a recess 32 is formed in the flat portion 2-1 by the press contact mold 14. In this embodiment, the tip end portion of the press contact mold 14 is hemispherical. Thereby, the recessed part 32 is shape | molded by the hemispherical hollow. These matters are the same as those in the third and fourth embodiments.

第5の実施の形態では、中間に凸部26−1、26−2が備えられているので、この凸部26−1、26−2により成形される偏平部2−1は肉薄に成形される。また、凸部26−1、26−2の間、凸部26−2と拘束治具6の間および凸部と拘束治具6の開口部6−3の間の窪みに向かって偏平部2−1の金属流動が生じるため、引出し端子2のリード部2−3への伸びを防止できる。これにより、電極箔4に脆弱部が生じるのを防止できる。   In the fifth embodiment, since the convex portions 26-1 and 26-2 are provided in the middle, the flat portion 2-1 formed by the convex portions 26-1 and 26-2 is thinly formed. The Further, the flat portion 2 is formed between the convex portions 26-1 and 26-2, between the convex portion 26-2 and the restraining jig 6, and between the convex portion and the opening 6-3 of the restraining jig 6. Since the metal flow of -1 occurs, the extension of the lead terminal 2 to the lead portion 2-3 can be prevented. Thereby, it can prevent that a weak part arises in the electrode foil 4. FIG.

偏平部2−1の予備成形の後、第3または第4の実施の形態と同様に偏平部2−1の上面には電極箔4が載せられ、冷間圧接処理が行われる。この圧接処理には既述の圧接金型14が用いられる。肉薄化された偏平部2−1上の電極箔4の上面には上側拘束治具28が設置される。予備成形と同様に各貫通孔30から圧接金型14を偏平部2−1上の電極箔4に圧接する。これにより、偏平部2−1にある凹部32に沿って電極箔4が成形され、凹部32の内面に圧接された電極箔4と引出端子2の偏平部2−1とが冷間圧接により接続される。   After the preforming of the flat part 2-1, the electrode foil 4 is placed on the upper surface of the flat part 2-1, as in the third or fourth embodiment, and a cold welding process is performed. The aforementioned pressure welding mold 14 is used for this pressure welding processing. An upper restraining jig 28 is installed on the upper surface of the electrode foil 4 on the thinned flat part 2-1. Similar to the pre-molding, the press-contacting die 14 is pressed into contact with the electrode foil 4 on the flat part 2-1 from each through hole 30. As a result, the electrode foil 4 is formed along the concave portion 32 in the flat portion 2-1, and the electrode foil 4 pressed against the inner surface of the concave portion 32 and the flat portion 2-1 of the lead terminal 2 are connected by cold pressure welding. Is done.

このような予備成形および冷間圧接では、薄肉の偏平部2−1に電極箔4を載せて圧接接続するので、圧接接続に押圧される偏平部2−1の金属量を低減でき、引出し端子2の金属流動を抑制することができる。これにより、電極箔4の伸びや変形を防止できる。この結果、引出端子2と電極箔4との接続強度を高めることができる。   In such preforming and cold welding, since the electrode foil 4 is placed on the thin flat part 2-1, and the pressure connection is made, the metal amount of the flat part 2-1 pressed by the pressure connection can be reduced, and the lead terminal 2 metal flow can be suppressed. Thereby, the elongation and deformation of the electrode foil 4 can be prevented. As a result, the connection strength between the lead terminal 2 and the electrode foil 4 can be increased.

この実施の形態においても、上側拘束治具28を備えているので、予備成形では引出端子2の上側への変形を防止でき、冷間圧接では引出端子2および電極箔4の上側への変形を防止する。   Also in this embodiment, since the upper restraining jig 28 is provided, it is possible to prevent the lead terminal 2 from being deformed to the upper side in the preforming, and in the cold welding, the lead terminal 2 and the electrode foil 4 are to be deformed to the upper side. To prevent.

この実施の形態では引出し端子2に凹部32を形成する際、同時に引出し端子2の接続部周辺を薄肉化している。このため、引出し端子2の薄肉化により電極箔4と圧接接続による伸びる部位や金属を低減でき、引出し端子2の金属流動やその変形量が抑制される。この結果、引出し端子2の金属流動や変形に追従する電極箔4の変形を抑制でき、電極箔4の割れが防止される。   In this embodiment, when the recess 32 is formed in the extraction terminal 2, the periphery of the connection portion of the extraction terminal 2 is simultaneously thinned. For this reason, the thinned portion of the extraction terminal 2 can reduce the portion and metal that extend due to the pressure contact with the electrode foil 4, and the metal flow of the extraction terminal 2 and its deformation amount are suppressed. As a result, the deformation of the electrode foil 4 following the metal flow and deformation of the lead terminal 2 can be suppressed, and cracking of the electrode foil 4 is prevented.

〔他の実施の形態〕 [Other Embodiments]

(1) 上記実施の形態では、コンデンサの製造工程のうち、電極箔と引出し端子との接続を示している。コンデンサの製造にあっては、引出し端子を接続した電極箔を用いたコンデンサ素子の形成や、電解液の含浸工程、外装ケースへの封入工程、外装ケースの封口工程が含まれることは言うまでもない。   (1) In the above embodiment, the connection between the electrode foil and the lead terminal is shown in the capacitor manufacturing process. It goes without saying that the manufacture of a capacitor includes the formation of a capacitor element using an electrode foil connected with a lead terminal, an impregnation step with an electrolytic solution, a sealing step in an outer case, and a sealing step in the outer case.

(2) 上記実施の形態では、電解コンデンサのコンデンサ素子と引出し端子との接続について例示した。本発明は上記実施の形態に限定されるものではなく、電気二重層コンデンサなどの他のコンデンサにも利用できる。   (2) In the above embodiment, the connection between the capacitor element of the electrolytic capacitor and the lead terminal is exemplified. The present invention is not limited to the above embodiment, and can be used for other capacitors such as an electric double layer capacitor.

(3) 上記実施の形態では、圧接金型14の先端形状を球形や半球形としているが、角部の鋭角部分をテーパ化した円錐台形でもよい。圧接金型14の先端に角部があると、この角部に電極箔4に押し付けた際に応力集中を生じる。この応力集中がその角部から電極箔の押圧部に過剰な応力を生じさせ、電極箔4のひび割れや箔割れを生じさせるおそれがある。これに対し、上記実施の形態のように、圧接金型14の先端形状を半球状とすれば、応力集中を回避でき、電極箔4のひび割れや箔割れを防止できる。なお、圧接金型14の先端形状が球形や半球形であれば、冷間圧接の際、圧接部から電極箔4に加わる応力を圧接部から放射状に作用させ、その応力も均等にでき、応力集中を回避できる。   (3) In the above embodiment, the tip shape of the pressure contact mold 14 is a spherical shape or a hemispherical shape, but it may be a frustoconical shape with a sharp corner portion tapered. If there is a corner at the tip of the press-contacting mold 14, stress concentration occurs when the corner is pressed against the electrode foil 4. This stress concentration may cause excessive stress from the corners to the pressed portion of the electrode foil, which may cause cracking or foil cracking of the electrode foil 4. On the other hand, if the tip shape of the pressure contact mold 14 is hemispherical as in the above embodiment, stress concentration can be avoided and cracking and foil cracking of the electrode foil 4 can be prevented. If the tip shape of the pressure welding die 14 is spherical or hemispherical, during cold pressure welding, the stress applied to the electrode foil 4 from the pressure welding portion is caused to act radially from the pressure welding portion, and the stress can be made uniform. Concentration can be avoided.

(4) 上記第1および第2の実施の形態においても、第3、第4および第5の実施の形態と同様に予備成形を行ってもよい。この予備成形と電極箔4との圧接接続では同じ圧接金型14を用いたが、これに限らない。予備成形によって成形される凹部32の拡開角度を電極箔4との圧接接続に用いられる圧接金型14の角度より大きくしてもよい。このようにすることで、凹部32内で圧接接続する際に、凹部32の開口縁部と圧接金型の間に電極箔4が挟まれることがなく、凹部32内で均等に押圧される。つまり、圧接金型14と引出し端子2の凹部32との間に挟まれた電極箔4は、圧接金型14と引出し端子2の凹部32の傾斜面部との間の間隔部から圧接金型14の凹部32の底面側の移動に伴って凹部32内にガイドされる。凹部32の傾斜面部の拡開角度が圧接金型14の拡開角度より大きいので、角度差が空間を生じさせ、この空間内で電極箔4を移動させることができる。   (4) Also in the first and second embodiments, preforming may be performed in the same manner as in the third, fourth, and fifth embodiments. In the press-contact connection between the preform and the electrode foil 4, the same press-contact mold 14 is used, but the present invention is not limited to this. You may make the expansion angle of the recessed part 32 shape | molded by preforming larger than the angle of the press-contact metal mold | die 14 used for press-contact connection with the electrode foil 4. FIG. By doing so, the electrode foil 4 is not sandwiched between the opening edge of the recess 32 and the press-contacting mold when the press-connecting is performed in the recess 32, and is pressed evenly in the recess 32. That is, the electrode foil 4 sandwiched between the press-contact mold 14 and the recess 32 of the lead terminal 2 is pressed from the gap between the press-contact mold 14 and the inclined surface portion of the recess 32 of the lead terminal 2. The concave portion 32 is guided in the concave portion 32 as the bottom surface side of the concave portion 32 moves. Since the expansion angle of the inclined surface portion of the recess 32 is larger than the expansion angle of the press-contacting mold 14, the angle difference creates a space, and the electrode foil 4 can be moved in this space.

このような凹部32と圧接金型14で押圧した電極箔4との間隔部による電極箔4の移動では、引出し端子2の凹部32の傾斜面部と圧接金型14の傾斜面部との間で固定される部分がない。つまり、電極箔4の局所的な引き伸ばしの契機や起点がなく、、引き伸ばしを防止できる。凹部32の底面部に電極箔4が到達するまで圧接金型14の先端部で移動する。つまり、電極箔4は局所的に引き伸ばされることなく、均等に引き伸ばされながら凹部32の内形状に成形される。   In the movement of the electrode foil 4 by the gap between the concave portion 32 and the electrode foil 4 pressed by the pressure contact mold 14, the fixed portion is fixed between the inclined surface portion of the concave portion 32 of the lead terminal 2 and the inclined surface portion of the pressure contact mold 14. There is no part to be done. That is, there is no trigger or starting point for local stretching of the electrode foil 4, and stretching can be prevented. The electrode foil 4 moves at the tip of the press-contacting mold 14 until the electrode foil 4 reaches the bottom surface of the recess 32. That is, the electrode foil 4 is formed into the inner shape of the recess 32 while being uniformly stretched without being stretched locally.

凹部32の底面側に到達した電極箔4は、圧接金型14によって引出し端子2に圧接され、電極箔4は引出し端子2に接続される。   The electrode foil 4 that has reached the bottom surface side of the recess 32 is pressed into contact with the extraction terminal 2 by the press contact mold 14, and the electrode foil 4 is connected to the extraction terminal 2.

このように圧接金型14の移動に対し、電極箔4の成形途上で固定状態にならないので、電極箔4の局所的な伸びがなく、電極箔4と引出し端子2の凹部32の傾斜面部と電極箔4の伸びを伴うことなく、凹部32の底面部および傾斜面部に電極箔4が一様に圧接される圧接応力が分散される。この分散により均等な圧接が行われ、電極箔4の伸びを均一に伸ばせ、電極箔4を徐々に薄くでき、局所的に伸ばされることを防止し、伸びによる局所的な薄化や脆弱化を防止できる。また、応力の集中を防止できる。この結果、電極箔4と引出し端子2との接続強度を高めることができる。   In this manner, the electrode foil 4 is not fixed in the process of forming the electrode foil 4 with respect to the movement of the press contact mold 14, so there is no local elongation of the electrode foil 4, and the inclined surface portion of the recess 32 of the electrode foil 4 and the extraction terminal 2 Without accompanying the elongation of the electrode foil 4, the pressure stress that uniformly presses the electrode foil 4 to the bottom surface portion and the inclined surface portion of the recess 32 is dispersed. By this dispersion, uniform pressure welding is performed, the elongation of the electrode foil 4 is uniformly extended, the electrode foil 4 can be gradually thinned and prevented from being stretched locally, and local thinning and weakening due to elongation are prevented. Can be prevented. Further, stress concentration can be prevented. As a result, the connection strength between the electrode foil 4 and the lead terminal 2 can be increased.

以上説明したように、本発明の最も好ましい実施の形態等について説明した。本発明は、上記記載に限定されるものではない。特許請求の範囲に記載され、または発明を実施するための形態に開示された発明の要旨に基づき、当業者において様々な変形や変更が可能である。斯かる変形や変更が、本発明の範囲に含まれることは言うまでもない。
As described above, the most preferable embodiment of the present invention has been described. The present invention is not limited to the above description. Various modifications and changes can be made by those skilled in the art based on the gist of the invention described in the claims or disclosed in the embodiments for carrying out the invention. It goes without saying that such modifications and changes are included in the scope of the present invention.

本発明は引出し端子と電極箔との接続に冷間圧接を行う際の引出し端子の伸びなどの変形を防止できる。この伸びに追従する電極箔の伸びや薄化を防止し、電極箔の脆弱化を回避することができる。電極箔と引出し端子との接続強度を高めることができる。これにより、コンデンサの信頼性の向上などに寄与し、極めて有益である。
The present invention can prevent deformation such as elongation of the extraction terminal when performing cold pressure welding for connection between the extraction terminal and the electrode foil. The elongation and thinning of the electrode foil following this elongation can be prevented, and the weakening of the electrode foil can be avoided. The connection strength between the electrode foil and the lead terminal can be increased. This contributes to improving the reliability of the capacitor and is extremely useful.

2 引出し端子
2−1 偏平部
2−2 本体部
2−3 リード部
4 電極箔
4−1 地金部
4−2 処理層
6 拘束治具
6−1 底部
6−2 側壁部
6−3 開口部
8 キャビティ
10 空間部
12 圧接接続部
14 圧接金型
16 球形部
18 柱状部
20 円錐状部
22 貫通部
24−1、24−2、24−3 凸部
26−1、26−2 凸部
28 上側拘束治具
30 貫通孔
32 凹部
DESCRIPTION OF SYMBOLS 2 Lead terminal 2-1 Flat part 2-2 Main body part 2-3 Lead part 4 Electrode foil 4-1 Base metal part 4-2 Processing layer 6 Restraint jig 6-1 Bottom part 6-2 Side wall part 6-3 Opening part 8 Cavity 10 Space part 12 Pressure connection part 14 Pressure contact mold 16 Spherical part 18 Columnar part 20 Conical part 22 Through part 24-1, 24-2, 24-3 Convex part 26-1, 26-2 Convex part 28 Upper side Restraint jig 30 Through hole 32 Recess

Claims (4)

電極箔に接続される引出し端子の少なくとも側面に、該側面との間に前記引出し端子の変形を許容するとともに、所望の許容変形量以上の変形を防止する空間部を持つ拘束治具を設置する工程と、
前記引出し端子と前記電極箔とを重ねる工程と、
前記電極箔の上から圧接金型を押し付け、前記拘束治具の前記空間部への変形を許容させて前記引出し端子と前記電極箔とを接続する工程と、
を含むことを特徴とするコンデンサの製造方法。
On at least the side surface of the lead terminal connected to the electrode foil, a restraining jig having a space portion that allows deformation of the lead terminal and prevents deformation beyond a desired permissible deformation amount is installed between the lead side and the side surface. Process,
A step of stacking the lead terminal and the electrode foil;
Pressing the pressure contact mold from above the electrode foil, allowing the deformation of the restraining jig to the space, and connecting the lead terminal and the electrode foil; and
A method for producing a capacitor, comprising:
さらに、前記拘束治具は前記引出し端子と接触する面部に単一または複数の凸部を備え、該面部に前記引出し端子を配置する工程と、
前記引出し端子に前記電極箔を重ねる工程と、
前記電極箔の上から圧接金型を押し付けて前記引出し端子と前記電極箔とを接続する工程と、
を含むことを特徴とする請求項1に記載のコンデンサの製造方法。
Further, the restraining jig includes a single or a plurality of convex portions on a surface portion that comes into contact with the extraction terminal, and the step of disposing the extraction terminal on the surface portion;
Superimposing the electrode foil on the lead terminal;
Connecting the lead terminal and the electrode foil by pressing a pressure contact mold from above the electrode foil;
The method of manufacturing a capacitor according to claim 1, comprising:
さらに、前記引出し端子に圧接金型を押し付けて前記引出し端子に前記圧接金型による凹部、および前記拘束治具の前記凸部による凹部を形成する工程と、
を含むことを特徴とする請求項2に記載のコンデンサの製造方法。
A step of pressing a pressure contact mold against the lead terminal to form a recess by the pressure contact mold on the lead terminal and a recess by the convex portion of the restraining jig;
The method for manufacturing a capacitor according to claim 2, comprising:
前記拘束治具の前記凸部は、前記引出し端子の軸方向の端部に形成されていることを特徴とする請求項2または請求項3に記載のコンデンサの製造方法。   4. The method of manufacturing a capacitor according to claim 2, wherein the convex portion of the restraining jig is formed at an end portion in an axial direction of the lead terminal. 5.
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