JPH0351286B2 - - Google Patents
Info
- Publication number
- JPH0351286B2 JPH0351286B2 JP59181126A JP18112684A JPH0351286B2 JP H0351286 B2 JPH0351286 B2 JP H0351286B2 JP 59181126 A JP59181126 A JP 59181126A JP 18112684 A JP18112684 A JP 18112684A JP H0351286 B2 JPH0351286 B2 JP H0351286B2
- Authority
- JP
- Japan
- Prior art keywords
- electrode plate
- row
- capacitor element
- electrode
- metal
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Expired - Lifetime
Links
- 239000003990 capacitor Substances 0.000 claims description 68
- 229910052751 metal Inorganic materials 0.000 claims description 56
- 239000002184 metal Substances 0.000 claims description 56
- 230000032683 aging Effects 0.000 claims description 6
- WABPQHHGFIMREM-UHFFFAOYSA-N lead(0) Chemical compound [Pb] WABPQHHGFIMREM-UHFFFAOYSA-N 0.000 description 2
- 229910052782 aluminium Inorganic materials 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 230000001681 protective effect Effects 0.000 description 1
- 239000007787 solid Substances 0.000 description 1
- 229910052715 tantalum Inorganic materials 0.000 description 1
- GUVRBAGPIYLISA-UHFFFAOYSA-N tantalum atom Chemical compound [Ta] GUVRBAGPIYLISA-UHFFFAOYSA-N 0.000 description 1
Landscapes
- Fixed Capacitors And Capacitor Manufacturing Machines (AREA)
Description
【発明の詳細な説明】
(産業上の利用分野)
本発明はコンデンサ素子のエージング装置に関
するものである。DETAILED DESCRIPTION OF THE INVENTION (Field of Industrial Application) The present invention relates to an aging device for capacitor elements.
(従来の技術)
アルミ電解コンデンサやタンタル固体電解コン
デンサ等のコンデンサ素子をエージングするの
に、従来は、コンデンサ素子に電極を接続して恒
温槽内の所定位置に配設固定し、所定時間電圧を
印加している。(Conventional technology) Conventionally, in order to age capacitor elements such as aluminum electrolytic capacitors and tantalum solid electrolytic capacitors, electrodes are connected to the capacitor element, fixed at a predetermined position in a thermostatic oven, and voltage is applied for a predetermined time. is being applied.
(発明が解決しようとする課題)
しかしながら、このようなエージング装置であ
ると、所定のコンデンサ素子に所定時間、恒温槽
が占領されるために量産性が低い欠点があつた。(Problems to be Solved by the Invention) However, such an aging device has a drawback that mass productivity is low because a constant temperature bath is occupied by a predetermined capacitor element for a predetermined period of time.
本発明は、以上の欠点を改良し、コンデンサ素
子を連続的にエージングしうるコンデンサ素子の
エージング装置の提供を目的とするものである。 The present invention aims to improve the above-mentioned drawbacks and provide a capacitor element aging device that can continuously age a capacitor element.
(課題を解決するための手段)
本発明は、上記の目的を達成するために、複数
個の金属部を絶縁部を介して一列に並べた電極板
と、隣り合う列の対向する金属部の少なくともど
ちらか一方を他方の2ケ以上に跨つて並列に配置
した前極板の列と、この電極板と絶縁して設けた
共通用電極板と、複数個のコンデンサ素子を保持
し、このコンデンサ素子の一方の電極を前記電極
板に電気的に接続するとともに他方の電極を前記
共通用電極板に電気的に接続して前記コンデンサ
素子を前記電極板の列に沿つて走行させる治具
と、前記電極板と前記共通用電極との間に電圧を
印加する電源とを有するコンデンサ素子のエージ
ング装置を提供するものである。(Means for Solving the Problems) In order to achieve the above object, the present invention provides an electrode plate in which a plurality of metal parts are arranged in a row with an insulating part interposed therebetween, and an electrode plate in which a plurality of metal parts in adjacent rows are arranged in a row. A row of front electrode plates arranged in parallel with at least one of them straddling two or more of the other electrode plates, a common electrode plate provided insulated from the electrode plates, and a plurality of capacitor elements are held. a jig for electrically connecting one electrode of the element to the electrode plate and electrically connecting the other electrode to the common electrode plate to run the capacitor element along the row of the electrode plates; The present invention provides an aging device for a capacitor element, which includes a power source that applies a voltage between the electrode plate and the common electrode.
(作用)
すなわち、本発明によれば、複数列に配設した
電極板にコンデンサ素子を一方の電極を接触して
走行させながら、このコンデンサ素子に電圧を印
加してエージングすることが可能であり、量産化
が容易になる。(Function) That is, according to the present invention, it is possible to age the capacitor elements by applying a voltage to the capacitor elements while running the capacitor elements with one electrode in contact with the electrode plates arranged in a plurality of rows. , mass production becomes easier.
また、電極板を、隣り合う列の対向する金属部
の少なくともどちらか一方を他方の2ケ以上に跨
つて並列に配置しているため、コンデンサ素子が
一の電極板から次列の電極板に移行した場合、同
一金属部に電気的に接続していたコンデンサ素子
の少なくとも1以上は、次列において隣接する金
属部に接続する。 In addition, since the electrode plates are arranged in parallel with at least one of the opposing metal parts in adjacent rows straddling two or more of the other metal parts, the capacitor element can be transferred from one electrode plate to the next row of electrode plates. When transferred, at least one of the capacitor elements electrically connected to the same metal part is connected to an adjacent metal part in the next row.
そのため、コンデンサ素子がパンクしたときに
も、他の正常なコンデンサ素子は正確にエージン
グできる。 Therefore, even when a capacitor element is punctured, other normal capacitor elements can be aged accurately.
(実施例)
以下、本発明の実施例を図面に基づいて説明す
る。(Example) Hereinafter, an example of the present invention will be described based on the drawings.
第1図は本発明の実施例に用いる電極の平面図
を示す。1は、第1列目の電極板であり、3個づ
つのコンデンサ素子が接触できる巾の金属部1′
−1〜1′−5と、空〓からなる絶縁部1″−1〜
1″−4とを等間隔に交互に設けた構成になつて
いる。2は、第2列目の電極板であり、金属部
2′−1〜2′−5と絶縁部2″−1〜2″−4とを
交互に設けた構成になつている。特に、金属部
2′−1は、前列の金属部1′−1よりもコンデン
サ素子が1個多く接触する巾になつている。ま
た、金属部2′−5は前列の金属部1′−5よりも
コンデンサ素子が1個少なく接触する巾になつて
いる。3は、第3列目の電極板であり、金属部
3′−1〜3′−5と絶縁部3″−1〜3″−4とを
交互に設けた構成になつている。そして特に、金
属部3′−1は前列の金属部2′−1よりもコンデ
ンサ素子が1個多く接触する巾になつている。ま
た、金属部3′−5は前列の金属部2′−5よりも
コンデンサ素子が1個少なく接触する巾になつて
いる。4は、第4列目の電極板であり、金属部
4′−1〜4′−5と絶縁部4″−1〜4″−4とを
交互に設けた構成になつている。金属部4′−1
〜4′−5のうち、金属部4′−1は1個のコンデ
ンサ素子が接触する巾になつている。また、金属
部4′−5は前列の金属部3′−5よりもコンデン
サ素子が4個多く接触する巾になつている。5
は、第5列目の電極板であり、金属部5′−1〜
5′−5と絶縁部5″−1〜5″−4とを交互に設
けた構成になつている。金属部5′−1〜5′−5
のうち、金属部5′−1は前列金属部4′−1より
もコンデンサ素子が1個多く接触する巾になつて
いる。また、金属部5′−5は前記金属部4′−4
よりもコンデンサ素子が1個少なく接触する構成
になつている。6は、電極板1〜5の列に沿つて
絶縁して配設した共通用電極であり、直線状の金
属製のレールからなる。各電極板1〜5の金属部
1′−1〜5′−5と共通用電極6とには保護用の
抵抗を介して電源が接続されている。 FIG. 1 shows a plan view of an electrode used in an embodiment of the present invention. 1 is the electrode plate of the first row, and the metal part 1' has a width that allows contact with three capacitor elements each.
-1~1'-5 and an insulating section 1''-1~ consisting of the sky
1''-4 are alternately provided at equal intervals. 2 is a second row of electrode plates, and metal parts 2'-1 to 2'-5 and insulating parts 2'-1 ~2''-4 are provided alternately. In particular, the metal portion 2'-1 has a width that allows contact with one more capacitor element than the metal portion 1'-1 in the front row. Also, the metal part 2'-5 has a width that allows contact with one fewer capacitor element than the metal part 1'-5 in the front row.3 is an electrode plate in the third row; The structure is such that the metal parts 3'-1 to 3'-5 and the insulating parts 3'-1 to 3'-4 are provided alternately.In particular, the metal parts 3'-1 are arranged in parallel with the metal parts 2'-1 in the front row. The metal portion 3'-5 has a width such that one more capacitor element comes into contact with it than the metal portion 2'-5 in the front row.4. is the fourth row electrode plate, and has a structure in which metal parts 4'-1 to 4'-5 and insulating parts 4''-1 to 4''-4 are alternately provided.Metal part 4 '-1
4'-5, the metal portion 4'-1 has a width with which one capacitor element comes into contact. Further, the metal portion 4'-5 has a width that allows contact with four more capacitor elements than the metal portion 3'-5 in the front row. 5
is the electrode plate of the fifth row, and metal parts 5'-1 to
5'-5 and insulating parts 5''-1 to 5''-4 are alternately provided. Metal parts 5'-1 to 5'-5
Of these, the metal portion 5'-1 has a width that allows contact with one more capacitor element than the front row metal portion 4'-1. Further, the metal portion 5'-5 is the metal portion 4'-4.
The configuration is such that one fewer capacitor element is in contact than the previous one. A common electrode 6 is insulated and arranged along the row of electrode plates 1 to 5, and is made of a straight metal rail. A power source is connected to the metal parts 1'-1 to 5'-5 of each electrode plate 1 to 5 and the common electrode 6 via a protective resistor.
コンデンサ素子7としては、第2図に示すよう
に長さの異なるリード線8及び9が同一方向から
引き出されたものを用い、これを、長いリード線
8の箇所で金属バー10に等間隔に接続する。そ
して、これを第3図及び第4図に示すように電極
板接触用の治具11を用いてコンデンサ素子7の
短いリード線9を挾持する。治具11は、絶縁性
の固定バー12と、この固定バー12の両面に取
り付けた、短いリード線9を直接挾持する押え金
具13−1及び13−2と、一方の押え金具13
−1に接続し電極板に直接接触するバネ状金属製
の第1接触端子14と、固定バー12に取り付け
た金属バー10と共通用電極6に接触する一方が
バネ状の金属製の第2接触端子15とからなり、
電極板1〜5に沿つて走行するようになつてい
る。 As the capacitor element 7, lead wires 8 and 9 of different lengths are drawn out from the same direction as shown in FIG. 2, and the long lead wires 8 are connected to the metal bar 10 at equal intervals. Connecting. Then, as shown in FIGS. 3 and 4, the short lead wire 9 of the capacitor element 7 is clamped using a jig 11 for contacting the electrode plate. The jig 11 includes an insulating fixing bar 12, presser fittings 13-1 and 13-2 attached to both sides of the fixing bar 12 and directly holding the short lead wire 9, and one presser fitting 13.
A first contact terminal 14 made of a spring-like metal is connected to the terminal 1 and directly contacts the electrode plate, and a second contact terminal 14 made of a spring-like metal is connected to the metal bar 10 attached to the fixed bar 12 and a second contact terminal made of a spring-like metal is connected to the common electrode 6. It consists of a contact terminal 15,
It runs along the electrode plates 1 to 5.
すなわち、第1接触端子14を各電極板1〜5
に接触し、第2接触端子15を共通用電極6に接
触して治具11を走行させることにより、コンデ
ンサ素子7を連続的にエージングできる。 That is, the first contact terminal 14 is connected to each electrode plate 1 to 5.
By running the jig 11 with the second contact terminal 15 in contact with the common electrode 6, the capacitor element 7 can be aged continuously.
なお、コンデンサ素子7の一部がパンク等して
短絡状態となつても、他のコンデンサ素子7は正
常にエージングされる。例えば、第1列目の電極
板1においては、第5図に示す通り、コンデンサ
素子7−1〜7−15は3個づつ金属部1′−1
〜1′−5に第1接触端子14−1〜14−15
を介して接続している。そして、仮に金属部1′
−2に接続された真中のコンデンサ素子7−5が
パンクしたとする。真中のコンデンサ素子7−5
がパンクして短絡すると、このコンデンサ素子7
−5に短絡電流が流れるため、同じ金属部1′−
2に接続している両側のコンデンサ素子7−4及
び7−6はエージングされなくなる。この状態
で、治具11を走行して、第2列目の電極板2に
コンデンサ素子7−1〜7−15を接続する。こ
のとき、第6図に示す通り、第1列目で同じ金属
部1′−2に接続していた左側の正常なコンデン
サ素子7−4は第1接触端子14−4を介して金
属部2′−1に接続する。そしてパンクしたコン
デンサ素子7−5と右側の正常なコンデンサ素子
7−6は各々第1接触端子14−5及び14−6
を介して金属部2′−2に接続する。従つて、左
側の正常なコンデンサ素子7−4は、金属部2′
−1に接続した他のコンデンサ素子7−1〜7−
3とともにエージングされる。さらに、治具11
を走行して第3列目に移つた場合、第7図に示す
通り、パンクしたコンデンサ素子7−5は第1接
触端子14−5を介して金属部3′−1に接続す
る。しかし、右側の正常なコンデンサ素子7−6
は、第1接触端子14−6を介して金属部3′−
2に接続するため、エージングされる。第4列目
の金属板4では、第8図に示す通り、左側の正常
なコンデンサ素子7−4は第1接触端子14−4
を介して金属部4′−2に接続する。そしてパン
クしたコンデンサ素子7−5は、第1接触端子1
4−5を介して金属部4′−3に接続するため、
エージングされる。第5列目の金属板5では、第
9図に示す通り、右側の正常なコンデンサ素子7
−6は第1接触端子14−6を介して金属部5′
−3に接続する。そしてパンクしたコンデンサ素
子7−5は、第1接触端子14−5を介して金属
部5′−2に接続するため、エージングされる。
すなわち、真中のコンデンサ素子7−5が第1列
目の電極板1の位置でパンクした場合には、左側
のコンデンサ素子7−4は第2列目の電極板2と
第4列目の電極板4においてエージングされ、右
側のコンデンサ素子7−6は第3列目の電極板3
と第5列目の電極板5においてエージングされ
る。 Note that even if a part of the capacitor element 7 becomes short-circuited due to a puncture or the like, the other capacitor elements 7 are normally aged. For example, in the electrode plate 1 of the first row, as shown in FIG.
~1'-5 first contact terminals 14-1~14-15
are connected via. Then, if metal part 1'
Assume that the capacitor element 7-5 in the middle connected to -2 is punctured. Capacitor element 7-5 in the middle
If the capacitor element 7 is punctured and short-circuited, this capacitor element 7
-5, so the same metal part 1'-
Capacitor elements 7-4 and 7-6 on both sides connected to 2 are no longer aged. In this state, the jig 11 is run to connect the capacitor elements 7-1 to 7-15 to the second row of electrode plates 2. At this time, as shown in FIG. 6, the normal capacitor element 7-4 on the left side connected to the same metal part 1'-2 in the first row is connected to the metal part 1'-2 through the first contact terminal 14-4. '-1. The punctured capacitor element 7-5 and the normal capacitor element 7-6 on the right side are connected to first contact terminals 14-5 and 14-6, respectively.
It is connected to the metal part 2'-2 via. Therefore, the normal capacitor element 7-4 on the left side is connected to the metal part 2'.
Other capacitor elements 7-1 to 7- connected to -1
It is aged with 3. Furthermore, jig 11
When the vehicle moves to the third row, the punctured capacitor element 7-5 is connected to the metal part 3'-1 via the first contact terminal 14-5, as shown in FIG. However, the normal capacitor element 7-6 on the right side
is connected to the metal part 3'- through the first contact terminal 14-6.
Since it connects to 2, it is aged. In the metal plate 4 in the fourth row, as shown in FIG. 8, the normal capacitor element 7-4 on the left side is connected to the first contact terminal 14-4.
It is connected to the metal part 4'-2 via. Then, the punctured capacitor element 7-5 is connected to the first contact terminal 1.
In order to connect to the metal part 4'-3 via 4-5,
aged. In the metal plate 5 in the fifth row, as shown in FIG. 9, the normal capacitor element 7 on the right side
-6 is connected to the metal part 5' via the first contact terminal 14-6.
-Connect to 3. The punctured capacitor element 7-5 is then aged because it is connected to the metal portion 5'-2 via the first contact terminal 14-5.
That is, if the capacitor element 7-5 in the middle is punctured at the position of the electrode plate 1 of the first row, the capacitor element 7-4 on the left side is punctured at the electrode plate 2 of the second row and the electrode of the fourth row. The capacitor element 7-6 on the right side is aged on the plate 4, and the capacitor element 7-6 on the right side is aged on the third row electrode plate 3.
The electrode plate 5 in the fifth row is aged.
(発明の効果)
以上の通り、本発明のエージング装置によれ
ば、複数個の金属部を絶縁部を介して一列に並べ
て電極板とし、この電極板を隣り合う列の対向す
る金属部の少なくともどちらか一方を他方の2ケ
以上に跨つて並列に複数列配置し、この電極板の
列に沿つて複数のコンデンサ素子を治具で保持し
て走行させることにより、多量のコンデンサ素子
を連続的にエージングできる。また、例え一部の
コンデンサ素子がパンクした場合にも他のコンデ
ンサ素子を正常にエージングできる。(Effects of the Invention) As described above, according to the aging device of the present invention, a plurality of metal parts are arranged in a row with an insulating part interposed therebetween to form an electrode plate, and this electrode plate is used as an electrode plate for at least one of the opposing metal parts in adjacent rows. By arranging multiple rows of one of the electrode plates in parallel over two or more of the other electrode plates, and running a jig holding the multiple capacitor elements along the row of electrode plates, a large number of capacitor elements can be continuously inserted. can be aged. Further, even if some capacitor elements are punctured, other capacitor elements can be aged normally.
第1図は本発明実施例の電極板の平面図、第2
図は複数個のコンデンサ素子を金属バーに接続し
た状態の正面図、第3図及び第4図はコンデンサ
素子を挾持し電極板に接続しうる治具の各々正面
図及び右側面図、第5図はコンデンサ素子を第1
列目の電極板に接続した状態の正面断面図、第6
図はコンデンサ素子を第2列目の電極板に接続し
た状態の正面断面図、第7図はコンデンサ素子を
第3列目の電極板に接続した状態の正面断面図、
第8図はコンデンサ素子を第4列目の電極板に接
続した状態の正面断面図、第9図はコンデンサ素
子を第5列目の電極板に接続した状態の正面断面
図を示す。
1,2,3,4,5……電極板、1′−1〜
1′−5,2′−1〜2′−5,3′−1〜3′−5,
4′−1〜4′−5,5′−1〜5′−5……金属
部、1″−1〜1″−4,2″−1〜2″−4,3″
−1〜3″−4,4″−1〜4″−4,5″−1〜
5″−4……絶縁部、6……共通用電極、7,7
−1〜7−15……コンデンサ素子、11……治
具。
FIG. 1 is a plan view of an electrode plate according to an embodiment of the present invention, and FIG.
The figure is a front view of a state in which a plurality of capacitor elements are connected to a metal bar, Figures 3 and 4 are a front view and a right side view of a jig capable of holding capacitor elements and connecting them to an electrode plate, respectively. The figure shows the capacitor element as the first
Front sectional view of the state connected to the electrode plate of the 6th row
The figure is a front sectional view of the capacitor element connected to the second row electrode plate, FIG. 7 is the front sectional view of the capacitor element connected to the third row electrode plate,
FIG. 8 is a front sectional view showing a state in which the capacitor element is connected to the electrode plate in the fourth row, and FIG. 9 is a front sectional view in a state in which the capacitor element is connected to the electrode plate in the fifth row. 1, 2, 3, 4, 5...electrode plate, 1'-1~
1'-5, 2'-1 to 2'-5, 3'-1 to 3'-5,
4'-1 to 4'-5, 5'-1 to 5'-5...Metal part, 1"-1 to 1"-4, 2"-1 to 2"-4, 3"
-1~3''-4,4''-1~4''-4,5''-1~
5″-4……Insulating part, 6…Common electrode, 7,7
-1 to 7-15...Capacitor element, 11...Jig.
Claims (1)
た電極板と、隣り合う列の対向する金属部の少な
くともどちらか一方を他方の2ケ以上に跨つて並
列に配置した前記電極板の列と、この電極板と絶
縁して設けた共通用電極板と、複数個のコンデン
サ素子を保持し、このコンデンサ素子の一方の電
極を前記電極板に電気的に接続するとともに他方
の電極を前記共通用電極板に電気的に接続して前
記コンデンサ素子を前記電極板の列に沿つて走行
させる治具と、前記電極板と前記共通用電極との
間に電圧を印加する電源とを有するコンデンサ素
子のエージング装置。1. An electrode plate in which a plurality of metal parts are arranged in a row with an insulating part interposed therebetween, and an electrode plate in which at least one of the opposing metal parts in an adjacent row is arranged in parallel over two or more of the other metal parts. A column, a common electrode plate provided insulated from the electrode plate, and a plurality of capacitor elements are held, one electrode of the capacitor element is electrically connected to the electrode plate, and the other electrode is electrically connected to the electrode plate. A capacitor comprising: a jig that is electrically connected to a common electrode plate and causes the capacitor element to run along a row of the electrode plates; and a power source that applies a voltage between the electrode plate and the common electrode. Element aging equipment.
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP59181126A JPS61154023A (en) | 1984-08-30 | 1984-08-30 | Aging apparatus for capacitor element |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| JP59181126A JPS61154023A (en) | 1984-08-30 | 1984-08-30 | Aging apparatus for capacitor element |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| JPS61154023A JPS61154023A (en) | 1986-07-12 |
| JPH0351286B2 true JPH0351286B2 (en) | 1991-08-06 |
Family
ID=16095316
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| JP59181126A Granted JPS61154023A (en) | 1984-08-30 | 1984-08-30 | Aging apparatus for capacitor element |
Country Status (1)
| Country | Link |
|---|---|
| JP (1) | JPS61154023A (en) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN102280250A (en) * | 2011-05-19 | 2011-12-14 | 湖南艾华集团股份有限公司 | Method for clamping leads of lead-type electrolytic capacitors |
| CN102280249A (en) * | 2011-05-19 | 2011-12-14 | 湖南艾华集团股份有限公司 | Method for clamping lead wire of electrolytic capacitor |
-
1984
- 1984-08-30 JP JP59181126A patent/JPS61154023A/en active Granted
Also Published As
| Publication number | Publication date |
|---|---|
| JPS61154023A (en) | 1986-07-12 |
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