JP4866706B2 - Metal foil electrolytic manufacturing equipment - Google Patents

Metal foil electrolytic manufacturing equipment Download PDF

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JP4866706B2
JP4866706B2 JP2006303216A JP2006303216A JP4866706B2 JP 4866706 B2 JP4866706 B2 JP 4866706B2 JP 2006303216 A JP2006303216 A JP 2006303216A JP 2006303216 A JP2006303216 A JP 2006303216A JP 4866706 B2 JP4866706 B2 JP 4866706B2
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liquid
metal foil
liquid supply
cathode drum
rotating cathode
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JP2008121033A (en
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隆親 笹倉
雅吉 蓮池
章 菅野
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赤星工業株式会社
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    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25CPROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY OR REFINING OF METALS; APPARATUS THEREFOR
    • C25C7/00Constructional parts, or assemblies thereof, of cells; Servicing or operating of cells
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25CPROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY OR REFINING OF METALS; APPARATUS THEREFOR
    • C25C1/00Electrolytic production, recovery or refining of metals by electrolysis of solutions
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25CPROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY OR REFINING OF METALS; APPARATUS THEREFOR
    • C25C7/00Constructional parts, or assemblies thereof, of cells; Servicing or operating of cells
    • C25C7/02Electrodes; Connections thereof
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25CPROCESSES FOR THE ELECTROLYTIC PRODUCTION, RECOVERY OR REFINING OF METALS; APPARATUS THEREFOR
    • C25C7/00Constructional parts, or assemblies thereof, of cells; Servicing or operating of cells
    • C25C7/06Operating or servicing
    • C25C7/08Separating of deposited metals from the cathode
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25DPROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
    • C25D1/00Electroforming
    • C25D1/04Wires; Strips; Foils
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25DPROCESSES FOR THE ELECTROLYTIC OR ELECTROPHORETIC PRODUCTION OF COATINGS; ELECTROFORMING; APPARATUS THEREFOR
    • C25D3/00Electroplating: Baths therefor
    • C25D3/02Electroplating: Baths therefor from solutions

Description

本発明は、金属箔を電着させる回転陰極ドラムと、この回転陰極ドラムに対向した陽極と、回転陰極ドラムと陽極との間に電解液を連続的に供給しつつ回転陰極ドラム上に金属を電着させる金属箔電解製造装置に関するものである。   The present invention relates to a rotating cathode drum on which a metal foil is electrodeposited, an anode facing the rotating cathode drum, and a metal on the rotating cathode drum while continuously supplying an electrolyte between the rotating cathode drum and the anode. The present invention relates to a metal foil electrolytic production apparatus for electrodeposition.

従来の金属箔電解製造装置は、供給される電解液の流れが均一になりにくく、均一な厚さの金属箔を得ることが難しいという問題点があった。この問題点を解決するために下記の特許文献に記載の発明が提案された。
特許第3150814号
The conventional metal foil electrolytic manufacturing apparatus has a problem that the flow of the supplied electrolyte solution is difficult to be uniform and it is difficult to obtain a metal foil having a uniform thickness. In order to solve this problem, inventions described in the following patent documents have been proposed.
Japanese Patent No. 3150814

前記特許文献1記載の発明は、回転陰極ドラムと陽極との間に電解液を連続的に供給する電解液供給装置の電解液供給口が、回転円筒陰極の回転軸方向と平行にスリット状に、回転円筒陰極の下から上記間隙に開口し、かつ電解液供給口には、金属箔を電着させる幅区間にわたって複数の電解液流量調節手段を備えたものである。   In the invention described in Patent Document 1, an electrolyte supply port of an electrolyte supply device that continuously supplies an electrolyte between a rotating cathode drum and an anode is formed in a slit shape parallel to the rotation axis direction of the rotating cylindrical cathode. Further, a plurality of electrolyte flow rate adjusting means are provided over the width section in which the metal foil is electrodeposited at the electrolyte solution supply port, which opens from the bottom of the rotating cylindrical cathode to the gap.

特許文献1記載の電解液供給口は、幅区間にわたって複数の電解液流量手段で流量を調節しているため、開口部より供給される電解液の流れが不均一であり、回転円筒陰極表面に均等に供給されないという問題点があった。また、複数の電解液流量調節手段は、構成が複雑なため実用的ではなかった。   In the electrolyte supply port described in Patent Document 1, the flow rate is adjusted by a plurality of electrolyte flow rate means over the width section, so the flow of the electrolyte supplied from the opening is uneven, and the surface of the rotating cylindrical cathode is There was a problem that it was not evenly supplied. Further, the plurality of electrolyte flow rate adjusting means are not practical due to their complicated configuration.

本発明は、前記の問題点を解決するものであり、簡易な構成で、給液装置より供給される電解液の流れを均一にし、かつ回転陰極ドラム表面に均等に供給できる金属箔電解製造装置を提供することを目的とする。   The present invention solves the above-mentioned problems, and with a simple configuration, a metal foil electrolytic manufacturing apparatus that can uniformly supply the flow of the electrolytic solution supplied from the liquid supply device and can evenly supply the surface of the rotating cathode drum. The purpose is to provide.

本発明の要旨とするところは、金属箔を電着させる回転陰極ドラムと、該回転陰極ドラムに対向した円弧状曲面を持つ陽極と、回転陰極ドラムと陽極との間の液流通路に電解液を供給する給液装置を配し、電解液を供給しつつ回転陰極ドラム上に金属を電着させ、該回転陰極ドラムから連続的に金属箔をはがし取る金属箔電解製造装置において、前記給液装置は、回転陰極ドラムの回転軸と平行に配置され、長尺の両側板と天板と液流入口が接続された底板によって構成された内部に液室を設けた断面方形の筒状体であり、上端は前記液流通路内に配置すると共に、前記両側板の上端と前記天板との間にスリット状の間隙を連続的に開口し、電解液を前記液流通路の上流側及び下流側にそれぞれ供給する液供給口を構成したことにある。 The gist of the present invention is that a rotating cathode drum on which a metal foil is electrodeposited, an anode having an arcuate curved surface facing the rotating cathode drum, and an electrolyte solution in a liquid flow path between the rotating cathode drum and the anode. In the metal foil electrolysis manufacturing apparatus in which a metal supply electrode is deposited on the rotating cathode drum while supplying the electrolyte, and the metal foil is continuously peeled off from the rotating cathode drum The apparatus is a cylindrical body with a square cross section, which is arranged in parallel with the rotating shaft of the rotating cathode drum, and which is formed by a long side plate, a top plate, and a bottom plate to which a liquid inflow port is connected. And an upper end is disposed in the liquid flow passage, and a slit-like gap is continuously opened between the upper ends of the both side plates and the top plate, and the electrolyte is supplied upstream and downstream of the liquid flow passage. The liquid supply port to be supplied to each side is configured.

また、本発明の要旨とするところは、前記両側板の上端部の長尺方向の両側端部に、前記上端部の一部を切り欠き液室と液流通路を連通させた凹部を構成したことにある。 Further, the gist of the present invention is that a recess is formed by notching part of the upper end portion and communicating the liquid chamber and the liquid flow passage at both end portions in the longitudinal direction of the upper end portions of the both side plates. There is.

また、本発明の要旨とするところは、前記液供給口は、その開口部の間隙を調節可能にしたことにある。   Further, the gist of the present invention resides in that the liquid supply port can adjust the gap between the openings.

また、本発明の要旨とするところは、前記給液装置は、連続した2以上の室を有し、各室間には減圧機構を配し、電解液が給液装置の入口から順次減圧された後、液供給口から流出されることにある。 Further, it is an aspect of the present invention, the liquid supply apparatus has two or more liquid chambers contiguous, arranged decompression mechanism between the liquid chambers, the electrolytic solution sequentially from the inlet of the liquid supply device After the pressure is reduced, it is to flow out from the liquid supply port.

また、本発明の要旨とするところは、前記減圧機構は、スリット板により液流路を狭めたことにある。   The gist of the present invention is that the pressure reducing mechanism narrows the liquid flow path by a slit plate.

また、本発明の要旨とするところは、前記減圧機構は、多孔質材料で構成したことにある。   The gist of the present invention is that the pressure reducing mechanism is made of a porous material.

また、本発明の要旨とするところは、前記減圧機構は、空隙を有する充填材で構成したことにある。   Further, the gist of the present invention resides in that the pressure reducing mechanism is composed of a filler having voids.

請求項1記載の発明によれば、給液装置は、液流通路の上流側及び下流側に2個のスリット状の開口部を有する液供給口を備えていて、前記液供給口は、給液装置の幅方向に沿って連続的に開口しているため、電解液は回転陰極ドラムの表面に沿って、回転陰極ドラム周面の幅方向全域にわたって滑らかに、かつ均等に供給されるのである。
これにより回転陰極ドラムの周面に形成される金属箔の厚さが均一になり、良質な金属箔を簡易な構成の装置で効率よく生産することができる。
According to the first aspect of the present invention, the liquid supply apparatus includes the liquid supply port having two slit-shaped openings on the upstream side and the downstream side of the liquid flow passage, and the liquid supply port is Since the electrolyte device is continuously opened along the width direction of the liquid device, the electrolytic solution is smoothly and evenly supplied along the surface of the rotating cathode drum over the entire width direction of the rotating cathode drum circumferential surface. .
Thereby, the thickness of the metal foil formed on the peripheral surface of the rotating cathode drum becomes uniform, and a high-quality metal foil can be efficiently produced with an apparatus having a simple configuration.

請求項2記載の発明によれば、側板の上端部の両側端部に構成した凹部によって、液供給口の間隙は両側端部で広くなるため電解液が多く流出する。そのためこの凹部近傍に位置する回転陰極ドラムの両端付近には多量の電解液が供給されるため、他の部分に比べ箔が厚く形成され、従来巻き取り時に両端部から箔が裂け易いという問題点が解消した。 According to the second aspect of the present invention, since the gap between the liquid supply ports is widened at both end portions by the recesses formed at both end portions of the upper end portion of the side plate, a large amount of electrolyte flows out. For this reason, a large amount of electrolyte is supplied near both ends of the rotating cathode drum located in the vicinity of the concave portion, so that the foil is formed thicker than the other portions, and the foil easily breaks from both ends when winding up conventionally. Has been resolved.

請求項3記載の発明によれば、前記液供給口は、その開口部の間隙を調節可能にしたため、電解液の供給量を容易に調節することができると共に、それぞれの開口部からの液供給量のバランスを変えることができる。   According to the third aspect of the present invention, since the liquid supply port can adjust the gap between the openings, the supply amount of the electrolytic solution can be easily adjusted, and the liquid supply from each opening can be performed. The amount balance can be changed.

請求項4記載の発明によれば、前記給液装置は、連続した2以上の室を有し、各室間には減圧機構を配したため、供給される電解液は液流入口から第1の室に流入する時に、その流速を吸収され、また減圧機構を通過する際に幅方向で均一圧力、均一流速となる。 According to the fourth aspect of the present invention, the liquid supply device has two or more continuous liquid chambers, and a pressure reducing mechanism is disposed between the liquid chambers. When flowing into one liquid chamber, the flow rate is absorbed, and when passing through the pressure reducing mechanism, a uniform pressure and a uniform flow rate are obtained in the width direction.

請求項5記載の発明によれば、前記減圧機構をスリット板で形成し、これによって液流路を狭めることにより、電解液を均一圧力にすると共に減圧機構の全長にわたって流速を均一化して供給することができる。   According to a fifth aspect of the present invention, the pressure reducing mechanism is formed of a slit plate, and thereby the liquid flow path is narrowed, whereby the electrolyte is made to have a uniform pressure and the flow rate is made uniform over the entire length of the pressure reducing mechanism. be able to.

請求項6記載の発明によれば、前記減圧機構を多孔質材料で構成したため、簡易な構成で電解液を均一圧力にすると共に減圧機構の全長にわたって流速を均一化して供給することができる。   According to the sixth aspect of the present invention, since the pressure reducing mechanism is made of a porous material, the electrolyte can be made to have a uniform pressure with a simple structure and the flow rate can be made uniform over the entire length of the pressure reducing mechanism.

また、請求項7記載の発明によれば、前記減圧機構を空隙を有する充填材で構成したため、簡易な構成で電解液を均一圧力にすると共に減圧機構の全長にわたって流速を均一化して供給することができる。   According to the seventh aspect of the present invention, since the pressure reducing mechanism is composed of a filler having a gap, the electrolyte is made to have a uniform pressure with a simple structure and the flow rate is made uniform over the entire length of the pressure reducing mechanism. Can do.

本発明の最良の実施形態は、金属箔を電着させる回転陰極ドラムと、これに対向した円弧状曲面を持つ陽極と、回転陰極ドラムと陽極との間の液流通路に電解液を供給する給液装置を配した金属箔電解製造装置において、前記給液装置は、回転陰極ドラムの回転軸と平行に配置され、かつ回転方向に対して上流側及び下流側にそれぞれスリット状の開口部を有する液供給口を備えると共に、前記液供給口は、前記給液装置の上部に構成された、給液装置の幅方向に沿って同一の間隙で連続的に開口したものである金属箔電解製造装置である。   In the best mode of the present invention, an electrolytic solution is supplied to a rotating cathode drum on which a metal foil is electrodeposited, an anode having an arcuate curved surface opposed to the rotating cathode drum, and a liquid flow path between the rotating cathode drum and the anode. In the metal foil electrolysis manufacturing apparatus provided with the liquid supply device, the liquid supply device is arranged in parallel with the rotation axis of the rotating cathode drum, and has slit-like openings on the upstream side and the downstream side with respect to the rotation direction. The liquid supply port has a liquid supply port, and the liquid supply port is formed at the top of the liquid supply device, and is continuously opened at the same gap along the width direction of the liquid supply device. Device.

本発明の第1実施例を図に基づいて説明する。
図1は第1実施例の金属箔電解製造装置の概略断面側面図、図2は液供給装置の断面正面図、図3は図2のIII−III線断面拡大図、図4は液供給口の一部切欠斜視図である。
A first embodiment of the present invention will be described with reference to the drawings.
1 is a schematic cross-sectional side view of a metal foil electrolysis production apparatus according to the first embodiment, FIG. 2 is a cross-sectional front view of a liquid supply apparatus, FIG. 3 is an enlarged cross-sectional view taken along line III-III in FIG. FIG.

図1に基づいて金属箔電解製造装置Aの概略を説明する。この装置は従来使用されているものと同様の構造であり、金属箔を電着させる回転陰極ドラム1と、回転陰極ドラム1の周面形状に沿って対向配置した陽極2とを備えている。そして回転陰極ドラム1の下端位置には、回転陰極ドラム1と陽極2の間に設けられた液流通路8に電解液を供給するための給液装置5が設けられている。
この給液装置5の内部から液流通路8に向けて電解液が供給され、この電解液は図1の矢印のように回転陰極ドラム1周面形状に沿って上昇し、電解槽13にオーバーフローしていくのである。これによって回転陰極ドラム1周面に電析した金属箔10は、ガイドロール11を介して巻き取りロール12に巻き取られる。
An outline of the metal foil electrolytic production apparatus A will be described with reference to FIG. This apparatus has a structure similar to that conventionally used, and includes a rotating cathode drum 1 on which a metal foil is electrodeposited, and an anode 2 disposed so as to face the periphery of the rotating cathode drum 1. At the lower end position of the rotating cathode drum 1, a liquid supply device 5 for supplying an electrolytic solution to a liquid flow passage 8 provided between the rotating cathode drum 1 and the anode 2 is provided.
An electrolytic solution is supplied from the inside of the liquid supply device 5 toward the liquid flow passage 8, and the electrolytic solution rises along the circumferential shape of the rotating cathode drum 1 as indicated by an arrow in FIG. It will do. As a result, the metal foil 10 electrodeposited on the peripheral surface of the rotating cathode drum 1 is taken up by the take-up roll 12 via the guide roll 11.

本実施例の給液装置5は、電解液タンク(図示せず)と連通している液流入口4の上端に構成され、上端は液流通路8内に配置されている。
前記給液装置5は、長尺の両側板51,51と天板52とによって構成された筒状体であり、内部に2個の液室R1,R3を設けている。この給液装置5は、回転陰極ドラム1の幅と同一長さで、かつ回転陰極ドラム1の回転軸と平行に配置されている。
The liquid supply device 5 of this embodiment is configured at the upper end of the liquid inlet 4 communicating with an electrolyte tank (not shown), and the upper end is disposed in the liquid flow passage 8.
The liquid supply device 5 is a cylindrical body constituted by long side plates 51, 51 and a top plate 52, and two liquid chambers R1, R3 are provided therein. The liquid supply device 5 has the same length as the width of the rotating cathode drum 1 and is disposed in parallel with the rotating shaft of the rotating cathode drum 1.

前記給液装置5の両側板51,51の上端と天板52との間に間隙を形成し、電解液を液流通路8の上流側(図3の矢印X方向)と下流側(図3の矢印Y方向)へ供給するための液供給口6,6を構成する。
この液供給口6は、2枚の側板51,51の上端に、全長にわたって連続的に設けられているため回転陰極ドラム1の幅と等しく、その形状は液室R3から液流通路8に向かって水平若しくは僅かに斜め上方に開口したスリット状である。
A gap is formed between the upper ends of the side plates 51, 51 of the liquid supply device 5 and the top plate 52, and the electrolyte is supplied upstream (in the direction of arrow X in FIG. 3) and downstream (in FIG. 3). Liquid supply ports 6 and 6 for supply in the direction of arrow Y).
Since the liquid supply port 6 is continuously provided over the entire length at the upper ends of the two side plates 51, 51, it is equal to the width of the rotating cathode drum 1, and the shape thereof extends from the liquid chamber R 3 toward the liquid flow path 8. The slit shape opens horizontally or slightly obliquely upward.

前記給液装置5の内部には減圧機構7を構成する。本実施例の減圧機構7は側板51の全長にわたって、両側板51,51間の空隙の両端に狭隘部71a,71aを有して取り付けた長尺の板材71からなる。この板材71によって、給液装置5内部は下側の液室R1と上側の液室R3に分割されている。   A decompression mechanism 7 is configured inside the liquid supply apparatus 5. The decompression mechanism 7 of the present embodiment is composed of a long plate 71 having narrow portions 71a and 71a attached to both ends of the gap between the side plates 51 and 51 over the entire length of the side plate 51. By this plate material 71, the interior of the liquid supply apparatus 5 is divided into a lower liquid chamber R1 and an upper liquid chamber R3.

上記のように構成した金属箔電解製造装置の作用を説明する。
電解液は、下端の液流入口4より給液装置5内の下側の液室R1に流入するが、このとき電解液は板材71に衝突することによってその流入速度は吸収される。その後、狭隘部71a,71aから液室R3に流入していくが、狭隘部71aで絞られることによって均一な圧力、均一な流速になって上側の液室R3に送り込まれる。そして液流通路8へと流出していく時にスリット状の液供給口6で更に絞られ、より均一な圧力、より均一な流速となる。
流出した電解液は、前記液供給口6の開口部によって液流通路8の上流側Xと下流側Yに分かれて、回転陰極ドラム1の幅方向に均一に供給されていくのである。
The operation of the metal foil electrolytic manufacturing apparatus configured as described above will be described.
The electrolytic solution flows into the lower liquid chamber R1 in the liquid supply device 5 from the liquid inlet 4 at the lower end. At this time, the electrolytic solution collides with the plate member 71 and the inflow speed is absorbed. After that, it flows into the liquid chamber R3 from the narrowed portions 71a, 71a, but is squeezed by the narrowed portion 71a to be uniform pressure and uniform flow rate, and sent to the upper liquid chamber R3. And when it flows out into the liquid flow path 8, it is further restrict | squeezed by the slit-shaped liquid supply port 6, and becomes a more uniform pressure and a more uniform flow velocity.
The electrolyte that has flowed out is divided into an upstream side X and a downstream side Y of the liquid flow passage 8 by the opening of the liquid supply port 6 and is uniformly supplied in the width direction of the rotating cathode drum 1.

図5は前記液供給口6の第2実施例を示す一部切欠正面図である。
本実施例では側板51の上端部の両側端部に凹部61を構成したものである。この凹部61によって、液供給口6の間隙は両側端部で広くなるため電解液が多く流出する。そのためこの凹部61近傍に位置する回転陰極ドラム1の両端付近には多量の電解液が供給されるため、他の部分に比べ箔が厚く形成されるのである。
これによって従来巻き取り時に両端部から箔が裂け易いという問題点が解消した。
FIG. 5 is a partially cutaway front view showing a second embodiment of the liquid supply port 6.
In this embodiment, recesses 61 are formed at both end portions of the upper end portion of the side plate 51. Because of the recess 61, the gap between the liquid supply ports 6 is widened at both ends, so that a large amount of electrolyte flows out. Therefore, a large amount of electrolyte is supplied to the vicinity of both ends of the rotating cathode drum 1 located in the vicinity of the recess 61, so that the foil is formed thicker than the other portions.
As a result, the problem that the foil easily tears from both ends during winding is eliminated.

図6は前記液供給口の第3実施例を示す一部切欠斜視図である。
本実施例では液供給口6の開口部の間隙を調節可能にしている。すなわち、2枚の側板51の上端に沿って、それぞれ長尺の調節板54を複数のネジ59で固定した調節機構を構成している。この調節機構は、調節板54の端部等の適宜個所に縦方向の長孔60を穿設し、この長孔60にネジ59を螺合させ、この長孔60の範囲内で調節板54を上下動して位置決めするものである。これによって液供給口6の幅を自由に変更することが可能となる。
この調節機構の作用で、電解液の供給量を容易にかつ確実に調節することができると共に、それぞれの開口部からの液供給量のバランスを変えることが可能となる。
FIG. 6 is a partially cutaway perspective view showing a third embodiment of the liquid supply port.
In this embodiment, the gap of the opening of the liquid supply port 6 can be adjusted. That is, an adjustment mechanism is configured in which a long adjustment plate 54 is fixed by a plurality of screws 59 along the upper ends of the two side plates 51. In this adjusting mechanism, a long hole 60 in the vertical direction is formed at an appropriate position such as an end portion of the adjusting plate 54, and a screw 59 is screwed into the long hole 60, and the adjusting plate 54 is within the range of the long hole 60. Is moved up and down for positioning. As a result, the width of the liquid supply port 6 can be freely changed.
By the action of the adjusting mechanism, the supply amount of the electrolytic solution can be easily and reliably adjusted, and the balance of the supply amount of liquid from each opening can be changed.

図7は前記減圧機構7の第2実施例を示す一部切欠斜視図である。この減圧機構7は、表面に多数のスリット72aを穿設したスリット板72を2枚の側板51,51の全長にわたって両端を側板51,51に密着して取り付けたものである。
このスリット板72によれば、電解液はスリット72a,72a,・・によって液流路を狭められて通過して下側の液室R1より上側の液室R3へと流出するため、電解液は均一な圧力、均一な流速となって上側の液室R3に送り込まれるのである。
また、図示はしないが、前記スリット板72に代えて、遮蔽板、オリフィスなどを使用して減圧手段とすることもできる。
FIG. 7 is a partially cutaway perspective view showing a second embodiment of the decompression mechanism 7. The decompression mechanism 7 is formed by attaching a slit plate 72 having a large number of slits 72 a formed on the surface thereof so that both ends of the slit plate 72 are in close contact with the side plates 51, 51 over the entire length of the two side plates 51, 51.
According to the slit plate 72, the electrolytic solution is narrowed through the liquid flow path by the slits 72a, 72a,... And flows out from the lower liquid chamber R1 to the upper liquid chamber R3. A uniform pressure and a uniform flow rate are fed into the upper liquid chamber R3.
Although not shown, a pressure reducing means may be used by using a shielding plate, an orifice or the like instead of the slit plate 72.

図8は前記減圧機構7の第3実施例を示す断面正面図である。この減圧機構7は、多孔質材料からなる板材73を2枚の側板51,51の全長にわたって両端を側板51,51に密着して取り付けたものである。
この板材73によれば、電解液は板材73を通過して下側の液室R1より上側の液室R3へと流れていくときに、電解液は多数の孔を通過するため板材73によって均一な圧力、均一な流速となって上側の液室R3に送り込むことができる。
FIG. 8 is a sectional front view showing a third embodiment of the decompression mechanism 7. The decompression mechanism 7 is configured by attaching a plate 73 made of a porous material in close contact with the side plates 51, 51 over the entire length of the two side plates 51, 51.
According to this plate material 73, when the electrolytic solution passes through the plate material 73 and flows from the lower liquid chamber R <b> 1 to the upper liquid chamber R <b> 3, the electrolytic solution passes through many holes and is uniform by the plate material 73. Pressure and a uniform flow rate can be fed into the upper liquid chamber R3.

図9は前記減圧機構7の第4実施例を示す断面正面図である。
この減圧機構7は、空隙を有する充填材料からなる板状部材74を2枚の側板51,51の全長にわたって両端を側板51,51に密着して取り付けたものである。
この板材74によれば、電解液は板状部材74を通過して下側の液室R1より上側の液室R3へと流れていくときに、電解液は充填材料の多数の空隙を通過するため均一な圧力、均一な流速となって上側の液室R3に送り込むことができる。
FIG. 9 is a sectional front view showing a fourth embodiment of the decompression mechanism 7.
The decompression mechanism 7 is obtained by attaching a plate-like member 74 made of a filling material having a gap so that both ends thereof are in close contact with the side plates 51, 51 over the entire length of the two side plates 51, 51.
According to this plate material 74, when the electrolytic solution passes through the plate-like member 74 and flows from the lower liquid chamber R1 to the upper liquid chamber R3, the electrolytic solution passes through a large number of gaps in the filling material. Therefore, it becomes uniform pressure and uniform flow rate, and can be fed into the upper liquid chamber R3.

図10は前記減圧機構7の第5実施例を示す断面正面図である。この実施例では前記実施例1の板材71を2枚平行して配置し、この2枚の板材71によって給液装置5を3分割して、下側の液室R1、中側の液室R2、上側の液室R3を構成し、液室R3を液室R2より幅を狭くしている。
この減圧機構によれば前記実施例1の減圧機構に比べて、電解液は2枚の板材71によってより効率よく均一な圧力、均一な流速にできるという効果がある。
FIG. 10 is a sectional front view showing a fifth embodiment of the decompression mechanism 7. In this embodiment, the two plate members 71 of the first embodiment are arranged in parallel, and the liquid supply device 5 is divided into three by the two plate members 71, so that the lower liquid chamber R1 and the middle liquid chamber R2 are divided. The upper liquid chamber R3 is formed, and the width of the liquid chamber R3 is narrower than that of the liquid chamber R2.
According to this pressure reducing mechanism, compared with the pressure reducing mechanism of the first embodiment, there is an effect that the electrolyte can be more efficiently made uniform pressure and uniform flow rate by the two plate members 71.

第1実施例の金属箔電解製造装置の概略断面側面図Schematic cross-sectional side view of the metal foil electrolysis production apparatus of the first embodiment 液供給装置の断面正面図Cross-sectional front view of liquid supply device 図2のIII−III線断面拡大図Fig. 2 III-III cross-sectional enlarged view 液供給口の一部切欠斜視図Partial cutaway perspective view of liquid supply port 液供給口の第2実施例を示す一部切欠正面図Partially cutaway front view showing a second embodiment of the liquid supply port 液供給口の第3実施例を示す一部切欠斜視図Partially cutaway perspective view showing a third embodiment of the liquid supply port 減圧機構の第2実施例を示す一部切欠斜視図Partially cutaway perspective view showing a second embodiment of the decompression mechanism 減圧機構の第3実施例を示す断面正面図Sectional front view showing a third embodiment of the decompression mechanism 減圧機構の第4実施例を示す断面正面図Sectional front view showing a fourth embodiment of the decompression mechanism 減圧機構の第5実施例を示す断面正面図Sectional front view showing a fifth embodiment of the decompression mechanism

符号の説明Explanation of symbols

A 金属箔電解製造装置
1 回転陰極ドラム
2 陽極
4 液流入口
5 給液装置
6 液供給口
7 減圧機構
8 液流通路
51 側板
52 天板
54 調節板
59 ネジ
60 長孔
72 スリット板
72a スリット
73 板材
74 板材
R1 下側の液室
R2 中側の液室
R3 上側の液室
X 上流側
Y 下流側
A Metal Foil Electrolytic Manufacturing Device 1 Rotating Cathode Drum 2 Anode 4 Liquid Inlet 5 Liquid Supply Device 6 Liquid Supply Port 7 Depressurizing Mechanism 8 Liquid Flow Path 51 Side Plate 52 Top Plate 54 Adjusting Plate 59 Screw 60 Long Hole 72 Slit Plate 72a Slit 73 Plate material 74 Plate material R1 Lower liquid chamber R2 Middle liquid chamber R3 Upper liquid chamber X Upstream side Y Downstream side

Claims (7)

金属箔を電着させる回転陰極ドラムと、該回転陰極ドラムに対向した円弧状曲面を持つ陽極と、回転陰極ドラムと陽極との間の液流通路に電解液を供給する給液装置を配し、電解液を供給しつつ回転陰極ドラム上に金属を電着させ、該回転陰極ドラムから連続的に金属箔をはがし取る金属箔電解製造装置において、
前記給液装置は、回転陰極ドラムの回転軸と平行に配置され、長尺の両側板と天板と液流入口が接続された底板によって構成された内部に液室を設けた断面方形の筒状体であり、上端は前記液流通路内に配置すると共に、前記両側板の上端と前記天板との間にスリット状の間隙を連続的に開口し、電解液を前記液流通路の上流側及び下流側にそれぞれ供給する液供給口を構成したことを特徴とする金属箔電解製造装置。
A rotating cathode drum for electrodepositing metal foil, an anode having an arcuate curved surface facing the rotating cathode drum, and a liquid supply device for supplying an electrolytic solution to the liquid flow path between the rotating cathode drum and the anode are arranged. In the metal foil electrolysis production apparatus, the metal is electrodeposited on the rotating cathode drum while supplying the electrolytic solution, and the metal foil is continuously peeled off from the rotating cathode drum.
The liquid supply device is arranged in parallel with the rotation axis of the rotating cathode drum, and has a rectangular cross-section with a liquid chamber provided in an interior composed of long side plates, a top plate, and a bottom plate to which a liquid inlet is connected. The upper end is disposed in the liquid flow passage, and a slit-like gap is continuously opened between the upper ends of the side plates and the top plate, so that the electrolyte is upstream of the liquid flow passage. An apparatus for electrolytically producing metal foil, characterized in that liquid supply ports are provided to be supplied to the side and the downstream side, respectively.
前記両側板の上端部の長尺方向の両側端部に、前記上端部の一部を切り欠き液室と液流通路を連通させた凹部を構成したことを特徴とする請求項1記載の金属箔電解製造装置。 2. The metal according to claim 1 , wherein a concave portion in which a part of the upper end portion is cut out and a liquid chamber and a liquid flow passage are communicated is formed at both end portions in the longitudinal direction of the upper end portion of the both side plates. Foil electrolytic production equipment. 前記液供給口は、その開口部の間隙を調節可能にしたことを特徴とする請求項1又は請求項2記載の金属箔電解製造装置。 The metal foil electrolysis apparatus according to claim 1 or 2, wherein the liquid supply port is configured to be capable of adjusting a gap between the openings. 前記給液装置は、連続した2以上の室を有し、各室間には減圧機構を配し、電解液が給液装置の入口から順次減圧された後、液供給口から流出されることを特徴とする請求項1又は請求項2又は請求項3記載の金属箔電解製造装置。 The liquid supply apparatus has two or more liquid chambers continuous, between the liquid chambers arranged decompression mechanism, after the electrolyte is sequentially reduced pressure from the inlet of the liquid supply device, to flow out from the liquid supply port The metal foil electrolytic production apparatus according to claim 1, 2, or 3. 前記減圧機構は、スリット板により液流路を狭めたものであることを特徴とする請求項4記載の金属箔電解製造装置。 5. The metal foil electrolysis production apparatus according to claim 4, wherein the decompression mechanism has a liquid flow path narrowed by a slit plate. 前記減圧機構は、多孔質材料で構成したことを特徴とする請求項4記載の金属箔電解製造装置。 The metal foil electrolytic manufacturing apparatus according to claim 4, wherein the decompression mechanism is made of a porous material. 前記減圧機構は、空隙を有する充填材で構成したことを特徴とする請求項4記載の金属箔電解製造装置。 The metal foil electrolytic manufacturing apparatus according to claim 4, wherein the decompression mechanism is formed of a filler having a gap.
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