Claims
- 1. An electroplating apparatus comprising:
- a cathode drum adapted to rotate about an axis;
- a split insoluble electrode which forms a stationary anode disposed concentrically around the cathode drum to define a channel therebetween, said electrode having a radius of curvature of 500 to 2,000 mm, said anode including a plurality of circumferentially arranged adjacently disposed arcuate electrode segments which define a substantially continuous smooth curvilinear surface, said curvilinear surface having a arc component of a cylinder and extending parallel to said axis, said electrode segments are made of a valve metal material coated with a platinum group metal or an oxide thereof, said anode further including a single conductive back plate of corrosion resistant conductive metal and conductive fixtures for removably attaching said electrode segments to said back plate, each of said electrode segments are positioned adjacent to said back plate and have a first surface which face said cathode drum and a second surface opposed to said first surface which face said back plate, a spacing between said anode and the cathode drum being 5 mm or less, said back plate comprising apertures through which said conductive fixtures extend such that a first end of each of said conductive fixtures are fixed to said second surface of said electrode segments;
- attachment means removably positioned on a second end of each of said conductive fixtures for removably attaching each of said electrode segments to said back plate;
- means for supplying an electroplating solution containing a metal to the channel between the cathode drum and the anode;
- means for conducting electricity between the cathode drum and the anode for depositing the metal on the cathode drum;
- means for separating the metal deposit from the cathode drum to obtain a length of electrolytic metal foil having a thickness of up to 70 .mu.m; and
- an insulating rubber sheet interposed between said electrode segments and the back plate;
- wherein the electrode segments on their arcuate surface are separated from each other by a distance of 0.1 to 5 mm.
- 2. The apparatus of claim 1 wherein the means for supplying an electroplating solution to the channel includes means for channeling the solution through the channel.
- 3. The apparatus of claim 1 which further includes a tank adapted to be filled with the electroplating solution so as to permit said cathode drum and the anode to be dipped therein.
- 4. The apparatus of claim 1 wherein the anode extends an arc having an included angle of 45.degree. to 120.degree. with respect to the drum axis.
- 5. The apparatus of claim 1 wherein the channel between the anode and the cathode drum has a radial distance of about 10 mm.
- 6. The apparatus of claim 1, wherein said metal is copper.
- 7. The apparatus of claim 1, wherein said distance of separation of the electrode segments on their arcuate surface is 0.1 to 3 mm.
- 8. An electroplating method comprising the steps of:
- adjacently disposing a plurality of arcuate electrode segments of a valve metal substrate coated with a platinum group or an oxide thereof to define a substantially continuous smooth curvilinear surface;
- removably attaching and electrically connecting said plurality of electrode segments on a single conductive back plate of corrosion resistant conductive metal to form a stationary anode which defines a split insoluble electrode, said electrode having a radius of curvature of 500 to 2,000 mm;
- placing a rotating cathode drum and said stationary anode at a spacing therebetween such that a facing surface of each of said electrode segments opposite an underside surface faces said cathode drum, said spacing being 5 mm or less and said stationary anode is disposed around and concentrically with the cathode drum;
- providing an electroplating solution containing a metal between said cathode drum and said anode;
- conducting electricity between said cathode drum and said anode for depositing the metal on said cathode drum; and
- separating the metal deposit from said cathode drum to obtain a length of an electrolytic metal foil having a thickness of up to 70 .mu.m;
- said removably attaching and electrically connecting step comprising the steps of:
- passing fastening means through apertures in said back plate in a direction toward said electrode segments and fixing one end of said fastening means to said underside surface of said electrode segments; and
- removably attaching an attachment means onto a second end of said fastening means to permit removable attachment of said plurality of electrode segments to said back plate;
- wherein said electrode segments on their surface facing the cathode drum are separated from each other by a distance of 0.1 to 5 mm.
- 9. The method of claim 8, wherein said metal is copper.
- 10. The method of claim 8 wherein the step of providing an electroplating solution containing a metal between the cathode drum and the anode includes channeling the solution between the cathode drum and the anode.
- 11. The method of claim 8, wherein said separation distance of said electrode segments on their surface facing the cathode drum is 0.1 to 3 mm.
- 12. An electroplating apparatus comprising:
- (a) cathode drum adapted to rotate about an axis;
- (b) a split insoluble electrode in the form of a stationary anode disposed around said cathode drum to define a channel therebetween, said anode comprising:
- (i) a plurality of arcuate circumferentially arranged electrode segments adjacently positioned on a back plate, each of said electrode segments comprising at least one integral pedestal portion which axially extends from an edge of said electrode segments, such that a pedestal portion on a first electrode segment positioned on said back plate overlaps a pedestal portion on an adjacently positioned second electrode segment on said back plate to define a smooth curvilinear surface; and
- (ii) attachment means for removably attaching said electrode segments to said back plate;
- (c) means for supplying an electroplating solution containing a metal to the channel between said cathode drum and said anode;
- (d) means for conducting electricity between the cathode drum and the anode for depositing the metal on the cathode drum; and
- (e) means for separating the metal deposit from the cathode drum to obtain a length of electrolytic metal foil.
- 13. The anode of claim 12, wherein said electrode segments are disposed concentrically with the cathode drum.
- 14. The anode of claim 12 wherein said electrode segments on their arcuate surface are separated a distance of 0.1 to 5 mm.
- 15. The apparatus of claim 12, wherein electrode segments are formed of a valve metal material coated with a platinum group metal or a oxide thereof.
- 16. The apparatus of claim 12, wherein said attachments means comprises:
- apertures formed on one of said opposed pedestal portions on each of said electrode segments which align with apertures on said back plate; and
- bolt means for insertion through said aperture on said one pedestal portion and into said aperture on said back plate for maintaining the juxtaposed mating pedestal portions on adjacent electrode segments on said back plate.
Priority Claims (1)
Number |
Date |
Country |
Kind |
4-056815 |
Feb 1992 |
JPX |
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Parent Case Info
This application is a continuation of application Ser. No. 08/009,953, filed on Jan.27, 1993, now abandoned.
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Continuations (1)
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Number |
Date |
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Parent |
09953 |
Jan 1993 |
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