Claims
- 1. An electrolyte dam for controlling electrolyte flow during the electropolishing of the interior surface of a tube, said electrolyte dam comprising:a body having a top portion, and a bottom portion; ballast fixed at said bottom portion of said body; and a channel defined by said top portion of said body, for allowing the passage of electrolyte solution and evolved gasses between said electrolyte dam and said interior surface of said tube.
- 2. An electrolyte dam according to claim 1, wherein said body is comprises an insulating material.
- 3. An electrolyte dam according to claim 1, wherein said body is spherical in shape.
- 4. An electrolyte dam according to claim 1, wherein said channel is defined at least in part by a flat formed on said top portion of said body.
- 5. An electrolyte dam according to claim 1, wherein said channel is defined at least in part by a groove formed in said top portion of said body.
- 6. An electrolyte dam according to claim 1, wherein said ballast is formed integral with said body.
- 7. An electrolyte dam according to claim 1, further comprising a connector for attaching said electrolyte dam to an electropolishing electrode.
- 8. An electrolyte dam according to claim 7, wherein said connector comprises a tether, said tether having a first end fixed to said electrolyte dam.
- 9. An electrolyte dam according to claim 8, wherein said tether comprises a swivel connector.
- 10. An electrolyte dam according to claim 7, wherein said connector comprises a bore through said body.
- 11. An electrolyte dam according to claim 10, wherein said bore is adapted to receive an electropolishing electrode cable.
- 12. An electrolyte dam according to claim 11, wherein said bore is adapted to loosely receive said electrode cable to facilitate the free rotation of said body about said electrode cable.
- 13. An electropolishing system for polishing the interior surface of a tube, said electropolishing system comprising:an electrolyte solution source; an adapter for coupling said electrolyte solution source to said tube; an electropolishing electrode; a cable coupled to said electropolishing electrode for drawing said electropolishing electrode through said tube; and an electrolyte dam coupled to said electropolishing electrode for controlling the flow of electrolyte solution through said tube and to facilitate the escape of any evolved gases between said dam and said interior surface of said tube.
- 14. An electropolishing system according to claim 13, wherein said electrolyte dam comprises:a body having a top portion, and a bottom portion; ballast fixed at said bottom portion of said body; and a channel defined by said top portion of said body, for allowing the passage of electrolyte solution and evolved gasses past said electrolyte dam.
- 15. An electropolishing system according to claim 13, further comprising a mechanical feed-through coupled to said adapter to facilitate drawing said cable through said adapter and to inhibit electrolyte leakage.
- 16. An electropolishing system according to claim 15, wherein said mechanical feed-through comprises an iris valve.
RELATED APPLICATIONS
This application is a continuation-in-part of U.S. patent application Ser. No. 08/862,148, filed on May 22, 1997 by the same inventors, now issued as U.S. Pat. No. 5,958,195 which is incorporated herein by reference in its entirety, as if fully set forth herein.
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Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
08/862148 |
May 1997 |
US |
Child |
09/282587 |
|
US |