Claims
- 1. An apparatus for providing a spray of a recirculated electrolyte fluid from a source onto a plurality of parts that are disposed within a rotatable plating barrel that agitates the parts by its rotation comprising:
- a tank adapted to receive and cooperate with the plating barrel in removable engagement;
- spray means extending within said plating barrel for spraying the parts with electrolyte, said spray means mounted eccentrically with respect to a central axis of said plating barrel a predetermined distance above the central axis and said parts; and
- at least one hub means in communication with said spray means and with the source of the fluid for directing the fluid under pressure from the source to said spray means;
- whereby enhanced and more efficient electroplating of parts can be accomplished.
- 2. The apparatus as defined in claim 1, wherein said hub means has an annular portion in selective communication with said fluid source and formed to communicate with said spray means when connected in communication therewith to enable said spray to be fed from opposite directions and thereby enhances the flow of the liquid being forced through said annular portion.
- 3. The apparatus, as defined in claim 1, wherein said spray means comprises a spray tube mounted at each end of said barrel and having a plurality of apertures to spray said parts from above said central axis of the barrel.
- 4. An apparatus as defined in claim 1, wherein said spray means includes at least one nozzle spray means located at one side of the rotating plating barrel whereby enhanced plating of larger parts can be achieved.
- 5. An apparatus as defined in claim 4, wherein at least one nozzle spray means is operatively disposed on each side of said plating barrel by being mounted at each end in central hub members that can both communicate with said electrolyte under pressure and said hub members have bearing surfaces that are journalled and cooperate to enable said plating barrel to rotate while said nozzle spray means remains stationary.
- 6. An apparatus as defined in claim 4, wherein said nozzle spray means has at least one vertical slit therein, thereby causing spraying in a substantially vertical spray pattern on said parts to be plated.
- 7. An apparatus, as defined in claim 4, wherein said nozzle spray means has at least one horizontal slit defined therein, thereby causing a spray pattern that includes substantial horizontal sprays on said parts to be plated.
- 8. An apparatus as defined in claim 4, wherein said nozzle spray means includes at least one "T" shaped slit therein, thereby causing a spray pattern that has sprays go in both substantially horizontal and vertical directions to spray electrolyte on the length and width of said parts being plated.
- 9. An apparatus as defined in claim 8, wherein a horizontal slit is defined above said "T" shaped slit in said nozzle, whereby enhanced spraying of parts to be plated can be achieved.
- 10. The apparatus as defined in claim 2, wherein said spray means is mounted at each end in a central hub member and said hub members have bearing surfaces that are journaled and cooperate to enable said plating barrel to rotate while said spray means remains stationary.
- 11. The apparatus as defined in claim 10, wherein a coupling device removably associates said barrel and the fluid source, said coupling device having a barrel coupling member associated with said barrel and another coupling member associated with said fluid source, said barrel coupling member being in communication with said annular opening in one of said hub members, whereby said spray means within said barrel can be connected with said source of recirculated fluid when said barrel is positioned into proximity with said other coupling member to enable said coupling device to be locked into engagement.
- 12. A method of spraying a plurality of parts to be plated in a plating barrel that is operatively associated with a plating tank containing electrolyte, said barrel including a perforated spray means that sprays electrolyte on the parts below said spray where the barrel can be moved to removably associate it with a source of electrolyte under pressure comprising the steps of:
- (a) moving the electroplating barrel into a position where it is removably coupled with the source of electrolyte under pressure;
- (b) agitating the parts to be plated in the plating barrel by rotating the plating barrel;
- (c) spraying the parts with said electrolyte through the perforated spray means from a fixed position within the plating barrel above the parts and central axis of the plating barrel while said barrel, rotates whereby more efficient electroplating is accomplished.
- 13. An apparatus for providing a spray of a recirculated electrolyte fluid from a source onto a plurality of parts that are disposed within a rotatable plating barrel that agitates the parts by its rotation comprising:
- a tank adapted to receive and cooperate with the plating barrel in removable engagement;
- spray means extending within said plating barrel for spraying parts below it with electrolyte;
- at least one stationary hub means having a portion in selective communication with said fluid source and having journalling means for enabling said plating barrel to rotate while said spray means is mounted on said hub means and remains stationary,
- a pair of coupling members, one of said coupling members being associated with said hub member of the barrel and extending from said barrel at a fixed location, the other of said coupling members being positioned in communication with the source of fluid for directing the fluid under pressure to said spray means when said coupling members are in engagement with each other at a fixed location to achieve enhanced and more efficient electroplating of parts.
- 14. An apparatus as defined in claim 13, wherein said spray means includes at least one nozzle spray means located at one side of the rotating plating barrel whereby enhanced plating of parts can be achieved.
- 15. An apparatus as defined in claim 14, wherein at least one nozzle spray means is operatively disposed on each side of said plating barrel by being mounted at each end in central hub members that can both communicate with said electrolyte under pressure and said hub members have bearing surfaces that are journalled and cooperate to enable said plating barrel to rotate while said nozzle spray means remains stationary.
- 16. An apparatus as defined in claim 14, wherein said nozzle spray means has at least one vertical slit therein, thereby causing spraying in a substantially vertical spray pattern on said parts to be plated.
- 17. An apparatus, as defined in claim 14, wherein said nozzle spray means has at least one horizontal slit defined therein, thereby causing a spray pattern that includes substantial horizontal sprays on said parts to be plated.
- 18. An apparatus as defined in claim 14, wherein said nozzle spray means includes at least one "T" shaped slit therein, thereby causing a spray pattern that has sprays go in both substantially horizontal and vertical directions to spray electrolyte on the length and width of said parts being plated.
- 19. An apparatus as defined in claim 18, wherein a horizontal slit is defined above said "T" shaped slit in said nozzle, whereby enhanced spraying of parts to be plated can be achieved.
- 20. The apparatus as defined in claim 13, wherein said spray means is mounted at each end in a central hub member and said hub members have bearing surfaces that are journalled and cooperate to enable said plating barrel to rotate while said spray means remains stationary.
- 21. The apparatus as defined in claim 13, wherein said one of said coupling members removably associates said barrel and the fluid source, said coupling device having a barrel coupling member attached to said barrel at the hub member and another coupling member attached to said fluid source, said barrel coupling member being in communication with said barrel through at least one of said hub members, whereby said spray means within said barrel can be connected with said source of recirculated fluid when said barrel is positioned into proximity with said other coupling member to enable said coupling device to be locked in engagement with said other coupling member.
- 22. A method of spraying a plurality of parts to be plated in a plating barrel that is operatively associated with a plating tank containing electrolyte, said barrel including a perforated spray means that sprays electrolyte on the parts below said spray where the barrel can be moved to removably associate it with a source of electrolyte under pressure and can be rotated while the hub thereof remains stationary by a coupling device wherein at least one of the coupling members is associated with said barrel and extending therefrom in a fixed location with respect to said barrel, the other of said coupling members is located at a fixed position to enable removable engagement with said other coupling member, comprising the steps of:
- (a) moving the electroplating barrel into a position where it is removably coupled with the source of electrolyte under pressure;
- (b) agitating the parts to be plated in the plating barrel by rotating the plating barrel; and
- (c) spraying the parts with said electrolyte through the perforated spray means from a fixed position above said parts within the plating barrel while said barrel agitates the parts whereby more efficient electroplating is accomplished.
Parent Case Info
This application is a continuation-in-part depending from our previous application entitled IMPROVED ELECTROPLATING DEVICE AND PROCESS filed Nov. 9, 1993, under Ser. No. 08/149,442 now U.S. Pat. No. 5,419,823.
US Referenced Citations (2)
Non-Patent Literature Citations (1)
Entry |
Electroplating Engineering Handbook, 3rd Ed., A. Kinweth Graham, Ed., Van Nostrand Reinhold Co., New York (1971) p. 619. |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
149442 |
Nov 1993 |
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