Claims
- 1. An apparatus for electrostatic coating of objects with an electrically conductive coating material comprising: a rotary atomizer (1) including a spraying head (2); an external housing (7) connected to said spraying head (2); a line supplying coating material from a storage system to a spraying edge (6) on said spraying head, said line and the coating material being at ground potential to said spraying head; charging electrodes (10) distributed radially around said spraying head (2) on a circle concentric with the axis thereof and spaced at uniform angular distances, said electrodes (10) being connected to a high voltage source for the purpose of producing an electrical field for charging the coating material, the radial distance between the front ends of said electrodes (10) facing the object to be coated and said spraying head (2) being twice the diameter of said spraying head (2); an electrode mounting means (20) made of an insulating material in which said charging electrodes (10), except for their front ends, are enclosed, said mounting means (20) having at least one support (24) running radially from said external housing (7) of said spraying head (2) and containing a high voltage conductor (12) connected electrically to said charging electrodes (10), and characterized by said mounting means being an annular ring (20) surrounding said external housing (7) of said spraying head (2) at a distance therefrom and made of an insulating material, said charging electrodes (10) being inserted into said annular ring (20), an electrical conductor (12) disposed within said annular ring (20) connecting said charging electrodes (10) annularly to each other and is connected to the high voltage cable conductor (14), said mounting means having an end face (21) including depressions (22) disposed on the front of said end face (21) at the point where said electrodes (10) are exposed, said conductor (12) being electrically insulated from the end face (21), facing the object to be coated of the annular ring (20), whereby the distance between said charging electrodes (10) are such that, while the unit is in operation, there is no substantial deposit of coating material upon the end face (21) of said annular ring (20).
- 2. An apparatus as set forth in claim 1 further characterized by the diameter of the circle upon which the ends of said electrodes lie exceeds 200 mm, at least nine charging electrodes (10) are provided.
- 3. An apparatus as set forth in claim 2 further characterized by the diameter of the circle being about 400 mm or more, at least eighteen charging electrodes are provided.
- 4. An apparatus as set forth in claim 1 further characterized by said annular insulating ring (20) being made of polypropylene (PPP).
- 5. An apparatus as set forth in claim 4 further characterized by the front ends of said electrodes (10) being located and exposed in a depression (22) having an aperture angle of more than 90.degree..
- 6. An apparatus as set forth in claim 5 further characterized by said annular element (12") comprising antiparticulate means (35) for preventing coating material from being deposited onto its end face (21").
- 7. An apparatus as set forth in claim 6 further characterized by said antiparticulate means including a fluid duct (35) disposed on the interior of said ring (20") adjacent said conductor (12") which is subjected to fluid pressure and including apertures (36) opening axially in the end face (21") between the electrodes (10") in fluid communication with said duct (35).
- 8. An apparatus as set forth in claim 7 further characterized by the front ends of said charging electrodes (10) being set back axially less than 1/3 the radial distance between said electrodes (10) and said spraying edge (6) behind the plane thereof.
- 9. An apparatus for electrostatic coating of objects with an electrically conductive coating material including an external housing (7), a rotary atomizer (1) mounted on said housing (7), an electrode mounting means (20) disposed annularly and radially about said atomizer (1) a plurality of electrode means (10) spaced annularly about said mounting means (20) for creating an electrical field between said electrode means (10) and the object to be coated, an electrical conductor (12) disposed within said electrode mounting means (20) and establishing an electrical connection between all of said electrode means (10) and a high voltage source, said electrode mounting means (20) having an end face (21) said electrical conductor (12) being electrically insulated from said end face (21) to prevent particulate contamination of said end face (21) by the coating material, said electrode means (10) including electrodes mounted substantially within said electrode mounting means (20) and having only a small portion extending beyond said end face (21) of electrode mounting means (20), said end face (21) including depressions (22) disposed on the front of said and face (21) at the point where said electrode (10) is exposed.
- 10. An apparatus as set forth in claim 1 further characterized by said electrode mounting means (20) being a continuous insulated annular ring and including at least one electrode mounting support (24) extending from said housing (7) to said electrode mounting means (20).
- 11. An apparatus as set forth in claim 9, further characterized by said electrode means (10') including pin means (31) enclosing said electrodes (10') extending form said end face (21') of said ring (20') for obtaining a substantial increase in the surface path between the exposed front ends of said electrode means (10').
- 12. An apparatus as set forth in claim 11 further characterized by said ring (20) including electrical contact means (16) for providing electrical power between said conductor (12) and said high voltage source.
- 13. An apparatus as set forth in claim 12, further characterized by said electrical contact means (16) including a compression spring (17) disposed on the end of an electrical cable (14) and a contact pin (18) secured to the conductor (12) for maintaining an electrical current between said conductor (12) and the high voltage source.
- 14. An apparatus as set forth in claim 13 further characterized by said ring (20") including an antiparticulate means (35, 36) for preventing coating material from being deposited onto said end face (21").
- 15. An apparatus as set forth in claim 14 further characterized by said antiparticulate means including a fluid duct (35) disposed on the interior of said ring (20") adjacent said conductor (12") and apertures (36) disposed on said end phase (21") and in fluid communication with said duct (35) for allowing a flow of fluid through said duct (35) and said aperture (36) for preventing coating materials from being deposited on said end face (21").
- 16. An apparatus as set forth in claim 15 further characterized by including a coating supply line and said rotary atomizer (1) and said supply line being electrically grounded.
- 17. An apparatus as set forth in claim 16 further characterized by the diameter of the circle upon which the ends of said electrode lie exceeds 200 mm, at least nine charging electrodes (10) are provided.
- 18. An apparatus as set forth in claim 17 further characterized by the diameter of the circle being about 400 mm or more, at least eighteen charging electrodes are provided.
- 19. An apparatus as set forth in claim 18 further characterized by said annular insulating element (20) being made of polypropylene (PPP).
- 20. An apparatus as set forth in claim 19 further characterized by the front ends of said charging electrodes (10) being set back axially less than 1/3 the radial distance between said electrodes (10) and said spraying edge (6) behind the plane thereof.
- 21. An apparatus for electrostatically coating of objects with an electrically conductive coating material comprising, an external housing (7), an atomizer (1) including a spraying head (2) having an annular atomizing spray edge (6) defining a forward end of the apparatus, feed means for supplying coating material from a supply source to said spraying head, said spraying edge also defining a predetermined diameter for atomizing the material and projecting the atomized material radially therefrom, said atomizer (1) mounted on said housing (7), an electrode mounting means (20) disposed annularly and radially about said atomizer (1), a plurality of electrode means (10) spaced annularly about said mounting means (20) for creating an electrical field between said electrode means (10) and the object to be coated, said assembly (10) characterized by an electrical conductor (12) disposed within said electrode mounting means (20) and establishing an electrical connection between all of said electrode means (10) and a high voltage source, said electrode means (10) being positioned on said electrode mounting means (20) radially outward from said spraying edge (6) of said spraying head (2) a predetermined radial distance which is at least twice the predetermined diameter of said spray edge (6) of said spraying head (2) and said electrode means (10) located axially rearward from said forward end of said spray edge (6) of the spraying head (2) at a distance which is not greater than one third the radial distance between the electrode means (10) and the spray edge (6).
- 22. An apparatus as set for in claim 21 further characterized by said electrode mounting means (20) being a continuous annular ring and including at least one electrode mounting support (24 ) extending from said housing (7) to said electrode mounting means (20).
Priority Claims (1)
Number |
Date |
Country |
Kind |
3609240 |
Mar 1986 |
DEX |
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Parent Case Info
This application is a continuation, of application Ser. No. 012,082, filed Feb. 6, 1987, now abandoned.
US Referenced Citations (13)
Continuations (1)
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Number |
Date |
Country |
Parent |
12082 |
Feb 1987 |
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