Claims
- 1. Apparatus for supplying and dispensing electrically conductive coating material, comprising:
- a coating dispenser having an actuator which is movable to an operating position to initiate discharge of coating material therefrom, said coating dispenser employing pressurized air in the operation thereof;
- a container which is effective to receive coating material and then transmit the coating material to said coating dispenser;
- a voltage block including a first coupling element movable in response to operation of a pneumatic actuator to a first position at which coating material is transmitted from a source of coating material to said container, and to a second position at which said container is electrically isolated from the source of coating material;
- a high voltage electrostatic power supply operative to apply an electrostatic charge to the coating material which is discharged from said coating dispenser;
- a control valve, connected to a source of pressurized air, which is operative in response to movement of said coating dispenser actuator to said operating position, to:
- (i) transmit pressurized air to said coating dispenser; and
- (ii) transmit pressurized air to said pneumatic actuator of said voltage block to cause said first coupling element thereof to move to said second position.
- 2. The apparatus of claim 1 in which said voltage block includes a shuttle carrying said first coupling element, and a filling station carrying a second coupling element which mates with said first coupling element, said second coupling element being adapted to connect to the source of coating material, said pneumatic actuator of said voltage block comprising a pneumatic cylinder which is operative to move said shuttle between said first position wherein said first and second coupling elements mate with one another and said second position wherein said first coupling element is spaced from said second coupling element.
- 3. The apparatus of claim 2 in which said voltage block includes a pilot operated valve connected to said control valve and adapted to be connected to the source of pressurized air, said pilot operated valve being effective in response to receipt of pressurized air from said control valve to operate said pneumatic cylinder so that said shuttle is moved to said second position, said pilot operated valve being effective to operate said pneumatic cylinder to move said shuttle to said first position when the supply of pressurized air from said control valve is terminated.
- 4. The apparatus of claim 3 further including a bleed valve connected to said control valve and communicating with said pilot operated valve of said voltage block, said bleed valve being effective to adjustably reduce the pressure of the air between said control valve and said pilot operated valve over a selected period of time to cause said pilot operated valve to maintain said first coupling element of said voltage block in said second position during said selected time period.
- 5. Apparatus for supplying electrically conductive coating material to a coating dispenser having an actuator movable to an operating position to initiate discharge of the coating material therefrom and employing pressurized air in the operation thereof, said apparatus comprising:
- a container which is effective to receive coating material and then transmit the coating material to the coating dispenser;
- a voltage block including a first coupling element movable in response to operation of a pneumatic actuator to a first position at which coating material is transmitted from a source of coating material to said container, and to a second position at which said container is electrically isolated from the source of coating material;
- a high voltage electrostatic power supply operative to apply an electrostatic charge to the coating material;
- a control valve, connected to a source of pressurized air, which is adapted to operate in response to movement of the coating dispenser actuator to the operating position, to:
- (i) transmit pressurized air to the coating dispenser; and
- (ii) transmit pressurized air to said pneumatic actuator of said voltage block to cause said first coupling element thereof to move to said second position.
- 6. The apparatus of claims 5 in which said voltage block includes a shuttle carrying said first coupling element, and a filling station carrying a second coupling element which mates with said first coupling element, said second coupling element being adapted to connect to the source of coating material, said pneumatic actuator of said voltage block comprising a pneumatic cylinder which is operative to move said shuttle between said first position wherein said first and second coupling elements mate with one another and said second position wherein said first coupling element is spaced from said second coupling element.
- 7. The apparatus of claim 6 in which said voltage block includes a pilot operated valve connected to said control valve and adapted to be connected to the source of pressurized air, said pilot operated valve being effective in response to receipt of pressurized air from said control valve to operate said pneumatic cylinder so that said shuttle is moved to said second position, said pilot operated valve being effective to operate said pneumatic cylinder to move said shuttle to said first position when the supply of pressurized air from said control valve is terminated.
- 8. In an apparatus for supplying electrically conductive coating material from a source, through a voltage block to a coating dispenser, a control valve comprising:
- a valve body formed with a first passageway having an inlet adapted to connect to a source of pressurized air, an outlet adapted to connect to the coating dispenser, and a seat located between said inlet and said outlet;
- said valve body being formed with a second passageway having an inlet connected to said first passageway and an outlet adapted to be connected to the voltage block;
- a closure element, located in said first passageway, which is movable to an open position with respect to said seat in response to actuation of the coating dispenser to permit the flow of pressurized air from the source of pressurized air, through said first passageway and to the coating dispenser;
- a transfer valve, located within said second passageway, which is responsive to movement of said closure element to said open position to permit a flow of pressurized air from said first passageway, through said second passageway to the voltage block so that the source of coating material is electrically isolated from the coating dispenser.
- 9. The control valve of claim 8 in which said closure element is a ball movable between an open and closed position relative to said seat.
Parent Case Info
This is a continuation of application Ser. No. 08/076,302, filed Jun. 11, 1993, now U.S. Pat. No. 5,341,990.
US Referenced Citations (35)
Foreign Referenced Citations (2)
Number |
Date |
Country |
3725172 |
Feb 1989 |
DEX |
8705832 |
Oct 1987 |
WOX |
Continuations (1)
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Number |
Date |
Country |
Parent |
76302 |
Jun 1993 |
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