Conveying device for the conveying of coating powder, powder center with the conveying device, and method for the cleaning of the powder center
A conveying device is provided for the conveying of coating powder and includes a powder reservoir container that includes, on the bottom, a powder outlet channel. The powder outlet channel is connected to a first powder conveyor for conveying powder out of the powder reservoir container back to a powder storage container. Moreover, a second powder conveyor is provided for conveying powder out of the powder reservoir container to a powder applicator.
1. A conveying device for the conveying of coating powder,
wherein a powder reservoir container with an outlet is provided, wherein the outlet is arranged on the bottom of the powder reservoir container and forms an inlet opening of a powder outlet channel of the powder reservoir container,
wherein the powder outlet channel is connected to a first powder conveyor for conveying powder out of the powder reservoir container back to a powder storage container,
wherein a second powder conveyor is provided for conveying powder out of the powder reservoir container to a powder applicator.
2. The conveying device according to claim 1 ,
wherein a third powder conveyor for conveying powder out of the powder storage container into the powder reservoir container is provided.
3. The conveying device according to claim 2 ,
wherein the third powder conveyor is identical in structure to the first powder conveyor.
4. The conveying device according to claim 1 ,
wherein a valve for purging air is provided that is connected to the powder outlet channel via a purging air inlet and is provided for blowing purging air into the powder outlet channel and/or to the first powder conveyor.
5. The conveying device according to claim 1 ,
wherein a fluidizing element is provided in the powder outlet channel.
6. The conveying device according to claim 5 ,
wherein the fluidizing element is designed to be ring-shaped.
7. The conveying device according to claim 5 ,
wherein the fluidizing element is micro-porous such that it is permeable to air and impermeable to powder.
8. The conveying device according to claim 1 ,
wherein the powder reservoir container has a circular cross-section.
9. The conveying device according to claim 1 ,
wherein the powder reservoir container comprises a base that slants downwards towards the middle of the powder reservoir container.
10. The conveying device according to claim 9 ,
wherein the orifice of the powder outlet channel is situated in the middle of the downward slanting base.
11. The conveying device according to claim 1 ,
wherein the powder outlet channel extends such as to be funnel-shaped.
12. The conveying device according to claim 1 ,
wherein the first powder conveyor comprises a powder container with a powder inlet and a powder outlet, a powder inlet valve and a powder outlet valve,
whereby the powder inlet is connected to the powder inlet valve and the powder outlet is connected to the powder outlet valve, and
whereby a negative pressure can be applied to the powder container.
13. The conveying device according to claim 1 ,
wherein a container lid that can be removed, at least in part, is provided on the powder reservoir container.
14. A powder center in combination with a conveying device according to claim 13 ,
wherein a cleaning unit for cleaning of the powder reservoir container and of the container lid is provided that can be moved out of a parking position next to the powder reservoir container into a cleaning position in the powder reservoir container by means of a manipulator,
wherein a controller is provided by means of which the cleaning unit and the manipulator can be controlled.
15. A method for cleaning a powder center, comprising:
providing the powder center according to claim 14 ,
wherein the residual powder that is present in the powder reservoir container is conveyed out by means of the first powder conveyor,
wherein the powder reservoir container and the container lid are cleaned by means of the cleaning unit.
16. The method according to claim 15 ,
wherein the first powder conveyor comprises a powder container with a powder inlet and a powder outlet, a powder inlet valve and a powder outlet valve, wherein the powder inlet is connected to the powder inlet valve and the powder outlet is connected to the powder outlet valve, and wherein a negative pressure is applied to the powder container, and
wherein the first and second powder conveyors are purged with compressed air.
17. A conveying device for the conveying of coating powder,
wherein a powder reservoir container is provided that comprises, on the bottom, a powder outlet channel,
wherein the powder outlet channel is connected to a first powder conveyor for conveying powder out of the powder reservoir container back to a powder storage container,
wherein a second powder conveyor is provided for conveying powder out of the powder reservoir container to a powder applicator,
wherein the first powder conveyor comprises a powder container with a powder inlet and a powder outlet, a powder inlet valve and a powder outlet valve,
whereby the powder inlet is connected to the powder inlet valve and the powder outlet is connected to the powder outlet valve, and
whereby a negative pressure can be applied to the powder container.
18. A conveying device for the conveying of coating powder,
wherein a powder reservoir container is provided that comprises, on the bottom, a powder outlet channel,
wherein the powder outlet channel is connected to a first powder conveyor for conveying powder out of the powder reservoir container back to a powder storage container,
wherein a second powder conveyor is provided for conveying powder out of the powder reservoir container to a powder applicator,
wherein a fluidizing element is provided in the powder outlet channel,
wherein the fluidizing element is designed to be ring-shaped, and
wherein the fluidizing element is micro-porous such that it is permeable to air and impermeable to powder.
19. The conveying device according to claim 18 , wherein the microporous ring-shaped fluidizing element is disposed in the powder outlet channel to enable flow of powder through an opening in the ring-shaped element for conveying powder out of the powder reservoir container back to a powder storage container.