IP Library › Granted Patent US 11,155,427
Granted Patent B2
US 11,155,427 · App. 16/301,265 · Granted Oct 26, 2021

Device for the surface treatment of a substrate, comprising a metallic conveyor belt

Inventors: Michael Triepel (Furth, DE); Konstantin Kosalla (Nuremberg, DE)
Assignee: LEONHARD KURZ STIFTUNG & CO. KG
B65H5/224B05D1/28B05D3/142B41F16/002B41F16/0026B41F19/062B41F23/00B65H5/021H01T19/00B05D3/0493B05D2252/02B65H2404/264B65H2404/27B65H2404/28B65H2406/32
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Quick Facts
Patent No.
US 11,155,427
App. No.
16/301,265
Granted
Oct 26, 2021
Kind
B2
Abstract

A device for the surface treatment of a substrate including a transport device, a vacuum suction device, a corona device and a coating device, is described. The transport device is formed as a conveyor belt. The conveyor belt is formed as a vacuum suction belt of the vacuum suction device, and the conveyor belt is formed as a counter electrode of the corona device.

Claims (51)

1. A device for the surface treatment of a substrate, having a transport device, a vacuum suction device, a corona device, and a coating device, wherein the transport device has a conveyor belt, and wherein the conveyor belt is formed as a vacuum suction belt of the vacuum suction device, and wherein the conveyor belt is formed as a counter electrode of the corona device, and

wherein the corona device has a housing that is open on its underside, in the lower end portion of which the electrode of the corona device is arranged, and

wherein the electrode of the corona device forms a cathode and the conveyor belt formed as the counter electrode forms an anode of the corona device and a corona gap is formed between the cathode and the anode, and

wherein the electrode of the corona device is formed as an air-cooled ceramic electrode and is arranged above the substrate, and

wherein a sealing element with a circumferential sealing lip is arranged between the side of the conveyor belt facing away from the substrate and a suction head of the vacuum suction device, and

wherein the suction head is arranged underneath the corona device, and

wherein the conveyor belt has through-holes, and

wherein the coating device is disposed downstream of the corona device, and

wherein the coating device is formed as one of a printing device or a stamping device for transferring a transfer layer arranged on a carrier layer of a transfer film onto the substrate.

2. The device according to claim 1 , wherein the conveyor belt is mounted on two guide rollers spaced apart from each other, wherein one of the guide rollers is formed as a drive roller.

3. The device according to claim 1 , wherein the conveyor belt is formed as a rotating belt.

4. The device according to claim 1 , wherein the conveyor belt is mounted on a supporting device in the area of the corona device and/or of the coating device.

5. The device according to claim 4 , wherein the supporting device has one supporting roller or several supporting rollers, which are arranged next to each other in the longitudinal direction of the conveyor belt.

6. The device according to claim 1 , wherein the conveyor belt has a thickness in the range of from 0.2 mm to 1 mm.

7. The device according to claim 1 , wherein the conveyor belt is formed from a material which has a degree of hardness in the range of from 450 HV10 to 520 HV10.

8. The device according to claim 1 , wherein the conveyor belt is formed and/or mounted such that its maximum deflection under normal operating load lies in the range of from 1 μm to 10 μm.

9. The device according to claim 1 , wherein the surface of the conveyor belt facing the substrate has a surface roughness of less than 0.3 μm.

10. The device according to claim 1 , wherein the conveyor belt is formed from a steel alloy.

11. The device according to claim 10 , wherein the conveyor belt is formed from stainless steel.

12. The device according to claim 1 , wherein the conveyor belt is formed from copper or aluminum or titanium or from an alloy which contains copper and/or aluminum and/or titanium.

13. The device according to claim 1 , wherein the conveyor belt is formed as a seamless belt.

14. The device according to claim 1 , wherein the conveyor belt has several partial conveyor belts which are arranged connected to each other in the transport direction.

15. The device according to claim 14 , wherein, between adjacent partial conveyor belts, a supporting element is arranged which bridges the distance between the adjacent partial conveyor belts without leaving a gap.

16. The device according to claim 1 , wherein the conveyor belt is formed as a link conveyor composed of plate-type links, wherein adjacent links are connected to each other by a pivot joint such that they form a gap-free supporting surface in the extended state.

17. The device according to claim 16 , wherein the conveyor belt has transport recesses at the edge, and wherein the guide rollers have corresponding toothed rims which engage in the transport recesses.

18. A device for the surface treatment of a substrate, having a transport device, a vacuum suction device, a corona device, and a coating device,

wherein the transport device has a conveyor belt, and wherein the conveyor belt is formed as a vacuum suction belt of the vacuum suction device, and wherein the conveyor belt is formed as a counter electrode of an electrode the corona device, and

wherein the corona device has a housing that is open on its underside, in which the electrode of the corona device is arranged, wherein the electrode of the corona device is formed as an air-cooled ceramic electrode and is arranged above the substrate, and

wherein the corona device further comprises an extraction device for the removal of ozone by suction, the extraction device being connected in a gas-tight manner to the housing of the corona device, and wherein the extraction device at the same time forms a cooling device for the electrode, and

wherein a coating device is disposed downstream of the corona device, and

wherein the coating device is formed as one of a printing device or a stamping device for transferring a transfer layer arranged on a carrier layer of a transfer film onto the substrate.

19. The device according to claim 1 , wherein the through-holes are formed as drilled holes and/or elongated holes and/or slits and/or rhombuses.

20. The device according to claim 1 , wherein the through-holes are arranged in a grid.

21. The device according to claim 20 , wherein the grid is formed regular or irregular or random.

22. The device according to claim 20 , wherein the grid is formed differently in areas.

23. The device according to claim 1 , wherein the through-holes have a diameter in the range of from 0.2 mm to 5 mm, or have a surface area corresponding to a circular hole of above-named diameter.

24. The device according to claim 18 , wherein a sealing element with a circumferential sealing lip is arranged between the side of the conveyor belt facing away from the substrate and a suction head of the vacuum suction device.

25. The device according to claim 1 , wherein the vacuum of the vacuum suction device lies in the range of from 0.1 bar to 1 bar.

26. The device according to claim 18 , wherein the electrode of the corona device forms the cathode and the conveyor belt as counter electrode forms the anode of the corona device, wherein a corona gap is formed between the cathode and the anode.

27. The device according to claim 1 , wherein the corona gap is formed adjustable.

28. A device for the surface treatment of a substrate, having a transport device, a vacuum suction device, a corona device, and a coating device,

wherein the transport device has a conveyor belt, and wherein the conveyor belt is formed as a vacuum suction belt of the vacuum suction device, and wherein the conveyor belt is formed as a counter electrode of an electrode the corona device, and

wherein the corona device has a housing that is open on its underside, in the lower end portion of which the electrode of the corona device is arranged, and

wherein the electrode of the corona device forms a cathode and the conveyor belt formed as the counter electrode forms an anode of the corona device and a corona gap is formed between the cathode and the anode, and

wherein a sealing element with a circumferential sealing lip is arranged between the side of the conveyor belt facing away from the substrate and a suction head of the vacuum suction device, and

wherein the suction head is arranged underneath the corona device, and

wherein the conveyor belt has through-holes, and

wherein the coating device is disposed downstream of the corona device, and

wherein the coating device is formed as one of a printing device or a stamping device for transferring a transfer layer arranged on a carrier layer of a transfer film onto the substrate.

29. The device according to claim 18 , wherein the conveyor belt has through-holes.

30. The device according to claim 1 , wherein the corona device further comprises an extraction device for the removal of ozone by suction, the extraction device being connected in a gas-tight manner to the housing of the corona device, and wherein the extraction device at the same time forms a cooling device for the electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2019
From: TRIEPEL, MICHAEL; KOSALLA, KONSTANTIN
To: LEONHARD KURZ STIFTUNG & CO. KG
Reel/Frame 048135/0354 →
Priority Claims (1)
DE 102016109044.1 · May 17, 2016 · national
Continuity (1)
Related Publication 20190210823A1 · Jul 11, 2019
Cited By (1)
US 12,311,692