Multi-reagent slot die coating process and useful devices
US-11318493-B2 · May 3, 2022 · US
US11779951B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11779951-B2 |
| Application number | US-202117913243-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 24, 2021 |
| Priority date | Mar 24, 2020 |
| Publication date | Oct 10, 2023 |
| Grant date | Oct 10, 2023 |
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The disclosure relates to a coating device for edge-coating a panel with a coating medium, the device comprising at least one medium line, for guiding a coating medium, which comprises an inlet and an outlet, wherein the medium line comprises a recess for introducing a panel into a coating-medium stream, and wherein the medium line and the recess are designed such that the coating medium can be applied to the edge of the panel by means of suction in the flow direction of the medium. The present disclosure also relates to a coating system for edge-coating a panel with a coating medium.
Opening claim text (preview).
The invention claimed is: 1. A coating system for edge coating a panel with a coating medium, wherein the coating system comprises: a medium line system for guiding the coating medium; a pump system connected to the medium line system for conveying the coating medium; and at least one coating device connected to the medium line system, wherein the coating device comprises: at least one medium line for guiding the coating medium, comprising an inlet and an outlet, wherein the medium line comprises a recess for introducing a panel into a coating medium stream, and wherein the medium line and the recess are designed in such a way that the coating medium can be applied onto an edge of the panel by means of suction in a medium flow direction, wherein the pump system comprises a vacuum device arranged downstream of the outlet in the medium flow direction, wherein the vacuum device is configured to generate a negative pressure at the outlet. 2. The coating system according to claim 1 , wherein a medium line cross-section of the medium line system is also configured to generate a negative pressure at the outlet. 3. The coating system according to claim 2 , wherein a separator system is interconnected in the medium flow direction between the vacuum device and the outlet, wherein the separator system is configured to separate gas supplied from the vacuum device from the coating medium, wherein the separator system comprises a screen system for separatingly filtering the coating medium from the gas, wherein the separator system comprises a lid for making the separator system accessible. 4. The coating system according to claim 3 , wherein a pump of the pump system is interconnected in the medium flow direction between the separator system and the inlet, wherein the pump is configured for meterable conveyance of the coating medium up to the inlet. 5. The coating system according to claim 4 , wherein the pump is a shear force-free peristaltic pump, wherein the peristaltic pump comprises a hose comprising chlorosulfonated polyethylene (CSM). 6. The coating system according to claim 4 , wherein the pump, and a medium line cross-section of the medium line system, is configured to convey the coating medium in such a way that the inlet is fed with the coating medium with a supply pressure greater than or equal to a coating medium pressure at the recess ( 3 c ), or with the supply pressure greater than or equal to 3.5×10 3 Pa, or with the supply pressure of 10 4 Pa to 2×10 4 Pa. 7. The coating system according to claim 3 , wherein a heater is interconnected in the medium flow direction between the separator system or the pump, and the inlet, wherein the heater is configured for heating the coating medium to a temperature in a range from 30° C. to 45° C. 8. The coating system according to claim 1 , wherein the panel is a conveyed panel. 9. The coating system according to claim 1 , wherein the medium line and the recess are configured in such a way that the coating medium can be applied to the edge of the panel at the medium pressure at the recess in a range from 3.5×10 3 Pa to 5.5×10 3 Pa, or at the medium pressure of 5×10 3 Pa. 10. The coating system according to claim 1 , wherein the recess and a medium line cross-section have an aspect ratio relative to one another and the medium line extends in such a way that the coating medium can be applied onto the edge of the panel by means of suction in the medium flow direction, or that the coating medium can be applied onto the edge of the panel at the medium pressure in a range from 3.5×10 3 Pa to 5.5×10 3 Pa, or at the medium pressure of 5×10 3 Pa. 11. The coating system according to claim 1 , wherein the recess is arranged at an outer bend of an arc-shaped or bent medium line section, wherein the arc-shaped or bent medium line section has an acute inner angle, wherein an inlet piece, which extends from the inlet to the recess, extends vertically in a state in which the medium line is connected via the inlet. 12. The coating system according to claim 11 , wherein the medium line is U-shaped with two legs, wherein the inlet piece is a first leg and an outlet piece extending in the medium flow direction from the recess to the outlet is a second leg. 13. The coating system according to claim 1 , wherein an edge profile of the recess is configured to be adapted form-fittingly to the edge of the panel, and wherein the edge profile of the recess is configured as a counter profile to a profile of the edge of the panel. 14. The coating system according to claim 1 , wherein two medium lines are provided for guiding the coating medium.
for applying liquid or other fluent material to the edges of essentially flat articles · CPC title
Recovery of excess liquid or other fluent material; Controlling means therefor · CPC title
the outlet being fixed during operation · CPC title
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