Claims
- 1. Squeegee device for applying printing medium to a substrate, interacting with a squeegee element which is made at least partially from a magnetizable material and can be moved between an operating position and an at-rest position, which squeegee device comprises:
a support frame for delimiting an operating space, inside which the operating position of the squeegee element is located; and first magnetic means which are provided on said support frame for generating a magnetic field at a location of a designated bearing-wall part of said support frame in order to pull the squeegee element onto said bearing-wall part in the at-rest position;
wherein switching means are provided, which interact with said magnetic means in order to apply the magnetic field at the location of said bearing-wall part in a switched-on position and to substantially eliminate the magnetic field at the location of said bearing-wall part in a switched-off position.
- 2. Squeegee device according to claim 1, in which said magnetic means comprise at least one permanent magnet, and said switching means comprise movement means for moving said permanent magnet to and fro.
- 3. Squeegee device according to claim 2, in which said movement means comprise spring means for moving said permanent magnet to the switched-on position, and hydraulic or pneumatic means for moving said permanent magnet to the switched-off position.
- 4. Squeegee device according to claim 3, in which said hydraulic or pneumatic means comprise an inflatable flexible body, in particular an air-inflatable tire or bellows.
- 5. Squeegee device according to claim 3, in which said spring means comprise a leaf spring.
- 6. Squeegee device according to claim 2, in which said movement means comprise a double-acting piston-cylinder system.
- 7. Squeegee device according to claim 1, in which said magnetic means comprise at least one permanent magnet, and said switching means comprise an at least partially movable flux concentrator body, for the purpose of concentrated transmission of the magnetic field from a magnet pole to said bearing-wall part in the switched-on position, and diverting the magnetic field from said bearing-wall part in the switched-off position.
- 8. Squeegee device according to claim 1, in which said magnetic means comprise at least one permanent magnet, and said switching means comprise an at least partially movable flux concentrator body for short-circuiting two opposite magnet poles in the switched-off position and enabling two opposite magnet poles in the switched-on position.
- 9. Squeegee device according to claim 8, in which said magnetic means comprise at least a first and second permanent magnet, and said flux concentrator body short-circuits two opposite magnet poles of said first and second magnets in the switched-off position.
- 10. Squeegee device according to claim 1, in which said magnetic means comprise at least one electromagnet, and said switching means comprise a switch for breaking a circuit leading to said electromagnet in the switched-off position.
- 11. Squeegee device according to claim 1, in which said magnetic means comprise at least one electromagnet, which electromagnet comprises a coil in which there is a core of permanently magnetizable material, which can also be permanently virtually demagnetized.
- 12. Squeegee device according to claim 1, in which said magnetic means comprise at least one permanent magnet and an electromagnet, which electromagnet comprises a coil in which there is a core of permanently magnetic material, the direction of magnetization of which can be connected parallel to or opposite to the magnetic field direction of said permanent magnet, in which said switching means comprise a switch for breaking and reversing a circuit leading to said coil of said electromagnet, and in which the magnetic fields of said permanent magnet and said core of said electromagnet substantially cancel one another out in the switched-off position.
- 13. Squeegee device according to claim 12, in which the magnetic fields of said permanent magnet and said core of said electromagnet intensify one another in the switched-on position.
- 14. Squeegee device according to claim 1, in which one or more flux concentrator bodies are provided for the purpose of transmitting the magnetic fields to said bearing-wall part in the switched-on position.
- 15. Squeegee device according to claim 1, in which the squeegee element is a squeegee roller, with a solid or hollow metal roller.
- 16. Squeegee device according to claim 1, in which the squeegee element is a blade squeegee element, having a metal housing and a squeegee blade accommodated therein.
- 17. Squeegee device according to claim 1, in which a plurality of magnets are provided next to one another in the longitudinal direction.
- 18. Squeegee device according to claim 17, in which said plurality of magnets are arranged in such a manner that in each case opposite poles lie next to one another.
- 19. Screen-printing device for printing a substrate, comprising:
at least one printing station have a removable stencil, a printing-medium feed and a squeegee device with an associated squeegee element, according to claim 1; substrate-conveyor means for guiding a substrate past said printing station; actuatable second magnetic means provided beneath said substrate-conveyor means or a substrate guided over them, for the purpose of pulling said squeegee element into the operating position in a switched-on position; actuating means being provided for switching said switching means for the purpose of substantially removing the magnetic field from said first magnetic means in said support frame at the location of said bearing-wall part if said second magnetic means beneath the substrate-conveyor means are switched on.
- 20. Screen-printing device according to claim 19, furthermore comprising:
a movement mechanism for moving said stencil, together with said squeegee device with associated squeegee element, and said substrate-conveyor means with respect to one another, between a printing position and an inactive position; and a shutter which can be moved between a parked position and a shut off position, in which shut off position said shutter forms a protective shutter between said stencil and said substrate-conveyor means or a substrate being guided over them.
- 21. Method for washing at a printing station of a screen-printing device according to claim 19, in which the magnetic field from said first magnetic means is optionally removed or applied or alternately removed and applied, in a repeating sequence, in said support frame at the location of said bearing-wall part, in order to place said squeegee element into and lift it out of said stencil, and washing liquid is fed to said printing station.
- 22. Method for washing at a printing station of a screen-printing device according to claim 20, in which said stencil, together with said squeegee device, is placed in the inactive position, said shutter is placed in the shut off position, the magnetic field from said first magnetic means is removed or applied or alternately removed and applied in a repeating sequence as desired in said support frame at the location of said bearing-wall part, for the purpose of moving said squeegee element between the operating position in said stencil and the at-rest position on said support frame, and washing liquid is fed to said printing station.
- 23. Squeegee comprising a squeegee device according to claim 1 and an associated squeegee element which is made at least in part from a magnetizable material and can be moved between an operating position and an at-rest position.
Priority Claims (1)
Number |
Date |
Country |
Kind |
1011992 |
May 1999 |
NL |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This is a continuation application of PCT/NL00/00285 filed May 2, 2000.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/NL00/00285 |
May 2000 |
US |
Child |
09755434 |
Jan 2001 |
US |