Claims
- 1. A reusable printing plate for recess or relief printing, the reusable printing plate comprising:(a) plurality of adjacent printing cells, each of said plurality of adjacent printing cells being independently alternatable at least between a printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a first configuration adapted for receiving and retaining thereat a printing substance, and a non-printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a second configuration adapted for not receiving or retaining thereat the printing substance; and (b) an internal mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes.
- 2. The reusable printing plate of claim 1, wherein printing cells of said plurality of adjacent printing cells which are in said printing mode are elevated respective to printing cells of said plurality of adjacent printing cells which are in said non-printing mode.
- 3. The reusable printing plate of claim 1, wherein printing cells of said plurality of adjacent printing cells which are in said printing mode are recessed respective to printing cells of said plurality of adjacent printing cells which are in said non-printing mode.
- 4. The reusable printing plate of claim 1, wherein each of said adjacent printing cells includes a stationary guiding element and a translating element translatable within said stationary guiding element.
- 5. The reusable printing plate of claim 4, wherein said translating element includes a flexible membrane connecting said stationary guiding element and said translating element.
- 6. The reusable printing plate of claim 4, wherein said translating element includes a membrane selected from the group consisting of a buckling membrane, a bi-material element membrane and a shape memory alloy membrane.
- 7. The reusable printing plate of claim 1, wherein each of said adjacent printing cell includes a stationary guiding element and a translating element translatable within said stationary guiding element.
- 8. The reusable printing plate of claim 7, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively actuating or deactuating electrostatic attraction or repulsion forces to thereby translate said translating elements in respect to their stationary guiding elements.
- 9. The reusable printing plate of claim 7, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively actuating or deactuating magnetic or electromagnetic attraction or repulsion forces to thereby translate said respective translating elements in respect to their stationary guiding elements.
- 10. The reusable printing plate of claim 7, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively applying mechanical forces to thereby translate said respective translating elements in respect to their stationary guiding elements.
- 11. A recess or relief printing method comprising the steps of:(a) providing a reusable printing plate including a plurality of adjacent printing cells, each of said plurality of adjacent printing cells being independently alternatable at least between a printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a configuration adapted for receiving and retaining thereat a printing substance, and a non-printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a configuration adapted for not receiving or retaining thereat a printing substance, each of said adjacent printing cells including a stationary guiding element and a translating element translatable within said stationary guiding element; (b) further providing a mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes by selectively translating said translating elements with respect to their stationary guiding elements; (c) via said mechanism, selecting printing cells of said plurality of adjacent printing cells to be in said printing mode; (d) providing printing cells being in said printing mode with said printing substance; and (e) transferring at least a portion of said printing substance from said printing cells being in said printing mode to a printable substrate.
- 12. The method of claim 11, wherein printing cells of said plurality of adjacent printing cells which are in said printing mode are elevated respective to printing cells of said plurality of adjacent printing cells which are in said non-printing mode, so that providing said printing cells being in said printing mode with said printing substance is effected by applying said printing substance onto elevated regions of said reusable printing plate.
- 13. The method of claim 11, wherein printing cells of said plurality of adjacent printing cells which are in said printing mode are recessed respective to printing cells of said plurality of adjacent printing cells which are in said non-printing mode, so that providing said printing cells being in said printing mode with said printing substance is effected by applying said printing substance into recessed regions of said reusable printing plate.
- 14. The method of claim 11, wherein said translating element includes a flexible membrane connecting said stationary guiding element and said translating element.
- 15. The method of claim 11, wherein said translating element includes a membrane selected from the group consisting of a buckling membrane, a bi-material element membrane and a shape memory alloy membrane.
- 16. The method of claim 11, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively actuating or deactuating electrostatic attraction or repulsion forces to thereby translate said translating elements in respect to their stationary guiding elements.
- 17. The method of claim 11, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively actuating or deactuating magnetic or electromagnetic attraction or repulsion forces to thereby translate said respective translating elements in respect to their stationary guiding elements.
- 18. The method of claim 11, wherein said mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes operates by selectively applying mechanical forces to thereby translate said respective translating elements in respect to their stationary guiding elements.
- 19. A printing system comprising:(a) a reusable printing plate for recess or relief printing including a plurality of adjacent printing cells, each of said plurality of adjacent printing cells being independently alternatable at least between a printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a first configuration adapted for receiving and retaining thereat a printing substance, and a non-printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a second configuration adapted for not receiving or retaining thereat the printing substance, each of said adjacent printing cells including a stationary guiding element and a translating element translatable within said stationary guiding element; and (b) an external mechanism for independently alternating each of said plurality of adjacent printing cells between said printing and non-printing modes.
- 20. The printing system of claim 19, wherein said external mechanism includes at least one mechanical actuator for translating said translating elements in respect to their stationary guiding elements.
- 21. A reusable printing plate for recess or relief printing, the reusable printing plate comprising a plurality of adjacent printing cells, each of said plurality of adjacent printing cells being independently alternatable at least between a printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a first configuration adapted for receiving and retaining thereat a printing substance, and a non-printing mode, in which a printing cell of said plurality of adjacent printing cells acquires a second configuration adapted for not receiving or retaining thereat the printing substance, each of said adjacent printing cells including a stationary guiding element and a translating element translatable within said stationary guide element.
Parent Case Info
This is a U.S. provisional Pat. application Ser. No. 60/111,277, filed Dec. 7, 1998.
US Referenced Citations (2)
Number |
Name |
Date |
Kind |
2338558 |
Wickwire, Jr. |
Jan 1944 |
|
3589289 |
Gosnell et al. |
Jun 1971 |
|
Provisional Applications (1)
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Number |
Date |
Country |
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60/111277 |
Dec 1998 |
US |