Printing machine with a twin printing unit and method for operating such a printing machine
10919289 ยท 2021-02-16
Assignee
Inventors
Cpc classification
B41F5/06
PERFORMING OPERATIONS; TRANSPORTING
B41F3/12
PERFORMING OPERATIONS; TRANSPORTING
International classification
B41F3/12
PERFORMING OPERATIONS; TRANSPORTING
B41F5/06
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A printing machine for printing on a web of printing material includes a plurality of in-line flexographic printing units disposed in a plane that is accessible to a machine operator. Every two flexographic printing units of the plurality of flexographic printing units together form a double printing station and the two flexographic printing units of a respective double printing station have a common impression cylinder. A method of operating a printing machine is also provided.
Claims
1. A printing machine for printing on a continuous web of printing material, the printing machine comprising: a plurality of in-line flexographic printing units disposed in a plane accessible to a machine operator; every two of said flexographic printing units of said plurality of flexographic printing units together forming a first double printing station or a second double printing station; said two flexographic printing units of a respective double printing station having a common impression cylinder; and said flexographic printing units in said first and second double printing stations being synchronized precisely in accordance with a register when changing print jobs to cause a switching from a first print job to a second print job and therefore a switching from one flexographic printing unit to another flexographic printing unit in said second double printing station to take place precisely at a point on the web of printing material where said first double printing station has completed a change.
2. The printing machine according to claim 1, wherein said two flexographic printing units of a respective double printing station are jointly activatable or alternately activatable.
3. The printing machine according to claim 1, wherein said two flexographic printing units of a respective double printing station are disposed mirror-symmetrically relative to said common impression cylinder.
4. The printing machine according to claim 1, which further comprises a drier disposed downstream of every respective double printing station or one, two or four driers included in every respective double printing station.
5. The printing machine according to claim 4, wherein said drier is a UV drier or said driers are UV driers.
6. . The printing machine according to claim 4, wherein said common impression cylinder of each respective double printing station is a cooling cylinder.
7. The printing machine according to claim 6, wherein said cooling cylinder has a circumference and: a flexographic printing unit, one or two UV driers, another flexographic printing unit and one or two other UV driers are disposed along said circumference of said cooling cylinder in every double printing station in a direction of printing material transport.
8. The printing machine according to claim 1, wherein one of said flexographic printing units is equipped with an ink application device and a flexographic printing cylinder.
9. The printing machine according to claim 1, wherein each respective impression cylinder has a circumference smaller than 1000 mm.
10. The printing machine according to claim 1, which further comprises at least one further flexographic printing unit in addition to said plurality of flexographic printing units, said at least one further flexographic printing unit being a single printing station.
11. The printing machine according to claim 10, wherein said single printing station is a varnishing unit.
12. The printing machine according to claim 10, wherein: said single printing station is disposed upstream of said plurality of flexographic printing units or said single printing station is disposed downstream of said plurality of flexographic printing units.
13. The printing machine according to claim 10, wherein said single printing station is disposed downstream of said double printing station or downstream of a last double printing station in a direction of printing material transport.
14. The printing machine according to claim 13, wherein: said single printing station has an impression cylinder being a cooling cylinder having a circumference; and a flexographic printing unit and one or two UV driers are successively disposed along said circumference of said cooing cylinder in said direction of printing material transport.
15. The printing machine according to claim 13, which further comprises a hot-air drier, said single printing station and said hot-air drier being successively disposed downstream of said last double printing station in said direction of printing material transport.
16. The printing machine according to claim 10, wherein: said plane is a first plane; and a section or all sections of the web of printing material are disposed in a second plane located substantially beneath said first plane and disposed at least one of: a) between two double printing stations or b) between a double printing station or a last double printing station and said single printing station.
17. The printing machine according to claim 16, wherein a length of the section or all sections of the web of printing material is smaller than a length of the web of printing material in a double printing station.
18. The printing machine according to claim 16, wherein the web of printing material forms a loop extending from said second plane and being open in a downward direction in every double printing station.
19. The printing machine according to claim 16, which further comprises at least two or three guide rollers disposed between said first plane and said second plane and causing the loop to run around said impression cylinder and said guide rollers.
20. A method of operating a printing machine for printing on a continuous web of printing material, the method comprising the following steps: providing a plurality of in-line flexographic printing units disposed in a plane accessible to a machine operator, every two of the flexographic printing units of the plurality of flexographic printing units together forming a double printing station, and the two flexographic printing units of a respective double printing station having a common impression cylinder; activating and printing with only one flexographic printing unit of the two flexographic printing units of a respective double printing station while carrying out an equipping procedure or a maintenance procedure on the other flexographic printing unit in the respective double printing station; and activating and deactivating the two flexographic printing units in a respective double printing station precisely in accordance with a register.
21. The method for operating a printing machine according to claim 20, which further comprises subjecting the other flexographic printing unit of the respective double printing station to set-up operations.
22. The method for operating a printing machine according to claim 20, which further comprises automatically placing the one flexographic printing unit in an inactive standby position while placing the other flexographic printing unit in an active position when a first print job has been completed at a specific time in order to print a second print job, causing a completion of printing for the first print job and a start of printing for the second, subsequent print job, to take place simultaneously.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
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DETAILED DESCRIPTION OF THE INVENTION
(10) Referring now to the figures of the drawings in detail and first, particularly, to
(11) The inspection systems 14, the flexographic printing units 11, the embossing unit 12 and the die-cutting/creasing unit 13 are connected to a control unit 22 in terms of data communication and may be actuated by the control unit 22.
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(13) Like the printing machine 100 in
(14) The construction of a respective printing station 10 is shown in more detail in
(15) The switch from one print job to the next print job is made in an event-driven way. The triggering event may be a specified printing time, a specified length of the web of substrate that has been printed on, a specified number of printed copies, a change of material, or an initiating operation by the machine operator. Due to such an event-driven control of the printing machine 100 by using a control unit 22, the printing machine 100 is capable of preparing for the next print jobs while processing a current print job and of processing the next print jobs in sequence.
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(17) Both stations are constructed as so-called short web stations: if UV inks are used, the drier path may be chosen to be much shorter; UV driers may in particular be disposed on the circumference of a (central) impression cylinder in a space-saving way. As compared to the thermal drying process of water-based inks (see
(18) The DID station 31 includes the following elements in the direction of printing material transport: a deflection roller 20 for the web 1, a central impression cylinder 16, a first flexographic printing unit 11 (including a flexographic printing cylinder 15 and an ink application device 21 with, for instance, a screen cylinder) assigned to the impression cylinder, one or (as shown) two driers 19, a second flexographic printing unit 11, one or (as shown) two further driers 19, and two deflection rollers 20. The driers are preferably UV driers. Such a station is capable of applying two colors at the same time.
(19) The SID station 30 includes the following elements in the direction of printing material transport: two deflection rollers 20 for the web 1, a central impression cylinder 16, a first flexographic printing unit 11 (including a flexographic printing cylinder 15 and an ink application device 21 such as a screen cylinder) assigned to the impression cylinder 16, one or (as shown) two driers 19, and a deflection roller 20. The driers are preferably UV driers. Such a station is capable of applying one color. The other unit of the station may at the same time (i.e. on the fly) be subjected to changeover operations such as a plate and/or color change.
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(25) The following is a summary list of reference numerals and the corresponding structure used in the above description of the invention: 1 web of printing material 10 printing station 11 flexographic printing unit 12 embossing unit 13 die-cutting and creasing unit 14 inspection system 15 flexographic printing cylinder with printing sleeve 16 impression cylinder 17 embossing cylinder 18 die-cutting cylinder 19 drier 20 deflection roller 21 ink application device 22 control unit (machine control with interface) 30 SID station (single ink deck) 31 DID station (double ink deck) 40 web path 100 printing machine s adjustment movement E plane T direction of web transport DW printing unit number M magenta C cyan Y yellow K black S1, S2 special colors