This application claims the priority of German Patent Document No. 10 2007 035 432.2, filed Jul. 28, 2007, the disclosure of which is expressly incorporated by reference herein.
The invention relates to a web-fed rotary printing press.
A web-fed rotary printing press has several printing units for printing at least one printing substrate web. In the case of newspaper printing presses, normally several printing units in the form of printing towers are positioned in a vertically stacked manner. Viewed in the transport direction of the or each printing substrate web downstream from the printing units, the web-fed rotary printing press has a folding unit, wherein copies are separated from the or each printing substrate web by cross-cutting in the region of the folding unit. In addition, the folding unit is used to form at least one cross fold and/or at least one longitudinal fold on the separated copies. A so-called turner bar nest and folder superstructure is positioned between the printing units and the folding unit of the web-fed rotary printing press, wherein in the region of the turner bar nest and folder superstructure at least one printing substrate web can be separated into partial webs by longitudinal cutting. Alternatively or in addition to this, the or each printing substrate web or the or each partial web can be conveyed via turner bars and/or guide rollers to at least one former of the turner bar nest and folder superstructure.
Web-fed rotary printing presses known from practice have both a device for cut-off compensator control as well as a device for web edge control, wherein, according to practice, these devices are designed as separate units, which are positioned independent of one another along the transport path of the or each printing substrate web or the or each partial web preferably in the region of the turner bar nest and folder superstructure. This requires relatively a lot of construction space.
Starting herefrom, the present invention is based on the objective of creating a novel web-fed rotary printing press. According to the invention, at least one guide roller is respectively positioned along the transport path of the or each printing substrate web and/or the or each partial web through the turner bar nest and the folder superstructure, whose two ends are each assigned an adjusting unit, via which the respective end of the respective guider roller can be displaced linearly in and/or opposite from the running direction of the respective printing substrate web or partial web, namely in such a way that either both ends of the respective guide roller can be displaced uniformly to influence the cut-off compensator or both ends of the respective guide roller can be displaced non-uniformly to influence the edge position of the respective printing substrate web or partial web.
In the case of the inventive printing press, control of the cut-off compensator as well as control of the web edge position of the or each printing substrate web or the or each partial web is realized jointly by respectively at least one guide roller. The cut-off compensator control as well the web edge control are therefore in the case of the inventive printing press not realized by separate units, but in fact combined into one unit. This allows construction space to be saved.
Each adjusting unit is preferably embodied as an electromotive actuator, in particular as an electromotive linear drive.
Preferred developments of the invention are disclosed in the following description. Exemplary embodiments of the invention are explained in greater detail on the basis of the drawings.
The present invention relates to a web-fed rotary printing press, which has several printing units for printing at least one printing substrate web, and a folding unit. Copies can be separated from the or each printing substrate web by cross-cutting in the region of the folding unit. In addition, at least one longitudinal fold and/or at least one cross fold can be formed in the region of the folding unit. A so-called turner bar nest and folder superstructure is positioned between the printing units and the folding unit.
In terms of the present invention, at least one guider roller 15 is respectively positioned along the transport path of the two partial webs 13, 14, whose two ends 19, 20 are each assigned an adjusting unit 21 (see
According to the invention, the ends 19, 20 on each guide roller 15 can be displaced via the corresponding adjusting units 21 either uniformly to influence or control the cut-off compensator or non-uniformly to influence or control the edge position of the respective partial web 13, 14. Every guide roller 15 embodied in the above manner is thus used, on the one hand, for web edge control and, on the other hand, for cut-off compensator control. The adjusting units 21 assigned to each guide roller 15 can be activated either uniformly or non-uniformly in order to linearly displace the corresponding ends 19, 20 of the respective corresponding guide roller 15 either uniformly or non-uniformly in the running direction or opposite from the running direction of the respective partial web 13, 14.
Each adjusting unit 21 is preferably embodied as an electromotive actuator, in particular as an electromotive linear drive. This permits a displacement of the guide rollers 15 with a high dynamic so that simultaneous dynamic control of the cut-off compensator and lateral edge position of the respective partial web or printing substrate web is possible.
The foregoing disclosure has been set forth merely to illustrate the invention and is not intended to be limiting. Since modifications of the disclosed embodiments incorporating the spirit and substance of the invention may occur to persons skilled in the art, the invention should be construed to include everything within the scope of the appended claims and equivalents thereof.
Number | Date | Country | Kind |
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10 2007 035 432.2 | Jul 2007 | DE | national |