This application claims the priority of German Patent Document No. 10 2006 018 526.9, filed Apr. 21, 2006, the disclosure of which is expressly incorporated by reference herein.
The invention relates to a printing unit of a reel-fed press.
With reel-fed presses, more preferably with multiple page wide reel-fed presses, as with 6-2 printing presses, bending vibrations of the rotary bodies frequently occur. These bending vibrations have a negative effect with regard to the printing process.
The bending vibrations on the one hand are caused through the increasing body length L. As a result, bending through dmax already occurs because of the dead weight of the rotary body which is directly proportional to L3 or L4. This basic bending through already promotes the susceptibility to vibration of the rotary body. On the other hand, such bending vibrations are excited through the clamping channels which are provided on the rotary bodies for mounts. In this way, the rubber blanket plates and the printing plates are mounted on the transfer cylinder and the form cylinder respectively via the clamping channels. If the clamping channels of adjacent transfer cylinders and form cylinders now happen to meet with the printing press in operation, a lower resistance moment of the cylinders in contact favours a so-called channel knocking which in turn causes the excitation of the undesirable bending vibration(s).
From German Patent Document No. DE 100 66 162 B4 a six page wide printing unit is already known where the vibration behaviour is to be reduced through a certain arrangement of the mounts. Here, the transfer cylinder has two clamping channels to accommodate printing blankets which are arranged on the circumference offset by 180°. In the longitudinal direction of the transfer cylinder, three printing blankets are arranged next to one another, while each of the printing blankets is arranged in an alternating way, i.e. 0°-180°-0° or 180°-0°-180°. However, this special arrangement of the printing blankets reduces the vibration characteristics only insufficiently.
The inventors therefore set themselves the task of designing a printing unit of a reel-fed printing press such that the vibration behaviour is further reduced.
The inventors have recognized that the alternating arrangement of three printing blankets along the body length of the transfer cylinder, because of the symmetrical arrangement relative to the transfer cylinder center, still greatly promotes the vibration excitation. Moreover, the use of a double width rubber blanket for a super panorama print is not possible. The inventors have further recognized that the arrangement of three printing blankets with 0°-0°-180° or 180°-0°-0° and 180°-180°-0° or 0°-180°-180° offset has a positive effect on reduced vibration behaviour of the printing unit. With this arrangement of the printing blankets, asymmetrical coinciding of adjacent clamping channels of adjacent rotary bodies of the printing unit only results in an asymmetrical vibration excitation, which on the whole results in less intensive vibration. Furthermore, this asymmetrical arrangement of the mounts offers the possibility of replacing the two adjacent rubber blankets, which are attached in a common clamping channel, with a double width rubber blanket in order to enable the super panorama print.
From the knowledge gained the inventors suggest to improve a printing unit of a reel-fed printing press with at least a cylinder pair, consisting of a transfer cylinder and a form cylinder interacting with the transfer cylinder, wherein the body length of the transfer cylinder and the form cylinder corresponds to six horizontal or upright print pages and the transfer cylinder has two channels which are offset by 180° in the circumferential direction to accommodate printing blankets and three printing blankets are arranged next to one another in the longitudinal direction of the transfer cylinder, such that two adjacent printing blankets are attached in a channel and the third printing blanket is attached in the channel arranged offset by 180° relative to this.
As a result of this structure of the printing unit and the asymmetrical arrangement of the three printing blankets with 0°-0°-180° or 180°-0°-0° and 180°-180°-0° or 0°-180°-180° offset the excitation and the tendency to vibration of the rotary bodies is reduced.
As an alternative to this, the inventors also suggest to improve a printing unit of a reel-fed printing press with at least a cylinder pair, consisting of a transfer cylinder and a form cylinder interacting with the transfer cylinder, wherein the body length of the transfer cylinder and the form cylinder corresponds to six horizontal or upright print pages and the transfer cylinder has two channels offset by 180° in the circumferential direction to accommodate printing blankets and two printing blankets are arranged next to each other in the longitudinal direction of the transfer cylinder, such that a printing blanket relative to the body length of the transfer cylinder is twice as wide as the second printing blanket and each of the printing blankets are attached in one of the two channels which are arranged offset by 180°.
With this printing unit, the reduced susceptibility to vibration is likewise exploited through the asymmetrical mount arrangement, while the printing of “super panorama”, which is more than two pages wide, is made possible in addition.
In an embodiment of the invention the printing blankets can be constructed in several layers. This structure makes it possible to use only one layer of a printing blanket for attachment in the gap of the clamping channel, as a result of which the gap in total can be constructed with a lesser gap width. For example, the printing blankets can have at least a carrier plate, a rubber coating and an insulation layer, wherein the insulation layer is arranged between the carrier plate and rubber coating or on the side of the carrier plate facing away from the rubber blanket coating. Here, the carrier plate is generally attached in the clamping channel. Here, the insulating layer helps in preventing that the heat, which is generated through the flexing work of the rubber coating during the rolling-off of the transfer cylinder on a further cylinder which is in contact with the transfer cylinder, being introduced into the transfer cylinder. Heat introduction into the transfer cylinder mostly results in longitudinal expansion for thermal reasons with bending-through of the transfer cylinder which in-turn has a negative effect with regard to the vibration behaviour.
It is advantageous if the channels of the transfer cylinder form a clamping gap on the cylindrical surface wherein the clamping gap has a gap width in the range from 1 to 4 mm. The smaller the clamping gap, the lower is the vibration excitation upon meeting of adjacent gaps of adjacent rotary bodies.
The form cylinder can have two channels offset by 180° in the circumferential direction and two printing plates in the circumferential direction. By bypassing a channel, only one printing plate can obviously be arranged in the circumferential direction as well.
To also enable printing of “super panorama” it is favorable if the form cylinder has at least a panorama printing plate in the longitudinal direction which is more than two print pages wide. In an advantageous embodiment, the transfer cylinder can have a circumference corresponding at least to one or two horizontal or upright print pages. Preferably the printing units of the printing press are designed as a 6-1 or 6-2 printing unit.
Likewise, the form cylinder can have a circumference which at least corresponds to two horizontal or upright print pages.
The circumferential ratio of the transfer cylinder to the form cylinder should be even-numbered, or both cylinders should have the same size circumferences.
To enable printing of one side of the sheet and reprinting the transfer cylinder can interact with a second transfer cylinder, wherein the printing material web is guided between the two transfer cylinders. However, construction as a satellite printing unit, where one or several transfer cylinders interact with one or several impression cylinders, is conceivable.
If several of these printing units are arranged together it is advantageous if, with adjacent printing units, the arrangement of the printing blankets on one printing unit is identical or dissymmetrical, relative to the center plane to the rotation axis of the form cylinders and transfer cylinders, to the arrangement of the printing blankets of the adjacent printing unit.
Preferred developments of the invention are obtained from the following description. Different exemplary embodiments of the invention, without being restricted to these, are explained in more detail by means of the drawings.
The present invention is described in the following with reference to
Only for completeness' sake is it pointed out that in
It is understood that the features mentioned above and the characteristics of the claims cannot only be used in the respective combinations stated but also in other combinations or on their own, without departing from the scope of the invention.
List of reference numbers:
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 2006 018 526.9 | Apr 2006 | DE | national |