This application claims the priority, under 35 U.S.C. § 119, of German Patent Application DE 10 2017 207 953.3, filed May 11, 2017; the prior application is herewith incorporated by reference in its entirety.
The present invention relates to a digital printing machine including a first cylinder for transporting sheets, a second cylinder that transfers the sheets directly to the first cylinder, and at least one inkjet print head directed towards the first cylinder.
European Patent EP 2 551 122 B1, corresponding to U.S. Patent Application Publication 2013/0027484, describes an inkjet recording device having a transport drum that holds the recording medium on its circumferential surface by suction in order to transport it. The inkjet recording device further includes an inkjet head that creates an image on a front side of the recording medium by jetting aqueous ink. A cooling device is provided to cool the transport drum.
It is accordingly an object of the invention to provide a digital printing machine with a temperature control device for sheets, which overcomes the hereinafore-mentioned disadvantages of the heretofore-known devices of this general type.
With the foregoing and other objects in view there is provided, in accordance with the invention, a digital printing machine, comprising a first cylinder for transporting sheets, a second cylinder that transfers the sheets directly to the first cylinder, a third cylinder that transfers the sheets directly to the second cylinder, at least one inkjet print head directed towards the first cylinder to print on the sheets disposed thereon, at least one first sensor for measuring the temperature of the first cylinder, a second sensor for measuring the temperature of the sheets while being transported by the second cylinder or by the third cylinder, at least one temperature control device for controlling the temperature of the sheets before their transfer to the first cylinder, and a control element for adapting the temperature of the sheets to the temperature of the first cylinder, wherein the first sensor, the second sensor, and the temperature control device are connected to the control element.
An advantage of the invention is that adapting the sheet temperature to the temperature of the first cylinder on which the sheets are resting during the printing operation ensures that a high-quality printing process is possible. Temperature differences that exist within a respective sheet or between different sheets of an ongoing print job as a result of an acclimatization period that was too short may effectively be avoided, which is an added benefit of the invention.
Various further developments are possible.
The temperature control device may be a temperature control device for cooling and/or heating the sheets. The temperature control device may be disposed inside or outside a cylinder. If the temperature control device is inside a cylinder, the temperature control device controls the temperature of the sheets through contact with the circumferential cylinder surface. If the temperature control device is outside a cylinder, the temperature control device controls the temperature of the sheets in a contact-free way by irradiation. For instance, the temperature control device may be integrated into the second cylinder. Alternatively, the temperature control device may be integrated into the third cylinder. In addition to the aforementioned temperature control device, an additional temperature control device may be provided. In this case, the aforementioned temperature control device is integrated into the second cylinder and the additional temperature control device is integrated into the third cylinder.
The second sensor may be controlled in such a way that it measures the temperature of the respective sheet in a plurality of measurement locations that form a row extending in the direction of transport of the sheet. The second sensor may be connected to an initiation device that initiates a warning signal or sheet transport stop when a temperature differential between the measurement locations exceeds a specified threshold.
In another development a plurality of third sensors for measuring the temperature of the sheets are disposed in a row that extends in a direction transverse to the direction of sheet transport. The third sensors may be disposed in a sheet feeder. The third sensors may for instance be directed towards a stack formed by the sheets in the sheet feeder before the sheets are printed on. It is likewise possible to direct the third sensors towards a feed table on which the sheets coming from the stack are transported into a machine station downstream of the sheet feeder.
In accordance with a further development, a pressing device is provided to press the sheets against a circumferential cylinder surface, the temperature of which is controlled by the temperature control device. This temperature-controlled circumferential cylinder surface may be the circumferential surface of the second cylinder if the temperature control device is integrated in the second cylinder, or else it may be the circumferential surface of the third cylinder if the temperature control device is integrated into the third cylinder. The pressing effect of the pressing device may be achieved by contact with the sheet or in a contact-free way, for instance pneumatically by using blown air. The blown-air may be temperature-controlled and may for instance also be used to heat the sheet. The pressing device may for instance be a guide plate having blown-air nozzles for applying pressure without sheet contact. Alternatively, the pressing device may be an endless revolving belt for applying pressure with sheet contact.
Other features which are considered as characteristic for the invention are set forth in the appended claims.
Although the invention is illustrated and described herein as embodied in a digital printing machine with a temperature control device for sheets, it is nevertheless not intended to be limited to the details shown, since various modifications and structural changes may be made therein without departing from the spirit of the invention and within the scope and range of equivalents of the claims.
The construction and method of operation of the invention, however, together with additional objects and advantages thereof will be best understood from the following description of specific embodiments when read in connection with the accompanying drawings.
Referring now to the figures of the drawings in detail and first, particularly, to
Grippers of a second cylinder 2 receive the sheets from grippers of a third cylinder 3, which belongs to the pre-coating unit 16. The third cylinder 3 is a counter pressure cylinder that supports the sheets as they receive the pre-coat. The second cylinder 2 transfers the sheets from the grippers thereof to the grippers of the first cylinder 1.
A temperature control device 5 including a line system for circulating a temperature control fluid is integrated into the second cylinder 2. An associated electrical heating element may be located outside the second cylinder 2. The temperature control device 5 adjusts the temperature of a circumferential cylinder surface 15 (
The first cylinder 1 is assigned at least a first sensor 11 for measuring the temperature of the circumferential cylinder surface of the first cylinder 1. The first sensor 11 may initiate an automated machine stop when the temperature of the first cylinder 1 is too high. The second cylinder 2 is assigned a second sensor 12 for measuring the temperature of the respective sheet as it is transported from the third cylinder 3 to the first cylinder 1. The second sensor 12 is disposed next to the second cylinder 2 and directed towards the latter for a contact-free measurement of the temperature of the sheet transported thereon.
In a non-illustrated modified version, the second sensor 12 would be disposed next to the third cylinder 3 and directed towards the latter to measure the temperature of the sheet transported thereon in a contact-free way.
A plurality of third sensors 13 for measuring the temperature of the sheet are disposed in a row that is located either above the stack 9 or above the feed table 10. Both alternatives are shown together in
The two cylinders 1, 2 have a common point of sheet transfer in which the sheet B is transferred from the grippers 18 of the second cylinder 2 to the grippers of the first cylinder 1. The two cylinders 1, 2 form a wedge-shaped entrance region upstream of this common point of sheet transfer as viewed in the direction of rotation of the cylinder. One end of the pressing device 14 extends into the entrance region. The second sensor 12 is disposed on the pressing device 14 in the region of an end of the pressing device 14 extending into the entrance region. The second sensor 12 thus measures the temperature of the sheet B at a location a short distance upstream of the point of sheet transfer. The second sensor 12 is inserted between the blown-air nozzles of the pressing device 14 in the concave guide surface thereof and is directed towards the second cylinder 2 in a radial direction thereof. While the sheet B is transported on the second cylinder 2, the direction of transport TR of the sheet B corresponds to the direction of rotation of the second cylinder 2.
The initiation device 7 has been programmed in a corresponding way to define a threshold GW for the temperature difference ΔT. If one of the temperature differences ΔT exceeds the threshold GW, the initiation device 7 will automatically initiate a warning signal and a sheet transport stop. The alarm signal may be displayed on a screen of the initiation device 7. As a consequence of the sheet transport stop, the sheet feeder 8 no longer conveys sheets B from the stack 9 into the downstream section of the machine.
In accordance with a non-illustrated modification, the third sensors 13 are not disposed above and directed towards the stack but above the feed table 10. In this case, the temperature difference between the zones 19, 20 is likewise measured in every sheet B, namely immediately after the sheets B are removed from the stack 9.
The following is a summary list of reference numerals and the corresponding structure used in the above description of the invention. List of Reference Symbols:
Number | Date | Country | Kind |
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102017207953.3 | May 2017 | DE | national |