This application claims the priority of German Patent Document No. 10 2005 022 232.3, filed May 13, 2005, the disclosure of which is expressly incorporated by reference herein.
The invention relates to a folding-jaw cylinder of a folder for a printing press.
German Patent Document No. DE 44 15 620 C2 discloses a folding-jaw cylinder for a folder of a printing press. The folding-jaw cylinder which is disclosed there has a plurality of folding jaws which are formed in each case by an actuable or movable folding-jaw cheek (controlled folding jaw) and a fixed or immovable folding-jaw cheek (fixed corresponding jaw). The actuable or movable folding-jaw cheeks are assigned to a first cylinder part (discs) and the fixed or immovable folding-jaw cheeks are assigned to a second cylinder part (cylinder body). The discs which form the first cylinder part and the cylinder body which forms the second cylinder part are mounted rotatably on a common axle or shaft, the second cylinder part having the fixed folding-jaw cheeks being positioned between the discs which serve to mount the actuable folding-jaw cheeks. The two cylinder parts can be adjusted relative to one another, in order to set the opening width or mouth width of the folding jaws. In DE 44 15 620 C2, the two cylinder parts can be adjusted relative to one another or the actuable folding-jaw cheeks can be adjusted relative to the fixed folding-jaw cheeks with the aid of an adjusting eccentric bolt which is to be actuated manually.
Proceeding from this, the present invention is based on the problem of providing a novel folding-jaw cylinder of a folder for a printing press.
According to the invention, both cylinder parts are assigned in each case one shaft, via which the cylinder parts can be driven rotationally, an intermediate gear being positioned coaxially with respect to the shafts of the cylinder parts and being mounted rotatably with respect to the shafts, the intermediate gear being coupled on one side to a drive and on the other side to at least one actuating unit in such a way that the intermediate gear can be driven by the drive and inputs its drive into at least one of the shafts of the cylinder parts via the, or every, actuating unit, and the, or every, actuating unit being assigned an adjusting drive, in order to adjust the two cylinder parts and therefore the folding-jaw cheeks which are assigned to the cylinder parts relative to one another.
Within the meaning of the present invention, a folding-jaw cylinder of a folder for a printing press is provided, it being possible to adjust the two cylinder parts of the folding-jaw cylinder relative to one another by motor and in an automated manner (it also being conceivable manually via a handwheel, however), which cylinder parts are assigned firstly the actuable folding-jaw cheeks and secondly the fixed folding-jaw cheeks. Every cylinder part is assigned a shaft, via which the cylinder parts are driven rotationally. An intermediate gear is positioned coaxially with respect to the shafts of the two cylinder parts, which intermediate gear is mounted such that it can rotate freely with respect to the shafts. The intermediate gear which is mounted coaxially on the two shafts is coupled on one side to a drive and on the other side to at least one actuating unit. The intermediate gear can be driven by the drive. The intermediate gear inputs its drive into at least one of the shafts of the two cylinder parts via the, or every, actuating unit. Furthermore, the, or every, actuating unit is assigned an adjusting drive, in order to adjust the two cylinder parts relative to one another and therefore the actuable and fixed folding-jaw cheeks which are assigned to the two cylinder parts, in order to adapt the opening width or mouth width of the folding jaws. The folding-jaw cylinder according to the invention is of simple construction and permits both symmetrical and asymmetrical adjustment of the actuable and fixed folding-jaw cheeks relative to one another during the adaptation of the opening width or mouth width of the folding jaws. The adjustment is low in play, reliable and very precise.
Preferred developments of the invention result from the following description. Exemplary embodiments of the invention are explained in greater detail using the drawings, without being restricted thereto. In the drawings:
In the following text, the present invention will be described in greater detail with reference to
The actuable or movable folding-jaw cheeks and the fixed or immovable folding-jaw cheeks form the folding jaws. As
Both cylinder parts 11 and 12 are assigned in each case one shaft 16 and 17, it being possible to drive the cylinder parts 11 and 12 via the shafts 16 and 17. According to
The folding-jaw cylinder 10 has an intermediate gear 20 which is positioned coaxially with respect to the shafts 16 and 17 and is mounted rotatably with respect to the shafts 16 and 17. The intermediate gear 20 is coupled on one side to a drive gear 21 of a drive and on the other side to an input gear 22 of an actuating unit 23. In the exemplary embodiment of
Accordingly, the intermediate gear 20 is driven via the drive gear 21 of the drive, which intermediate gear 20 inputs its drive into the actuating unit 23 via the input gear 22, in order to drive the two cylinder parts 11 and 12 rotationally via the output gears 24 and 25 of the actuating unit 23 and the input gears 18 and 19 which are assigned to the shafts 16 and 17.
As a result of the diameter ratios shown in
The internal transmission ratio of the actuating unit (harmonic drive) is compensated for by a suitable selection of the number of teeth of the output gears and input gears.
According to
Each of the two cylinder parts 28 and 29 is again assigned in each case one shaft 33 and 34, respectively, with an input gear 35 and 36, respectively, which is mounted fixedly in terms of rotation on the respective shaft 33 and 34, respectively. Here, the shaft 33 with the input gear 35 interacts with the first cylinder part 28 and the shaft 34 with the input gear 36 interacts with the second cylinder part 29. An intermediate gear 37 is also positioned coaxially with respect to both shafts 33 and 34 in the exemplary embodiment of
The intermediate gear 37 is coupled to a drive gear 38 of a drive and, furthermore, according to
An adjusting drive 45 interacts with both actuating units 41 and 42, which adjusting drive 45 inputs its drive into the actuating units 41 and 42 via input gears 46 and 47, respectively, in order to adjust the cylinder parts 28 and 29 relative to one another for adaptation of the opening width or mouth width of the folding jaws. This adjustment can again take place symmetrically or else asymmetrically, and independently of what is known as the main drive which is provided by the drive gear 38.
In the exemplary embodiments of
In the exemplary embodiment of
The drive is likewise input into the input gear 56 which is assigned to the shaft 54 for driving the cylinder part 49 via the shaft 55 which is assigned to the cylinder part 50, to be precise via a differential gear mechanism or bevel gear mechanism 63. The bevel gear mechanism 63 is formed by the input gear 56 which is assigned to the shaft 54 and is configured as a bevel gear and by a bevel gear 64 which is assigned to the shaft 55, what is known as a bevel pinion 65 interacting with these two bevel gears 56 and 64. According to
For the relative adjustment of the two cylinder parts 49 and 50, the actuating unit 61 is again assigned an adjusting drive 67, a symmetrical adjustment, which is independent of the drive or the drive gear 59, of the two cylinder parts 49 and 50 relative to one another being possible via the adjusting drive 67.
A common feature of all the exemplary embodiments of
The, or every, actuating unit is assigned an adjusting drive, via which the two cylinder parts can be adjusted relative to one another independently of the main drive, in order to set the opening width or mouth width of folding jaws of the folding-jaw cylinder. Here, the adjustment of the two cylinder parts with respect to one another can take place symmetrically or else asymmetrically.
The, or every, actuating unit for the relative adjustment of the cylinder parts with respect to one another is arranged outside the folding-jaw cylinder on a drive side of the folder, with the result that no corresponding actuating elements are integrated into the folding-jaw cylinder. The measures which would otherwise be necessary for dust protection and for the maintenance of corresponding components in the folding-jaw cylinder are therefore omitted.
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.
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Number | Date | Country | |
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20060276319 A1 | Dec 2006 | US |