This application claims the priority of European Patent Application No. 05405604.9, filed on Oct. 25, 2005, and European Patent Application No. 05405603.1, filed on Oct. 25, 2005. This application is additionally related to co-owned and concurrently filed U.S. Patent Application No. (Attorney Docket No. 40424-235918), entitled “Apparatus For Applying Adhesive To The Outside Surfaces Of A Book Block To Be Encased In A Book Casing Inside A Casing-In Machine.” The contents of each of the foregoing applications is incorporated herein by reference in their entirety.
The invention relates to an apparatus for pressing a flattened book casing against the adhesive-coated outside surfaces of a book block to be encased in a casing-in machine. An apparatus comprises two pressing-on rollers that are positioned opposite each other in a pressing-on region of a pressing-on device, which is driven synchronously with a conveyor, wherein these rollers respectively press one book cover of the book casing against one adhesive-coated outside surface of a book block, positioned on a vertically upward moving saddle plate of a circulating conveyor.
The visual attractiveness of a book depends, in part, on the quality of the work when encasing a book block in a book casing. For that reason, a precise joining of book block and book casing is therefore necessary not only for high-quality books, but also to ensure that the outside edges of both parts extend visibly parallel to each other and that a uniform spacing is visible between the parallel outside edges. In addition, the book covers of a book casing must rest with the complete surface and without raised areas on the book block and/or must be glued on the inside to the end papers, so that no folds can form and the outside edges extend parallel to each other, wherein the back insert or the back lining fits against the book block spine of a closed book.
The typical steps of this process are described, for example, in European Patent Document 1 072 436 A1 (Jan. 31, 2001). However, the described process has the disadvantage that the movement course for the pressing-on device is fixedly determined by a mechanically acting control cam of a control element and can be changed only if the control element is replaced. In practical operations, a single control element is therefore used which is suitable for formats up to the largest one. Furthermore, a joint electric motor is used for driving the book block conveyor and the pressing-on device, which results in long movement paths and/or high acceleration forces for the pressing-on device, even with smaller book formats.
Also, of high importance is the distance traveled by the pressing-on device along the synchronizing section, between the book block spine and the back insert in a state where the book casing rests unsupported on a casing support and/or the pressing-down rollers approximately make contact with the surface of the book casing (at the so-called attachment point). The attachment point is primarily determined by the thickness and/or the cross-sectional shape of a book block spine.
Until now, the length of the synchronizing section was kept constant for all book formats.
If the pressing-on device is located on the synchronizing section, the pressing-on rollers initially lift off the book casing and then return to it once the pressing-on device reaches the end of the synchronizing section. At the start of the production, attention must be paid to ensure that the movement of the pressing-on rollers on the pressing-on device is adapted to the supplied book casing, corresponding to the desired fold and/or joint of a book. It is therefore necessary to ensure at the start of the production that the attachment point for the pressing-on device can be set and/or changed by adjusting the control element. This operation has until now been possible only if the apparatus is stopped, for example by adjusting the mechanically effective control element manually or with a specialized gear.
It is an object of the invention to provide an apparatus of the above-described type, which allows adapting the pressing-on device optimally to any type of book block thickness during the operation.
It is another object to provide an apparatus of the above type wherein the attachment point for the pressing-on movement can be precisely determined and changed, the format-dependent lift can be determined, the dwell time for the pressing-on device during the pressing-on operation can be optionally adjusted, and the speed of the pressing-on device on the synchronizing section can be adapted.
The above and other objects are accomplished by provision of an apparatus for pressing a flattened book casing having first and second book covers against first and second adhesive-coated outside surfaces of a book block to be encased in a book casing in a casing-in machine, wherein, according to one embodiment, the apparatus comprises: a circulating conveyor; a saddle plate disposed on the circulating conveyor which moves the saddle plate vertically upward, the saddle plate arranged to receive the book block in a straddle like fashion with the first and second adhesive-coated outside surfaces being exposed; a pressing-on device that operates synchronously with the circulating conveyor, including: two pressing-on rollers positioned opposite each other in a pressing-on region which each roller presses a respective first or second book cover of the book casing against a respective first or second adhesive-coated outside surface of the book block; first and second drive motors each respectively operatively coupled with the pressing-on device and circulating conveyor; and a drive control unit operatively coupled to the first and second drives, which drive control unit controls the first and second drives and controllably links the first and second drives, at least the first drive including a controllable drive element.
Thus, according to the invention the conveyor and/or the pressing-on device are provided with separate drives, which are controllably connected via a joint control unit. Furthermore, at least the drive for the pressing-on device comprises a controllable drive element, thereby making possible a careful processing during the encasing operation, which results in the production of a high quality book.
An optimum pressing-on operation at a lower pressing-on speed than before is thus possible, in particular for smaller book formats which deviate from the largest book format.
During the pressing-on operation, the movement of the pressing-on device from the starting position must be synchronized with the movement of the conveyor and/or an associated saddle plate, meaning the movements must be coordinated. This section, also called a synchronizing section, starts at the attachment point where the book block spine is still located below the casing support, but at most is level with the casing support, and ends where the book block spine meets the inside of the back insert. That is to say, once the spine and back insert make contact, the movement and/or speed of the saddle plate and the pressing-on device are synchronized.
These and other features and advantages of the application will be further understood from the following detailed description of the exemplary embodiments with reference to the accompanying drawings, which show in:
The pressing-on device 5 then reverses to move in the opposite direction, so that the pressing-on rollers 15, 16 pivot the book covers 17, 18 downward, move the book casing 11 across the mushroom-shaped overhang, and press the book covers 17, 18 against the adhesive-coated outside surfaces of the book block 2 with the aid of the press-on rollers 15, 16 which roll off thereon. The pressing-on rollers 15, 16 are spring-supported on the side for this, such that the rollers 15, 16 can move past the mushroom-shaped overhang without being damaged.
Owing to the variable shoulder spacing between the book block spine 12 and a fold 19, caused by the mushroom-shaped squeezing, the movements of the pressing-on device 5 must be adapted to the different cross-sectional shapes in the region of the book block spine.
The same process steps are used for a straight book block spine and/or a book back.
A support frame 20 on which the pressing-on rollers 15, 16 are positioned rotating is provided with a guide bush 21. The support frame 20 can be displaced along the guide bush 21 on guide elements 22, arranged parallel to the vertically upward moving saddle plates 4. A threaded spindle 23 is arranged parallel to the guide elements 22, embodied as rods or the like. The threaded spindle 23 is positioned with an upper end inside a support 24, attached to the guide elements 22, and is connected to the height-adjustable guide bush 21 by a threaded screw 25. The upper end of the threaded spindle 23 is connected to a first drive motor such as an electric motor 26, which is embodied as an angle of rotation-controlled motor and is attached to a control unit 27 (shown in
The pressing-on device 5 can furthermore be controlled and/or variably controlled on the basis of an attachment point for the start of the synchronizing section, which corresponds to the deposited book casing and/or the shape of a book block. It is probably also possible to control and/or variably control the length of a pressing-on movement of the pressing-on device 5 based on a pressing-on section that is determined by a book block and/or a book casing. The pressing-on movement of the pressing-on device 5 can be adjusted or changed manually. The movement of the pressing-on device 5 can also be controlled with a computer program which, for example, might be included with the control unit 27.
The pressing-on movement of the pressing-on device 5 can be controlled or variably controlled based on the position of the book block 2 which is conveyed on the conveyor 3. The drive element 26 embodied as an electric motor could be a linear motor or a torque motor, as shown in
The drive element 26 could also be a linear motor mounted on the frame 34 via a drive shaft 33, for which the armature is drive-connected to the pressing-on device 5.
The drive element 26 can be driven program control based on a cam curve, for example, electronically stored in the control unit 27. The cam curve can be embodied variably, for example phase-displaced relative to the upward moving saddle plates 4 on the conveyor 3. The control unit 27 can be connected to a super-imposed machine control unit 40 for the book block casing-in machine.
It will be understood that the above description of the present invention is susceptible to various modifications, changes and adaptations, and the same are intended to be comprehended within the meaning and range of equivalents of the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
05405604.9 | Oct 2005 | EP | regional |
05405603.1 | Oct 2005 | EP | regional |