This application claims the priority, under 35 U.S.C. §119, of German Patent Application DE 10 2006 013 171.1, filed Mar. 22, 2006; the prior application is herewith incorporated by reference in its entirety.
The invention relates to a method of stitching sheet-like materials with annular-eyelet staples. The invention also relates to a wire stitcher having a stitching head for processing annular-eyelet staples.
Various constructions of apparatuses for stitching folded signatures and printed products are used, with different production rates, for finishing purposes in the printing industry. Examples of commonly used apparatuses are so-called “gang stitchers”, which separate folded printed products in such a way that they deposit them, for example, on a transporting chain or the like, collect and collate them and then feed them to a stitching station and subsequently, if appropriate, to a finishing unit for edge-trimming purposes, to a delivery device or the like. Such a gang stitcher is described, for example, in European Patent EP 0 916 514 B1.
The known gang stitcher has a stitching station in which folded sheets located one upon the other are stitched with aid of a staple, in particular of a wire staple. For that purpose, use is made of stitching heads, which are disposed above the collecting chain, and so-called “clinchers”, which are disposed between the collecting chains in place of a guide strip and bend over free ends of the staples forced through the folded sheets. Stitching stations and stitching heads for that purpose are also known, for example, from German Patent DE 44 44 220, corresponding to U.S. Pat. No. 5,516,024, and German Published, Non-Prosecuted Patent Application DE 197 12 876, corresponding to U.S. Pat. No. 6,119,911.
If such a wire stitcher is to use annular-eyelet staples, instead of straightforward wire staples, for stitching the stacked printed products, the stitching head of the apparatus is either converted or exchanged for one with components adapted to the geometry of the annular-eyelet staples or being capable of bending the stitching wire, which is fed from a wire roll, into the geometry of an annular-eyelet staple. Such a stitching head is provided, for example, by the form Hohner Maschinenbau GmbH, located at 78532 Tuttlingen, Germany, under the name Universal 48/5S. That device can be converted from a stitching head for normal staples to a stitching head for annular eyelets by virtue of exchanging individual subassemblies, such as formers and bending devices.
When annular-eyelet staples are driven into the product which is to be stitched, the staple is supported in the region of the annular eyelet by a staple support projecting into the eyelet. That prevents the eyelet from deforming when it is driven through the product which is to be stitched and the staple legs which have been forced through are bent together. That is important, in particular, when only a few layers of thin paper are being stitched.
However, it is also necessary for the staple support to be drawn back again in good time by way of its supporting body, which protects the eyelet region, in order to ensure that the staple support releases the eyelet in good time, for example when the stitched product is moved on beneath the stitching head. That is usually brought about in such a way that the driver, which encloses the eyelet in the manner of a two-pronged fork and forces the shoulder of the annular-eyelet staple into the product which is to be stitched, reaches, just before the dead center of its stitching movement directed onto the printed product, the beveled end of the staple support by way of its bottom edge, moves along the staple support and forces it out of the staple in the process.
In the case of relatively thick stitching products or stable paper, the staple has then already been driven in to the extent where subsequently bending the staple legs together no longer affects the eyelet geometry, since the paper of the stitching product then supports the staple.
In the case of stitching products made up of only a few sheets of thin paper, the sheets are not able to withstand the transverse forces to which they are subjected by the staple. Rather than being able to support the driven-in staple against lateral yielding, they start to tear. Therefore, during the operation of bending the legs of the staple together, even in the short period of time between the return of the staple support and the closure of the staple, the result may be deformation, in which the eyelet “collapses”, as is illustrated in the diagrammatic view according to
It is accordingly an object of the invention to provide a stitching method and a wire stitcher having a stitching head for processing annular-eyelet staples, which overcome the hereinafore-mentioned disadvantages of the heretofore-known methods and devices of this general type and which ensure, even when using annular-eyelet staples to stitch products having only a few layers, or thin layers, that the annular eyelet, as far as possible, does not deform.
With the foregoing and other objects in view there is provided, in accordance with the invention, a method of stitching sheet-like materials with annular-eyelet staples. The method comprises pressing a driver onto shoulders of the staples and driving-in the staples into the sheet-like material. An eyelet region of the staples is supported during the driving-in step with a staple support introduced between legs of the staples. The staple support is moved out of the eyelet region only when the legs of the staples passing through the sheet-like material to be stitched have been largely bent over.
With the objects of the invention in view, there is also provided a wire stitcher, comprising a stitching head for stitching sheet-like materials using preferably annular-eyelet staples. The stitching head has a driver pressing onto shoulders of the staples and driving the staples into the sheet-like material. A staple support supports the staples during a driving-in operation. A bending configuration bends over legs of the staples passing through the sheet-like material. A drive moves the staple support out of a region of the staple. The drive is configured and controlled for moving the staple support completely out of the region of the staple or of the annular eyelet, only once the legs of the staples passing through the sheet-like material have been largely bent over.
In accordance with another mode of the invention, the staple support, during its return movement, expediently leaves the supporting region of the annular eyelet only when the staple end of the driver has already passed beyond the bottom end of the staple support. This bottom end is located opposite the sheet-like material.
In accordance with a further mode of the invention, this can be achieved, for example, in such a way that the return movement of the staple support is derived from the movement of the configuration which bends over the staple ends, or is coupled thereto. This coupling, of course, need not necessarily be a mechanical one. It may also be an electric or electronic coupling, with the staple support being driven by a separate drive and the latter moving the staple support out of the region of the annular eyelet when the configuration for bending over the staple ends, which is positioned beneath the stitching product, has executed the bending operation to the extent where there are no longer any harmful transverse forces which may result in deformation in the region of the annular eyelet.
In accordance with a concomitant mode of the invention, the return movement of the staple support out of the region of the annular eyelet is brought about by a control curve or a cam which takes effect for the first time just before the bottom dead center of the stitching movement of the driver.
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 stitching method and a wire stitcher having a stitching head for processing annular-eyelet staples, 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
The basic stitching-head body 105 has a cut-off box 120 disposed thereon, into which a stitching wire 101 (shown in
In order to ensure that the cut-off stitching wire 101 does not fall down, the stitching wire is clamped firmly on a former 160 by a clamping jaw 166, which is actuated by a wire-clamping lever 163. The former 160 is cam-controlled in such a way that it pre-forms the cut-off piece of stitching wire 101 into a desired staple shape with open staple legs, that is to say, in the present case, to form an annular eyelet. This pre-formed staple is then driven, through the use of a driver 80, into the stack which is to be stitched, as is explained hereinbelow with reference to
In order to gain an understanding of further functionings of the stapling head, which will not be described in any greater detail herein, reference is made in full to co-pending U.S. patent application Ser. No. 11/523,342, filed Sep. 19, 2006 and to German Published, Non-Prosecuted Patent Application DE 10 2005 044 707, which are assigned to the assignee of the instant application and are incorporated herein by reference.
A bottom region of the driver 80 has a fork-shaped construction and has two prongs 81, with undersides and insides provided with a groove 82. During a downward movement of the driver, an annular eyelet 3 is gripped by the prongs 81 and accommodated in the groove 82. The two prongs 81 use their underside to force shoulders of an annular-eyelet staple 2 onto the stack of paper sheets which is to be stitched. A staple support 6, which can be rotated about an axis 8 in the slide 19, is disposed behind the driver 80. The staple support 6 has, on both sides, in the region of the prongs 81 of the driver, supporting or control curves or cams 7 which are inclined at an angle relative to these prongs and on which the prongs 81 slide along, by way of their undersides, during the downward movement, which is symbolized by an arrow A and, as is indicated by an arrow B, move back the staple support 6 during the downward movement of the driver.
The staple support 6 has a supporting body 17 in the center between the two surfaces, which projects into the interior of the annular eyelet and through which the annular eyelet 3 is supported against deformation when the staple 2 is driven in.
The driver 80 has almost reached the bottom dead center of the upward/downward movement of the driver slide 133 and, by having slid along the supporting or control curves or cams 7, has pushed the staple support 6 in the rearward direction. The bottom edges of the prongs 81 are located approximately level with a bottom surface 61 of the staple support 6, i.e. the annular-eyelet staple 2 has been driven more or less all the way in. Two pivotable clinchers 51 and 52 are located in a non-illustrated clincher box beneath the stack which is to be stitched. The clinchers 51, 52 have bent over the forced-through legs of the annular-eyelet staple to the extent where only a relatively low bending capacity is necessary thereafter until the bending-over operation has been completed. In the position described, the support body 17 is still located within the annular eyelet and secures the latter against collapse due to the still prevailing bending forces of the clinchers 51 and 52.
The driver 80 still has to cover just a relatively small distance of perhaps 0.5 to 1 mm, over which it forces the shoulders of the annular eyelet staples 2 onto the product which is to be stitched, until reaching the bottom dead center of the driver movement into a position according to
It is not absolutely necessary for the driver 80 to still cover a particularly significant distance in the direction of its bottom dead center in order to move the projecting supporting body 17 out of the region of the annular eyelet 3. Rather, it is also possible to configure the movement sequences of the slides 19, 133 in such a way that the flush positioning of the undersides of the driver 80 and bending device 20 and/or staple support 6 is achieved in the bottom dead center of the driver movement. If the slide 19 with the staple support 6 should then start its upward movement again immediately after this point in time, it is pivoted rearwards again along the slope 84 during its upward movement, and the supporting body 17 releases the annular eyelet 3 in the process.
It is also possible to provide, for the pivoting movement of the staple support 6, a dedicated, separate drive which is independent of the movement of the stitching head relative to the wire stitcher and/or to the driver. It is thus possible for the staple support to be controlled independently of the downward movement of the driver slide 133, for example in coordination with the closing or bending movement of the clinchers 51, 52. This is outlined in
The wire stitcher according to the invention can, of course, be used in a variety of different finishing apparatuses in the printing industry, not just in gang stitchers but, for example, also in finishing modules of copiers or digital printers. The wire stitcher can also be used in completely different sectors, e.g. in the wood-processing industry, e.g. for producing furniture, picture frames or the like.
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10 2006 013 171 | Mar 2006 | DE | national |
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20070220730 A1 | Sep 2007 | US |