EP2689924A1 - Tool holding device - Google Patents

Tool holding device Download PDF

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Publication number
EP2689924A1
EP2689924A1 EP13171340.6A EP13171340A EP2689924A1 EP 2689924 A1 EP2689924 A1 EP 2689924A1 EP 13171340 A EP13171340 A EP 13171340A EP 2689924 A1 EP2689924 A1 EP 2689924A1
Authority
EP
European Patent Office
Prior art keywords
tools
drive shaft
module
tool
clamping
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP13171340.6A
Other languages
German (de)
French (fr)
Other versions
EP2689924B1 (en
Inventor
Ollek Tomasz
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Masterwork Machinery Co Ltd
Original Assignee
Heidelberger Druckmaschinen AG
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Publication date
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Publication of EP2689924A1 publication Critical patent/EP2689924A1/en
Application granted granted Critical
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/26Means for mounting or adjusting the cutting member; Means for adjusting the stroke of the cutting member
    • B26D7/2628Means for adjusting the position of the cutting member
    • B26D7/2635Means for adjusting the position of the cutting member for circular cutters
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31FMECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31F1/00Mechanical deformation without removing material, e.g. in combination with laminating
    • B31F1/08Creasing
    • B31F1/10Creasing by rotary tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/14Cutting, e.g. perforating, punching, slitting or trimming
    • B31B50/146Cutting, e.g. perforating, punching, slitting or trimming using tools mounted on a drum
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31BMAKING CONTAINERS OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31B50/00Making rigid or semi-rigid containers, e.g. boxes or cartons
    • B31B50/25Surface scoring
    • B31B50/256Surface scoring using tools mounted on a drum
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B31MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31FMECHANICAL WORKING OR DEFORMATION OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
    • B31F2201/00Mechanical deformation of paper or cardboard without removing material
    • B31F2201/07Embossing
    • B31F2201/0707Embossing by tools working continuously
    • B31F2201/0715The tools being rollers
    • B31F2201/0753Roller supporting, positioning, driving means

Definitions

  • the invention relates to a device for releasable attachment of rotary tools or tool holders on a drive shaft according to the preamble of claim 1.
  • Both printing presses with integrated further processing devices for example for creasing or embossing, as well as further processing machines such as folding machines, cover feeders, perfect binder systems or Faltschachtelklebemaschinen have rotary tool units for processing the sheet-shaped material.
  • sheets are first broad-web printed in a printing press. On the sheets are each several benefits of the carton to be printed, which are then punched out in a punch. The punched-out folding box blanks are then fed to a folding box gluing machine and processed here into folding boxes.
  • the individual processing stations have conveying means driven for transporting the folding box blanks. These consist for example of one or more superposed upper and lower conveyor belt, wherein the lower conveyor belt is guided in a roller cheek and the upper conveyor belt in a roller rail.
  • the conveyor belts are arranged transversely adjustable and can thus be adjusted to the respective folding carton blank format.
  • the blanks are transported printed side down between the top and bottom conveyor belts.
  • folding box gluing machines optionally have modules for scoring, punching and embossing, for example for embossing Braille fonts in pharmaceutical packaging.
  • additional devices are installed in the folding box gluer.
  • Such devices are for example from the American patent specification US 7,678,035 B2 known. They are used to make folding cartons with or without triangular lobes, as is the case with 4-point, 6-point, folded bottom or special boxes is usual, used.
  • the rear folding tools consist of below the transport plane mounted hooks which attack with their free bent ends the initially flat lying rear web from below and overtake them on further transport of the blank, so that the web is folded inwards and flat on the folding carton blank.
  • Such a folding tool is also called overtaking hook.
  • Faltschachtelklebemaschinen optionally have rotatably mounted on an axis Aufraißhaken.
  • This is a pivotable support lever, at the end of a hook-shaped element is fixed, with which a leading blank section can be deflected out of the conveying plane and folded back.
  • Such a device is for example from the US 7,179,216 B2 known.
  • the male and female parts are arranged exactly on top of each other, so that the protrusions in the male part mesh exactly with the recesses of the female part.
  • the tools need to work almost 100% synchronously, otherwise the bumps will not hit the wells exactly, resulting in quality issues with Braille embossing.
  • the game between the respective drive shaft and complementary hole in the tool or tool holder on the entire length of the drive shaft would have to be zero, which means Production reasons is very complicated and expensive. Therefore, there will usually always be a match between the two parts.
  • the object of the present invention is therefore to provide a device in which the rotary tools or tool holders can be easily adapted or changed simply to the respective sheet format as well as to the respective processing to be performed. This object is achieved by the characterizing features of claim 1.
  • the device for releasably securing rotary tools or tool holders on a drive shaft therefore has tools or tool holders with a hub having a bore complementary to the outer contour of the drive shaft and at least one clamping device associated with a respective rotary tool or tool holder.
  • the bore has at least two inwardly inclined grooves.
  • the hub is provided at its one end with an external thread. This makes it possible to fasten in the grooves a clamping device in the form of a screw-on clamping jaw for fixing the rotary tool or tool holder on the drive shaft.
  • This device has the advantage that the tool or the tool holder can be attached to the drive shaft without play and on the other repeatedly released and can be moved freely on the shaft.
  • the screw-on clamping claw consists of a threaded nut into which a ring can be inserted, on whose outer web two clamping claws are mounted.
  • the ring has the same bore as the hub of the tools or the tool holder.
  • the ring is connected via dowel pins, which are pressed into holes on the peripheral surface of the threaded nut, with the threaded nut.
  • This embodiment has the advantage that on the one hand via the threaded connection the Clamping claws are pressed into the oblique grooves of the hub bore until a backlash-free connection is made, and on the other hand, the clamping claws on the dowel pins that take the ring when the nut is released, a simple and secure solution of the connection is possible.
  • the threaded nut on its outer end face on holes for inserting a Zweilochmutterwinders.
  • a simple movement of the threaded nut is possible.
  • the drive shaft is a shaped shaft, for. B. executed as a polygon shaft, hexagonal shaft or splined shaft.
  • This embodiment has the advantage that, for example, in the case of stamping tools in the form of male and female molds, the correct assembly of the two intermeshing tools with respect to a round shaft is facilitated.
  • the device is used in corresponding modules for processing sheet-like materials which are used, for example, for creasing, cutting or embossing.
  • the device proves to be particularly advantageous in modules which have two drive shafts and which are equipped with complementary tools which work together.
  • the device is used in a module of a sheet-processing machine, for example a Braille module, in a folding box gluer.
  • FIG. 1 shows by way of example for a further processing machine a folding box gluing machine with a plurality of processing stations in which tool receiving devices according to the invention can be used.
  • the folder gluer starts in FIG. 1 bottom right with an insert 1, which pulls off the blanks to be processed at high speed from a stack one after the other and feeds them individually to the subsequent processing station.
  • an alignment station 4 in which the blanks are individually aligned against a lateral stop.
  • transversely positionable machine components in the form of two pairs of belts lead as Serve conveyor and can be positioned manually or automatically transversely actuators.
  • the machine components in the form of belt pairs which can be positioned transversely in the form of belt pairs, both through the primary shredder 6 and through the folding module 7, are transversely positioned with an actuator depending on the type of blank.
  • the turning station 9 includes for rotating the blanks about a vertical axis by 90 ° two parallel juxtaposed conveyor lines whose speed is adjustable separately.
  • the blanks are on both conveyor lines, so that they are rotated at different speeds of the two conveyor lines.
  • the two conveyor lines contain driven rollers as conveying means.
  • a further alignment station 10 which corresponds in its construction of the alignment station behind the insert 1. It thus again contains transversely positionable machine components in the form of pairs of conveyor belts as conveying means.
  • the next processing station 13 serves to perform box-type dependent processing operations; For example, further score lines are pre-broken or special folds are performed. Also through the processing station 13 lead belt pairs as conveying elements that can be positioned transversely with actuators.
  • a folding station 14 in which the blank parts previously provided with an adhesive seam are folded over by 180 °.
  • the folding station 14 includes pairs of belts as conveying elements and an adhesive applicator, which can be moved by means of actuators in their dependent of the cutting type transverse position.
  • a transfer station 15 of which the folded, provided with not yet set adhesive seams blanks in all parts exactly aligned the subsequent collection and Pressing device 16 are supplied.
  • a shingled stream of folded blanks is first formed, which is subsequently held under pressure for some time between conveying press belts, so that the adhesive seams set.
  • the transfer station also contains pairs of belts, which can be transversely adjusted by means of actuators.
  • FIGS. 2a and 2b is a module for synchronous grooves shown with scoring tools.
  • the module has a right frame wall 20 and a left frame wall 21, which are interconnected by transverse members 22, 23, 24.
  • a lower drive shaft 29 is mounted in the frame walls 20, 21, a lower drive shaft 29 is mounted.
  • lower scoring tools 33 are mounted and laterally slidably connected to the lower drive shaft 29 via a lower tool guide element 41, which is supported on the lower cross-beam 24.
  • the FIG. 2a further shows an upper cross-beam 23 and an upper drive shaft 28, both of which are mounted in the frame walls 20, 21.
  • upper scoring tools 32 are mounted and laterally slidably connected to the upper drive shaft 28 via an upper tool guide element 40 which is supported on the upper cross-beam 23.
  • the box blanks 12 are transported between the two illustrated upper scoring tools 32 and the lower scoring tools 33.
  • the upper and lower scoring tools 32, 33 are guided by the tool guide elements 40, 41, which are respectively supported on the transverse members 23, 24 in the manner already described.
  • the two scoring tools 32, 33 shown are only examples; Any number of scoring tools can be arranged on the drive shafts in accordance with the requirement. Also, a mixture of different tools, such as scoring tools, together with embossing tools is possible.
  • a module is shown in an embodiment for synchronous embossing as a so-called Braille module.
  • the carton blanks 12 are transported between the four illustrated upper braille embossing tools, which are designed as male parts 34, and the lower braille embossing tools, which are designed as dies 35.
  • the patrices 34 and matrices 35 are guided by the tool guide elements 40, 41, each on the transverse members 23, 24th supported in the manner already described.
  • the braille tools 34, 35 can be set anywhere on the carton blank. Also, the number of braille tools 34, 35 is arbitrary.
  • FIG. 4 an embodiment of the device according to the invention is shown.
  • a rotary tool or a rotary tool holder 50 is fastened on a drive shaft 51 via a screw-on clamping jaw 53.
  • the clamping claw 53 in this case has two clamping claws 54, which are fastened at one end to a common ring 55.
  • the ring is movably fixed in a threaded nut 56 by means of clamping pins 57.
  • the threaded nut 56 holes 59 for inserting a Zweilochmutterntaxers on.
  • FIG. 5 this embodiment is shown in a perspective view.
  • the drive shaft 51 is designed as a polygonal shaft.
  • the screw-on clamping claw 53 which is screwed onto the hub 52 of the tool holder, only the threaded nut 56 can be seen in this illustration.
  • FIG. 6 Further details of the structure of the tool or the tool holder 50 are shown. It is clear to see the hub 52, which has a bore 61 complementary to the FIG. 5 has recognizable polygonal shaft as the drive shaft 51. Furthermore, the two grooves 62 are shown, in which the clamping claws 54 are used.
  • FIG. 7 is a screw-on clamping jaw 53 in the assembled state and in the FIGS. 8a and 8b the items are shown.
  • the ring 55 has a bore 61 complementary to the outer contour of the drive shaft 51, in this case a polygonal shaft, and is fixed by means of dowel pins 57 in the threaded nut 56.
  • the ring 55 may have grooves 63 for receiving indexing pins (not shown) on the drive shaft 51, which facilitates correct assembly with pairs of tools.

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Abstract

The device has a hub with a bore complementary to the outer contour of the drive shaft. The bore has two inwardly inclined grooves, and the hub is provided with an external thread at its one end, so that a clamping device in the form of a screw-mountable clamping jaw is fixed in the grooves for fastening the rotary tool or the tool holder to the drive shaft. The clamping jaw has two clamping claws, which are attached to a common ring at one end. An independent claim is included for a sheet-like material processing module with counter tools.

Description

Die Erfindung betrifft eine Vorrichtung zur lösbaren Befestigung von rotativen Werkzeugen oder Werkzeughaltern auf einer Antriebswelle gemäß dem Oberbegriff von Anspruch 1.The invention relates to a device for releasable attachment of rotary tools or tool holders on a drive shaft according to the preamble of claim 1.

Sowohl Druckmaschinen mit integrierten Weiterverarbeitungseinrichtungen, beispielsweise zur Rillung oder Prägung, als auch Weiterverarbeitungsmaschinen wie beispielsweise Falzmaschinen, Umschlaganleger, Klebebindeanlagen oder Faltschachtelklebemaschinen, weisen rotative Werkzeugeinheiten zur Bearbeitung des bogenförmigen Materials auf.Both printing presses with integrated further processing devices, for example for creasing or embossing, as well as further processing machines such as folding machines, cover feeders, perfect binder systems or Faltschachtelklebemaschinen have rotary tool units for processing the sheet-shaped material.

Aus der EP 1 574 323 B 1 ist beispielsweise eine Rillvorrichtung für die rotative Rillung von Druckprodukten bekannt.From the EP 1 574 323 B 1 For example, a creasing device for the rotary creasing of printed products is known.

Auch bei der Herstellung hochwertiger Druckprodukte für die Verpackungsindustrie, beispielsweise Faltschachteln, werden zunächst Bögen breitbahnig in einer Druckmaschine bedruckt. Auf den Bögen sind jeweils mehrere Nutzen der herzustellenden Faltschachtel aufgedruckt, die dann in einer Stanze ausgestanzt werden. Die ausgestanzten Faltschachtelzuschnitte werden anschließend einer Faltschachtelklebemaschine zugeführt und hier zu Faltschachteln verarbeitet.Also in the production of high-quality printed products for the packaging industry, such as folding cartons, sheets are first broad-web printed in a printing press. On the sheets are each several benefits of the carton to be printed, which are then punched out in a punch. The punched-out folding box blanks are then fed to a folding box gluing machine and processed here into folding boxes.

Faltschachtelklebemaschinen zur Herstellung von Faltschachteln aus Faltschachtelzuschnitten weisen bekanntermaßen zumindest die folgenden Module als Bearbeitungsstationen auf:

  • Einen Einleger, der die zu verarbeitenden Zuschnitte mit hoher Geschwindigkeit aus einem Stapel nacheinander abzieht und einzeln der nachfolgenden ersten Bearbeitungsstation zuführt,
  • Ein Auftragwerk für Klebstoff, üblicherweise Leim, das auf die zu verklebenden Faltlappen einen Klebstoffstreifen aufträgt und
  • Eine Faltstation, in der die mit einem Klebestreifen versehenen Zuschnittteile zur Herstellung einer Klebeverbindung um 180° umgelegt, also gefaltet werden.
  • Im Anschluss an die Faltstation ist üblicherweise eine sogenannte Überleitstation angeordnet, in der die Schachteln gezählt, markiert und - falls schadhaft - ausgeschleust werden können.
  • Danach folgt eine Pressstation, an deren Anfang ein Schuppenstrom aus gefalteten zuschnitten gebildet wird, der in der Pressstation für einige Zeit unter Druck gehalten wird, damit die beiden Zuschnitte an der Klebenaht verbunden werden.
Folding box gluing machines for the production of folding boxes from folding box blanks are known to have at least the following modules as processing stations:
  • A feeder, which pulls the blanks to be processed at high speed from a stack one after the other and feeds them individually to the subsequent first processing station,
  • An applicator for glue, usually glue, which applies an adhesive strip to the folding flaps to be glued and
  • A folding station in which the blank parts provided with an adhesive strip are folded by 180 °, ie folded, to produce an adhesive bond.
  • Following the folding station usually a so-called transfer station is arranged, in which the boxes can be counted, marked and - if defective - can be discharged.
  • This is followed by a pressing station, at the beginning of which a shingled stream of folded blanks is formed, which is held in the pressing station for some time under pressure, so that the two blanks are connected to the adhesive seam.

Die einzelnen Bearbeitungsstationen weisen zum Transport der Faltschachtelzuschnitte angetriebene Fördermittel auf. Diese bestehen beispielsweise aus jeweils einem oder mehreren übereinander angeordneten oberen und unteren Förderriemen, wobei der untere Förderriemen in einer Rollenwange und der obere Förderriemen in einer Rollschiene geführt ist. Die Förderriemen sind querverstellbar angeordnet und können somit auf das jeweilige Faltschachtelzuschnittformat eingestellt werden. Die Zuschnitte werden mit der bedruckten Seite nach unten zwischen dem oberen und unteren Förderriemen transportiert.The individual processing stations have conveying means driven for transporting the folding box blanks. These consist for example of one or more superposed upper and lower conveyor belt, wherein the lower conveyor belt is guided in a roller cheek and the upper conveyor belt in a roller rail. The conveyor belts are arranged transversely adjustable and can thus be adjusted to the respective folding carton blank format. The blanks are transported printed side down between the top and bottom conveyor belts.

Aus der US 7,402,129 B2 ist beispielsweise eine solche Faltschachtelklebemaschine bekannt.From the US Pat. No. 7,402,129 B2 For example, such a folding box gluing machine is known.

Darüber hinaus weisen Faltschachtelklebemaschinen optional Module zur Rillung, Stanzung und Prägung, beispielsweise zur Prägung von Braille-Schriften in Pharmaverpackungen, auf.In addition, folding box gluing machines optionally have modules for scoring, punching and embossing, for example for embossing Braille fonts in pharmaceutical packaging.

Aus der US 7,794,379 B2 ist eine Faltschachtelklebemaschine mit einem Modul zur Prägung von Brailleschrift bekannt.From the US 7,794,379 B2 is a Faltschachtelklebemaschine known with a module for embossing Braille.

Um Faltungen quer zur Transportrichtung der Faltschachtelzuschnitte durchführen zu können, werden in die Faltschachtelklebemaschine zusätzliche Vorrichtungen eingebaut. Solche Vorrichtungen sind beispielsweise aus der amerikanischen Patentschrift US 7,678,035 B2 bekannt. Sie werden zur Herstellung von Faltschachteln mit oder ohne Dreiecklappen, wie es bei den 4-Punkt-, 6-Punkt-, Faltboden- oder Spezialschachteln üblich ist, eingesetzt. Bei einer bekannten Vorrichtung dieser Art bestehen die hinteren Faltwerkzeuge aus unterhalb der Transportebene gelagerten Haken, die mit ihren freien abgekröpften Enden den zunächst flach liegenden hinteren Steg von unten angreifen und bei Weitertransport des Zuschnittes diesen überholen, so dass der Steg nach innen umgefaltet wird und flach auf dem Faltschachtelzuschnitt zu liegen kommt. Ein solches Faltwerkzeug wird auch Überholhaken genannt.To be able to perform folds transversely to the transport direction of the folding box blanks, additional devices are installed in the folding box gluer. Such devices are for example from the American patent specification US 7,678,035 B2 known. They are used to make folding cartons with or without triangular lobes, as is the case with 4-point, 6-point, folded bottom or special boxes is usual, used. In a known device of this type, the rear folding tools consist of below the transport plane mounted hooks which attack with their free bent ends the initially flat lying rear web from below and overtake them on further transport of the blank, so that the web is folded inwards and flat on the folding carton blank. Such a folding tool is also called overtaking hook.

Weiterhin weisen Faltschachtelklebemaschinen optional um eine Achse drehbar gelagerte Aufreißhaken auf. Hierbei handelt es sich um einen schwenkbaren Traghebel, an dessen Ende ein hakenförmiges Element befestigt ist, mit dem ein vorlaufender Zuschnittsabschnitt aus der Förderebene hochgelenkt und nach hinten umgelegt werden kann. Eine solche Vorrichtung ist beispielsweise aus der US 7,179,216 B2 bekannt.Furthermore, Faltschachtelklebemaschinen optionally have rotatably mounted on an axis Aufraißhaken. This is a pivotable support lever, at the end of a hook-shaped element is fixed, with which a leading blank section can be deflected out of the conveying plane and folded back. Such a device is for example from the US 7,179,216 B2 known.

Bei all diesen Vorrichtungen ist eine Anpassung des Werkzeugs an das jeweilige zu bearbeitende Bogenformat oder der Wechsel von Werkzeugen sehr aufwendig. Hierzu ist notwendig, dass die rotativen Werkzeuge und / oder Werkzeughalter entlang der Antriebswelle frei verschiebbar sind. Gleichzeitig ist es auch erforderlich, dass die Passung für die Verbindung Antriebswelle - Werkzeughalter möglichst spielfrei ist, um Bewegungen des Werkzeugs bzw. Werkzeughalterns auf der Welle zu verhindern. Dies ist insbesondere wichtig, wenn, wie bei rotativen Brailleprägemodulen, die Antriebswellen mehrmals pro Sekunde beschleunigt und wieder abgebremst werden. Die Brailleprägemodule weisen dabei üblicherweise eine Patrize und eine Matrize auf, die jeweils auf Antriebswellen übereinander angeordnet sind. Zwischen diesen wird die Faltschachtel hindurch geführt und dabei die Brailleprägung durch Rotation der Patrize und Matrize aufgebracht. Hierzu ist es wichtig, dass Patrize und Matrize exakt übereinander angeordnet sind, damit die Erhebungen in der Patrize genau mit den Vertiefungen der Matrize kämmen. Die Werkzeuge müssen nahezu hundertprozentig synchron arbeiten, andernfalls treffen die Erhebungen nicht genau in die Vertiefungen, was zu Qualitätsproblemen bei den Brailleprägungen führt. Um die entsprechenden Einstellungen an den Werkzeugen bzw. Werkzeughaltern vornehmen zu können, müsste das Spiel zwischen jeweiliger Antriebswelle und komplementärer Bohrung im Werkzeug bzw. Werkzeughalter auf der ganzen Länge der Antriebswelle gleich Null sein, was aus Fertigungsgründen sehr aufwendig und kostspielig ist. Daher wird es üblicherweise immer ein Passungsspiel zwischen den beiden Teilen geben. Da die Einheit, wie bereits erwähnt, mehrmals pro Sekunde beschleunigt und abgebremst wird, kommt es an den nicht spielfreien Verbindungen zu rotativen Relativbewegungen zwischen Werkzeug bzw. Werkzeughalter und jeweiliger Antriebswelle, was zu einem Verschleiß an den Bohrungen zur Aufnahme der Antriebswelle führt, so dass bei zunehmendem Spiel die Werkzeuge ausgetauscht werden müssen.In all these devices, an adaptation of the tool to the respective sheet format to be processed or the change of tools is very expensive. For this purpose, it is necessary for the rotary tools and / or tool holders to be freely displaceable along the drive shaft. At the same time it is also necessary that the fit for the connection drive shaft - tool holder is as free of play as possible in order to prevent movements of the tool or tool holder on the shaft. This is especially important if, as with rotary Braille modules, the drive shafts are accelerated and decelerated several times per second. The Brailleprägemodule usually have a male and a female die, which are each arranged on drive shafts one above the other. Between them, the carton is passed through and applied the Braille stamping by rotation of the male and female. For this, it is important that the male and female parts are arranged exactly on top of each other, so that the protrusions in the male part mesh exactly with the recesses of the female part. The tools need to work almost 100% synchronously, otherwise the bumps will not hit the wells exactly, resulting in quality issues with Braille embossing. In order to make the appropriate adjustments to the tools or tool holders, the game between the respective drive shaft and complementary hole in the tool or tool holder on the entire length of the drive shaft would have to be zero, which means Production reasons is very complicated and expensive. Therefore, there will usually always be a match between the two parts. Since the unit, as already mentioned, accelerated and decelerated several times per second, it comes to the non-backlash-free connections to rotational relative movements between the tool or tool holder and the respective drive shaft, resulting in wear on the holes for receiving the drive shaft, so that with increasing play the tools must be exchanged.

Aufgabe der vorliegenden Erfindung ist deshalb eine Vorrichtung zu schaffen, bei der die rotativen Werkzeuge bzw. Werkzeughalter einfach an das jeweilige Bogenformat als auch an die jeweils durchzuführende Bearbeitung einfach angepasst bzw. gewechselt werden können. Diese Aufgabe wird gelöst durch die kennzeichnenden Merkmale von Anspruch 1.The object of the present invention is therefore to provide a device in which the rotary tools or tool holders can be easily adapted or changed simply to the respective sheet format as well as to the respective processing to be performed. This object is achieved by the characterizing features of claim 1.

In einer erfindungsgemäßen Ausführungsform weist die Vorrichtung zur lösbaren Befestigung von rotativen Werkzeugen oder Werkzeughaltern auf einer Antriebswelle deshalb Werkzeuge oder Werkzeughalter mit einer Nabe mit Bohrung komplementär zur Außenkontur der Antriebswelle und mindestens eine, einem jeweiligen rotativen Werkzeug oder Werkzeughalter zugeordnete Klemmvorrichtung auf. Die Bohrung weist mindestens zwei nach innen schräg verlaufende Nuten auf. Weiterhin ist die Nabe an ihrem einen Ende mit einem Außengewinde versehen. Dadurch ist es möglich, in den Nuten eine Klemmvorrichtung in Form einer aufschraubbaren Spannklaue zur Befestigung des rotativen Werkzeuges oder Werkzeughalters auf der Antriebswelle zu befestigen. Diese Vorrichtung hat den Vorteil, dass das Werkzeug bzw. der Werkzeughalter zum Einen spielfrei auf der Antriebswelle befestigt werden kann und zum Anderen wiederholt gelöst und frei auf der Welle verschoben werden kann.In an embodiment according to the invention, the device for releasably securing rotary tools or tool holders on a drive shaft therefore has tools or tool holders with a hub having a bore complementary to the outer contour of the drive shaft and at least one clamping device associated with a respective rotary tool or tool holder. The bore has at least two inwardly inclined grooves. Furthermore, the hub is provided at its one end with an external thread. This makes it possible to fasten in the grooves a clamping device in the form of a screw-on clamping jaw for fixing the rotary tool or tool holder on the drive shaft. This device has the advantage that the tool or the tool holder can be attached to the drive shaft without play and on the other repeatedly released and can be moved freely on the shaft.

In einer bevorzugten Ausführungsform besteht die aufschraubbare Spannklaue aus einer Gewindemutter, in die ein Ring einsetzbar ist, an dessen Außensteg zwei Spannkrallen angebracht sind. Der Ring weist die gleiche Bohrung auf wie die Nabe der Werkzeuge bzw. der Werkzeughalter. Der Ring ist über Spannstifte, die in Bohrungen an der Umfangsfläche der Gewindemutter eingepresst werden, mit der Gewindemutter verbunden. Diese Ausführungsform hat den Vorteil, dass einerseits über die Gewindeverbindung die Spannkrallen in die schrägen Nuten der Nabenbohrung eingepresst werden, bis eine spielfreie Verbindung hergestellt ist, und andererseits die Spannkrallen über die Spannstifte, die den Ring mitnehmen, wenn die Gewindemutter gelöst wird, eine einfache und sichere Lösung der Verbindung möglich ist.In a preferred embodiment, the screw-on clamping claw consists of a threaded nut into which a ring can be inserted, on whose outer web two clamping claws are mounted. The ring has the same bore as the hub of the tools or the tool holder. The ring is connected via dowel pins, which are pressed into holes on the peripheral surface of the threaded nut, with the threaded nut. This embodiment has the advantage that on the one hand via the threaded connection the Clamping claws are pressed into the oblique grooves of the hub bore until a backlash-free connection is made, and on the other hand, the clamping claws on the dowel pins that take the ring when the nut is released, a simple and secure solution of the connection is possible.

In einer weiteren bevorzugten Ausführungsform weist die Gewindemutter an ihrer äußeren Stirnfläche Löcher zum Einsetzen eines Zweilochmutterdrehers auf. Hierdurch ist eine einfache Bewegung der Gewindemutter möglich.In a further preferred embodiment, the threaded nut on its outer end face on holes for inserting a Zweilochmutterdrehers. As a result, a simple movement of the threaded nut is possible.

In einer besonders bevorzugten Ausführungsform ist die Antriebswelle als Formwelle, z. B. als Polygonwelle, Sechskantwelle oder Vielkeilwelle ausgeführt. Diese Ausführungsform hat den Vorteil, dass beispielsweise bei Prägewerkzeugen in Form von Patrize und Matrize der richtige Zusammenbau der beiden miteinander kämmenden Werkzeuge gegenüber einer Rundwelle erleichtert wird.In a particularly preferred embodiment, the drive shaft is a shaped shaft, for. B. executed as a polygon shaft, hexagonal shaft or splined shaft. This embodiment has the advantage that, for example, in the case of stamping tools in the form of male and female molds, the correct assembly of the two intermeshing tools with respect to a round shaft is facilitated.

In einer weiteren bevorzugten Ausführungsform wird die Vorrichtung in entsprechenden Modulen zur Bearbeitung von bogenförmigen Materialien, die beispielsweise zum Rillen, Schneiden oder Prägen eingesetzt werden, verwenden. Besonders vorteilhaft erweist sich dabei die Vorrichtung in Modulen, die zwei Antriebswelle aufweisen und die mit komplementären Werkzeugen, die zusammenarbeiten, bestückt sind.In a further preferred embodiment, the device is used in corresponding modules for processing sheet-like materials which are used, for example, for creasing, cutting or embossing. In this case, the device proves to be particularly advantageous in modules which have two drive shafts and which are equipped with complementary tools which work together.

In einer besonders bevorzugten Ausführungsform wird die Vorrichtung in einem Modul einer Bogen verarbeitenden Maschine beispielsweise einem Braillemodul, in einer Faltschachtelklebemaschine verwendet.In a particularly preferred embodiment, the device is used in a module of a sheet-processing machine, for example a Braille module, in a folding box gluer.

Nachfolgend wird die Erfindung anhand eines Ausführungsbeispiels für ein Braillemodul einer Faltschachtelklebemaschine näher erläutert. Dieses Modul in dieser speziellen Weiterverarbeitungsmaschine soll die Erfindung jedoch nicht auf diesen Verwendungsfall beschränken. Die Erfindung kann allgemein für die Befestigung von rotativen Werkzeugen als Welle-Nabe Verbindung verwendet werden.

Figur 1
zeigt in einer perspektivischen Darstellung beispielhaft einzelne Bearbeitungsstationen einer Faltschachtelklebemaschine
Figuren 2a, 2b
zeigen ein Bearbeitungsmodul mit Rillwerkzeugen
Figuren 3a, 3b
zeigen ein Bearbeitungsmodul mit Prägewerkzeugen
Figur 4
zeigt eine erfindungsgemäße Vorrichtung im Schnitt
Figur 5
zeigt in einer perspektivischen Darstellung eine erfindungsgemäße Vorrichtung
Figur 6
zeigt in einer perspektivischen Darstellung ein Werkzeug für eine erfindungsgemäße Vorrichtung
Figur 7
zeigt in einer perspektivischen Darstellung eine erfindungsgemäße aufschraubbare Spannklaue
Figuren 8a, 8b
zeigen in einer perspektivischen Darstellung die wesentlichen Einzelteile der aufschraubbaren Spannklaue
The invention will be explained in more detail below with reference to an exemplary embodiment of a braille module of a folding box gluing machine. However, this module in this special processing machine is not intended to limit the invention to this use case. The invention can be generally used for the attachment of rotary tools as a shaft-hub connection.
FIG. 1
shows in a perspective view by way of example individual processing stations a Faltschachtelklebemaschine
FIGS. 2a, 2b
show a processing module with scoring tools
FIGS. 3a, 3b
show a processing module with stamping tools
FIG. 4
shows a device according to the invention in section
FIG. 5
shows a perspective view of a device according to the invention
FIG. 6
shows a perspective view of a tool for a device according to the invention
FIG. 7
shows a perspective view of a screw-on clamping jaw according to the invention
Figures 8a, 8b
show in a perspective view of the essential parts of the screw-on clamping jaw

Figur 1 zeigt beispielhaft für eine Weiterverarbeitungsmaschine eine Faltschachtelklebemaschine mit mehreren Bearbeitungsstationen, in denen erfindungsgemäße Werkzeugaufnahmevorrichtungen eingesetzt werden können. FIG. 1 shows by way of example for a further processing machine a folding box gluing machine with a plurality of processing stations in which tool receiving devices according to the invention can be used.

Die Faltschachtelklebemaschine beginnt in Figur 1 rechts unten mit einem Einleger 1, der die zu verarbeitenden Zuschnitte mit hoher Geschwindigkeit aus einem Stapel nacheinander abzieht und einzeln der nachfolgenden Bearbeitungsstation zuführt. Im Anschluss an den Einleger 1 folgt eine Ausrichtestation 4, in der die Zuschnitte einzeln gegen einen seitlichen Anschlag ausgerichtet werden. Durch die Ausrichtstation führen quer positionierbare Maschinenkomponenten in Form von zwei Riemenpaaren, die als Fördermittel dienen und über Stellantriebe manuell oder automatisch quer positioniert werden können.The folder gluer starts in FIG. 1 bottom right with an insert 1, which pulls off the blanks to be processed at high speed from a stack one after the other and feeds them individually to the subsequent processing station. Following the insert 1 is followed by an alignment station 4, in which the blanks are individually aligned against a lateral stop. Through the alignment station transversely positionable machine components in the form of two pairs of belts lead as Serve conveyor and can be positioned manually or automatically transversely actuators.

Anschließend folgt ein Vorbrecher 6 und ein erstes Faltmodul 7. Sowohl durch den Vorbrecher 6 als auch durch das Faltmodul 7 führen quer positionierbare Maschinenkomponenten in Form von Riemenpaaren als Fördermittel, die abhängig vom Zuschnittstyp mit einem Stellantrieb quer positioniert werden.This is followed by a primary crusher 6 and a first folding module 7. The machine components in the form of belt pairs, which can be positioned transversely in the form of belt pairs, both through the primary shredder 6 and through the folding module 7, are transversely positioned with an actuator depending on the type of blank.

Auf das Faltmodul 7 folgt eine Drehstation 9. Die Drehstation 9 enthält zum Drehen der Zuschnitte um eine senkrechte Achse um 90° zwei parallel nebeneinander angeordnete Förderstrecken, deren Geschwindigkeit getrennt einstellbar ist. Die Zuschnitte liegen auf beiden Förderstrecken auf, so dass sie bei unterschiedlichen Geschwindigkeiten der beiden Förderstrecken gedreht werden. Die beiden Förderstrecken enthalten angetriebene Rollen als Fördermittel.On the folding module 7 follows a turning station 9. The turning station 9 includes for rotating the blanks about a vertical axis by 90 ° two parallel juxtaposed conveyor lines whose speed is adjustable separately. The blanks are on both conveyor lines, so that they are rotated at different speeds of the two conveyor lines. The two conveyor lines contain driven rollers as conveying means.

Im Anschluss an die Drehstation 9 folgt eine weitere Ausrichtestation 10, die in ihrem Aufbau der Ausrichtestation hinter dem Einleger 1 entspricht. Sie enthält somit wiederum quer positionierbare Maschinenkomponenten in Form von Förderriemenpaaren als Fördermittel.Subsequent to the turning station 9 is followed by a further alignment station 10, which corresponds in its construction of the alignment station behind the insert 1. It thus again contains transversely positionable machine components in the form of pairs of conveyor belts as conveying means.

Die nächste Bearbeitungsstation 13 dient dazu, vom Schachteltyp abhängige Bearbeitungsvorgänge durchzuführen; beispielsweise werden weitere Rilllinien vorgebrochen oder Sonderfaltungen durchgeführt. Auch durch die Bearbeitungsstation 13 führen Riemenpaare als Förderelemente, die mit Stellantrieben quer positioniert werden können.The next processing station 13 serves to perform box-type dependent processing operations; For example, further score lines are pre-broken or special folds are performed. Also through the processing station 13 lead belt pairs as conveying elements that can be positioned transversely with actuators.

Anschließend folgt eine Faltstation 14, in der vorher mit einer Klebenaht versehene Zuschnittteile um 180° umgefaltet werden. Die Faltstation 14 enthält Riemenpaare als Förderelemente und ein Klebstoffauftragwerk, die mittels Stellantrieben in ihre vom Zuschnittstyp abhängige Querposition bewegt werden können. Anschließend folgt eine Überleitstation 15, von der die gefalteten, mit noch nicht abgebundenen Klebenähten versehenen Zuschnitte in allen Teilen exakt ausgerichtet der nachfolgenden Sammel- und Presseinrichtung 16 zugeführt werden. In der Sammel- und Presseinrichtung 16 wird zunächst ein Schuppenstrom aus gefalteten Zuschnitten gebildet, der anschließend zwischen fördernden Pressbändern für einige Zeit unter Druck gehalten wird, damit die Klebenähte abbinden. Die Überleitstation enthält ebenfalls Riemenpaare, die mittels Stellantrieben querverstellt werden können.This is followed by a folding station 14, in which the blank parts previously provided with an adhesive seam are folded over by 180 °. The folding station 14 includes pairs of belts as conveying elements and an adhesive applicator, which can be moved by means of actuators in their dependent of the cutting type transverse position. This is followed by a transfer station 15, of which the folded, provided with not yet set adhesive seams blanks in all parts exactly aligned the subsequent collection and Pressing device 16 are supplied. In the collecting and pressing device 16, a shingled stream of folded blanks is first formed, which is subsequently held under pressure for some time between conveying press belts, so that the adhesive seams set. The transfer station also contains pairs of belts, which can be transversely adjusted by means of actuators.

In den Figuren 2a und 2b ist ein Modul zum synchronen Rillen mit Rillwerkzeugen dargestellt. Das Modul weist eine rechte Gestellwand 20 und eine linke Gestellwand 21 auf, die durch Quertraversen 22, 23, 24 miteinander verbunden sind. In den Gestellwänden 20, 21 ist eine untere Antriebswelle 29 gelagert. Auf der unteren Antriebswelle 29 sind untere Rillwerkzeuge 33 gelagert und über ein unteres Werkzeugführungselement 41, welches sich auf der unteren Quertraverse 24 abstützt, seitlich gleitend mit der unteren Antriebswelle 29 verbunden. Die Figur 2a zeigt weiterhin eine obere Quertraverse 23 und eine obere Antriebswelle 28 auf, die beide in den Gestellwänden 20, 21 gelagert sind. Auf der oberen Antriebswelle 28 sind obere Rillwerkzeuge 32 gelagert und über ein oberes Werkzeugführungselement 40, welches sich auf der oberen Quertraverse 23 abstützt, seitlich gleitend mit der oberen Antriebswelle 28 verbunden. Die Schachtelzuschnitte 12 werden zwischen den beiden dargestellten oberen Rillwerkzeugen 32 und den unteren Rillwerkzeugen 33 hindurch transportiert. Die oberen und unteren Rillwerkzeuge 32, 33 werden durch die Werkzeugführungselemente 40, 41 geführt, die sich jeweils auf den Quertraversen 23, 24 in bereits beschriebener Art abstützen. Die beiden dargestellten Rillwerkzeuge 32, 33 sind nur beispielhaft; es können entsprechend der Anforderung beliebig viele Rillwerkzeuge auf den Antriebswellen angeordnet sein. Auch ist eine Mischung unterschiedlicher Werkzeuge, beispielsweise Rillwerkzeuge, zusammen mit Prägewerkzeugen möglich.In the FIGS. 2a and 2b is a module for synchronous grooves shown with scoring tools. The module has a right frame wall 20 and a left frame wall 21, which are interconnected by transverse members 22, 23, 24. In the frame walls 20, 21, a lower drive shaft 29 is mounted. On the lower drive shaft 29 lower scoring tools 33 are mounted and laterally slidably connected to the lower drive shaft 29 via a lower tool guide element 41, which is supported on the lower cross-beam 24. The FIG. 2a further shows an upper cross-beam 23 and an upper drive shaft 28, both of which are mounted in the frame walls 20, 21. On the upper drive shaft 28 upper scoring tools 32 are mounted and laterally slidably connected to the upper drive shaft 28 via an upper tool guide element 40 which is supported on the upper cross-beam 23. The box blanks 12 are transported between the two illustrated upper scoring tools 32 and the lower scoring tools 33. The upper and lower scoring tools 32, 33 are guided by the tool guide elements 40, 41, which are respectively supported on the transverse members 23, 24 in the manner already described. The two scoring tools 32, 33 shown are only examples; Any number of scoring tools can be arranged on the drive shafts in accordance with the requirement. Also, a mixture of different tools, such as scoring tools, together with embossing tools is possible.

In den Figuren 3a und 3b ist ein Modul in einer Ausführungsform zum synchronen Prägen als sogenanntes Braillemodul dargestellt. Die Schachtelzuschnitte 12 werden zwischen den vier dargestellten oberen Brailleprägewerkzeugen, die als Patrizen 34 ausgeführt sind, und den unteren Brailleprägewerkzeugen, die als Matrizen 35 ausgeführt sind, hindurch transportiert. Die Patrizen 34 und Matrizen 35 werden durch die Werkzeugführungselemente 40, 41 geführt, die sich jeweils auf den Quertraversen 23, 24 in bereits beschriebener Weise abstützen. Wie man erkennt, können die Braillewerkzeuge 34, 35 auf eine beliebige Stelle des Schachtelzuschnitts eingestellt werden. Auch ist die Anzahl der Braillewerkzeuge 34, 35 beliebig.In the FIGS. 3a and 3b a module is shown in an embodiment for synchronous embossing as a so-called Braille module. The carton blanks 12 are transported between the four illustrated upper braille embossing tools, which are designed as male parts 34, and the lower braille embossing tools, which are designed as dies 35. The patrices 34 and matrices 35 are guided by the tool guide elements 40, 41, each on the transverse members 23, 24th supported in the manner already described. As can be seen, the braille tools 34, 35 can be set anywhere on the carton blank. Also, the number of braille tools 34, 35 is arbitrary.

In Figur 4 ist eine Ausführungsform der erfindungsgemäßen Vorrichtung dargestellt. Ein rotatives Werkzeug bzw. ein rotativer Werkzeughalter 50 ist auf einer Antriebswelle 51 über eine aufschraubbare Spannklaue 53 befestigt. Die Spannklaue 53 weist hierbei zwei Spannkrallen 54 auf, die an einem Ende an einem gemeinsamen Ring 55 befestigt sind. Der Ring ist in einer Gewindemutter 56 mittels Spannstiften 57 beweglich fixiert. An ihrer äußeren Stirnseite 58 weist die Gewindemutter 56 Löcher 59 zum Einsetzen eines Zweilochmutterndrehers auf.In FIG. 4 an embodiment of the device according to the invention is shown. A rotary tool or a rotary tool holder 50 is fastened on a drive shaft 51 via a screw-on clamping jaw 53. The clamping claw 53 in this case has two clamping claws 54, which are fastened at one end to a common ring 55. The ring is movably fixed in a threaded nut 56 by means of clamping pins 57. At its outer end face 58, the threaded nut 56 holes 59 for inserting a Zweilochmutterndrehers on.

In Figur 5 ist diese Ausführungsform in einer perspektivischen Darstellung gezeigt. Die Antriebswelle 51 ist als Polygonwelle ausgeführt. Von der aufschraubbaren Spannklaue 53, die auf die Nabe 52 des Werkzeughalters aufgeschraubt ist, ist in dieser Darstellung nur die Gewindemutter 56 zu erkennen.In FIG. 5 this embodiment is shown in a perspective view. The drive shaft 51 is designed as a polygonal shaft. Of the screw-on clamping claw 53, which is screwed onto the hub 52 of the tool holder, only the threaded nut 56 can be seen in this illustration.

Aus der Darstellung in Figur 6 sind weitere Einzelheiten des Aufbaus des Werkzeugs bzw. des Werkzeughalters 50 dargestellt. Es ist deutlich die Nabe 52 zu erkennen, die eine Bohrung 61 komplementär zu der aus Figur 5 erkennbaren Polygonwelle als Antriebswelle 51 aufweist. Weiterhin sind die beiden Nuten 62 dargestellt, in die die Spannkrallen 54 eingesetzt werden.From the illustration in FIG. 6 Further details of the structure of the tool or the tool holder 50 are shown. It is clear to see the hub 52, which has a bore 61 complementary to the FIG. 5 has recognizable polygonal shaft as the drive shaft 51. Furthermore, the two grooves 62 are shown, in which the clamping claws 54 are used.

In der Figur 7 ist eine aufschraubbare Spannklaue 53 in zusammengebautem Zustand und in den Figuren 8a und 8b sind die Einzelteile dargestellt. Man erkennt die Gewindemutter 56 sowie die Spannkrallen 54, welche an einem Ring 55 befestigt sind. Der Ring 55 weist eine Bohrung 61 komplementär zur Außenkontur der Antriebswelle 51, hier einer Polygonwelle, auf und ist über Spannstifte 57 in der Gewindemutter 56 fixiert.In the FIG. 7 is a screw-on clamping jaw 53 in the assembled state and in the FIGS. 8a and 8b the items are shown. One recognizes the threaded nut 56 and the clamping claws 54, which are fastened to a ring 55. The ring 55 has a bore 61 complementary to the outer contour of the drive shaft 51, in this case a polygonal shaft, and is fixed by means of dowel pins 57 in the threaded nut 56.

Weiterhin kann der Ring 55 in einer vorteilhaften Ausführungsform Nuten 63 aufweisen zur Aufnahme von nicht dargestellten Indexierstiften auf der Antriebswelle 51, was den korrekten Zusammenbau bei Werkzeugpaaren erleichtert.Furthermore, in an advantageous embodiment, the ring 55 may have grooves 63 for receiving indexing pins (not shown) on the drive shaft 51, which facilitates correct assembly with pairs of tools.

BezugszeichenlisteLIST OF REFERENCE NUMBERS

11
Einlegerdepositors
44
Ausrichtestationaligner
66
Vorbrecherprimary crusher
77
Faltmodulfolding module
99
Drehstationturning station
1010
Ausrichtestationaligner
1212
SchachtelzuschnittA carton blank
1313
Bearbeitungsstationprocessing station
1414
Faltstationfolding station
1515
Überleitstationtransfer station
1616
Sammel- und PresseinrichtungCollecting and pressing device
2020
rechte Gestellwandright frame wall
2121
linke Gestellwandleft frame wall
2222
Quertraversecrossbeam
2323
obere Quertraverseupper crossbar
2424
untere Quertraverselower crossbar
2828
obere Antriebswelleupper drive shaft
2929
untere Antriebswellelower drive shaft
3232
obere Rillwerkzeugeupper scoring tools
3333
untere Rillwerkzeugelower scoring tools
3434
Patrizepunch
3535
Matrizedie
4040
oberes WerkzeugführungselementUpper tool guide element
4141
unteres Werkzeugführungselementlower tool guide element
5050
Werkzeug / WerkzeughalterTool / tool holder
5151
Antriebswelledrive shaft
5252
Nabehub
5353
Aufschraubbare SpannklaueScrew-on clamping claw
5454
Spannkralleclamping claw
5555
Ringring
5656
Gewindemutterthreaded nut
5757
Spannstiftdowel pin
5858
Äußere Stirnseite der GewindemutterOuter front side of the threaded nut
5959
Lochhole
6060
Außengewindeexternal thread
6161
Bohrungdrilling
6262
Nutgroove
6363
Nutgroove

Claims (8)

Vorrichtung zur lösbaren Befestigung von rotativen Werkzeugen oder Werkzeughaltern (50) auf einer Antriebswelle (51) mit rotativen Werkzeugen oder Werkzeughaltern, wobei die Werkzeuge oder Werkzeughalter (50) eine Nabe (52) mit einer Bohrung (61) komplementär zur Außenkontur der Antriebswelle (51) aufweisen, und mit mindestens einer einem jeweiligen rotativen Werkzeug oder Werkzeughalter zugeordneten Klemmvorrichtung (53),
dadurch gekennzeichnet,
dass die Bohrung (61) mindestens zwei nach innen schräg verlaufende Nuten (62, 63) aufweist und die Nabe (52) an ihrem einen Ende mit einem Außengewinde (60) versehen ist, so dass in den Nuten (62, 63) eine Klemmvorrichtung in Form einer aufschraubbaren Spannklaue (53) zur Befestigung des rotativen Werkzeuges oder Werkzeughalters auf der Antriebswelle befestigt werden kann.
Device for the detachable fastening of rotary tools or tool holders (50) on a drive shaft (51) with rotary tools or tool holders, the tools or tool holders (50) having a hub (52) with a bore (61) complementary to the outer contour of the drive shaft (51 ), and at least one clamping device (53) associated with a respective rotary tool or tool holder,
characterized,
in that the bore (61) has at least two inwardly inclined grooves (62, 63) and the hub (52) is provided at its one end with an external thread (60), so that in the grooves (62, 63) a clamping device in the form of a screw-on clamping jaw (53) for fixing the rotary tool or tool holder can be mounted on the drive shaft.
Vorrichtung nach Anspruch 1,
dadurch gekennzeichnet,
dass die aufschraubbare Spannklaue (53) zwei Spannkrallen (54) aufweist, die an einem Ende an einem gemeinsamen Ring (55) befestigt sind, der eine Bohrung aufweist, die der Außenkontur der Antriebswelle entspricht, wobei der Ring in eine Gewindemutter (56) einsetzbar ist und über Spannstifte (57) mit der Gewindemutter verbindbar ist.
Device according to claim 1,
characterized,
in that the screw-on clamping claw (53) has two clamping claws (54) which are fastened at one end to a common ring (55) having a bore which corresponds to the outer contour of the drive shaft, wherein the ring can be inserted into a threaded nut (56) is and via dowel pins (57) is connectable to the threaded nut.
Vorrichtung nach Anspruch 2,
dadurch gekennzeichnet,
dass die Gewindemutter (56) an ihrer äußeren Stirnfläche (58) Löcher (59) zum Einsetzen eines Zweilochmutterndrehers aufweist.
Device according to claim 2,
characterized,
in that the threaded nut (56) has holes (59) on its outer end face (58) for insertion of a two-hole nut rotator.
Vorrichtung nach einem der vorhergehenden Ansprüche,
dadurch gekennzeichnet,
dass die Antriebswelle (51) als Formwelle ausgebildet ist.
Device according to one of the preceding claims,
characterized,
that the drive shaft (51) is formed as a shaped shaft.
Modul (13) zum Bearbeiten von flachem, bogenförmigem Material (12) mit einer Vorrichtung nach einem der vorhergehenden Ansprüche,
dadurch gekennzeichnet,
dass das Modul zwei Antriebswellen (28, 29) aufweist, die in einem Abstand übereinander angeordnet sind, wobei auf der einen Antriebswelle (28) Werkzeuge oder Werkzeughalter (34) befestigt sind, die mit komplementär ausgebildeten Gegenwerkzeugen (35) zusammenarbeiten, die auf der zweiten Antriebswelle (29) befestigt sind.
Module (13) for processing flat sheet material (12) with a device according to one of the preceding claims,
characterized,
in that the module has two drive shafts (28, 29) which are arranged at a distance one above the other, wherein on the one drive shaft (28) tools or tool holders (34) are fixed, which cooperate with complementarily formed counter tools (35), which on the second drive shaft (29) are attached.
Modul nach Anspruch 5,
dadurch gekennzeichnet,
dass das Modul mit Rillwerkzeugen oder Schneidwerkzeugen oder mit Prägewerkzeugen bestückt ist.
Module according to claim 5,
characterized,
that the module is equipped with scoring tools or cutting tools or embossing tools.
Modul nach Anspruch 6,
dadurch gekennzeichnet,
dass das Modul als Brailleprägemodul ausgebildet ist.
Module according to claim 6,
characterized,
that the module is formed as Braille embossing module.
Bogen verarbeitende Maschine, insbesondere Faltschachtelklebemaschine, Falzmaschine oder Umschlaganleger mit einem Modul nach einem der Ansprüche 5 bis 7.Sheet-processing machine, in particular folding box gluer, folding machine or cover feeder with a module according to one of claims 5 to 7.
EP13171340.6A 2012-07-12 2013-06-11 Tool holding device Active EP2689924B1 (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102012013757.5A DE102012013757A1 (en) 2012-07-12 2012-07-12 Tool-holding device

Publications (2)

Publication Number Publication Date
EP2689924A1 true EP2689924A1 (en) 2014-01-29
EP2689924B1 EP2689924B1 (en) 2015-03-04

Family

ID=48626295

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13171340.6A Active EP2689924B1 (en) 2012-07-12 2013-06-11 Tool holding device

Country Status (4)

Country Link
EP (1) EP2689924B1 (en)
CN (1) CN103538286B (en)
DE (1) DE102012013757A1 (en)
ES (1) ES2538249T3 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015122525A1 (en) 2015-12-22 2017-07-06 Masterwork Machinery Co., Ltd. Plastic bushing for an embossing device in a folding box gluer
CN107972318B (en) * 2017-11-09 2019-06-28 北京小米移动软件有限公司 Surrounding edge papers method and device

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US7794379B2 (en) 2006-11-08 2010-09-14 Heidelberger Druckmaschinen Aktiengesellschaft Folded box gluing machine for production of folded boxes from blanks
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US3707424A (en) * 1970-08-31 1972-12-26 Kollsman Instr Corp Adjustable label form slitter for addressing machines
EP1574323B1 (en) 2004-03-10 2011-06-08 Heidelberger Druckmaschinen Aktiengesellschaft Scoring element for rotative scoring of products
US7179216B2 (en) 2004-04-30 2007-02-20 Heidelberger Druckmaschinen Ag Catch hook for a folding box gluing machine
US7402129B2 (en) 2004-05-04 2008-07-22 Heidelberger Druckmaschinen Ag Folding-box gluing machine for producing folding boxes from blanks
US7794379B2 (en) 2006-11-08 2010-09-14 Heidelberger Druckmaschinen Aktiengesellschaft Folded box gluing machine for production of folded boxes from blanks
US7678035B2 (en) 2007-08-27 2010-03-16 Heidelberger Druckmaschinen Aktiengesellschaft Folded box gluing machine with improved accessibility
US20100218658A1 (en) * 2007-09-14 2010-09-02 L&P Property Management Company Programmable border slitter

Also Published As

Publication number Publication date
DE102012013757A1 (en) 2014-01-16
CN103538286A (en) 2014-01-29
CN103538286B (en) 2017-05-03
ES2538249T3 (en) 2015-06-18
EP2689924B1 (en) 2015-03-04

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