EP1935644B1 - Drive for a processing machine - Google Patents

Drive for a processing machine Download PDF

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Publication number
EP1935644B1
EP1935644B1 EP08004353A EP08004353A EP1935644B1 EP 1935644 B1 EP1935644 B1 EP 1935644B1 EP 08004353 A EP08004353 A EP 08004353A EP 08004353 A EP08004353 A EP 08004353A EP 1935644 B1 EP1935644 B1 EP 1935644B1
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EP
European Patent Office
Prior art keywords
cylinder
drive
coupled
gear
rotor
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EP08004353A
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German (de)
French (fr)
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EP1935644A1 (en
Inventor
Toni Ehrhard
Helmut Dipl.-Ing. Schild
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Manroland AG
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Manroland AG
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Publication of EP1935644A1 publication Critical patent/EP1935644A1/en
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/004Electric or hydraulic features of drives
    • B41F13/0045Electric driving devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/10Forme cylinders
    • B41F13/12Registering devices
    • B41F13/14Registering devices with means for displacing the cylinders

Definitions

  • the invention relates to a drive for a processing machine according to the preamble of claim 1.
  • the drive is used in particular in a sheet-shaped substrates (sheet material) processing printing press or coating machine.
  • a controllable direct drive of this kind is according to EP 0 812 683 A1 known for a processing machine.
  • a plate cylinder or a blanket cylinder at least one printing unit by means of individual drive in a predeterminable manner can be driven.
  • the plate cylinder or the plate cylinder and the blanket cylinder for performing circumferential register corrections to the other cylinders can be driven.
  • the plate cylinder and / or the blanket cylinder for performing pressure length corrections to the other cylinders are driven.
  • a page register correction can be realized by the mounted in side frames plate cylinder is slidably mounted together with the associated drive in the plate cylinder axis direction.
  • WO 02/076743 A1 is a drive for a printing unit is known in which a single drive motor via a pinion gear on a gear of a forme cylinder feeds a drive torque.
  • the gear of the forme cylinder is in positive engagement with a gear of an adjacent transfer cylinder (first gear plane), so that the input torque is also transmitted to the transfer cylinder.
  • first gear plane can on the transfer cylinder, a second gear be fixed, which transmits the input torque to another on the forme cylinder freely rotatably arranged gear. From this freely rotatable, the forme cylinder drive bridging gear input torque is transmitted via at least one other gear on an inking unit and, if necessary, to a dampening unit.
  • the invention has the object of developing a drive of the type mentioned in such a way that it comprises at least a direct drive for a cylinder and a main drive with a gear train and the direct drive can be bridged by the gear train.
  • a first advantage is that on the direct drive decoupled from this direct drive intermediate wheel of a closed gear train can be accommodated, which is provided for the transport of the sheet-shaped printing material.
  • a further assembly in particular an inking unit and / or a dampening unit and / or at least one applicator roll of a metering device, of the processing machine can be driven in a space-saving design.
  • Another advantage of the invention is that in addition to the direct drive of a single cylinder - and, if necessary, the circumferential register correction - in addition a separate side register correction can be realized with little effort.
  • Another advantage is due to the fact that by means of direct drive and separate side register correction a compact, space-saving design for a single drive of a cylinder is achieved. In this case, no additional space is required in a preferred embodiment, as in particular in the interior of a frame-fixed drive motor for the direct drive - and if necessary for the 3,sregisterkorrektur - a cylinder in addition a separate drive for possible side register corrections of this cylinder is arranged fixed to the frame.
  • a further advantage is that individually drivable cylinders are preferably designed as a plate cylinder in offset printing and / or forme cylinder in coating units of processing machines by direct drive, if necessary with excreregisterkorrektur, and a separate 9.registerkorrektur.
  • a processing machine for sheet-shaped substrates has, for example, a plurality of printing units 1 and at least one coating unit 2.
  • Fig. 1 is a per se known printing unit 1 with a blanket cylinder 8, a plate cylinder 6 and a plate cylinder 6 associated inking. 7 shown. If necessary, the plate cylinder 6 is associated with a dampening unit (not shown).
  • the printing unit 1 is downstream of a coating unit 2 in the conveying direction 5 of the printing material, which has a forme cylinder 10 and a metering device 11, 12.
  • the dosing system 11, 12 is formed by a screened application roller 11 and a chamber doctor blade system 12.
  • the coating unit 2 is downstream of a boom 3 in the conveying direction 5, which has an endless circulating conveyor system 4 for transporting and depositing the sheet-shaped substrates on a stack.
  • the blanket cylinder in the printing unit 1 For the printing substrate transport the blanket cylinder in the printing unit 1, the forme cylinder 10 in the coating unit 2 and between the printing / coating units 1, 2 transport cylinder 9 are arranged.
  • the transport cylinders 9 are formed as a sheet guiding cylinder and are on the drive side with a continuous gear train, ie closed gear train, connected, which is coupled to a main drive and driven.
  • the blanket cylinder 8 of each printing unit 1 is mechanically coupled to the gear train for the transport cylinder 9.
  • Each plate cylinder 6 and each forme cylinder 10 each have their own, from the gear train of the transport cylinder 9 mechanically decoupled direct drive (single drive), which is drivable in a predeterminable manner with respect to these transport cylinders 9 and if necessary opposite each blanket cylinder 8.
  • the direct drive is detachably arranged on the end of the plate / forme cylinder 6, 10 and consists of a plate / forme cylinder 6, 10th arranged rotor 14 and a concentrically arranged on the side frame 13 releasably fixed stator 15.
  • the rotor 14 is coupled by means of a flange 25 with the plate / forme cylinder 6, 10.
  • a bearing 29 is arranged, which carries a freely rotatable intermediate gear 26.
  • the intermediate gear 26 is decoupled from the direct drive for the plate / forme cylinder 6, 10.
  • On the intermediate gear 26 is from the gear train of the transport cylinder 9 for the printing material feed a 27 input and fed from this intermediate gear 26 is an output 28 to another assembly 7; 11.12 realizable.
  • the output is effected on an inking unit 7, alternatively a dampening unit, a printing unit 1 or on the applicator roller 11 of a metering device 11, 12 of a coating unit. 2
  • a frame-fixed, with a gear transmission 17, 18 coupled register motor 16 is arranged in the interior of the annular rotor 14.
  • the gear transmission 17, 18 is coupled to a helical gear 19, 20, 21, 22, which is coupled by means of an axial / rotary coupling 23, 24 with the cylinder 6, 10 and can perform a stroke 30.
  • the register motor 16 with the holder 20 and the stator 15 is releasably fixed to the side frame 13.

Abstract

in The direct drive comprises a rotor (14) detachably mounted on the end of a cylinder (6, 10), and stator (15) concentric with the rotor, and detachably fixed to the side frame (13). A register motor (16) fixed to the frame is coupled to gearing (17, 18) which is itself coupled to the helical gear (19, 20, 21, 22). The helical gear is coupled to the cylinder by axial rotary coupling (23, 24).

Description

Die Erfindung betrifft einen Antrieb für eine Verarbeitungsmaschine nach dem Oberbegriff von Anspruch 1. Der Antrieb ist insbesondere in einer bogenförmige Bedruckstoffe (Bogenmaterial) verarbeitenden Druckmaschine bzw. Lackiermaschine einsetzbar.The invention relates to a drive for a processing machine according to the preamble of claim 1. The drive is used in particular in a sheet-shaped substrates (sheet material) processing printing press or coating machine.

[Stand der Technik][State of the art]

Ein steuerbarer Direktantrieb dieser Art ist gemäß
EP 0 812 683 A1 für eine Verarbeitungsmaschine bekannt. Vom vorzugsweise für den Transport des Bogenmaterials vorgesehenen Räderzug einer Bogenoffsetdruckmaschine entkoppelt ist ein Plattenzylinder oder ein Gummituchzylinder zumindest eines Druckwerkes mittels Einzelantrieb in vorgebbarer Weise antreibbar. In einer Weiterbildung ist der Plattenzylinder oder sind der Plattenzylinder und der Gummituchzylinder zur Durchführung von Umfangsregisterkorrekturen gegenüber den übrigen Zylindern antreibbar. In einer weiteren Ausbildung sind der Plattenzylinder und/oder der Gummituchzylinder zur Durchführung von Drucklängenkorrekturen gegenüber den übrigen Zylindern antreibbar.
Weiterhin ist durch nicht näher angegebene mechanische Mittel bei Bedarf eine Seitenregisterkorrektur realisierbar, indem der in Seitengestellen gelagerte Plattenzylinder nebst dem zugeordneten Antrieb in Plattenzylinder-Achsrichtung verschiebbar gelagert ist.
A controllable direct drive of this kind is according to
EP 0 812 683 A1 known for a processing machine. From decoupled preferably provided for the transport of the sheet material gear train a sheetfed offset printing press, a plate cylinder or a blanket cylinder at least one printing unit by means of individual drive in a predeterminable manner can be driven. In a further development of the plate cylinder or the plate cylinder and the blanket cylinder for performing circumferential register corrections to the other cylinders can be driven. In a further embodiment of the plate cylinder and / or the blanket cylinder for performing pressure length corrections to the other cylinders are driven.
Furthermore, by not specified mechanical means, if necessary, a page register correction can be realized by the mounted in side frames plate cylinder is slidably mounted together with the associated drive in the plate cylinder axis direction.

Aus WO 02/076743 A1 ist ein Antrieb für ein Druckwerk bekannt, bei dem ein Einzelantriebsmotor über ein Ritzelzahnrad auf ein Zahnrad eines Formzylinders ein Eintriebsmoment einspeist. Das Zahnrad des Formzylinders ist mit einem Zahnrad eines benachbarten Übertragungszylinders formschlüssig in Eingriff (erste Radebene), so dass das Eintriebsmoment auch auf den Übertragungszylinder übertragen wird. In einer zweiten Radebene kann am Übertragungszylinder ein zweites Zahnrad fixiert sein, welches der Eintriebsmoment auf ein weiteres am Formzylinder frei drehbar angeordnetes Zahnrad überträgt. Von diesem frei drehbaren, den Formzylinderantrieb überbrückenden Zahnrad wird das Eintriebsmoment über wenigstens ein weiteres Zahnrad auf ein Farbwerk und bei Bedarf auf ein Feuchtwerk übertragen.Out WO 02/076743 A1 is a drive for a printing unit is known in which a single drive motor via a pinion gear on a gear of a forme cylinder feeds a drive torque. The gear of the forme cylinder is in positive engagement with a gear of an adjacent transfer cylinder (first gear plane), so that the input torque is also transmitted to the transfer cylinder. In a second gear plane can on the transfer cylinder, a second gear be fixed, which transmits the input torque to another on the forme cylinder freely rotatably arranged gear. From this freely rotatable, the forme cylinder drive bridging gear input torque is transmitted via at least one other gear on an inking unit and, if necessary, to a dampening unit.

[Aufgabe der Erfindung]OBJECT OF THE INVENTION

Der Erfindung liegt die Aufgabe zu Grunde einen Antrieb der eingangs genannten Art derart weiterzubilden, dass dieser wenigstens einen Direktantrieb für einen Zylinder und einen Hauptantrieb mit einem Räderzug umfasst und der Direktantrieb vom Räderzug überbrückt werden kann.The invention has the object of developing a drive of the type mentioned in such a way that it comprises at least a direct drive for a cylinder and a main drive with a gear train and the direct drive can be bridged by the gear train.

Die Aufgabe wird erfindungsgemäß durch die Ausbildungsmerkmale von Anspruch 1 gelöst. Weiterbildungen ergeben sich aus den abhängigen Ansprüchen.The object is achieved by the training features of claim 1. Further developments emerge from the dependent claims.

Ein erster Vorteil besteht darin, dass an dem Direktantrieb ein von diesem Direktantrieb entkoppeltes Zwischenrad eines geschlossenen Räderzuges aufnehmbar ist, welcher für den Transport des bogenförmigen Bedruckstoffes vorgesehen ist. Dadurch ist in Platz sparender Bauweise eine weitere Baugruppe, insbesondere ein Farbwerk und/oder ein Feuchtwerk und/oder zumindest eine Auftragswalze einer Dosiereinrichtung, der Verarbeitungsmaschine antreibbar.A first advantage is that on the direct drive decoupled from this direct drive intermediate wheel of a closed gear train can be accommodated, which is provided for the transport of the sheet-shaped printing material. As a result, a further assembly, in particular an inking unit and / or a dampening unit and / or at least one applicator roll of a metering device, of the processing machine can be driven in a space-saving design.

Ein weiterer Vorteil der Erfindung besteht darin, dass neben dem Direktantrieb eines einzelnen Zylinders - und bei Bedarf dessen Umfangsregisterkorrektur - zusätzlich eine separate Seitenregisterkorrektur mit geringem Aufwand realisierbar ist.Another advantage of the invention is that in addition to the direct drive of a single cylinder - and, if necessary, the circumferential register correction - in addition a separate side register correction can be realized with little effort.

Ein weiterer Vorteil ist darin begründet, dass mittels Direktantrieb und separater Seitenregisterkorrektur eine kompakte, Platz sparende Bauweise für einen Einzelantrieb eines Zylinders erzielbar ist. Dabei ist in bevorzugter Ausbildung kein zusätzlicher Bauraum erforderlich, da insbesondere im Inneren eines gestellfesten Antriebsmotors für den Direktantrieb - und bei Bedarf für die Umfangsregisterkorrektur - eines Zylinders zusätzlich ein separater Antrieb für mögliche Seitenregisterkorrekturen dieses Zylinders gestellfest angeordnet ist.Another advantage is due to the fact that by means of direct drive and separate side register correction a compact, space-saving design for a single drive of a cylinder is achieved. In this case, no additional space is required in a preferred embodiment, as in particular in the interior of a frame-fixed drive motor for the direct drive - and if necessary for the Umfangsregisterkorrektur - a cylinder in addition a separate drive for possible side register corrections of this cylinder is arranged fixed to the frame.

Vorteilhaft ist ferner, dass einzeln antreibbare Zylinder vorzugsweise als Plattenzylinder in Offsetdruckwerken und/oder Formzylinder in Lackierwerken von Verarbeitungsmaschinen mittels Direktantrieb, bei Bedarf mit Umfangsseitenregisterkorrektur, und einer separaten Seitenregisterkorrektur ausführbar sind.A further advantage is that individually drivable cylinders are preferably designed as a plate cylinder in offset printing and / or forme cylinder in coating units of processing machines by direct drive, if necessary with Umfangsseitenregisterkorrektur, and a separate Seitenregisterkorrektur.

[Beispiele][Examples]

Die Erfindung soll an einem Ausführungsbeispiel näher erläutert werden. Dabei zeigen schematisch:

Fig. 1
eine Bogenrotationsdruckmaschine mit einem Offsetdruck- und einem Lackwerk,
Fig. 2
einen Direktantrieb mit Seitenregisterkorrektur für einen Zylinder und einen zusätzlichen, vom Direktantrieb entkoppelten Farb- oder Lackwerksantrieb.
The invention will be explained in more detail using an exemplary embodiment. Here are shown schematically:
Fig. 1
a sheet-fed rotary printing press with an offset printing unit and a coating unit,
Fig. 2
a direct drive with side register correction for one cylinder and an additional color or coating unit drive decoupled from the direct drive.

Eine Verarbeitungsmaschine für bogenförmige Bedruckstoffe weist beispielsweise mehrere Druckwerke 1 und zumindest ein Lackwerk 2 auf. In Fig. 1 ist ein an sich bekanntes Druckwerk 1 mit einem Gummituchzylinder 8, einem Plattenzylinder 6 sowie einem dem Plattenzylinder 6 zugeordneten Farbwerk 7 gezeigt. Bei Bedarf ist dem Plattenzylinder 6 ein Feuchtwerk zugeordnet (nicht gezeigt). Dem Druckwerk 1 ist in Förderrichtung 5 des Bedruckstoffes ein Lackwerk 2 nachgeordnet, welches einen Formzylinder 10 und eine Dosiereinrichtung 11, 12 aufweist. Im vorliegenden Beispiel ist das Dosiersystem 11, 12 durch eine gerasterte Auftragwalze 11 und ein Kammerrakelsystem 12 gebildet. Dem Lackwerk 2 ist in Förderrichtung 5 ein Ausleger 3 nachgeordnet, welcher ein endlos umlaufendes Fördersystem 4 zum Transport und Ablegen der bogenförmigen Bedruckstoffe auf einem Stapel aufweist. Für den Bedruckstofftransport sind dem Gummituchzylinder im Druckwerk 1, dem Formzylinder 10 im Lackwerk 2 sowie zwischen den Druck/Lackwerken 1, 2 Transportzylinder 9 angeordnet. Im vorliegenden Beispiel sind die Transportzylinder 9 als Bogenführungszylinder ausgebildet und sind antriebsseitig mit einem durchgehenden Räderzug, d.h. geschlossenen Räderzug, verbunden, welcher mit einem Hauptantrieb gekoppelt und antreibbar ist.
Der Gummituchzylinder 8 jedes Druckwerkes 1 ist mit dem Räderzug für die Transportzylinder 9 mechanisch gekoppelt.
A processing machine for sheet-shaped substrates has, for example, a plurality of printing units 1 and at least one coating unit 2. In Fig. 1 is a per se known printing unit 1 with a blanket cylinder 8, a plate cylinder 6 and a plate cylinder 6 associated inking. 7 shown. If necessary, the plate cylinder 6 is associated with a dampening unit (not shown). The printing unit 1 is downstream of a coating unit 2 in the conveying direction 5 of the printing material, which has a forme cylinder 10 and a metering device 11, 12. In the present example, the dosing system 11, 12 is formed by a screened application roller 11 and a chamber doctor blade system 12. The coating unit 2 is downstream of a boom 3 in the conveying direction 5, which has an endless circulating conveyor system 4 for transporting and depositing the sheet-shaped substrates on a stack. For the printing substrate transport the blanket cylinder in the printing unit 1, the forme cylinder 10 in the coating unit 2 and between the printing / coating units 1, 2 transport cylinder 9 are arranged. In the present example, the transport cylinders 9 are formed as a sheet guiding cylinder and are on the drive side with a continuous gear train, ie closed gear train, connected, which is coupled to a main drive and driven.
The blanket cylinder 8 of each printing unit 1 is mechanically coupled to the gear train for the transport cylinder 9.

Jeder Plattenzylinder 6 und jeder Formzylinder 10 weisen jeweils einen eigenen, vom Räderzug der Transportzylinder 9 mechanisch entkoppelten Direktantrieb (Einzelantrieb) auf, der in vorgebbarer Weise gegenüber diesen Transportzylindern 9 und bei Bedarf gegenüber jedem Gummituchzylinder 8 antreibbar ist.Each plate cylinder 6 and each forme cylinder 10 each have their own, from the gear train of the transport cylinder 9 mechanically decoupled direct drive (single drive), which is drivable in a predeterminable manner with respect to these transport cylinders 9 and if necessary opposite each blanket cylinder 8.

Da jeder Direktantrieb von Plattenzylinder 6 und Formzylinder 10 in jedem Druck-/Lackwerk 1, 2 identisch ist, soll nachstehend ein Antrieb an einem Plattenzylinder 6 bzw. einem Formzylinder 10 näher erläutert werden. Der Direktantrieb ist endseitig an dem Platten-/Formzylinder 6, 10 lösbar angeordnet und besteht aus einem am Platten-/Formzylinder 6, 10 angeordneten Rotor 14 und einem dazu konzentrisch angeordneten, am Seitengestell 13 lösbar fixierten Stator 15.Since each direct drive of plate cylinder 6 and forme cylinder 10 in each printing / coating unit 1, 2 is identical, a drive on a plate cylinder 6 and a forme cylinder 10 will be explained in more detail below. The direct drive is detachably arranged on the end of the plate / forme cylinder 6, 10 and consists of a plate / forme cylinder 6, 10th arranged rotor 14 and a concentrically arranged on the side frame 13 releasably fixed stator 15.

Der Rotor 14 ist mittels eines Flansches 25 mit dem Platten-/Formzylinder 6, 10 gekoppelt. Auf dem Flansch 25 ist umfangsseitig (konzentrisch) eine Lagerung 29 angeordnet, welche ein frei drehbares Zwischenzahnrad 26 trägt. Das Zwischenzahnrad 26 ist von dem Direktantrieb für den Platten-/Formzylinder 6, 10 entkoppelt. Auf das Zwischenzahnrad 26 ist vom Räderzug der Transportzylinder 9 für den Bedruckstofftransport ein Eintrieb 27 einspeisbar und von diesem Zwischenzahnrad 26 ist ein Abtrieb 28 auf eine weitere Baugruppe 7; 11,12 realisierbar. Bevorzugt erfolgt der Abtrieb auf ein Farbwerk 7, alternativ ein Feuchtwerk, eines Druckwerkes 1 bzw. auf die Auftragwalze 11 einer Dosiereinrichtung 11, 12 eines Lackwerkes 2.The rotor 14 is coupled by means of a flange 25 with the plate / forme cylinder 6, 10. On the flange 25 is circumferentially (concentrically) a bearing 29 is arranged, which carries a freely rotatable intermediate gear 26. The intermediate gear 26 is decoupled from the direct drive for the plate / forme cylinder 6, 10. On the intermediate gear 26 is from the gear train of the transport cylinder 9 for the printing material feed a 27 input and fed from this intermediate gear 26 is an output 28 to another assembly 7; 11.12 realizable. Preferably, the output is effected on an inking unit 7, alternatively a dampening unit, a printing unit 1 or on the applicator roller 11 of a metering device 11, 12 of a coating unit. 2

Bevorzugt ist im Inneren des ringförmig ausgebildeten Rotors 14 ein gestellfester, mit einem Zahnradgetriebe 17, 18 gekoppelter Registermotor 16 angeordnet. Das Zahnradgetriebe 17, 18 ist mit einem Schraubengetriebe 19, 20, 21, 22 gekoppelt, welches mittels einer axial/rotativen,Kopplung 23, 24 mit dem Zylinder 6, 10 gekoppelt ist und einen Hub 30 ausführen kann.Preferably, a frame-fixed, with a gear transmission 17, 18 coupled register motor 16 is arranged in the interior of the annular rotor 14. The gear transmission 17, 18 is coupled to a helical gear 19, 20, 21, 22, which is coupled by means of an axial / rotary coupling 23, 24 with the cylinder 6, 10 and can perform a stroke 30.

Vorzugsweise ist der Registermotor 16 mit der Halterung 20 und dem Stator 15 lösbar am Seitengestell 13 fixiert.Preferably, the register motor 16 with the holder 20 and the stator 15 is releasably fixed to the side frame 13.

[Bezugszeichenliste][REFERENCE LIST]

11
- Druckwerk- Printing unit
22
- Lackwerk- coating plant
33
- Ausleger- boom
44
- Fördersystem- conveyor system
55
- Förderrichtung- Transport direction
66
- Plattenzylinder- plate cylinder
77
- Farbwerk- inking unit
88th
- Gummituchzylinder- blanket cylinder
99
- Transportzylinder- Transport cylinder
1010
- Formzylinder- Forme cylinder
1111
- Auftragwalze- applicator roller
1212
- Kammerrakel- Chamber doctor
1313
- Seitengestell- side frame
1414
- Rotor- Rotor
1515
- Stator- stator
1616
- Registermotor- Register motor
1717
- Ritzelzahnrad- Pinion gear
1818
- Zahnrad- gear
1919
- Registerwelle- register wave
2020
- Halterung- Bracket
2121
- Schraubenspindel- Screw spindle
2222
- Führung (axial)- guidance (axial)
2323
- Axiallagerung- axial bearing
2424
- Scheibe- Disc
2525
- Flansch- flange
2626
- Zwischenzahnrad- intermediate gear
2727
- Eintrieb- drive
2828
- Abtrieb- Downforce
2929
- Lagerung- Storage
3030
- Hub- Hub

Claims (5)

  1. A drive for a processing machine with at least one printing and/or inking couple, wherein at least one cylinder mounted in side frames is coupled to a direct drive, is mechanically decoupled from a main drive acting on the gear train of the cylinders/drums for the substrate transport and in a predeterminable manner can be driven relative to these cylinders/drums, characterized in that the direct drive comprises a rotor (14) releasably arranged at the end of the cylinder (6, 10) and a stata (15) concentrically arranged thereto and releasably fixed on the side frame (13), in that the rotor (14) is coupled to the cylinder (6, 10) by means of a flange (25), in that on the flange (25) on the circumference a bearing (29) which carries a freely rotatable intermediate gear (26), and in that an input drive (27) can be input on the intermediate gear (26) from the gear train of the cylinders/drums for the substrate transport (9) and from the intermediate gear (26) an output drive (28) to a further group (7; 11, 12) can be realised.
  2. The drive according to at least Claim 1, characterized in that in the interior of the ringshaped rotor (14) a frame-fixed register motor (16) coupled to a gearing (17, 18) is arranged, and in that the gearing (17, 18) is coupled to a screw drive (19, 20, 21, 22) which is coupled to the cylinder (6, 10) by means of an axial/rotative coupling (23, 24).
  3. The drive according to at least Claim 1, characterized in that the further group (7; 11, 12) is an inking couple (7) or a form roller (11) of a metering device (11, 12).
  4. The drive according to Claim 1, characterized in that the cylinder (6, 10) is a plate cylinder (6).
  5. The drive according to Claim 1, characterized in that the cylinder (6, 10) is a form cylinder (10).
EP08004353A 2004-04-16 2005-04-08 Drive for a processing machine Active EP1935644B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102004019136A DE102004019136A1 (en) 2004-04-16 2004-04-16 Direct drive for a cylinder of a processing machine
EP05739518A EP1742795B1 (en) 2004-04-16 2005-04-08 Direct drive for a cylinder of a converting machine

Related Parent Applications (2)

Application Number Title Priority Date Filing Date
EP05739518A Division EP1742795B1 (en) 2004-04-16 2005-04-08 Direct drive for a cylinder of a converting machine
EP05739518.8 Division 2005-04-08

Publications (2)

Publication Number Publication Date
EP1935644A1 EP1935644A1 (en) 2008-06-25
EP1935644B1 true EP1935644B1 (en) 2011-07-20

Family

ID=34966689

Family Applications (2)

Application Number Title Priority Date Filing Date
EP08004353A Active EP1935644B1 (en) 2004-04-16 2005-04-08 Drive for a processing machine
EP05739518A Active EP1742795B1 (en) 2004-04-16 2005-04-08 Direct drive for a cylinder of a converting machine

Family Applications After (1)

Application Number Title Priority Date Filing Date
EP05739518A Active EP1742795B1 (en) 2004-04-16 2005-04-08 Direct drive for a cylinder of a converting machine

Country Status (8)

Country Link
US (1) US7709986B2 (en)
EP (2) EP1935644B1 (en)
JP (2) JP4901722B2 (en)
CN (1) CN100564034C (en)
AT (2) ATE516955T1 (en)
DE (2) DE102004019136A1 (en)
DK (1) DK1742795T3 (en)
WO (1) WO2005100022A2 (en)

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Publication number Priority date Publication date Assignee Title
DE102007058282B4 (en) 2007-12-04 2015-01-22 manroland sheetfed GmbH Method and drive for driving a processing machine for sheet material
DE102008042939B4 (en) 2008-10-17 2021-01-21 Koenig & Bauer Ag Direct drive with axial position adjustment
DE102009028208B4 (en) * 2009-08-04 2017-04-13 Koenig & Bauer Ag Coupling device of a cylinder of a printing machine and a method for coupling a cylinder of a printing press
DE102011118904A1 (en) 2010-12-20 2012-06-21 Heidelberger Druckmaschinen Ag Production plant with single drive
DE102016205342B4 (en) 2016-03-31 2019-06-13 Koenig & Bauer Ag Method for regulating a torque of a forme cylinder drive

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ATE413275T1 (en) 2008-11-15
WO2005100022A2 (en) 2005-10-27
CN1942315A (en) 2007-04-04
EP1742795B1 (en) 2008-11-05
JP5080669B2 (en) 2012-11-21
DE102004019136A1 (en) 2005-11-10
CN100564034C (en) 2009-12-02
US7709986B2 (en) 2010-05-04
WO2005100022A3 (en) 2006-02-23
EP1935644A1 (en) 2008-06-25
US20080041252A1 (en) 2008-02-21
JP4901722B2 (en) 2012-03-21
EP1742795A2 (en) 2007-01-17
DE502005005894D1 (en) 2008-12-18
DK1742795T3 (en) 2009-03-16
JP2011201320A (en) 2011-10-13
JP2007532350A (en) 2007-11-15
ATE516955T1 (en) 2011-08-15

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