EP1205298A2 - Device for impression throw-on/off without slur - Google Patents

Device for impression throw-on/off without slur Download PDF

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Publication number
EP1205298A2
EP1205298A2 EP01122530A EP01122530A EP1205298A2 EP 1205298 A2 EP1205298 A2 EP 1205298A2 EP 01122530 A EP01122530 A EP 01122530A EP 01122530 A EP01122530 A EP 01122530A EP 1205298 A2 EP1205298 A2 EP 1205298A2
Authority
EP
European Patent Office
Prior art keywords
cylinder
rubber cylinder
rubber
clutch
impression
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.)
Ceased
Application number
EP01122530A
Other languages
German (de)
French (fr)
Other versions
EP1205298A3 (en
Inventor
Arndt Jentzsch
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.)
Koenig and Bauer AG
Original Assignee
Koenig and Bauer AG
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Publication of EP1205298A2 publication Critical patent/EP1205298A2/en
Publication of EP1205298A3 publication Critical patent/EP1205298A3/en
Ceased legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • B41F13/26Arrangement of cylinder bearings
    • B41F13/28Bearings mounted eccentrically of the cylinder axis
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • B41F13/24Cylinder-tripping devices; Cylinder-impression adjustments
    • B41F13/34Cylinder lifting or adjusting devices
    • B41F13/40Cylinder lifting or adjusting devices fluid-pressure operated

Definitions

  • the invention relates to a device for duplication-free pressure switching, consisting of a Impression cylinder, to which a rubber cylinder is assigned to transfer the print image, the rubber cylinder for changing the center distance to the impression cylinder in one rotatable eccentric bearing is arranged and via a gear train with the impression cylinder connected is.
  • the rubber cylinder is used to turn the plate and impression cylinders on and off stored on both sides in eccentric bushings.
  • These eccentric bushings are through a toggle mechanism pivotable that is supported on an abutment.
  • the toggle mechanism actuating means actuated by the application of pressure medium.
  • This means of control exists consisting of two parallel, double-acting working cylinders that are fixed to the frame, whose piston rods are articulated to a coupling.
  • the paddock is over one Hinge pin connected to a toggle lever gear.
  • the working cylinders are for pressure adjustment one after the other and for printing shutdown both one after the other and pressurized at the same time.
  • the hinge pin is used to change the pressure provided between the blanket and the impression cylinder - i.e. to generate the printing pressure specific to the substrate - pivotable via a spindle nut in cooperation with an adjusting spindle.
  • the adjusting spindle is actuated from the outside by a handwheel twisted. Turning the adjusting spindle causes the eccentric bushes to turn what the contact force of the rubber cylinder to the impression cylinder changed.
  • the object of the invention is to provide a device for duplication-free pressure switching develop by which the backlash is eliminated.
  • the invention has the advantage that the tooth flanks and so that an exact transmission of the grid points can be guaranteed. In order to duplication can be avoided for this reason.
  • an impression cylinder 1 is arranged on which a rubber cylinder 2 is employed. This is in contact with a plate cylinder 3.
  • the rubber cylinder 2 is mounted eccentrically. It can be seen that the rubber cylinder axis 23 is mounted eccentrically to the rubber cylinder bearing 24.
  • the eccentric 25 is formed by the spatial distance of the rubber cylinder axis 23 from the rubber cylinder bearing 24, is firmly connected to an adjustment segment 41, which is part of an adjustment mechanism 4.
  • the adjustment segment 41 has a toothing 45 on its outer contour. This toothing 45 engages in the toothing of a gear pinion 42, which in turn has a Rack 44 combs.
  • the contact gear pinion 42 / rack 44 is by a roller 43 maintained.
  • the rack 44 is articulated to the piston rod 51 of an adjusting cylinder 5.
  • the adjusting cylinder 5 is articulated in a frame point 53 at its articulation point.
  • FIG. 2 The storage of the rubber cylinder 2 and in particular the connection between the drive of the rubber cylinder and the rubber cylinder axis 23 is shown in FIG. 2. It's closed recognize that the interacting with the impression cylinder 1 and plate cylinder 3 Rubber cylinder 2 is mounted with its rubber cylinder axis 23 in the housing wall 6. The takes place via the eccentric bushing 25, which is assigned to the rubber cylinder axis 23 via bearings 61 is.
  • the rubber cylinder axis 23 is fixedly connected to an output member 83, which is part of a Oldham clutch 8 is.
  • the Oldham coupling 8 also consists of a drive member 81, which is assigned to the output member 83 via an Oldham ring 82.
  • the drive member 81 is non-rotatably connected to a drive shaft 27, which in turn is rotatably connected to a rubber cylinder drive wheel 26 is connected.
  • the rubber cylinder drive wheel 26 meshes with a plate cylinder drive wheel 36.
  • rubber cylinder drive wheel 26 and plate cylinder drive wheel 36 are part of a drive wheel train starting from the plate cylinder 3.
  • the Oldham clutch is enclosed in a clutch housing 7.
  • bearings 61 are arranged for receiving the drive shaft 27.
  • an Oldham coupling 8 has been proposed. This belongs to the cross disc couplings. It is also possible to use other suitable axial compensating couplings use.
  • the eccentric bushing is used to adjust the position of the rubber cylinder 2 to adjust the pressure 25 rotated by the device shown in Figure 1.
  • the adjusting cylinder 5 actuated and thus changed the position of the piston rod 51 with the rack 44. This leads to the rotation of the adjustment segment 41 via the gear pinion 42 is due to the eccentric mounting of the rubber cylinder axis 23, this from the Position A, position 23a (no contact with the plate cylinder 3 and impression cylinder 1) Position B, position 23b (contact with the plate cylinder 3). Turning further to the position C, layer 23c, the rubber cylinder 2 comes to rest against the plate cylinder 3 and Impression cylinder 1.

Abstract

An axial compensation coupling is provided between the fixed position drive wheel (26) for the rubber cylinder (2) and the variable position shaft (23) for the rubber cylinder. A counter-press cylinder (1) cooperating with a rubber cylinder used for transferring the printed image. The rubber cylinder is mounted in an excentral rotary bearing (25) in order to vary the axial distance between it and the counter-press cylinder. The rubber cylinder is connected to the counter-press cylinder via a wheel tensile mechanism (26, 36).

Description

Die Erfindung betrifft eine Vorrichtung zur dublierfreien Druckschaltung, bestehend aus einem Gegendruckzylinder, dem zur Übertragung des Druckbildes ein Gummizylinder zugeordnet ist, wobei der Gummizylinder zur Veränderung des Achsabstandes zum Gegendruckzylinder in einem verdrehbaren Exzenterlager angeordnet ist und über einen Räderzug mit dem Gegendruckzylinder verbunden ist.The invention relates to a device for duplication-free pressure switching, consisting of a Impression cylinder, to which a rubber cylinder is assigned to transfer the print image, the rubber cylinder for changing the center distance to the impression cylinder in one rotatable eccentric bearing is arranged and via a gear train with the impression cylinder connected is.

Aus der DE 40 13 075 C1 wird eine Lösung zum Druckanstellen und zum Druckabstellen eines Gummizylinders im Druckwerk einer Bogenoffsetdruckmaschine beschrieben.From DE 40 13 075 C1 a solution for turning on and turning off a Rubber cylinders described in the printing unit of a sheetfed offset printing machine.

Bei dieser Einrichtung ist der Gummizylinder zur An- und Abstellung an Platten- und Druckzylinder beidseitig in Exzenterbuchsen gelagert. Diese Exzenterbuchsen sind durch ein Kniehebelgetriebe verschwenkbar, dass sich an einem Widerlager abstützt. Am Kniehebelgetriebe ist ein durch Druckmittelbeaufschlagung betätigbares Stellmittel angelenkt. Dieses Stellmittel besteht aus zwei parallel angeordneten, sich gestellfest abstützenden doppeltwirkenden Arbeitszylindern, deren Kolbenstangen gelenkig mit einer Koppel verbunden sind. Die Koppel ist über einen Gelenkbolzen mit einem Kniehebelgetriebe verbunden. Die Arbeitszylinder sind zur Druckanstellung nacheinander einzeln und zur Druckabstellung sowohl einzeln nacheinander als auch gleichzeitig mit Druckmittel beaufschlagbar.With this device, the rubber cylinder is used to turn the plate and impression cylinders on and off stored on both sides in eccentric bushings. These eccentric bushings are through a toggle mechanism pivotable that is supported on an abutment. There is a on the toggle mechanism actuating means actuated by the application of pressure medium. This means of control exists consisting of two parallel, double-acting working cylinders that are fixed to the frame, whose piston rods are articulated to a coupling. The paddock is over one Hinge pin connected to a toggle lever gear. The working cylinders are for pressure adjustment one after the other and for printing shutdown both one after the other and pressurized at the same time.

Der Gelenkbolzen ist zur Veränderung der Druckbeistellung zwischen Gummituch und Gegendruckzylinder - also zum Erzeugen der für den Bedruckstoff spezifischen Druckpressung - über eine Spindelmutter im Zusammenwirken mit einer Stellspindel verschwenkbar.The hinge pin is used to change the pressure provided between the blanket and the impression cylinder - i.e. to generate the printing pressure specific to the substrate - pivotable via a spindle nut in cooperation with an adjusting spindle.

Das geschieht in der Druck-An-Stellung. Dabei wird die Stellspindel durch ein Handrad von außen verdreht. Das Verdrehen der Stellspindel bewirkt ein Verdrehen der Exzenterbuchsen, was die Anstellkraft des Gummizylinders zum Gegendruckzylinder verändert.This happens in the pressure on position. The adjusting spindle is actuated from the outside by a handwheel twisted. Turning the adjusting spindle causes the eccentric bushes to turn what the contact force of the rubber cylinder to the impression cylinder changed.

Bei der oben beschriebenen Einrichtung ist es unvermeidlich, dass die Lage der Zylinderachsen zueinander verändert wird. Das ist sowohl beim Anstellen des Gummizylinders an den Plattenzylinder und an den Gegendruckzylinder als auch bei der Änderung der Druckbeistellung der Fall. Da aber die Antriebsräder der Zylinder durch einen Räderzug miteinander verbunden sind, verändern sich die Zahneingriffsverhältnisse. Das heißt, ein geometrisch exakter Eingriff kann konstruktiv nur bei einer der möglichen Bedruckstoffstärken gesichert werden. Bei stärkerem Bedruckstoff ist die Entfernung der Achse des Gummizylinders von der Achse des Gegendruckzylinders größer, so dass sich beim Zahneingriff das Flankenspiel der Zahnräder vergrößert. Bei dünneren Bedruckstoff ist diese Entfernung kleiner. Mit dieser Vergrößerung bzw. Verkleinerung ergibt sich eine nicht vermeidbare Änderung des Zahnflankenspiels, so dass damit die Rasterpunkte nicht mehr winkelgenau übertragen werden könnenWith the device described above, it is inevitable that the position of the cylinder axes to each other is changed. This is both when placing the rubber cylinder on the plate cylinder and to the impression cylinder as well as when changing the pressure supply Case. But since the drive wheels of the cylinders are connected to each other by a gear train the meshing conditions change. That means a geometrically exact intervention can only be secured with one of the possible substrate thicknesses. With stronger The substrate is the distance between the axis of the blanket cylinder and the axis of the impression cylinder larger, so that the backlash of the gears when meshing increased. This distance is smaller for thinner substrates. With this enlargement or reduction results in an unavoidable change in the backlash so that so that the halftone dots can no longer be transferred with precise angles

Die Aufgabe der Erfindung besteht darin, eine Einrichtung zur dublierfreien Druckschaltung zu entwickeln, durch die das Zahnflankenspiel eliminiert wird.The object of the invention is to provide a device for duplication-free pressure switching develop by which the backlash is eliminated.

Erfindungsgemäß wird die Aufgabe durch die Merkmale des 1. Anspruchs gelöst.According to the invention, the object is achieved by the features of claim 1.

Die Erfindung hat den Vorteil, dass nunmehr jederzeit eine exakte Anlage der Zahnflanken und damit eine winkelgenaue Übertragung der Rasterpunkte gewährleistet werden kann. Damit kann das Dublieren aus diesem Grund vermieden werden.The invention has the advantage that the tooth flanks and so that an exact transmission of the grid points can be guaranteed. In order to duplication can be avoided for this reason.

Die Erfindung soll an einem Ausführungsbeispiel näher erläutert werden. Die dazugehörigen Zeichnungen haben folgende Bedeutung:

Figur 1
Schematische Darstellung der Stellungen des Gummizylinders bei der Druckanstellung
Figur 2
Darstellung der Kupplung zwischen der Achse des Gummizylinders und des Gummizylinder-Antriebsrades
The invention will be explained in more detail using an exemplary embodiment. The associated drawings have the following meaning:
Figure 1
Schematic representation of the positions of the blanket cylinder during pressure adjustment
Figure 2
Representation of the coupling between the axis of the rubber cylinder and the rubber cylinder drive wheel

Wie aus der Figur 1 ersichtlich, ist ein Gegendruckzylinder 1 angeordnet, an dem ein Gummizylinder 2 angestellt ist. Dieser hat Kontakt mit einem Plattenzylinder 3.As can be seen from FIG. 1, an impression cylinder 1 is arranged on which a rubber cylinder 2 is employed. This is in contact with a plate cylinder 3.

Der Gummizylinder 2 ist exzentrisch gelagert. Es ist zu erkennen, dass die Gummizylinder-Achse 23 exzentrisch zum Gummizylinder-Lager 24 gelagert ist. Der Exzenter 25, gebildet durch die räumliche Entfernung der Gummizylinder-Achse 23 von dem Gummizylinder-Lager 24, ist fest mit einem Verstellsegment 41, das Teil eines Verstellmechanismus 4 ist, verbunden. Das Verstellsegment 41 trägt an seiner Außenkontur eine Verzahnung 45. Diese Verzahnung 45 greift in die Verzahnung eines Zahnradritzels 42 ein, das seinerseits mit einer Zahnstange 44 kämmt. Der Kontakt Zahnradritzel 42/Zahnstange 44 wird durch eine Rolle 43 aufrecht erhalten. The rubber cylinder 2 is mounted eccentrically. It can be seen that the rubber cylinder axis 23 is mounted eccentrically to the rubber cylinder bearing 24. The eccentric 25 is formed by the spatial distance of the rubber cylinder axis 23 from the rubber cylinder bearing 24, is firmly connected to an adjustment segment 41, which is part of an adjustment mechanism 4. The adjustment segment 41 has a toothing 45 on its outer contour. This toothing 45 engages in the toothing of a gear pinion 42, which in turn has a Rack 44 combs. The contact gear pinion 42 / rack 44 is by a roller 43 maintained.

Die Zahnstange 44 ist gelenkig mit der Kolbenstange 51 eines Verstellzylinders 5 verbunden. Der Verstellzylinder 5 ist an seinem Anlenkpunkt gelenkig in einem Gestellpunkt 53 gelagert.The rack 44 is articulated to the piston rod 51 of an adjusting cylinder 5. The adjusting cylinder 5 is articulated in a frame point 53 at its articulation point.

Die Lagerung des Gummizylinders 2 und insbesondere die Verbindung zwischen dem Antrieb des Gummizylinders und der Gummizylinder-Achse 23 ist in der Figur 2 dargestellt. Es ist zu erkennen, dass der mit dem Gegendruckzylinder 1 und Plattenzylinder 3 zusammenwirkende Gummizylinder 2 mit seiner Gummizylinder-Achse 23 in der Gehäusewand 6 gelagert ist. Das erfolgt über die Exzenterbuchse 25, die über Lager 61 der Gummizylinder-Achse 23 zugeordnet ist. Die Gummizylinder-Achse 23 ist mit einem Abtriebsglied 83 fest verbunden, die Teil einer Oldham-Kupplung 8 ist. Die Oldham-Kupplung 8 besteht weiterhin aus einem Antriebsglied 81, das über einen Oldhamring 82 dem Abtriebsglied 83 zugeordnet ist. Das Antriebsglied 81 ist drehfest mit einer Antriebswelle 27 verbunden, die wiederum drehfest mit einem Gummizylinder-Antriebsrad 26 verbunden ist. Das Gummizylinder-Antriebsrad 26 kämmt mit einem Plattenzylinder-Antriebsrad 36. Gummizylinder-Antriebsrad 26 und Plattenzylinder-Antriebsrad 36 sind Teil eines vom Plattenzylinder 3 ausgehenden Antriebsräderzuges.The storage of the rubber cylinder 2 and in particular the connection between the drive of the rubber cylinder and the rubber cylinder axis 23 is shown in FIG. 2. It's closed recognize that the interacting with the impression cylinder 1 and plate cylinder 3 Rubber cylinder 2 is mounted with its rubber cylinder axis 23 in the housing wall 6. The takes place via the eccentric bushing 25, which is assigned to the rubber cylinder axis 23 via bearings 61 is. The rubber cylinder axis 23 is fixedly connected to an output member 83, which is part of a Oldham clutch 8 is. The Oldham coupling 8 also consists of a drive member 81, which is assigned to the output member 83 via an Oldham ring 82. The drive member 81 is non-rotatably connected to a drive shaft 27, which in turn is rotatably connected to a rubber cylinder drive wheel 26 is connected. The rubber cylinder drive wheel 26 meshes with a plate cylinder drive wheel 36. rubber cylinder drive wheel 26 and plate cylinder drive wheel 36 are part of a drive wheel train starting from the plate cylinder 3.

Die Oldham-Kupplung ist in ein Kupplungsgehäuse 7 eingeschlossen. Im Kupplungsgehäuse 7 sind Lager 61 zur Aufnahme der Antriebswelle 27 angeordnet.The Oldham clutch is enclosed in a clutch housing 7. In the clutch housing 7 bearings 61 are arranged for receiving the drive shaft 27.

Im vorliegenden Ausführungsbeispiel wurde eine Oldham-Kupplung 8 vorgeschlagen. Diese gehört zu den Kreuzscheiben-Kupplungen. Es ist auch möglich, andere geeignete Axial-Ausgleichskupplungen einzusetzen.In the present exemplary embodiment, an Oldham coupling 8 has been proposed. This belongs to the cross disc couplings. It is also possible to use other suitable axial compensating couplings use.

Zur Wirkungsweise der erfindungsgemäßen Einrichtung:Operation of the device according to the invention:

Zum Verstellen der Lage des Gummizylinders 2 zum Einstellen der Druckpressung wird die Exzenterbuchse 25 durch die in der Figur 1 dargestellte Einrichtung verdreht. Dabei wird der Verstellzylinder 5 betätigt und damit die Lage der Kolbenstange 51 mit der Zahnstange 44 verändert. Das führt zum Verdrehen des Verstellsegmentes 41 über das Zahnradritzel 42. Damit wird, bedingt durch die exzentrische Lagerung der Gummizylinder-Achse 23, diese aus der Stellung A, Lage 23a (keine Anlage an den Plattenzylinder 3 und Gegendruckzylinder 1) zur Stellung B, Lage 23b (Anlage an den Plattenzylinder 3) gebracht. Im Weiterdrehen zur Stellung C, Lage 23c gelangt der Gummizylinder 2 zur Anlage an den Plattenzylinder 3 und an den Gegendruckzylinder 1. The eccentric bushing is used to adjust the position of the rubber cylinder 2 to adjust the pressure 25 rotated by the device shown in Figure 1. The adjusting cylinder 5 actuated and thus changed the position of the piston rod 51 with the rack 44. This leads to the rotation of the adjustment segment 41 via the gear pinion 42 is due to the eccentric mounting of the rubber cylinder axis 23, this from the Position A, position 23a (no contact with the plate cylinder 3 and impression cylinder 1) Position B, position 23b (contact with the plate cylinder 3). Turning further to the position C, layer 23c, the rubber cylinder 2 comes to rest against the plate cylinder 3 and Impression cylinder 1.

Damit ändert sich die Lage der Gummizylinder-Achse 23 zur Achse der Antriebswelle 27 (siehe Figur 2). Durch die Oldham-Kupplung 8 wird dieser axiale Versatz ausgeglichen. Das geschieht dadurch, dass der Oldhamring 82 der Oldham-Kupplung 8 um 90° versetzte Naben 821, 822 aufweist, die mit Nuten im Abtriebsglied 83 und Antriebsglied 81 korrespondieren. Dadurch kann
die Drehbewegung winkelgenau übertragen werden und die Lage der Achse der Antriebswelle 27 bleibt unverändert.
The position of the rubber cylinder axis 23 relative to the axis of the drive shaft 27 thus changes (see FIG. 2). This axial offset is compensated for by the Oldham coupling 8. This takes place in that the Oldham ring 82 of the Oldham clutch 8 has hubs 821, 822 which are offset by 90 ° and correspond to grooves in the output member 83 and drive member 81. This can
the rotational movement is transmitted at an angle and the position of the axis of the drive shaft 27 remains unchanged.

Aufstellung der verwendeten BezugszeichenList of the reference symbols used

11
GegendruckzylinderImpression cylinder
22
Gummizylinderrubber cylinder
2323
Gummizylinder-AchseRubber cylinder axis
2424
Gummizylinder-LagerRubber cylinder bearing
2525
Exzenter, ExzenterbuchseEccentric, eccentric bushing
2626
Gummizylinder-AntriebsradBlanket cylinder drive wheel
2727
. Antriebswelle, drive shaft
33
Plattenzylinderplate cylinder
3636
Plattenzylinder-AntriebsradPlate cylinder drive gear
44
Verstellmechanismusadjustment
4141
Verstellsegmentadjusting segment
4242
Zahnradritzelpinion gear
4343
Rollerole
4444
Zahnstangerack
4545
Verzahnunggearing
55
Verstellzylinderadjusting cylinder
5151
Kolbenstangepiston rod
5353
Gestellpunktstand point
66
Gehäusewandhousing wall
6161
Lagercamp
77
Kupplungsgehäuseclutch housing
7171
Lagercamp
88th
Oldham-KupplungOldham coupling
8181
Antriebsglieddrive member
8282
OldhamringOldham
82 182 1
Nabehub
82 282 2
Nabehub
8383
Abtriebsglieddriven member

Claims (3)

Vorrichtung zur dublierfreien Druckschaltung, bestehend aus einem Gegendruckzylinder (1), dem zur Übertragung des Druckbildes ein Gummizylinder (2) zugeordnet ist, wobei der Gummizylinder (2) zur Veränderung des Achsabstandes zum Gegendruckzylinder (1) in einem verdrehbaren Exzenterlager (25) angeordnet ist und über einen Räderzug (36; 26) mit dem Gegendruckzylinder (1) verbunden ist,
dadurch gekennzeichnet, dass
eine Axial-Ausgleichskupplung zwischen dem ortsfesten Antriebsrad (26) des Gummizylinders (2) und der lagerveränderlichen Welle (23) des Gummizylinders (2) angeordnet ist.
Device for duplication-free pressure switching, consisting of an impression cylinder (1) to which a rubber cylinder (2) is assigned to transfer the print image, the rubber cylinder (2) being arranged in a rotatable eccentric bearing (25) to change the center distance from the impression cylinder (1) and is connected to the impression cylinder (1) via a gear train (36; 26),
characterized in that
an axial compensating clutch is arranged between the fixed drive wheel (26) of the rubber cylinder (2) and the variable shaft (23) of the rubber cylinder (2).
Vorrichtung zur dublierfreien Druckschaltung nach Anspruch 1, dadurch gekennzeichnet, dass als Axial-Ausgleichskupplung eine Kreuzscheiben-Kupplung vorgesehen ist.Device for duplication-free pressure switching according to claim 1, characterized in that a cross disc clutch is provided as an axial compensating clutch. Vorrichtung zur dublierfreien Druckschaltung nach Anspruch 2, dadurch gekennzeichnet, dass die Kreuzscheiben-Kupplung als Oldham-Kupplung (8) ausgeführt ist.Device for duplication-free pressure switching according to claim 2, characterized in that the cross-disk clutch is designed as an Oldham clutch (8).
EP01122530A 2000-11-08 2001-09-24 Device for impression throw-on/off without slur Ceased EP1205298A3 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10055278 2000-11-08
DE2000155278 DE10055278A1 (en) 2000-11-08 2000-11-08 Device for duplication-free pressure switching

Publications (2)

Publication Number Publication Date
EP1205298A2 true EP1205298A2 (en) 2002-05-15
EP1205298A3 EP1205298A3 (en) 2003-02-26

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EP01122530A Ceased EP1205298A3 (en) 2000-11-08 2001-09-24 Device for impression throw-on/off without slur

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Country Link
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DE (1) DE10055278A1 (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107675537A (en) * 2017-10-09 2018-02-09 济南大学 A kind of band based on displacement driving disturbs the pulping equipment of formula pulping
EP3459738A1 (en) * 2017-09-22 2019-03-27 Gallus Druckmaschinen GmbH Device for processing a web or sheet shaped substrate

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP7122158B2 (en) 2018-05-23 2022-08-19 リョービMhiグラフィックテクノロジー株式会社 Printer

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2948215A (en) * 1958-10-23 1960-08-09 Miehle Goss Dexter Inc Constant backlash gearing for a printing couple
US4362098A (en) * 1980-08-04 1982-12-07 Faustel, Inc. Rotary printing press using flexible plates
DE3232171A1 (en) * 1981-12-31 1983-07-07 VEB Kombinat Polygraph "Werner Lamberz" Leipzig, DDR 7050 Leipzig Device for the engaging and tripping of impression cylinders
DE4013075C1 (en) * 1990-04-25 1991-06-20 Man Roland Druckmaschinen Ag, 6050 Offenbach, De

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2948215A (en) * 1958-10-23 1960-08-09 Miehle Goss Dexter Inc Constant backlash gearing for a printing couple
US4362098A (en) * 1980-08-04 1982-12-07 Faustel, Inc. Rotary printing press using flexible plates
DE3232171A1 (en) * 1981-12-31 1983-07-07 VEB Kombinat Polygraph "Werner Lamberz" Leipzig, DDR 7050 Leipzig Device for the engaging and tripping of impression cylinders
DE4013075C1 (en) * 1990-04-25 1991-06-20 Man Roland Druckmaschinen Ag, 6050 Offenbach, De

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3459738A1 (en) * 2017-09-22 2019-03-27 Gallus Druckmaschinen GmbH Device for processing a web or sheet shaped substrate
CN107675537A (en) * 2017-10-09 2018-02-09 济南大学 A kind of band based on displacement driving disturbs the pulping equipment of formula pulping

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Publication number Publication date
EP1205298A3 (en) 2003-02-26
DE10055278A1 (en) 2002-05-23

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