EP1132202B1 - Machine d'impression offset - Google Patents

Machine d'impression offset Download PDF

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Publication number
EP1132202B1
EP1132202B1 EP01113489A EP01113489A EP1132202B1 EP 1132202 B1 EP1132202 B1 EP 1132202B1 EP 01113489 A EP01113489 A EP 01113489A EP 01113489 A EP01113489 A EP 01113489A EP 1132202 B1 EP1132202 B1 EP 1132202B1
Authority
EP
European Patent Office
Prior art keywords
cylinder
electric motor
printing
cylinders
printing machine
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.)
Expired - Lifetime
Application number
EP01113489A
Other languages
German (de)
English (en)
Other versions
EP1132202A1 (fr
Inventor
Josef Hajek
Johann Königer
Michael Schramm
Peter Gröbner
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.)
Manroland AG
Original Assignee
MAN Roland Druckmaschinen 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
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Application filed by MAN Roland Druckmaschinen AG filed Critical MAN Roland Druckmaschinen AG
Priority claimed from EP01101495A external-priority patent/EP1110722B1/fr
Publication of EP1132202A1 publication Critical patent/EP1132202A1/fr
Application granted granted Critical
Publication of EP1132202B1 publication Critical patent/EP1132202B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F31/00Inking arrangements or devices
    • B41F31/004Driving means for ink rollers
    • 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
    • B41F13/24Cylinder-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
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2213/00Arrangements for actuating or driving printing presses; Auxiliary devices or processes
    • B41P2213/70Driving devices associated with particular installations or situations
    • B41P2213/73Driving devices for multicolour presses
    • B41P2213/734Driving devices for multicolour presses each printing unit being driven by its own electric motor, i.e. electric shaft

Definitions

  • the invention relates to drives and drive methods for cylinders and Functional groups of offset printing machines.
  • DE 41 38 479 A1 shows the drive of a bearing mounted in eccentric bushes Printing unit cylinder by means of a separate electric motor.
  • the stator of the Electric motor is stored in a further eccentric bushing, which has a Driver with the eccentric bushing receiving a cylinder pin connected is.
  • Eccentric bushing the eccentric bushing of the stator is rotated and turned in synchronism constant distance between rotor and stator of the electric motor realized.
  • the object of the invention is a cylinder in an offset printing machine and drive functional groups with little technical effort Eccentric adjustments of the cylinder in the stator of the driving electric motor to carry along advantageously.
  • the printing unit contains two of one each Forme cylinder 1.1, 1.2 and a transfer cylinder 2.1, 2.2 Formed printing units 3, 4.
  • Each form and transfer cylinder 1.1, 1.2, 2.1, 2.2 is mounted with its pegs in side walls 5, 6 (Fig. 5).
  • On the operator side wall 5 is a angle-controlled electric motor 7 arranged, the forme cylinder 1.1 drives.
  • the pins stored in the side wall 6 each have a spur gear 8 to 11 with which the cylinders 1.1, 1.2, 2.1, 2.2 with the adjacent cylinder in drive connection stand.
  • the electric motor 7 (following in Fig. 1 symbolically represented by hatching) all four cylinders driven.
  • the printing unit shown in Fig. 1 is about Printing unit 12 with the forme cylinder 1.3 and the transfer cylinder 2.3 added.
  • the printing unit 12 is attached to the printing unit 4, whereby, not shown, the drive-side pins also Wear spur gears and the spur gear of the transfer cylinder 2.3 is in engagement with the spur gear 11 of the transfer cylinder 2.2.
  • spur gears 8 to 11 are all cylinders with the Forme cylinder 1.1 in drive connection and are from the electric motor 7 driven.
  • Fig. 3 are to the printing units 3, 4 according to FIG. 1 cooperating printing units 13, 14 with the forme cylinders 1.4, 1.5 and the transfer cylinders 2.4, 2.5 were added. Not each pin on the drive side of cylinders 1.4 is shown, 1.5, 2.4, 2.5 a spur gear, with which the cylinders in one another Stand by. Furthermore, the spur gear 11 of the Transfer cylinder 2.2. Via a chain 15 with the spur gear of the transfer cylinder 2.5 in drive connection, so that all cylinders are driven by the electric motor 7.
  • FIG Satellite cylinder 16 is still one more than in FIG Satellite cylinder 16 added. This carries on the drive side Pin, not shown, a spur gear. On the latter as well as on that The spur gear of the forme cylinder 1.4 drives one of the spur gear 8 Forme cylinder 1.1 outgoing chain 17, so that all the cylinders Printing unit are driven by the electric motor 7.
  • FIGS. 1, 2 and 5 are recurring spatial arrangements of cylinders and printing units from the Figures 1 to 5 described for the sake of simplicity Item numbers reused, regardless of any structural Differences.
  • Figures 6, 7 and 10 show bridges, i. H. parts of printing units which correspond to those shown in FIGS. 1, 2 and 5 described printing units match and therefore not are explained again in more detail.
  • Fig. 9 the situation is similar to Fig. 8. It will only from the forme cylinder 1.1 a satellite cylinder 16 by means of Gear chain 18 driven. Same or different types Printing unit bridges of Figures 6 to 9 can be different Printing units can be combined. You can also use the following drive cases described above are used.
  • the double printing unit shown in FIG. 11 contains the printing units 3, 4 each with a forme cylinder 1.1, 1.2 and one Transfer cylinder 2.1, 2.2. These cylinders are equally in Side walls 5, 6 mounted (Fig. 15), as in Figures 1 and 6. However, each printing unit 3, 4 has its own angle-controlled electric motor 7, namely each the forme cylinder 1.1 or 1.2 driven.
  • the drive side Pins of the forme cylinders 1.1, 1.2 each have a spur gear 8, 19, with which they each have a spur gear 10, 20 on the pin of Comb the transfer cylinders 2.1, 2.2.
  • the spur gears 8, 10 and 19, 20 are in two different levels because the transfer cylinder 2.1, 2.2 must not be in drive connection with each other.
  • On the operator-side pin of the forme cylinder 1.1, 1.2 engages in each case an angle-controlled electric motor 7 and drives the printing units 3, 4 on.
  • a printing unit always contains a form and a transfer cylinder and works with one Printing mechanism based on the rubber-rubber principle or with a satellite cylinder together.
  • Such a printing unit can also be used with a Impression cylinders are added to a three-cylinder printing unit, each cylinder powered by a separate electric motor or only one cylinder is driven by an electric motor and the three cylinders are in drive connection via gearwheels.
  • the angle control of the electric motors is carried out by means of Computer engine controls as part of machine control.
  • the motors are accordingly connected to these systems.
  • the Regulations are not the subject of the invention, so that Representations and explanations are not provided.
  • 21 is one Printing machine in side view and in Fig. 22 a folding unit shown in the view with such functional groups.
  • the 21 includes four printing units 21 to 24 and a folding unit 25.
  • the printing units 23 and 24 are similar driving the printing unit shown in Fig. 17, the Printing units 21 and 22 are similar to that shown in Fig. 18.
  • the Drive motors of the cylinders as well as the one below Function groups described are symbolic with an "M" or Hatching.
  • the folding unit shown in Fig. 22 contains the folding units 26 and 27.
  • the feed units 28, the cooling rollers 29, the cutting rollers 30 and the hopper rollers 31 each with a separate, angle-controlled electric motor driven.
  • the electric motors overdrive indirectly Belt the cylinders of these functional groups.
  • Fig. 21.1 shows the same printing press, with each cylinder of these functional groups is driven directly by a motor.
  • the hopper rollers 31 and the tension and Transfer rollers 32 each from a separate, angle-controlled Electric motor driven directly.
  • the two folding units 26 and 27 each have a separate, angle-controlled motor, the one folding cylinder each, here the knife cylinder 143, 144, directly drives.
  • the other folding cylinders protrude with this cylinder spur gears arranged on their journals.
  • the former rolls 31 and the pull and transfer rollers 32 each have a common motor indirectly driven by a toothed belt.
  • the only one Folding unit 27.1 is controlled by a separate, angle-controlled Electric motor driven.
  • the drive takes place indirectly by means of Belt drive on the puncture folding knife cylinder, for example 145. With this the other folding cylinders stand with theirs Cylinder wheels in drive connection. With these electric motors a sensitive adjustment of the speed of the driven cylinders possible. For groups with advance control is also then the web tension can be adjusted accordingly. Surrender too great cost advantages from the elimination of such PIV gearboxes previously used.
  • the separate electric motor driving directly onto a forme cylinder is also advantageous as an actuator for color register adjustment available.
  • 23 shows a device for color register adjustment in a double printing unit with the printing units 34 and 35, each a forme cylinder 36, 38 and a transfer cylinder 37, 39 contain.
  • the device is based on the forme cylinder 38 described, which carries two printing forms on the circumference.
  • the the Form cylinder 38 driving electric motor 40 is powered by a Computer engine control 41 angle-controlled.
  • the Transducer 44 scans from printing unit 35 onto web 43 printed register marks and thus determines the position of the two images printed per revolution of the forme cylinder.
  • the signal of the position transmitter 42 is in the Comparison device 45 the reference to the rotation of the forme cylinder 38 manufactured.
  • the Forme cylinder 38 With a staggered arrangement of a print image in Circumferential direction to half the circumference of the forme cylinder, d. H. at a arrangement of the printed image deviating from half the circumference, the Forme cylinder 38 before printing in this area with a balancing pre or post retracement. This is done using the Computer engine control according to the output signal of the Comparator 45 accomplished. With this you can for example copying errors or assembly errors of the printing form be balanced. Accepting certain cuts to the Registration quality at the start of printing can be the acceleration or Delay phase can also be extended into this area, whereby the electric motor is dimensioned with lower power can be.
  • the device shown in Fig. 24 is used to control the Circumferential register between two printing points, here between the printing unit 46 and 47.
  • the from these printing units 46, 47 on the web 48 Printed registration marks are scanned by sensors 49, 50.
  • the signals from the sensors 49, 50 are in the Comparator 51 passed.
  • Each after necessary change of register to the printed image of the printing unit 46 the electric motor 54 is operated with advance or lag. If also the transfer cylinder 55 from a separate electric motor is driven, this is also with a register correction advantageously corrected for its speed.
  • the computing and storage unit 57 contains possible web runs the cylinder positions of the printing units for the Cutting register saved.
  • For cutting register setting according to the selected production configuration of the Computer engine control 56 the required cylinder positions specified. Adjusted according to the specification Computer engine control 56 drives all of the web 55 printing units.
  • the cutting register for cutting in the folder is therefore about the cylinder positions of everyone involved in printing Printing units set.
  • the usual, costly linear register devices Only for that Such a length adjustment is still necessary for the turning strand.
  • the one containing the cylinder positions for the cutting register The computing and storage unit can also be run on the computer engine control 66 of the device shown in FIG. 25, described below be guided, this device then both the Cutting register regulation as well as adjustment serves.
  • Printing press associations can be put together variably.
  • About one corresponding control program can, for. B. that according to FIG. 21 the folding unit 25 connected printing units 21, 22, 23 or some of these printing units also another not shown Folding unit can be assigned.
  • the printing units 58 to 61 print a web 62.
  • a Sensor 63 scans a printed register mark.
  • the Sensor 63 and the position sensor 64 of an electric motor a traversed printing unit, advantageously the first traversed printing unit 59, are on the inputs of a Comparator 65 connected, the output side with the Input of the computer motor control of the electric motors of the printing units 58 to 61 is connected.
  • One in the comparison device 65 Register error is determined by leading or lagging Drive of the printing units 58 to 61 printing the web 62 through appropriate control of their electric motors by means of Computer engine control 66 adjusted.
  • Fig. 26 shows a device by means of which the forme cylinder in a for Form change suitable position are driven.
  • the printing unit of the Embodiment contains two printing units 67, 68, each with one Forme cylinder 69, 70 and a transfer cylinder 71, 72.
  • the drive motors of the printing units 67, 68, which here are, for example, the transfer cylinders 71, 72 drive are connected to a computer engine control 73, which by a computing and storage unit 74 is fed.
  • arithmetic and Storage unit 74 are the cylinder positions of the forme cylinders 69, 70 for the Print form change saved.
  • the central wheel 87 not shown, on the Rotor journal of the electric motor 88.
  • the electric motor could also do the same be arranged next to the central wheel 87 and with a pinion in this intervention.
  • the electric motor 88 thus drives both ink rubbers 81.1, 82.1 and the dampening cylinder 83.1.
  • the ink rubbing cylinders 81.2 and 82.2 are replaced by one angle-controlled electric motor 89 driven.
  • the dampening cylinder 83.2 of the dampening unit 80.2 is controlled by an angle Electric motor 90 driven.
  • the electric motor 89 drives directly the ink rubbing cylinder 82.2. This carries a spur gear 85.2 with which it via an idler gear 91 to a spur gear 84.2 of the ink distribution cylinder 81.2 drives.
  • Fig. 29 shows a drive variant, according to which each color friction cylinder 81.3, 82.3 of the inking unit 79.3 and the dampening cylinder 83.3 of the Dampening unit 80.3 from a separate, angle-controlled electric motor 92, 93, 94 is driven. With this drive of the color and Dampening units no longer have all the gears that were customary for this purpose.
  • Fig. 30 shows the side view of the color and Wet friction cylinders 81.3, 82.3, 83.3, in side walls 95, 96 are stored. On one pin 97 to 99 of these cylinders 81.3 to 83.3, which is advantageous as the rotor of the driving Electric motors 92 to 94 are formed, z. B. a Linear motor 100 to 102.
  • the angle-controlled electric motors 92 to 94 are controlled by a computer engine control 103.
  • the Motor controller 103 advantageously controls linear motors 100 to 102 with the same sequence of movements.
  • Short inking units are also advantageous with separate, for example angle-controlled electric motors. So they can Anilox roller and the inking roller together by one or are individually driven by one electric motor each.
  • FIG. 31 shows a forme cylinder 105 which is supported with its pins 106, 107 in side walls 108, 109 of the printing press.
  • the pins 106, 107 carry flanges 110, 111, with which they are screwed to the end faces of the cylinder body.
  • the pin 106 is designed as a rotor 112 of the electric motor 113 driving the forme cylinder, ie it carries the elements of the rotor at its extended end.
  • the stator 114 is attached to the side wall 108.
  • a device for laterally displacing the forme cylinder 105 for the side register adjustment also acts on the pin 106.
  • a linear motor 115 is used for this. It could e.g. B. a motor can also be used in conjunction with a gear that transforms its rotary motion into a linear motion.
  • the amount of displacement Z of the side register is dimensioned such that when the pins 106, 107 move away on both sides by Z / 2 each, they are released from the forme cylinder body and can be removed from the printing press.
  • a sleeve-shaped printing form of the forme cylinder 105 can then be exchanged.
  • distribution cylinders can also be designed, wherein the friction stroke can be used to expose the cylinder body of the distribution cylinder.
  • FIG. 32 shows the drive-side part of a forme cylinder 116 the pin 117 of the rotor 118 of an electric motor 119 on the end face is screwed on.
  • the stator 120 of the electric motor 119 is put together with a bush 121 attached to it, which the bearing 122 of the Forme cylinder 116 contains, recorded in end shields 123, 124.
  • the end shields 123, 124 can be moved apart and give in apart, an opening 125 of the side wall 126 the press free. Then through the exposed opening 125 a sleeve-shaped printing form 139 through to or from the Forme cylinder 116 feasible.
  • the contour of the printing form passed through 139 is indicated by dash-dotted lines.
  • Fig. 33 shows the attachment of the stator 127 of an electric motor 128 on the eccentric ring 129 of a three-ring bearing 130 one in the Side wall 131 mounted cylinder. It can do this for example, a transfer cylinder, of which only pin 132 is shown. By twisting the eccentric Bearing ring 129 can, for example, turn the pressure on and off respectively.
  • This attachment of the stator 127 takes place advantageous to carry it with the on and off movement of the Pin together with the rotor 133 attached to it the stator 127 is attached to a flange 134 which is attached to the bearing ring 129 is screwed on.
  • the flange 134 is held down by 135 Sidewall 131 axially fixed and takes the tilting moment from the Weight of the stator.
  • the actuation of the bearing ring 129 is shown in Fig. 34.
  • the bearing ring 129 carries a hub 136 the pressure on and off mechanism, for example a lever 137, attacks.
  • the bearing ring 129 strikes advantageous on a frame-fixed, conveniently adjustable Stop 138 and so takes the corresponding direction of rotation of the Provided the counter torque of the stator 127 on. at the strong dimension takes another direction of rotation of the cylinder Pressure on and off mechanism the counter torque. It is advantageous the cylinder bearing is designed without play.
  • angle-controlled electric motors are used for driving the cylinders and functional groups.
  • speed or torque controlled Electric motors are used. Even the applied ones Computer engine controls may vary from case to case Motor controls can be realized.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rotary Presses (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)
  • Controlling Sheets Or Webs (AREA)

Claims (5)

  1. Machine à imprimer offset rotative à bobines comprenant des unités imprimantes ayant au moins un cylindre porte-plaque et un cylindre de report (1.1 à 1.5 ; 2.1 à 2.5) ainsi qu'au moins une unité de pliage (25) et au moins un moteur électrique (7) comme entraínement, le stator (127) du moteur électrique (7) étant fixé à une bague de palier excentrique,
    caractérisée en ce que
    pour chaque unité imprimante, au moins un de ces cylindres (1.1 à 1.5 ; 2.1 à 2.5) est en liaison d'entraínement avec un moteur électrique séparé (7) et, au choix, soit ce cylindre (1.1 à 1.5 ; 2.1 à 2.5) n'est pas en liaison d'entraínement mécanique avec un autre cylindre (1.1 à 1.5 ; 2.1 à 2.5) entraíné directement ou indirectement par un moteur électrique séparé (7), soit il est en liaison d'entraínement mécanique avec un cylindre non entraíné (1.1 à 1.5 ; 2.1 à 2.5), et le stator (127) du moteur électrique (128) est fixé à une bague de palier excentrique (129) du cylindre (1.1 à 1.5 ; 2.1 à 2.5) .
  2. Machine à imprimer offset rotative à bobines selon la revendication 1,
    caractérisée en ce que
    la bague de palier excentrique (129) porte une collerette (134) avec laquelle elle est fixée à la paroi latérale (131) au moyen de presseurs (135) pour absorber les couples de renversement, et la bague de palier (129) coopère avec une butée (138) solidaire du bâti.
  3. Machine à imprimer offset rotative à bobines selon la revendication 1 ou 2,
    caractérisée en ce que
    le cylindre (116) tourillonne au moyen d'un tourillon (117) dans des flasques paliers (123, 124) qui peuvent être écartés l'un de l'autre et qui, lors de l'écartement, dégagent une ouverture (125) ménagée dans la paroi latérale (126) de la machine à imprimer, à travers laquelle on peut faire passer une forme d'impression ou de report (139) en forme de manchon.
  4. Machine à imprimer offset rotative à bobines selon l'une des revendications 1 à 3,
    caractérisée en ce que
    le moteur électrique (7) est disposé sur le côté de service (S1) de la machine à imprimer.
  5. Machine à imprimer offset rotative à bobines selon l'une des revendications 1 à 3,
    caractérisée en ce que
    le moteur électrique (7) est disposé sur le côté entraínement (S2) de la machine à imprimer
EP01113489A 1994-08-30 1995-08-18 Machine d'impression offset Expired - Lifetime EP1132202B1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE4430693A DE4430693B4 (de) 1994-08-30 1994-08-30 Antriebe für eine Rollenrotations-Offsetdruckmaschine
DE4430693 1994-08-30
EP01101495A EP1110722B1 (fr) 1994-08-30 1995-08-18 Presse d'impression offset
EP95113017A EP0699524B2 (fr) 1994-08-30 1995-08-18 Machine rotative d'impression offset à bobines

Related Parent Applications (2)

Application Number Title Priority Date Filing Date
EP95113017.8 Division 1995-08-18
EP01101495.8 Division 2001-01-24

Publications (2)

Publication Number Publication Date
EP1132202A1 EP1132202A1 (fr) 2001-09-12
EP1132202B1 true EP1132202B1 (fr) 2004-10-06

Family

ID=6526867

Family Applications (5)

Application Number Title Priority Date Filing Date
EP95113017A Expired - Lifetime EP0699524B2 (fr) 1994-08-30 1995-08-18 Machine rotative d'impression offset à bobines
EP04023533A Withdrawn EP1493563A3 (fr) 1994-08-30 1995-08-18 Machine d'impression offset
EP02023919A Expired - Lifetime EP1277575B2 (fr) 1994-08-30 1995-08-18 Presse d'impression offset
EP04023532A Withdrawn EP1493564A1 (fr) 1994-08-30 1995-08-18 Machine d'impression offset
EP01113489A Expired - Lifetime EP1132202B1 (fr) 1994-08-30 1995-08-18 Machine d'impression offset

Family Applications Before (4)

Application Number Title Priority Date Filing Date
EP95113017A Expired - Lifetime EP0699524B2 (fr) 1994-08-30 1995-08-18 Machine rotative d'impression offset à bobines
EP04023533A Withdrawn EP1493563A3 (fr) 1994-08-30 1995-08-18 Machine d'impression offset
EP02023919A Expired - Lifetime EP1277575B2 (fr) 1994-08-30 1995-08-18 Presse d'impression offset
EP04023532A Withdrawn EP1493564A1 (fr) 1994-08-30 1995-08-18 Machine d'impression offset

Country Status (4)

Country Link
US (1) US6408748B1 (fr)
EP (5) EP0699524B2 (fr)
JP (5) JP3059081B2 (fr)
DE (5) DE4430693B4 (fr)

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DE102008042939A1 (de) 2008-10-17 2010-04-29 Koenig & Bauer Aktiengesellschaft Direktantrieb mit axialer Lageverstellung
US7775159B2 (en) 2005-03-30 2010-08-17 Goss International Americas, Inc. Cantilevered blanket cylinder lifting mechanism
US7819057B2 (en) 2005-03-30 2010-10-26 Goss International Americas, Inc. Print unit having blanket cylinder throw-off bearer surfaces
US7849796B2 (en) 2005-03-30 2010-12-14 Goss International Americas, Inc Web offset printing press with articulated tucker
US8037818B2 (en) 2005-04-11 2011-10-18 Goss International Americas, Inc. Print unit with single motor drive permitting autoplating

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WO2003016058A1 (fr) 2001-08-03 2003-02-27 Koenig & Bauer Aktiengesellschaft Elements d'impression pour presse d'imprimerie
DE20221937U1 (de) 1991-01-23 2009-06-18 Koenig & Bauer Aktiengesellschaft Rollenrotationsdruckmaschine
DE4430693B4 (de) 1994-08-30 2005-12-22 Man Roland Druckmaschinen Ag Antriebe für eine Rollenrotations-Offsetdruckmaschine
US6644184B1 (en) 1995-02-09 2003-11-11 Man Roland Druckmaschinen Ag Offset printing machine
WO1996029204A1 (fr) * 1995-03-18 1996-09-26 Koenig & Bauer-Albert Ag Procede d'actionnement d'une unite, par ex. une plieuse de presse rotative
DE19525169C2 (de) * 1995-03-18 2000-02-03 Koenig & Bauer Ag Verfahren zum Antreiben eines Falzapparates
EP0738591B1 (fr) * 1995-04-15 1999-01-27 Heidelberger Druckmaschinen Aktiengesellschaft Cylindre de transfert avec une unité d'entraínement électrique
DE19516443A1 (de) * 1995-05-04 1996-11-07 Wifag Maschf Einzeln angetriebener Falzapparat für eine Rotationsdruckmaschine
DE19516445A1 (de) * 1995-05-04 1996-11-07 Wifag Maschf Rotationsdruckmaschine mit frei aufstellbarem Falzapparat
CH691225A8 (fr) * 1996-02-09 2001-08-15 Bobst Sa Machine d'impression rotative.
DE19629605C2 (de) * 1996-07-23 2000-02-03 Koenig & Bauer Ag Antrieb einer Druckeinheit
US6118195A (en) * 1996-08-09 2000-09-12 Koenig & Bauer Aktiengesellschaft Electric motor drive for eccentrically supported cylinder
DE59603572D1 (de) * 1996-08-28 1999-12-09 Koenig & Bauer Ag Druckeinheit
GB9621324D0 (en) * 1996-10-12 1996-11-27 Rockwell Graphic Syst Printing apparatus
DE19732330C2 (de) * 1997-07-28 2001-04-19 Koenig & Bauer Ag Antrieb für eine Druckeinheit
DE19733644B4 (de) * 1997-08-04 2005-07-14 Man Roland Druckmaschinen Ag Auftragwalze mit veränderbarer Drehzahl
DE19739283C2 (de) * 1997-09-08 2002-10-24 Roland Man Druckmasch Verfahren zum Erreichen des Fortdruckzustandes in einer Rollenrotationsdruckmaschine
DE19742560A1 (de) * 1997-09-26 1999-04-01 Roland Man Druckmasch Vorrichtung zur Veränderung der Bahnlage einer Bedruckstoffbahn
JP3037650B2 (ja) * 1997-10-29 2000-04-24 株式会社東京機械製作所 輪転機の印刷ユニットの駆動装置
DE19755316C2 (de) * 1997-12-12 1999-10-07 Koenig & Bauer Ag Antrieb für Zylinder einer Druckeinheit
US6601681B1 (en) 1998-01-30 2003-08-05 Koenig & Bauer Aktiengesellschaft Drive mechanism for a rotating component of a printing machine
DE19803557C2 (de) * 1998-01-30 1999-12-23 Koenig & Bauer Ag Antrieb für ein rotierendes Bauteil einer Druckmaschine
EP1082225B1 (fr) * 1998-04-24 2001-11-28 Koenig & Bauer Aktiengesellschaft Rouleau pour presse rotative
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EP0722831B1 (fr) * 1993-04-22 1999-08-18 Baumüller Nürnberg Gmbh Procédé et arrangement pour un moteur électrique pour entraíner un corps de rotation, en particulier un cylindre d'imprimerie
ATE524311T1 (de) 1993-12-29 2011-09-15 Wifag Maschf Ag Rotationsdruckmaschine
US6005318A (en) * 1994-02-04 1999-12-21 Schelenker Enterprises Ltd. Motor including embedded permanent-magnet rotor and method for making the same
DE4430693B4 (de) 1994-08-30 2005-12-22 Man Roland Druckmaschinen Ag Antriebe für eine Rollenrotations-Offsetdruckmaschine
US5668455A (en) * 1994-09-16 1997-09-16 Gotz; Fritz Rainer Angle encoder for rotating equipment

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US7775159B2 (en) 2005-03-30 2010-08-17 Goss International Americas, Inc. Cantilevered blanket cylinder lifting mechanism
US7819057B2 (en) 2005-03-30 2010-10-26 Goss International Americas, Inc. Print unit having blanket cylinder throw-off bearer surfaces
US7849796B2 (en) 2005-03-30 2010-12-14 Goss International Americas, Inc Web offset printing press with articulated tucker
US8250976B2 (en) 2005-03-30 2012-08-28 Goss International Americas, Inc. Cantilevered blanket cylinder lifting mechanism
US8037818B2 (en) 2005-04-11 2011-10-18 Goss International Americas, Inc. Print unit with single motor drive permitting autoplating
DE102008042939A1 (de) 2008-10-17 2010-04-29 Koenig & Bauer Aktiengesellschaft Direktantrieb mit axialer Lageverstellung
DE102008042939B4 (de) * 2008-10-17 2021-01-21 Koenig & Bauer Ag Direktantrieb mit axialer Lageverstellung

Also Published As

Publication number Publication date
DE59510638D1 (de) 2003-05-15
DE59509776D1 (de) 2001-12-06
EP1132202A1 (fr) 2001-09-12
EP0699524A2 (fr) 1996-03-06
EP0699524A3 (fr) 1997-02-05
JPH0885196A (ja) 1996-04-02
DE59510957D1 (de) 2004-11-11
JP2008230252A (ja) 2008-10-02
EP0699524B1 (fr) 2001-10-31
JP2005313655A (ja) 2005-11-10
EP1493563A2 (fr) 2005-01-05
EP1277575B2 (fr) 2010-01-20
JP3059081B2 (ja) 2000-07-04
EP1493563A3 (fr) 2009-11-25
EP1277575A1 (fr) 2003-01-22
DE4430693B4 (de) 2005-12-22
DE4430693A1 (de) 1996-03-07
JP2007290403A (ja) 2007-11-08
US6408748B1 (en) 2002-06-25
EP0699524B2 (fr) 2009-11-11
DE59510955D1 (de) 2004-11-11
JPH11147305A (ja) 1999-06-02
EP1277575B1 (fr) 2004-10-06
EP1493564A1 (fr) 2005-01-05

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