EP2185361B1 - Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen richtung abstandsveränderbaren seitengestellteilen - Google Patents

Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen richtung abstandsveränderbaren seitengestellteilen Download PDF

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Publication number
EP2185361B1
EP2185361B1 EP08786061.5A EP08786061A EP2185361B1 EP 2185361 B1 EP2185361 B1 EP 2185361B1 EP 08786061 A EP08786061 A EP 08786061A EP 2185361 B1 EP2185361 B1 EP 2185361B1
Authority
EP
European Patent Office
Prior art keywords
side frame
cylinder
printing unit
printing
unit according
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.)
Not-in-force
Application number
EP08786061.5A
Other languages
German (de)
English (en)
French (fr)
Other versions
EP2185361A1 (de
Inventor
Thomas Kübert
Bernd Kurt Masuch
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 EP2185361A1 publication Critical patent/EP2185361A1/de
Application granted granted Critical
Publication of EP2185361B1 publication Critical patent/EP2185361B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • B41F13/0024Frames
    • 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
    • B41F13/30Bearings mounted on sliding supports
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F7/00Rotary lithographic machines
    • B41F7/02Rotary lithographic machines for offset printing
    • B41F7/12Rotary lithographic machines for offset printing using two cylinders one of which serves two functions, e.g. as a transfer and impression cylinder in perfecting machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2217/00Printing machines of special types or for particular purposes
    • B41P2217/10Printing machines of special types or for particular purposes characterised by their constructional features

Definitions

  • the invention relates to a printing unit having at least two side frame parts which can be displaced relative to one another in a horizontal direction in a horizontal direction and a method for fixing these side frame parts according to the preamble of claims 1 and 14.
  • WO 2005/037553 A1 is designed as a printing tower printing unit with four stacked double printing or bridge printing works known which comprises two relatively movable frame parts, each with two opposite side frame plates, each side frame plate three centering or locking devices are assigned, which may be formed as a hook.
  • WO 2005/037552 A1 is another, designed as a printing tower printing unit with four superimposed double printing or bridge printing works known, with a movable relative to a stationary frame part frame part is mounted on rollers. The rollers are retractable in a lowered position to support the weight of the movable frame member on a stationary support.
  • the DE 601 18 828 T2 discloses a printing unit having at least two side frame members which are spaced apart relative to each other in a horizontal direction, each of which receives a printing unit or parts of a printing unit and at least one side frame between a closed functional position, in which the side frame parts are brought together and fixed against each other, and an open position they are spaced from each other, is movable, wherein at least one locking device is provided, which comprises a side frame parts in the closed functional position biasing cylinder.
  • the invention has for its object to provide a printing unit with at least two relatively variable in a horizontal direction in a horizontal direction side frame parts and a method for fixing these side frame parts.
  • the one the side frame parts in the closed functional position biasing cylinder in particular draw cylinder comprehensive locking device, which may be designed in particular as a hydraulic swing clamp, preferably more locking devices are provided, ensures correct contact of the stops of the side frame parts and a uniform fixing the side frame parts. As a result, the required, complex adjustment to evenly load all hooks, omitted.
  • Fig. 1 shows in greatly simplified form schematically a printing unit 01 or printing machine 01, in particular a web-fed rotary printing machine 01 in the form of a printing tower 01, preferably a printing machine 01 printing several different printing inks, with z. B. four in a frame 02 vertically stacked printing units 04, namely double printing units 03, wherein a substrate 05, z. B. a web of material 05, in particular a paper web 05, in the vertical direction, the double printing units 03 passes successively.
  • Each of these double printing units 03 is formed from two printing units 04.
  • the two blanket cylinders 06 and the two plate cylinders 07 of two opposing printing units 04 of a double printing unit 03 are arranged so that their axes of rotation lie in a plane which is inclined relative to the paper web 05 by preferably 75 ° to 88 °.
  • Each printing unit 04 consisting of at least one blanket cylinder 06 and one plate cylinder 07 is assigned an inking unit 08, for example a roller inking unit 08 or a short inking unit 08. Furthermore, each printing unit 04 is assigned a dampening unit 09, for example a spray dampening unit 09. If working in a manner not shown in the "dry offset” or “waterless offset printing", no dampening solution and thus no dampening unit 09 is provided and the inking unit 08 may be formed, for example, as pump inking unit 08.
  • Each printing unit 04 of the printing press 01 has at least one preferably position-controlled, not shown here drive motor.
  • the plate cylinder 07 and the blanket cylinder 06 may be drivingly connected to each other, in particular by means of gears.
  • each blanket cylinder 06 and each plate cylinder 07 may be provided with its own, not shown here drive motor, in such a drive concept, a plate change on a plate cylinder 07 regardless of a plate change on another plate cylinder 07 can be performed.
  • the printing units 04 or their plate cylinder 07 may be designed to receive a plurality of printing plates in the axial direction, in particular of 2, 3, 4, 5, 6, 7 or 8 printing plates in the axial direction, as well as for receiving one or possibly also for recording of several pressure plates in the circumferential direction, in particular of two pressure plates in the circumferential direction.
  • Fig. 1 are arranged on both sides of the paper web 05 in each case a double printing unit 03 arranged rubber cylinder 06 in a so-called rubber-rubber arrangement against each other, so that the mutually employed rubber cylinder 06 mutually act as a counter-pressure cylinder.
  • printing units 04 can be combined to form a satellite printing unit, for example, four printing units 04 each common, from the remaining cylinders 06; 07 separate impression cylinder are arranged, wherein the paper web 05 is guided in each case between at least one employed on the impression cylinder transfer cylinder 06 and the impression cylinder.
  • the printing tower 01 comprises a plurality, in particular two separable side frame modules 11, which can be separated and spaced apart in the horizontal direction in a horizontal direction; 12 or side frame parts 11; 12, in particular a machine-fixed or stationary side frame part 11 and a side frame part 12 which is displaceable relative thereto, wherein the displaceable side frame part 12 is displaceable along a lower stationary base 13.
  • both side frame parts 11; 12 arranged to be displaceable.
  • On each side frame part 11; 12 is in each case a printing unit 04 of a double printing unit 03 together with associated components such as in particular inking unit 08 and possibly dampening unit 09 and not shown here, possibly arranged automatically or semi-automatically plate changing devices or disk magazines. Due to the divisibility of the frame 02, the frame 02 can be opened and corresponding printing unit components are thus optimally accessible for setup, maintenance and possibly repair purposes.
  • the printing cylinder 06; 07, ie the transfer cylinder 06 or blanket cylinder 06 and the forme cylinder 07 or plate cylinder 07 are each mounted in a bearing unit 14 and a linear bearing 14, wherein preferably both ends of each printing cylinder 06; 07 are mounted in a linear bearing 14.
  • Such a linear bearing 14 supports a printing cylinder 06; 07 for rotation while allowing translation, so a linear travel of the printing cylinder 06; 07, for example, to the plate cylinder 07 from the blanket cylinder 06 z. B. to turn off for the purpose of a plate change.
  • the linear bearings 14 are movable by means of actuators 16 in the form of hydraulic piston 16, which is a common, not shown here Have supply.
  • the known linear bearings 14 is, for example, the above-mentioned EP 17 67 359 A2 directed.
  • the frame 02 comprises the stationary side frame part 11, whose opposing side frames are fixed to the base 13, and the displaceably mounted side frame member 12, the opposing side frame parts on the Base 13 are slidably mounted and are rigidly connected to each other by means of a lower, close to the base arranged crossbar 19 for common movement.
  • a division into several parts is possible, in the case of the present embodiment, however, a division into two parts 11a; 11b and 12a, respectively; 12b or in two side frame halves 11 a; 11b and 12a, respectively; 12b provided, which should be sufficient as a rule to the particular purpose of this particular problem-free, simple and cost-saving transportability of the side frame halves 11a; 11b; 12a; To ensure 12b.
  • the side frame halves 11a; 11b and 12a, respectively; 12b are in particular after your transport for mounting to side frame parts 11 and 12 firmly connected to each other, for example screwed via bolts.
  • the individual side frame halves 11a; 11b; 12a; 12b are each at least substantially box-shaped, with their open side in each case z. B. facing outward.
  • the side frame halves 11 a; 11b; 12a; 12b also have various openings 21 for receiving storage facilities of the printing cylinder 06; 07 and peripheral equipment such as inking unit 08 or ink fountain rollers, dampening 09 or dampening rollers etc. of the individual printing units 04 on. They are designed to fit different formats according to the customer's needs.
  • D. H. the forme cylinder 07 and transfer cylinder 06 can be used with different diameters.
  • a preferably hydraulically working cylinder-piston assembly 22 is provided with a cylinder 23 which is fixed at one of its ends to the base 13 and with a piston rod 24, with one of its ends the movable side frame part 12 is connected, see. also Fig. 2 . 3 . 7 . 8th and 15 to 17 ,
  • the cylinder-piston assembly 22 is, as shown, preferably arranged on the underside of the movable side frame part 12.
  • the cylinder-piston assembly 22 is at least substantially, preferably exactly centered or z. B. in the load center between the opposite side frame parts 11; 12 and the piston rod 24 is connected to a vertically extending pin 26, which in turn is connected to the crossbar 19 of the side frame member 12.
  • the cylinder-piston assembly 22 is provided with a first end, namely with the z in the illustration. B. Fig. 8 right end, via a bearing device 27, namely a pivot bearing 27 with vertically aligned pivot axis mounted on the base 13 and with a second end, namely with the in the illustration Fig. 8 left end, via a further bearing device 28, namely a pivot bearing 28 also with vertically aligned pivot axis on the movable side frame part 12, ie in the case of here in question embodiment mounted on the crossbar 19, in particular on the attached to the crossbar 19 bolts 26.
  • a common hydraulic supply 29 is provided.
  • the common hydraulic supply 29 can also supply the actuators 16 or hydraulic pistons 16 of the bearing units 14 or linear bearings 14 (see FIG. Fig. 1 ) and / or the hydraulically actuated closing devices 31 or pivoting clamps 31 described below (cf. Fig. 2 ) for securing the closed functional position of the side frame members 11; 12.
  • the common hydraulic supply 29 can supply at least one further, not shown pressure generating device of the printing unit 01.
  • At least one closing device 31 is provided, preferably at least one closing device 31 for each side of the frame 02, ie for each side frame pairing 11, 12. Particularly preferred It is when at least two locking devices 31 are provided on each side, in particular on each side three locking devices 31, as in Fig. 2 illustrated, or, in another format to be printed, four closing devices 31 per page.
  • each side frame half 11 a; 11b; 12a; 12b each associated with at least one locking device 31.
  • the arrangement is such that the lower side frame halves 11b; 12b on each side of the printing unit 01 each have two closing devices 31 and the upper side frame halves 11a; 12a are each associated with a closing device 31, as in particular from Fig. 2 can be seen.
  • a plurality of closing devices 31 these are preferably arranged vertically above one another.
  • the structure of a preferred embodiment of a closure device 31 is obtained in particular 4 to 6 ,
  • the closing device 31 comprises a preferably hydraulically actuated, the associated side frame parts 11; 12 in the closed functional position biasing cylinder 32, in particular a side frame parts 11; 12 in the operating position pulling cylinder 32.
  • the closing device 31 comprises at least one pivotable clamping arm 33 which is pivotable from a closed position to a release position and can be arranged at the free end of the piston rod 34 of the cylinder 32.
  • the pivotable clamping arm 33 may be rigidly connected to the piston rod 34 of the tensioning cylinder 32, and the piston of the tensioning cylinder 32 may be rotatable about its axis.
  • the pull cylinder 32 is then expediently constructed in a manner known per se such that a part of the stroke of the pull cylinder 32 is used as a rotary stroke for rotating the piston and thus for pivoting the clamping arm 33.
  • the closing device 31 is thus preferably designed as a swing clamp 31.
  • the locking device 31 further comprises a mounting flange 36 having through holes 37 through which the locking device 31 by means of screws 38 on a side frame part 11; 12 and a side frame half 11a; 11b; 12a; 12b is fastened.
  • the openings 35 preferably have a circumferential, preferably an endless boundary.
  • the openings 35 are preferably in a direction parallel to the axes of rotation of the printing cylinder 06; 07 leading wall (in particular the edge of the box-shaped side frame parts 11, 12 or side frame halves 11a, 11b, 12a, 12b), preferably in the wall facing the opposite side frame.
  • the lines 42; 43 are, as explained above, connected to a common hydraulic supply 29, which also supplies the cylinder-piston assembly 22.
  • all closing devices 31 are actuated together.
  • the centering device 44 is formed by a prism device 44 which has a receiving part 46 with a prismatically shaped receiving opening 47 on a side frame part 11; 12, z. B. the stationary side frame part 11, and an insertion part 48 with a prismatically shaped insertion nose 49 on the other side frame part 11; 12, z. B. on the sliding side frame part 12, comprising, wherein the prismatic shapes of receiving part 46 and insertion part 48 correspond.
  • the centering device 44 is as shown Fig. 2 seen, provided only on one side of the printing unit 01 and there at the mutually facing upper end portions of the side frame parts 11; 12 above the top or z. B. arranged below the lowermost closing device 31.
  • each closing device 31 may be assigned a stop device 51, preferably assigned such that the respective stop device 51 of the respectively associated closing device 31 is arranged directly adjacent.
  • Each stop device 51 as shown, two z. B. disc-shaped stop elements 52; 53 include, the facing surfaces define the stop surfaces and of which one is attached to the side frame member 11 and the other on the side frame member 12, for example by means of screws.
  • Each stop device 51 may be formed adjustable or adjustable with respect to their exact stop position, for example in a manner not shown by inserting spacers of different numbers and / or different thickness.
  • At least one running shoe arrangement 54 is provided on each side of the printing unit 01, cf. Fig. 7 to 14 ,
  • three running shoe assemblies 54 are provided on each side, the z. B. by means of screws 56 on the respective underside of the two opposite or their respective lower side frame half 12 b of the sliding side frame member 12 are fastened.
  • the running shoe assemblies 54 are opposite on the two side supports 57 of the base 13 guide rails 58 are fixed along which run the shoe assemblies 54 and at the same time, as described below, for lateral guidance or adjustment of the movable side frame part 12.
  • Each running shoe assembly 54 comprises a total of approximately cuboid running shoe support 59, see. especially Fig. 12 to 14 , which is fastened via through-holes 60 on the underside of the respective side frame part 12 and which receives a running shoe 61, as it consists of Fig. 11 becomes clear.
  • the running shoe 61 comprises a housing 62 on which two webs 63 with through holes 64 are laterally formed for attachment to the running shoe support 59 or to the underside of the side frame part 12.
  • a plurality of rollers 66 are arranged in parallel and, when the running shoe 61 moves, rotate along at least one closed path, which is arranged in a vertical plane which extends in the direction of movement of the displaceable side frame part 12.
  • a plurality of parallel tracks may be provided for a plurality of groups of rotating rollers 66, in particular as shown, two parallel tracks side by side for two groups 67; 68 of rotating rollers 66.
  • the closed path can be defined in each case in a manner not shown, for example, by two opposite guide grooves, in which axially extending stub axles of the rollers 66 are guided.
  • the housing 62 of the running shoe 61 is opened at its bottom side facing the guide bar 58, and the guide track of the rollers 66 is rectilinear in this area, so that the rollers 66 can come into contact with the guide track 58 on their underside and contact the guide track 58 opposite upper side supported on a formed in the housing 62, not shown supporting surface.
  • the components When moving the sliding side frame member 12, the components then roll in the manner of a rolling bearing to each other.
  • Each running shoe assembly 54 is associated with at least one scraper 69, which is arranged in anticipation of the rollers 66 of the running shoe 61 to scrape dirt on the surface of the guide rail 58 and thus keep away from the running shoe 61 during movement of the running shoe 61.
  • two stripping devices 69 are provided, wherein in each case one stripping device 69 is arranged leading in each case in one of the two directions of running of the running shoe 61 to the running shoe 61.
  • the wiper 69 may be disposed on the shoe assembly 54, e.g.
  • the stripping device 69 may in each case be designed as a stripping seal 69 and, for example, consist of an elastically deformable material with at least one arranged in the running plane of the rollers 66 Scraper lip 71.
  • each stripping 69 69 seen in the running direction of the running shoe 61 successively arranged scraper lips 71, for example, sealing lips 71.
  • the centering device 44 supporting side frame member 12 optionally positionally adjustable with regard to their position guide roller carrier 72; 73; 74 attached to which guide rollers 76; 77; 78; 79 are mounted with vertically arranged axis of rotation, which are supported on both sides of the guide rail 58 at its narrow side and thus allow a guide or adjustment of the movably mounted side frame part 12.
  • the guide roller carrier 72 carries an internally arranged guide roller 76, the guide roller carrier 73 an outwardly disposed guide roller 77 and the guide roller carrier 74 both an internally arranged guide roller 78 and an externally arranged guide roller 79th
  • a Gleitschuhan onion 81 For slidable mounting of the at least one displaceable side frame part 12 of the frame 02 of the printing unit 01 and the printing tower 01 is on each side of the printing unit 01 a Gleitschuhan onion 81, each with at least one sliding surface 88 preferably made of plastic having shoe 82 is provided.
  • three sliding shoes 82 are provided on each side of the printing unit 01, which are held in a common shoe carrier 83, the z. B. by means of screws 84 on the respective underside of the two opposite or their respective lower side frame half 12 b of the sliding side frame member 12 is fastened.
  • the sliding surface 88 can also be screwed or glued directly.
  • the sliding shoe assembly 81 opposite to the two side supports 57 of the base 13 guide rails 58 are fixed along which run the Gleitschuhan extracten 81 and at the same time, as described below, for lateral guidance or adjustment of the movable side frame part 12.
  • Each slide shoe 82 is accommodated in a recess of the slide shoe carrier 83 shaped in accordance with the shape of the slide shoe 82 and, as can be seen in particular FIGS. 18 to 22 results, at least approximately plate-shaped.
  • the shoe 82 has a Gleitschuhbasis 86 and a mounted on the Gleitschuhbasis 86, for example glued, in particular made of high-slip plastic sliding layer 87 which defines the sliding surface 88.
  • the downwardly facing sliding surface 88 of the slide shoe 82 projects in the installed state of the slide shoe 82 down over the underside of the slide shoe carrier 83, so that only the slide shoes 82, but not the slide shoe carrier 81 touch the surface of the guide bar 58.
  • the high lubricity plastic used as the material for the sliding layer 87 preferably has a coefficient of friction between 0.02 and 0.40 at a surface pressure of between 1.0 and 4.0 N / mm 2 and a temperature of 25 ° C, especially a coefficient of friction between 0.04 and 0.30 at a surface pressure between 0.5 and 4.0 N / mm 2 and a temperature of 25 ° C, more preferably a coefficient of friction between 0.06 and 0.12 at a surface pressure between 0.3 and 4.7 N / mm 2 and a temperature of 25 ° C. It is further preferred if the plastic material has a tensile strength between 30 and 100 N / mm 2 , in particular between 45 and 75 N / mm 2 .
  • a preferred plastic material has a wear factor at 20 ° C of less than 0.2 mm / 100 km, preferably a wear factor at 20 ° C of less than 0.1 mm / 100 km, in particular a wear factor at 20 ° C of less than 0.05 mm / 100 km.
  • a suitable as a plastic material for the sliding layer 87 material may in particular be a structural plastic, which may preferably be formed as, having multiple materials, composite plastic and should preferably be maintenance-free and wear-resistant.
  • the plastic comprises one component of thermoplastic polyester and another component has a rubbery one Character with high elasticity.
  • a suitable material is known under the name ZEDEX and commercially available, here in particular under the name ZX-100, preferably ZX-100A, or in particular Uniform 2000 gray blue, which has the preferably desired properties to a high degree.
  • Each of the sliding shoes 82 may have a sliding surface 88, for example between 20 and 1000 cm 2 , preferably between 40 and 400 cm 2 , in particular of 100 cm 2 +/- 50%.
  • depressions 89 may be formed for receiving impurities in order to avoid as much as possible caused by contamination wear or a reduction in the lubricity.
  • the depressions 89 may in particular be groove-shaped or groove-shaped and, as shown, cover the sliding surface 88 in the form of a net.
  • the longitudinal extent of the recesses 89 can extend obliquely to the direction of displacement of the movable side frame part 12 to z.
  • an automatic emptying of the recesses 89 to allow, and in particular with the displacement direction include an angle of 45 °. It is particularly preferred if, as in, for example Fig. 19 illustrated, the sliding surface 88 has a grid on intersecting groove-shaped recesses 89 which extend obliquely to the direction of displacement of the side frame part 12.
  • the depressions 89 of the sliding surface 88 occupy a relatively large area fraction of more than 10% of the sliding surface 88, preferably of more than 20%, in particular an area fraction of between 25% and 35%, for example in the case of the preferred embodiment an area percentage of 30% +/- 3%.
  • the guide roller carrier 92 carries an internally arranged guide roller 96, the guide roller carrier 93 an outwardly disposed guide roller 97 and the guide roller carrier 94 both an internally arranged guide roller 98 and an externally arranged guide roller 99th
EP08786061.5A 2007-10-12 2008-07-11 Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen richtung abstandsveränderbaren seitengestellteilen Not-in-force EP2185361B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007000860A DE102007000860B4 (de) 2007-10-12 2007-10-12 Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen Richtung abstandsveränderbaren Seitengestellteilen und ein Verfahren zum Fixieren der Seitengestellteile
PCT/EP2008/059061 WO2009049935A1 (de) 2007-10-12 2008-07-11 Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen richtung abstandsveränderbaren seitengestellteilen

Publications (2)

Publication Number Publication Date
EP2185361A1 EP2185361A1 (de) 2010-05-19
EP2185361B1 true EP2185361B1 (de) 2014-04-16

Family

ID=40039881

Family Applications (1)

Application Number Title Priority Date Filing Date
EP08786061.5A Not-in-force EP2185361B1 (de) 2007-10-12 2008-07-11 Druckeinheit mit mindestens zwei relativ zueinander in einer horizontalen richtung abstandsveränderbaren seitengestellteilen

Country Status (5)

Country Link
US (1) US7886664B2 (zh)
EP (1) EP2185361B1 (zh)
CN (1) CN101821099B (zh)
DE (1) DE102007000860B4 (zh)
WO (1) WO2009049935A1 (zh)

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE4408025A1 (de) 1994-03-10 1995-09-14 Koenig & Bauer Ag Druckwerk für eine Mehrfarbenrollenrotationsdruckmaschine
DE4408026A1 (de) * 1994-03-10 1995-09-14 Koenig & Bauer Ag Druckwerk für eine Mehrfarbenrollenrotationsdruckmaschine
JP2001310440A (ja) * 2000-04-27 2001-11-06 Miyakoshi Printing Machinery Co Ltd タワー型オフセット輪転機
ES2252239T3 (es) 2000-07-22 2006-05-16 KOENIG & BAUER AKTIENGESELLSCHAFT Unidad de impresion de una maquina de impresion offset con modulos de bastidor separables.
DE10347573B4 (de) 2003-10-14 2007-03-08 Koenig & Bauer Ag Druckwerk und ein Verfahren zum Bewegen eines Gestellteils
DE10347571B4 (de) 2003-10-14 2008-09-18 Koenig & Bauer Aktiengesellschaft Druckwerk
RU2364515C2 (ru) 2004-04-05 2009-08-20 Кениг Унд Бауер Акциенгезельшафт Печатная секция рулонной ротационной печатной машины
DE102005045986B4 (de) 2005-09-27 2010-05-12 Koenig & Bauer Aktiengesellschaft Druckeinheit

Also Published As

Publication number Publication date
CN101821099A (zh) 2010-09-01
US7886664B2 (en) 2011-02-15
WO2009049935A1 (de) 2009-04-23
DE102007000860A1 (de) 2009-04-16
DE102007000860B4 (de) 2011-07-14
CN101821099B (zh) 2012-03-21
US20100307355A1 (en) 2010-12-09
EP2185361A1 (de) 2010-05-19

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