EP1775123B1 - Imprimé d'une presse - Google Patents

Imprimé d'une presse Download PDF

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Publication number
EP1775123B1
EP1775123B1 EP07101553A EP07101553A EP1775123B1 EP 1775123 B1 EP1775123 B1 EP 1775123B1 EP 07101553 A EP07101553 A EP 07101553A EP 07101553 A EP07101553 A EP 07101553A EP 1775123 B1 EP1775123 B1 EP 1775123B1
Authority
EP
European Patent Office
Prior art keywords
cylinder
printing unit
cylinders
printing
linear
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
EP07101553A
Other languages
German (de)
English (en)
Other versions
EP1775123A2 (fr
EP1775123A3 (fr
Inventor
Ralf Christel
Oliver Hahn
Karl Schaschek
Georg Schneider
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
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Filing date
Publication date
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Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Publication of EP1775123A2 publication Critical patent/EP1775123A2/fr
Publication of EP1775123A3 publication Critical patent/EP1775123A3/fr
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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
    • B41F13/10Forme cylinders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/08Cylinders
    • 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
    • B41F13/008Mechanical features of drives, e.g. gears, clutches
    • 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
    • B41F13/26Arrangement of cylinder bearings
    • B41F13/30Bearings mounted on sliding supports
    • 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
    • B41F13/32Bearings mounted on swinging supports
    • 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
    • B41F13/36Cams, eccentrics, wedges, or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F27/00Devices for attaching printing elements or formes to supports
    • B41F27/10Devices for attaching printing elements or formes to supports for attaching non-deformable curved printing formes to forme cylinders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F27/00Devices for attaching printing elements or formes to supports
    • B41F27/12Devices for attaching printing elements or formes to supports for attaching flexible printing formes
    • 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
    • B41P2213/00Arrangements for actuating or driving printing presses; Auxiliary devices or processes
    • B41P2213/10Constitutive elements of driving devices
    • B41P2213/20Gearings
    • 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
    • B41P2213/10Constitutive elements of driving devices
    • B41P2213/20Gearings
    • B41P2213/206Planetary gears
    • 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2227/00Mounting or handling printing plates; Forming printing surfaces in situ
    • B41P2227/10Attaching several printing plates on one cylinder
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2227/00Mounting or handling printing plates; Forming printing surfaces in situ
    • B41P2227/10Attaching several printing plates on one cylinder
    • B41P2227/11Attaching several printing plates on one cylinder in axial direction

Definitions

  • the invention relates to a printing unit of a printing press according to the preamble of claim 1.
  • a linearly arranged printing unit wherein a plane through the axes of rotation of the cylinder and the paper web include an obtuse angle.
  • the cylinders are mounted linearly movable in guides in the side frame.
  • a printing unit whose form cylinder has at its periphery in the circumferential direction one, and in the longitudinal direction a plurality of printing plates.
  • a cooperating with the forme cylinder transfer cylinder has a double circumference and is performed in the circumferential direction with a blanket and in the longitudinal direction with two, but circumferentially offset from each other arranged blankets.
  • the JP 100 71 694 discloses printing cylinder with four juxtaposed, and circumferentially offset channels.
  • the printing group cylinders have a so-called double circumference.
  • a double printing unit wherein the axes of rotation of the printing cylinder are arranged in a plane.
  • the cylinders have one four times the width of a newspaper page (double-width) and a perimeter of one page height.
  • the transfer cylinders have endless sleeves, which are laterally replaced by openings in the side wall.
  • the forme cylinder has a double circumference and two printing plates arranged one behind the other.
  • the longitudinally juxtaposed, the pressure plates receiving channels are circumferentially offset from each other in addition.
  • a double printing unit wherein for the purpose of improving the print quality, a plane perpendicular to the paper web to the two axes of rotation of the transfer cylinder connecting plane is inclined by about 0 ° to 10 °.
  • the JP 57-131 561 discloses a double printing unit having arranged in a plane axes of the printing cylinder.
  • the printing cylinder are arranged in phase with each other so that channels for attaching the elevators to each other, and simultaneously roll in the two co-operating printing units.
  • DE 34 12 812 C1 is a double printing unit disclosed, wherein the cylinder axes are arranged in a common plane which is inclined relative to the plane of the web to be printed. The switching on and off of the transfer cylinder takes place along a nearly rectilinear direction of movement by means of double eccentrics.
  • the EP 08 62 999 A2 discloses a double printing with two co-operating transfer cylinders, which are stored for the purpose of switching on and off in eccentric or double eccentric bushes. In another embodiment, they are stored in levers, which are mounted eccentrically to the forme cylinder axis pivotable.
  • EP 10 75 945 A1 is a double printing with arranged in a plane axes of the printing cylinder known, wherein a plurality of printing cylinder mounted in slides, and for the purpose of turning on and off by means arranged on a supporting wall guide elements are designed to be mutually variable.
  • the GB 1,096,950 discloses a printing unit for direct printing, wherein an impression cylinder between two guide rails is movable against a forme cylinder.
  • the guides may in this case be attached to side walls of the machine frame.
  • EP 0 764 523 A1 is a printing unit with several linearly movable cylinders disclosed.
  • the movable cylinders are mounted in carrier plates which are displaceable in each case in a plurality of guides.
  • the invention has for its object to provide a printing unit of a compact, low-vibration and robust built printing press.
  • the achievable with the present invention consist in that the measures a printing press is created, which is compact, low-vibration and robust built, has a high production diversity, and requires a relatively low production and maintenance.
  • the elevators are held on the cylinders not in the over the length of the cylinder continuous, but in circumferentially offset channels, a channel impact during passage of the channel during the rolling of two co-acting cylinder is significantly reduced.
  • the channels are arranged offset by 180 ° to each other in the case of two longitudinally juxtaposed channels.
  • Particularly advantageous is the arrangement of the printing cylinder and the channels such that the mutually offset channels of each cylinder rolls in the region of the opposite, offset channel of the cooperating cylinder. This can be done to compensate for the dynamic forces. With a fixed offset angle of 180 ° and linear arrangement of the cylinder is for all production rates, ie angular velocities, destructive interference before, without an offset angle of the Channels must be varied depending on the speed or frequency.
  • Particularly advantageous is the arrangement of printing cylinders simple scope for printed products smaller and / or variable page size and / or for printers with limited space. Compared to producing the same product on a double-circumference press (without collecting), no "double" plate change is required. In contrast to a double-circumference printing machine in collective operation, it becomes possible to create a side jump from two sides, thereby producing increased flexibility in the printed product.
  • blankets and printing plates makes it possible to store the cylinders stable on both sides, with a simple, robust and inexpensive construction of the printing cylinder receiving side frame is possible.
  • the transfer cylinders are mounted for example in carriages in linear guides in or on the side frame, which allows a movement substantially perpendicular to the plane of the cylinder axes. If the guides are arranged on specially designed inserts of the side frame, the pins shorten and allow the simple formation of an encapsulated lubricant space. A special arrangement of the direction of movement allows the quick and safe parking of form and impression cylinders and of the web.
  • the transfer cylinders are arranged for this purpose in levers which are mounted eccentrically to the forme cylinder axis pivotally. Due to the specific position of the pivot points and the size of the eccentric (to the axis of rotation of the forme cylinder) in conjunction with the selected inclination to the plane of the pressure forming cylinder or between the web and plane of the cylinder is a quick shutdown of the associated cylinders or exemptions of the web possible.
  • the operational switching on and off takes place only by means of the transfer cylinder, in a preferred embodiment by means of only one adjusting movement.
  • the transfer cylinders are mounted in double eccentric bushes which, at least in the area close to the pressure point, allow a movement which is nearly linear and largely perpendicular to the plane of the cylinder axes.
  • the one embodiment of the printing unit with cylinders simple scope and the arrangement in a plane with staggered, but mutually rolling on each other channels, and designed as metal blankets elevators on the transfer cylinders.
  • a relative tangential velocity in the contact region, d. H. in the area of the nip point of two cylinders or rollers acting together is reduced by conscious, correlated with the movement rotation or rotation of at least one of the cylinders or rollers involved.
  • an unnecessarily high load (friction, deformation) of the lifts and / or the lateral surfaces of the cylinders or rollers involved is avoided.
  • a first printing unit 01 of a rotary printing press has a first cylinder 02, z. B. a forme cylinder 02, and an associated second cylinder 03, z. B. a transfer cylinder 03, on ( Fig. 1 ).
  • their axes of rotation define R02; R03 a plane E.
  • the forme cylinder 02 and the transfer cylinder 03 have on its circumference in the circumferential direction on the lateral surface at least one fault, z. B. an interruption 04; 06 in the effective at unwinding lateral surface.
  • This interruption 04; 06 may be a shock of a leading and a trailing end of one or more elevators, which are arranged for example by means of magnetic force or cohesively on the circumference.
  • channels 04; 06 or slots 04; Act 06 which absorb the ends of elevators.
  • channels 04; 06 designated interference are synonymous with other interruptions 04; 06 on the effective lateral surface, ie the outwardly facing surface of the elevator-equipped cylinder 02; 03.
  • the forme cylinder 02 and transfer cylinder 03 each have at least two channels 04; 06 (or interruptions 04, 06) on. These two channels 04; 06 are each in the longitudinal direction of the cylinder 02; 03 in succession, and arranged offset from each other in the circumferential direction.
  • the channels 04; 06 are so on the two cylinders 02; 03 arranged to rotate upon rotation of the two cylinders 02; 03 each on one of the channels 06; 04 of the other cylinder 03; Roll out 02.
  • the offset of the channels 04; 06 of each cylinder 02; 03 in the circumferential direction about 180 °.
  • the transfer cylinder 03 of the first printing unit 01 forms with a third cylinder 07; over a train 08; z. B. a printing substrate 08, a pressure point 09.
  • This third cylinder 07 can be used as a second transfer cylinder 07 ( Fig. 1 ) or as an impression cylinder 07 ( Fig. 2 ), z.
  • the axes of rotation R03 and R07 of the pressure point 09 forming cylinder 03; 07 clamp a plane D in the pressure ON position (see, for example, FIG. Fig. 12 or 13 ).
  • a second printing unit is preferably also arranged in the common plane E. However, it can also define its own level E, which is also different from the level D associated with it.
  • a second transfer cylinder 07 executed third cylinder 07 with a fourth cylinder 11, in particular a second forme cylinder 11 with an axis of rotation R11 together, and forms a second printing unit 12.
  • the two printing units 01; 12 form a on both sides of the same time on the web 08 printing printing unit 13, a so-called.
  • Fig. 5 lie all axis of rotation R02; R03; R07; R11 of the four cylinders 02; 03; 07; 11 during printing, ie in the print-on position AN in the common plane E or D and run parallel to each other.
  • Fig. 13 shows a corresponding printing unit 13, wherein in each case a pair of forming and transfer cylinders 02, 03; 11, 07 a plane E, and the transfer cylinder 03; 07 form the plane D different from the planes E.
  • the double printing unit 13 ( Fig. 1 ) also have the cylinder 07; 11 of the second printing unit 12 channels 04; 06 with the properties described above for the first printing unit 01 with respect to the number and the offset to each other.
  • the channels 04; 06 of the four cylinders 02; 03; 07; 11 are now preferably arranged so that in each case two channels 04; 06 two cooperating cylinder 02; 03; 07; 11 roll on each other.
  • the forme cylinder 02 and the transfer cylinder 03 each have a length L02 in an advantageous embodiment; L03 on which four or more widths of a printed page, z. B. a newspaper page, z. B. 1100 to 1800 mm, in particular 1500 to 1700 mm and a diameter D02; D03, z. B. 130 to 200 mm, in particular 145 to 185 mm, whose circumference U corresponds substantially to a length of a newspaper page, hereinafter "single circumference" ( Fig. 3 and 4 ) called.
  • the device is advantageous in which the ratio between diameter D02; D03 and length L02; L03 of the cylinder 02; 03 is less than or equal to 0.16, in particular less than 0.12, or even less than or equal to 0.08.
  • each of the two cylinders 02; 03 two channels 04; 06 which in each case extend at least over a length which corresponds to two widths of a newspaper page ( Fig. 3 ).
  • two channels 04; 06 in a flight or in each case be arranged alternately.
  • FIGS. 1 to 4 are the interruptions 04; 06 actually as channels 04; 06 or slots 04; 06 executed, so in Fig. 1 to 4 schematically illustrated channels 04; 06 be slightly longer than the width or double width of the print page. Possibly. can two longitudinally adjacent channels 04; 06 also overlap slightly in the circumferential direction. This is shown in the only schematically FIGS. 1 to 4 not so detailed.
  • each of the channels 06 of the transfer cylinder 03 may be a single, continuous clamping and / or clamping device or it may - in the case of over several newspaper page widths continuous channels - in the longitudinal direction one behind several clamping and / or clamping devices may be arranged.
  • the channels 04 of the forme cylinder 02 for example, each also have a single, or more clamping devices.
  • both in the channels 04 of the forme cylinder 02; 11 and in the channels 06 of the transfer cylinder 03; 07 a "minigap technology" used, wherein in a narrow channel 04; 06 inserted with an inclined leading edge a leading end, the elevator on the cylinder 02; 03; 07; 11 is wound, the trailing end also in the channel 04; 06 is inserted, and the ends against slipping, z. B. by means of a rotatable spindle or a pneumatic device, to be clamped.
  • the transfer cylinder 03; 07 have z. B. in an advantageous embodiment ( Fig. 3 ) Only two, circumferentially offset by 180 ° to each other elevators, each having at least one width, which corresponds to two widths of a newspaper page.
  • the elevators or channels 04 of the forme cylinder 02 run; 11 complementary to this and must either, as shown, two continuous, each having a length of two newspaper page widths having channels 04, or in pairs adjacent and aligned escape channels 04, each having a length of a newspaper page width.
  • two clamping devices each have a length which substantially corresponds to a width of a newspaper page, on.
  • the form cylinder 02; 11 are in an advantageous embodiment with four in the longitudinal direction of the forme cylinder 02; 11 juxtaposed bendable elevators occupied, which in the circumferential direction have a length of slightly more than the length of the print image of a newspaper page, and in the longitudinal direction has a width of about one newspaper page.
  • the said arrangement of the interruptions 04; 06 on the respective cylinder 02; 03; 07; 11 and between the cylinders 02; 03; 07; 11 and possibly the linear arrangement of the cylinder 02; 03; 07; 11 are in development also particularly on cylinder 02; 03; 07; 11, which has a length L02; L03, which corresponds to substantially six times the width of a newspaper page.
  • the transfer cylinder 03; 07 and / or the forme cylinder 02; 11 with a diameter D02; D03, which results in a scope that corresponds to substantially twice the length of a newspaper page.
  • the forme cylinder 02; 11 in an advantageous embodiment with respect to their axes of rotation R02; R11 firmly arranged.
  • the transfer cylinder 03; 07 with respect to their axes of rotation R03; R07 designed to be movable and at the same time from the associated forme cylinder 02; 11 and cooperating transfer cylinder 03; 07 ab sensible, or adjusable to this.
  • the transfer cylinder 03; 07 moves while the forme cylinder 02; 11 remain in their fixed, possibly previously adjusted position.
  • the forme cylinder 02; 11 however in corresponding devices, eg. B. in eccentric or Doppelexzenterbuchsen, in linear guides or levers to be stored.
  • the transfer cylinder 03; 07 can, as in the Fig. 5 and 7 schematic, as well as in 8 to 11 shown in more detail, along a linear travel 16, or as not according to the invention in FIGS. 12 and 13 schematically as well as in Fig. 14 and 15 shown in more detail, along a curved travel 17 to be movable. Travel 16 and 17 and the transfer cylinder 03; 07 in a pressure-off position AB are in the Fig. 5 and 12 shown in dashed lines.
  • Fig. 5 and 7 to 11 are exemplary embodiments of the printing unit 01; 12 set forth, wherein at least one of the transfer cylinder 03; 07 is movable along a linear travel path 16 ( Fig. 5 ).
  • the linear travel 16 is carried out by means not in Fig. 5 shown linear guides, which in or on in Fig. 5 also not shown side frame are arranged.
  • the storage in a linear guide for the robust and low-vibration design preferably on page I and on page II of the double printing 13th
  • Fig. 5 the course of the web 08 is represented by the pressure point 09 located in the pressure on position AN.
  • the plane E of the double printing unit 13 ( Fig. 5 ) or the respective printing unit 01; 12 and the plane of the web 08 intersect in an advantageous embodiment at an angle ⁇ of 70 ° to 85 °.
  • This choice of the angle ⁇ contributes to a safe and quick release of the web 08 and / or the parking of the transfer cylinder 03; 07 from each other with minimized travel 16 bill, and minimizes the other negative influences on the print result, which by the degree of a partial wrap of or the transfer cylinder 03; 07 (duplication, lubrication).
  • the required linear travel 16 of each transfer cylinder 03; 07 less than or equal to 20 mm for the on / off of the transfer cylinder 03; 07 to each other / each other, for an exemption of the web 08 in an imprint operation, however, up to 35 mm.
  • the angle ⁇ between travel 16 and the plane of the web 08 preferably greater than or equal to 5 °, z. B. between 5 ° and 30 °, in particular between 5 ° and 20 ° to choose.
  • the angle ⁇ is in particular for forme cylinder 02; 11 simple circumference greater than or equal to 10 °.
  • the angle ⁇ is limited in such an upward direction that the angle ⁇ between the direction of the forme cylinder 02; 11 facing portion of the plane E and the direction of the Abstellweges 16 is at least 90 °. So is a quick and safe shutdown of the transfer cylinder 03; 07 simultaneously from the web 08 and the associated forme cylinder 02; 11 guaranteed.
  • the direction of the travel 16 (in the direction of shutdown) is selected so that an angle ⁇ between the plane D and the travel 16 in the direction of shutdown at least 90 ° and at most 120 °, in particular from 90 ° to 115 ° is.
  • the angle ⁇ is again limited upward such that the angle ⁇ is at least 90 °.
  • the double printing unit 13 is multiple, as in Fig. 7 represented, for example, twice, in a printing unit 19, z. B. a so-called. H-printing unit 19, in a common side frame 20 can be used.
  • Fig. 7 has been dispensed with the separate name of the upper double printing unit 13 similar parts for each underlying double printing unit 13.
  • similar parts for each underlying double printing unit 13.
  • this also applies to individual printing units 01; 12, for double-printing 13 and for differently configured printing units, which several printing units 01; 12 have.
  • the priority instead of a saving in height h even with improved accessibility of the cylinder 02; 03; 07; 11, z. B. for the purpose of changing elevators, Cleaning and washing, maintenance, lie.
  • Fig. 7 indicated by dashed lines the transfer cylinder 03; 07 in a second possible position along the linear travel 16, wherein here, for example, the upper double printing unit 13, z. B. for the printing plate change, in the print-off position AB (solid), and the lower double printing unit 13, z. B. to the continued pressure, in the print-on position ON (solid) is operated.
  • each of the printing units 01; 12 at least one own, but in Fig. 7 only indicated by dashed lines drive motor 14 for the rotary drive of the cylinder 02; 03; 07; 11 on.
  • the printing unit 01 has a high degree of flexibility in the various operating situations such as print run, registration, lift change, washing, web feed. 12 in one embodiment via its own, and mechanically independent of the other drives drive motor 14 per cylinder 02; 03; 07; 11 ( Fig. 7 , below).
  • the drive by the drive motor 14 takes place in an advantageous embodiment in each case coaxially between the axis of rotation R02; R03; R07; R11 and motor shaft, possibly with an angle and / or offset compensating, explained in more detail below coupling. He may, if a "co-moving" of the drive motor 14 or a flexible coupling between the drive motor and the possibly to be moved cylinder 02; 03; 07; 11 is to be avoided, but also done via a pinion.
  • a first embodiment of the realization of the linear travel 16 by means of linear guide show the Fig. 8 and 9 .
  • the pin 23 at least one of the transfer cylinder 03; 07 are mounted in slide bearings 24 designed as bearing housings 24 rotatably mounted in radial bearings 27 (in Fig. 8 and 9 only the arrangement in the region of one end face of the cylinder 02; 03; 07; 11).
  • the bearing housings 24 or slides 24 are movable in linear guides 26, which are connected to a side frame 20.
  • two linear guides 26 are provided for guiding each bearing housing 24 or slide 24, which run parallel to one another.
  • the linear guides 26 of two adjacent transfer cylinder 03; 07 are preferably parallel to each other.
  • the linear guides 26 may be arranged in an embodiment, not shown, directly on walls of the side frame 20, in particular on walls of openings in the side frame 20, which almost perpendicular to the end face of the cylinder 02; 03; 07; 11 run.
  • Fig. 8 and 9 has the side frame 20 in an opening an insert 28, z. B. a so-called. Bell 28, on.
  • the linear guides 26 are arranged on or in this bell 28.
  • the bell 28 has an area which in the direction of cylinder 02; 03; 07; 11 emerges from the alignment of the side frame 20.
  • the linear guides 26 are arranged in or on this area of the bell 28.
  • the distance of the two opposite side frames 20 (only one shown) is oriented i. d. R. on the widest aggregate, z. B. at the wider inking unit 21, and usually causes a correspondingly longer pin on the cylinders 02; 03; 07; 11.Previous of the o. G. Arrangement is that the pins of the cylinder 02; 03; 07; 11 can be kept as short as possible.
  • the bell 28 has in a development on a cavity 29, which is at least partially disposed at the level of the alignment of the side frame 20.
  • this cavity 29 are, as in Fig. 9 shown schematically, the rotary drives of the cylinder 02; 03; 07; 11 with the pins of the cylinder 02; 03; 07; 11 connected.
  • Particularly advantageous pairwise drive the cylinder 02; 03; 07; 11 can also drive connections, such. B. co-acting drive wheels 30, are housed in this cavity 29.
  • On the transfer cylinder 03; 07 can in an advantageous embodiment ( Fig. 9 ) with frame-fixed drive motor 14 between transfer cylinder 03; 07 and drive motor 14 an angle and offset compensating coupling 61 may be arranged to the arrival and Abstellterrorism of the transfer cylinder 03; 07 balance.
  • This can be designed as a double hinge 61 or in an advantageous embodiment as all-metal coupling 61 with two torsionally rigid but axially deformable plate packs.
  • the all-metal coupling 61 can simultaneously compensate for the offset and the change in length caused therefrom. It is essential that the rotational movement is transmitted without play.
  • the coupling 62 is designed as at least slight angle and offset compensating coupling 62. This is also carried out in an advantageous embodiment as all-metal coupling 62 with two torsionally rigid but axially deformable plate packs. The linear movement is absorbed by the disk packs connected in a form-fitting manner in the axial direction with the journal 51 or a shaft of the drive motor 14.
  • the cavity 29 can be limited in a simple manner by means of a cover 31 (dashed), without this increasing the width of the machine or protruding from the side frame 20.
  • the cavity 29 can then be carried out encapsulated.
  • the arrangement of the bell 28 thus shortens the length of the pin, which results in a reduction of the vibration, and allows a simple and variable design, which is suitable for a variety of drive concepts, and largely identical in design, the change between the concepts - with or without drive connections, with or without lubricant, with or without additional couplings - allowed.
  • the drive of the respective bearing housing 24 or carriage 24 in the linear guides 26 takes place in the in Fig. 8 schematically illustrated embodiment z. B. by linear actuators 32, z. B. in each case a screw drive 32, z. B. a threaded spindle which is driven by an electric motor, not shown.
  • the electric motor can here be adjustable with respect to a rotational position.
  • a frame-fixed, but adjustable stop for the bearing housing 24 is provided.
  • the drive of the bearing housing 24 can also be done by means of a lever mechanism. This can also be driven by means of an electric motor or by means of at least one pressurizable cylinder pressure cylinder. If the lever mechanism is driven by means of one or more cylinders which can be acted upon with pressure medium, the arrangement of a synchronizing spindle synchronizing the adjusting movement on the two sides I and II is advantageous.
  • connection of the transfer cylinder 03 to be moved; 07 to the side frame 20 and the bell 28 is in the embodiment according to Fig. 9
  • the bell 28 On both sides of the carriage 24 to be guided, the bell 28 has supporting walls 33 which receive one of the two corresponding parts of the linear guide 26. If necessary, this part can already be part of the supporting wall 33 or incorporated into it.
  • the other corresponding part of the linear guide 26 is arranged on the carriage 24 or incorporated in this or having this.
  • the carriage 24 is guided by two such, arranged on two opposite sides of the carriage 24 linear guides 26.
  • the on the support walls 33 (or without bell 28 directly on the side frame 20) arranged parts of the guides 26 so include the arranged between them slide 24.
  • the active surfaces of the connected to the side frame 20 and the bell 28 parts of the linear guide 26 have in the Pin 23 facing half space.
  • the two parts of the two guides 26 allow in the ideal state, a movement of the carriage 24 only with a degree of freedom as a linear movement.
  • the entire arrangement is in a direction perpendicular to the axis of rotation R03; R07 and perpendicular to the direction of movement of the carriage 24 lying direction against each other clamped essentially free of play.
  • the respective formzylindernahe part of the guide in Fig. 9 larger dimension on a tensioning device, not shown.
  • the mounted in the manner described slide 24 has, for. B. on a radially inwardly directed side of the transfer cylinder 03; 07 facing recess, the pin 23 receiving radial bearing 27.
  • the active surfaces of the parts connected to the side frame 20 and the bell 28 of the linear guide 26 in the pin 23 facing away from the half space are arranged on a carrier 36 connected to the bell 28 (or the side frame 20).
  • the carriage 24 has its associated parts of the linear guide 26 in a side frame 20 and the bell 28 facing recess. These parts may be arranged in the recess as components, or may already be incorporated in the carriage 24 in an inwardly directed surface of the recess.
  • Fig. 10 and 11 the active surfaces of the parts connected to the side frame 20 and the bell 28 of the linear guide 26 in the pin 23 facing away from the half space.
  • these parts of the linear guide are arranged on a carrier 36 connected to the bell 28 (or the side frame 20).
  • the carriage 24 has its associated parts of the linear guide 26 in a side frame 20 and the bell 28 facing recess. These parts may be arranged in the recess as components, or may already be incorporated in the carriage 24 in an inwardly directed surface of the recess.
  • the carriage 24 has a transfer cylinder 03; 07 facing recess, in which the radial bearing 27 is arranged to receive the pin 23.
  • a running surface for rolling elements of the rolling bearing 27 designed as a radial bearing 27 is already incorporated in an inwardly directed surface of the recess.
  • the parts of the guides 26 arranged on the carriage 24 thus comprise the carrier 36 or the parts of the guides 26 arranged on the carrier 36, on the side frame 20 or on the bell 28.
  • At least one of the two the transfer cylinder 03; 07 associated carrier 36 has in an advantageous embodiment, an oriented in the direction of movement of the carriage 24, not visible in the figures long hole for performing the pin 21 to be moved linearly.
  • This slot is aligned at least in part with a likewise not visible, in the bell 28 (or in the associated side frame 20) arranged slot.
  • These slots are penetrated by the pin 23 or connected to the pin 23 shaft, which for the rotary drive of the transfer cylinder 03; 07 with a drive wheel 30 (see Fig. 9 ) or the drive motor 14 is in drive connection.
  • Fig. 10 shows the execution of an executed as a lever mechanism actuating means.
  • the carriage 24 is pivotally connected via a coupling 37 with a lever 38, which is about a substantially parallel to the axis of rotation R03; R07 of the transfer cylinder 03; 07 extending axis is pivotable.
  • the synchronization of the adjusting movement of both transfer cylinders 03; 07, the coupling 37 of the two adjacent slide 24 for the co-operating transfer cylinder 03; 07 articulated with the here designed as a three-armed lever 38 lever 38.
  • the drive of the lever 38 by means of at least one actuator 39, z. B.
  • the arrangement of stops 41 is advantageous, against which the respective carriage 24 is placed in the print-on position ON.
  • These stops are made adjustable to adjust the end position for the transfer cylinder 03; 07 to allow in which their axes of rotation R03; R07 come to lie in the plane E.
  • the system becomes very stiff when the carriage 24 against the stop 41, or the stops 41 (in Fig. 10 two each), is pressed with great force.
  • An adjustment device may be provided, which, in particular during assembly and / or if configurations and / or conditions have changed, a basic setting for the distances of the rotation axis R02; R03; R07; R11 allows.
  • at least one of the transfer cylinder 03; 07 may be adjustable for adjustment in a radial direction.
  • the parts of the linear guides 26 or the carrier 36 assigned to the side frame 20 or the bell 28 can be connected to the side frame 20 or the bell 28 in oblong holes which are sufficient for adjustment purposes.
  • An eccentric and lockable mounting of the radial bearing 27 in the carriage 24 is possible.
  • FIGS. 12 to 18 are not inventive examples of the printing unit 01; 12 set forth, wherein at least one of the transfer cylinder 03; 07 along a curved travel path 17 is movable ( Fig. 12 ).
  • lever 18 is one of the transfer cylinder 03 pivotally mounted about a pivot axis S.
  • the pivot axis S is here z. B. in the plane E.
  • the lever 18 in this case has a length between the mounting of the axis of rotation R03; R07 of the transfer cylinder 03; 07 and the pivot axis S on, which is greater than the distance of the rotation axis R03; R07 of the transfer cylinder 03; 07 from the axis of rotation R02; R11 of the associated forme cylinder 02; 11 in pressure ON position.
  • This is a simultaneous shutdown of co-acting transfer cylinder 03; 07 and the associated forme cylinder 02; 11, and vice versa for hiring.
  • pivot axis S can in particular also, as described in more detail below, in another way eccentric to the axis of rotation R02; R11 of the associated forme cylinder 02; 11, z. B. at a distance to the plane E, be arranged.
  • the storage in a lever 18 is preferably carried out on page I and on page II of the double printing unit thirteenth
  • FIGS. 12 and 13 Also in FIGS. 12 and 13 is the course of the web 08 by the in pressure on position AN located pressure point 09 shown.
  • the plane E of the double printing unit 13 ( Fig. 12 ) or the respective printing unit 01; 12 ( Fig. 13 ) and the plane of the web 08 intersect here in an advantageous embodiment at an angle ⁇ of 70 ° to 85 °.
  • this choice of angle ⁇ contributes to the safe and quick release of the web 08 and / or to stop the transfer cylinder 03; 07 from each other with minimized travel 16 at.
  • it minimizes negative influences on the print result which is due to the degree of partial looping of the transfer cylinder or cylinders 03; 07 is significantly influenced (doubling, lubricating)
  • the double printing unit 13 (here in linear design) is multiple, as in Fig. 14 represented, for example, twice, in a printing unit 19, z. B. the so-called. H-printing unit 19, in the common side frame 20 can be used.
  • Fig. 14 has been dispensed with the separate name of the upper double printing unit 13 similar parts for each underlying double printing unit 13. Among the advantages of this arrangement is the comments on Fig. 7 directed.
  • Fig. 13 indicated by dashed lines (but for clarity oversubscribed) the transfer cylinder 03; 07 in a second possible position along the travel 17, wherein here, for example, the upper double printing unit 13, z. B. for printing form change, in the print-off position AB, and the lower double printing unit 13, z. B. for continued printing, is operated in the print-on position ON.
  • each of the printing units 01; 12 at least one own drive motor 14 for the rotary drive of the cylinder 02; 03; 07; 11 on.
  • the printing unit 01; 12 in a version with its own, mechanically independent of the other drives drive motor 14 per cylinder 02; 03; 07; 11 has a high degree of flexibility ( Fig. 14 shown in dashed lines for upper double printing unit 13).
  • the drive by the drive motor 14 takes place in an advantageous embodiment in each case coaxially between the axis of rotation R02; R03; R07; R11 and motor shaft, possibly via the above already detailed, angle and / or offset compensating couplings 61; 62.
  • the drive can, if a "co-moving" of the drive motor 14 or a flexible coupling between the drive motor and the possibly to be moved cylinder 02; 03; 07; 11 is to be avoided, but also done via a pinion.
  • Fig. 15 shows a side view, wherein two of each frontally Transfer cylinder 03; 07 (dashed) arranged pin 23 only one is visible.
  • the lever 18 is pivotally mounted about the pivot axis S, which is preferably fixed with respect to the side frame 20, but possibly adjustable.
  • the rotation axes R02; R03; R07; R11 of the cylinder 02 shown in broken lines; 03; 07; 11 lie in the illustrated embodiment in pressure-on position again in a plane E, which here with the plane D between the pressure point 09 forming cylinders 03; 07 coincides.
  • the pivot axis S of the lever 18 is eccentric to the rotation axis R02; R11 of the forme cylinder 02; 11 and is located outside the plane E or D.
  • a one- or multi-part coupling 46 for example via a lever or toggle mechanism 46 causes a Ab- or hiring the transfer cylinder 03; 07 at the same time from or to the associated forme cylinder 02; 11 and from or to the respective other transfer cylinder 07; 03.
  • the toggle mechanism 46 is pivotally connected to the lever 18 and a frame-fixed pivot point. The advantageous manner double-acting pressure cylinder acts z.
  • the drive and adjusting means 44; 46 are designed and arranged such that a shutdown of the transfer cylinder 03; 07 takes place in each case in the direction of the obtuse angle ⁇ (for a straight web run 180 ° - ⁇ ) between web 08 and plane D or E.
  • the eccentricity e-S of the pivot axis S to the rotation axis R02; R11 of the forme cylinder 02; 11 is between 7 and 15 mm, in particular about 9 to 12 mm.
  • the eccentricity e-S is in Anstelllage the transfer cylinder 03; 07, d. H. the rotation axes R03; R07 are in the o. G.
  • the eccentric e-S z. B an angle of 12 to 52 °, advantageously 19 to 42 °, in particular 25 to 39 ° to the horizontal H.
  • the rotation axis R02; R11 of the forme cylinder 02; 11 is adjustable, z. B. also eccentric to its attachment to the side frame 20, here to a bore 49, stored.
  • a pin 51 of the forme cylinder 02; 11 arranged in an eccentric bearing 52 and an eccentric bearing bush 52 which is pivotally mounted in the bore 49.
  • a pivot axis S51 of the forme cylinder 02; 11 is an eccentricity of 5 to 15 mm, in particular about 7 to 12 mm eccentric to the axis of rotation R02; R11 of the forme cylinder 02; 11 is located and lies outside the level E.
  • the eccentricity e-S51 is in Anstelllage of form and associated transfer cylinder 02, 03; 11, 07, d. H.
  • the axes of rotation R02, R03 and R11, R07 are in the plane E, oriented so that an angle ⁇ -S51 between the plane E of the pair of cylinders 02, 03 and 11, 07 and a connecting plane of the pivot axis S51 and the axis of rotation R02; R11 of the forme cylinder 02; 11 between 25 ° and 65 °, advantageously between 32 ° and 55 °, in particular between 38 ° and 52 °.
  • the pivot axis S51 is preferably in a half-plane which is farther from the axis of rotation R03; R07 of the associated transfer cylinder 03; 07 as the rotation axis R02; R11 of the associated forme cylinder 02; 11 is located.
  • the pivot axis S51 for the eccentric mounting of the forme cylinder 02; 11 coincides in the example with the pivot axis S of the lever 18.
  • pivot axis S and S51 are not mandatory, but useful.
  • the lever 18 could also be arranged on an eccentric flange of the journal 51 receiving bearing bushing 52, which, however, upon rotation, a simultaneous adjustment of the distances between Form 02; 11 and transfer cylinder 03; 07 and between the transfer cylinders 03; 07 would result.
  • a second adjusting means 53 By means of a second adjusting means 53, the position of the forme cylinder 02; 11 corresponding to the desired position with respect to the plane E or in view of the required distance to the transfer cylinder 03; 07 for the pressure-on position by slight rotation of the eccentric 52 adjustable. This position is fixed, for example after adjustment by means not shown.
  • At least the pins 23 are one of the two transfer cylinders 03; 07, here the transfer cylinder 07, adjustable. They are z. B. also eccentrically mounted in the associated lever 18.
  • An eccentricity e-S23 of a pivot axis S-23 to the rotation axis R03; R07 of the transfer cylinder 03; 07 is between 1 and 4 mm, in particular about 2 mm.
  • the eccentricity e-S23 is in Anstelllage the pressure point 09 forming cylinder 03; 07, d. H.
  • the rotation axes R03; R07 lie in the plane D, oriented so that an angle ⁇ -S23 between the plane D and the connecting plane of the pivot axis S-23 and the axis of rotation R07 (R03) between 70 ° and 110 °, advantageously between 80 ° and 100 °, in particular between 85 ° and 95 °.
  • the angle ⁇ -S23 should be about 90 °
  • Fig. 16 is a non-inventive embodiment according to Fig. 15 given in a representation of a section along the plane E.
  • the pins 51 of the forme cylinder 02; 11 are each in bearings 54, z. B. bearings 54 rotatably mounted.
  • the bearings 54 are arranged in the eccentric bearing 52 and eccentric bearing bush 52, which in turn is pivotally mounted in the bore 49 in the side frame 20. It can in addition to the eccentric bushing 52 and the bearing 54 further bearing rings and sliding or rolling bearings between the bore 49 and pin 51 are arranged be.
  • the lever 18 is on a forme cylinder 02; 11 out of the side frame 20 projecting part of the bearing bush 52, and pivotally mounted relative to this.
  • the lever 18 takes in its the pivot axis S far end of the pin 23 of the transfer cylinder 03; 07, which is arranged rotatably in a bearing 56, and this in the case of the transfer cylinder 07, about the pivot axis S-23 pivotable in an eccentric bearing 57 and in an eccentric bearing bush 57.
  • Such a pivotable bushing 57 may, if necessary, for both transfer cylinder 03; 07 be arranged.
  • the side frame 20 recesses 58, in which the pin 23 of the transfer cylinder 03; 07 are pivotable.
  • the adjusting means 46; 53 and drive means 44 are in Fig. 8 not shown.
  • the rotary drive of the cylinder 02; 03; 07; 11 takes place by means of their own, mechanically from the drive of the other cylinder 02; 03; 07; 11 independent drive motors 14, which are preferably arranged fixed to the frame.
  • the latter has the advantage that the drive motors 14 do not have to be moved.
  • the angle and offset compensating coupling 61 is arranged between the transfer cylinder and the drive motor 14, which are designed as double joint 61 or in an advantageous embodiment as all-metal coupling 61.
  • the all-metal coupling 61 simultaneously equalizes the offset and the change in length caused thereby, wherein the rotational movement is transmitted without play.
  • the drive of the forme cylinder 02; 11 has between pin 51 and drive motor 14, the at least one axial relative movement between the cylinder 02; 11 and drive motor 14 receiving coupling 62, which in order to also manufacturing tolerances and possibly required adjustment movements of the forme cylinder 02; 11 to be able to accommodate adjustment purposes, at least slight angles and offset can be performed balancing.
  • This is also carried out in an advantageous embodiment as all-metal coupling 62, which receives the axial movement through the form-fitting in the axial direction with the pin 51 and a shaft of the drive motor 14 plate packs.
  • a pairwise drive from the drive motor (possibly via other transmission parts not shown) by a pinion 59 on a drive wheel 60 of the transfer cylinder 03; 07 occur when, for example, a special moment flow is to be achieved.
  • a rotation axis R59 of the pinion 59 is then preferably fixed to the frame such that a straight line G1 defined by the rotation axis R59 of the pinion 59 and the pivot axis S of the lever 18 coincides with one of the pivot axis S of the lever 18 and the rotation axis R03; R07 of the transfer cylinder 03; 07 defined plane E18 includes an opening angle ⁇ in the range of + 20 ° to -20 °.
  • the aforementioned embodiments for driving and for moving the transfer cylinder 03; 07 and the design of the lever 18 and the linear guide 26 are equally applicable to printing units, in which the cylinder 02; 03; 07; 11 do not all have the same circumference or diameter ( Fig. 19 ). So can or can in particular the or the forme cylinder 02; 11 have a circumference U, which in the circumferential direction a pressure side, z. B. the long side of a newspaper page, has (hereinafter "single circumference").
  • the cooperating transfer cylinder 03; 07 has z. B. a circumference or diameter, which an integer multiple (greater than 1) that of the forme cylinder 02; 11 corresponds, ie he has z. B. a scope of two or even three printed pages in the newspaper format (or adapted to other formats accordingly) on.
  • an increased rigidity of the printing unit is also advantageously achieved. This is particularly advantageous in connection with cylinders 02; 03; 07; 11, which have a length corresponding to at least four or even six standing printed pages, especially newspaper pages.
  • the cylinders 02; 03; 07; 11 can be driven for each embodiment as described either in pairs or individually by each having its own drive motor 14.
  • a drive is possible, wherein one of the forme cylinder 02; 11 of a printing unit 01; 12 a separate drive motor 14, and the remaining cylinder 02; 03; 07; 11 of the printing unit 01; 12 have a common drive motor 14.
  • a configuration of four or five cylinders 02; 03; 07; 11 with three drive motors 14 may be advantageous: In the case of a double printing unit 13 z. B.
  • the four cylinders 02; 03; 07; 11 in pairs by a drive motor 14 depending on the requirements of the forme cylinder 02; 11 or from the transfer cylinder 03; 07 rotationally driven.
  • Each forming a gear drive wheels 30 between the forme cylinder 02; 11 and the respective associated transfer cylinder 03; 07 each form a drive connection with the associated drive motor 14.
  • the two pairs of drive wheels 30 are preferably arranged to one another so that they are disengaged, which takes place, for example, by axially staggered arrangement, ie in two drive levels.
  • the latter also applies to a possibly arranged pinion between the drive motor 14 and the drive wheel of the forme cylinder 02; 11, when the pair on the forme cylinder 02; 11 is not driven coaxially.
  • Each illustrated drive situations are to be transferred alternately to the two illustrated embodiments for the realization of the linear motion.
  • the drive motors 14 are arranged fixed to the frame in an advantageous embodiment. If a cylinder 02; 03; 07; 11 driving drive motor 14 deviating from this, however, be arranged fixed to the cylinder, it can during the adjusting movement and / or adjustment of the cylinder 02; 03; 07; 11 in a variant also on a corresponding (or the same) guide or a corresponding lever, for. B. on an outer side of the side frame 20, be carried.
  • the drive motor 14 is in each case advantageously designed as an electric motor, in particular as an asynchronous motor, synchronous motor or as a DC motor.
  • a transmission 63 is arranged between each of the drive motors 14 and the driven cylinder 02; 03; 07; 11, a transmission 63 is arranged.
  • This gear 63 may be connected to the drive motor 14 attachment gear 63, z. B. be a planetary gear 63. However, it may also be used as a gear reducer 63, e.g. B. pinion or belt and drive wheel, be executed.
  • each transmission 63, z. B. as a single-capsulated attachment gear 63.
  • the lubricant spaces thus generated are spatially limited and prevent the contamination of adjacent machine parts and contribute to the quality of the product.
  • the drive units each encapsulated separately, d. H. to run with its own lubricant space.
  • An o. G. individual encapsulation extends, for example, to the pairwise drive of two cylinders 02, 03; 11, 07 or - especially in the case of bell 28 described above - around both pairs.
  • a bell 28 may also each for a pair of two cylinders 02; 03; 07; 11 executed. The latter is for example in the sense of modularization advantage.
  • the respective forme cylinder 02; 11 associated inking unit 21 and, if available, the associated dampening unit 22 of a, independent from the drive of the printing cylinder actuator drive motor is driven in rotation.
  • the inking unit 21 and the optionally existing dampening unit 22 each have their own drive motor.
  • an anilox inking unit 21 it may be the anilox roller and, in the case of a roller inking unit 21, the one or more distribution cylinders may be single or groupwise rotationally driven.
  • the one or more distribution cylinders of a dampening unit 22 may or may be driven by rotation individually or in groups.
  • a high variability has the double-width printing machine simple scope especially in the gradation of the possible page numbers in the product, in the so-called "fling". While the thickness per booklet (layer) for the printing machine with double circumference and single width in collective mode (ie maximum product thickness) is variable only in steps of four printed pages, the described double-width printing machine simple circumference leaves a "side skip" from two sides (z. In the Newsprint) too. The product strength and in particular the "distribution" of the printed pages on different booklets of the overall product or products is considerably more flexible.
  • the partial web is thus either guided onto a different former and / or folding apparatus corresponding to the corresponding partial web, or else it is turned on the run of the latter.
  • This is dependent on the mutually circumferentially offset channels 04; 06 of a cylinder 02; 03; 07; 11 in an advantageous embodiment by appropriate execution of the turning end (eg., Preset distances of the rods or the path sections) considered.
  • the fine adjustment or regulation is made with the adjustment paths of the cut register control for the relevant sub-web and / or sub-web strand, in order to bring sub-webs of two different run levels to one another as required.
  • the form cylinder 02; 11 can now be equipped in the circumferential direction with one and in the longitudinal direction with at least four stationary printed pages in broadsheet format ( Fig. 20 ).
  • this form cylinder 02; 11 also optionally in the circumferential direction with two and in the longitudinal direction with at least four lying printed pages in tabloid format ( Fig. 21 ) or in the circumferential direction with two and in the longitudinal direction with at least eight stationary printed pages in book format ( Fig. 22 ) or in the circumferential direction with four and in the longitudinal direction with at least four lying printed pages in book format ( Fig. 23 ) by means of in the circumferential direction of the forme cylinder 02 each one and its longitudinal direction at least one can be fitted on this, flexible printing plate.
  • the double printing unit is web width for a four-paged broadsheet width print page for making two one-ply broadsheet products with four printed pages in one product and four printed pages in the other or two printed pages in the one product and six Print pages in the other product is usable.
  • a web width corresponding to three standing printed pages it is useful for making two single-ply broadsheet format products with four printed pages in one product and two printed pages in the other product.
  • the double printing unit 13 at a four-standing printed pages in broadsheet format corresponding web width for the production of a two-layer product in broadsheet format with four printed pages in one layer and four printed pages in the other layer or two printed pages in one layer and six printed pages usable in the other situation.
  • a web width corresponding to three standing printed pages it can be used for the production of a two-layer product in broadsheet format with four printed pages in one layer and two printed pages in the other layer.
  • the double printing unit 13 is at a four or three or two lying printing pages or a lying printing side corresponding web width for the production of one of a layer in the above order with sixteen or twelve or eight or four printed pages existing product in tabloid format usable.
  • the double-printing unit is in a tabloid four-width printed pages corresponding web width for the production of two single-layer tabloid products with eight printed pages in one product and eight printed pages in the other product or four printed pages in the one product and twelve Print pages in the other product usable.
  • a web width corresponding to three horizontal pages it can be used to make two single-ply tabloid products with four printed pages in one product and eight printed pages in the other.
  • the double printing unit 13 it is possible to produce a book-sized product consisting of one layer in the preceding sequence with thirty-two or twenty-four or sixteen or eight printed pages in the case of eight or six or four or two stationary printed pages.
  • Double printing unit 13 for the production of two single-ply products in book format with sixteen printed pages in one product and sixteen printed pages in the other product or twenty-four printed pages in one product and eight printed pages in the other product.
  • Double printing unit 13 for the production of two single-ply products in book format with sixteen printed pages in one product and sixteen printed pages in the other product or twenty-four printed pages in one product and eight printed pages in the other product.
  • For a six-page printed page in book-sized web width it is useful for making two single-book book sized products with sixteen printed pages in one product and eight printed pages in the other product.
  • a four or three or two lying printing pages or a lying printed page in book format corresponding web width is the double printing unit 13 for the production of one of a layer in the above order with thirty-two or twenty four or sixteen or eight printed pages existing product in Book format usable.
  • the double printing unit 13 is at a four-page printed pages in book format corresponding web width for the production of two single-layer products in book format with sixteen printed pages in one product and sixteen printed pages in the other product or twenty-four printed pages in the product and eight Print pages in the other product usable.
  • a three-page printed pages in book-sized web width it is useful for making two one-ply book sized products with sixteen printed pages in one product and eight printed pages in the other product.

Claims (12)

  1. Groupe d'impression d'une machine à imprimer, au moins l'un de trois cylindres (02 ; 03 ; 07 ; 11), placés avec leur axes de rotation (R02 ; R03 ; R07 ; R11) dans un plan (E) commun lorsqu'on se trouve en position d'application de pression (AN), étant susceptible d'être placé, le long d'une course de réglage (16) linéaire, au choix en position d'application de pression et de dégagement de pression (AN, AB), le cylindre (02 ; 03 ; 07 ; 11), susceptible d'être placé au choix en position d'application de pression et de dégagement de pression (AN, AB), étant monté en palier, par un tourillon (23), chaque fois frontalement dans un boîtier de palier (24), disposé de façon déplaçable, chaque fois, dans au moins un guidage linéaire (26) relié à un bâti latéral (20), et le boîtier de palier (24) présentant un palier radial (27) recevant le tourillon (23), le guidage linéaire (26) étant disposé, latéralement par rapport au bâti latéral (20), sur le côté, tourné vers les cylindres (02 ; 03 ; 07 ; 11), du bâti latéral (20), et un moteur d'entraînement (14), entraînant en rotation le cylindre (02 ; 03 ; 07 ; 11) déplaçable de manière linéaire, étant disposé, fixé au cylindre, de manière qu'il soit guidé conjointement pendant le déplacement de réglage du cylindre (02 ; 03 ; 07 ; 11), caractérisé en ce que le moteur d'entraînement (14) est susceptible d'être guidé conjointement avec le cylindre (02 ; 03 ; 07 ; 11), sur un guidage situé sur une face extérieure du bâti latéral (20), et en ce qu'une butée fixe par rapport au bâti, mais cependant ajustable, pour le boîtier de palier (24), est prévue en position d'application de pression AN, dans le but de limiter la course de déplacement.
  2. Groupe d'impression selon la revendication 1, caractérisé en ce que le guidage linéaire (26) présente des cages de palier à roulement (34) permettant un déplacement linéaire.
  3. Groupe d'impression selon la revendication 1, caractérisé en ce que deux guidages linéaires (26), s'étendant parallèlement, sont prévus pour assurer le guidage de chaque boîtier de palier (24).
  4. Groupe d'impression selon la revendication 3, caractérisé en ce que les guidages linéaires (26) sont disposés latéralement par rapport au bâti latéral (20), sur le côté, tourné vers les cylindres (02 ; 03 ; 07 ; 11), du bâti latéral (20), de manière que des parties, fixées au bâti, des deux guidages linéaires (26) entourent le boîtier de palier (24), avec les parties correspondantes, associées au boîtier de palier (24), des guidages linéaires (26).
  5. Groupe d'impression selon la revendication 1, caractérisé en ce qu'un guidage linéaire (26) est disposé sur un insert disposé dans une ouverture ménagée dans le bâti latéral (20) et ressortant de l'alignement du bâti latéral (20), vers le côté des cylindres (02 ; 03 ; 07 ; 11).
  6. Groupe d'impression selon la revendication 1, caractérisé en ce que le cylindre (03 ; 07) déplaçable est réalisé sous forme de cylindre de transfert (03 ; 07).
  7. Groupe d'impression selon la revendication 1, caractérisé en ce que les parties, fixées au bâti, des guidages linéaires (26) sont disposées sur une zone sortant d'un alignement du bâti latéral (20), dans la direction des cylindres (02 ; 03 ; 07 ; 11).
  8. Groupe d'impression selon la revendication 1, caractérisé en ce que les parties, fixées au bâti, des guidages linéaires (26) sont disposées sur des parois support d'un insert (28) du bâti latéral (20).
  9. Groupe d'impression selon la revendication 1, caractérisé en ce que les surfaces actives des parties, reliées au bâti latéral (20), du guidage linéaire (26) sont tournées dans le demi espace tourné vers le tourillon (23).
  10. Groupe d'impression selon la revendication 1, caractérisé en ce que la surface active de la partie, reliée au bâti latéral (20), d'un guidage linéaire (26) présente deux surfaces actives inclinées l'une vers l'autre, coopérant avec deux surfaces actives inclinées d'une partie, associée au boîtier de palier (24), du guidage linéaire (26).
  11. Groupe d'impression selon la revendication 1, caractérisé en ce que l'ensemble des cylindres (03 ; 07) du groupe d'impression sont entraînés individuellement, au moyen chaque fois d'un moteur d'entraînement (14) propre.
  12. Groupe d'impression selon la revendication 11, caractérisé en ce que le moteur d'entraînement (14) respectif est disposé coaxialement à l'axe de rotation (R02 ; R03 ; R07 ; R11) du cylindre (02 ; 03 ; 07 ; 11).
EP07101553A 2001-04-09 2002-04-06 Imprimé d'une presse Expired - Lifetime EP1775123B1 (fr)

Applications Claiming Priority (4)

Application Number Priority Date Filing Date Title
DE10117703 2001-04-09
DE10138221 2001-08-03
EP02740233A EP1377453B2 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie
EP03103401A EP1375137B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
EP03103401A Division EP1375137B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie

Publications (3)

Publication Number Publication Date
EP1775123A2 EP1775123A2 (fr) 2007-04-18
EP1775123A3 EP1775123A3 (fr) 2007-12-26
EP1775123B1 true EP1775123B1 (fr) 2009-07-01

Family

ID=26009050

Family Applications (20)

Application Number Title Priority Date Filing Date
EP03103407A Expired - Lifetime EP1375139B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP02742672A Expired - Lifetime EP1377455B1 (fr) 2001-04-09 2002-04-06 Element d'impression d'une machine a imprimer comportant un cylindre de transfert pivotant
EP05101366A Expired - Lifetime EP1543964B1 (fr) 2001-04-09 2002-04-06 Unité d'impression pour une machine à imprimer
EP02742673A Expired - Lifetime EP1377456B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert basculable
EP07101541A Expired - Lifetime EP1775125B1 (fr) 2001-04-09 2002-04-06 Imprimé d'une presse
EP05100307A Withdrawn EP1541347A3 (fr) 2001-04-09 2002-04-06 Unité d'impression d'une machine d'impression
EP07101568A Withdrawn EP1782950A3 (fr) 2001-04-09 2002-04-06 Imprimé d'une presse comprenant des guidages linéaires
EP03103402A Withdrawn EP1375138A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie et procédé de réalisation d'un produit imprimé
EP03104076.9A Expired - Lifetime EP1393900B1 (fr) 2001-04-09 2002-04-06 Machine d'impression
EP02742671A Expired - Lifetime EP1377454B1 (fr) 2001-04-09 2002-04-06 Element d'impression d'une machine a imprimer presentant un cylindre de transfert pivotant
EP03103401A Expired - Lifetime EP1375137B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie
EP02740233A Expired - Lifetime EP1377453B2 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie
EP03103411A Withdrawn EP1371485A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP02740232A Expired - Lifetime EP1377452B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant etre deplace lineairement
EP03103443A Withdrawn EP1384579A3 (fr) 2001-04-09 2002-04-06 Elément d'impression d'une machine à imprimer comportant un cylindre de transfert pivotant
EP03103416A Withdrawn EP1378350A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP03103432A Withdrawn EP1378352A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant
EP07101553A Expired - Lifetime EP1775123B1 (fr) 2001-04-09 2002-04-06 Imprimé d'une presse
EP03103427A Expired - Lifetime EP1378351B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant
EP03103442A Withdrawn EP1378353A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant

Family Applications Before (17)

Application Number Title Priority Date Filing Date
EP03103407A Expired - Lifetime EP1375139B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP02742672A Expired - Lifetime EP1377455B1 (fr) 2001-04-09 2002-04-06 Element d'impression d'une machine a imprimer comportant un cylindre de transfert pivotant
EP05101366A Expired - Lifetime EP1543964B1 (fr) 2001-04-09 2002-04-06 Unité d'impression pour une machine à imprimer
EP02742673A Expired - Lifetime EP1377456B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert basculable
EP07101541A Expired - Lifetime EP1775125B1 (fr) 2001-04-09 2002-04-06 Imprimé d'une presse
EP05100307A Withdrawn EP1541347A3 (fr) 2001-04-09 2002-04-06 Unité d'impression d'une machine d'impression
EP07101568A Withdrawn EP1782950A3 (fr) 2001-04-09 2002-04-06 Imprimé d'une presse comprenant des guidages linéaires
EP03103402A Withdrawn EP1375138A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie et procédé de réalisation d'un produit imprimé
EP03104076.9A Expired - Lifetime EP1393900B1 (fr) 2001-04-09 2002-04-06 Machine d'impression
EP02742671A Expired - Lifetime EP1377454B1 (fr) 2001-04-09 2002-04-06 Element d'impression d'une machine a imprimer presentant un cylindre de transfert pivotant
EP03103401A Expired - Lifetime EP1375137B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie
EP02740233A Expired - Lifetime EP1377453B2 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie
EP03103411A Withdrawn EP1371485A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP02740232A Expired - Lifetime EP1377452B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant etre deplace lineairement
EP03103443A Withdrawn EP1384579A3 (fr) 2001-04-09 2002-04-06 Elément d'impression d'une machine à imprimer comportant un cylindre de transfert pivotant
EP03103416A Withdrawn EP1378350A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pouvant être déplacé linéairement
EP03103432A Withdrawn EP1378352A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant

Family Applications After (2)

Application Number Title Priority Date Filing Date
EP03103427A Expired - Lifetime EP1378351B1 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant
EP03103442A Withdrawn EP1378353A3 (fr) 2001-04-09 2002-04-06 Groupe d'impression d'une machine d'imprimerie comportant un cylindre de transfert pivotant

Country Status (11)

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US (7) US7213513B2 (fr)
EP (20) EP1375139B1 (fr)
JP (3) JP2004527399A (fr)
KR (1) KR100564781B1 (fr)
CN (2) CN1297402C (fr)
AT (11) ATE358018T1 (fr)
AU (3) AU2002338305A1 (fr)
DE (12) DE50209830D1 (fr)
ES (8) ES2325639T3 (fr)
RU (2) RU2415016C2 (fr)
WO (5) WO2002081216A2 (fr)

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AU2002338304A1 (en) 2002-10-21
DE50209830D1 (de) 2007-05-10
AU2002338305A1 (en) 2002-10-21
DE50201368D1 (de) 2004-11-25
EP1378350A3 (fr) 2006-10-04
US7213513B2 (en) 2007-05-08
EP1775125A3 (fr) 2007-12-19
EP1378353A3 (fr) 2007-05-30
US7140295B2 (en) 2006-11-28
EP1384579A3 (fr) 2007-05-30
EP1775125A2 (fr) 2007-04-18
RU2415016C2 (ru) 2011-03-27
US20040144268A1 (en) 2004-07-29
US20060278106A1 (en) 2006-12-14
EP1377453A2 (fr) 2004-01-07
AU2002315636A1 (en) 2002-10-21
EP1775123A2 (fr) 2007-04-18
ATE433862T1 (de) 2009-07-15
EP1775123A3 (fr) 2007-12-26
EP1378350A2 (fr) 2004-01-07
EP1378352A2 (fr) 2004-01-07
EP1377456A2 (fr) 2004-01-07
ES2220895T3 (es) 2004-12-16
ATE271973T1 (de) 2004-08-15
EP1775125B1 (fr) 2009-06-24
EP1393900A3 (fr) 2006-06-07
DE50200714D1 (de) 2004-09-02
EP1384579A2 (fr) 2004-01-28
JP4146240B2 (ja) 2008-09-10
ES2281603T3 (es) 2007-10-01
ATE435120T1 (de) 2009-07-15
WO2002081215A2 (fr) 2002-10-17
US20060288890A1 (en) 2006-12-28
RU2003132536A (ru) 2005-04-27
EP1375138A3 (fr) 2007-06-20
DE50200604D1 (de) 2004-08-12
ES2229152T3 (es) 2005-04-16
JP2005519786A (ja) 2005-07-07
US7156018B2 (en) 2007-01-02
EP1543964B1 (fr) 2009-06-17
EP1378353A2 (fr) 2004-01-07
EP1543964A3 (fr) 2006-05-03
EP1378351A2 (fr) 2004-01-07
JP2004527399A (ja) 2004-09-09
ES2325623T3 (es) 2009-09-10
CN1518499A (zh) 2004-08-04
EP1377454A2 (fr) 2004-01-07
DE50200602D1 (de) 2004-08-12
RU2005120377A (ru) 2007-01-20
ES2325639T3 (es) 2009-09-10
DE10215261A1 (de) 2002-10-10
US20080271621A1 (en) 2008-11-06
ATE433859T1 (de) 2009-07-15
EP1371485A2 (fr) 2003-12-17
ATE434520T1 (de) 2009-07-15
US7707935B2 (en) 2010-05-04
ES2220896T3 (es) 2004-12-16
EP1375139A3 (fr) 2005-12-14
ES2229152T5 (es) 2009-11-30
WO2002081213A3 (fr) 2003-07-24
ATE280042T1 (de) 2004-11-15
EP1378351A3 (fr) 2007-04-04
DE50213624D1 (de) 2009-07-30
EP1377455B1 (fr) 2004-07-28
US20040107849A1 (en) 2004-06-10
ATE270614T1 (de) 2004-07-15
EP1377452B1 (fr) 2004-07-07
EP1541347A2 (fr) 2005-06-15
ES2224071T3 (es) 2005-03-01
EP1782950A2 (fr) 2007-05-09
EP1377453B2 (fr) 2009-09-16
WO2002081217A3 (fr) 2003-01-09
EP1375137A3 (fr) 2005-05-18
EP1543964A2 (fr) 2005-06-22
EP1375138A2 (fr) 2004-01-02
EP1393900B1 (fr) 2014-03-12
EP1375137B1 (fr) 2007-03-28
JP2006199046A (ja) 2006-08-03
CN1514775A (zh) 2004-07-21
EP1378351B1 (fr) 2009-06-17
EP1375137A2 (fr) 2004-01-02
ATE270613T1 (de) 2004-07-15
US20050034615A1 (en) 2005-02-17
RU2263029C2 (ru) 2005-10-27
ATE340076T1 (de) 2006-10-15
ES2224070T3 (es) 2005-03-01
WO2002081216A3 (fr) 2002-12-27
KR20030087070A (ko) 2003-11-12
WO2002081216A2 (fr) 2002-10-17
EP1378352A3 (fr) 2006-09-06
ATE358018T1 (de) 2007-04-15
US20070181021A1 (en) 2007-08-09
DE50200670D1 (de) 2004-08-26
EP1371485A3 (fr) 2006-03-29
EP1377454B1 (fr) 2004-07-21
EP1393900A2 (fr) 2004-03-03
DE50213640D1 (de) 2009-08-06
WO2002081213A2 (fr) 2002-10-17
KR100564781B1 (ko) 2006-03-27
EP1375139A2 (fr) 2004-01-02
ATE271465T1 (de) 2004-08-15
DE50213659D1 (de) 2009-08-13
EP1541347A3 (fr) 2006-07-05
WO2002081218A2 (fr) 2002-10-17
CN1297402C (zh) 2007-01-31
EP1782950A3 (fr) 2007-12-19
WO2002081215A3 (fr) 2003-01-09
EP1377452A2 (fr) 2004-01-07
US7469637B2 (en) 2008-12-30
WO2002081216B1 (fr) 2003-01-30
DE50208204D1 (de) 2006-11-02
EP1377455A2 (fr) 2004-01-07
EP1377456B1 (fr) 2004-07-07
WO2002081218A3 (fr) 2003-01-09
WO2002081217A2 (fr) 2002-10-17
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DE50213618D1 (de) 2009-07-30
CN1317125C (zh) 2007-05-23

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