EP3036106B1 - Procédé de changement de clichés et presses à imprimer dotées d'une tour d'impression et d'un dispositif de stockage à mobilité verticale - Google Patents

Procédé de changement de clichés et presses à imprimer dotées d'une tour d'impression et d'un dispositif de stockage à mobilité verticale Download PDF

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Publication number
EP3036106B1
EP3036106B1 EP14729004.3A EP14729004A EP3036106B1 EP 3036106 B1 EP3036106 B1 EP 3036106B1 EP 14729004 A EP14729004 A EP 14729004A EP 3036106 B1 EP3036106 B1 EP 3036106B1
Authority
EP
European Patent Office
Prior art keywords
printing
formes
storage device
memory
tower
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.)
Active
Application number
EP14729004.3A
Other languages
German (de)
English (en)
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EP3036106A1 (fr
Inventor
Karl Schäfer
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
Priority claimed from DE102013216662.1A external-priority patent/DE102013216662B4/de
Priority claimed from DE102013216664.8A external-priority patent/DE102013216664B4/de
Application filed by Koenig and Bauer AG filed Critical Koenig and Bauer AG
Publication of EP3036106A1 publication Critical patent/EP3036106A1/fr
Application granted granted Critical
Publication of EP3036106B1 publication Critical patent/EP3036106B1/fr
Active 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
    • B41F27/00Devices for attaching printing elements or formes to supports
    • B41F27/06Devices for attaching printing elements or formes to supports for attaching printing elements to forme cylinders
    • 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
    • B41FPRINTING MACHINES OR PRESSES
    • B41F27/00Devices for attaching printing elements or formes to supports
    • 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
    • B41F27/1206Feeding to or removing from the forme 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
    • B41P2227/60Devices for transferring printing plates
    • B41P2227/62Devices for introducing printing plates
    • 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
    • B41P2227/60Devices for transferring printing plates
    • B41P2227/63Devices for removing printing plates

Definitions

  • the invention relates to a method for changing printing forms and to a printing press with a printing tower and a storage device according to claims 1 and 8, respectively.
  • a printing form changing system with a printing unit associated storage device is known, which can be used in a development of the storage device usable carrier elements in the form of changing magazines by appropriate transport devices pre-loaded by the printing unit to the printing unit, and there manually or by a manipulator can be used.
  • the printing plates to be broken up are removed by a transfer unit and supplied to the relevant forme cylinder.
  • a return memory is provided, which is arranged horizontally spaced apart from the printing unit in a preferred embodiment, and can be brought by a combined vertical and pivotal movement in a printing near recording position.
  • the DE 10 2006 032 204 B3 relates to a method for providing printing plates at their mounting location on a plate cylinder, wherein a Jerusalem endeavourde printing forme is transported in a transport module from the imaging to the installation site, where they conveyed by a transport device of the transport module out of this to the forme cylinder and the assembly by a in the module integrated rolling element is supported.
  • the module may have an additional shaft for receiving at least one printing form to be discharged.
  • the printing unit to be supplied with printing unit has two printing units on top of each other, which in the vertical two different Define levels of the printing unit, referred to as lower and upper levels.
  • the two printing units to work together via a horizontally extending path, in another embodiment, each with a different printing unit via a vertically extending path.
  • the two horizontal transport rails connecting lifting device provided on the operating side of the printing unit per printing unit level a horizontally extending parallel to the cylinder axis transport rail and arranged in a side adjacent to the printing unit escape arranged.
  • the spent on the horizontal transport rail of the upper printing unit level module can be used to mount the printing forme with its opening having the face down, the spent on the horizontal transport rail of the lower printing unit module with its opening upwards.
  • only a horizontal transport rail extends halfway between the two printing unit levels, wherein the transport modules for the upper and lower levels are rotated by 180 ° to each other to be arranged on the horizontal transport rail.
  • GB 2 413 530 A is associated with a printing tower associated printing form changing system with a printing plate module whose cassette z. B. is detachably arranged on a printing form loading module.
  • the printing forme module printing forms are held one above the other on a plurality of drawer-like support elements, wherein the support elements are independently movable by a drive mechanism associated with the printing form module and in another embodiment by a mechanism provided on the printing form loading module between a storage position and an outer layer.
  • the printing form loading module comprises a pivotable printing form loading head, by means of which a printing form arranged in the outer layer directly above the channel can be held over suction cups and pressed into the channel.
  • the system comprising the printing form loading module and the printing plate module is located in an intermediate space between a frame part carrying the printing unit cylinders and one for the printing form change wegbewegten, the inking unit-carrying frame part between a parking position and located at different heights printing units on a linear guide via a frame-fixed rack together acting gear, which is driven by a motor, vertically movable.
  • the cassette is z. B. on site or in a prepress area equipped with the printing plates of the printing tower, being transported in the second case, for example, a tape system to the printing tower.
  • the DE 10 2008 036 053 A1 discloses a printing press with a printing tower comprising two superimposed printing units.
  • Printing plate cassettes are in this case vertically displaceable so that they, when they are lowered into the region of the lower printing unit, with printing plates for positionally correct or positional recording thereof are equippable, wherein the so populated printing plate cassettes with a lifting device starting from the lower printing unit in the area the vertically above the lower printing unit positioned printing unit can be lifted.
  • shifting between positions occurs with the printing plate cartridge extending in projection between the axial ends of the printing unit cylinders.
  • a material hoist is disclosed in a printing press, by means of which, in one embodiment, new and applied printing forms can be transported between a lower and an upper operating plane.
  • the elevator is located next to a printing section in a frame and comprises one above the other on a trained as a chain circulating means shelves, wherein the chain is driven by a motor fixed to the frame.
  • US 5 427 028 A discloses a printing plate lift.
  • individual printing plates can be mounted in rods which are fixed continuously or in each case only end of the printed form to be suspended on two spaced circulating chains.
  • the EP 2 186 638 A2 discloses a receiving device for printing plates with an angled portion having bar, in which one above the other and side by side angled ends of printing forms are suspended.
  • a strip for Neuplatten and including a strip for old printing plates can be provided.
  • the old and new panels are transferable by a handling device, which is designed as a robot arm, between the forme cylinder and the respective bar.
  • Form cylinders of the printing unit are Position cylinders of the printing unit, which are rigidly mounted in the printing unit or between a working and a rest position in the printing unit.
  • the printing forme magazines provided in various vertical positions can be fed by a handling device, in which the new printing plates to be newly placed are accommodated on platforms that are to be moved vertically.
  • the platforms can previously be equipped by a distribution device.
  • the handling device may include under the bottom of its platforms a vertically movable storage for printing plates placed.
  • the DE 10 2007 024 607 A1 relates to a method and a device for handling printing plates, wherein to be placed printing plates spent in a revolving endless conveyor in a printing tower close position, handed over there by a transfer device to a horizontal conveyor and finally taken over by a handling arm and placed on the plate cylinder position.
  • the printing forme is taken over by the handling arm directly from the endless conveyor.
  • a return transport of used printing plates can be done with the same conveyors in the opposite direction.
  • the DE 44 42 265 A1 relates to a transport system for transporting printing forms, wherein printing forms are transferred by a primary transport means at a printing tower near transfer station to a secondary transport system, which comprises in a first embodiment, a vertically rotating loop or as a whole formed as such.
  • a secondary transport system which comprises in a first embodiment, a vertically rotating loop or as a whole formed as such.
  • the loop can be removed from the intended opening and placed on it with the appropriate position. The removal of the batten can be taken manually or by a plate handling system.
  • the removal station is preferably designed so that used removed printing plates can be dispensed again and transported back via the transfer device
  • an automatic Plattenzu wool- and cylinder charging system is known, wherein a newly aufGHzde printing plates carrying carriage along a front side of a plurality of printing units extending Weg Entry is movable. Between two adjacent printing units in each case a further routing is provided, on which a Druzckplatten from the car entivades handling device is movable.
  • the DE 10 2009 000 750 A1 discloses a storage device vertically movable by a lift on the printing tower.
  • a printing forme feed is provided by means of which a printing form arranged in the storage device can be raised and conveyed horizontally to the magazine.
  • the DE 10 2006 032 201 A1 relates to a handling device for handling printing plates in a printing machine with a plurality of modules for different stages of expansion.
  • a Plattenauf- and Entspannsystem comprises a module for releasing the printing plates from the forme cylinder, a module for taking over the dissolved printing plates and a module for mounting new printing forms.
  • a as Handling device formed module may be provided, which comprises a handling device for disposing of used printing plates.
  • a module designed as a transport device can additionally be provided, through which the new printing forms can be transported to the printing unit and the used ones can be transported away from there.
  • the invention has for its object to provide a method for changing printing forms and a printing machine with a printing tower and a vertically movable storage device.
  • the transport of removed printing forms is a version of particular advantage in which the memory or a wall for loading spent in a position near the printing tower and / or spent a holding means in the conveying path we. This also ensures good accessibility, without having to compromise on reliability.
  • a printing plate change can still be performed in a relatively short time with little manpower.
  • a printing press with a printing unit comprising a plurality of printing units and a printing plate changing system comprising at least one vertically movable storage device for printing plates is particularly advantageous
  • a first, preferably one or more first printing units being provided with an access level associated with a conveyor system is provided for newly alsryde printing forms, by which the vertically movable storage device from a loading position located in the region of the first machine level in a vertically spaced, one or more second printing units with respect to a printing form supply, and lying outside the access area of the first machine plane template position can be brought
  • the same printing tower is assigned a different memory of the vertically movable storage device, which differs on a different conveyor line from the first conveying line by a different conveyor system for newly emergestegende printing forms conveyor system for removed printing forms between a located in the region of the first machine level removal position and a vertically spaced therefrom, the one or more second printing units of the printing tower with respect to a printing form return associated and lying outside the access area of the first
  • the one or more printing units in terms of access associated - machine level includes, removed in a removal process, one or more arranged on a form cylinder of one or two of the second printing units printing forms and located in a loading position Memory or supplied to the memory on the conveyor upstream holding means, said process is repeated until all canceled for the current printing form change printing forms or sets of printing forms of the or the second printing units are removed and fed to the memory in a loading process for accepted printing forms, which is juxtaposed with several removed printing forms and behind or over each other memory is followed at a time which the completion of the pickup operation and the supply immediately or temporally spaced, by a conveyor
  • a first, preferably one or more first printing units of the printing tower provided with regard to an access, machine level is provided, wherein a conveyor system is provided, by which the vertically movable memory between a located in the region of the first machine level removal position and a vertically spaced therefrom, one or more - especially lying on the same printing tower side - second printing units the printing tower is movable with respect to a printing form return associated and located outside the access area of the first machine plane loading position, on the one hand the Conveyor system on at least a portion of the conveyor line has a guide for a guided translational movement of the vertically movable memory whose space or frame-solid part is formed by a one- or multi-part guide structure, and the guide structure closer to the loading position than
  • an o. G. Method or o. G. Printing machine is the loading position for the vertically movable storage device in the region of the one or more printing units associated machine plane, wherein the conveyor system and / or the storage device for the newly printed forms is arranged and arranged so that the storage device on at least a portion of the conveyor line a Transport position occupies, which differs in the inclination of the longitudinal extent of the transported or transportable printing plates and / or in the inclination of the extension of the vertically movable storage device in the longitudinal direction of the transported or transported printing forms relative to the vertical of the respective inclination in a working position of the storage device, in which the storage device is located in an original position associated with the second printing unit (s).
  • a transfer unit for. As a guided along a transport path trolley or a multi-arm manipulator, be provided, through which the abmped printing plates from a formzylindernahen position to the memory or this upstream holding means and / or by which auf istde printing plates from the storage device in a position near the cylinder can be transported.
  • a printing press in particular a web-fed printing press, preferably a newspaper printing press, comprises at least one printing tower 01, which has vertically above one another at least two printing couples 02 arranged on a same side of a web 16 passing through the printing tower 01, each having a printing group cylinder 03 designed as a forme cylinder 03, which frontally in a frame 123, z. B. in side frames 04 a first side of the machine I and a second side of the machine II rotatably mounted in a manner not shown ( Fig. 1 ).
  • the printing tower 01 is designed as a printing tower 01 for operation with a substantially vertical web run, ie a running in production the printing tower 01 web 16 runs - in contrast to printing works of commercial printing z.
  • the preferred printing tower 01 has z. B in a same frame or racks of several, z. B. two stacked printing units 01.1; 01.2, at least four co-operating with a same web page printing units 02, in particular vertically stacked on.
  • two groups of z. B. two each on a same web page superimposed printing units 02 each in frames of two stacked printing units 01.1; 01.2, in particular H-pressure units 01.1; 01.2, arranged, wherein the two superposed printing units 02 z. B. form each with a further printing unit a double pressure point.
  • z. B also stacked printing units 01.1; Be 01.2, wherein the two superimposed printing units 02 a same page and two other, arranged on the other side printing units 02 act together with a satellite cylinder and form a so-called satellite printing unit.
  • the respective forme cylinder 03 is for receiving one, in particular a plurality of releasably fixable on the forme cylinder 03 printing plates 06, z. B printing plates 06, formed.
  • it has on its circumference one or more axially extending openings 07 of channels 08, into which ends 09; 11 of the printing plates 06, z. B Compression 09; 11, insertable and held by form and / or friction ( Fig. 2 a) ).
  • At least one leading end 09 of the printing forme 06 can preferably be bent at an acute angle, so that it can be hooked into a cross-sectionally nose-shaped edge in the region of the opening 07 and thereby be positively fixed with respect to a circumferential direction at the edge.
  • the trailing end 11 is advantageously at an angle of 80 ° - 100 °, preferably 85 ° - 95 °, in particular 90 °, folded.
  • the printing plate 06 is formed flat and has a transverse leading end 09, preferably as a leading, in particular angled beveled end 09, a transverse trailing end 11, advantageously as a trailing, also beveled end 11 and two in the longitudinal direction of the printing plate 06 extending side edges.
  • the transverse direction and / or transverse extent of the printing plate 06 is thus understood the direction of the course of the leading, preferably beveled end 09, wherein the direction of a perpendicular thereto side edge determines the longitudinal direction and / or longitudinal extent of the printing plate 06.
  • the flat-shaped printing plate 06 has a front side, which faces outward in the state spanned on the forme cylinder 03 and / or carries the information to be transferred to the printed image.
  • the side facing the forme cylinder 03 in the assembled state can then be referred to as the rear side.
  • a non-illustrated holding device is provided in the channel 08, which holds at least the trailing end 11 frictionally and / or positively in the channel 08.
  • It can also be formed as optionally with at least two printing pages each bearing two print sides, formed as panorama printing plates 06 or four each bearing a printing side, designed as a single printing forms printing plates 06 or mixed by two einatbreite and a bidirectional printing plate 06 can be equipped.
  • the printing form ends 09; 11 of all adjacent printing plates 06 axially aligned (or in an alternative possibly offset by at most 15 mm in the circumferential direction) to each other on the forme cylinder 03.
  • the channels 08 and / or their openings 07 in an advantageous embodiment on the usable, ie the assignable with printing plates 06 length, formed continuously.
  • the printing form ends of all adjacent printing plates 06 are not arranged in alignment, but each offset in pairs to each other by half a printing plate length in the circumferential direction.
  • the forme cylinder 03 acts in the printing unit 02, which is preferably in the form of an offset printing unit 02, with a printing cylinder 12 designed as a transfer cylinder 12 and at least one inking unit 13 and possibly a dampening unit 14. Transfer cylinder 12, inking unit 13 and possibly provided dampening unit 14 are formed with a tuned to the effective length of the forme cylinder 03 length.
  • the printing unit 01 has here - as already explained above - two with a same web page of the printing unit 01 continuous web 16, z. B formed as a paper web printing substrate 16, co-operating printing 02 on each other. Overall, it has four printing units 02, which form in pairs at their transfer cylinders 12 in pressure-on double pressure points.
  • the printing unit 01 could also have more than four printing units 02 as a structural unit.
  • the two superimposed transfer cylinder 12 could - at least the two superimposed transfer cylinder 12 - cooperate with a common impression cylinder, wherein the pressure unit 01 is then designed as a so-called.
  • 9-cylinder or 39-cylinder satellite pressure unit and the superimposed printing units 02 cooperate with a same web page together.
  • it is formed with two stacked double printing units, in particular as shown as H-printing unit 01.
  • L N nominal width
  • single-pressure molds 06 preferably corresponds to the number n.
  • At least one of the superimposed printing units 02 for example, one of the superimposed groups of printing units 02 of the printing tower 01, in particular the printing units 02 of one of the stacked printing units 01.1; 01.2, is or is at one of a first machine level B1, z. B. first operating level B1, for example, the main operating level B1, such deviating height arranged so that this printing 02 or these printing units 02 for setup or maintenance purposes, especially for the printing form change, not directly from the first machine level B1, z. B. operating level B1, forth by the staff can be reached or are.
  • two of the superimposed printing units 02 advantageously two superimposed groups of printing units 02 of the printing tower 01, in particular the printing units 02 of two stacked printing units 01.1; 01.2, different operating levels B1; B2 assigned to the printing press, ie they are on different height arranged so that they for setup or maintenance purposes only of two different machine levels b1; b2, z. B. operating levels B1; B2, directly accessible by the operating personnel, d. h in their access area, would be or. are.
  • the printing units 02 of the two as printing units 01 in the manner mentioned two different machine levels B1; B2, z. B. operating levels B1; B2 assigned.
  • the at least one upper printing unit 02 in particular, for example, the printing units 02 of the upper printing unit 01.2 assigned an upper operating level B2 in the manner of a gallery level B2, on which the staff for setup and / or maintenance purposes of the upper printing unit 02 or the upper printing units 02 moves and / or can move.
  • the at least one lower of the printing units 02 in particular the printing units 02 one or the lower printing unit 01.1, is a lower operating level B1, z. B. located on a ground level B1 of the printing press main operating plane B1, assigned, on which the staff for setup and / or maintenance of the lower printing unit 02 and the lower printing units 02 moves and / or can move.
  • the z. B. designed as a gallery level B2 second machine level B2 may include at least for maintenance work accessible areas of a gallery 38, which are preferably secured by not shown railings and other security measures against a crash of the staff.
  • Gallery 38 then places a false ceiling 38 between two machine planes B0; B1 with at least partially accessible surfaces - regardless of whether this "false ceiling” is a continuous or interrupted by recesses surface and / or whether it is a flat floor surface or by heels offset in height floor sections of the same machine or Operating level B1; B2 acts.
  • the ground plane B1 is formed, for example, by a floor 39 of a ground floor level or a so-called machine table supporting the at least one printing tower 01. Below this, a machine level (B0), not shown, can be provided, on which one or more reel changers 146 may be provided for supplying the at least one printing tower 01 with at least one web 16.
  • the floor 39 then also provides an intermediate ceiling 39 between two machine levels (B0); B1 in the above and further sense.
  • the printing tower 01 is a printing form change system attached and / or associated, which as system components 17.1; 17.2; 22.1; 22.2 at least one first memory device 17.1, z.
  • the second original location V2 and / or the second redemption location R2 is outside the access area of the main operating level B1, but for example in the access area of the gallery level B2, the first location V1 and / or redemption location R1 is provided m access area of the Hauptbedien- the ground level B1.
  • a total operational walk gallery 38 for the second or upper machine level B2 is a further associated with the printing tower 01, in particular vertical Transport system 43 provided by which a storage device 17.2 between a first position P17.2A, z. B. a loading position P17.2A, which in the above sense a z. B. first operating level B1, in particular the main operating level B1, is assigned, in a spaced-apart in height from the first position second position P17.2B, z. B. a template position P17.2B, in the region of a height-offset second template location V2, can be brought.
  • This second position P17.2B is the former operating level B1; B2 insofar as in o. G. Meaning not associated with them - under normal circumstances, d. H. by an average-sized operator (for example, neither by a 165 mm female, nor by 178 cm male operator) without further aids - not in the access area of this operating level B1; B2 is located.
  • the movement takes place between the two positions P17.2A; P17.2B predominantly (eg> 70% of the conveyor line) or in particular substantially (eg maximum ⁇ 5 ° deviation) vertically and / or at least on the majority (eg> 70%) of the conveyor line linearly
  • the loading position P17.2A of the memory device 17.2 which can be moved into a vertically spaced original position P17.2B can be provided on the ground plane B1 or on a gallery level B2, in which case the transport from the ground plane B1 to a higher original location V2 in the first case
  • the loading position P17.2A of the storage device 17.2, which can be moved into a vertically spaced original position P17.2B, is preferably located on the operating level B1; B2 provided, on which, for example, the newly formed printing plates 06 are conveyed from one of the printing forme 141 concerned functional area 141 forth to the printing tower 01, which - as explained below - manual, motor assisted or can be done entirely automated.
  • This operating level B1; B2 can then be used as the main operating level B1; B2 are considered.
  • the basic level B1 from which lower printing units 02 of the printing tower 01 or the printing units 02 of the lower printing unit 01.1 can be reached, preferably represents the main operating level B1 with the original position V1 assigned to the lower printing units 02 of a web page and the loading position P17.2A being vertical to one height offset template V2 movable storage device 17.2.
  • the printing units 02 of the main operating level B1; B2 associated storage device 17.1 is not moved vertically, so that the loading position P17.1A coincides with a Vorhalteposition P17.2B and therefore listed only in parentheses, indistinguishable in the figures and therefore there is not marked.
  • two such positions spaced apart from one another could be provided on the memory device 17.1 assigned to the main operating plane B1.
  • the transport system 46, 47, 54, 52 conveying the vertically movable storage device 17.2 between the loading position P17.2A and the original position V2 or the original position P17.2B comprises a carriage 46 fixedly or detachably connected to the storage device 17.2 and / or connectable to the carriage 46 vertically conveying drive 47, 54, 52 and z. B. a guide.
  • the carriage 46 can also be used as part of a 17.2, or vice versa, the memory means 17.2 as a cooperating with the to be conveyed and / or vorzuhaltenden printing plates 06 part of a corresponding with the need for storing printing plates 06 means (eg one below).
  • the memory device 17.2 advantageously forms with the carriage 46 a possibly removable for maintenance purposes unit, which can be equipped in the loading position P17.2A with navallegenden printing plates 06.
  • the drive can basically be configured as desired.
  • a belt or rope be applied, which by a relative to the side frame 04 of the printing tower 01 and / or the printing units 01.1; 01.2 stationary motor is driven by a drive wheel and / or is.
  • the loop of the circulating traction means extends substantially in the vertical direction.
  • the carriage or carriage part can be articulated on a guide running vertically on at least the predominant part of the conveying path.
  • a hydraulically or pneumatically actuated push or pull rod can be provided as a fixed drive, by which the carriage or carriage part on the at least predominantly vertically extending guide between the position to be taken for the loading position P17.2A and P17.2B for the holding position P17.2B Position can be moved up and down.
  • the drive takes place via a drive means 47, which is moved with the storage device 17.2 or carriage-resistant, and which interacts frictionally or positively with a stationary transmission part 52 via a corresponding transmission through a carriage-fixed transmission part 54.
  • the vertical conveying takes place in such a way or the vertical conveyor system 43 with vertically movable memory device 17.2 is designed and arranged such that at least some, in particular all to be conveyed printing plates 06 or some, in particular all memory locations for the printing plates 06 to be conveyed at least at the end of their conveying path template position P17.2B the memory device 17.2 and preferably located on the entire conveyor line and advantageously also at the loading position P17.2A the memory device 17.2 within the Druckwerksfrow.
  • This is also intended to cover the formulation that shortens this fact that the storage device 17.2 in the printing unit alignment-in contrast to an escape offset laterally to the machine-is vertically movable by the conveyor system 43 in the above-mentioned manner.
  • the vertical conveying takes place in such a way and / or the vertical transport system 46, 47, 54, 52 with vertically movable storage device 17.2 is designed and arranged such that the printing forms 06 to be conveyed arrive at at least the original position P17.2B of the storage device 17.2 lying at the end of their conveying path and preferably also on the entire conveying path and advantageously also already at the loading position P17.2A of the storage device 17.2 each already in the axial direction of the respective forme 03 considered side register aligned escape and / or location to the destination on the forme cylinder 03.
  • the vertical conveying takes place in such a manner or the vertical conveying system 43 with vertically movable storage device 17.2 is designed and arranged such that the loading position P17.2A of the vertically movable storage device 17.2, which in the above sense concerns access to an operating level B1, in particular the main operating level B1 is arranged on an operating side of this operating plane B1 associated printing unit 02 or group of printing groups.
  • Under operating side of the printing unit 02 or the printing unit 01.1; 01.2 or the printing tower 01 is a Longitudinal side of the printing unit 02 or the printing unit 01.1; 01.2 or the printing tower 01 understood, from which can be intervened by personnel in the printing unit 02 and the printing units 02 for maintenance purposes and / or which parallel and laterally to the printing cylinder 03; 12 runs.
  • On the loading position P17.2A comprehensive operating level B1 connects to the printing unit 01.1; 01.2 or the printing tower 01 on the operating side a walk-in space 118, z. B. operating room 118 at.
  • the storage device 17.2 located in the loading position P17.2A and, if appropriate, the named conveying path is located in a vertical alignment between the printing unit cylinders of the printing tower 01 and the operating space 118 of the relevant operating level B1.
  • loading position P17.2A P17.1A
  • the two memory devices 17.1; 17.2 spaced apart or offset, in particular vertically offset so that they z. B. without mutual interference both with printing plates 06 can be equipped.
  • the one or more printing units 02 associated storage device 17.1 ie the two storage devices are located in respective loading position P17.2A (P17.1A), z. B.
  • the vertically movable and preferably also the other, the same side of the printing tower 01 associated storage device 17.2; 17.1 can in principle be designed in any desired way, in a same frame or frame several, in particular one corresponding to the nominal size W N number m of printing plates 06 side by side, and in a direction radial to the form cylinder axis a plurality of printing plates 06, in particular up to four printing plates 06th to record over or behind each other.
  • This may, for example, a box-like, individual compartments for the printing plates 06 having memory device 17.1; 17.2 which, for example, a drive mechanism for z. B. individual or positional conveying out of the printing plates 06 includes.
  • the memory device 17.1; 17.2 with the drive mechanism for the Auszu conferencen can in a first, z. B. with regard to the space in the printing tower 01 advantageous embodiment be designed such that through this - possibly after an additional method and / or pivoting the memory device 17.1; 17.2 - the printing plates 06 can be fed directly to the relevant forme cylinder 03 or an upstream conditioning device 19.
  • z. B. with regard to a standardization of the memory device 17.1; 17, .2 advantageous embodiment, the at least partially conveyed out by a drive mechanism printing forms 06 z. B. attributable to gripping or holding mechanisms of the printing tower 01, as a transfer unit 18.1; 18.2 trained further system component 18.1; 18.2 and the relevant one Form cylinder 03 or an upstream investment device 19 are supplied.
  • the memory device 17.1; 17.2 be formed without its own drive mechanism for relative promotion between storage device 17.1, 17.2 and printing plates 06, wherein - possibly after an additional translational movement and / or pivoting of the entire storage device 17.1; 17.2 - the auf istden printing forms 06 z. B. by gripping or holding mechanisms of the printing tower 01 attributable transfer unit 18.1; 18.2 are gripped from or from the storage device 17.1, 17.2 and the respective forme cylinder 03 or an upstream investment device 19 are supplied.
  • a particularly advantageous example is given below.
  • the storage device 17.1 which is fitted one behind the other and / or one above the other on all storage locations; 17.2 an outer contour and / or envelope with a perpendicular to the subject carrying surface of the printing plate 06 extending (effective) storage depth T on, which is significantly smaller than, for. B. at most half, preferably at most quarter as large as the memory length L in the longitudinal direction of the held-pressure forms 06, wherein here below the (effective) memory length L is understood to mean the extent, viewed in the longitudinal direction of the printing plates 06, of the front edge of possibly the foremost, to the trailing edge of a possibly posteriormost printing plate 06 (see, for example, US Pat. Fig. 8a ).
  • the memory device 17.1; 17.2, viewed in the longitudinal direction of the assembled printing plates 06, may also have a corresponding length or extension, which is then also effective as a supporting element 24.
  • each forme cylinder 03 on the transport path of the printing plate 06 from the storage device 17.1; 17.2 be assigned to the forme cylinder 03 a side register device, not shown, which the applied pressure plate 06 by z.
  • B lateral stops leads and / or positioned. The stops can be designed to be positionable or adjustable in the axial direction.
  • the printing plate changing system per storage device 17.1; 17.2 and / or vertically on a same operating side of the printing tower 01 spaced template V1; V2 at least one transfer unit 18.1; 18.2 for the transport of the applied printing forme 06 from a form cylinder distant or druckform Arrivnahen first position of the transfer unit 18.1; 18.2, z. B of the pickup position, to a second position of the transfer unit 18.1; 18.2, z. B of the form cylinder near transfer position. It is preferably designed to have a plurality of side by side by the memory device 17.1; 17.2 reproached printing forms to pick up 06 at the same time and to deliver to the respective forme cylinder 03 or a possibly upstream investment device 19.
  • the at least one transfer unit 18 is preferably not part of the storage device 17.1; 15.2 or integrated into it. It is from the memory device 17.1; 15.2 structurally different and / or independent of the storage device 17.1; 15.2 movable in and / or on the printing tower 01, preferably in and / or on each of the two printing units 01.1; 01.2 provided, although they may have a possibly appropriately trained storage device 17.1; 15.2 can at least partially penetrate their path of movement.
  • the memory device 17.1; 17.2 cooperating transfer unit may be formed arbitrarily.
  • -. B. basket, box or shaft-like running - storage device 17.1; 17.2 a kind of o. G. Manipulator trained transfer unit 18.1; 18.2 the researcherlegenden printing plates 06 from the -. B. basket, box or shaft-like memory device 17.1; Remove 17.2 in its receiving position and deliver in its transfer position to the forme cylinder 03 or an investment device 19.
  • the transfer unit 18 moves these in the manner of a transfer carriage in the printing tower 01 or in the relevant printing unit 01.1; 01.2 not free, but along a provided in the printing unit 01 and mechanically predetermined transport path 23; 23a; 23b, z. B formed by a preferably frame-fixed guide system 23 with one or more guide branches 23a; 23b, in particular a preferably frame-fixed rail system 23 with one or more rail branches 23a; 23b.
  • the transport path 23; 23a; 23b is thus preferably formed by a frame-mounted in the printing unit 01 rail system 23, on which the transfer unit 18 is guided guided.
  • the transport path 23; 23a; 23b extends between memory device 17.1; 15.2 and formzylindernahen transfer position within a plane perpendicular to the forme cylinder axis level.
  • One of the printing unit 01 associated transport system thus comprises one or more transfer units 18 and a guide system 23 as a further system component 23 -.
  • B frame-fixed guides comprising - which specify the possible transport path or movement path of the transfer unit (s) 18.
  • Transfer unit (s) 18 and guide system 23 may also be considered together as a system component "transport system" (18, 23).
  • each form cylinder 03 or each printing unit 02 of the printing tower 01 as system components 17; 18; 23; 23a; 23b of a printing plate changing system has its own transfer unit 18 and its own, separate transport path 23; 23a; 23b and possibly a separate printing form memory 17.1; 15.2 with its own template V1; Be assigned V2.
  • a plurality of printing units 02 are arranged one above the other on a same web page in a printing tower 01 are for two superimposed adjacent one another, in particular a same operating level B1; B2 associated printing units 02 but not each printing unit 02 completely separate printing plate changing systems provided, but it engages a two printing units 02 associated common transfer unit 18, z.
  • B is a manipulator or in particular a guided on a common guide system 23 transfer unit, on a two printing units 02 in particular a same operating level B1, B2 and / or
  • Printing unit 01.1; 01.2 associated printing form memory 17.1; 15.2 back In principle, two separate transport systems (18, 23), each one transport path 23; 23a; 23b and a transfer unit 18 comprising, on a common printing form memory 17.1; 15.2 fall back. There may also be two transfer units 18 on a linked transport path 23; 23a; 23b may be provided, which on one of the two printing units 02 associated common, or possibly on two each a printing unit 02 associated printing form memory 17.1; 15.2 access.
  • the two adjacent printing units 02 but a common, connected or connectable guide system 23 and a common printing plate memory 17.1; 15.2, wherein in the common guide system 23, a two adjacent printing units 02 associated transfer unit 18, and in a time-saving alternative, two transfer units 18 to a common printing form memory 17.1; 15.2 access.
  • the transfer unit 18 is not the storage device 17.1 in the present example; Assigned 15.2 - as may be the case, for example, in the case of printing forme magazines - but the respective printing unit 01.1; 01.2, in particular that of the printing unit 01.1; 01.2 frame-fixed associated guide system 23.
  • Fig. 1 shows per printing unit 01.1; 01.2 trained in guided design Transfer unit 18 in a transfer position for one of the two on the same web page of the printing unit 01.1; 01.2 arranged printing units 02.
  • first operating level B1 in particular the main operating level B1 is assigned, and a height-spaced from the first position second position P124.2B, z. B. a loading position P124.2B, in the region of a height-offset second return location R2, can be brought.
  • This second position P124.2B is the first-mentioned operating level B1; B2 insofar as not assigned in the above sense that they - under normal circumstances, ie by an average-sized operator without further aids - not in the access area of this operating level B1; B2 is located.
  • the movement of the memory 124.2 is between the two positions P124.2A; P124.2B predominantly (eg> 70% of the conveyor line) substantially (eg maximum ⁇ 5 ° deviation) vertically and / or at least on the majority (eg> 70%) of the conveyor line linear.
  • the removal position P124.2A of the storable in a vertically spaced loading position P124.2B memory 124.2 be provided on the ground plane B1 or on a gallery level B2, in which case the transport of the used printing plates 06 from a higher return point R2 in the first case, for example, a higher operating level B2, to a removal point in the area of the ground plane B1, or in the second case of a lower level Return location R1, for example, a lower machine level B1; (B0) to a higher location, z. B. a gallery level B2.
  • the removal position P124.2A of the memory 124.2 of the respective storage device 22.2 which can be brought into a vertically spaced return position P124.2B is preferably located on the operating level B1; B2 provided, on which, for example, the removed printing plates 06 - manually, motorized or fully automated - are transported from the printing tower 01 for disposal, recycling or reuse in the printing forme 141 concerned functional area 141.
  • This machine level B1; B2 can be the one on which the new forms 06 to be developed are also conveyed to the printing tower 01, which serves as the main operating level B1; B2 can be considered.
  • the ground plane B1 from which lower printing units 02 of the printing tower 01 and the printing units 02 of the lower printing unit 01.1 can be reached, the main operating level B1 with the lower printing units 02 a web page associated redemption site R1 and the removal position P124.2A of vertical to an offset return location R2 movable storage 124.2dar.
  • the transport system which conveys the vertically movable storage 124.2 between the loading position P124.2B and the removal location R1 or the removal position P124.2A comprises a drive 68, 74, 86 which conveys the storage space 124.2 vertically, and z. B. a guide.
  • the drive 68, 74, 86 can basically be configured as desired. So can in one first, not shown embodiment - such. B. in the preferred embodiment of the drive for a vertically movable storage device 17.2 - the drive via a memory-solid, carried by the memory 124.2 drive means done which frictionally via a corresponding gear through a memory-fixed gear part or positively with a fixed space gear part together.
  • the memory is 124.2 on a traction means 68, z. B. a chain 75, in particular roller chain, a belt 68, in particular toothed belt, possibly a belt or a rope, articulated or fixed.
  • the traction means 68 may be finite and, for example, in the manner of a coil and unwound.
  • the memory is 124.2 on a rotating, preferably positively engaging, traction means 68, z.
  • a chain 68 in particular a roller chain, a belt 68, possibly a belt or rope, articulated or fastened, which by a relative to the side frame 04 or preferably a different frame 73 stationary drive means 74 z.
  • B. electric motor 74 is driven by a drive wheel 86 circumferentially or is.
  • the loop of the circulating traction means 68 extends predominantly in the vertical direction.
  • the memory 124.2 is preferably on a on at least the major part of the conveyor line vertically extending guide, for. B. a single or multi-part guide structure 92 hinged.
  • a hydraulically or pneumatically operated push or pull rod could be provided as a frame or space-solid drive, through which the vertically movable memory 124.2 on the at least predominantly vertically extending guide between the return position P124.2B and the removal position P17.2B and can be moved from.
  • the vertical conveying takes place in such a way or the vertical conveyor system 44 with vertically movable memory 124.2 is designed and arranged such that the used to be conveyed printing plates 06 at least the receiving position P124.2B of the memory 124.2 and preferably on the entire conveyor line and advantageously also at the removal position P124.2A of the memory 124.2 within the Druckwerksfrow in above are called sense.
  • the removal position P124.2A of the at least one printing tower 01 associated vertically movable memory 124.2 and preferably at least a portion of the removal position P124.2A upstream conveyor line, in particular the entire conveyor line from the receiving position P124.2B to the removal position P124.2A, is or are pressure tower remote d. H. on a pressure tower far side of a printing tower 01 in the operating level B1 associated control room 118, arranged. D. h.,
  • the located in removal position P124.2A memory 124.2 and possibly said (sub) conveyor line is located in a vertical alignment, which is spaced from the associated printing tower 01 by at least the control room 118.
  • the vertically movable or movable and preferably also the space-fixed memory 124.1; 124.2 of the same side of the printing tower 01 associated memory devices 22.2; 22.1 can in principle be designed in any way, in or on a same frame or frame several, in particular a corresponding to the nominal size W N number m of printing plates 06 side by side, and in a direction radial to the form cylinder axis a plurality of printing plates 06, in particular up to four Take printing forms 06, over or behind each other.
  • This can basically a box or frame-like, individual compartments for the 22.2, but preferably a basket-like return memory 124.1, 124.2 be in which in a same to the forme cylinder 03 radial alignment removed printing plates 06 without intermediate wall or intermediate frame, z. B. "belly to back", each other.
  • the printing plates 06 are, for example, by the transfer unit 18 alone and / or with the support of a functionally arranged between transfer unit 18 and memory 124.1, 124.2 auxiliary device, for. B. a possibly movable tray table, and / or supported by pivoting the or part of the storage device 22.1, 22.2, equipped with the removed printing plates 06.
  • the configuration and arrangement of the storage device 22.1, 22.2 can be designed in such a way, for example by the arrangement directly on the printing tower 01 and / or with a correspondingly large delivery range, so that the removed printing plates 06 are transferred directly into the transfer unit 18 or a movable part of the storage device 22.1; 22.2 can be introduced.
  • the memory 124.1; 124.2 next to each other with n, z. B. n 4, printing plates 06 and in a row with several, in particular up to at least 4 printing plates 06 can be equipped.
  • the printing plate changing system comprises as further system component (s) 19; 21; 22.1; 22.2 a Jerusalem whyde printing form 06, z. B after delivery by the transfer unit 18, leading abutment 19 and / or a suspension and / or winding supportive pressing device 21 and / or in a preferred embodiment, a detached printing plates 06 receiving memory device 22.1; 22.2 and / or one between two machine levels B1; B2 vertically movable storage device 22.1; 22.2 between a pickup position P124.2A and a picking position P124.2B promoting conveyor system 44 as another system component 20th
  • system components 15; 17.1; 17.2; 18; 19; 20; 21; 22.2; 22.2; 23 which will be described in more detail in the following embodiments, they develop special advantages in a specific combination of two or more of these system components 15; 17.1; 17.2; 18; 19; 20; 21; 22.2; 22.2; 23 through their coordinated interaction.
  • B of an automatic printing form delivery to the printing tower or the printing towers 01, within the printing press, in particular within a printing company comprises.
  • Fig. 1 shows a schematic side view of the printing unit 01 with the system components 17.1; 17.2; 18; 19; 22.1; 22.2; 23 of the printing plate changing system together with the designated in a preferred embodiment or associated memory device 22.1; 22.2 for old panels and possibly optionally provided pressing device 21,.
  • Fig. 3 is exemplified the lower printing units 02 associated transport system, wherein the transfer unit 18, for example, in a non-visible, the upper forme cylinder 03 near position, so that the printing form memory 17.1 is not obscured.
  • the upper printing units 02 associated transport system is constructed in the same way.
  • Fig. 4 shows the upper printing units associated transport system and the vertical transport system omitting the side frames, however, for orientation with an indication of the printing cylinder.
  • the vertical conveyor system 43 is adapted to the vertically movable memory device 17.2, which is at least partially equipped with printing plates 06, in the above-mentioned manner between two machine planes B1; B2 to promote.
  • the conveyor system 43 is configured such that the storage device 17.2 on at least a portion of the conveyor line in a first vertical position L17A, promoted, in which the longitudinal extension of the transported printing plates 06 and / or the (effective) memory length L of the populated vertically movable storage device 17.2 is mostly vertical, d. H. with the vertical z. B forms an angle ⁇ with ⁇ ⁇ 45 °, preferably ⁇ ⁇ 30 °.
  • the term "first vertical position" L17A of the memory device 17.2 is intended to be understood as meaning literally all layers in the above sense, in which the printing plates 06 or the memory length L predominantly, ie with one opposite the horizontal component larger component, extending vertically.
  • the conveyor system 43 is embodied such that P17.2A at least on a non-zero path length in the region of the loading position and / or at least on a non-zero path length in the region of a passage through one of the two machine planes B1 connected via the conveyor system 43; B2 separating false ceiling 38; 39 the storage device 17.2 is conveyed in a vertical position in the above sense.
  • the conveyor system 43 is designed such that the vertically movable storage device 17.2 is located both in loading position P17.2A in a vertical position L17A, as well as on the conveyor line from the loading position P17.2A to at least one position behind the passage in the above sense in vertical position L17A, is promoted.
  • the storage device 17.2 is in its loading position P17.2A in a substantially vertical position (with, for example, at most ⁇ 5 ° deviation from the vertical) and / or on the conveying path from that of the loading position P17.2A to at least one position behind the passage in a substantially vertical position (with, for example, at most ⁇ 5 ° deviation from the vertical) promoted.
  • L17A is on the one hand a simplified placement possible and on the other a small space requirement.
  • a recess 48 in the false ceiling 38; 39 is provided, which is formed in an advantageous development optionally closable and openable by, for example, a flap 56 by z.
  • a drive 57 for example, by a pressurizable cylinder pressure can be opened and closed again.
  • the drive means 47 designed as a motor 47 is carried on or in the carriage 46 or carriage part 46 and acts via a carriage-fixed gear part 54, z. B. a drive wheel 54 or worm wheel, with a relative to the side frame 04 of the printing tower 01 and the printing units 01.1; 01.2 fixed gear part 52 of a feed gear, z. B. a Reibrad-, gear or worm gear, frictionally or positively together.
  • the driven by the motor 47 drive wheel 54 is formed as a gear 54, and the frame-fixed tread 52 as a row of teeth 52 a one or more parts, possibly reinforced by a support rack 58.
  • the optionally reinforced by a lined support beam rack 58 forms z. B.
  • a - especially self-locking trained - braking device 88 which, for example, either for the transport movement solvable, but in a stationary position, in particular the original position of the transport and storage unit 51 is activated, in particular self-locking effective, is.
  • the power supply and / or the signal routing for control and / or measurement signals is z. B. housed in a so-called. Energy chain 88.
  • the carriage 46 on a trajectory compelling guide is provided, the space- or frame-solid part by one or more guide surfaces of the drive carrier 58 and / or an additional single or multi-part frame-fixed - z. B. predominantly vertically extending - guide structure 53, z. B. a single or multi-part guide carrier 53 may be formed.
  • the at least one space-fixed guide surface acts with at least one of the carriage 46 and / or the storage device 17.2 spatially fixed and with this or this mitbewegten stop element 59; 66 together.
  • rollers 59 carriage-fixed stop members 59, which with two - especially in opposite directions facing sides of the guide support 53 provided - guide surfaces cooperate and include the guide bracket 53 between them. As shown, a plurality of vertically spaced rollers 59 may be provided on each side. While the at least one carriage-fixed drive wheel 54, driven by the drive motor 47, by driving into the row of teeth 52 causes the drive, the carriage 46 is forced by the guide on the movement path and secured against accidental tilting of the carriage 46.
  • the memory device 17.2 is now in at least one of the first, vertical position L17A, z. B. also referred to as load position L17A, in a different second, z. B. horizontal position L17.2B be brought.
  • this second layer 17B is the printing form memory 17.1; 15.2 in a working or unloading position L17B.
  • L17B is at least one of the pressure plate 17.1;
  • the longitudinal extension of the transported printing plates 06 and / or the storage length L of the populated vertically movable storage device 17.2 extends predominantly vertically, ie it forms with the vertical z.
  • B is an angle ⁇ with ⁇ > 45 °, preferably ⁇ ⁇ 60 °.
  • the conveyor system 43 is designed such that the storage device 17.2 is at least at the level of the original position P17.2B in a horizontal sense in the above sense second location L17B or spent, d. H. at the end of its conveying path in this position L17B by a further movement can be brought or occupies in the above sense horizontal second layer L17B at the end of their conveying path accordingly.
  • the conveyor system 43 is designed such that the vertically movable storage device 17.2 only on a template-side part of the conveying path behind the passage through the false ceiling 38; 39, in particular only in the area or even at the location of the original position P17.2B in the above sense in the horizontal position L17B is spent or spent.
  • the storage device 17.2 can be moved or spent only at its original position P17.2B in the vertical second layer L17B.
  • the storage device 17.2 can be moved or spent in its second position L17B in a substantially horizontal position (with, for example, at most ⁇ 5 ° deviation from the horizontal).
  • the storage device 17.2 and / or the carriage 46 are guided, for example, by a correspondingly extending guide construction in the near-end region of the guide, such that the storage device 17.2 is moved by movement along the eg in the end region with at least one Guide-shaped curved or curved guide section 53.2 -guided from the transport layer L17A given, for example, by the vertical layers L17A, into the working or unloading position L17B.
  • the storage device 17.2 or the storage part 17.2 of the storage device 17.2 and the carriage 46th comprehensive transport and storage unit 51 is or is moved in translation along a guide path and z. B.
  • the guide construction 53 comprises-for example, in continuation of a guide section 53.1 with a linear guide path-a guide section 53.2 with a curved and / or curved, tilting of the memory device 17.2 or the memory section 17.2 from the first to, for example, the second layer L17A; L17B effecting leadership.
  • This first embodiment can be realized in a first variant in that carriage 46 and storage device 17.2 a rigid, possibly off-mode detachable unit 51, z. B. Transport and storage unit 51, wherein the carriage 46 forming the carriage part 46 and the storage unit 17.2 forming memory part 17.2 on a template-side end portion along a curved guide path comprehensive guide section 53.2 perform a curved movement.
  • the storage part 17.2 is arranged so far from the drive wheel 54 of the carriage part 46 on the unit 51 via, for example, frame or frame parts 67 of a storage part 17.2 and the carriage part 46 supporting frame, so that the carriage part 46 until the end of the conveying path only describes a vertical linear movement, while the leading with respect to the conveying direction storage part 17.2 with its own storage unit fixed stop element 66 (eg., Roller 66) z.
  • a second variant of the first embodiment can be realized in that carriage 46 and storage device 17.2 operationally not rigidly connected to each other, but the preceding in the conveying direction to the original position P17.2B towards storage device 17.2 -. B. about designed as lever arms 67 frame or frame parts 67 - to a parallel to the forme cylinder axis (a to be supplied by the memory device 17.2 printing unit 02) extending, z. B. carriage-fixed pivot axis S46 relative to the carriage 46 is pivotable.
  • the storage device 17.2 or the storage part 17.2 follows with its own storage unit fixed stop element 66 a curved portion having a guide portion 53.2 and is or is thereby brought or spent in the second layer L17B.
  • the carriage 46 or carriage part 46 can then only describe a vertical linear movement up to the end of its conveying path, whereby the rack or an above-mentioned drive (such as a traction device loop) can be formed in a straight line over the full transport length.
  • the conveyor system 43 may be designed to permit the storage device 17.2 to be moved from the first, vertical layer L17A into the second, horizontal layer L17B by two movements with different degrees of freedom of movement that are independent of one another effect.
  • an above-mentioned guide structure 53 is provided, along which the memory element 17.2 is translationally movable or is moved, and in addition to the respective form cylinder axis parallel pivot axis S17.
  • the guide structure 53 for the translatory movement of the storage element 17.2 may be formed in a first variant of the second embodiment on the entire path length to reach the original position P17.2B for guiding along a linear guide path, which again holds the above advantages with respect to the linear drive.
  • the change in position from the first, z. B. vertical transport layer L17A in the second, horizontal position L17B occurs when the storage device 17.2 with respect to the pivot axis S17 their original position P17.2B occupies or has reached.
  • the pivoting about the pivot axis S17 takes place here by a wagon fixed in this embodiment, ie.
  • the drive means 32 preferably a pneumatic or hydraulic cylinder 32 or possibly an electric motor 32, the output side directly or preferably indirectly via a also hinged hinged lever 31 on the memory part 17.2 attacks.
  • the drive means 32 is designed as a pneumatic or hydraulic cylinder 32, which is articulated on the carriage part 46 for the vertically movable storage device 17.2 in this embodiment.
  • the guide structure 53 for the translatory movement of the storage element 17.2 as in a variant of the first embodiment - for example, in continuation of a guide section 53.1 with linear guide curve - a guide portion 53.2 with a curved, a tilting Memory device 17.2 or the memory part 17.2 from the first to one between the first and the second layer L17A; L17B lying third layer L17C causing guiding course include.
  • intermediate layer L17C location L17C forms the longitudinal extent of the transported printing plates 06 and / or the memory length L of the populated vertically movable storage device 17.2 - in compliance with the above requirement of the relative position to the other two layers L17A; L17B - with the vertical z. B an angle ⁇ with 60 °> ⁇ > 15 °, in particular 45 °> ⁇ > 20 ° (see eg. Fig. 8b ).
  • the position change from the intermediate layer L17C into the working or horizontal layer L17B takes place when the storage device 17.2 assumes or has reached its original position P17.2B with regard to its pivot axis S17.
  • the pivoting about the pivot axis S17 from the intermediate layer L17C into the working position L17B takes place here again by means of a drive means 32 mentioned above.
  • the movement from the first layer L17A into the intermediate layer L17C may be carried out or implemented in accordance with the movement from the first to the second layer L17B in the first embodiment according to the first and second alternative of the first variant or the second variant described therein Description part for the translational movement and the components described there with the replacement of the "second layer L17B" by the "third layer L17C" directly applied.
  • the drive means 32 is articulated for pivoting the storage part 17.2 about the pivot axis S17 from the intermediate layer L17C in the working position L17B and engages on the output side directly or preferably indirectly via a likewise hinged hinged lever 31 on the memory part 17.2.
  • arranged storage device 17.1 may with respect to the pivoting about a parallel to the forme cylinder axis of a to be supplied by the memory device 17.1 printing unit 02 pivot axis S17 said be transmitted or applied, however, wherein the pivot axis S17 z. B. operationally fixed to the frame and the relevant, indirectly via the lever 31 or directly on the storage device 17.1 acting drive means 32 z. B. hinged or arranged frame-fixed. Furthermore, here in addition to the horizontal and / or working position L17B z. B.
  • L17B more vertically extending layer L17A; L17C required in which a placement of the memory element takes place or can take place.
  • L17A; L17C forms the longitudinal extent of the transported printing plates 06 and / or the memory length L of the assembled vertically movable storage device 17.1 with the vertical z.
  • B is an angle ⁇ with ⁇ ⁇ 60 °, preferably ⁇ ⁇ 30 °, or is substantially perpendicular (with, for example, at most ⁇ 5 ° deviation from the vertical).
  • the operationally stationary arranged storage device 17.1 can be in the relevant operating level B1; B2 (B0) to be assembled with printing forms 06 for this machine level operator-assigned printing unit 02 or for this machine level operatively associated printing units 02 and then spend in the working position L17B, in which formed by one of the above types of transfer unit 18 one or in particular at the same time a plurality of printing plates 06 can be removed and the affected forme cylinder 03 or one on the transport this upstream conditioning device 19 can be fed.
  • the sketched below cycle for the mounting of new printing plates 06 after the pivoting of the storage device in the working position L17B corresponds to z. B. that of the spatially fixed memory device 17.1.
  • Fig. 3 shows an example of the stacked printing units of the printing tower 01 a view from the operating side, ie from the longitudinal side of the printing unit 02, which can be intervened by staff in the printing unit 02 for maintenance purposes, based on the lower pressure unit 01.1 with the preferred embodiment for the embodiment of Storage device 17; 17.1; 17.2 and / or the design of the transfer unit 18 comprehensive transport system.
  • The, z. B as a printing form memory 17.1; 17.2 trained, memory device 17.1; 17.2 extends in the axial direction of the printing cylinder 03; 12 considered over at least their nominal diameter W N or the nominal width W N of the printing unit 01 and is on both sides for the case of operationally stationary storage device 17.1 on the side frame 04, in the case of the vertically movable storage device 17.2 in the above manner medium or directly wagenfest stored at least the vertically movable, preferably also the stationary storage device 17.1; 17.2 is pivotable about a pivot axis S17, which preferably runs parallel to the axial direction of a form cylinder 03 assigned to the storage device.
  • the memory device 17.1; 17.2, in particular a carrier 36 of the memory device 17.1; 17.2°. a possibly in the memory device 17.1; 17.2 insertable or inserted carrier element 37 and / or provided as a transport member 37 support member 37 has on the surface of one of its longitudinal sides 49 a structure 34 with a plurality (eg, a number j) of transversely q of this longitudinal side 49 spaced-apart holding elements 33 or groups of holding elements 33, in which successively or in the transverse direction r q of this longitudinal side 49 spaced from each other, the bent leading ends 09 of several printing plates 06 can be hooked.
  • a structure 34 with a plurality (eg, a number j) of transversely q of this longitudinal side 49 spaced-apart holding elements 33 or groups of holding elements 33, in which successively or in the transverse direction r q of this longitudinal side 49 spaced from each other, the bent leading ends 09 of several printing plates 06 can be hooked.
  • a plurality of printing plates 06 can thus be stored one behind the other, ie a same plane running parallel to its longitudinal direction and perpendicular to the printing form surface.
  • the holding elements 33 engage behind the z. B at an acute inner angle of ⁇ 90 ° bent ends 09 of the printing plates 06, wherein the holding elements 33 prevent the printing plate 06 at a relative movement in trailing end 11, and the bent ends 09 of several printing plates 06 spaced from each other in the longitudinal direction of the printing plates 06 or scaly each slightly, z. B.
  • the memory device 17.1; 15.2 on a length which corresponds at least to the nominal width W N such a structure 34 with a number j of transversely spaced q q drivers 33 or groups of drivers 33 on. D. h.
  • the longitudinal direction r l of the memory device 17.1; 15.2 are in the axial direction next to one another with the nominal diameter W N corresponding number m of printing plates 06, and in the transverse direction r q of the memory device 17.1; 15.2 one of the number j of the driver 33 or groups of drivers 33 corresponding number of printing plates 06 in succession by the storage device 17.1; 15.2 recordable or vorhaltbar.
  • not all print form memory must always be occupied.
  • the capacity of the storage device 17.1; 15.2 is analogous to other embodiments of the form cylinder dimensioning with regard to the number k or I of circumferentially arranged print pages or printing plates 06 and the number n or m of longitudinally arranged print pages or printing plates 06, taking into account the number of assigned printing units 02 apply.
  • the holding elements 33 having longitudinal side 49 of the memory device 17.1; 15.2 is in this case by the holding elements 33 having longitudinal side of one or more in the storage device 17.1; 15.2 inserted carrier elements 37 formed.
  • a mechanism not shown in detail is provided, which releases the support element 37 for removal by the operator, a manipulator or at the initiative of a process automating control by a drive, so that they are removed from the carrier 36 can.
  • Such, operationally - ie not only for assembly and / or maintenance purposes - releasably designed mechanism for connection or locking between support member 37 and support 36 allows the operator, a manipulator and / or a logistics system mentioned below, the support member 37 from the memory device 17.1; 17.2 or to remove from the printing unit 01 and if necessary, druckappelensfern to equip.
  • the vertically movable storage device 17.2 this means, for example, that the carrier 36 of the storage part 17.2 is populated in its loading position P17.2 with a carrier element 37 equipped with replaceable plates, after, for example, the empty plate originating from the previous plate change Carrier element 37 was first removed.
  • the memory device 17.1; 17.2 preferably has per storage space means for supporting the laterally correct positioning of the printing plates 06 on the printing form memory 17, also called page register means 42, on.
  • the holding elements 33 may also - passive or active - holding mechanisms may be provided which positively or frictionally cooperate with the hinged printing plate 06 in such a way that the latter prevented from unintentional unhooking, but at least is inhibited.
  • the transfer unit 18 together with the guide system 23; 23a; 23b, the transport of the newly applied printing forme 06 from a form cylinder distant or druckform Arrivnahen receiving position to a formzylindernahen transfer position.
  • the transfer unit 18 takes in the first position the applied printing forme 06 of a printing plate 06-carrying printing plate memory 17.1; 17.2, which in principle may be arbitrary.
  • the transfer unit 18 should access the still in or on the printing plate memory 17.1; 15.2 in working position L17B stationary printing form 06 may have, so there no own propulsion mechanism for the printing plates 06 must be provided. In a preferred embodiment, therefore, finds a printing form memory 17.1; 15.2 application, which according to one of the embodiments of the memory device 17.1 described above; 15.2 is formed.
  • the transfer unit 18 can freely access the surface of the printing form 06 still to be placed in the storage position, wherein a plurality of printing plates 06 to be placed one after the other are to be provided in the most confined space.
  • the transfer unit 18 extends parallel to the forme cylinder axis in the printing unit 01 (see, for example, for example, FIG Fig. 5 ). It points in the axial direction of the in Fig. 5 Shaping cylinder 03, not shown, at least one length, so that it overlaps at least partially with all of the adjacent memory locations and corresponding portions for receiving the m on the forme cylinder 03 side by side arranged printing plates 06. It preferably extends over the entire nominal width W N of the forme cylinder 03 to be equipped. It comprises a mono- or multi-part design, extending over the length traverse 61, and at least one receiving device 62, z.
  • B holding device 62 which at least a number m of the maximum by the forme cylinder 03 side by side to be picked up printing plates 06 corresponding number p of receiving elements 63, z. B holding elements 63, or groups of several, z. B comprises two receiving or holding elements 63 (see e.g. Fig. 10 ).
  • the receiving elements 63 are - at least in the idle state (not hired) - preferably arranged in a direction parallel to the longitudinal axis of the transfer unit 18 escape.
  • the receiving elements 63 may in principle be formed with arbitrarily designed receiving means, if they are a Allow picking up and carrying a printing plate 06.
  • the recording could be based on a magnetic effect and the recording elements 63 have receiving means designed as permanent magnets or electromagnets.
  • a mechanical gripping could be provided by appropriate, cooperating with the printing plates 06 gripper.
  • the receiving device 62 is designed as a suction device 62 and the individual receiving elements 63 comprise suction cups 64 as receiving means.
  • two receiving elements 63 with suction cups 64 are provided for each pressure mold 06 to be arranged next to one another axially.
  • the receiving elements 63 of the receiving device 62 can all be fixed on a printing forme memory 17.1; 15.2 or the male printing form 06 facing side of the crossmember 61 may be arranged so that a placement of the suction cups 64 would be effected solely by moving the cross member 61 and the transfer unit 18 in total.
  • the receiving elements 63 are mounted on the cross member 61 or the suction cups 64 on the respective receiving element 63, so that the suction cups 64 with at least one component in a direction perpendicular to the longitudinal axis of the crossbar 61 and transfer unit 18 direction individually, in Groups or all at the same time by one or more actuators to Traverse 61 are relatively movable. If the printing plates 06 are to be received in a number of sections, then only the suction cups 64 or groups of suction cups 64 required for the male printing plates 06 are activated after the placement of all the receiving elements 63 or suction cups 64.
  • At least the recording elements 63 or suction cups 64 assigned to the same section or the same printing plate 06 can be acted upon by pressure medium independently of the other sections.
  • the transfer unit 18, z. B in a second flight a second receiving device (71), z. B second holding device (71), in particular a second suction device (71), arranged with a number of juxtaposed, z. B also suction cups 76 having receiving elements, eg. B. holding element.
  • the one mentioned with respect to the first receiving device 62 preferably with the difference that the receiving elements of the second receiving device (71) relative to the crossbar 61 to one to the longitudinal axis of the crossbar 61 and Transfer unit 18 are mounted pivotably parallel pivot axis (eg., In Fig. 5 ; in Fig.
  • the pivoting can in principle in groups comparable to the above groups (eg per section a 1 ; a 2 ; a 3 ; a 4 or each two adjacent sections a 1 ; a 2 ; a 3 ; a 4 together on a pivotable carrier ), but also individually.
  • actuators based on pressure medium can be provided as the drive, which actuators could then also be connected to valves of the valve station 69, for example.
  • the receiving device (s) 62 (71) are thus by the transfer unit 18 depending on loading of certain receiving elements 63 or groups thereof with negative pressure and / or depending on the positioning of receiving elements 63 one or more printing plates 06 from the printing plate 17.1; 17.2 recordable to this along a transport path 23; 23a; 23b to be loaded to forme cylinder 03 to promote.
  • Conveying the transfer unit 18 along the transport path 23; 23a; 23b can basically by a frame-fixed drive means, for. B carried a frame-mounted drive motor, which via a gear and / or a traction device, the transfer unit 18 along the transport path 23; 23a; 23b promotes.
  • the drive of the transfer unit 18 is effected by a drive means 77 assigned to the transfer unit 18 and carried by the transfer unit 18, eg. B a drive motor 77.
  • the propulsion along the transport path 23; 23a; 23b is carried out by the drive motor 77 via at least one drive wheel 78, which cooperates positively or frictionally with a - with respect to.
  • the transfer unit 18 comprises the drive motor 77, which drives a shaft 81 here, for example with the interposition of a gear 79. On the shaft 81 are -. B each front side of the cross member 61 - the drive wheels 78 rotatably disposed.
  • two drive motors 77 could also be provided for the two front-side drive wheels 78, which, however, would then have to be synchronized electronically. Trained for example as a gear 78 drive wheel 78 acts for the propulsion z. B. with a running path beside or associated series of teeth of a rack 87 together (see, eg. Fig. 10 ).
  • Guiding and securing the transfer unit 18 against tilting can be designed differently depending on the characteristics of the pairing drive wheel / track 78/83 and / or additional cooperating guide elements 82.
  • two drive wheels 78 which interact with the travel path 83, can be arranged one behind the other on the transfer unit 18 per end face in the transport direction. It may also be a drive wheel 78 and an additional guide member 82, z.
  • B a guide roller 82 may be provided on the transfer unit 18 frontally, which with a frame-fixed guide member 84, z.
  • a first guide portion 84a may be formed in a straight line in the region of the receiving position, and, depending on spatial relationships, run in a straight line or with the inclusion of a curve to the transfer position.
  • the forme cylinder 03 of several, in particular two printing units 02 from a same storage device 17.1; 17.2 ago and / or via a common transport path 23; 23a; 23b can be supplied with new printing plates 06, z. B. - as already indicated above - a switch 27 is provided, through which the transfer unit 18 either on the one, or the other transport path 23; 23a; 23b reaches the one or the other forme cylinder 03 associated transfer position.
  • the switch 27 may in principle be designed in any desired manner, so that this optional guiding is possible.
  • z. B designed as a device for variable path limitation, such as a the transport system 18, 23 or guide system 23 attributable stop device and / or sensor arrangement, in the remote region of the transport path 23; 23a; 23b be provided.
  • An optional multiple defined positions for the receiving position predetermining positioning device 28 is particularly advantageous in connection with an embodiment of the printing plate changing system, wherein the transport system 18, 23 in a Receiving area with a printing form memory 17.1; 17.2 cooperates, in which the printing plates 06 scaly, viewed in the transport direction of a receiving unit located in the transfer unit 18 with its ends 09; 11, in particular leading ends 09 are arranged offset from one another, as for example for the execution of the above-mentioned memory device 17.1; 15.2 is the case.
  • a printing form memory 17.1; 15.2 in o. G. Execution is ensured by the multiple positions defining positioning device 28 that the receiving device 62 engages each printing plate 06 at a same distance from the leading end 09.
  • the circuit or programming of the positioning device 28 is to be adjusted accordingly to the course of the printing plate change.
  • the transfer unit 18 After receiving the printing forme 06 or a plurality of printing plates 06, this or these are by the transfer unit 18 via the transport path 23; 23a; 23b spent at the cylinder near transfer position.
  • the subsequent transfer can be made directly to the forme cylinder 03 or to a cylinder-near contact device 19.
  • the steps described below and any aids used are basically of the above-described embodiment of the vertical conveyor system 43 and / or the transport system 18, 23 and / or the memory device 17.1; 15.2 independently, but in conjunction with one or more of the features of the described embodiments for the memory device 17.1; 15.2 and / or the transfer unit 18 and / or the guide system 23 is advantageous.
  • the printing plate 06 or the printing plates 06 initially applied to a formzylinder near investment facility 19 or preferably handed over before being wound on the circumference of the forme cylinder 03.
  • the plant of the printing plate 06 takes place here on a front or preferably back of the flat-shaped printing plate 06, d. H. the contact device 19 cooperates with the printing forme 06 on a front or in particular back of the printing form.
  • the investment device 19 provides u. a. ensure that the printing plates 06 occupy a frame-fixed defined position and, in an advantageous embodiment with a holding device 102, z. B. suction device 102, a defined retention force and / or a force for a desired deformation can be applied.
  • the abutment device 19 extends parallel to the forme cylinder axis in the printing unit 01 (see, for example, FIG Fig. 3 ). It has, viewed in the axial direction of the forme cylinder 03 at least one length, so that they coincide with each of the in Fig. 8 and 9 indicated sections a 1 ; a 2 ; a 3 ; a 4 for receiving the maximum m on the forme cylinder 03 next to each other can be arranged pressure forms 06 at least partially overlaps. It preferably extends over the entire nominal width W N of the forme cylinder 03 to be assembled.
  • It comprises a one-part or multi-part design over at least the length of the m sections a 1 ; a 2 ; a 3 ; a 4 extending storage surface 103, which either directly a top of an axially extending frontally mounted on the side frame 04, not visible here Traverse, or as shown, the top of a arranged on a frontally mounted cross member cover.
  • support elements 108 are provided on both sides of the support surface 103, preferably on an at least intersecting same height in the longitudinal direction of the printing form 06, which support elements 108, which are slightly, z.
  • a pressing device 21 can be provided to assist the hooking and / or winding (see, for example, FIG Fig. 1 ).
  • a pressure device 21 to be provided specifically in the printing plate changing system can basically a formzylindernahe roller 26 of the printing unit 02, z.
  • B is a mold cylinder near the end of the transport path 23a; 23b next application roller 26 of a paint or dampening unit 13; 14, be effective as pressing device 26 or.
  • the memory device 22.1; 22.2 for the withdrawal of used printing plates 06 this is different from and preferably spatially separated from the respective storage device 17.1; 17.2 for receiving and provision of newly alsutzder printing forms 06 formed.
  • This has particular advantages in connection with a fast and independent promotion of new and old printing plates 06 and / or good accessibility to the printing unit 02.
  • the respective storage device 22.1; For this purpose, 22.2 has a - preferably structurally of the memory device 17.1; 15.2 arranged separately - record printing plates 06 memory 124.1; 124.2, z.
  • B storage shaft 124.1, 124.2, on which is parallel to the forme cylinder axis and viewed in the axial direction of the forme cylinder 03 over the entire nominal width W N of the ab personallyde printing plate (s) 06 bearing Form cylinder 03 extends.
  • the memory 124.1; 124.2 is formed adjacent to each other for receiving a number of printing plates 06, which corresponds to the number m of the maximum on the forme cylinder 03 can be arranged side by side printing plates 06. It may comprise individual sections over the length continuously, but possibly also over webs of small thickness.
  • the memory 124.1; 124.2 offers in its width space for at least a number of successively arranged printing plates 06, which the product of the number of the memory 124.1; 124.2 associated printing units 02 and the respective number of circumferentially on the forme cylinders 03 successivelyhirlegenden printing forms 06 corresponds.
  • the memory is 124.1; 124.2 assigned two each double-trained printing units 02, so that the memory 124.1; 124.2 consecutively (at least) four printing forms 06 sums.
  • the memory 124.1; 124.2 or the memory device 22.1; 22.2 can also be associated with printing units 02 of two adjacent printing towers 01, and be arranged between these two printing towers 01.
  • the respective memory device 22.1; 22.2 arranged spatially separated from the printing unit 01 associated with the plate removal in such a way that between storage device 22.1; 22.2 and printing unit 01.1; 01.2 or printing tower 01 - at least in the inactive state of the memory device 22.1; 22.2 - a free space 118 for the lateral access to the printing units 02, z. B an intermediate or particular operating room 118 for the staff remains.
  • the vertical conveyor system 44 for conveying the vertically movable memory 124.2 is designed to move the vertically movable memory 124.2, which is at least partially equipped with used printing plates 06, in the above-mentioned manner between two machine planes B1; B2 and / or between one of the main operating level B1 vertically spaced and / or unreachable return location R2 and the main operating level B1 to promote.
  • the conveyor system 44 is such designed such that the memory 124.2 on the entire or predominant, but at least a portion of the conveyor line in a first position L124, z. B.
  • a transport layer L124 in which the longitudinal extent of the transported printing plates 06 and / or viewed in the longitudinal direction of the printing plates 06 memory length L of the assembled vertically movable memory 124.2 and / or a wall 98 of the memory 124.2 on a page that the memory 124.2 limited on the longitudinal side to the front (sujet side) or back of the printing plates 06 to be transported out, mostly vertical, ie with the vertical z.
  • B forms an angle ⁇ with ⁇ ⁇ 45 °, preferably ⁇ ⁇ 30 °.
  • the conveyor system 44 is designed such that at least on a non-zero path length in the region of a passage through a machine plane B1 connected to the two via the conveyor system 43; B2 separating false ceiling 38; 39 the memory 124.2 is conveyed in a first vertical position L124 in the above sense and / or with a corresponding first vertical position L124 of the longitudinal wall 98. In this transport position L124 it is particularly space-saving to transport vertically.
  • the conveyor system 44 in particular a guide structure 92, is preferably designed such that the vertically movable memory 124.2 and / or the longitudinal wall 98 facing the printing unit 02 associated with the decrease is at least on a section between the passage and the loading position P124.2B into a second position L124B , z. B. catch and / or loading layer L124B, is or is in this, in which the effective length of the memory 124.2 or the wall 98 is in a relation to the first vertical layer L124 more inclined to the vertical second layer L124B. In this position, the memory tilts 124.2 or opens the loading opening 119 stronger towards the relevant printing unit 02 out.
  • the memory 124.2 and / or its wall 98 can in the removal position P124.2A already in transport position L124 or in a further development in relation to the transport layer L124 more inclined to the vertical position L124A, z. B. removal location L124A, be brought or spent.
  • the memory 124.2 or its front-side wall 98 assumes a substantially vertical position (with an effective length of, for example, at most ⁇ 5 ° deviation from the vertical) as transport layer L124, at least in the area of the passage.
  • This or this can optionally be opened or closed by a flap.
  • the entire, running in the shaft-like gap conveyor path for the memory 124.2 is secured against accidental entry of personnel.
  • This backup is for example by a barrier, not shown here, z.
  • fencing enclosure or at least by railing given.
  • two spaced apart in the longitudinal direction of the memory 124.2 attacking pulling means 68 are provided for its promotion, which are driven in an advantageous embodiment together by the electric motor 74 via the example extending between the carriers 41 shaft 91 and / or driven.
  • the memory 124.2 on at least one conveyor section forcing a defined path of movement provided whose space or frame-fixed part by one or more guide surfaces of a one or more parts frame-fixed - z. B. predominantly vertically extending - guide structure 92, z. B. one or more single or multi-part guide support 92 may be formed.
  • the at least one space-fixed guide surface of the guide structure 92 cooperates with at least one spatially fixedly connected to the memory 124.2 and moving along with this stop element.
  • rollers 97 formed first carriage-fixed stop members 97, which z. B. with two - in particular pointing in opposite directions - provided guide surfaces of the guide structure 92 cooperate.
  • rollers 97 formed first carriage-fixed stop members 97, which z. B. with two - in particular pointing in opposite directions - provided guide surfaces of the guide structure 92 cooperate.
  • the guide with the guide carriers 92 on the entire conveying path between the removal position P124.2A and the loading position P124.2B be rectilinear, in particular vertically rectilinear.
  • the guide with the guide carriers 92 on the entire conveying path between the removal position P124.2A and the loading position P124.2B be rectilinear, in particular vertically rectilinear.
  • both the top of the memory 124.2 as Also, in addition, a wall 98 at least on a stretch between the passage and the loading position P124.2B, in particular in at least one loading position close conveyor section, from the transport layer L124 in a second layer L124B, z. B. a catch and / or loading layer L124B, be brought.
  • At least one corresponding to this conveyor section guide section 92.2 is provided, through which in the second embodiment of the memory 124.2 or at least the top of the memory 124.2 or in the third embodiment, only the upper end of the associated printing unit 02 facing wall 98 from the in transport position L124.2A taken vertical flight is in a the printing unit 02 closer vertical escape is transferred or can be, while in the third embodiment, the memory 124.2 remains in the region of its bottom 121 in its first vertical flight and / or position, in the fourth embodiment by appropriate leadership, however also horizontally offset to another vertical and / or a different position is pivoted (see, eg. Fig. 15 and Fig. 16 ).
  • storage-stable stop elements 97; 99 with guide surfaces correspondingly extending Guide sections 92.2 act together, which lead the memory-fixed stop elements 99 on entry into the relevant guide section 92.2 from the vertical movement in the direction of printing unit 02 and depending on the further course of the guide to the end position of the memory 124.2 in the loading position P124.2B ever closer towards printing unit 02 lead after a staggering section again to run vertically to the end position, or after a displacement and possibly a vertical section again lead away from the printing unit 02 in the direction of the first vertical escape.
  • the latter serves, for example, to "catch" the printing forms 06 by means of the storage 124.2 or its wall 98 moved in the direction of the loading position P124.2B and a subsequent closing or reduction of the opening 119.
  • the memory 124.2 on both sides at least one closer to the bottom 121 of the memory 124.2 closer stop element 97, and at least one spaced in the longitudinal direction of the printing plates 06 spaced, the opening 119 of the memory 124.2 closer or more floor-mounted memory-fixed stop element 99th , wherein the bottom-distal stop element 99 for shipment to the catch and / or loading layer L124B already runs in a deviating from the vertical guide portion, while the bottom-near stop element 97 in the first variant z. B. is still in the vertical guide portion 92.1.
  • the near-bottom end of the accumulator 124.2 is also displaced at a conveying section close to the loading position P124.2B, in that its stop element 97 also extends in a movement section 92.2 deviating from the vertical, at least in one movement phase.
  • the memory 124.2 is formed with a relative to the frame part 113 of the memory 124.2 variable position, for example, a 121 closer to the bottom and the forme cylinder 03 of the printing unit 02 parallel pivot axis 98 pivotable wall 98, wherein the above-mentioned second, the opening 119 closer or more distant stop elements 99, z. B. rollers 99, at the variable-position wall 98, and the first, the bottom 121 closer rollers 97 are arranged on the frame part 113 of the memory 124.2.
  • the frame-fixed rollers 97 run, for example, in a different from the guide section 92.2 guide portion 92.1.
  • the return position near guide portion 92.2 is formed such that the wall 98 when moving in the direction of return position P124.2B - guided over the wall-fixed stop elements 99 - with its open-ended end first from the previously vertical direction of movement of the vertical guide portion 92.1 towards printing unit 02 , followed by a path vertically, and then again led away from the printing unit 02.
  • the wall 98 one end of, for example, by the transfer unit 18 or a tool 104, z. B. a rigid or preferably variable-position storage table 104, held under pressure mold 06 under or behind and take over by further movement in the final position of the return position P124.2B out this.
  • the opening 119 of the reservoir 124.2 in the region of the removal position P124.2A is enlarged by the correspondingly formed guide section 92.3 leading to the wall 98.
  • an above-mentioned aid 104 is provided, to which the resumed printing plates 06 deposited by the transfer unit 18, in particular on which can be stored.
  • the aid 104 could be designed in the manner of a flap, which can be arranged on the storage 124.2, eg as a rigid or likewise positionally variable extension on the variable-wall 98 or as a variable-position flap on the storage 124.2.
  • the aid 104 is not memory-stable, but on a frame 04; 73, z. B. the side frame 04 or in particular the frame 73, respectively.
  • the Z. B. formed as a homogeneous or inhomogeneous executed tray table 104 104 aids is pivotable about a pivot axis S104 in such a way that in a receiving position L104A with one end in the space 118 between the printing unit 02 and the memory 124.2, and in a rest position of this end depending after arrangement of the tray table 104 on the side frame 04 or on the frame 73 closer to the side frame 04 or closer to the frame 73 comes to rest and / or that the tray 104 viewed in the longitudinal extension of the ablated printing plates 06 in receiving position L104A predominantly horizontal (ie at an angle ⁇ ⁇ 45 ° between the above-mentioned longitudinal extent and the horizontal) and in rest position L104B.
  • the storage table 104 is preferably pivotable about a pivot axis S104, in the rest position L104B in the region of the lower half, preferably the lower quarter of the longitudinal extent of the delivery table 104 and / or in the end region of the loading opening 119 opposite end, z. B near the bottom 121, runs.
  • a pivot axis S104 In a lying in rest position L104B above the pivot axis S104 area of the tray 104 engages, preferably on both sides, a the storage table 104 pivoting drive.
  • a pure pivoting movement can this may be a powered pulley, belt or chain hoist through which the free end of the tray table 104 between rest and pickup positions L104A; L104B is pivotable and / or is pivoted.
  • the rest position L104B can simultaneously be the discharge position L104B, in which the memory 124.2 engages, for example, the printing plates 06 for their takeover and / or in which the recorded printing plates 06 can be delivered to the storage 124.2.
  • the aid 104 is pivotally mounted about a pivot axis S104, which in turn along a movement path with at least one vertical component movable on the frame 04; 73 is stored.
  • the area of the delivery table 104 lying above the pivot axis S104 engages, preferably on both sides, rotatably about an axis S122.1, a coupling 122, e.g. B. a lever 122 or lever arm 122, to which frame side is pivotable about a frame-fixed pivot axis S122.2.
  • the lever arm 122 is pivotable, for example, by a drive motor 111, preferably via a gear, not shown, and a shaft 114. Upon pivoting of the lever 122, the pivot axis S104 or its bearing is moved or moved movably in the vertical direction by corresponding guide means of a guide 112.
  • the extension and retraction can in this case via a drive, preferably via a coupling 109, z. B. lever mechanism 109, coupled to the pivoting movement may be formed.
  • the storage device 22.2 for the return of the type printing forms can be simple, ie, working only to one side, ie, acting together with a printing tower 01.
  • the memory device 22.2 can be formed on two sides working. It is z. B. Although only a vertically movable memory 124.2, but provided on both sides with a variable position wall 98 and associated guide portion 92.2 and / or its own pivot drive for the wall 98.
  • arranged storage device 22.1 for used printing plates 06 can be transmitted to the above to the vertically movable storage device 22.2 with respect to the pivoting of the memory 104 about a parallel to the forme cylinder axis of the memory device 22.2 associated printing unit 02 extending pivot axis S104 be applied, but with the frame 04; 73 associated pivot axis S122.1 of the lever 122 z. B. can be arranged fixed to the frame and the other end of the lever 122 on a wall 98 of the memory 124.1 or the wall 98 as a pedestal continuing extension can attack.
  • a drive mechanism not shown here, then raises, in order to produce a change between resting and receiving position, the memory 124.1, which pivots about the vertically moved pivot axis and moves with its upper end or the extension in the direction of printing unit 02. After receiving the printing form (s) 06, the memory is lowered again, wherein it pivots in a predominantly vertical position.
  • the example of the printing plate changing system for the spaced apart from the main operating plane B1 printing unit 06 or a spaced group of printing units with the vertical conveyor system 43 for the Neuplatten and / or the conveyor system 44 for the old plates and the example as preferred executed the transfer unit 18 are the following sequences for the printing form change or only portions thereof are presented as subsequences.
  • the possibly provided holding means is opened in the channel 08 in the manner of way on the forme cylinder 03 so that the in particular trailing end 11 can emerge.
  • the printing plate 06 is unwound by rotating the forme cylinder 03 by a holding member 63; 72 of the transfer unit 18 gripped and spent by the latter along a possibly curved transport path 23 and possibly a switch 27 up to a print works remote transfer position. If the transfer unit 18 is now in the transfer position, then the holding elements 72 can be deactivated and the printing forme 06 is moved to the storage 124.2 located in the receiving position P124B or preferably the z. B. as a storage table 104 trained, and located in the receiving position L104A aids 104 delivered.
  • the memory 124.2 located in the return position P124.2B can either be directly loaded by the transfer unit 18, or the memory 124.2 previously positioned below the return position P124B is moved into its position P124B by corresponding actuation of the drive means 74 he engages behind and receives the printed by the transfer unit 18 printing plates 06.
  • the printing plates 06 are first delivered to the transfer unit 18 by the transfer unit 18.
  • the memory 124.2 which was previously positioned below the return position P124B, is moved into its position P124B by corresponding actuation of the drive means 74, wherein it engages behind and picks up the printing forms 06 held by the auxiliary 104.
  • Example of one of the loading position P17.2A vertically spaced printing unit 02 is the carriage 46 with the printing form memory 17.2 and / or one can be equipped with a support member 37 carrier 36 in the working position P17.2A or is spent in this.
  • this printing form memory 17.2 is equipped by the operator with new printing plates 06 or it is the empty support member 37 of the printing form memory 17.2 exchanged for a stocked with new printing plates 06 support member 37.
  • the carriage 46 is conveyed with printing plate memory 17.2 to the vertically offset Vorhalteposition P17.2B, which as stated above can be done exclusively linear or with a pivotal movement causing guidance from the preferably vertical transport layer L17A in an intermediate layer L17C or directly into a working position L17B.
  • the working position L17B can be achieved by pivoting out of the transfer position L17A or the intermediate layer after the translational movement (see above).
  • first and second (pivotable) holding elements 63; 72 are provided, now after reaching the working position L17B, the second holding elements 72 of the transfer unit 18 are brought by pivoting them with the male, (uppermost) pressure mold 06 engages and activated, so here subjected to negative pressure.
  • the holding elements 72 are pivoted back in druckwerksferner direction back, so that a train of the leading printing form edge in the holding elements 33 of the printing plate memory 17.1; 17.2 is formed, wherein the printing forme 06 experiences a defined position and orientation and / or a subsequent unhooking of the edge is made possible.
  • the printing form memory 17.1; 17.2 pivoted back to its rest position L17A or L17C liner.
  • the forme cylinder 03 is either already in an angle of rotation position required for the mounting plates or will be spent. Now the transfer unit 18 carrying the printing forme 06 is moved into its cylinder-near transfer position, where it is created by lowering, here pivoting, the holding elements 72 (63) on the investment device 19 or even pressed. The retaining elements 396 assigned to the abutment device 19 are then activated, in this case subjected to negative pressure, the retaining elements 72 (63) assigned to the transfer unit 18 deactivated and lifted off or pivoted away so that the printing plate 06 is transferred to the abutment device 19.
  • the printing forme 06 is already positioned by the transfer unit 18 during transfer by the transfer unit 18 before transfer to the installation device 19 in such a way that the leading end 09 is positioned on or in the opening 07 of the channel 08 and / or even already at least partially in FIG hooked this.
  • the forme cylinder 03 is rotated in the production direction, while pressing elements of a possibly provided pressing device 21 are employed.
  • the under pressure die 06 is wound onto the circumference of the forme cylinder 03 until pressing elements of the pressing device 21 finally press the trailing end 11 into the channel 08, where they are held there by activation of appropriate means.
  • the said processes for the Abplatten and Aufplatten are each on the other printing 02 and / or on - if available - to transfer the printing units 02 a vertically offset printing unit 01.1, wherein according to the formation of the respective transport path 23; 23a; 23b (path shape, turnout) can be added to individual steps or omitted.
  • One or more of the described system components 15; 17.1; 17.2; 18; 19; 20; 21; 22.1; 22.2; 23 and / or sequences, for example at least one or more of the conveyor systems 15; 44 system component 15; 44 and / or the sequence of supply and / or the withdrawal of the used printing plate 06 can, in an advantageous Be further integrated development in an overall system of printing form logistics, which not only the printing tower 01 associated vertical promotion and / or the printing unit 01.1; 01.2 associated handling (storage, transport, up / down plates), but also the handling within the printing press or the printing in a functional area 141 of the printing forme production and / or in a transport and / or logistics system for the promotion of at least the for a new production required printing plates 06 with z.
  • Fig. 26 shows schematically and exemplarily functional areas 141; 143; 149 and aggregates 01; 144; 146; 147; 148 of a printing plant, wherein for example in a here designated as engine room 143 functional area 143 two printing units 01, a folder 144 and two pasters 146, and in a designated here as printing forme 141 functional area 141 exemplified a printing plate setters 147 (for exposure of the printing plates 06 with the corresponding Print images) and a printing form punch 148 (for folding the printing form ends 09, 11 and / or punching of the side register defining recesses) are shown.
  • a third, at least one control station for controlling the printing press exhibiting functional area 149 is shown.
  • the functional areas 141; 143; 149 may be spatially arranged in another way or spaced from each other and / or by z. B optionally closable passages having walls separated from each other.
  • the printing plates 06 produced in the printing plate production 141 for a new production must be equipped with the relevant position for the printing side of the product and the color separation point of the printing press, ie at a defined place of a concrete forme cylinder 03 of a particular printing unit 01 for equipping the forme cylinder 03, spent and finally raised there.
  • the transport of the printing plates 06 to the printing units 01 out by manually or only motor assisted moving trolley 151 accomplished (exemplified in Fig. 27), through which a plurality of printing plates 06 a printing unit 02 in a defined spatial allocation directly or a plurality of printing plates 06 of a printing unit 02 are received in a defined spatial allocation receiving support member 37 and are receivable or receivable.
  • the transport carriage 151 is preferably provided with retaining elements in the first case, in particular at predefined places, or in the second case with one or more of these support elements 37 carrying a plurality of printing plates 06, in particular at predefined locations.
  • the respective, equipped with several printing plates 06 support member 37 may preferably as a storage element 37 in the manner of a removable magazine 37 on the spot on the printing unit 01 in total, d. H. taken together with the printing plates 06 from the trolley 151 and are used together with the printing plates 06 in or on a corresponding, the printing unit 01 associated carrier 36 positioned in such a way that the carrier with the printing plates 06 supporting support member 37 36 of the printing unit 01.1 ; 01.2 assigned form, equipped with new printing plates 06 form printing magazine.
  • the carrier element 37 in the above-mentioned manner with a plurality of spaced apart in the longitudinal direction of the printing plates 06 successively spaced apart holding elements 33 for receiving the bent ends 09; 11 of the printing plates 06 formed.
  • the above to the embodiment of the support member 37, the carrier 36 and its arrangement in the printing unit 01 is applied.
  • holders can be provided near the printing tower at the level of the main operating level B1, for example on the side frames 04 of the printing units 01, which z.
  • the transport of the printing plates 06 to the printing towers 01 out z. B by trolley 152 (exemplified in Fig. 20 ), which is guided as part of a transport system 142 along a corresponding transport path 153, z. B. along a running as a rail system 153 guide system 153, for example, the parking positions PP1; PP2; PP3; Move PP4 (see eg Fig. 26).
  • the movement on the rail system 153 is motorized and preferably with regard to the control of the trolley 152 in the rail system 153, z.
  • B which concerns any necessary branches and / or the stopping at a target position (eg parking or transfer position PP1, PP2, PP3, PP4), at least on the way between leaving the printing plate production 141 or a buffer storage 156 for z , B already equipped carrier elements 37 and / or trolley 151 and the target position, ie the respective printing tower 01, automated via a control device, not shown.
  • a target position eg parking or transfer position PP1, PP2, PP3, PP4

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rotary Presses (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)
  • Supply, Installation And Extraction Of Printed Sheets Or Plates (AREA)

Claims (17)

  1. Procédé pour changer des plaques d'impression sur une machine à imprimer avec une tour d'impression (01) qui comprend un ou plusieurs premiers et un ou plusieurs seconds groupes d'impression (02) les uns sur les autres, dans lequel le ou les seconds groupes d'impression (02) se situent à l'extérieur d'une zone d'accès d'un premier niveau de machines (B1) et sont espacés à la verticale du ou des premiers groupes d'impression (02), dans lequel
    - dans un processus de retrait une ou plusieurs plaques d'impression (06) agencées sur un cylindre porte-plaque (03) du ou de l'un des seconds groupes d'impression (02) sont retirées et sont amenées à une unité de stockage (124.2) qui se trouve dans une position de chargement (P124.2B) ou à un moyen de retenue (104) agencé en amont de l'unité de stockage (124.2) sur le chemin de transport, ce processus est renouvelé jusqu'à ce que toutes les plaques d'impression (06) ou tous les jeux de plaques d'impression (06) à retirer pour le changement de plaques d'impression en cours soient retirés du ou des seconds groupes d'impression (02) et amenés à l'unité de stockage (124.2) dans un processus de chargement pour plaques d'impression (06) retirées,
    - se recoupant dans le temps avec le processus de retrait ou décalé dans le temps avant ou après un processus de chargement pour de nouvelles plaques d'impression (06), un dispositif de stockage (17.2) différent de l'unité de stockage (124.2) et qui se trouve en position de chargement (P17.2A) est garni de plusieurs plaques d'impression (06) destinées au ou aux seconds groupes d'impression (02) ou d'au moins un élément porteur (37) pré-garni de plaques d'impression (06) destiné au ou aux seconds groupes d'impression (02),
    - après achèvement du processus de chargement pour de nouvelles plaques d'impression (06) à amener au ou aux seconds groupes d'impression (02), le dispositif de stockage (17.2) garni de nouvelles plaques d'impression (06) est acheminé sur un premier trajet de transport qui se situe à l'intérieur d'un alignement de groupes d'impression formé par l'espace entre les deux niveaux qui coupent perpendiculairement frontalement les axes de cylindre porte-plaque du cylindre porte-plaque (03) de la tour d'impression (01), par un dispositif de transport (43) pour de nouvelles plaques d'impression (06), depuis la position de chargement (P17.2A) vers une position de présentation (P17.2B) affectée au ou aux seconds groupes d'impression (02) en ce qui concerne l'amenée de plaques d'impression,
    - et l'unité de stockage (124.2) remplie de plaques d'impression (06) retirées est acheminée dans une position de prélèvement (P124.2A) affectée au premier niveau de machines (B1), à un instant qui suit immédiatement ou séparément dans le temps l'achèvement du processus de retrait et l'amenée réalisée et prise en charge par l'unité de stockage (124.2), sur un trajet de transport différent du premier trajet de transport et qui se situe également à l'intérieur de l'alignement de groupes d'impression, par un dispositif de transport (44), différent du dispositif de transport (43) pour de nouvelles plaques d'impression (06), pour des plaques d'impression (06) retirées.
  2. Procédé selon la revendication 1, caractérisé en ce que lors du transport de l'unité de stockage (124.2) depuis la position de prélèvement (P124.2A) vers sa position de chargement (P124.2B), sur au moins une partie du trajet, l'unité de stockage (124.2) ou une paroi (98) du stockage (124.2) tournée vers la tour d'impression (01) est acheminée au moins dans la zone de l'extrémité supérieure dans un état (L124B) plus proche de la tour d'impression.
  3. Procédé selon la revendication 2, caractérisé en ce que les plaques d'impression (06) à retirer ou retirées du cylindre porte-plaque (03) sont reçues par une unité de transfert (18) affectée à un ou plusieurs seconds groupes d'impression (02), et transmises à l'unité de stockage (124.2) elle-même ou à un moyen de retenue (104),
    dans lequel les plaques d'impression (06) retenues par l'unité de transfert (18) ou par le moyen de retenue (104) en un emplacement proche de la position de chargement (P124.2B) sont saisies par derrière par l'unité de stockage (124.2) ou sa paroi (98) lors du transport de l'unité de stockage (124.2) dans sa position de chargement (P124.2B) dans l'état de capture et/ou de chargement (L124B) adopté sur une partie du trajet.
  4. Procédé selon la revendication 3, caractérisé en ce que dans un processus de chargement pour de nouvelles plaques d'impression (06), un dispositif de stockage (17.2) différent de l'unité de stockage (124.2) et qui se trouve en position de chargement (P17.2A) est garni de plusieurs plaques d'impression (06) destinées au ou aux seconds groupes d'impression (02) ou d'au moins un élément porteur (37) pré-garni de plaques d'impression (06) destiné au ou aux seconds groupes d'impression (02) et après achèvement du processus de chargement pour de nouvelles plaques d'impression (06) à amener au ou aux seconds groupes d'impression (02), le dispositif de stockage (17.2) garni de nouvelles plaques d'impression (06) est acheminé par un dispositif de transport (43) différent du dispositif de transport (44) pour des plaques d'impression (06) retirées depuis la position de chargement (P17.2A) vers une position de présentation (P17.2B) affectée au ou aux seconds groupes d'impression (02) en ce qui concerne l'amenée de plaques d'impression.
  5. Procédé selon la revendication 1, 2 ou 4, caractérisé en ce que le dispositif de stockage (17.2) déplaçable à la verticale pour des plaques d'impression (06) à appliquer nouvellement est acheminé pendant le déplacement de translation depuis la position de chargement (P17.A) vers sa position de présentation (P17.2B) et/ou par un changement d'état après atteinte de la position de présentation (P124.2B) en un état de travail (L17B) différent d'un état de chargement adopté en position de chargement (P17.2A) et/ou d'un état de transport (L17A) adopté au moins par moments pendant le transport.
  6. Procédé selon la revendication 1, 2, 4 ou 5, caractérisé en ce que le transport des nouvelles plaques d'impression (06) à remonter depuis la position de présentation (P17.1A ; P17.2A) jusqu'au cylindre porte-plaque (03) du second groupe d'impression (02) en question et/ou le transport des plaques d'impression (06) retirées depuis le cylindre porte-plaque (03) du second groupe d'impression (02) en question jusqu'au moyen de retenue (104) ou directement jusqu'à l'unité de stockage (124.2) est réalisé par une unité de transfert (18) affectée à la tour d'impression (01).
  7. Procédé selon la revendication 1, 2, 4, 5 ou 6, caractérisé en ce que le dispositif de stockage (17.2) pour de nouvelles plaques d'impression (06), considéré dans une direction longitudinale d'un cylindre porte-plaque (03) du ou des groupes d'impression (02) affectés au dispositif de stockage (17.1 ; 17.2) en question, est garni de plusieurs plaques d'impression (06) les unes à côté des autres ou de plusieurs éléments porteurs (37) pré-garnis les uns à côté des autres, ainsi que le dispositif de stockage (17.2) et/ou l'élément porteur (37) est garni de plusieurs plaques d'impression (06) pour un ou plusieurs seconds groupes d'impression (02) les unes derrière les autres et/ou les unes sur les autres.
  8. Machine à imprimer avec une tour d'impression (01) qui comprend un ou plusieurs premiers et un ou plusieurs seconds groupes d'impression (02) les uns sur les autres, et un système de changement de plaques d'impression qui comprend au moins un dispositif de stockage (17.2) déplaçable à la verticale pour des plaques d'impression (06), dans laquelle est prévu au moins un premier niveau de machines (B1), dans laquelle est prévu un système de transport (43) pour des plaques d'impression (06) à appliquer nouvellement, via lequel le dispositif de stockage (17.2) déplaçable à la verticale peut être acheminé depuis une position de chargement (P17.2A) qui se trouve dans la zone du premier niveau de machines (B1) vers une position de présentation (P17.2B) espacée à la verticale, affectée à un ou plusieurs seconds groupes d'impression (02) en vue d'une amenée de plaques d'impression et située à l'extérieur de la zone d'accès du premier niveau de machines (B1), caractérisée en ce qu'à la même tour d'impression (01) est affecté une unité de stockage (124.2) différente du dispositif de stockage (17.2) déplaçable à la verticale, laquelle unité de stockage peut être déplacée sur un trajet de transport différent du premier trajet de transport, par un second système de transport (44) pour des plaques d'impression (06) retirées différent du système de transport (43) pour des plaques d'impression (06) à appliquer nouvellement, entre une position de prélèvement (P124.2A) qui se trouve dans la zone du premier niveau de machines (B1) et une position de chargement (P124.2B) espacée à la verticale de celle-ci, affectée au ou aux seconds groupes d'impression (02) de la tour d'impression (01) en vue d'une reprise de plaques d'impression et située à l'extérieur de la zone d'accès du premier niveau de machines (B1), et en ce que le système de transport (43) pour de nouvelles plaques d'impression (06) et le système de transport (44) pour des plaques d'impression (06) retirées sont agencés l'un derrière l'autre au moins à une hauteur du premier niveau de machines (B1) dans une direction qui se déroule à l'horizontale perpendiculairement à des axes longitudinaux de cylindres de groupes d'impression (03 ; 12) de la tour d'impression (01).
  9. Machine à imprimer selon la revendication 8, caractérisée en ce que le système de transport (44) pour des plaques d'impression (06) retirées présente sur au moins une partie du trajet de transport un guidage pour un déplacement de translation guidé de l'unité de stockage (124.2) déplaçable à la verticale, guidage dont la partie fixe dans l'espace ou la partie fixée au cadre est formée par une structure de guidage (92) en une ou plusieurs pièces.
  10. Machine à imprimer selon la revendication 9, caractérisée en ce que la structure de guidage (92) comprend une première section de guidage et une seconde section de guidage (92.2) qui se situe dans le trajet de transport plus près de la position de chargement (P124.2B) que de la position de prélèvement (P124.2A), dans laquelle le parcours de guidage de la première et de la seconde section de guidage qui s'ensuit (92.1 ; 92.2) ainsi que l'agencement d'un ou plusieurs éléments de butée (97 ; 99) prévus pour le guidage sur l'unité de stockage (124.2) sont prévus ensemble et aménagés de façon à acheminer, lors du transport à la verticale de l'unité de stockage (17.2) depuis la première section de guidage (92.1) jusque dans la seconde section de guidage (92.2), au moins une ouverture de chargement (119) de l'unité de stockage (124.2) ou au moins une extrémité proche de l'ouverture de chargement (119) de l'unité de stockage (124) d'une paroi (98) de l'unité de stockage (124.2) tournée vers la tour d'impression (01), depuis un état adopté dans un état de transport (L124A) par déplacement dans un alignement vertical plus proche du au moins un second groupe d'impression (02) et/ou par déplacement dans un état de capture et/ou de chargement (L124B) plus proche du second groupe d'impression (02).
  11. Machine à imprimer selon la revendication 8, 9 ou 10, caractérisée en ce que le système de transport (43) pour de nouvelles plaques d'impression (06) et le système de transport (44) pour des plaques d'impression (06) retirées sont conçus et agencés de telle sorte que les nouvelles plaques d'impression (06) à transporter vers au moins la position de présentation (P17.2B) du dispositif de stockage (17.2) et sur la totalité du trajet de transport de même que les plaques d'impression (06) utilisées pour être transportées vers au moins la position de prélèvement (P124.2A) de l'unité de stockage (124.2) et sur la totalité du trajet de transport se trouvent à l'intérieur d'un alignement de groupes d'impression, lequel est formé par l'espace entre les deux niveaux qui coupent perpendiculairement frontalement les axes de cylindre porte-plaque du cylindre porte-plaque (03) de la tour d'impression (01).
  12. Machine à imprimer selon la revendication 8, 9, 10 ou 11, caractérisée en ce que l'un des deux systèmes de transport (43, 44) dans la zone du premier niveau de machines (B1) se déroule sur le côté proche de la tour d'impression d'un espace opérationnel (118) et/ou au niveau du cadre (123) de la tour d'impression (01) ou d'une unité d'impression (01.1 ; 01.2) comprise par la tour d'impression, et l'autre système de transport (43, 44) se déroule sur le côté situé à l'opposé de cet espace opérationnel (118) et/ou au niveau d'un cadre (73) différent du cadre (123) de la tour d'impression (01) ou des unités d'impression (01.1 ; 01.2) qui forment une tour d'impression.
  13. Machine à imprimer selon la revendication 8, 9, 10, 11 ou 12, caractérisée en ce que le système de transport (43) et/ou le dispositif de stockage (17.2) pour des plaques d'impression (06) à appliquer nouvellement est agencé et aménagé de telle sorte que les emplacements de stockage pour les plaques d'impression (06) à transporter vers ou dans le dispositif de stockage (17.2), tant au niveau de la position de présentation (P17.2B) que sur au moins une partie du trajet de transport vertical et/ou au niveau de la position de chargement (P17.2A), se situent à l'intérieur de l'alignement de groupes d'impression donné par la longueur disponible de cylindres porte-plaque (03) du ou des seconds groupes d'impression (02) et/ou en ce que le second système de transport (44) et/ou l'unité de stockage (124.2) est agencé(e) et aménagé(e) de telle sorte que les emplacements de stockage pour les plaques d'impression (06) à transporter vers ou dans l'unité de stockage (124.2), tant au niveau de la position de chargement (P124.2B) que sur au moins une partie du trajet de transport vertical et/ou au niveau de la position de prélèvement (P124.2A), se situent à l'intérieur de l'alignement de groupes d'impression donné par la longueur disponible de cylindres porte-plaque (03) du ou des seconds groupes d'impression (02).
  14. Machine à imprimer selon la revendication 8, 9, 10, 11, 12 ou 13, caractérisée en ce que le système de transport (43) et/ou le dispositif de stockage (17.2) pour des plaques d'impression (06) à appliquer nouvellement est agencé et aménagé de telle sorte que le dispositif de stockage (17.2) adopte sur au moins un tronçon du trajet de transport un état de transport (L17A), lequel se différencie, dans l'inclinaison de l'extension longitudinale des plaques d'impression (06) transportées ou transportables et/ou dans l'inclinaison de l'extension du dispositif de stockage (17.2) déplaçable à la verticale, dans une direction longitudinale des plaques d'impression (06) transportées ou à transporter par rapport à la verticale, de l'inclinaison en question dans un état de travail (L17B) du dispositif de stockage (17.2), dans laquelle le dispositif de stockage (17.2) se trouve dans une position de présentation (P17.2B) affectée au second ou aux seconds groupes d'impression (02).
  15. Machine à imprimer selon la revendication 8, 9, 10, 11, 12, 13 ou 14, caractérisée en ce qu'est prévue une unité de transfert (18) affectée à la tour d'impression (01), via laquelle unité les plaques d'impression (06) à remonter depuis la position de présentation (P17.1A ; P17.2A) jusqu'au cylindre porte-plaque (03) du second groupe d'impression (02) en question et/ou les plaques d'impression (06) retirées depuis le cylindre porte-plaque (03) du second groupe d'impression (02) en question jusqu'au moyen de retenue (104) ou directement jusqu'à l'unité de stockage (124.2) peuvent être transportées.
  16. Machine à imprimer selon la revendication 8, 9, 10, 11, 12, 13, 14 ou 15, caractérisée en ce que le système de transport (44) comprend un moyen complémentaire (104) conçu comme un moyen de retenue (104) agencé en amont de l'unité de stockage (124.2) sur le chemin de transport des plaques d'impression (06) utilisées, auquel moyen des plaques d'impression (06) utilisées, retirées d'un second groupe d'impression (02) de la tour d'impression (01), peuvent être confiées par une unité de transfert (18) affectée à un ou plusieurs seconds groupes d'impression (02).
  17. Machine à imprimer selon la revendication 16, caractérisée en ce que le moyen de retenue (104) est conçu sous la forme d'une table de dépose (104) qui peut être insérée au choix dans un état de réception (L104A) et un état de transmission (L104B).
EP14729004.3A 2013-08-22 2014-06-11 Procédé de changement de clichés et presses à imprimer dotées d'une tour d'impression et d'un dispositif de stockage à mobilité verticale Active EP3036106B1 (fr)

Applications Claiming Priority (3)

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DE102013216662.1A DE102013216662B4 (de) 2013-08-22 2013-08-22 Verfahren zum Fördern von Druckformen beim Druckformwechsel sowie Druckmaschinen mit einem Druckturm und einer vertikalbeweglichen Speichereinrichtung
DE102013216664.8A DE102013216664B4 (de) 2013-08-22 2013-08-22 Verfahren zur Durchführung eines Druckformwechsels sowie Druckmaschinen mit einem Druckturm und einer vertikalbeweglichen Speichereinrichtung
PCT/EP2014/062076 WO2015024683A1 (fr) 2013-08-22 2014-06-11 Procédé de changement de clichés et presses à imprimer dotées d'une tour d'impression et d'un dispositif de stockage à mobilité verticale

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WO2015024683A1 (fr) 2015-02-26
US9701107B2 (en) 2017-07-11
US20160200094A1 (en) 2016-07-14
EP3036106A1 (fr) 2016-06-29
CN105473335B (zh) 2018-06-29
CN105473335A (zh) 2016-04-06

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