EP1393903B1 - Rotationspresse zum Anbringen von einem Bild auf ein Substrat - Google Patents

Rotationspresse zum Anbringen von einem Bild auf ein Substrat Download PDF

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Publication number
EP1393903B1
EP1393903B1 EP03017465A EP03017465A EP1393903B1 EP 1393903 B1 EP1393903 B1 EP 1393903B1 EP 03017465 A EP03017465 A EP 03017465A EP 03017465 A EP03017465 A EP 03017465A EP 1393903 B1 EP1393903 B1 EP 1393903B1
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EP
European Patent Office
Prior art keywords
support strip
support
strip
press according
rollers
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP03017465A
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English (en)
French (fr)
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EP1393903A2 (de
EP1393903A3 (de
Inventor
Georg Strasser
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Bobst Mex SA
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Bobst SA
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Filing date
Publication date
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Publication of EP1393903A2 publication Critical patent/EP1393903A2/de
Publication of EP1393903A3 publication Critical patent/EP1393903A3/de
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Publication of EP1393903B1 publication Critical patent/EP1393903B1/de
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Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F19/00Apparatus or machines for carrying out printing operations combined with other operations
    • B41F19/02Apparatus or machines for carrying out printing operations combined with other operations with embossing
    • B41F19/06Printing and embossing between a negative and a positive forme after inking and wiping the negative forme; Printing from an ink band treated with colour or "gold"
    • B41F19/062Presses of the rotary type
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/02Conveying or guiding webs through presses or machines
    • B41F13/04Conveying or guiding webs through presses or machines intermittently
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/0008Driving devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/008Mechanical features of drives, e.g. gears, clutches

Definitions

  • the present invention relates to a rotary press for reporting patterns on a strip substrate, comprising means for longitudinally driving said substrate at a predetermined speed band, means for feeding at least one support strip of the material of said patterns, means for transferring said patterns, from said carrier strip at predetermined locations of said strip substrate, means for driving said carrier strip through said transfer means intermittently at said determined speed of the strip substrate.
  • the support strip of the material to be transferred and the strip substrate have two parallel longitudinal paths to allow the transfer means to press them against each other with an appropriate pressure, temperature and time so that the transfer of the image can be realized.
  • the feed means of the support strip are necessarily superimposed on the strip substrate which is to pass through several successive workstations situated along an installation that can reach more than ten meters long, so that the supply of the support strip must be above the workstations, which makes the work of loading the support tape replacement coils relatively difficult and painful.
  • the object of the present invention is to overcome, at least in part, the aforementioned drawbacks.
  • the present invention relates to a rotary press for reporting patterns on a web substrate of the aforementioned type, as defined in claim 1.
  • the feed station may have several units that can be superimposed while remaining accessible from the ground for easy recharging. Such an arrangement saves the area occupied while multiplying the number of patterns reported.
  • This arrangement also favors the possibility of an automatic connection without stopping the production, allowing for this purpose the incorporation of a support tape accumulator which can be filled as the support tape feed reel becomes empty. This reserve of support tape can thus be used during the joining operation between the end of a support band and the beginning of the next band.
  • the rotary press illustrated by the Figures 1 to 3 is a rotary press which is more particularly, although not exclusively intended to be inserted into a print line on a web substrate.
  • This line In particular, a printing line may be a line for printing, cutting and ribbing cardboard articles, in particular a line for making blanks of cardboard boxes which are subsequently used to form the boxes by folding along the ribs. arranged at the places of folding.
  • This rotary press is thus arranged in the longitudinal direction of travel of a strip substrate 1 which moves in the direction indicated by the arrow F ( figure 3 ) and which is driven and guided along a path determined by a series of driving and guiding cylinders 100 ( figure 2 ), not only through the rotary press, but all along the printing line.
  • This band substrate 1 is fed between two cylinders 2, 3 ( figure 2 ) of a transfer mechanism, arranged transversely to the longitudinal direction of the strip substrate 1 and whose role will be explained later.
  • a support strip 4 There may be several support strips 4 carrying similar films or materials and / or different colors, depending on the color of the patterns to be deposited on the strip substrate 1.
  • These support strips 4 consist of laminates generally comprising a polyester strip, a wax separation layer, a color varnish formed by a resin, an aluminum layer and finally an adhesive layer.
  • support strips 4 are stored in the form of supply coils 5, respectively and alternately of reserve, arranged in one or more superimposed feed units 6, 6a, 6b ( figure 1 ) which in this example can be up to three. As shown by figures 1 and 3 , the support strips 4 emerging from the supply coils 5 arrive laterally towards the strip substrate 1.
  • three support strips 4, 4a, 4b are thus perpendicularly directed towards the strip substrate 1.
  • Three guides 7, 7a, 7b are constituted by bars arranged on the bisector of the angle formed between the 45 ° strands of the support strips 4, 4a, 4b located upstream of the guides 7, 7a, 7b and the strands disposed downstream of these guides. The direction of these last strands is parallel to the direction of the strip substrate 1.
  • these support strips 4, 4a, 4b are directed from the guides 7, 7a, 7b in the opposite direction to that of the strip substrate 1.
  • One or more transverse drive rollers 8 serve to rotate again these support strips 4, 4a, 4b of 180 ° to bring them in the direction F of displacement of the substrate in strip 1.
  • These rollers 8, associated with pressure rollers 8a, constitute drive devices of the support strips 4, 4a, 4b at constant speed.
  • Each transverse roller 8 may have a speed different from that of the other transverse roller, depending on the material consumption to be deposited from each support strip 4, 4a, 4b, which may vary depending on the size and the spacing of the patterns. respectively.
  • a series of intermittent driving devices 9 ( figures 2 and 4 ) is arranged downstream of the transverse drive rollers 8.
  • Each intermittent drive device 9 comprises as illustrated by the figure 4 a drive roller 10 rotating at a modulated speed, around which the support band 4, 4a, 4b rotates 180 °, and a counter roll 11 secured to a rocker 12 in mesh with a cross member 13 actuated by two cylinders 14. Next the position of the rocker 12, the support band 4, 4a, 4b is pressed between the drive roller 10 and the counter roller 11, so that it is driven at the speed of the drive roller 10.
  • each support strip 4, 4a, 4b is intended for the transfer of a specific pattern whose size and position on the strip substrate 1 differs from those of another pattern, each support strip 4, 4a, 4b must be driven at different times from another support band. This is the reason why several intermittent drive devices are provided, there being for example six in the illustrated embodiment, but this number may vary more or less depending on the particular applications. .
  • An accumulation device 15 is arranged between the transverse drive rollers 8, driving the support strips 4, 4a, 4b continuously and the intermittent drive devices 9, to allow absorbing the lengths of support strips 4, 4a, 4b emerging from the transverse roller or rollers 8 for continuous driving of these support strips, while these are not driven by the intermittent drive devices 9.
  • This accumulation device comprises an accumulation chamber 16 having at the front an inlet 17 for receiving the support strips 4 4a, 4b downstream of the drive rollers 8 and an outlet 18 for bringing these support strips around the rollers. respective drive.
  • the rear of this accumulation chamber 16 is connected to a suction source 19 intended to create a depression to form with the support strips 4, 4a, 4b loops of varying length inside the chamber of accumulation 16 during the stopping of the drive of the intermittent drive devices.
  • two detectors 20, 20a serve to detect respectively the maximum loop and the minimum loop formed by the support strip.
  • detectors 20, 20a allow, when starting a new series of impressions to be performed on the rotary press, to adjust the constant speed of the transverse feed rollers 8, so that the loop formed by each support band 4, 4a, 4b does not exceed both limits.
  • the theoretical constant speed of the roller 8 set using the detectors 20, 20a it is increased slightly by a programmed setpoint.
  • the intermittent loops formed by the bands 4, 4a, 4b will therefore tend to grow.
  • the detectors 20 receive a signal, they control a brief lifting of the corresponding press 8a, which has the effect of slightly reducing the flow and thus shorten the incriminated loop.
  • all the upstream return rollers are subdivided into several adjacent portions, so as not to bind the strips 4, 4a, 4b therebetween.
  • each feed unit 6, 6a, 6b comprises a rectangular coil support 21, pivotally mounted about a central axis 22.
  • Each coil carrier 21 has two pivoting seats 23, 23a for receiving pivot shafts (30). , 30a) supply coils 5, alternatively reserve 5a, support strips 4, 4a, 4b.
  • These seats 23, 23a respectively open on two opposite sides of the rectangular support of coils 21, as seen on the figure 1 .
  • Each pivoting seat 23, 23a is associated with a lever locking 24, 24a to retain the pivot axes of the coils 5 and 5a when the pivot seat 23, 23a opens downwards.
  • each coil support 21 is associated with a motor 25 ( figure 3 ) to rotate in 180 ° steps to replace an empty supply coil with a spare coil 5a.
  • Each pivoting seat 23, 23a is again associated with a support 26, 26a for the joining of the support strips 4, 4a, 4b.
  • Guides 27, constituted by rollers at the four corners of the rectangular support of coils 21, serve to engage the support strip 4, 4a, 4b during feeding, to pass it to the periphery of the coil support 21 during the rotation of this coil support 21, at the moment when a supply coil 5 has to be replaced by a reserve coil 5a.
  • each half of the coil support 21 in the longitudinal direction of the rectangle formed by this support 21 has a symmetry with respect to the central pivot axis 22 of the support 21, so that by turning it 180 °, each half of the support 21 replaces the other half of the support 21.
  • a connecting member 29 is further provided to make the junction between the end of a coil 5 and the beginning of the next.
  • FIGs 5 to 8 illustrate the different phases of the joining process of the support strips 4, 4a, 4b using simplified diagrams.
  • the figure 5 shows the end of a coil 5.
  • the figure 6 shows the support of coils 21 following its rotation of 180 ° in the opposite direction to that of clockwise. It can be seen that, during this rotation, the support strip 4 is guided by two of the return rollers 27. The front end of the new reserve coil 5a is ready for the joining operation.
  • the connecting member 29 has come to press the two support strips 4, 4a, 4b to be joined against the support 26a to glue them to one another. During this paste operation, the support strips 4, 4a, 4b are momentarily immobilized. It is then that the strip material accumulated in the reserve device 28 empties to allow the transverse feed rollers 8 to continuously supply the rotary press in support strips 4, 4a, 4b of the material to be reported on the substrate. in band 1.
  • Cutting means (not shown), which may be associated with the joining member 29, then cut the rest of the support band of the empty spool 5 and the joining member 29 returns to its inactive position as illustrated by FIG. figure 8 , so that the new supply coil which previously constituted the reserve coil 5a begins to feed the rotary press.
  • the spare device 28 fills up again for the next coil change. In the meantime, it will be necessary to replace the empty coil 5 with a new spare coil 5a full.
  • the activation / deactivation of the pressers 50a can be done directly by controlling the loops in the accumulation device 15a, or else by calculating a regular basic cycle and by superimposing any corrections from the monitoring of the individual loops in the accumulation device 15a. the accumulation device 15a.
  • Another solution provided is to install an additional group 50, 50a, which would then adopt a specific average speed.
  • the figure 9 represents a variant embodiment of a band-speed modulation device by replacing the elements 8, 15, and 10, 11 of the figure 4 .
  • a second embodiment for example to create a compact stamping unit in the form of insert.
  • the aim is to create a speed modulation for at least one metallized strip 44.
  • This passes a first roller 40, linked to a suitable motor with a vacuum supply 41 and unmounted means but known to bring the vacuum to the periphery of the cylinder, selectively between the generators A and E through B.
  • the strip 44 is driven at a continuous speed vc by the roller 40, whose rotation speed wc is constant and chosen according to the average consumption required.
  • the band 44 passes through the generators A, a point between B and B ', a point between C and C', D, and leaves the device with a speed vi.
  • the roll 43 is constructed as the roll 40, the only difference being that for wi the rotation speed is modulated to obtain a strip economy as described in the text referring to figures 2 , 4 .
  • the average flow rate induced by the intermittent rotation wi of the roll 42 is identical to the flow rate given by the roll 40. It is easily understood that the path BC is only true at one point in the cycle. Separation points B and C junction walk on the surfaces according to the profile of wi. We take advantage of the extremely low mass of the band 44 to thereby create a trajectory and vel modulation vi perfectly controlled through the cycles.
  • the speed wc can be influenced by a trajectory control between the rollers 40, 42. If the points B and C tend to descend, this can be intercepted by a means of the kind photocell (not shown) which will slightly increase the speed wc . And the opposite can be obtained by analogous means placed above B, C. In this way, the software is free to superimpose position corrections roller 42 for the installation of holograms for example. Special modulation can also be supported, which can be very useful for passing a band 44 out of the meshing of a snapshot, for example.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Controlling Rewinding, Feeding, Winding, Or Abnormalities Of Webs (AREA)
  • Advancing Webs (AREA)
  • Replacement Of Web Rolls (AREA)
  • Registering, Tensioning, Guiding Webs, And Rollers Therefor (AREA)
  • Making Paper Articles (AREA)
  • Attitude Control For Articles On Conveyors (AREA)

Claims (16)

  1. Rotationspresse zur Übertragung von mit mindestens einem Trägerband fest verbundenen Mustern auf ein Bandsubstrat (1), enthaltend
    - eine Reihe von Zylindern (100) zum Antrieb und zur Führung des Bandsubstrats mit einer bestimmten Geschwindigkeit und in einer Längsrichtung,
    - eine Trägerband-Zufuhreinheit,
    - Walzen (2, 3) zur Übertragung der Muster vom Trägerband (4, 4a, 4b) auf bestimmte Stellen des Bandsubstrats (1) und
    - Vorrichtungen (9) für den intermittierenden Trägerband-Antrieb zwischen den Übertragungswalzen (2, 3) mit der bestimmten Geschwindigkeit des Bandsubstrats (1),
    dadurch gekennzeichnet, dass sie mehrere Zufuhreinhelten (6, 6a, 6b) enthält,
    - die seitlich zur Längsantriebsrichtung des Bandsubstrats (1) angeordnet sind, wobei Führungen (7, 7a, 7b) entlang des Wegs des Trägerbands (4, 4a, 4b) angeordnet sind und die Richtung des Trägerbands (4, 4a, 4b) von einer Zufuhrrichtung quer zur Längsantriebsrichtung des Bandsubstrats (1) in eine Übertragungsrichtung der Muster parallel zur Längsantriebsrichtung des Bandsubstrats (1) ändern,
    - die übereinander angeordnet sind und
    - die Antriebsvorrichtungen mit konstanter Geschwindigkeit (8), eine Verbindungsvorrichtung (21, 26, 26a, 29), die das Ende eines Trägerbands (4, 4a, 4b) und den Anfang eines anderen Trägerbands verbindet, und einen Vorrat (28) einer bestimmten Länge des Trägerbands (4, 4a, 4b) zwischen der Verbindungsvorrichtung (21, 26, 26a, 29) und den Antriebsvorrichtungen mit konstanter Geschwindigkeit (8) enthalten, der die durchgehende Zufuhr des Trägerbands (4, 4a, 4b) während der Verbindung erlaubt.
  2. Presse nach Anspruch 1, bei der Trägerband-Antriebsvorrichtungen (8) mit konstanter Geschwindigkeit hinter der oder den Zufuhreinheiten (6, 6a, 6b) angeordnet sind, wobei eine Speichervorrichtung (15) des Trägerbands (4, 4a, 4b) zwischen den Antriebsvorrichtungen mit konstanter Geschwindigkeit (8) und den Vorrichtungen für den intermittierenden Antrieb (9) angeordnet ist.
  3. Presse nach Anspruch 2, bei der die intermittierenden Antriebsvorrichtungen (9) eine Antriebswalze (10), mit der das Trägerband (4, 4a, 4b) am Ausgang der Speichereinrichtungen (15) In Kontakt gebracht wird, eine frei drehende Walze (11) parallel zur Antriebswalze (10) und Kippelnrichtungen (12, 13, 14) aufweisen, die diese frei drehende Walze (11) selektiv gegen die Antriebswalze (10) drücken, wobei das Trägerband (4, 4a, 4b) zwischen den Walzen (10, 11) eingeklemmt ist und so durch Reibung angetrieben wird.
  4. Presse nach Anspruch 1, bei der die Antriebsvorrichtungen mit konstanter Geschwindigkeit (8) Walzen (8) und eine Reihe von Andrückrollen (8a) aufweisen, die einem der Bänder (4, 4a) zugeordnet sind, intermittierend angehoben werden, den Durchsatz des Bands (4) auf der Walze (8) variieren und die mittlere Stellung einer Bandschleife (4, 4a) in der Speicherkammer (16) steuern, wobei das Ganze von der Software der Maschine in automatischer Regelung verwaltet wird.
  5. Presse nach Anspruch 4, bei der die Umlenkwalzen vor den Antriebsvorrichtungen mit konstanter Geschwindigkeit (8) in mehrere aneinandergrenzende Teile unterteilt sind, die den Vorschub der Bänder (4, 4a, 4b) zwischen sich unterbrechen.
  6. Presse nach Anspruch 1, bei der die Verbindungsvorrichtung (21, 26, 26a, 29) einen Träger (21) für mindestens eine Zufuhrspule (5) und eine Vorratsspule (5a) für jede Zufuhrspule (5) der Trägerbänder (4, 4a, 4b), der mit einem Gestell über eine zentrale Schwenkachse (22) verbunden ist und Schwenkeinrichtungen (23, 23a) enthält, die die Spulen (5) In zur zentralen Schwenkachse (22) parallelen und symmetrischen Stellungen aufnehmen, Führungen (27) und Auflagen (26, 26a) für die Trägerbänder (4, 4a, 4b), die jeder der Zufuhrspulen (5) einerseits und der Vorratsspulen (5a) andererseits zugeordnet sind, wobei diese Führungen (27) und diese Auflagen (26, 26a) bezüglich der zentralen Achse (22) symmetrisch angeordnet sind, Antriebseinrichtungen (25), die den Spulenträger (21) um 180°-Schritte antreiben, und Verbindungseinrichtungen (29) aufweist, die einen Endabschnitt des Trägerbands (4, 4a, 4b) der Austauschspule (5a) gegen einen Anfangsabschnitt des Trägerbands (4, 4a, 4b) der Zufuhrspule (5) an eine der Auflagen (26a) anlegen, die die Verbindung der benachbarten Abschnitte durchführen.
  7. Presse nach Anspruch 2, bei der die Speichervorrichtung (15) des Trägerbands (4, 4a, 4b) eine Speicherkammer (16) für Vorratsabschnitte des Trägerbands aufweist, die einen Eingang (17) für das von der oder den Zufuhreinheiten (6, 6a, 6b) kommende Trägerband und einen Ausgang (18) für das Trägerband zu den Intermittierenden Antriebsvorrichtungen (9) hat, wobei Ansaugeinrichtungen (19), die einen Unterdruck erzeugen, mit der Speicherkammer (16) verbunden sind, die Detektoren (20, 20a) aufweist, die zwei Grenzspeicherstellungen des Trägerbands (4, 4a, 4b) im Inneren der Speicherkammer erfassen.
  8. Presse nach Anspruch 2, bei der die Antriebsvorrichtungen mit konstanter Geschwindigkeit (8), die der oder den Zufuhreinrichtungen (6, 6a, 6b) zugeordnet sind, hinter den Führungen (7, 7a, 7b) des Trägerbands (4, 4a, 4b) angeordnet sind, damit der Abschnitt dieses Trägerbands, der um die Führungen (7, 7a, 7b) verläuft, immer unter Spannung gehalten wird.
  9. Presse nach einem der vorhergehenden Ansprüche, bei der die Führungen (7, 7a, 7b) ein Organ zur geradlinigen Führung aufweisen, das auf einer Winkelhalbierenden des Winkels angeordnet ist der zwischen der Zufuhrrichtung des Trägerbands (4, 4a, 4b) und der Längsantriebsrichtung des Bandsubstrats (1) gebildet wird, damit, nachdem das Trägerband (4, 4a, 4b) um 180° um sich gedreht wurde, die Längsrichtung dieses Trägerbands einen Winkel von 90° zwischen seinem vor dem und dem hinter dem geradlinigen Führungsorgan (7, 7a, Tb) befindlichen Trum bildet.
  10. Presse nach Anspruch 1, bei der die austretenden Bänder (4, 4a, 4b) durch eine andere Speichervorrichtung (15a) hindurch von einer Antriebseinheit (50, 50a) angetrieben werden, wobei die Geschwindigkeit dieser letzteren durch die Steuerung der mittleren Position der Schleifen in der Vorrichtung (15a) geregelt wird.
  11. Presse nach Anspruch 10, bei der die Antriebseinheit (50, 50a) doppelt ist und jeder Einheit (8, 8a) eine Antriebseinheit (50, 50a) zugeordnet ist, die die gleiche Basisgeschwindigkeit hat.
  12. Presse nach Anspruch 10, bei der die Speichervorrichtungen (15, 15a) gleich sind.
  13. Presse nach Anspruch 10, bei der die Andrückrollen (50a) periodisch angehoben und die zugeordneten Bänder mit einer Ein-Aus-Bewegung blockiert werden, wobei die Aktivierung und die Deaktivierung der Andrückrollen (50a) direkt durch die Steuerung der Schleifen in der Speichervorrichtung (15a) erfolgt.
  14. Presse nach Anspruch 2, bei der die intermittierenden Antriebsvorrichtungen (9) eine Kombination von zwei Walzen (40, 42) enthalten, wobei eine erste Walze (40) mit einer konstanten Drehgeschwindigkeit (wc) dreht und eine zweite Walze (42) mit einer intermittierenden Drehgeschwindigkeit (wl) dreht.
  15. Presse nach Anspruch 14, bei der die Bänder (44) durch Vakuum (41, 43) reibungslos auf den Flächen der Walzen (40, 42) gehalten werden.
  16. Presse nach Anspruch 14, bei der die konstante Drehgeschwindigkeit (wc) durch eine Wegsteuerung des Bands (44) zwischen den Walzen (40, 42) durch Steuereinrichtungen eingestellt wird, die über und unter der Zone (B, C) zwischen den Walzen (40, 42) angeordnet sind.
EP03017465A 2002-08-19 2003-08-01 Rotationspresse zum Anbringen von einem Bild auf ein Substrat Expired - Lifetime EP1393903B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CH14202002 2002-08-19
CH14202002 2002-08-19

Publications (3)

Publication Number Publication Date
EP1393903A2 EP1393903A2 (de) 2004-03-03
EP1393903A3 EP1393903A3 (de) 2005-03-02
EP1393903B1 true EP1393903B1 (de) 2011-05-11

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EP03017465A Expired - Lifetime EP1393903B1 (de) 2002-08-19 2003-08-01 Rotationspresse zum Anbringen von einem Bild auf ein Substrat

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Country Link
US (1) US6779442B2 (de)
EP (1) EP1393903B1 (de)
JP (1) JP3745753B2 (de)
KR (1) KR20040016803A (de)
CN (1) CN1485202A (de)
AT (1) ATE508869T1 (de)
AU (1) AU2003234752A1 (de)
BR (1) BR0303109A (de)
CA (1) CA2437424A1 (de)
ES (1) ES2366023T3 (de)
TW (1) TWI238802B (de)

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DE102005043940C5 (de) * 2005-03-10 2014-08-07 manroland sheetfed GmbH Prägeeinrichtung mit Folienlogistik in einer Bogendruckmaschine
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DE102007015378A1 (de) * 2007-03-28 2008-10-02 Heidelberger Druckmaschinen Ag Übergabevorrichtung für Folienwechsel
EP2100735A1 (de) * 2008-01-21 2009-09-16 Vinfoil B.V. Vorrichtung zur Lieferung von Folie, die in einem Druckverfahren benutzt wird, an eine Druckpresse
ES2533503B1 (es) * 2013-10-07 2016-02-26 Comexi Group Industries, Sau Método para realizar diferentes aplicaciones específicas mediante una unidad impresora común, unidad impresora para implementar dicho método y máquina de tratamiento de sustrato en banda incluyendo dicha unidad impresora
CN112875375A (zh) * 2021-03-10 2021-06-01 高登利盛影印(苏州)有限公司 一种便于调节的输送机构

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ATE187922T1 (de) * 1995-10-23 2000-01-15 Clopay Plastic Prod Co Produkt, vorrichtung und verfahren zum laminieren eines polymerfilms mit einer nichtgewebten bahn
DE59701534D1 (de) * 1996-10-14 2001-05-17 Koenig & Bauer Ag Papierbahnzuführung zu falzapparaten
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FR2775633B1 (fr) * 1998-03-09 2000-04-14 Breger Emballages Sa Installation d'impression par transfert, notamment par dorure
ATE233182T1 (de) * 1998-06-16 2003-03-15 Kba Giori Sa Sicherheitsdruckmaschine zum drucken von wertpapieren
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JP2002120348A (ja) * 2000-10-13 2002-04-23 Komori Corp 印刷機

Also Published As

Publication number Publication date
EP1393903A2 (de) 2004-03-03
ES2366023T3 (es) 2011-10-14
KR20040016803A (ko) 2004-02-25
BR0303109A (pt) 2004-08-24
TW200403175A (en) 2004-03-01
JP3745753B2 (ja) 2006-02-15
CN1485202A (zh) 2004-03-31
US6779442B2 (en) 2004-08-24
US20040031405A1 (en) 2004-02-19
AU2003234752A1 (en) 2004-03-11
JP2004083286A (ja) 2004-03-18
EP1393903A3 (de) 2005-03-02
ATE508869T1 (de) 2011-05-15
CA2437424A1 (en) 2004-02-19
TWI238802B (en) 2005-09-01

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