EP2207684B1 - Apparatus for printing bottles or similar containers on the outer container surface - Google Patents
Apparatus for printing bottles or similar containers on the outer container surface Download PDFInfo
- Publication number
- EP2207684B1 EP2207684B1 EP08801735A EP08801735A EP2207684B1 EP 2207684 B1 EP2207684 B1 EP 2207684B1 EP 08801735 A EP08801735 A EP 08801735A EP 08801735 A EP08801735 A EP 08801735A EP 2207684 B1 EP2207684 B1 EP 2207684B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- printing
- container
- transfer
- conveyor
- transfer surface
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Not-in-force
Links
- 238000007639 printing Methods 0.000 title claims abstract description 72
- 239000010410 layer Substances 0.000 claims description 16
- 239000012790 adhesive layer Substances 0.000 claims description 10
- 239000000969 carrier Substances 0.000 claims description 9
- 238000004140 cleaning Methods 0.000 claims description 6
- 238000005096 rolling process Methods 0.000 claims description 2
- 238000011144 upstream manufacturing Methods 0.000 claims 1
- 238000001035 drying Methods 0.000 description 6
- 210000001015 abdomen Anatomy 0.000 description 2
- 230000005540 biological transmission Effects 0.000 description 2
- 239000004033 plastic Substances 0.000 description 2
- 230000005855 radiation Effects 0.000 description 2
- 238000010276 construction Methods 0.000 description 1
- 238000011161 development Methods 0.000 description 1
- 230000018109 developmental process Effects 0.000 description 1
- 239000011229 interlayer Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000007769 metal material Substances 0.000 description 1
- 238000012986 modification Methods 0.000 description 1
- 230000004048 modification Effects 0.000 description 1
- 239000011148 porous material Substances 0.000 description 1
- 238000007790 scraping Methods 0.000 description 1
- 239000013589 supplement Substances 0.000 description 1
- 230000001360 synchronised effect Effects 0.000 description 1
- 238000010023 transfer printing Methods 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J3/00—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
- B41J3/407—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
- B41J3/4073—Printing on three-dimensional objects not being in sheet or web form, e.g. spherical or cubic objects
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
- B41J—TYPEWRITERS; SELECTIVE PRINTING MECHANISMS, i.e. MECHANISMS PRINTING OTHERWISE THAN FROM A FORME; CORRECTION OF TYPOGRAPHICAL ERRORS
- B41J3/00—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed
- B41J3/407—Typewriters or selective printing or marking mechanisms characterised by the purpose for which they are constructed for marking on special material
- B41J3/4073—Printing on three-dimensional objects not being in sheet or web form, e.g. spherical or cubic objects
- B41J3/40733—Printing on cylindrical or rotationally symmetrical objects, e. g. on bottles
Definitions
- the invention relates to a device according to the preamble of claim 1.
- devices of different designs for printing on bottles or similar containers, devices of different designs are known, for example devices ( GB 2 376 920 A . WO 2004/009360 A1 ), in which the container area to be printed is arranged directly adjacent one or more print heads during printing. Also known are devices ( US 6,684,770 B2 . US 7,011,728 B2 ), in which the printing takes place by rolling the container region to be printed on a printing ink-colored printing forme, which is provided on a rotating printing drum or on a circulating belt.
- a device for printing on containers US 6,920,822 B2 .
- WO-A-03/103966 or WO-A-2008/031930 54 which forms prior art according to Art. 54 (3)
- the containers are arranged in receptacles of a transport wheel driven circumferentially around a horizontal machine axis, are moved past a printing position at which each container with its container region to be printed is attached to one of several each with a negative printed image provided transfer surfaces rolls.
- These are m formed star-shaped circumference of a likewise driven about a horizontal axis rotating pressure wheel.
- a plurality of print heads are provided at the periphery of the print wheel, which are executed in the manner of an ink jet print head and with each of which a color set of each multicolor print image is generated.
- the known devices allow printing on containers of high quality, ie with a high quality, especially sharp and distortion and / or defect-free imprint only if the containers to be printed have the smallest possible dimensional tolerances and on their area to be printed no or as possible have no bumps.
- the object of the invention is to provide a device that allows bottles or similar containers with high performance (number of printed containers per unit time) to print with high quality. To solve this problem, a device according to the patent claim 1 is formed.
- the inventive construction it is u.a. It is possible to print even bottles or similar containers, which have relatively large dimensional tolerances and / or unevenness, with high quality and at high output directly on the container outer surface.
- the in the Figures 1 - 3 generally designated 1 printing station is used for printing bottles 2 directly on an example circular-cylindrical or substantially circular-cylindrical region of the bottle outer surface, for example on a bottle belly 2.1, as shown, or at a bottleneck 2.2.
- the printing station 1 comprises, inter alia, a transfer drum 3 driven circumferentially about its vertical axis in the direction of the arrow A, at the circular cylindrical surface of which at equal angular intervals about the drum axis offset a plurality of transfer elements 4, ie in the illustrated embodiment a total of three transfer elements 4 are preferably provided interchangeable. How specifically the FIG.
- each transfer element 4 is formed multi-layered, ie it consists inter alia of an outer with respect to the axis of the transfer drum 3 adhesive layer 5 of a suitable material for a transfer printing, from an adjoining the adhesive layer 5 rubber elastic intermediate layer 6, for example, a harder rubber or an elastomeric plastic and from a subsequent to the intermediate layer 6 support layer 7 made of a metallic material or plastic, with which the respective transfer element 4 is attached to the circumference of the transfer drum 3.
- Each transfer element 4 is curved at its formed by the adhesive layer 5 outer or transfer surface 4.1 part-circular cylindrical around the axis of the transfer star 3 and there cushion-like elastic, but wrinkle-free deformable.
- the printing station 1 further comprises a print head 8, which is arranged on the periphery of the transfer drum 3 with this not co-rotating and with each of the complete, applied to a bottle 2 print image in a negative or mirror image form, i. is applied as a negative print image on the transfer surface 4.1 of the transfer element 4 moving past the print head 8 when the transfer drum 3 is rotating.
- the printhead 8 is preferably an electronic printhead and comprises for multicolor printing a plurality of electronically controllable individual printheads which are provided consecutively in the direction of rotation A, for example a single printhead for black and a plurality of individual printheads for different color sets of a multicolor print.
- the individual printing heads are, for example, those which are known by the name "Tonejet" and each having a plurality of nozzle openings in a row which is oriented parallel or substantially parallel to the axis of the transfer drum 3. Each nozzle opening is associated with an electrode.
- the individual print heads or their electrodes are driven by a control device 9 electronically generating the print image, in such a way that printing ink is applied to the nozzle openings on the transfer surface 4.1 upon a change in the potential of the associated electrode relative to the potential of the nozzle opening.
- the printhead in the direction of rotation A is preceded by a cleaning station or position 10 is provided on the periphery of the transfer drum and this not mitcardend at which the transferred with the transfer drum 3 moving transfer elements 4 before applying the new negative print image on its transfer surface 4.1, ie existing residues of printing ink are removed.
- the cleaning station 10 is formed in the simplest case of one or more scrapers.
- Each provided with the negative print image on the transfer surface 4.1 transfer element 4 passes with the rotating transfer drum 3 to a printing area 11 when there on a bottle or container conveyor 12 upright, ie with its axis oriented in the vertical direction bottle 2 is moved past ,
- the container conveyor 12 is in the in the Figures 1 - 3 illustrated embodiment, a synchronous to a vertical machine axis with the transfer drum 3 rotatably driven turntable or rotor with a plurality of plate-shaped container carriers 13, which are provided at equal angular intervals about the vertical machine axis of the rotor offset at the periphery thereof and are rotatably controlled about its vertical axis.
- each at its upper end by an unillustrated element, for example by a stamp secured against falling bottle 2 at the printing area 11 is rotated about its axis of the bottle (arrow C), in such a way that this bottle 2 with the printing area (for example, cylinder belly 2.1) without slip on the passing transfer element 4 or the local transfer surface 4.1 rolls and thus the negative print image is applied by the respective transfer element 4 as a positive pressure on the relevant bottle 2.
- an unillustrated element for example by a stamp secured against falling bottle 2 at the printing area 11 is rotated about its axis of the bottle (arrow C), in such a way that this bottle 2 with the printing area (for example, cylinder belly 2.1) without slip on the passing transfer element 4 or the local transfer surface 4.1 rolls and thus the negative print image is applied by the respective transfer element 4 as a positive pressure on the relevant bottle 2.
- Each bottle 2 printed in this way is then further moved on the associated container carrier 13, standing upright with the container conveyor 12 and reaches the like, inter alia. to a station 14 at which by action of energy or entry, for example by infrared radiation, UV radiation, microwave energy, hot air, etc., a drying, setting or baking of the applied directly to the bottle 2 printed image, preferably while continuing to its bottle axis with the container carrier 13 rotated bottle. 2
- a special feature of the printing station 1 is that on each transfer surface 4.1 when moving past the print head 8 in each case in negative form the complete, applied to the bottles 2 print image is generated.
- the elastic intermediate layer 6 ensures that even with dimensional tolerances, eg tolerances in the diameter of the bottles 2, the (tolerances) may well be in the range between 0.5 to 07 mm, but also in unevenness for the transmission of the printed image is ensured by the transfer element 4 to the respective bottle 2 required dense concerns the transfer surface 4.1 against the bottle area to be printed.
- the printing station 1 has the advantage that a high quality printing while maintaining the necessary and very critical distance between the print head 8 and the transfer surfaces 4.1 is possible, despite considerable dimensional tolerances of the bottles 2, these tolerances by the elastic design of the transfer elements 4, that are compensated in the elastic intermediate layers 6.
- the FIG. 4 1 shows a device 15 for printing on bottles 2 or similar containers, which (device) in turn has the container conveyor 12, designed as a rotor and driven in a circle around a vertical machine axis in the direction of the arrow B, with the container carriers 13 provided on the circumference.
- the container conveyor 12 designed as a rotor and driven in a circle around a vertical machine axis in the direction of the arrow B, with the container carriers 13 provided on the circumference.
- two printing stations 1 are provided, in the illustrated embodiment by 180 ° about the vertical axis of rotation of the container conveyor 12 offset from each other.
- the container carriers 13 are not only rotatably controlled (arrow C) about their vertical container carrier axis, but also controlled radially or substantially radially with respect to the vertical axis of the container conveyor 12, so that the container carriers 13 and / or on these standing upright bottles 2 are not only rotated about the vertical axis of the container carrier 13 at the printing area 11 of each printing station 1 (arrow C), but also on a curved around the axis of the respective transfer drum 3 path, for example, move on a part-circular path.
- the usable for the transmission of the print image of the transfer elements 4 on the bottles 2 angular range of rotation of the container conveyor 12 is substantially increased, so that a high-quality printing of the bottles 2 at high performance of the device 15 (number of printed bottles 2 per unit time) ensured is.
- the bottles 2 are supplied to the device 15 via a conveyor belt 16 and arrive individually via an inlet star 17 on a container carrier 13.
- the printed bottles 2 are removed from the respective container carrier 13 at an outlet star 18 and conveyed away with the conveyor belt 16.
- a printing of the bottles 2 takes place at different In principle, however, it is also possible to supplement the print image generated by the first printing station 1 in the transport direction B with the printing station 1 following in the direction of transport B, with the one printing station 1 and the bottleneck 2.2. for example, individually different from bottle 2 to bottle 2 or individually different from bottle group to bottle group.
- a drying station 14 for drying, setting and / or baking of the printed image is again provided following each printing station 1.
- FIG. 5 shows as a further embodiment, a printing station 1a, which differs from the printing station 1 essentially in that the transfer elements 4a corresponding to their function and structure of the transfer elements 4 are provided on an auxiliary conveyor, in the form of at least one closed oval loop forming endlessly driven (arrow D) belt, belt or chain-shaped transport element 19.
- This is about at least two in the FIG. 5 is guided with 20 indicated wheels and carries on the outside of the loop, the transfer elements 4a.
- Each transfer element 4a in turn consists of the adhesive layer forming the transfer surface 4a.1, of the elastic intermediate layer and of a carrier element with which the transfer element 4a is held on the transport element 19.
- the transfer elements 4 a are flat or substantially planar on their transfer surface 4.1.
- the print head 8 and the cleaning station 10 preceding this print head 8 in the transport direction D of the transport element 19 are provided on a straight loop length 19. 1 of the transport element 19.
- the pressure region 11a is formed on which the bottles 2 are moved upright on a container conveyor 21 or on there plate-like container carriers 22 straight past. namely while rotating the container carrier 22 and the bottles 2 about their vertical axes (arrow E) such that each bottle 2 slip-free on a transfer element 4a or the local arranged in a vertical plane transfer surface 4a.1 for transferring the negative print image rolls.
- the operation of the printing station 1a corresponds to the operation of the printing station 1, i. on the transfer surfaces 4a. 1, a complete negative print image is generated when moving past the print head 8, which is then transferred to a bottle 2 at the print area 11 a. Before reaching the print head 8, the respective transfer surface 4a.1 is cleaned or, for example, at the cleaning position 10. freed by scraping from residual ink.
- the printed bottles 2 are carried along with the container conveyor 21, u.a. to a not shown, the drying station 14 corresponding drying station.
- the printing station 1a has the additional advantage that a relatively large length of the transport path of the container conveyor 21 is available for the transfer of the negative print images from the transfer elements 4a to the bottles 2, so that the printing station 1a is especially suitable for very high outputs ,
- the container conveyor 21 is a linear container conveyor and that accordingly the transfer elements 4 a are moved on the printing area 11 a on a straight loop length 19. 2 of the transport element 19.
- the transfer elements 4 and 4a are each made of a multi-layer, consisting of the adhesive layer 5, the intermediate layer 6 and the carrier layer 7.
- the adhesive layer 5 is also possible to produce several layers in one piece, for example the adhesive layer 5 as a closed outer skin or layer of a formed with a plurality of pores elastic intermediate layer 6.
- the elastic, pillow-like Forming the transfer element 4 is in any case a compensation of the bottle or container tolerances in the transfer element possible.
Landscapes
- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Coating Apparatus (AREA)
- Ink Jet (AREA)
- Dot-Matrix Printers And Others (AREA)
- Auxiliary Devices For And Details Of Packaging Control (AREA)
- Printing Methods (AREA)
- Wrapping Of Specific Fragile Articles (AREA)
- Filling Of Jars Or Cans And Processes For Cleaning And Sealing Jars (AREA)
- Specific Conveyance Elements (AREA)
Abstract
Description
Die Erfindung bezieht sich auf eine Vorrichtung gemäß Oberbegriff Patentanspruch 1.The invention relates to a device according to the preamble of
Zum Bedrucken von Flaschen oder dergleichen Behältern sind Vorrichtungen in unterschiedlicher Ausführung bekannt, so beispielsweise Vorrichtungen (
Bekannt ist weiterhin auch eine Vorrichtung zum Bedrucken von Behältern (
Die bekannten Vorrichtungen ermöglichen ein Bedrucken von Behältern mit hoher Qualität, d.h. mit einem hochqualitätiven, insbesondere auch scharfen und verzerrungs- und/oder fehlstellenfreien Aufdruck nur dann, wenn die zu bedruckenden Behälter möglichst geringe maßliche Toleranzen besitzen und an ihrem zu bedruckenden Bereich auch keine oder möglichst keine Unebenheiten aufweisen. Aufgabe der Erfindung ist es, eine Vorrichtung aufzuzeigen, die es ermöglicht Flaschen oder dergleichen Behälter bei hoher Leistung (Anzahl der bedruckten Behälter je Zeiteinheit) mit hoher Qualität zu bedrucken. Zur Lösung dieser Aufgabe ist eine Vorrichtung entsprechend dem Patentanspruch 1 ausgebildet.The known devices allow printing on containers of high quality, ie with a high quality, especially sharp and distortion and / or defect-free imprint only if the containers to be printed have the smallest possible dimensional tolerances and on their area to be printed no or as possible have no bumps. The object of the invention is to provide a device that allows bottles or similar containers with high performance (number of printed containers per unit time) to print with high quality. To solve this problem, a device according to the
Durch die erfindungsgemäße Ausbildung ist es u.a. möglich, selbst Flaschen oder dergleichen Behälter, die relativ große maßliche Toleranzen und/oder Unebenheiten aufweisen, mit hoher Qualität und bei hoher Leistung unmittelbar an der Behälteraußenfläche zu bedrucken.The inventive construction, it is u.a. It is possible to print even bottles or similar containers, which have relatively large dimensional tolerances and / or unevenness, with high quality and at high output directly on the container outer surface.
Weiterbildungen, Vorteile und Anwendungsmöglichkeiten der Erfindung ergeben sich auch aus der nachfolgenden Beschreibung von Ausführungsbeispielen und aus den Figuren. Dabei sind alle beschriebenen und/oder bildlich dargestellten Merkmale für sich oder in beliebiger Kombination grundsätzlich Gegenstand der Erfindung, unabhängig von ihrer Zusammenfassung in den Ansprüchen oder deren Rückbeziehung. Auch wird der Inhalt der Ansprüche zu einem Bestandteil der Beschreibung gemacht.Further developments, advantages and applications of the invention will become apparent from the following description of exemplary embodiments and from the figures. In this case, all described and / or illustrated features alone or in any combination are fundamentally the subject of the invention, regardless of their summary in the claims or their dependency. Also, the content of the claims is made an integral part of the description.
Die Erfindung wird im Folgenden anhand der Figuren an Ausführungsbeispielen näher erläutert. Es zeigen:
- Fig. 1
- in sehr vereinfachter Darstellung und in Draufsicht eine Druckstation zum Bedrucken von Flaschen oder dergleichen Behälter an einer kreiszylinderförmigen oder im Wesentlichen kreiszylinderförmigen Behälteraußenfläche, zusammen mit auf einem Behältertransporteur an der Druckstation vorbei bewegten Flaschen;
- Fig. 2
- in vereinfachter perspektivischer Darstellung die Transfertrommel der Druckstation der
mit den Transferelementen, zusammen mit einer auf einem Behälterträger aufstehenden Flasche;Figur 1 - Fig. 3
- in vergrößerter Darstellung einen Schnitt durch ein Transferelement der Druckstation der
;Figur 1 - Fig. 4
- in schematischer Darstellung und in Draufsicht eine Vorrichtung zum Bedrucken von Flaschen oder dergleichen Behältern an kreiszylinderförmigen Behälteraußenflächen mit zwei Druckstation;
- Fig. 5
- in vereinfachter Darstellung und in Draufsicht eine weitere Ausführungsform der erfindungsgemäßen Druckstation mit mehreren an einem Hilfstransporteur vorgesehenen und mit diesem umlaufend angetriebenen Transferelementen;
- Fig. 6
- in perspektivischer Darstellung eines der Transferelemente der
zusammen mit einer auf einem Behälterträger aufstehenden Flasche.Figur 5
- Fig. 1
- in a very simplified representation and in plan view of a printing station for printing on bottles or the like container on a circular cylindrical or substantially circular cylindrical container outer surface, together with on a container conveyor at the printing station moving past bottles;
- Fig. 2
- in a simplified perspective view of the transfer drum of the printing station of
FIG. 1 with the transfer elements, together with a bottle standing on a container carrier; - Fig. 3
- in an enlarged view a section through a transfer element of the printing station of
FIG. 1 ; - Fig. 4
- a schematic representation in plan view of an apparatus for printing bottles or the like containers on circular cylindrical container outer surfaces with two printing station;
- Fig. 5
- in a simplified representation and in plan view, another embodiment of the printing station according to the invention with a plurality of provided on an auxiliary conveyor and with this circumferentially driven transfer elements;
- Fig. 6
- in a perspective view of one of the transfer elements of
FIG. 5 together with a bottle standing on a container carrier.
Die in den
Die Druckstation 1 umfasst u.a. eine um ihre vertikale Achse in Richtung des Pfeils A umlaufend angetriebene Transfertrommel 3, an deren kreiszylinderförmiger Umfangsfläche in gleichmäßigen Winkelabständen um die Trommelachse versetzt mehrere Transferelemente 4, d.h. bei der dargestellten Ausführungsform insgesamt drei Transferelemente 4 vorzugsweise auswechselbar vorgesehen sind. Wie speziell die
Die Druckstation 1 umfasst weiterhin einen Druckkopf 8, der an der Peripherie der Transfertrommel 3 mit dieser nicht mitdrehend angeordnet ist und mit dem jeweils das komplette, auf eine Flasche 2 aufzubringende Druckbild in negativer bzw. spiegelbildlicher Form, d.h. als Negativ-Druckbild auf die Transferfläche 4.1 des sich bei umlaufender Transfertrommel 3 am Druckkopf 8 vorbei bewegenden Transferelementes 4 aufgebracht wird. Der Druckkopf 8 ist bevorzugt ein elektronischer Druckkopf und umfasst für einen Mehrfarbendruck mehrere elektronisch ansteuerbare Einzeldruckköpfe, die in Drehrichtung A aufeinander folgend vorgesehen sind, und zwar beispielsweise ein Einzeldruckkopf für Schwarz und mehrere Einzeldruckköpfe für unterschiedliche Farbsätze eines Mehrfarbendrucks.The
Die Einzeldruckköpfe sind beispielsweise solche, die unter der Bezeichnung "Tonejet" bekannt sind und die jeweils eine Vielzahl von Düsenöffnungen in einer Reihe aufweisen, die parallel oder im Wesentlichen parallel zur Achse der Transfertrommel 3 orientiert ist. Jeder Düsenöffnung ist eine Elektrode zugeordnet. Die Einzeldruckköpfe bzw. deren Elektroden werden von einer das Druckbild elektronisch erzeugenden Steuereinrichtung 9 angesteuert, und zwar derart, dass an den Düsenöffnungen bei einer Änderung des Potentials der zugehörigen Elektrode gegenüber dem Potential der Düsenöffnung Druckfarbe zur Erzeugung eines Bildpunktes auf der Transferfläche 4.1 ausgebracht wird.The individual printing heads are, for example, those which are known by the name "Tonejet" and each having a plurality of nozzle openings in a row which is oriented parallel or substantially parallel to the axis of the
Dem Druckkopf in Drehrichtung A vorausgehend ist an der Peripherie der Transfertrommel und mit dieser nicht mitdrehend eine Reinigungsstation oder -position 10 vorgesehen, an der die mit der Transfertrommel 3 vorbei bewegten Transferelemente 4 vor dem Aufbringen des neuen Negativ-Druckbildes an ihrer Transferfläche 4.1 gereinigt, d.h. vorhandene Reste an Druckfarbe entfernt werden. Die Reinigungsstation 10 ist im einfachsten Fall von einem oder mehreren Schabern gebildet.The printhead in the direction of rotation A is preceded by a cleaning station or
Jedes mit dem Negativ-Druckbild an der Transferfläche 4.1 versehenes Transferelement 4 gelangt mit der umlaufenden Transfertrommel 3 an einen Druckbereich 11, wenn dort eine auf einem Flaschen- oder Behältertransporteur 12 aufrecht stehend, d.h. mit ihrer Achse in vertikaler Richtung orientierte Flasche 2 vorbei bewegt wird. Der Behältertransporteur 12 ist bei der in den
Jede so bedruckte Flasche 2 wird dann weiterhin auf dem zugehörigen Behälterträger 13 aufstehend mit dem Behältertransporteur 12 mitbewegt und gelangt u.a. an eine Station 14, an der durch Energieeinwirkung oder -eintrag, beispielsweise durch Infrarot-Strahlung, UV-Strahlung, Mikrowellenenergie, Warmluft usw. ein Trocknen, Abbinden oder Einbrennen des unmittelbar auf die Flasche 2 aufgebrachten Druckbildes erfolgt, und zwar bevorzugt bei weiterhin um ihre Flaschenachse mit dem Behälterträger 13 gedrehter Flasche 2.Each
Eine Besonderheit der Druckstation 1 besteht darin, dass auf jeder Transferfläche 4.1 beim Vorbeibewegen am Druckkopf 8 jeweils in Negativ-Form das vollständige, auf die Flaschen 2 aufzubringende Druckbild erzeugt wird. Um ein hochqualitatives, insbesondere auch sauberes, fehlstellenfreies und scharfes Druckbild zu erreichen, ist es erforderlich, dass ein genau vorgeschriebener Abstand zwischen der Transferfläche 4.1 und dem Druckkopf 8 bzw. den Einzeldruckköpfen exakt eingehalten wird. Dies ist problemlos möglich.A special feature of the
Durch die elastische Zwischenschicht 6 ist gewährleistet, dass auch bei maßlichen Toleranzen, z.B. bei Toleranzen im Durchmesser der Flaschen 2, die (Toleranzen) durchaus im Bereich zwischen 0,5 bis 07 mm liegen können, aber auch bei Unebenheiten das für die Übertragung des Druckbildes von dem Transferelement 4 auf die jeweilige Flasche 2 erforderliche dichte Anliegen der Transferfläche 4.1 gegen den zu bedruckenden Flaschenbereich gewährleistet ist. Insgesamt gesehen bietet somit die Druckstation 1 den Vorteil, dass ein hochqualitativer Druck unter Einhaltung des hierfür notwendigen und sehr kritischen Abstandes zwischen dem Druckkopf 8 und den Transferflächen 4.1 möglich ist, und zwar trotz erheblicher maßlicher Toleranzen der Flaschen 2, wobei diese Toleranzen durch die elastische Ausbildung der Transferelemente 4, d.h. in den elastischen Zwischenschichten 6 kompensiert werden.By the elastic
Die
Bei der Vorrichtung 15 sind die Behälterträger 13 nicht nur um ihre vertikale Behälterträgerachse gesteuert drehbar (Pfeil C), sondern zugleich bezogen auf die vertikale Achse des Behältertransporteurs 12 auch gesteuert radial oder im Wesentlichen radial bewegbar, so dass die Behälterträger 13 bzw. die auf diesen aufrecht stehend angeordneten Flaschen 2 am Druckbereich 11 jeder Druckstation 1 nicht nur um die vertikale Achse der Behälterträger 13 gedreht werden (Pfeil C), sondern sich auch auf einer um die Achse der jeweiligen Transfertrommel 3 gekrümmten Bahn, beispielsweise auf einer teilkreisförmigen Bahn bewegen. Hierdurch wird der für die Übertragung des Druckbildes von den Transferelementen 4 auf die Flaschen 2 nutzbarer Winkelbereich der Drehbewegung des Behältertransporteurs 12 wesentliche vergrößert, so dass ein hochqualitatives Bedrucken der Flaschen 2 bei hoher Leistung der Vorrichtung 15 (Anzahl der bedruckten Flaschen 2 je Zeiteinheit) sichergestellt ist.In the
Die Flaschen 2 werden der Vorrichtung 15 über ein Transportband 16 zugeführt und gelangen jeweils einzeln über einen Einlaufstern 17 auf einem Behälterträger 13. Die bedruckten Flaschen 2 werden dem jeweiligen Behälterträger 13 an einem Auslaufstern 18 entnommen und mit dem Transportband 16 weggefördert. Mit den beiden Druckstationen 1 erfolgt ein Bedrucken der Flaschen 2 an unterschiedlichen Bereichen, beispielsweise am Flaschenbauch 2.1 mit der einen Druckstation 1 und am Flaschenhals 2.2 mit der anderen Druckstation 1. Grundsätzlich besteht aber auch die Möglichkeit, das mit der in Transportrichtung B ersten Druckstation 1 erzeugte Druckbild mit der in Transportrichtung B folgenden Druckstation 1 zu ergänzen, beispielsweise auch individuell unterschiedlich von Flasche 2 zu Flasche 2 oder individuell unterschiedlich von Flaschegruppe zu Flaschengruppe.The
In Transportrichtung B ist auf jede Druckstation 1 folgend wiederum eine Trockenstation 14 zum Trocknen, Abbinden und/oder Einbrennen des Druckbildes vorgesehen.In the transport direction B, a drying
Die
An der der Schlaufenlänge 19.1 gegenüber liegenden, ebenfalls geradlinigen Schlaufenlänge 19.2 des Transportelementes 19 ist der Druckbereich 11a gebildet, an dem die Flaschen 2 aufrecht stehend auf einem Behältertransporteur 21 bzw. auf dortigen tellerartigen Behälterträgern 22 geradlinig vorbei bewegt werden. und zwar unter Drehen der Behälterträger 22 und der Flaschen 2 um ihre vertikalen Achsen (Pfeil E) derart, dass sich jede Flasche 2 schlupffrei auf einem Transferelement 4a bzw. der dortigen in einer vertikalen Ebene angeordneten Transferfläche 4a.1 zur Übertragung des Negativ-Druckbildes abwälzt.At the loop length 19.1 opposite, also rectilinear loop length 19.2 of the
Die Arbeitsweise der Druckstation 1a entspricht der Arbeitsweise der Druckstation 1, d.h. auf den Transferflächen 4a.1 wird beim Vorbeibewegen am Druckkopf 8 jeweils ein komplettes Negativ-Druckbild erzeugt, welches dann an dem Druckbereich 11 a auf eine Flasche 2 übertragen wird. Vor Erreichen des Druckkopfes 8 wird an der Reinigungsposition 10 die jeweilige Transferfläche 4a.1 gereinigt bzw. z.B. durch Abschaben von Druckfarbenresten befreit. Die bedruckten Flaschen 2 werden mit dem Behältertransporteur 21 mitgeführt, und zwar u.a. an eine nicht dargestellte, der Trockenstation 14 entsprechende Trockenstation.The operation of the printing station 1a corresponds to the operation of the
Die Druckstation 1a hat den zusätzlichen Vorteil, dass eine relativ große Länge der Transportstrecke des Behältertransporteurs 21 für den Transfer der Negativ-Druckbilder von den Transferelementen 4a auf die Flaschen 2 zur Verfügung steht, so dass die Druckstation 1a speziell auch für sehr hohe Leistungen geeignet ist.The printing station 1a has the additional advantage that a relatively large length of the transport path of the
Die Erfindung wurde voranstehend an Ausführungsbeispielen beschrieben. Es versteht sich, dass zahlreiche Änderungen sowie Abwandlungen möglich sind, ohne dass dadurch der der Erfindung zugrunde liegende Erfindungsgedanke verlassen wird.The invention has been described above by means of exemplary embodiments. It is understood that numerous changes and modifications are possible without thereby departing from the inventive concept underlying the invention.
So wurde vorstehend davon ausgegangen, dass der Behältertransporteur 21 ein linearer Behältertransporteur ist und dass dementsprechend die Transferelemente 4a am Druckbereich 11a auf einer geradlinigen Schlaufenlänge 19.2 des Transportelementes 19 bewegt werden. Grundsätzlich ist es auch möglich, das Transportelement 19 und damit auch die Transferelemente 4a am Druckbereich 11a auf einer gekrümmten Bahn, beispielsweise auf einer teilkreisförmig gekrümmten Bahn zu führen, so dass dann die entsprechende Druckstation auch an der Peripherie eines Behältertransporteurs in Form eines um eine vertikale Maschinenachse umlaufenden Rotors angeordnet werden kann.Thus, it was assumed above that the
Vorstehend wurde weiterhin davon ausgegangen, dass die Transferelemente 4 bzw. 4a jeweils mehrschichtig ausgeführt sind, und zwar bestehend aus der Haftschicht 5, der Zwischenschicht 6 und der Trägerschicht 7. Es besteht aber u.a. auch die Möglichkeit mehrere Schichten einstückig herzustellen, und zwar beispielsweise die Haftschicht 5 als geschlossene äußere Haut oder Schicht einer mit einer Vielzahl von Poren ausgebildeten elastischen Zwischenschicht 6. Durch die elastische, kissenartige Ausbildung des Transferelementes 4 ist in jedem Fall ein Ausgleich der Flaschen- oder Behältertoleranzen im Transferelement möglich.Above, it was further assumed that the
- 1, 1 a1, 1 a
- Druckstationprinting station
- 22
- Flaschebottle
- 2.12.1
- Flaschenbauchbottle body
- 2.22.2
- Flaschenhalsbottleneck
- 33
- Transfertrommeltransfer drum
- 4, 4a4, 4a
- Transferelementtransfer element
- 4.1, 4a.14.1, 4a.1
- Transferflächetransfer surface
- 55
- Haftschichtadhesive layer
- 66
- Zwischenschichtinterlayer
- 77
- Tragelementsupporting member
- 88th
- Druckkopfprinthead
- 99
- Steuereinrichtungcontrol device
- 1010
- Reinigungsstationcleaning station
- 11, 11 a11, 11 a
- Druckposition oder DruckbereichPrint position or print area
- 1212
- Behältertransporteurcontainer transporter
- 1313
- Behälterträgercontainer carrier
- 1414
- Trockenstationdrying station
- 1515
- Vorrichtungcontraption
- 1616
- Transportbandconveyor belt
- 1717
- Einlaufsternfeed star
- 1818
- Auslaufsternoutlet star
- 1919
- Hilfstransporteur oder schlaufenartigen TransportelementHilfstransporteur or loop-type transport element
- 19.1, 19.219.1, 19.2
- geradlinige Länge der Schlaufe des Transportelementes 19straight length of the loop of the transport element 19th
- 2020
- Radwheel
- 2121
- Behältertransporteurcontainer transporter
- 2222
- Behälterträgercontainer carrier
- AA
-
Drehrichtung der Transfertrommel 3Direction of rotation of the
transfer drum 3 - BB
-
Dreh- oder Transportrichtung des Behältertransporteurs 12Rotational or transport direction of the
container conveyor 12 - CC
-
Drehrichtung der Behälterträger 13Direction of rotation of the
container carrier 13 - DD
- Bewegungsrichtung des Transportelementes 19Direction of movement of the transport element 19th
- Ee
-
Transportrichtung des Behältertransporteurs 21Transport direction of the
container conveyor 21 - FF
- Drehrichtung der Behälterträger 22Direction of rotation of the container carrier 22nd
Claims (13)
- An apparatus for printing bottles or similar containers (2) on an outer container surface, having at least one printing station (1, 1a), which has the containers (2) moving past its printing region (11, 11 a) on a container conveyor (12, 21), having at least one printing head (8) and having a transfer element (4, 4a) which forms at least one transfer surface (4.1, 4a.1) and is provided on an auxiliary conveyor (3, 18) and which is moved by the auxiliary conveyor (3, 19) at least between the at least one printing head (8) and the printing region (11, 11a), for the purpose of applying a negative printing image to the at least one transfer surface (4.1, 4a.1) for transferring the negative printing image to a container region (2.1, 2.2) rolling over the transfer surface (4.1, 4a.1), the transfer surface (4.1, 4a.1) being elastically or resiliently configured, and a plurality of transfer elements (4, 4a) being provided on the auxiliary conveyor (3, 19), characterised in that the transfer elements (4, 4a) are each configured with at least two layers comprising an adhesive layer that forms the transfer surface (4.1, 4a.1) and a resilient intermediate layer (6) carrying this adhesive layer.
- An apparatus according to Claim 1, characterised in that a complete negative printing image is produced with each printing head (8).
- An apparatus according to Claim 1 or 2, characterised in that at least one station (10) for cleaning the at least one transfer surface (4.1, 4a.1) is provided in the direction of motion or transport (A, D) of the auxiliary conveyor (3, 19) upstream of the at least one printing head (8).
- An apparatus according to any one of the preceding claims, characterised in that the adhesive layer (5) and/or the intermediate layer (6) consist of one or more individual layers or individual strata.
- An apparatus according to any one of the preceding claims, characterised in that the auxiliary conveyor is a transfer drum (3) driven to rotate about a drum axis, for example about an axis parallel or essentially parallel to the axis of the containers (2).
- An apparatus according to any one of the preceding claims, characterised in that the auxiliary conveyor is formed by at least one belt-like or chain-like transport element (19) forming a continuous loop.
- An apparatus according to any one of the preceding claims, characterised in that the container conveyor (12) is a turntable or rotor rotating about a vertical machine axis.
- An apparatus according to any one of the preceding claims, characterised in that the container conveyor (21) is a linear conveyor.
- An apparatus according to any one of the preceding claims, characterised by container carriers (13, 22) on the container conveyor (12, 21), each for one container (2).
- An apparatus according to Claim 8, characterised by means for the controlled rotating of the container carriers (13, 22) and hence of the containers (2), at least at the printing region (11, 11 a).
- An apparatus according to any one of the preceding claims, characterised by means for the controlled moving of the container carriers (13) in such a way that at the printing region (11) of the at least one printing station (1) the trajectory of the container carriers (13) and hence of the containers (2) thereon disposed runs parallel or essentially parallel to the trajectory there of the transfer elements (4), for example concentrically to a circular trajectory of the transfer elements (4).
- An apparatus according to any one of the preceding claims, characterised in that the at least one transfer surface (4.1) of the at least one transfer element (4) is convex, for example curved in the manner of an arch.
- An apparatus according to any one of the preceding claims, characterised in that the at least one transfer surface (4a.1) of the at least one transfer element (4a) is configured so as to be flat or essentially flat.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102007050493A DE102007050493A1 (en) | 2007-10-19 | 2007-10-19 | Device for printing containers, has printing group provided with printing heads operating according to ink jet printing principle |
DE102007050490A DE102007050490A1 (en) | 2007-10-19 | 2007-10-19 | Device for printing containers, has printing group provided with printing heads operating according to ink jet printing principle |
PCT/EP2008/007043 WO2009052890A1 (en) | 2007-10-19 | 2008-08-28 | Apparatus for printing bottles or similar containers on the outer container surface |
Publications (2)
Publication Number | Publication Date |
---|---|
EP2207684A1 EP2207684A1 (en) | 2010-07-21 |
EP2207684B1 true EP2207684B1 (en) | 2011-11-23 |
Family
ID=40070856
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP08801735A Not-in-force EP2207684B1 (en) | 2007-10-19 | 2008-08-28 | Apparatus for printing bottles or similar containers on the outer container surface |
Country Status (9)
Country | Link |
---|---|
US (1) | US10166781B2 (en) |
EP (1) | EP2207684B1 (en) |
JP (1) | JP5566893B2 (en) |
CN (1) | CN101827711B (en) |
AT (1) | ATE534526T1 (en) |
BR (1) | BRPI0817347A2 (en) |
MX (1) | MX2010004029A (en) |
RU (1) | RU2433049C1 (en) |
WO (1) | WO2009052890A1 (en) |
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-
2008
- 2008-08-28 BR BRPI0817347-8A patent/BRPI0817347A2/en not_active Application Discontinuation
- 2008-08-28 MX MX2010004029A patent/MX2010004029A/en active IP Right Grant
- 2008-08-28 JP JP2010529249A patent/JP5566893B2/en not_active Expired - Fee Related
- 2008-08-28 CN CN2008801116370A patent/CN101827711B/en not_active Expired - Fee Related
- 2008-08-28 EP EP08801735A patent/EP2207684B1/en not_active Not-in-force
- 2008-08-28 AT AT08801735T patent/ATE534526T1/en active
- 2008-08-28 RU RU2010119959/12A patent/RU2433049C1/en not_active IP Right Cessation
- 2008-08-28 WO PCT/EP2008/007043 patent/WO2009052890A1/en active Application Filing
-
2010
- 2010-04-19 US US12/762,964 patent/US10166781B2/en not_active Expired - Fee Related
Also Published As
Publication number | Publication date |
---|---|
BRPI0817347A2 (en) | 2011-08-30 |
US20100257819A1 (en) | 2010-10-14 |
CN101827711A (en) | 2010-09-08 |
JP5566893B2 (en) | 2014-08-06 |
JP2011500363A (en) | 2011-01-06 |
MX2010004029A (en) | 2010-04-30 |
RU2433049C1 (en) | 2011-11-10 |
EP2207684A1 (en) | 2010-07-21 |
CN101827711B (en) | 2013-03-20 |
WO2009052890A1 (en) | 2009-04-30 |
ATE534526T1 (en) | 2011-12-15 |
US10166781B2 (en) | 2019-01-01 |
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