EP3023253B1 - Method and device for ink-jet printing on containers - Google Patents
Method and device for ink-jet printing on containers Download PDFInfo
- Publication number
- EP3023253B1 EP3023253B1 EP15189475.5A EP15189475A EP3023253B1 EP 3023253 B1 EP3023253 B1 EP 3023253B1 EP 15189475 A EP15189475 A EP 15189475A EP 3023253 B1 EP3023253 B1 EP 3023253B1
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- European Patent Office
- Prior art keywords
- printed
- containers
- container
- subprint
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- 238000000034 method Methods 0.000 title claims description 21
- 238000007641 inkjet printing Methods 0.000 title claims description 7
- 238000007639 printing Methods 0.000 claims description 71
- 230000007704 transition Effects 0.000 description 8
- 230000000295 complement effect Effects 0.000 description 5
- 238000010017 direct printing Methods 0.000 description 5
- 230000002093 peripheral effect Effects 0.000 description 5
- 238000000465 moulding Methods 0.000 description 3
- 235000013361 beverage Nutrition 0.000 description 2
- 239000003086 colorant Substances 0.000 description 1
- 230000006835 compression Effects 0.000 description 1
- 238000007906 compression Methods 0.000 description 1
- 238000007796 conventional method Methods 0.000 description 1
- 230000007423 decrease Effects 0.000 description 1
- 230000002950 deficient Effects 0.000 description 1
- 230000012447 hatching Effects 0.000 description 1
- 238000010422 painting Methods 0.000 description 1
- 238000002360 preparation method Methods 0.000 description 1
- 238000000926 separation method Methods 0.000 description 1
- 230000001960 triggered effect Effects 0.000 description 1
Images
Classifications
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- 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
-
- 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
- B41J2/00—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
- B41J2/005—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
- B41J2/01—Ink jet
-
- 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
- B41J2/00—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed
- B41J2/005—Typewriters or selective printing mechanisms characterised by the printing or marking process for which they are designed characterised by bringing liquid or particles selectively into contact with a printing material
- B41J2/01—Ink jet
- B41J2/21—Ink jet for multi-colour printing
- B41J2/2132—Print quality control characterised by dot disposition, e.g. for reducing white stripes or banding
-
- 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 method and apparatus for ink jet printing on containers.
- EP 2 669 088 A1 and the DE 10 2011 113 150 A1 It is known to guide containers to be printed along circular transport paths along stationary printing stations or to circulate printing stations together with the containers on carousels or the like. By rotating the container around itself, an advance of the side walls of the containers to be printed is then produced in front of the respectively activated printheads.
- the printheads used for this purpose generally have rows of nozzles extending transversely to the printing direction, with individual printheads possibly not covering the entire width of a printed image defined transversely to the printing direction as a result of the design.
- printheads are used whose pressure areas abut or overlap transversely to the printing direction. Depending on the accuracy of the adjustment of such adjacent pressure ranges occur between the part imprints produced visible and the printed image disturbing transitions, for example, at double-printed areas or to gaps in the printed image.
- the EP 2 769 848 A2 Proposes to compensate for an inaccurate height of the containers in front of different stationary printheads by selectively adding nozzles in a vertical overlap area of the printheads.
- the containers are moved on turntables standing by a container table on the printheads successively and determines the vertical position transverse to the printing direction of the containers in the region of the individual printheads.
- a corresponding connection or disconnection of individual nozzles is triggered.
- a gridded meshing of partial imprints transversely to the printing direction is described as rather problematic. Instead, vertical position changes of the containers are to be compensated for by switching on / off printheads only in a minimized overlapping area.
- the EP 2 208 541 A2 further describes the painting of body surfaces, wherein printing webs are printed consistently meandering and then overlap transversely to the printing direction with a uniform in the overall layer thickness / flow into each other.
- the pressure paths are sharply delimited in the printing direction.
- a method according to claim 1 is suitable for inkjet printing on containers, wherein at least a first and a second partial imprint are added in the printing direction to a printed image complementary to each other.
- first the first partial imprint is printed from one or up to a connection area.
- the second partial imprint is printed at a pressure feed in the direction of the connection region, such that the first and second partial imprints overlap one another in the connection region.
- partial imprints in particular for direct printing on curved container surfaces whose length to be printed may vary due to dimensional tolerances of the containers, can be combined with a transition region which is less conspicuous to the viewer than conventional methods.
- intermeshing is to be understood here that the partial imprints in the connection region do not adjoin one another along a straight line running transversely to the printing direction, but that an interlocking and / or mosaic interlocking connection region is formed in the image contents of both the first and the second partial imprint are distributed so that the transition between the image areas blurred to the viewer.
- the intermeshing pressure also decreases the requirements for the dimensional accuracy of the container and the accuracy of the printhead positioning and / or the rotational position of the position of the container with respect to at least one printhead used for inkjet printing.
- the printing direction extends laterally around a main axis of the containers.
- the inventive method is particularly suitable for the joining of partial prints that cover the peripheral portions of the container.
- the container can be in the partially circumferential areas, in particular during transport of the container print with a required print quality.
- dimensional tolerances in particular with regard to the container circumference, can be compensated.
- connection region preferably covers a circumferential arc segment with a length of 5 to 50 pixels, in particular 10 to 30 pixels, based on the print resolution of the printed image. Also conceivable is an absolutely defined length of the circumferential arc segment of 0.1 to 1 mm or in particular from 0.2 to 0.5 mm.
- the circumferential arc segment is to be understood as a section of the outer container cross section.
- the connection region thus defines an overlap region with the length defined above, in which the partial imprints overlap one another in the circumferential direction.
- the containers are at least fully printed over a pressure range of at least 362 degrees, in particular at least 365 degrees.
- the containers can be easily printed in this way completely. For each ink only one print head is needed.
- the containers are rotated around themselves before at least one print head.
- This allows a feed especially curved container surfaces in front of the print head.
- Rotation of the containers about themselves can nevertheless be combined with a pressure feed of the containers in front of the print head caused by a transport.
- a suitable feed in front of the print head can also be generated exclusively by a transport movement of the containers with respect to the print head.
- the first and second partial imprints are printed by means of different printheads.
- the print image can be composed of several complementary in the circumferential direction partial imprints in visually appealing way. This is particularly advantageous when the full rotation of the container before a single printhead for lack of time during the container transport is not possible and / or if not rotationally symmetric container cross sections require the use of different printheads for printing circumferential portions of the container.
- the end of the second partial imprint connects to the beginning of the first partial imprint.
- the beginning and end of the partial imprints are to be understood here in terms of a chronological sequence when printing on the container.
- the first partial imprint in Print direction seamlessly transition into the second partial imprint, for example, in a full rotation of the container around itself in front of a single printhead.
- the beginning of the printing process then defines the beginning of the first partial imprint.
- the end of the second partial imprint then results from reaching the beginning of the first partial imprint after full rotation by definition.
- the joining according to the invention at the beginning of the first partial imprint and at the end of the second partial imprint allows for a continuous and without double impression printed image in the connection area for the viewer.
- connection areas distributed around the container in the circumferential direction are produced simultaneously for each container.
- at least two printheads distributed in the circumferential direction around the container are present, which emit ink with simultaneous rotation of the container in temporally overlapping printing processes. It is then necessary, for example, only a teilumfnature rotation of the container for a full-scale print with inventively juxtaposed partial imprints.
- direct printing can be performed faster and / or with multiple components of a color model.
- connection areas of different components are offset from one another in the printing direction.
- a connection region between two partial imprints of one component lies in a different circumferential partial region of the printed image than a connection region of another component of the color model.
- overlapping areas between the partial imprints in the printed image as a whole can be made particularly inconspicuous. For example, artefacts caused by the intermeshing pressure would not overlap in the same circumferential area of the print image but would be distributed to different peripheral areas of the print image for the individual components of the color model.
- image contents of a digital print original contained in the first and / or second partial print are distributed by image processing algorithm to pixel patterns that complement each other in the connection area to the print image.
- pixel patterns are binary masks that complement each other in the connection area to the printed image.
- no continuous boundary line is then formed between the masks of the first and second partial imprint.
- image contents can be distributed in a suitable manner to the first and second partial imprints, depending on the printed image. It is also possible to reproduce image contents by copying and inserting both in the first and in the second partial imprint.
- Pixels often consist of different sized drops and associated colors.
- the print heads are able to print different drop sizes depending on the control or print template preparation.
- each pixel in the transition area could be printed in two printing operations.
- the required amount of ink or drop size can then be distributed to two print heads.
- a pixel can be composed of a total of seven sub-droplets, wherein a sub-droplet is to be understood as the smallest droplet that can be represented.
- one printhead can deliver four sub-drops and the other printhead can deliver the remaining three sub-drops of the pixel.
- At least a third and a fourth partial imprint are added to the first and second partial imprints transversely to the printing direction such that the respectively adjacent partial imprints overlap one another in the associated connection regions.
- the print image can thus be tiling-like composed of individual partial imprints.
- partial envelopes adjoining one another in the peripheral direction of the container can be visually inconspicuously joined together and optically combined in the axial direction to increase the printing width.
- the containers are molding bottles.
- the containers are molding bottles.
- a rotation of form bottles around themselves occur changes in the pressure separation and caused by the pressure feed pressure resolution.
- the molding bottles preferably have a curved cross section in a side wall section to be printed, in particular with a changing radius of curvature.
- a curved cross section in a side wall section to be printed, in particular with a changing radius of curvature.
- the device then comprises at least two print heads offset from one another in the printing direction, which are tuned in such a way that they can be used to assemble a print image from partial prints intermeshing in the printing direction.
- the Fig. 1 illustrates the basic problem when joining a first and second partial imprint 1, 2 in the printing direction 3 to a continuous print image 4.
- the partial imprints 1, 2 are respectively from an initial region 1a, 2a to an end region 1b, 2b to produce such succession that image content 1c, 2c of the first and second partial imprints 1, 2 at an imaginary, transversely to the printing direction 3 extending target line of abutment 5 abut each other and complement each other seamlessly in the printed image 4.
- a first and second print head 6, 7 are shown, with which the partial imprints 1, 2 are printed, for example, on a side wall 8a of a container 8.
- the print heads 6, 7 are (schematically indicated) extending transversely to the printing direction 3 nozzle rows 6a, 7a available.
- the rows of nozzles 6a, 7a have a spacing 9 relative to one another in the printing direction 3.
- Fig. 3 can also be caused by the fact that these different peripheral portions 8b, 8c of the container 8 are facing, for example, offset by 180 ° in the circumferential direction to the partial imprints 1, 2 upon rotation of the Container 8 to overlap itself or to produce simultaneously with the print heads 6, 7.
- a suitable rotation in the printing direction 3 about the main axis 8 'of the container 8 is in the Fig. 2 indicated schematically.
- the partial imprints 1, 2 then lined up against the idealized representation of Fig. 1 not seamlessly along the imaginary desired score line 5 together. Instead, for example, between the end region 1 b and the starting region 2 a of the partial imprints 1, 2 connecting gaps without imprinting or an overlapping double printing with imprinted image contents 1 c, 2 c of the partial imprints 1, 2 are formed. This then incorrectly adjacent to the target-line 5 lying limits 1d, 2d of the partial imprints 1, 2 are in the Fig. 1 indicated by dashed lines as an example. As a result, quality losses during direct printing of the side wall 8a are counteracted by the interleaving overlapping of the first and second partial imprints 1, 2 explained below.
- image contents 1 c from the end region 1 b of the first partial imprint 1 with image contents 2 c of the starting region 2 a of the second partial imprint 2 are distributed into one another within a connection region 10. This is in the Fig. 2 shown schematically.
- connection region 10 preferably covers a circumferential arc segment 8d of the side wall 8a in the printing direction 3, with a length of 5 to 50 pixels, in particular from 10 to 5, for example, based on the printing resolution of the printed image 4 30 pixels, or with an absolutely defined length of 0.1 to 1 mm or in particular from 0.2 to 0.5 mm. This results in an extended in the direction of pressure overlap area in contrast to the conventional, ideally non-overlapping contiguous abutment of the sections 1, 2 along the imaginary continuous target-puncture line fifth
- the image contents 1c, 2c intermesh with one another, see upper exemplary example 10a in the connection region 10, and / or pixels of the image contents 1c, 2c are distributed like a mosaic in the connection region 10, see the lower exemplary example 10b. Pixels of the image contents 1c, 2c can be flexibly distributed in the connection area 10 with image processing algorithms, depending on the printed image 4 to be produced. As a result, conventional, continuously rectilinear boundaries 1d, 2c of the partial imprints 1, 2 are broken at least in sections.
- image contents 1c, 2c in the connection area 10 could be printed in two printing processes.
- the amount of ink per pixel or parts of the drop size of the pixel can then be distributed to the print heads 6, 7.
- a pixel can be composed of several sub-droplets, wherein a sub-droplet is to be understood as the smallest droplet that can be represented.
- one print head 6 can deliver a suitable number of sub-drops, and the other print head 7 can deliver the remaining sub-drops of the respective image point.
- connection region 10 differs from the prior art in particular in that the image contents 1c, 2c are not sharply demarcated at ends 1d, 2d which extend transversely to the printing direction 3.
- the latter can be rectilinear orthogonal to the printing direction 3, jagged, oblique or the like
- the length of the connection region 10 in the printing direction 3, that is, for example, the length of the sheet segment 8d, can be flexibly adapted to the expected dimensional tolerance and / or shape tolerance of the side wall 8a and / or the printed image 4 to be imprinted by image processing of the image contents 1c, 2c.
- Fig. 3 shows schematic plan views of preferred embodiments 20, 21 of a device according to the invention, which differ by the number of print heads.
- a container to be printed 8 On the left side of the Fig. 3 is a container to be printed 8 and two 180 degrees around the container circumference distributed printheads 6, 7 shown.
- a pressure feed of the container side wall 8a in the printing direction 3 with respect to the print heads 6, 7 is generated by rotation of the container 8 around itself in front of both print heads 6, 7 simultaneously.
- the first partial print 1 with one print head 6 and the second partial print 2 with the other print head 7 could be generated.
- connection area 10 only results after rotation of the container 8 by more than 360 °, for example by 362 °.
- the initial region 1a of the first partial imprint 1 is then first produced and the end region 2b of the second partial imprint 2 is added to the initial region 1a without interruption of the printing advance.
- terminal regions 10 according to the invention can in principle be produced with any desired, even partially circumferential, rotational movements of the container 8 around itself.
- a rotatable holder 22 for the container 8 and a control unit 23 for controlling the print head 6 and the holder 22 is present.
- the first and second partial imprint 1, 2 are defined with regard to the connection region 10, 11 to be produced, regardless of the number of printheads 6, 7 used and whether the printing feed in the printing direction 3 is interrupted between individual partial imprints 1, 2.
- the beginning and end of the partial imprints 1, 2 are related to the printing direction 3 for a better understanding. However, it does not matter for the invention whether the printing direction 3 is reversed for individual partial imprints 1, 2. It is crucial that is printed on an initial area or end portion of a previously created partial imprint out and the respective terminal portion 10, 11 formed meshing with each other.
- the Fig. 4 shows a further advantageous variant, in the inventive terminal areas 10, 11 between the first and second partial imprints 1, 2 and between third and fourth partial imprints 12, 13 are produced in the printing direction 3. Furthermore, the partial imprints 1, 2, 12, 13 share a connection region 14 transversely to the printing direction 3. This is possible, for example, with printing heads 15, 16 which are offset from one another both along the printing direction 3 and transversely to the printing direction 3. The connection region 14 is then also formed with partial imprints 1, 2, 12, 13 which mesh with one another transversely to the printing direction 3.
- Fig. 4 On the right side of the Fig. 4 is also indicated that in the printing direction 3 and transverse to the printing direction 3 intermeshing partial imprints 1, 2, 12, 13 on different partially circumferential areas 8b, 8c in analogy to Fig. 3 also by several correspondingly distributed printheads 15, 16 produce simultaneously or overlapping in time.
- the Fig. 5 shows a further advantageous variant for printing formed as molding bottles containers 18 with non-rotationally symmetrical cross-section.
- an elliptical cross section to be imprinted is indicated. Due to the significantly divergent radii of curvature of individual teilumfnature areas 18b, 18c of the side wall 18a during rotation of the container 18 about its major axis 18 ', the printed image 4 in the printing direction 3 of several partial imprints 1, 2 must be assembled.
- first and second partial imprints 1, 2 are associated with the partially circumferential regions 18b, 18c, which parts intersect one another in a connecting region 10 according to the invention.
- the connection region 10 is characterized by an oblique hatching.
- the teilumfbaren wall portions 18b, 18c of the side wall 18a are printed for this purpose successively from at appropriate intervals to the main axis 18 'arranged print heads 6, 7 by rotation of the container 18 to itself.
- the containers are then also moved along a linear and / or circular or otherwise extending transport path 19 to produce a suitable print feed in front of the print heads 6, 7.
- the described embodiments and variants can be flexibly combined to directly print different containers 8, 18, such as bottles with rotationally symmetrical cross section or shaped bottles by means of inkjet.
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Description
Die Erfindung betrifft ein Verfahren und eine Vorrichtung für den Tintenstrahldruck auf Behälter.The invention relates to a method and apparatus for ink jet printing on containers.
Für den Tintenstrahldruck auf Behälter, wie beispielsweise Getränkeflaschen oder dergleichen, ist es beispielsweise aus der
Die hierfür verwendeten Druckköpfe haben in der Regel quer zur Druckrichtung verlaufende Düsenreihen, wobei einzelne Druckköpfe bauartbedingt gegebenenfalls nicht die gesamte, quer zur Druckrichtung definierte Breite eines Druckbilds abdecken. In diesem Fall werden Druckköpfe verwendet, deren Druckbereiche quer zur Druckrichtung aneinander stoßen oder überlappen. Je nach Genauigkeit der Justierung derart benachbarter Druckbereiche treten zwischen den damit erzeugten Teilaufdrucken sichtbare und das Druckbild störende Übergänge auf, beispielsweise an doppelt bedruckten Stellen oder an Anschlusslücken im Druckbild.The printheads used for this purpose generally have rows of nozzles extending transversely to the printing direction, with individual printheads possibly not covering the entire width of a printed image defined transversely to the printing direction as a result of the design. In this case, printheads are used whose pressure areas abut or overlap transversely to the printing direction. Depending on the accuracy of the adjustment of such adjacent pressure ranges occur between the part imprints produced visible and the printed image disturbing transitions, for example, at double-printed areas or to gaps in the printed image.
Um dieser Problematik entgegen zu wirken, ist es beispielsweise aus der
Die
Die
Es besteht jedoch weiterhin das Problem, dass für das Direktbedrucken von Behältern mehrere Komponenten eines Farbmodells über einen vorgegebenen umfänglichen Bereich der Behälter, gegebenenfalls auch vollumfänglich, aus unterschiedlichen Druckköpfen aufgedruckt werden müssen. Außerdem lassen sich bei den in Getränkeabfülllagen geforderten Maschinenleistungen und den damit verbundenen Transportgeschwindigkeiten oftmals nur umfängliche Teilbereiche der zu bedruckenden Behälteroberfläche vor einer bestimmten Düsenreihe positionieren und zeitlich durchgehend bedrucken. Es sind daher oftmals auch in Druckrichtung Teilaufdrucke aneinander zufügen, um ein in Druckrichtung durchgehendes Druckbild auf den Behältern herzustellen.However, there is still the problem that for the direct printing of containers, several components of a color model over a predetermined circumferential region of the container, possibly also in full, must be printed from different printheads. In addition, often only peripheral portions of the container surface to be printed can be positioned in front of a specific row of nozzles and printed continuously in the required in beverage filling positions machine performance and associated transport speeds. It is therefore often also add in the printing direction partial imprints to each other to produce a continuous printing direction on the images on the containers.
Dies wird durch Maßtoleranzen erschwert, die je nach tatsächlichem Behälterquerschnitt eine in umfänglicher Richtung unterschiedlich lange zu bedruckende Seitenwand verursachen. Je nach Maßtoleranzen und umfänglicher Erstreckung des Druckbilds ergibt sich gerade in Druckrichtung das Problem qualitativ mangelhafter Anschlussbereiche zwischen Teilaufdrucken durch überlappenden Doppeldruck und/oder Anschlusslücken.This is made more difficult by dimensional tolerances which, depending on the actual container cross-section, cause a side wall to be printed differently long in the circumferential direction. Depending on the dimensional tolerances and the circumferential extent of the printed image, the problem arises in the printing direction of qualitatively defective connection areas between partial imprints due to overlapping double pressure and / or connection gaps.
Es besteht somit der Bedarf für Verfahren und Vorrichtungen für den Tintenstrahldruck auf Behälter, mit denen sich wenigstens eines der oben genannten Probleme beseitigen oder zumindest abmildern lässt.Thus, there is a need for methods and apparatus for inkjet printing on containers that can overcome or at least alleviate at least one of the above problems.
Die gestellte Aufgabe wird mit einem Verfahren nach Anspruch 1 gelöst. Demnach eignet sich dieses für den Tintenstrahldruck auf Behälter, wobei wenigstens ein erster und ein zweiter Teilaufdruck sich in Druckrichtung zu einem Druckbild ergänzend aneinander gefügt werden. Erfindungsgemäß wird zuerst der erste Teilaufdruck ab einem oder bis zu einem Anschlussbereich gedruckt. Danach wird der zweite Teilaufdruck mit einem Druckvorschub in Richtung auf den Anschlussbereich hin gedruckt, derart, dass der erste und zweite Teilaufdruck im Anschlussbereich ineinander kämmend überlappen.The stated object is achieved by a method according to
Somit lassen sich Teilaufdrucke insbesondere für den Direktdruck auf gekrümmte Behälteroberflächen, deren zu bedruckende Länge aufgrund von Maßtoleranzen der Behälter variieren kann, mit einem für den Betrachter gegenüber herkömmlichen Verfahren weniger auffälligen Übergangsbereich aneinander setzen. Unter ineinander kämmend ist hierbei zu verstehen, dass die Teilaufdrucke im Anschlussbereich nicht entlang einer quer zur Druckrichtung verlaufenden Geraden aneinander grenzen, sondern dass ein ineinander verzahnter und/oder mosaikartig ineinander greifender Anschlussbereich ausgebildet ist, in dem Bildinhalte sowohl des ersten als auch des zweiten Teilaufdrucks derart verteilt sind, dass der Übergang zwischen den Bildbereichen für den Betrachter verschwimmt.Thus, partial imprints, in particular for direct printing on curved container surfaces whose length to be printed may vary due to dimensional tolerances of the containers, can be combined with a transition region which is less conspicuous to the viewer than conventional methods. By intermeshing is to be understood here that the partial imprints in the connection region do not adjoin one another along a straight line running transversely to the printing direction, but that an interlocking and / or mosaic interlocking connection region is formed in the image contents of both the first and the second partial imprint are distributed so that the transition between the image areas blurred to the viewer.
Somit lässt sich ein linienartiger Doppeldruck oder eine linienartige Lücke zwischen den aneinander grenzenden Teilaufdrucken vermeiden oder zumindest für den Betrachter unauffällig gestalten. Durch den ineinander kämmenden Druck sinken zudem die Anforderungen an die Maßhaltigkeit der Behälter und die Genauigkeit der Druckkopfpositionierung und/oder der Drehlagenpositionierung der Behälter bezüglich wenigstens eines für den Tintenstrahldruck eingesetzten Druckkopfs.Thus, a linear double print or a line-like gap between the adjoining partial imprints can be avoided or at least made inconspicuous to the viewer. The intermeshing pressure also decreases the requirements for the dimensional accuracy of the container and the accuracy of the printhead positioning and / or the rotational position of the position of the container with respect to at least one printhead used for inkjet printing.
Erfindungsgemäß verläuft die Druckrichtung seitlich um eine Hauptachse der Behälter herum. Somit eignet sich das erfindungsgemäße Verfahren insbesondere für das Aneinanderfügen von Teildrucken, die umfängliche Teilbereiche der Behälter abdecken. Somit lassen sich die Behälter in den teilumfänglichen Bereichen insbesondere während eines Transports der Behälter mit einer geforderten Druckqualität bedrucken. Ferner können Maßtoleranzen, insbesondere betreffend den Behälterumfang, kompensiert werden.According to the invention, the printing direction extends laterally around a main axis of the containers. Thus, the inventive method is particularly suitable for the joining of partial prints that cover the peripheral portions of the container. Thus, the container can be in the partially circumferential areas, in particular during transport of the container print with a required print quality. Furthermore, dimensional tolerances, in particular with regard to the container circumference, can be compensated.
Vorzugsweise deckt der Anschlussbereich ein umfängliches Bogensegment ab mit einer auf die Druckauflösung des Druckbilds bezogenen Länge von 5 bis 50 Bildpunkten, insbesondere von 10 bis 30 Bildpunkten. Denkbar ist auch eine absolut definierte Länge des umfänglichen Bogensegments von 0,1 bis 1 mm oder insbesondere von 0,2 bis 0,5 mm. Das umfängliche Bogensegment ist als Abschnitt des äußeren Behälterquerschnitts zu verstehen. Der Anschlussbereich definiert somit einen Überlappungsbereich mit der oben definierten Länge, in dem die Teilaufdrucke in umfänglicher Richtung ineinander kämmend überlappen. Somit lassen sich bei den insbesondere für Kunststoffbehälter üblichen Maßtoleranzen visuell deutlich hervortretende Doppeldrucke oder Lücken im Druckbild mit ausreichender Zuverlässigkeit vermeiden.The connection region preferably covers a circumferential arc segment with a length of 5 to 50 pixels, in particular 10 to 30 pixels, based on the print resolution of the printed image. Also conceivable is an absolutely defined length of the circumferential arc segment of 0.1 to 1 mm or in particular from 0.2 to 0.5 mm. The circumferential arc segment is to be understood as a section of the outer container cross section. The connection region thus defines an overlap region with the length defined above, in which the partial imprints overlap one another in the circumferential direction. Thus, with the dimensional tolerances customary for plastic containers in particular, visually distinct double prints or gaps in the printed image can be avoided with sufficient reliability.
Vorzugsweise werden die Behälter wenigstens vollumfänglich über einen Druckbereich von wenigstens 362 Grad, insbesondere wenigstens 365 Grad, bedruckt. Die Behälter lassen sich auf diese Weise einfach vollumfänglich bedrucken. Für jede Druckfarbe ist dann nur ein Druckkopf nötig.Preferably, the containers are at least fully printed over a pressure range of at least 362 degrees, in particular at least 365 degrees. The containers can be easily printed in this way completely. For each ink only one print head is needed.
Vorzugsweise werden die Behälter vor wenigstens einem Druckkopf um sich selbst gedreht. Dies ermöglicht einen Vorschub insbesondere gekrümmter Behälteroberflächen vor dem Druckkopf. Eine Drehung der Behälter um sich selbst kann nichts desto weniger mit einem durch ein Transportmittel verursachten Druckvorschub der Behälter vor dem Druckkopf kombiniert werden. Insbesondere bei zu bedruckenden Behälterwänden mit unendlichem oder sehr großem Krümmungsradien ließe sich ein geeigneter Vorschub vor dem Druckkopf auch ausschließlich durch eine Transportbewegung der Behälter bezüglich des Druckkopfs erzeugen.Preferably, the containers are rotated around themselves before at least one print head. This allows a feed especially curved container surfaces in front of the print head. Rotation of the containers about themselves can nevertheless be combined with a pressure feed of the containers in front of the print head caused by a transport. In particular, in the case of container walls to be printed with infinite or very large radii of curvature, a suitable feed in front of the print head can also be generated exclusively by a transport movement of the containers with respect to the print head.
Vorzugsweise werden der erste und zweite Teilaufdruck mittels unterschiedlicher Druckköpfe gedruckt. Somit lässt sich das Druckbild aus mehreren in umfänglicher Richtung sich ergänzenden Teilaufdrucken in visuell ansprechender Weise zusammensetzen. Dies ist insbesondere von Vorteil, wenn die vollumfängliche Drehung der Behälter vor einem einzelnen Druckkopf aus Zeitmangel während des Behältertransports nicht möglich ist und/oder falls nicht rotationssymmetrische Behälterquerschnitte den Einsatz unterschiedlicher Druckköpfe für das Bedrucken umfänglicher Teilbereiche des Behälters erfordern.Preferably, the first and second partial imprints are printed by means of different printheads. Thus, the print image can be composed of several complementary in the circumferential direction partial imprints in visually appealing way. This is particularly advantageous when the full rotation of the container before a single printhead for lack of time during the container transport is not possible and / or if not rotationally symmetric container cross sections require the use of different printheads for printing circumferential portions of the container.
Vorzugsweise schließt das Ende des zweiten Teilaufdrucks an den Anfang des ersten Teilaufdrucks an. Anfang und Ende der Teilaufdrucke sind hierbei im Sinne eines zeitlichen Ablaufs beim Bedrucken des Behälters zu verstehen. Beispielsweise kann der erste Teilaufdruck in Druckrichtung nahtlos in den zweiten Teilaufdruck übergehen, beispielsweise bei einer vollumfänglichen Drehung des Behälters um sich selbst vor einem einzelnen Druckkopf. Der Beginn des Druckvorgangs definiert dann den Anfang des ersten Teilaufdrucks. Das Ende des zweiten Teilaufdrucks ergibt sich dann bei Erreichen des Anfangs des ersten Teilaufdrucks nach vollumfänglicher Drehung per Definition.Preferably, the end of the second partial imprint connects to the beginning of the first partial imprint. The beginning and end of the partial imprints are to be understood here in terms of a chronological sequence when printing on the container. For example, the first partial imprint in Print direction seamlessly transition into the second partial imprint, for example, in a full rotation of the container around itself in front of a single printhead. The beginning of the printing process then defines the beginning of the first partial imprint. The end of the second partial imprint then results from reaching the beginning of the first partial imprint after full rotation by definition.
Da der Umfang des zu bedruckenden Behälters aufgrund von Maßtoleranzen variieren kann, ermöglicht das erfindungsgemäße Aneinanderfügen am Anfang des ersten Teilaufdrucks und am Ende des zweiten Teilaufdrucks ein für den Betrachter lückenlos und ohne Doppeldruck durchgehendes Druckbild im Anschlussbereich.Since the circumference of the container to be printed may vary due to dimensional tolerances, the joining according to the invention at the beginning of the first partial imprint and at the end of the second partial imprint allows for a continuous and without double impression printed image in the connection area for the viewer.
Vorzugsweise werden pro Behälter jeweils wenigstens zwei in umfänglicher Richtung um den Behälter verteilte Anschlussbereiche gleichzeitig hergestellt. Hierzu sind beispielsweise wenigstens zwei in umfänglicher Richtung um den Behälter verteilte Druckköpfe vorhanden, die bei gleichzeitiger Drehung des Behälters in zeitlich überlappenden Druckvorgängen Tinte abgeben. Es ist dann beispielsweise nur eine teilumfängliche Drehung der Behälter für ein vollumfängliches Druckbild mit erfindungsgemäß aneinandergefügten Teilaufdrucken nötig. Somit lässt sich der Direktdruck schneller und/oder mit mehreren Komponenten eines Farbmodells durchführen.Preferably, at least two connection areas distributed around the container in the circumferential direction are produced simultaneously for each container. For this purpose, for example, at least two printheads distributed in the circumferential direction around the container are present, which emit ink with simultaneous rotation of the container in temporally overlapping printing processes. It is then necessary, for example, only a teilumfängliche rotation of the container for a full-scale print with inventively juxtaposed partial imprints. Thus, direct printing can be performed faster and / or with multiple components of a color model.
Vorzugsweise werden wenigstens zwei Komponenten eines Farbmodells derart übereinander gedruckt, dass Anschlussbereiche unterschiedlicher Komponenten zueinander in Druckrichtung versetzt sind. Darunter ist zu verstehen, dass beispielsweise ein Anschlussbereich zwischen zwei Teilaufdrucken einer Komponente in einem anderen umfänglichen Teilbereich des Druckbilds liegt als ein Anschlussbereich einer anderen Komponente des Farbmodells. Somit lassen sich Überlappungsbereiche zwischen den Teilaufdrucken im Druckbild insgesamt besonders unauffällig gestalten. Beispielsweise würden sich dann durch den ineinander kämmenden Druck verursachte Artefakte nicht im selben umfänglichen Bereich des Druckbilds überlappen, sondern würden für die einzelnen Komponenten des Farbmodells auf unterschiedliche umfängliche Bereiche des Druckbilds verteilt.Preferably, at least two components of a color model are printed on one another in such a way that connection areas of different components are offset from one another in the printing direction. This means that, for example, a connection region between two partial imprints of one component lies in a different circumferential partial region of the printed image than a connection region of another component of the color model. Thus, overlapping areas between the partial imprints in the printed image as a whole can be made particularly inconspicuous. For example, artefacts caused by the intermeshing pressure would not overlap in the same circumferential area of the print image but would be distributed to different peripheral areas of the print image for the individual components of the color model.
Vorzugsweise werden im ersten und/oder zweiten Teilaufdruck enthaltene Bildinhalte einer digitalen Druckvorlage mittels Bildbearbeitungs-Algorithmus auf Bildpunktmuster verteilt, die sich im Anschlussbereich zum Druckbild ergänzen. Unter Bildpunktmuster sind beispielsweise binäre Masken zu verstehen, die sich im Anschlussbereich zum Druckbild ergänzen. Vorzugsweise ist dann zwischen den Masken des ersten und zweiten Teilaufdrucks keine durchgehende Grenzlinie ausgebildet. Somit lässt sich der Anschlussbereich für den Betrachter visuell unauffällig verschleiern. Hierbei ist es sowohl möglich Bildinhalte des ersten Teilaufdrucks in den zweiten Teilaufdruck zu übernehmen als auch umgekehrt. Ebenso können Bildinhalte je nach Druckbild auf geeignete Weise auf den ersten und zweiten Teilaufdruck verteilt werden. Hierbei ist es auch möglich, Bildinhalte durch Kopieren und Einsetzen sowohl im ersten als auch im zweiten Teilaufdruck wiederzugeben.Preferably, image contents of a digital print original contained in the first and / or second partial print are distributed by image processing algorithm to pixel patterns that complement each other in the connection area to the print image. For example, pixel patterns are binary masks that complement each other in the connection area to the printed image. Preferably, no continuous boundary line is then formed between the masks of the first and second partial imprint. Thus, the connection area for the viewer visually unobtrusive disguise. It is both possible image contents of the first partial imprint in the second Partial print to take over as well as vice versa. Likewise, image contents can be distributed in a suitable manner to the first and second partial imprints, depending on the printed image. It is also possible to reproduce image contents by copying and inserting both in the first and in the second partial imprint.
Bildpunkte bestehen häufig aus unterschiedlich großen Tropfen und zugehörigen Farben. Die Druckköpfe sind in der Lage je nach Ansteuerung bzw. Druckvorlagenaufbereitung unterschiedliche Tropfengrößen zu drucken.Pixels often consist of different sized drops and associated colors. The print heads are able to print different drop sizes depending on the control or print template preparation.
Alternativ oder ergänzend zu dem oben beschriebenen Druck könnte jeder Bildpunkt im Übergangsbereich in zwei Druckvorgängen gedruckt werden. Die notwendige Farbmenge bzw. Tropfengröße kann dann auf zwei Druckköpfe verteilt werden. Beispielsweise kann ein Bildpunkt aus insgesamt sieben Subtropfen zusammengesetzt werden, wobei unter einem Subtropfen der jeweils kleinste darstellbare Tropfen zu verstehen ist. Im Übergangsbereich kann dann beispielsweise der eine Druckkopf vier Subtropfen abgeben und der andere Druckkopf die restlichen drei Subtropfen des Bildpunkts.Alternatively or in addition to the printing described above, each pixel in the transition area could be printed in two printing operations. The required amount of ink or drop size can then be distributed to two print heads. For example, a pixel can be composed of a total of seven sub-droplets, wherein a sub-droplet is to be understood as the smallest droplet that can be represented. In the transition area, for example, one printhead can deliver four sub-drops and the other printhead can deliver the remaining three sub-drops of the pixel.
Vorzugsweise werden ferner wenigstens ein dritter und ein vierter Teilaufdruck quer zur Druckrichtung an den ersten und zweiten Teilaufdruck angefügt, derart dass die jeweils benachbarten Teilaufdrucke in den zugehörigen Anschlussbereichen ineinander kämmend überlappen. Das Druckbild lässt sich somit kachelartig aus einzelnen Teilaufdrucken ineinander kämmend zusammensetzen.Preferably, at least a third and a fourth partial imprint are added to the first and second partial imprints transversely to the printing direction such that the respectively adjacent partial imprints overlap one another in the associated connection regions. The print image can thus be tiling-like composed of individual partial imprints.
Somit lassen sich sowohl in umfänglicher Richtung der Behälter aneinander grenzende Teilaufdrucke visuell unauffällig aneinanderfügen als auch in axialer Richtung zur Vergrößerung der Druckbreite aneinander gesetzte Teilaufdrucke optisch ansprechend kombinieren.Thus, partial envelopes adjoining one another in the peripheral direction of the container can be visually inconspicuously joined together and optically combined in the axial direction to increase the printing width.
Vorzugsweise sind die Behälter Formflaschen. Insbesondere bei einer Drehung von Formflaschen um sich selbst treten Änderungen des Druckabstands und der durch den Druckvorschub hervorgerufenen Druckauflösung auf. Durch Definition einzelner vor einem Druckkopf vorteilhaft zu bedruckender Teilaufdrucke und durch ein ineinander kämmendes Aneinanderfügen dieser Teilaufdrucke lässt sich trotz nicht rotationssymmetrischer Querschnitte ein für den Betrachter lückenloses und übergangsfreies Druckbild erzeugen.Preferably, the containers are molding bottles. In particular, with a rotation of form bottles around themselves occur changes in the pressure separation and caused by the pressure feed pressure resolution. By defining individual partial imprints which are advantageously to be printed in front of a printhead and by interleaving these partial imprints, it is possible, despite non-rotationally symmetrical cross-sections, to produce a gap-free and transition-free printed image for the viewer.
Vorzugsweise weisen die Formflaschen in einem zu bedruckenden Seitenwandabschnitt einen gekrümmten Querschnitt auf, insbesondere mit einem sich ändernden Krümmungsradius. In diesen Bereichen ist es besonders schwierig, einen umfänglicher Richtung durchgehenden Direktdruck aus einem einzelnen Druckkopf mit der geforderten Druckqualität herzustellen. Je nach Änderung des Krümmungsradius lassen sich somit geeignete umfängliche Teilbereiche in Druckrichtung ineinander kämmend aneinander fügen.The molding bottles preferably have a curved cross section in a side wall section to be printed, in particular with a changing radius of curvature. In these areas, it is particularly difficult to produce a circumferential direction of continuous direct printing from a single printhead having the required print quality. ever After changing the radius of curvature, it is thus possible to insert suitable circumferential partial regions in the compression direction into one another in a meshing manner.
Die gestellte Aufgabe wird ebenso mit einer Vorrichtung nach Anspruch 13 gelöst.The stated object is also achieved with a device according to
Vorzugsweise umfasst die Vorrichtung dann wenigstens zwei in Druckrichtung zueinander versetzte Druckköpfe, die derart abgestimmt sind, dass man mit ihnen ein Druckbild aus in Druckrichtung ineinander kämmenden Teilaufdrucken zusammensetzen kann.Preferably, the device then comprises at least two print heads offset from one another in the printing direction, which are tuned in such a way that they can be used to assemble a print image from partial prints intermeshing in the printing direction.
Bevorzugte Ausführungsformen der Erfindung sind in der Zeichnung dargestellt. Es zeigen:
- Fig. 1
- ein Beispiel für zwei Teildruckbilder, die auf herkömmliche Weise zu einem Druckbild sequenziell aneinander gefügt werden sollen;
- Fig. 2
- ein Beispiel für einen erfindungsgemäß ineinander kämmenden Anschlussbereich;
- Fig. 3
- eine schematische Draufsicht auf erfindungsgemäße Vorrichtungen;
- Fig. 4
- ein Beispiel für in Druckrichtung und quer zur Druckrichtung ineinander kämmende Anschlussbereiche; und
- Fig. 5
- ein Beispiel für das Bedrucken einer Formflasche mit einem erfindungsgemäßen Anschlussbereich.
- Fig. 1
- an example of two partial print images to be sequentially joined to one another in a conventional manner;
- Fig. 2
- an example of an inventive intermeshing connection area;
- Fig. 3
- a schematic plan view of devices according to the invention;
- Fig. 4
- an example of in the printing direction and transverse to the printing direction intermeshing connection areas; and
- Fig. 5
- an example of the printing of a mold bottle with a connection area according to the invention.
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Unabhängig davon, wie groß der jeweilige Abstand 9 zwischen einzelnen Düsenreihen 6a, 7a ist, sind die Teilaufdrucke 1, 2 in Druckrichtung 3 möglichst ohne beim normalen Gebrauch des Behälters 8 erkennbare Anschlusslücken und/oder doppelt bedruckte Bereiche zum Druckbild 4 zusammenzufügen.Regardless of how large the
Aufgrund von Maßtoleranzen und/oder Formtoleranzen, mit denen beispielsweise der Umfang der zu bedruckenden Seitenwand 8a insgesamt und/oder einzelner umfänglicher Teilbereiche 8b, 8c behaftet sind, können die (hier in umfänglicher Richtung definierte) tatsächliche Länge des insgesamt abzudeckenden Druckbereichs und/oder die tatsächlichen Abstände zwischen den in Druckrichtung 3 aneinander zu fügender Teilaufdrucken 1, 2 variieren.Due to dimensional tolerances and / or shape tolerances, which, for example, the extent of the side wall to be printed 8a and / or individual
Die Teilaufdrucke 1, 2 reihen sich dann entgegen der idealisierten Darstellung der
Dazu werden Bildinhalte 1c aus dem Endbereich 1b des ersten Teilaufdrucks 1 mit Bildinhalten 2c des Anfangsbereichs 2a des zweiten Teilaufdrucks 2 innerhalb eines Anschlussbereichs 10 ineinander kämmend verteilt. Dies ist in der
Vorzugsweise deckt der erfindungsgemäße Anschlussbereich 10 in Druckrichtung 3 ein umfängliches Bogensegment 8d der Seitenwand 8a ab mit einer beispielsweise auf die Druckauflösung des Druckbilds 4 bezogenen Länge von 5 bis 50 Bildpunkten, insbesondere von 10 bis 30 Bildpunkten, oder mit einer absolut definierten Länge von 0,1 bis 1 mm oder insbesondere von 0,2 bis 0,5 mm. Es ergibt sich somit ein in Druckrichtung ausgedehnter Überlappungsbereich im Gegensatz zum herkömmlichen, im Idealfall nicht überlappenden Aneinanderstoßen der Teilbereiche 1, 2 entlang lang der gedachten durchgehenden Soll-Stoßlinie 5.The
Unter ineinander kämmend ist zu verstehen, dass die Bildinhalte 1c, 2c verzahnt ineinander greifen, siehe oberes Musterbeispiel 10a im Anschlussbereich 10, und/oder Bildpunkte der Bildinhalte 1c, 2c mosaikartig im Anschlussbereich 10 verteilt werden, siehe unteres Musterbeispiel 10b. Bildpunkte der Bildinhalte 1c, 2c können mit Bildbearbeitungsalgorithmen je nach herzustellendem Druckbild 4 flexibel im Anschlussbereich 10 verteilt werden. Dadurch werden herkömmliche durchgehend geradlinige Grenzen 1d, 2c der Teilaufdrucke 1, 2 zumindest abschnittsweise durchbrochen.By intermeshing one understands that the
Alternativ oder ergänzend könnten Bildinhalte 1c, 2c im Anschlussbereich 10 in zwei Druckvorgängen gedruckt werden. Die Farbmenge pro Bildpunkt bzw. Anteile der Tropfengröße des Bildpunkts können dann auf die Druckköpfe 6, 7 verteilt werden. Beispielsweise kann ein Bildpunkt aus mehreren Subtropfen zusammengesetzt werden, wobei unter einem Subtropfen der jeweils kleinste darstellbare Tropfen zu verstehen ist. Im Übergangsbereich kann dann beispielsweise der eine Druckkopf 6 eine geeignete Anzahl von Subtropfen abgeben und der andere Druckkopf 7 die restlichen Subtropfen des jeweiligen Bildpunkts.Alternatively or additionally, image
Beispielsweise werden Bildpunkte des ersten Teilaufdrucks 1 im Anschlussbereich 10 gegenüber der Grenze 1d in Druckrichtung 3 verschoben und/oder kopiert und eingefügt, und Bildpunkte des zweiten Teilaufdrucks 2 werden im Anschlussbereich 10 gegenüber der Grenze 2d entgegen der Druckrichtung 3 verschoben und/oder kopiert und eingefügt. Einfach gesagt unterscheidet sich der erfindungsgemäße Anschlussbereich 10 vom Stand der Technik insbesondere dadurch, dass die Bildinhalte 1c, 2c nicht scharf abgegrenzt an quer zur Druckrichtung 3 verlaufenden Grenzen 1d, 2d enden. Letztere können geradlinig orthogonal zur Druckrichtung 3, zackenförmig, schräg oder dergleichen verlaufenFor example, pixels of the first
Die Länge des Anschlussbereichs 10 in Druckrichtung 3, also beispielsweise die Länge des Bogensegments 8d, lässt sich an die zu erwartende Maßtoleranz und/oder Formtoleranz der Seitenwand 8a und/oder das aufzudruckende Druckbild 4 durch Bildbearbeitung der Bildinhalte 1c, 2c flexibel anpassen.The length of the
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Erfindungsgemäße Anschlussbereiche 10 lassen sich jedoch prinzipiell mit beliebigen, auch teilumfänglichen Drehbewegungen des Behälters 8 um sich selbst erzeugen. Zu diesem Zweck ist beispielsweise eine drehbare Halterung 22 für den Behälter 8 und eine Steuereinheit 23 zur Ansteuerung des Druckkopfs 6 und der Halterung 22 vorhanden.However,
Ebenso lassen sich auf diese Weise Druckköpfe 6, 6' für unterschiedliche Komponenten eines Farbmodells, wie beispielsweise CMYK, getrennt ansteuern, um zugehörige Anschlussbereiche 10, 10' in umfänglicher Richtung zu einander versetzt auszubilden. Dies ist in der
Der erste und zweite Teilaufdruck 1, 2 sind hinsichtlich des herzustellenden Anschlussbereichs 10, 11 definiert, unabhängig von der Anzahl der verwendeten Druckköpfe 6, 7 und davon, ob der Druckvorschub in Druckrichtung 3 zwischen einzelnen Teilaufdrucken 1, 2 unterbrochen wird. Anfang und Ende der Teilaufdrucke 1, 2 sind zum besseren Verständnis auf die Druckrichtung 3 bezogen. Es spielt für die Erfindung jedoch keine Rolle, ob die Druckrichtung 3 für einzelne Teilaufdrucke 1, 2 umgekehrt wird. Entscheidend ist, dass auf einen Anfangsbereich oder Endbereich eines zuvor erstellten Teilaufdrucks hin gedruckt wird und der jeweilige Anschlussbereich 10, 11 ineinander kämmend ausgebildet ist.The first and second
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Die teilumfänglichen Wandbereiche 18b, 18c der Seitenwand 18a werden zu diesem Zweck nacheinander aus in geeigneten Abständen zur Hauptachse 18' angeordneten Druckköpfen 6, 7 unter Drehung des Behälters 18 um sich selbst bedruckt. Die Behälter werden dann außerdem entlang einer linearen und/oder kreisförmigen oder auch anderweitig verlaufenden Transportstrecke 19 bewegt, um einen geeigneten Druckvorschub vor den Druckköpfen 6, 7 zu erzeugen.The
Die beschriebenen Ausführungsformen und Varianten lassen sich hierbei flexibel kombinieren, um unterschiedliche Behälter 8, 18, wie beispielsweise Flaschen mit rotationssymmetrischem Querschnitt oder Formflaschen mittels Tintenstrahl direkt zu bedrucken.The described embodiments and variants can be flexibly combined to directly print
Claims (14)
- A method for inkjet printing on containers (8, 18), comprising the steps of joining at least a first and a second subprint (1, 2) complementing each other in the printing direction (3) so as to form a print image (4), wherein the first subprint (1) is printed first starting from a connection area (10, 11) or up to a connection area (10, 11) and the second subprint (2) is printed subsequently with a feed towards the connection area (10, 11) such that the first and second subprints (1, 2) interleavingly overlap in the connection area (10, 11), wherein the printing direction (3) runs laterally about a main axis (8', 18') of the containers (8, 18).
- The method according to claim 1, wherein the connection area (10) covers a circumferential arc segment (8d) whose length comprises 5 to 50 pixels of the print image (4), in particular 10 to 30 pixels.
- The method according to claim 1 or 2, wherein the containers (8, 18) are printed on at least over their full circumference, over a print area of at least 362°, in particular of at least 365°.
- The method according to one of the preceding claims, wherein the containers (8, 18) are rotated about their own axis in front of at least one print head (6, 7, 15, 16).
- The method according to one of the preceding claims, wherein the first and second subprints (1, 2) are printed by means of different print heads (6, 7, 15, 16).
- The method according to one of the preceding claims, wherein an end area (2b) of the second subprint (2) adjoins a starting area (1a) of the first subprint (1).
- The method according to one of the preceding claims, wherein, for each container (8), at least two connection areas (10, 11) distributed around the container (8) in a circumferential direction are produced simultaneously.
- The method according to one of the preceding claims, wherein at least two components of a color model are printed one on top of the other such that connection areas (10, 10') of different components are displaced relative to one another in the printing direction (3).
- The method according to one of the preceding claims, wherein image contents (1c, 1d) of a digital master copy comprised in the first and/or second subprint (1, 2) are distributed by means of an image processing algorithm to pixel patterns (10a, 10b) complementing one another other in the connection area (10) so as to form a print image (4).
- The method according to one of the preceding claims, wherein, in addition, at least a third and a fourth subprint (12, 13) are joined to the first and second subprints (1, 2) in a direction transversely to the printing direction (3) such that the respective adjacent subprints interleavingly overlap in the associated connection areas (10, 11, 14).
- The method according to one of the preceding claims, wherein the containers (18) are specially shaped bottles.
- The method according to claim 11, wherein the specially shaped bottles have a curved cross-section in at least one circumferential subarea (18b, 18c) of their sidewall (18a) to be printed on, in particular a curved cross-section with a varying radius of curvature.
- A device (20, 21) for executing the method according to at least one of the preceding claims, comprising at least one print head (6, 7), at least one rotatable support (22) for a container (8), and a control unit (23) for controlling the print head (6, 7) and the support (22) to produce rotary movements of the container (8) about its own axis such that a first subprint (1) is printed first starting from a connection area (10, 11) or up to a connection area (10, 11) and a second subprint (2) is printed subsequently with a feed towards the connection area (10, 11) such that the first and second subprints (1, 2) interleavingly overlap in the connection area (10, 11).
- The device according to claim 13, comprising at least two print heads (6, 7), which are displaced relative to one another in the printing direction (3) and which are coordinated such that they can be used for composing a print image (4) from subprints (1, 2) that interleave in the printing direction (3).
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102014223523.5A DE102014223523A1 (en) | 2014-11-18 | 2014-11-18 | Method and apparatus for ink jet printing on containers |
Publications (2)
Publication Number | Publication Date |
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EP3023253A1 EP3023253A1 (en) | 2016-05-25 |
EP3023253B1 true EP3023253B1 (en) | 2018-11-28 |
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Application Number | Title | Priority Date | Filing Date |
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EP15189475.5A Active EP3023253B1 (en) | 2014-11-18 | 2015-10-13 | Method and device for ink-jet printing on containers |
Country Status (4)
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US (1) | US9802424B2 (en) |
EP (1) | EP3023253B1 (en) |
CN (1) | CN105599458A (en) |
DE (1) | DE102014223523A1 (en) |
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---|---|---|---|---|
JP6877097B2 (en) * | 2016-06-28 | 2021-05-26 | 昭和アルミニウム缶株式会社 | Manufacturing method for printing equipment and beverage cans |
DE102016226166A1 (en) * | 2016-12-23 | 2018-06-28 | Krones Ag | Process and direct printing machine for printing on containers of different types of material in direct printing |
CA3075637A1 (en) | 2017-09-19 | 2019-03-28 | Ball Corporation | Container decoration apparatus and method |
DE102018210113B3 (en) | 2018-06-21 | 2019-07-11 | Heidelberger Druckmaschinen Ag | Ink-jet printing process for producing homogeneous-looking printed images on spherical bodies |
DE102019105629B3 (en) * | 2019-03-06 | 2020-04-16 | Koenig & Bauer Ag | Printing machine with an inkjet system and with a transport device |
JP6999075B2 (en) * | 2020-06-19 | 2022-01-18 | 昭和アルミニウム缶株式会社 | Beverage can manufacturing methods, beverage cans, and beverage cans |
DE102023108916A1 (en) | 2023-04-06 | 2024-10-10 | Dekron Gmbh | Method for generating a print image |
Family Cites Families (19)
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DE3526769A1 (en) * | 1985-07-26 | 1987-01-29 | Schmalbach Lubeca | METHOD FOR DECORATING METAL OR PLASTIC CONTAINERS |
US5450099A (en) | 1993-04-08 | 1995-09-12 | Eastman Kodak Company | Thermal line printer with staggered head segments and overlap compensation |
GB2376920A (en) * | 2001-06-27 | 2002-12-31 | Inca Digital Printers Ltd | Inkjet printing on a three-dimensional object including relative movement of a printhead and the object during printing about a rotational axis |
EP1473662B1 (en) | 2003-04-30 | 2009-08-26 | Hewlett-Packard Development Company, L.P. | Printing apparatus and method |
US8256854B2 (en) * | 2006-08-16 | 2012-09-04 | Khs Gmbh | Method and apparatus for the circumferential printing onto individual bottles in a run of bottles where the individual bottles in the run have at least one varying dimension due to manufacturing tolerances, the method and apparatus providing more consistent artwork on individual containers in the run of containers |
GB0619523D0 (en) | 2006-10-03 | 2006-11-15 | Xaar Technology Ltd | Method for printing |
DE102009004878A1 (en) * | 2009-01-16 | 2010-07-29 | Bauer, Jörg R. | Process for coating, in particular painting, a surface and digital coating system |
JP2011116096A (en) * | 2009-01-16 | 2011-06-16 | Ricoh Co Ltd | Image forming apparatus, image forming method, and program |
US7871145B1 (en) | 2009-07-20 | 2011-01-18 | Eastman Kodak Company | Printing method for reducing stitch error between overlapping jetting modules |
US8403442B2 (en) | 2010-04-23 | 2013-03-26 | Seiko Epson Corporation | Printing device and printing method |
EP2465678B1 (en) * | 2010-12-16 | 2013-08-07 | Agfa Graphics N.V. | System and method for the digital creation of a print master by means of a liquid droplet deposition apparatus. |
JP5891602B2 (en) * | 2011-04-28 | 2016-03-23 | 東洋製罐株式会社 | Inkjet printing apparatus and seamless can printing method using the same |
DE102011113150A1 (en) | 2011-09-14 | 2013-03-14 | Khs Gmbh | Method and device for treating packaging by applying equipment |
WO2013099817A1 (en) * | 2011-12-27 | 2013-07-04 | 昭和アルミニウム缶株式会社 | Image forming system, image forming apparatus, and method of manufacturing can body |
DE102012005046A1 (en) * | 2012-03-15 | 2013-09-19 | Till Gmbh | A method of detecting errors in the alignment of printed images and the printing station configured to perform the method |
DE102012010617B4 (en) | 2012-05-30 | 2015-03-05 | Till Gmbh | Locking device for printheads |
WO2014076704A1 (en) * | 2012-11-15 | 2014-05-22 | Velox-Puredigital Ltd. | Printing system and method |
DE102013003181A1 (en) | 2013-02-25 | 2014-08-28 | Heidelberger Druckmaschinen Ag | Method for generating a printed image |
DE102013007294A1 (en) | 2013-04-26 | 2014-10-30 | Heidelberger Druckmaschinen Ag | Method for producing a printed image composed of sections |
-
2014
- 2014-11-18 DE DE102014223523.5A patent/DE102014223523A1/en not_active Withdrawn
-
2015
- 2015-10-13 EP EP15189475.5A patent/EP3023253B1/en active Active
- 2015-10-27 US US14/924,378 patent/US9802424B2/en active Active
- 2015-11-18 CN CN201510794907.4A patent/CN105599458A/en active Pending
Non-Patent Citations (1)
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US20160136965A1 (en) | 2016-05-19 |
DE102014223523A1 (en) | 2016-06-02 |
EP3023253A1 (en) | 2016-05-25 |
CN105599458A (en) | 2016-05-25 |
US9802424B2 (en) | 2017-10-31 |
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