EP0979731B1 - Druckmaschine mit rotierendem Halter für Gegenstände - Google Patents

Druckmaschine mit rotierendem Halter für Gegenstände Download PDF

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Publication number
EP0979731B1
EP0979731B1 EP99402041A EP99402041A EP0979731B1 EP 0979731 B1 EP0979731 B1 EP 0979731B1 EP 99402041 A EP99402041 A EP 99402041A EP 99402041 A EP99402041 A EP 99402041A EP 0979731 B1 EP0979731 B1 EP 0979731B1
Authority
EP
European Patent Office
Prior art keywords
printing
stations
drive
rotation drive
turret
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Lifetime
Application number
EP99402041A
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English (en)
French (fr)
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EP0979731A1 (de
Inventor
Jean-Louis Dubuit
Frédéric Airoldi
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Machines Dubuit SAS
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Machines Dubuit SAS
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Filing date
Publication date
Application filed by Machines Dubuit SAS filed Critical Machines Dubuit SAS
Publication of EP0979731A1 publication Critical patent/EP0979731A1/de
Application granted granted Critical
Publication of EP0979731B1 publication Critical patent/EP0979731B1/de
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F15/00Screen printers
    • B41F15/08Machines
    • B41F15/0872Machines for printing on articles having essentially cylindrical surfaces

Definitions

  • the present invention relates generally to machines for print of the kind comprising a turret, which is rotatably mounted around its axis, and which carries, radially, on its periphery, a plurality of supports object-holders themselves rotatably mounted on this turret, and a plurality of workstations, which are distributed circularly around the turret, at right of the path of the object holders, and some of which are posts printing while others are processing stations, such as, for example, drying, varnishing, flaming, dusting or other.
  • These printing machines are for example used for the printing of objects of revolution, such as for example flexible tubes, in synthetic or other material, intended to receive successively several different color prints.
  • the printing stations intervene by screen printing or offset for example, or whether they are printing presses of the gilding press type, there it is important that, from one to the other, the object-holders keep the same orientation, so that each of them is printed suitably identified in relation to the same reference.
  • the object holders are each integral in rotation with a pinion which meshes with a central crown common to all.
  • This arrangement which has the advantage of simplicity, because it ensures mechanically the synchronization sought, has the disadvantage to involve an identical rotation of the object-holders at all the work, i.e. at both printing and processing stations possibly intervening between these printing stations.
  • the object holders are not the object of any movement differential rotation between workstations.
  • control means remain common to the set of rotating drive blocks, so that like previously, the rotation of the holder is the same at all workstations, whether they are printing stations or whether treatment stations.
  • the present invention generally relates to a provision meeting this wish.
  • a machine for printing kind comprising a turret, which is rotatably mounted about its axis, and which carries radially, at its periphery, a plurality of object-holding supports themselves rotatably mounted on this turret, with, associated with each of these object-holder supports, in an eccentric position relative to the axis of such a support object holder, a rotating drive finger, a plurality of work, which are distributed circularly around the turret, at the right of the path object holders, some of which are printing stations while that others are treatment stations, and a fixed tray, which, arranged parallel to the turret, has, at its periphery, a groove with which are engaged the rotational drive fingers of the object holders, with, interrupting, locally, from place to place, this groove, blocks of rotary drive, which are rotatably mounted under the control of control means, being associated, each individually, for some, at the printing stations, and, for others, at the processing stations, and which
  • the means for controlling the rotational drive blocks associated with printing stations have motor and belt looped endless on a plurality of pulleys, one of which is fixed in rotation on the shaft output of this engine and the others of which are each individually calibrated in rotation on the corresponding rotary drive blocks, it is the same for the control means of the rotary drive blocks associated with the treatment stations, and the two belts thus used intervene at different levels.
  • the implementation of such a numerically controlled engine advantageously allows to know at any time the angular position of object holders, and thereby order these stations accordingly printing.
  • this engine is itself, preferably a numerically controlled motor, and this then works in pursuit of the engine, or main engine, ensuring joint control of all rotating drive blocks correspondents.
  • clutch means individual, which, if desired, allow this support to rotate freely object holder around its axis, independently of other supports slide.
  • the objects 10 to print are flexible tubes, which, intended to contain a larger product or less pasty, such as cream or other, have a body 11 and a neck 12.
  • the body 11 is generally cylindrical, and its cross section is substantially circular.
  • the printing machine 14 used for printing such objects 10 generally comprises, in a manner known per se, a turret 15, which is rotatably mounted, about its axis A1, in this case a vertical axis, on a frame 16, and which carries, radially, at its periphery, a plurality of supports object-holder 17 themselves each respectively rotatably mounted on this turret 15 around axes A2, which in this case are orthogonal to the axis A1 of the turret 15, and which are therefore horizontal.
  • a turret 15 which is rotatably mounted, about its axis A1, in this case a vertical axis, on a frame 16, and which carries, radially, at its periphery, a plurality of supports object-holder 17 themselves each respectively rotatably mounted on this turret 15 around axes A2, which in this case are orthogonal to the axis A1 of the turret 15, and which are therefore horizontal.
  • the turret 15 is a simple circular contour tray, and it is rotatably mounted on a table 18 belonging to frame 16, figure 3.
  • this turret 15 is rotated, step by step, by a motor 19 with which an indexer 20 is associated.
  • the objects 10 to be printed being flexible tubes
  • the supports object holders 17 are cylindrical mandrels on which the objects 10 are just put it on.
  • these object-holding supports 17 are hollow, and, for stabilization objects 10 to be printed, they have, on their surface, a network of nozzles 21 connected to any source of suction.
  • the printing machine 14 comprises a plurality of work stations 22, in this case work stations work 22A, 22B, Figure 1, which are distributed circularly around the turret 15, to the right of the path of the object holders 17, and some of which, 22A, are printing stations, while others, 22B, are treatment.
  • the printing stations 22A which are four in number, for a four-color printing of 10 objects to print, intervene by screen printing.
  • each of these 22A printing stations an individual motor is provided for control the movement of the corresponding screen, and that this motor is a numerically controlled motor (not shown).
  • the processing stations 22B are drying stations.
  • these drying stations intervene by radiation ultraviolet.
  • each of the printing stations 22A is followed by a station treatment 22B.
  • the whole is completed by a loading and unloading 23, and, for a preliminary treatment of the objects 10 before their printing, by work stations 22 suitable for this purpose, namely, by example, a 22C flaming and dusting station, and a 22D varnishing followed by a drying station, i.e. a drying station treatment 22B.
  • work stations 22 suitable for this purpose namely, by example, a 22C flaming and dusting station, and a 22D varnishing followed by a drying station, i.e. a drying station treatment 22B.
  • the printing machine 14 comprises a fixed plate 28, which, arranged parallel to the turret 15, has, at its periphery, a groove 29 with which are engaged the rotational drive fingers 27 of object holders 17, with, interrupting, locally, from place to place, this groove 29, rotational drive blocks 30A, 30B, which are rotatably mounted under the control of control means 31A, 31B, being associated, each individually, some of them, to the printing stations 22A, and for others, at processing stations 22B, and which include each a groove 32 in which the drive fingers in rotation 27 of the object-holders 17 engage each one successively to their turn.
  • the fixed plate 28 extends above the turret 15 and, while resting, by means bearing 33, on a block 34 disposed axially in the center of this turret 15, it is coupled to the frame 16 by lines 35, FIG. 3.
  • the fixed plate 28 has, peripherally, a circular outline.
  • this groove 29 is formed between two ribs 37 duly reported, for this purpose, parallel to each other, on this fallen edge 36.
  • each of the rotation drive blocks 30A, 30B is formed between two ribs 38 duly attached, parallel to each other, on the same support flange 39 belonging to such a rotary drive block 30A, 30B.
  • the rotary drive blocks 30A, 30B all have a same structure, and their groove 32 has a width equal to that of groove 29 of the fixed plate 28.
  • A3 be the axes of these rotational drive blocks 30A, 30B on the fixed plate 28.
  • control means 31A of the blocks 30A rotary drive associated with 22A printing stations are distinct from the control means 31B of the rotary drive blocks 30B associated with treatment stations 22B.
  • control means 31A rotating drive blocks 30A associated with the printing stations 22A have a motor 41A and a belt 42A looped without end on a plurality of pulleys 43A1, 43A2, 43A3, one of which, 43A1, is wedged in rotation on the output shaft of this motor 41A, while others, 43A2, are each respectively locked in rotation on the drive blocks in rotation 30A, and that the last ones, that is to say the pulleys 43A3, are of simple return pulleys, Figures 1 and 2.
  • control means 31B of the blocks rotational drive 30B associated with treatment stations 22B It is the same for the control means 31B of the blocks rotational drive 30B associated with treatment stations 22B.
  • control means 31B comprise a motor 41 B, a belt 42B, and pulleys 43B1, 43B2 and 43B3.
  • the two belts 42A, 42B thus implemented operate at different levels.
  • each of the bevel gears 45A, 45B thus implemented comprises a bevel gear 46, which by an axis 47 which crosses the fallen edge 36 of the fixed plate 28, is locked in rotation on the support flange 39 of the block rotational drive 30A, 30B corresponding, and a bevel gear 48, which meshes with the preceding bevel gear 46, and which, by an axis 49 which crosses the fixed plate 28, is locked in rotation on the pulley 43A2, 43B2 associated.
  • the motors 41A, 41B intervening in the means 31A, 31B of the rotary drive blocks 30A, 30B are numerically controlled motors.
  • the numerically controlled motors controlling the movement of the screens at printing stations 22A each work in pursuit by relative to the motor 41A involved in the control means 31A of the corresponding rotary drive blocks 30A.
  • each of the object-holder supports 17 is rotatably mounted by compared to a socket 52, which is itself rotatably mounted relative to a support block 53 secured to the turret 15, and on which the finger is wedged associated rotary drive 27, and the individual clutch means 50 correspondents comprise a pinion 54, which is fixed in rotation on the object holder 17, and a pawl 55, which is carried by the socket 52, and which, under the control of control means 56, is pivotally mounted between a drive position, for which, as shown in solid lines on Figure 5, it is engaged with the pinion 54, and a release position, for which, as shown schematically in broken lines in this FIG. 5, it is at opposite at a distance from this pinion 54.
  • the support object holder 17 extends cantilevered relative to the socket 52 which carries it, by being attached by a ring 57 at the end of a shaft 58 rotatably mounted in it.
  • the corresponding support block 53 projects from the upper surface of the turret 15.
  • the pawl 55 of the individual clutch means 50 of this object holder 17 is pivotally mounted around an axis A4 orthogonal to the own axis A2 of this object holder 17, and, for its guidance, as well as for the recovery of the corresponding rotational force, it intervenes in a notch 59 of the socket 52 elongated parallel to the generators of this socket 52, that is to say parallel to the axis A2 of the object holder 17.
  • the means of control 56 of this pawl 55 have, on the turret 15, between the sleeve 52 and such a pawl 55, a return spring 60, which urges it permanently in the drive position, and at each of the 22 workstations concerned, a jack 61, which, by its piston 62, is capable of passing it into the position of release, as shown in dashed lines in Figure 5.
  • the rotary drive finger 27 of each of the supports object holder 17 comprises, at its end, a roller 63, which is rotatably mounted, and by which it is able to cooperate in engagement with the groove 29 of the fixed plate 28 and with the groove 32 of the rotating drive blocks 30A, 30B, as shown diagrammatically, in broken lines, in FIG. 7.
  • the turret 15 is then stopped.
  • the axis A2 of the object holder 17 is located substantially in the extension of axis A3 of the rotary drive unit 30A, 30B in facade of which it is located.
  • His rotational drive finger 27, and, more precisely, the roller 63 carried by the latter, is therefore located at a distance from this axis A3, as shown or shown diagrammatically in Figures 6 and 7.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Screen Printers (AREA)
  • Rotary Presses (AREA)
  • Inking, Control Or Cleaning Of Printing Machines (AREA)

Claims (7)

  1. Druckmaschine der Art, umfassend einen Aufbau bzw. Drehturm (15), welcher drehbar um seine Achse (A1) montiert ist und welcher radial an seinem Umfang eine Vielzahl von Haltern (17) für Gegenstände trägt, welche selbst um den Aufbau (15) drehbar montiert sind, mit, zugeordnet jedem dieser Träger bzw. Halter (17) von Gegenständen in einer relativ zur Achse (A2) eines derartigen Halters (17) für Gegenstände exzentrischen Position, einem Rotationsantriebsfinger (27), eine Vielzahl von Arbeitsstationen bzw. -posten (22), welche kreisförmig um den Aufbau (15) im Bereich des Wegs der Halter (17) für Gegenstände verteilt sind und von. denen einige (22A) Druckposten bzw. -stationen sind, während andere (22B) Behandlungsposten bzw. -stationen sind, und eine festgelegte Platte bzw. Scheibe (28), welche, parallel zum Aufbau (15) angeordnet, an ihrem Umfang eine Rille bzw. Nut (29) umfaßt, mit welcher die Rotationsantriebsfinger (27) der Halter (17) für Gegenstände in Eingriff gelangen, wobei lokal von Ort zu Ort diese Rille (29) durch Rotationsantriebsblöcke (30A, 30B) unterbrochen ist, welche drehbar unter der Regelung bzw. Steuerung von Regel- bzw. Steuermitteln (31A, 31B) montiert sind, indem sie jeweils einzeln für einige den Druckstationen (22A) und für andere den Behandlungsstationen (22B) zugeordnet sind, und welche jeweils selbst eine Rille (32) umfassen, in welcher die Rotationsantriebsfinger (27) der Halter (17) für Gegenstände aufeinander folgend jeweils in der Reihenfolge in Eingriff gelangen, dadurch gekennzeichnet, daß jede Druckstation (22A) von einer Behandlungsstation (22B) gefolgt ist und daß die den Druckstationen (22A) zugeordneten Regel- bzw. Steuermittel (31A) der Rotationsantriebsblöcke (30A) verschieden von den Regel- bzw. Steuermitteln (31B) der Rotationsantriebsblöcke (30B) sind, welche den Behandlungsstationen (22B) zugeordnet sind.
  2. Druckmaschine nach Anspruch 1, dadurch gekennzeichnet, daß die Regel- bzw. Steuermittel (31A) der Rotationsmitnahmeblöcke (30A), welche den Druckstationen (22A) zugeordnet sind, einen Motor (41A) und einen Treibriemen (42A) umfassen, welcher in einer Endlosschleife über eine Vielzahl von Riemenscheiben (43A1, 43A2, 43A3) geführt ist, von welchen eine (43A1) zu einer Rotation auf den Ausgangs- bzw. Abtriebswelle des Motors (41A) aufgekeilt ist, wobei dasselbe für die Regel- bzw. Steuermitteln (31B) der Rotationsantriebsblöcke (30B) gilt, welche den Behandlungsstationen (22B) zugeordnet sind, und die zwei Treibriemen (42A, 42B), welche derart eingesetzt sind, auf unterschiedlichen Niveaus angreifen.
  3. Druckmaschine nach irgendeinem der Ansprüche 1, 2, dadurch gekennzeichnet, daß die Motoren (41A, 41B), welche mit den Regel- bzw. Steuermitteln (31A, 31B) der Rotationsantriebsblöcke (30A, 30B) zusammenwirken, welche den Druckstationen (22A) und den Behandlungsstationen (22B) zugeordnet sind, Motoren mit numerischer Steuerung sind.
  4. Druckmaschine nach Anspruch 3, dadurch gekennzeichnet, daß bei den für einen Siebdruck eingeschalteten Druckstationen (22A) für jede der Druckstationen (22A) zum Regeln bzw. Steuern des entsprechenden Schirms einen individueller Motor vorgesehen ist und daß dieser Motor ein Motor mit numerischer Steuerung ist, welcher nachfolgend in bezug auf den Motor (41A) arbeitet, welcher in den Regel- bzw. Steuermitteln (31A) der Rotationsantriebsblöcke (30A) eingeschaltet ist.
  5. Druckmaschine nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, daß für wenigstens einen der Halter (17) für Gegenstände individuelle bzw. einzelne Kupplungs- bzw. Feststellmittel (50) zwischen einem derartiger Halter (17) für Gegenstände und dem Rotationsantriebsfinger (27) vorgesehen sind, welcher diesem zugeordnet ist.
  6. Druckmaschine nach.Anspruch 5, dadurch gekennzeichnet, daß jeder der Halter (17) für Gegenstände drehbar relativ zu einer Hülse bzw. Buchse (52) montiert bzw. angeordnet ist, welche selbst drehbar relativ zu einem Träger- bzw. Abstützblock (53) montiert ist, welcher verbunden bzw. einstückig mit dem Aufbau (15) ist und auf welchen der zugehörige Rotationsantriebsfinger (27) aufgekeilt bzw. festgelegt ist, und daß die entsprechenden einzelnen Festlegungsmittel (50). ein Ritzel bzw. Zahnrad (54), welches drehbar auf den Halter (17) für Gegenstände aufgekeilt ist, und eine Klinke bzw. Haltevorrichtung (55) umfassen, welche durch die Hülse (52) getragen ist und welche unter der Kontrolle bzw. Steuerung der Regel- bzw. Steuermittel (56) schwenkbar zwischen einer Mitnahmeposition, für welche sie in Eingriff mit dem Ritzel (54) gelangt, und einer Freigabeposition montiert ist, für welche sie im Gegensatz dazu in Abstand von dem Ritzel (54) ist.
  7. Druckmaschine nach Anspruch 6, dadurch gekennzeichnet, daß die Regel- bzw. Steuermittel (56) der Haltevorrichtung (55) eine Rückholfeder (60), welche sie permanent in die Antriebs- bzw. Mitnahmeposition beaufschlagt, und einen Zylinder (61) umfassen, welcher durch seinen Kolben (62) geeignet ist, sich in die Freigabeposition bringen zu lassen.
EP99402041A 1998-08-13 1999-08-11 Druckmaschine mit rotierendem Halter für Gegenstände Expired - Lifetime EP0979731B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR9810377 1998-08-13
FR9810377A FR2782292B1 (fr) 1998-08-13 1998-08-13 Machine a imprimer a supports porte-objet montes rotatifs

Publications (2)

Publication Number Publication Date
EP0979731A1 EP0979731A1 (de) 2000-02-16
EP0979731B1 true EP0979731B1 (de) 2002-11-06

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US (1) US6164199A (de)
EP (1) EP0979731B1 (de)
JP (1) JP4435337B2 (de)
DE (1) DE69903773T2 (de)
ES (1) ES2186312T3 (de)
FR (1) FR2782292B1 (de)

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FR2857901B1 (fr) 2003-07-21 2005-09-23 Dubuit Mach Poste et procede d'impression par serigraphie
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EP1754603B1 (de) * 2005-08-20 2008-03-26 HINTERKOPF GmbH Maschine zum Bedrucken von Hohlkörpern
FR2908076B1 (fr) * 2006-11-03 2010-02-19 Dubuit Mach Poste d'impression,procede d'impression et machine a imprimer.
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CN106183444A (zh) 2010-07-23 2016-12-07 普莱斯提派克包装公司 用于对容器进行印刷的旋转式系统和方法
DE102011007979A1 (de) * 2011-01-05 2012-07-05 Till Gmbh Maschine zum Bedrucken von Behältern
FR2974536B1 (fr) * 2011-04-29 2013-04-26 Jean Luc Perret Machine d'impression sur articles en trois dimensions et procede d'impression
ES2638267T3 (es) * 2011-09-28 2017-10-19 Hinterkopf Gmbh Dispositivo de procesamiento
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WO2017116670A1 (en) 2015-12-28 2017-07-06 The Procter & Gamble Company Method and apparatus for applying a material onto articles with a pre-distorted transfer component
CN108430786B (zh) 2015-12-28 2021-06-15 宝洁公司 使用在双侧上偏转的转移部件将材料施加到制品上的方法和设备
KR101795688B1 (ko) 2016-10-10 2017-11-08 이은주 2도 이상의 인쇄가 가능한 곡면 인쇄장치
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FR3078503B1 (fr) * 2018-03-05 2020-03-20 Machines Dubuit Machine d'impression pour imprimer des objets et procede correspondant
CN111546761A (zh) * 2019-02-12 2020-08-18 宝洁公司 使用传送部件将材料施加到制品上的方法和设备
US11752792B2 (en) 2020-03-09 2023-09-12 The Procter & Gamble Company Method and apparatus for applying a material onto articles using a transfer component

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Also Published As

Publication number Publication date
FR2782292B1 (fr) 2000-11-10
ES2186312T3 (es) 2003-05-01
FR2782292A1 (fr) 2000-02-18
US6164199A (en) 2000-12-26
DE69903773T2 (de) 2003-08-21
EP0979731A1 (de) 2000-02-16
JP4435337B2 (ja) 2010-03-17
DE69903773D1 (de) 2002-12-12
JP2000062141A (ja) 2000-02-29

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