EP1138484B1 - Machine pour imprimer où décorer des corps creux - Google Patents

Machine pour imprimer où décorer des corps creux Download PDF

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Publication number
EP1138484B1
EP1138484B1 EP01106740A EP01106740A EP1138484B1 EP 1138484 B1 EP1138484 B1 EP 1138484B1 EP 01106740 A EP01106740 A EP 01106740A EP 01106740 A EP01106740 A EP 01106740A EP 1138484 B1 EP1138484 B1 EP 1138484B1
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EP
European Patent Office
Prior art keywords
spindle
rotation
machine according
axis
mounting
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
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EP01106740A
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German (de)
English (en)
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EP1138484A3 (fr
EP1138484A2 (fr
Inventor
Helmut Aichele
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Hinterkopf GmbH
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Hinterkopf GmbH
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Publication of EP1138484A2 publication Critical patent/EP1138484A2/fr
Publication of EP1138484A3 publication Critical patent/EP1138484A3/fr
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Publication of EP1138484B1 publication Critical patent/EP1138484B1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F17/00Printing apparatus or machines of special types or for particular purposes, not otherwise provided for
    • B41F17/08Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces
    • B41F17/14Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length
    • B41F17/20Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length on articles of uniform cross-section, e.g. pencils, rulers, resistors
    • B41F17/22Printing apparatus or machines of special types or for particular purposes, not otherwise provided for for printing on filamentary or elongated articles, or on articles with cylindrical surfaces on articles of finite length on articles of uniform cross-section, e.g. pencils, rulers, resistors by rolling contact

Definitions

  • Machines of this kind serve for printing or otherwise decorating hollow bodies having a round outer contour, such as sleeves, tubes, cans or the like.
  • Decorating are meant, for example, measures for painting, labeling, foil stamping or screen printing.
  • the machines in question have a rotation-driven spindle plate, which is provided with rotationally successively arranged spindle units which have receiving spindles on which the hollow bodies are held during the decorating or printing process.
  • Adjacent to the spindle plate is also a rotation-driven decorative drum is provided, which is peripherally provided with one or more, usually segmented decorative surfaces - in printing machines are printing surfaces - which move during the rotation of the decorative drum along a circular first trajectory, the one passes between the decoration drum and the spindle plate located decoration zone.
  • the fixed to the receiving spindles hollow body are also slewed through the decoration zone during rotation of the spindle plate.
  • the radially outwardly oriented sections of the plugged-on hollow bodies move along a second trajectory and are brought into contact in the decoration zone with the decorative surface located there simultaneously. In this way, for example, an application of paint take place on the hollow body.
  • the spindle units are guided by a plurality of guide rods radially displaceable on the spindle plate.
  • roller-shaped cam followers mounted on a spindle carrier of the spindle units are engaged with a control cam which is shaped so that the spindle units, when passing through the decoration zone, execute a tracking movement directed transversely to the axis of rotation of the spindle plate, which adjusts the course of the second trajectory to that of the first trajectory.
  • the take-up spindles are formed eccentrically and rotatably mounted on the spindle plate via a laterally offset longitudinal section.
  • the affected receiving spindle is rotated due to the interaction of a cam follower with a control cam, so that her a hollow body-bearing longitudinal portion is displaced transversely to the axis of rotation of the spindle plate. If necessary, a radial departure
  • the receiving spindle sits eccentrically in a rotatable hollow shaft.
  • the tracking correction serving tracking movement is also achieved by rotating the eccentric take-up spindles.
  • a problem of the known machines of the type mentioned is the relatively high wear of the measures provided for the path correction of the spindle units.
  • the introduced during a decorating process on the take-up spindle forces cause a tilting moment, which presses the arranged directly on the spindle carrier cam follower rollers reinforced against the control cam.
  • strong bending moments act on the guide rods of the spindle carrier. All this means that the control and leadership precision decreases over time and thus suffers the quality of the decoration process.
  • the web correction means on the axis of rotation of the spindle plate facing inside of a respective spindle unit at a distance to this have a parallel to the associated receiving spindle and rotatably mounted with respect to its longitudinal axis pivot shaft, which carries the curve following means with radial distance to its longitudinal axis and on which, on the other hand, at a radial distance to its longitudinal axis, on the other hand, on the spindle unit engaging connecting rod means is articulated, wherein a rotation of the pivot shaft caused by the Kurven Eisenfeld via the intermediate connecting rod causes responsible for the web correction tracking movement of the respective spindle unit.
  • the path correction of the second trajectory when passing through the decoration zone is now caused by the fact that the pivot shaft is rotated by a certain angle of rotation, wherein the torque exerted depends on the distance between the longitudinal axis of the pivot shaft and acting on this curve follower.
  • the rotational movement of the pivot shaft has a pivoting of the articulation point of the connecting rod result, so that the latter, depending on the direction of rotation, pulled inwards or pushed outwardly to accordingly move the associated spindle unit to obtain the tracking motion.
  • each spindle unit has a spindle carrier supporting the associated take-up spindle, via which it is mounted on the spindle plate.
  • the receiving spindles can be rotatably mounted on the associated spindle plate, which allows the decoration process, a rotation about its own axis and thus smooth rotational movements of the plugged hollow body also allowed when between these and the spindles a slightly greater friction occurs.
  • each receiving spindle with rotary drive means provided with which can force a rotational movement in the decorating process, which, for example, in a printing operation allows a very precise processing of the printed image.
  • the cooperating in generating the NachGermanterrorism connecting rod expediently contains at least two and preferably exactly two extending between the spindle unit and the pivot shaft connecting rods, which are spaced apart in the axial direction of the pivot shaft and attack in particular at the front and rear end portion of the optionally present spindle carrier.
  • the connecting arms can each be part of an independent connecting rod unit.
  • the connecting rod devices engage with the respectively assigned spindle unit in relative to this pivotally movable or articulated manner, wherein the pivot axis runs parallel to or coincides with the longitudinal axis of the spindle unit.
  • the connecting rod devices pivotally surround the associated spindle unit, which permits particularly compact dimensions.
  • a further advantageous measure is to provide the provision for enabling the tracking movement of the spindle units storage and management measures approximately at the level of the longitudinal axis of the respective receiving spindle, wherein Each spindle unit can be fixed in the direction of rotation of the spindle plate on both sides of storage units fixed to the spindle plate. Since the management measures take place here practically at the same level as the initiation of the decoration forces, a very precise guidance is possible with a substantial elimination of tilting forces. Furthermore, vibrations are effectively suppressed by this measure.
  • the machine may additionally be equipped with Abgurungsschn, by which the take-up spindles can be temporarily moved radially outwardly from their normally occupied initial position to a withdrawn position, so that the second trajectory is spaced when passing through the decoration zone to the first trajectory ,
  • Abrückungsstoffn by which the take-up spindles can be temporarily moved radially outwardly from their normally occupied initial position to a withdrawn position, so that the second trajectory is spaced when passing through the decoration zone to the first trajectory ,
  • This allows an individual retraction of the take-up spindles of the decorative drum, if due to a fault or other cause, the recording spindle in question is not or not correctly equipped with a hollow body. Without disengagement there would be a risk that the decoration process would be performed on the bare spindle recording.
  • By temporarily moving away a sufficiently large distance can be brought about to avoid contact between the decorative drum and a receiving spindle.
  • the Abrückungsschi generated by the Abrückungsmitteln is carried out by the spindle units as a whole. While in the case of WO 97/07979 only a short time twisting of the eccentrically mounted take-up spindles, these take-up spindles are moved away, resulting in a separate Abgurungsantrieb requires, in the innovation components of the web correction means can also be used to move the take-up spindles.
  • the Abschungsdoch the receiving spindles is advantageously caused by a radial displacement of the pivot shaft.
  • the disengagement means may comprise, for each spindle unit, a disengagement part rotatably mounted on the spindle plate about a rotation axis parallel to the longitudinal axis of the associated take-up spindle and on which the associated swivel shaft with eccentric rotation axis is rotatably mounted. Additionally provided actuating means may cause a rotation of the Abschreibungsteils relative to the spindle plate and the associated pivot shaft to position the Abschreibungsteil in two different rotational positions in which the pivot shaft is spaced differently far from the axis of rotation of the spindle plate.
  • a particularly compact design and a low mass to be moved results when the Abschungsteil each has a hollow shaft-like and encloses the pivot shaft at least partially.
  • the rotational positions of the Abrückungsteils may be fixed by spring means, wherein a snap mechanism may be used, which causes one and the same spring means can hold both rotational positions.
  • a trigger which is activated by a sensor device which detects the mounting state of the take-up spindles before reaching the decoration zone.
  • the description of the embodiment is based on a construction typical for a printing machine, wherein the measures relevant to the invention as mentioned can also be implemented in machines serving for other decoration measures, for example in machines for painting, labeling, foil stamping or screen printing.
  • FIG. 1 shows a section of a printing machine which contains a feed conveyor 1 and a discharge conveyor 2 which are assigned to the peripheral area of a rotation-driven spindle plate 3.
  • a feed conveyor 1 and a discharge conveyor 2 which are assigned to the peripheral area of a rotation-driven spindle plate 3.
  • the feed conveyor 1 to be printed hollow body 4 can be supplied to the spindle plate 3.
  • the discharge conveyor 2 already printed hollow body 4 are taken from the spindle plate 3 and transported away.
  • the spindle plate 3 is in operation for a rotational movement about a rotation axis 5 with a direction indicated by arrow spindle plate rotation 6 drivable. It is equipped with a plurality of spindle units 7 arranged in succession in the spindle-disk rotating direction 6, each of which contains a receiving spindle 8 with a spindle axis 11 parallel to the axis of rotation 6.
  • Each spindle unit 7 has a plate or disc-shaped base body 9 of the spindle plate 3 mounted spindle carrier 10, which carries the associated receiving spindle 8, which is rotatably mounted with a bearing portion 14 in the interior of the spindle carrier 10 and a receiving portion 15 protrudes at the front of the spindle carrier 10.
  • suitable holding means 16 may be associated with a respective receiving spindle, for example, on a magnetic basis or vacuum-based holding means 16.
  • a receiving spindle 8 has a front side opening out vacuum channel, the is connected to a vacuum source, not shown, to hold the plugged hollow body 4 by vacuum.
  • the decorative surfaces 19 pass through a circular first trajectory 20 caused by the rotation of the decorative drum 17.
  • associated decoration zone 21 - concentrate on the figures of Figures 3 to 7 - run the decorative surfaces 19 on the outer circumference 24 of each simultaneously passing through the decoration zone 21 hollow body 4 and take on this the desired decoration, in the embodiment a print.
  • the individual decorative surfaces 19 are provided by a arranged on the periphery of the decorative drum 17 applicator 25 with the decoration material, the applicator 25 in the embodiment is an inking and the decorative material is made of ink. The latter is then printed in the decoration zone 21 on the outer circumference of the circular cylindrical hollow body 4.
  • the machine is designed for continuous decoration process, with both the decorative drum 17 and the Rotate spindle plate 3 constantly.
  • the radially outwardly oriented portions 26 of the plugged onto the spindles 8 hollow body 4 through a second trajectory 27 without special measures would have this second trajectory 27 when passing through the decoration zone 21 as the first trajectory 20 a circular course, but with opposite curvature.
  • the arrangement is such that the two trajectories 20, 27 would overlap in a circular course, wherein Bahnkorrekturffen 28 are present, which ensure that the course of the second trajectory 27 when passing the decoration zone 21 coincides with the course of the first trajectory 20.
  • the path correction is achieved in that the spindle units 7 are driven at simultaneous decoration process passing through the decoration zone 21 to a marked by double arrow Nach fossilterrorism 29 which is directed transversely and in particular perpendicular to the axis of rotation 5 of the spindle plate 3, so that the respective take-up spindle 8, and with it the hollow body 4 fixed thereto, perform a radial movement with respect to this axis of rotation 5 superimposed on the rotational movement about the rotational axis 5, in such a way that virtually the curvature of the first trajectory 20 is traced.
  • the hollow body 4 can roll on the decorative surface 9. It is also possible to associate the take-up spindles 8, as in the embodiment, with rotary drive means 31, by which rotation about the spindle axis 11 can be actively forced, at least during passage through the decoration zone 21.
  • the spindle units 7 are displaceably guided approximately at the height of the spindle axis 11 in the direction of the tracking movement 9.
  • the guide means 32 provided for this purpose contain in the exemplary embodiment per spindle unit 7 two mutually spaced apart in the direction of rotation 6 of the spindle plate 3 while the spindle carrier 10 flanking on opposite sides of storage units 33 which are fixed to the base body 9 of the spindle plate 3. These define on the mutually facing sides radially extending guide surfaces on which the interposed spindle carrier 10 is radially displaceable relative to the axis of rotation 5.
  • the bearing units 33 in the embodiment are each provided at the same time on opposite sides with guide surfaces, so that they can serve for the simultaneous guidance of two adjacent spindle carriers 10.
  • the arrangement is such that spindle carrier 10 and bearing units 33 are arranged alternately in the direction of rotation 6.
  • the web correction means 28 contain for each spindle unit 7 on which the rotation axis 5 of the spindle plate 3 facing inside placed pivot shaft 34. Relative to the axis of rotation 5, it is preferably at a distance radially within the associated spindle carrier 10, wherein it is parallel to the associated receiving spindle 8 and to its longitudinal axis 35 with respect to the base body 9 of the spindle plate 3 is rotatable.
  • a connecting rod device 36 is articulated on the pivot shaft 34, which consists in the embodiment of two separate connecting rod units 37a, 37b.
  • Each of these connecting rod units 37a, 37b has a connecting rod arm 38a, 38b, which is connected at one end with the already mentioned radial distance "a” at an articulation point 43 to the pivot shaft 34 in an articulated manner.
  • the respective pivot point 43 can be defined by a pin bearing, wherein the hinge axis 44 extends parallel to the longitudinal axis 35 of the pivot shaft 34.
  • each Pleuelarm 38 on the spindle unit 7 is stored at the pivot point 43 opposite end of each Pleuelarm 38 on the spindle unit 7, relative to this pivotable, stored.
  • the thereby defined pivot axis 44 could in principle be parallel and spaced from the spindle axis 11 and, for example, on the pivot shaft 34 facing inside of the receiving spindle 8 are.
  • the arrangement in the embodiment is such that the pivot axis 44 coincides with the longitudinal axis of the spindle unit 7 and with the spindle axis 11.
  • each connecting rod unit 37a, 37b has at the outer end of its connecting rod arm 38a, 38b a bearing ring 45 surrounding the spindle carrier 10 coaxially.
  • each connecting rod 37a, 37b is pivotable relative to the spindle axis 11, wherein the bearing ring 45 rotates about the only adjustable in the direction of the tracking movement 29 spindle carrier 10.
  • the two connecting rod units 37a, 37b or their connecting rod arms 38a, 38b are expediently arranged in the axial direction of the pivoting shaft 34 at a distance from one another such that they engage the front and rear end areas of the spindle carrier 10.
  • the spindle units 7 are supported in a very dimensionally stable manner with respect to the pivot shaft 34.
  • a support arm 46 which is rotatably connected to the pivot shaft 34. It is expediently located at an axial end region of the pivot shaft 34, and in particular at the rear side thereof End, which is assigned to the remote from the decoration zone 21 back of the main body 9 of the spindle plate 3.
  • curve following means 47 are arranged, which are preferably formed by rolling or rolling bodies which are rotatably mounted on the support arm 46 with the axis of rotation of the pivot shaft 34 parallel axis of rotation ,
  • the Kurven tookarsch 47 cooperate with a formed in the embodiment of a cam groove fixed cam 48 which is provided on a suitable cam carrier 49, which in the embodiment of the rear side of the main body 9 is spaced.
  • the cam followers 47 associated with the individual pivot shafts 34 run along the control cam 48, which has a profile 50 deviating from the circular shape in the region of the decoration zone and bent towards the axis of rotation 5.
  • the bent path 50 is matched to the curvature of the first trajectory 20.
  • the curve following means 47 are in the circularly curved region of the control cam 48, the radial position of the spindle units 7 with respect to the base body 9 remains constant. This operating phase is indicated in FIG. However, as soon as the curve following means 47 enter the cam section 50 with a bent-over profile 50, they are displaced radially in accordance with the curve, which is due to the radial distance "b" to the longitudinal axis of the pivot shaft 34 has a pivoting thereof about the said longitudinal axis 35 result. The resulting rotational position of the pivot shaft 34 is shown in Figure 5, where indicated by arrow 53, the pivoting direction.
  • each spindle unit 7 is first drawn inwardly through the decorative zone 21 by the connecting rod 36 and then pressed outwards again, so that the decoration zone 21 associated track section 55 of the second trajectory 27 coincides with the first trajectory 20 course Has.
  • the machine preferably additionally has release means 56 which are capable of individually displacing each individual spindle unit 7 and thus the associated take-up spindle 8 temporarily from its home position to a raised position resulting from Figs.
  • release means 56 which are capable of individually displacing each individual spindle unit 7 and thus the associated take-up spindle 8 temporarily from its home position to a raised position resulting from Figs.
  • the position of the spindle units 7 is to be understood by the basic position, which they occupy when passing through the second trajectory 27.
  • the withdrawn position is characterized in that the spindle units 7 are radially displaced with respect to the second trajectory 27 in the direction of the axis of rotation 5 of the spindle plate 3, so that the radially outwardly oriented portions 26 of the plugged hollow body 4, if present, a modified second trajectory 57 through which the actual course of the second trajectory 27 and thus also to the first trajectory 20 by a predetermined amount "c" is spaced.
  • this Abgurungsvorgang is usually carried out only when a receiving spindle 8 is not or incorrectly equipped with a hollow body 4.
  • sensor means 58 are provided, for example inductive proximity sensors, which trigger the Abschungsvorgang when due to the determined condition no decoration process with respect to the respective spindle unit 7 is to be executed.
  • the take-up spindle 8 is then moved away from the decoration drum 17 so far that contact with the decorative surfaces 19 is excluded and the receiving spindle 8 is not contaminated.
  • the sensor means 58 are expediently located at a location which is upstream of the decoration zone 21 counter to the direction of rotation 6 and lies there in the area adjacent to the second trajectory 27. Thus, there is sufficient time to move exactly the desired spindle unit 7 when passing through the decoration zone 21 targeted. If the relevant spindle unit 7 has passed the decoration zone 21, it can be retracted into the basic position by an opposite movement sequence.
  • the pivot shaft 34 at least partially hollow shaft and at least partially enclosing Abrükkungsteil 59.
  • Each spindle unit 7 is assigned such a Abrükkungsteil 59 which is rotatably mounted on the base body 9 of the spindle plate 3, wherein the axis of rotation 62 coincides with its longitudinal axis and extends parallel to the longitudinal axis 35 of the pivot shaft 34.
  • the latter is now rotatably mounted in the Abschreibungsteil 59, so that their pivotal bearing with respect to the base body 9 indirectly takes place with the interposition of the Abschungsteils 59.
  • the pivot shaft 34 is eccentrically rotatably mounted on the Abschreibungsteil 59, so that its longitudinal axis 35 extends at a distance parallel to the axis of rotation 62 of the Abenburgungsteils 58.
  • the Abschungsstoff 56 further include actuating means 63 which can cause a rotation of the Abgurstesteils 59 about its axis of rotation 62 relative to the base body 9 of the spindle plate 3 and the associated pivot shaft 34.
  • the Abschreibungsteil 59 can be selectively positioned in one of two rotational positions, which are referred to as Abgur-rotational position 64 and as engagement-turning position 65 and emerge from Figures 6 and 7. Due to the eccentric mounting of the pivot shaft 34 on the Abrückungsteil 59, the pivot shaft 34 takes in the two rotational positions 64, 65th of the Abrückungssteils 59 different radial positions with respect to the axis of rotation 5 a.
  • the engagement rotational position 65 it has its normal position, in the disengaging rotational position 64, it is moved closer to the axis of rotation 5, and with it the articulated about the connecting rod 56 spindle unit. 7
  • the actuating means 63 include a controlled by the sensor means 58 switchable trigger 66. It can cooperate with a non-rotatably connected to the Ab Havenungsteil 59, but at the same time arranged at a radial distance from the axis of rotation 62 first stop 67.
  • the spindle plate 3 can rotate at in engaging rotary position 65 Abschreibungsteil 59 without the trigger 66 on the first stop 67 would act.
  • the path of movement of the first stop 67 runs past the trigger 66 occupying the inoperative position 68.
  • the trigger 66 can be moved into an effective position 69 shown in solid lines in the drawing, in particular by a pivoting movement in which it projects into the path of movement of the first stop 67, if the associated removal part 59 blocks the engagement.
  • Rotary position 65 occupies.
  • the first abutment 67 strikes the trigger 66 and is rotated to the Abgur-Drehgna 64, which is apparent from Figures 6 and 7.
  • Figures 6 and 7 show the withdrawn position of a spindle unit 7 located in Abrück-turning position 64 Abgurungsteil 59.
  • a phase is shown in which the decoration zone 21 is just left and the second stop 73 is just about to the upstream reset 72 run up.
  • the latter is also arranged stationary and is located in particular on the cam carrier 49, wherein it can assume a fixed position.
  • the two rotational positions 64, 65 of the Abrückungsteils 59 are suitably fixed releasably by spring means 74.
  • These spring means 74 engage on the one hand with a radial distance from the axis of rotation 62 at the Abrückungsteil 59 (point of attack 75), and are supported at the other end to a bearing 76 on the base body 9 from.
  • the point of attack 75 is in the two rotational positions 64, 65 on opposite sides of a bearing 76 and the axis of rotation 62 of the Abschungsteils 59th
  • This has a snap effect result wherein the Abschreibungsteil 59 is held in both rotational positions 64, 65 by spring force, is overcoming the spring force, however, is rotatable, wherein the spring means 74 are pivoted about the bearing 76.

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  • Toys (AREA)
  • Displays For Variable Information Using Movable Means (AREA)
  • Printing Methods (AREA)
  • Screen Printers (AREA)
  • Rotary Presses (AREA)
  • Application Of Or Painting With Fluid Materials (AREA)

Claims (21)

  1. Machine pour imprimer ou décorer des corps creux comme des douilles, des tubes, des boîtes
    - comprenant un tambour de décoration (17) entraîné par rotation, qui est doté à la périphérie d'une ou de plusieurs surfaces de décoration (19), lesquelles parcourent une première courbe de trajectoire (20) circulaire lors de la rotation du tambour de décoration (17),
    - avec un plateau à broche (3) entraîné par rotation, disposé en décalé par rapport à son axe de rotation (5) transversalement à celui du tambour de décoration (17), qui porte dans sa direction de rotation (6) des unités de broche (7) disposées les unes à la suite des autres à distance, qui sont équipées chacune d'une broche de réception (8), sur chacune desquelles un corps creux (4) à décorer peut être emboîté, les parties (26), orientées radialement vers l'extérieur, des corps creux (4) emboîtés parcourant une seconde courbe de trajectoire (27) lors de la rotation du plateau à broche (3),
    - et avec des moyens de correction de trajectoire (28), qui garantissent que les unités de broche (7) sont déplacées, dans le cas d'un passage, s'effectuant avec une opération de décoration simultanée, par une zone de décoration (21) attribuée à la zone périphérique du tambour de décoration (17), en raison d'un mouvement d'asservissement (29) orienté transversalement à l'axe de rotation (5) du plateau à broche (3), de telle sorte que la seconde courbe de trajectoire (27) coïncide avec la première courbe de trajectoire (20), les unités de broche (7) étant guidées chacune sur des moyens de guidage (32) prévus sur le plateau à broche (3) de façon coulissante dans la direction du mouvement d'asservissement (29) et sont en liaison avec des moyens de suivi de courbe (47), qui lors de la rotation du plateau à broche (3), longent une came de commande (48) provoquant le mouvement d'asservissement (29), caractérisée en ce que les moyens de correction de trajectoire (28) présentent sur le côté intérieur, tourné vers l'axe de rotation (5) du plateau à broche (3), d'une unité de broche respective (7), à distance de celle-ci, un arbre de pivotement (34) parallèle à la broche de réception (8) attribuée et logé de façon rotative par rapport à son axe longitudinal (35), lequel arbre porte les moyens de suivi de courbe (47) à la distance ("b") radiale de son axe longitudinal (35) et sur lequel est articulé, également à la distance ("a") radiale de son axe longitudinal (35), un système de bielle (36) s'appliquant d'autre part sur l'unité de broche (7), un mouvement de rotation, provoqué par les moyens de suivi de courbe (47), de l'arbre de pivotement (34) provoquant par le système de bielle (36) intercalé le mouvement d'asservissement (29), responsable de la correction de trajectoire, de l'unité de broche (7) concernée.
  2. Machine selon la revendication 1, caractérisée en ce que chaque unité de broche (7) dispose d'un porte-broche (10) portant la broche de réception (8) attribuée, par lequel elle est logée sur le plateau à broche (3).
  3. Machine selon la revendication 2, caractérisée en ce que les broches de réception (8) sont logées de façon rotative sur le porte-broche (10) spécifique.
  4. Machine selon la revendication 3, caractérisée en ce que chaque broche de réception (8) est dotée de moyens d'entraînement de rotation (31) pour générer un mouvement de rotation forcé autour de son axe longitudinal (11) au moins lors d'un passage par la zone de décoration (21).
  5. Machine selon l'une quelconque des revendications 1 à 4, caractérisée en ce que les systèmes de bielle (36) contiennent chacun au moins deux bras de bielle (38a, 38b) s'étendant entre l'unité de broche (7) et l'arbre de pivotement (34), lesquels bras sont espacés l'un de l'autre dans la direction de l'axe de l'arbre de pivotement (34).
  6. Machine selon la revendication 5, caractérisée en ce que deux bras de bielle (38a, 38b) sont prévus, lesquels s'appliquent sur la zone d'extrémité avant et la zone d'extrémité arrière d'un porte-broche (10) portant la broche de réception (8), sur le côté avant duquel la broche de réception (8) dépasse avec une partie de logement (15), servant au logement de corps creux.
  7. Machine selon la revendication 5 ou 6, caractérisée en ce que les bras de bielle (38a, 38b) font respectivement partie d'une unité de bielle (37a, 37b) indépendante, s'appliquant respectivement à l'unité de broche (7) et à l'arbre de pivotement (34).
  8. Machine selon l'une quelconque des revendications 1 à 7, caractérisée en ce que les dispositifs de bielle (36) s'appliquent sur l'unité de broche (7) respectivement attribuée de façon mobile en pivotement par rapport à cette unité, l'axe de pivotement (44) étant agencé parallèlement à l'axe longitudinal (11) de l'unité de broche (7) ou coïncidant avec celui-ci.
  9. Machine selon la revendication 8, caractérisée en ce que les dispositifs de bielle (36) entourent de façon mobile en pivotement l'unité de broche (7) attribuée dans la zone d'un porte-broche (10) portant la broche de réception (8).
  10. Machine selon l'une quelconque des revendications 1 à 9, caractérisée en ce que les unités de broche (7) sont guidées à peu près à la hauteur de l'axe longitudinal (11) de leur broche de réception (8) de façon coulissante en direction du mouvement d'asservissement (29).
  11. Machine selon la revendication 10, caractérisée en ce que chaque unité de broche (7) est flanquée dans la zone d'un porte-broche (10) portant la broche de réception (8) dans le sens de rotation (6) du plateau à broche (3) des deux côtés, d'unités de logement (33) fixées sur le plateau à broche (3), lesquelles sont responsables du logement, coulissant en direction du mouvement d'asservissement (29), des unités de broche (7).
  12. Machine selon l'une quelconque des revendications 1 à 11, caractérisée en ce que les moyens de suivi de courbe (47) formés de préférence par des corps de roulement sont attribués à une zone d'extrémité axiale de l'arbre de pivotement (34).
  13. Machine selon l'une quelconque des revendications 1 à 12, caractérisée en ce que les moyens de suivi de courbe (47) sont disposés sur un bras support (46) dépassant radialement à partir de l'arbre de pivotement (34).
  14. Machine selon l'une quelconque des revendications 1 à 13, caractérisée en ce que des moyens de recul (56) sont prévus, lesquels peuvent déplacer les broches de réception (8) provisoirement à partir de leur position de base radialement vers l'intérieur dans une position reculée, en ce que la seconde courbe de trajectoire (27) passe à distance de la première courbe de trajectoire (20) lors du passage par la zone de décoration (21).
  15. Machine selon la revendication 14, caractérisée en ce que le mouvement de recul généré par les moyens de recul (56) est exécuté à chaque fois de façon globale par les unités de broche (7).
  16. Machine selon la revendication 14 ou 15, caractérisée en ce que le mouvement de recul des broches de logement (8) est causé par un déplacement radial de l'arbre de pivotement (34).
  17. Machine selon la revendication 16, caractérisée en ce que les moyens de recul (56) contiennent pour chaque unité de broche (7) une partie de recul (59) logée sur le plateau à broche (3) de façon à pouvoir tourner autour d'un axe de rotation (62) parallèle à l'axe longitudinal (11) de la broche de réception (8) attribuée, partie sur laquelle l'arbre de pivotement (34) attribué est logée de façon rotative et excentrée avec l'axe de rotation parallèle, des moyens d'actionnement (63) étant présents, lesquels peuvent provoquer une rotation de la partie de recul (59) par rapport au plateau à broche (3) et par rapport à l'arbre de pivotement (34) attribué, afin de positionner la partie de recul (56) dans deux positions de rotation différentes, dans lesquelles l'arbre de pivotement (34) est espacé de façon différente par rapport à l'axe de rotation (5) du plateau à broche (3).
  18. Machine selon la revendication 17, caractérisée en ce que la partie de recul (59) est conçue comme un arbre creux et entoure au moins partiellement l'arbre de pivotement (34).
  19. Machine selon la revendication 17 ou 18, caractérisée en ce que la partie de recul (59) est fixée par des moyens à ressort (74) dans les deux positions de rotation.
  20. Machine selon l'une quelconque des revendications 17 à 19, caractérisée en ce que les moyens d'actionnement (63) contiennent un déclencheur (66) de préférence commandé par capteur et pouvant commuter entre une position inactive et une position active, lequel déclencheur déplace dans la position active dans la trajectoire de déplacement d'une butée (67) reliée de façon solidaire en rotation à la partie de recul (59) et disposée à la distance radiale de l'axe de rotation (62) afin de modifier, lors de l'arrivée sur la butée, la position de rotation de la partie de recul (59) pour le déplacement de la broche de réception (8) attribuée dans la position reculée.
  21. Machine selon l'une quelconque des revendications 17 à 20, caractérisée en ce que les moyens d'actionnement (63) contiennent un dispositif de rappel (72), qui dépasse, lorsqu'une broche de réception (8) est dans une position reculée, dans la trajectoire de déplacement d'une butée (73) reliée de façon solidaire en rotation à la partie de recul (59) et disposée à la distance radiale de son axe de rotation (62), afin de modifier, lors de l'arrivée sur la butée, la position de rotation de la partie de recul (59) pour le déplacement en arrière de la broche de réception (8) associée dans la position de base.
EP01106740A 2000-04-01 2001-03-17 Machine pour imprimer où décorer des corps creux Expired - Lifetime EP1138484B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10016408A DE10016408C2 (de) 2000-04-01 2000-04-01 Maschine zum Bedrucken oder sonstigen Dekorieren von Hohlkörpern
DE10016408 2000-04-01

Publications (3)

Publication Number Publication Date
EP1138484A2 EP1138484A2 (fr) 2001-10-04
EP1138484A3 EP1138484A3 (fr) 2002-08-14
EP1138484B1 true EP1138484B1 (fr) 2006-11-02

Family

ID=7637360

Family Applications (1)

Application Number Title Priority Date Filing Date
EP01106740A Expired - Lifetime EP1138484B1 (fr) 2000-04-01 2001-03-17 Machine pour imprimer où décorer des corps creux

Country Status (5)

Country Link
US (1) US6490969B2 (fr)
EP (1) EP1138484B1 (fr)
AT (1) ATE344141T1 (fr)
DE (2) DE10016408C2 (fr)
ES (1) ES2272367T3 (fr)

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA2451789C (fr) * 2001-06-29 2012-03-27 Meso Scale Technologies, Llc. Plaques d'epreuve, systemes lecteurs et methodes de mesures de tests par luminescence
ATE357337T1 (de) 2004-11-26 2007-04-15 Hinterkopf Gmbh Anlage zum bedrucken oder sonstigen dekorieren von hohlkörpern
EP2207684B1 (fr) * 2007-10-19 2011-11-23 KHS GmbH Dispositif d'impression de bouteilles ou de récipients similaires sur la surface extérieure des récipients
DE102010045255A1 (de) * 2010-09-14 2012-03-15 Gizeh Verpackungen Gmbh & Co. Kg Verfahren und Vorrichtung zum Bedrucken balliger und/oder taillierter rotationssymmetrischer Behälter
ES2381348B1 (es) * 2010-10-27 2013-05-06 Industrias Peñalver, S.L. Cabezal de rebarnizado para tapas de geometría circular.
ES2396845B1 (es) * 2010-12-17 2014-01-16 Industrias Peñalver, S.L. Cabezal de rebarnizado para tapas.
US8683921B2 (en) 2011-08-23 2014-04-01 The Beckwood Corporation, Inc. Modular decorating machine for conical products
DK3138633T3 (en) * 2014-04-30 2019-03-18 Ind Penalver Sl Programmable concentric head for applying liquid to lids with different designs
CN107000427A (zh) 2014-10-01 2017-08-01 纳幕尔杜邦公司 作为饮料罐印刷单元的一部分的包含非热塑性聚酰亚胺的主轴套
DE102016213214B4 (de) * 2016-07-20 2020-07-16 Koenig & Bauer Ag Vorrichtung zum Bedrucken von Hohlkörpern

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US3356019A (en) * 1966-02-09 1967-12-05 Levey Fred K H Co Inc Apparatus for continuous can printing
US3496863A (en) * 1968-07-29 1970-02-24 Reynolds Metals Co Container printing apparatus and method
SE351575B (fr) * 1970-09-02 1972-12-04 Polytype Ag
US3851579A (en) * 1973-05-16 1974-12-03 Vlaanderen Container Machine Can carrier trip mechanism in continuous can printer
US3996851A (en) * 1975-07-17 1976-12-14 Crown Cork & Seal Company, Inc. Container printing apparatus
US4037530A (en) * 1975-12-01 1977-07-26 Coors Container Company Mandrel trip mechanism for can printers
DE2710039A1 (de) * 1977-03-08 1978-09-14 Coors Container Co Ausrueckmechanismus fuer die aufspanndorne einer maschine zum bedrucken von dosen
US4140053A (en) * 1977-06-16 1979-02-20 Sun Chemical Corporation Mandrel mounting and trip mechanism for continuous motion decorator
US4498387A (en) * 1983-10-21 1985-02-12 Adolph Coors Company Cam assembly for skip-print mandrel wheel assembly
NL192329C (nl) * 1986-07-04 1997-06-04 Thomassen & Drijver Inrichting voor het bedrukken van bekers of bussen.
US4750420A (en) * 1987-11-03 1988-06-14 Adolph Coors Company Rotatable cam for skip-print mandrel wheel assembly
US5193456A (en) * 1991-12-04 1993-03-16 Crown Cork & Seal Company, Inc. Apparatus for decorating beverage cans using a flexographic process
US5572927A (en) * 1995-08-31 1996-11-12 Sequa Corporation Vertical track for mandrel assembly of continuous motion can decorators
US5882474A (en) * 1997-06-13 1999-03-16 B&H Manufacturing Company, Inc. Labeling machine with radial motion turret

Also Published As

Publication number Publication date
DE50111340D1 (de) 2006-12-14
DE10016408C2 (de) 2002-11-14
ATE344141T1 (de) 2006-11-15
EP1138484A3 (fr) 2002-08-14
ES2272367T3 (es) 2007-05-01
US20010025573A1 (en) 2001-10-04
DE10016408A1 (de) 2001-10-04
US6490969B2 (en) 2002-12-10
EP1138484A2 (fr) 2001-10-04

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