EP2844567A1 - Machine d'étiquetage équipée d'un dispositif d'enroulement pour une bande de support - Google Patents

Machine d'étiquetage équipée d'un dispositif d'enroulement pour une bande de support

Info

Publication number
EP2844567A1
EP2844567A1 EP13736837.9A EP13736837A EP2844567A1 EP 2844567 A1 EP2844567 A1 EP 2844567A1 EP 13736837 A EP13736837 A EP 13736837A EP 2844567 A1 EP2844567 A1 EP 2844567A1
Authority
EP
European Patent Office
Prior art keywords
carrier strip
winding device
section
winding
labeling machine
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.)
Granted
Application number
EP13736837.9A
Other languages
German (de)
English (en)
Other versions
EP2844567B1 (fr
Inventor
Peter Wolff
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.)
Espera Werke GmbH
Original Assignee
Espera Werke GmbH
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Espera Werke GmbH filed Critical Espera Werke GmbH
Priority to PL13736837T priority Critical patent/PL2844567T3/pl
Publication of EP2844567A1 publication Critical patent/EP2844567A1/fr
Application granted granted Critical
Publication of EP2844567B1 publication Critical patent/EP2844567B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/08Label feeding
    • B65C9/18Label feeding from strips, e.g. from rolls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/0006Removing backing sheets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/08Label feeding
    • B65C9/18Label feeding from strips, e.g. from rolls
    • B65C9/1865Label feeding from strips, e.g. from rolls the labels adhering on a backing strip
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/40Controls; Safety devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C9/0006Removing backing sheets
    • B65C2009/0009Removing backing sheets by means of a peeling tip
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C2009/0087Details of handling backing sheets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C9/00Details of labelling machines or apparatus
    • B65C2009/0087Details of handling backing sheets
    • B65C2009/0096Rotation of the backing sheet about its longitudinal axis by passing the backing sheet over a roller

Definitions

  • the present invention relates to a labeling machine with a labeling device, which comprises a supply device for supplying a carrier strip, the removable with
  • Label is provided, and a transfer means for transferring the labels from the carrier strip on an object to be labeled. Furthermore, the invention relates to a method for labeling of items such as goods or packaging, in which at least one to
  • Carrier strip which is provided with removable labels, is fed in a transport direction of a transfer device and on the at least one to be labeled
  • Labels of liberated (fully or partially liberated) carrier strip portion is obtained. Such a labeling and a corresponding
  • Such a device has one or more conveyor sections for the transport to
  • labeling items such as a product or packaging on.
  • a transfer device for transferring labeling items to and from a product.
  • the labels can according to an embodiment of the device on a carrier strip, also called carrier paper supplied from which they are replaced in the transfer facility. According to a described alternative, carrier paper-free labels can be applied in the said device.
  • Carrier strip portion so the part of the carrier strip, which is transported out after the labeling process from the transfer device, and the removal of the collected material.
  • This carrier strip portion must be collected in containers, which containers must be regularly taught or replaced when they are full.
  • Labeling machine of the type mentioned above achieved in that the labeling machine further comprises a winding device for winding a liberated from labels (that is, completely or partially exempted) portion of the
  • Carrier strip comprising at least one
  • the at least one guide element is connected downstream and has the fixing means on which a loose end portion of the carrier strip portion is fixable, wherein the
  • Fixing means are arranged on a spool core rotatable about a rotation axis and follow a rotational movement of the spool core.
  • said carrier strip section freed from labels (completely or partially). Preferably, this can even be done automatically. Due to the rotatable spool core of
  • Winding device the carrier strip portion to a roll, hereinafter called carrier strip roll, wound up, which forms a particularly space-saving possibility of receiving carrier strip material, since unused spaces between the individual by the winding
  • Sections of the collected carrier strip material can be avoided and, accordingly, a high packing density can be achieved.
  • Spool core is also a particularly simple method to collect strip material and in particular to pack as tightly as possible. Yet another advantage is that fixing means are arranged on or on the rotatable spool core, for example pins, as will be described in more detail below, thereby forming a loose end portion of the carrier strip section freed of labels - that is to say the front end of the carrier strip section
  • Carrier strip or carrier strip portion - can be fixed at the beginning of Aufwickelvorgangs the bobbin, which turn the start of Aufwickelvorgangs particularly simple.
  • loose end portion is meant as I said the part or the end of the carrier strip portion, which or
  • the loose end portion is either the production-related front or outer part of a provided with labels
  • the guide element on which the carrier strip section is guided before it is detected by the takeup device, it is, for example, a deflection element such as a deflection roller, deflection edge or the like, in the simplest case only around the end of a support surface or rail or
  • the surface of the guide element forms an optionally rounded edge facing away from the transfer device, on which the
  • Carrier strip section is guided along and possibly.
  • Carrier strip section however, not always required; Rather, it is also conceivable that the carrier strip section straight from the guide element, that is to say in particular
  • Guide element is, in which case the guide element has a deflection function.
  • the terms vertical and horizontal refer to the direction of gravity, that is vertical means in the direction of gravity, horizontally means transverse to it.
  • the winding device further comprises a blower device with at least one air outlet, that is, an opening that is suitable, air
  • the latter can be designed in particular as a blowing nozzle, which has the advantage that the exiting blow jet or air flow is bundled and a
  • the air outlet opening is in particular aligned such that one of them
  • Carrier strip portion which has already passed the guide element, can be pressed by the air flow in the direction of the spool core.
  • the air outlet opening is aligned in the direction of an imaginary straight line which extends through the axis of rotation of the spool core and bears tangentially against the surface of the guide element.
  • surface is meant the location of the guide element at which the
  • Carrier strip portion touches the guide member during Aufwickelvorgangs.
  • Air flow can be moved before the Aufwickickelvorgang in the area of action or rotation of the fixing means, thereby allowing the end portion of the
  • Fixing agent is thus the area meant at a
  • Rotation of the coil core is enclosed by the outside of the fixing agent.
  • the winding device further comprises a separating device with a separating element, in particular with one or more knives or blades, with one or several saw blades, with one or more needles
  • Carrier strip section can be done.
  • the separating element can be brought into a position which traverses the carrier strip section either in the form of the outer layer of the carrier strip roll or in the form of a section which has not yet been wound onto the carrier strip roll.
  • the separating element thus cuts through the carrier strip section, as a result of which the carrier strip roll is separated from the remaining carrier strip section and can be removed from the spool core.
  • Form separator and the separator may be at the separating element to a single
  • Separating element eg, a single knife, saw blade, a single needle, etc.
  • a two-part separating element eg in the form of several knives, saw blades, needles, etc.
  • act e.g., a two knife, saw blade, a single needle, etc.
  • the separating element for example a saw blade
  • the separating element may be spring-mounted. This has the advantage that when cutting a certain bearing force of the separating element is not exceeded on the surface to be cut, which ensures that only the upper layer of the Carrier strip role is severed and underlying layers, at least as far as possible, remain intact. In this way, the carrier strip roll can be easily disposed of after cutting as a coherent whole.
  • severing does not necessarily have to take place on the surface of the roll, but can also take place in the region between the roll and the labeling device and in particular in the region between the roll and the guide device, preferably between the roll and the guide element.
  • the driven coil core generates, under tension, which makes cutting particularly easy;
  • the carrier strip section only has to be partially cut or torn by the separating element in order then to tear through on its own.
  • a perforation by the described needle or the described plurality of needles as a separating element is sufficient to rupture the
  • a laser cutting head can also be provided, that is to say a component producing a laser beam, in which case the laser beam causes the cut or the partial cut by heating the carrier strip section. The stroke performed by the separator between the
  • Position in which the separating element touches the surface to be cut, and the rest position spaced therefrom is preferably a maximum of a few millimeters.
  • the stroke is in a range of less than 5 mm
  • the separating element performs a movement which has a component of movement parallel to the surface to be cut.
  • This transverse movement can be effected by various types of drives, for example.
  • an electric, mechanical, hydraulic or pneumatic drive preferably by a
  • the magnet and / or the separating element is additionally connected to a spring, which supports the oscillating movement.
  • the one- or multi-part separator may also be suspended eccentrically and in particular be designed as eccentric knife. Additionally or alternatively, the separating element as I said also
  • Carrier strip roll is wound.
  • Such a so-called parallel blade or such a so-called parallel saw especially when suspended eccentrically, has the advantage that no part of the separating element blocks the transport path.
  • Eccentric knife (or eccentric saw) is executed, but can be arranged so that both cutting
  • the slit width or opening of the separating device, through which the carrier strip section must be passed is only a few millimeters in size. This way you can
  • the slit width is in a range of 1 to 8 mm, preferably in a range of 3 to 8 mm, particularly preferably in a range of 3 to 5 mm.
  • the winding device further comprises a sensor device with at least one sensor for determining the position of the outer layer and / or the diameter or the radius of the carrier strip roll.
  • a sensor can be used as a capacitive switch, ultrasonic sensor, laser or be executed mechanical limit switch. Basically, the sensor can also be used to determine the weight of the
  • Carrier strip role so for example in the form of a
  • Load cell be formed; this (r) could then be arranged in the rotary shaft or the spool core.
  • Sensor can then generate a corresponding signal or send it to a control device, which can then trigger corresponding follow-up actions (in particular severing and / or removal of the liberated label carrier strip portion), as will be explained in more detail below.
  • a sensor device is not mandatory.
  • the control device is configured so that it can calculate from the known carrier strip thickness (which can be programmed or automatically measured) the time or the time window (time range) at which the said follow-up actions are to be triggered.
  • all fixing means are preferably also spaced from this axis of rotation.
  • One or more of the fixing means or pins, preferably all fixing means or pins, can between a
  • the protruding position is meant a position in which the respective fixing means protrudes so far from the surface of the spool core that a fixing of the carrier strip portion, that is the loose end portion of the spool core is possible.
  • the respective fixing agent is in the protruding
  • Carrier strip portion is wide. In other words
  • Carrier strip portion With the retracted position is meant a position in which the respective
  • Fixing provided, all of which are retractable, that are movable between a protruding and a retracted position.
  • the fixing means or pins preferably protrude from the end face of the spool core and extend parallel to the axis of rotation of the spool core.
  • the fixing means or pins are all the same distance from each other and also have the same distance from the axis of rotation of the spool core.
  • the pins can be individually or in pairs or all sunk together, so be brought into the retracted position. The same applies to the movement in the protruding position.
  • the above-mentioned fixing means or pins can also protrude differently long or in the protruding position to different heights, in particular a pair of each other (relative to the axis of rotation of the
  • Spool core opposite fixers or pins has the same length.
  • Fixing means or pins are initially sunk two, so are in the retracted position, and the other two are in the protruding position. In the case that the pins in the protruding position
  • the countersunk pins face each other with respect to the axis of rotation of the spool core, that is, the axis of rotation is located between the two recessed fixing means or pins.
  • Carrier strip section directed and this against the
  • the coil core should not rotate at this moment, be chosen so that the protruding fixing means or pins are arranged on an imaginary line parallel or in a pointed Angle of preferably less than 30 °, more preferably less than 15 °, to a straight line extending through the axis of rotation of the spool core and which bears tangentially on the surface of the guide element. If the position of the bobbin at this time does not meet these requirements, the bobbin is preferably rotated to a position that meets the requirements, or will
  • the air outlet port can direct an air flow onto the carrier strip section and direct it against the two protruding fixation means or pins, whereby the carrier strip section passes through the area of action or rotation of the fixing means.
  • End portion of the carrier strip portion between at least two fixing means runs or on each side of the
  • Carrier strip portion at least one fixing agent
  • Fixing means are first sunk and with the aid of an air flow from an air outlet of the
  • an abutment element may be provided on the opposite side of the guide element, the surface of which preferably bears against an imaginary straight line passing through the area of action (rotation area) of the fixing means and in particular through the axis of rotation of the
  • Spool core runs and bears tangentially on the surface of the guide element.
  • the distance between the guide element and the coil core is smaller than the distance between the guide element and contact element.
  • Words is the axis of rotation of the spool core or the
  • Effective range (rotation range) of the fixing extends. Will then the fixative or pins in the
  • Carrier strip portion always between at least two of the fixing. Jammed by the rotation of the spool core sic accordingly also in this case the
  • Carrier strip section automatically.
  • the air outlet opening can also be made for the air outlet opening to be oriented parallel to an imaginary straight line passing through the axis of rotation of the spool core and tangent to the surface of the guide element.
  • Air outlet openings of the aforementioned type may be provided, so that the carrier strip portion between two air streams or blowing blasting is performed.
  • the winding device has a fan device with at least one
  • Air outlet opening which is oriented such that an air flow emerging therefrom the carrier strip portion, in particular the loose end portion thereof, in an inlet - said slot is called or said opening - of the separator deflects.
  • At least two air outlet openings of the type mentioned are preferably provided for this purpose, which are aligned at an angle to one another and which
  • the winding device has a control device that is configured in such a way that
  • o can operate the separating device and / or o can move the fixing means from the protruding to the retracted position and / or o can switch on the blower device
  • o can move the fixing means from the retracted to the protruding position and / or o can start or accelerate the rotation of the spool core and / or
  • o can switch off the blower device.
  • the control means is suitable at that time This time window to slow down or stop the rotation of the spool, to cause a severing of the carrier strip portion, sink the fixing means, whereby the role of the spool is released, and / or turn on the fan means, thereby to position the carrier strip portion before a new winding process can begin.
  • the coil core can also be consistent or reduced
  • control device may be configured to match the rotational speed of the spool core to the necessary transport speed of
  • Carrier strip portion and / or to the outer diameter of the wound carrier strip roll adapts;
  • Carrier strip roll whereby it is advantageous if the rotational speed of the spool core, in particular evenly with increasing outer diameter) is reduced. Accordingly, the outer diameter and consequently the circumference of the roll is minimal at the beginning of a new winding process, so that then the rotational speed is advantageously increased.
  • the control device can also be before the beginning of the
  • Winding process by starting or accelerating the rotation of the spool core start the winding process and / or the blower device, which is used to position the support strip portion within the range of action
  • Carrier strip roller effected until a time at which still carrier strip is inserted into the labeling device.
  • the control device must also check to what extent carrier paper in the device is postponed, and then initiate the process of severing and / or loosening accordingly.
  • a carrier strip for example as
  • Carrier strip detached labels on the at least one object to be labeled, whereby a liberated from labels (completely or partially
  • Winding device of a winding device which is connected downstream of the transfer device,
  • Carrier strip portion whereby the carrier strip roll is separated from the remaining carrier strip portion
  • Winding device Also by the method according to the invention is achieved that with relatively little technical effort and high ease of use, the removal of the carrier strip or backing paper is made possible, due to the
  • Carrier roll also under very economical
  • the loose end portion of the completely or partially liberated label carrier strip portion is automatically fixed in the winding device, in particular clamped. This is done in particular in the manner described above using the movable fixing means or pins.
  • Position of the outer layer and / or the diameter or radius or the weight of the carrier strip roll determined during the Aufwickickelvorgangs and upon reaching a
  • the optimal time or window of severance can also be calculated by the controller based on a programmed or automatically measured carrier strip thickness value. For cutting the rotation of the carrier strip roll or the spool core must not be stopped as explained.
  • Reference value range is chosen in particular so that a maximum number of windings (layers) of the
  • Carrier strip roll can be achieved without this with the outer layer abuts a part of the labeling and in particular the winding device.
  • the reference value range for the radius can be, for example, between 60 and 200 mm, preferably between 90 and 180 mm, particularly preferably between 150 and 160 mm. If the sensor detects such a radius, a signal can be generated which either indicates to an operator that the carrier strip roll has reached its desired size or automatically terminates the winding process, for example by severing the carrier strip section.
  • Carrier strip roll decreases by hand. The same applies to the severing of the carrier strip section, which preferably takes place automatically, but in principle can also be carried out by hand.
  • Carrier strip roller slows down (in particular the necessary transport speed adapted) or stopped and / or
  • Winding device is released and / or
  • Carrier strip portion is turned on with air flowing fan means
  • Carrier roll carries, starts or accelerated and / or
  • Blower device is turned off.
  • the rotation of the spool core does not necessarily have to be started because the release or discarding the carrier strip roll and the severing of the
  • Carrier strip portion can take place during the rotation of the spool core.
  • Fig. 1 is a schematic representation of a
  • Fig. 2a is a schematic representation of a first
  • FIG. 2b is a schematic representation of a second
  • Fig. 2c is a schematic representation of a third
  • Fig. 2d is a schematic representation of a fourth
  • Fig. 2e is a schematic representation of a fifth
  • FIG. 2f is a schematic representation of a sixth
  • FIG. 3a is a schematic representation of a first
  • FIG. 3b) is a schematic representation of a second
  • Fig. 3c) is a schematic representation of a third
  • FIG. 4a) is a schematic perspective view of a first
  • Embodiment of a coil core for a winding device according to the figures 2a) to f) and Fig. 4b) is a schematic perspective view of a second
  • Embodiment of a coil core for a winding device according to the figures 2a) to f).
  • FIG. 1 shows, in a schematic basic illustration, a labeling machine 1 according to the present invention, which has a labeling device 2 and a winding device 6.
  • the labeling device 2 has a Feeding device 2.1 for supplying a carrier strip 3, which is provided with removable labels 4, and a
  • Transfer device 2.2 for transferring the labels 4 from the carrier strip 3 to an object 5 to be labeled.
  • the object 5 to be labeled is transported on a conveyor belt 8 or the like by the transfer device 2.2, as shown by arrows, wherein, as shown in FIG. 1, before entering the transfer device, the article 5 (left-hand object in FIG 1) still bears no intended label 4, whereas after passing through the transfer device 2.2, the article 5 (right-hand article in FIG. 1) is covered with a label 4.
  • the labels 4 are as mentioned on a carrier strip 3 releasably applied, the here as an endless roll 3.3
  • the carrier strip 3 is unrolled from this endless roll 3.3, guided by the transfer device 2.2 and then, after the carrier strip 3 is completely or partially freed from the labels 4, fed to a winding device 6.
  • FIGS. 2a) to f Exemplary embodiments of a winding device 6 are shown in FIGS. 2a) to f).
  • Carrier strip section 3.1 automatically in one
  • blower device 6.3 As an aid provided that a directed air flow S for exact positioning of the end portion 3.11 on the
  • Carrier strip section 3.1 can judge.
  • Sensor device 6.5 detects when the carrier strip roll 3.2 has reached a predetermined size, whereupon via a separator 6.4 of the carrier strip section 3.1
  • the carrier strip roll 3.2 can then be released and removed from the winding device 6, whereupon a new winding process can begin.
  • Carrier strip roll 3.2 can then be disposed of.
  • Transport direction T is guided, and a
  • Guide element 6.11 is connected downstream and has the fixing 6.21, where a loose end portion of the 3.11
  • Carrier strip portion 3.1 is fixable, wherein the fixing 6.21 are arranged on a rotatable about a rotation axis X spool 6.22 and one
  • winding device 6 according to the schematically illustrated embodiments in Figures 2a) to f) a blower 6.3 with at least one
  • Air outlet opening 6.31 which is aligned such that an outgoing air flow S the
  • the individual embodiments of the winding device 6 also have a separating device 6.4 with a separating element 6.41, for example a knife, a saw blade or a rotatable cutting disk, wherein the separating element 6.41 is movable to a position in which a severing of the carrier strip portion 3.1 can be carried out ,
  • the separating element can in the illustrated
  • Embodiments also be designed as a laser cutting head, the cut then by heating the
  • Carrier strip portion 3.1 is effected by means of the laser beam.
  • a sensor device 6.5 which is provided with at least one sensor 6.51, which is suitable for determining the position of the outer layer 3.12 and / or the diameter or radius of a carrier strip roll 3.2 by means of the winding 6.2 from the
  • Carrier strip portion 3.1 has been generated. It is also conceivable to provide a sensor which reduces the weight of the
  • Carrier strip roller 2.3 detected; this could then be arranged in the rotary shaft or the bobbin 6.22.
  • the pins 6.21 have all the same distance to each other and also have to the rotation axis X all the same distance.
  • the pins 6.21 are all movable between a protruding position and a retracted position. Of the four pens 6.21 can order one
  • the axis of rotation X extends, be arranged in the protruding position (pins in Fig. 2a) each symbolized by dark points), while the other two pins, which are also opposite, in the retracted
  • the two protruding pins 6.21 serve as an abutment for the end of the spool core 6.22 3.11 of the carrier strip portion 3.1.
  • the end portion 3.11 after it has passed the guide member 6.11, directed by an air flow S from the air outlet opening 6.31 in the direction of the bobbin 6.22 and the two protruding pins 6.21 until the end of 3.11 at the two
  • FIGS. 2a) to f) The starting position of the end section 3.11 before the beginning of the fixing and the winding process is shown in FIGS. 2a) to f) (shown in dashed lines).
  • the bobbin 6.22 has a position such that the protruding pins 6.21 are disposed on an imaginary line G parallel to a line G 'passing through the Rotation axis X of the bobbin 6.22 runs and which bears tangentially on the surface of the guide element 6.11.
  • the two previously sunk pins are then also moved to the protruding position, whereby the end portion 3.11 jammed between the pins 6.21.
  • the blower 6.3 is then turned off.
  • the sensor 6.51 determines a certain thickness of the carrier strip roll 3
  • a corresponding signal is sent to a
  • Transfer control 6.6 The separating device 6.4 then severed the upper layer 3.12 of the wound to a roll 3.2 carrier strip portion 3.1.
  • Cutting can stop or slow down the rotation of the bobbin 6.22.
  • the bobbin 6.22 can also with constant speed during the
  • the severing is done for example by means of a
  • the separating device shown in Fig. 3a) has a saw blade 6.41, which is mounted eccentrically and thereby performs a movement having a vertical and a horizontal component.
  • the vertical component of motion is referred to herein as stroke H.
  • the stroke H is for example 1 to 2 mm. In the lower stroke position, the saw blade touches 6.41 the surface to be cut through
  • Carrier strip section 3.1 In this case, the saw blade is 6.41 in the vertical direction, ie in the direction of the lifting movement, resiliently suspended (not shown), so that a
  • the horizontal movement component is caused by a horizontally oscillating drive, in Fig. 3a), for example, by an electromagnetic drive 6.44 with a guided in an electric coil magnet.
  • the severing can also be done by means of a parallel blade 6.41, as shown in Fig. 3b) and will be described below.
  • a separating device 6.4 with a plurality of needles 6.45 (FIG. 3c), which serve to perforate the carrier strip section 3.1, so that it tears independently at this point.
  • Air outlet 6.31 the still loose end portion 3.11 in the direction of a straight line G which passes through the axis of rotation X of the bobbin 6.22 and which bears tangentially on the surface of the guide member 6.11.
  • the end section 3.11 comes to a contact element 7 to the plant whose surface is also applied to the imaginary straight line G. This will ensure that the
  • Carrier strip portion 3.1 passes through the rotation range of the pins 6.21 and through the pins 6.21 in
  • FIG. 2a) Another difference between Fig. 2a) and Fig. 2b) is that according to Fig. 2a) of the bobbin 6.22 vertically below the outer edge of the guide member 6.11 is located, so that the gravity of the positioning of the still loose
  • the bobbin 6.22 is not located vertically below the outer edge of the bobbin
  • Labeling device 2 out offset.
  • the offset can also be provided in the other direction, that is, away from the labeling device 2.
  • the air flow S is aligned at an angle to an imaginary line which passes through the axis of rotation X and tangentially abuts the guide member 6.11.
  • the air flow S in contrast, runs parallel to an imaginary straight line G, which runs through the axis of rotation X and lies tangentially against the surface of the guide element 6.11.
  • the parallel orientation of the air flow S is achieved by the parallel orientation of the air flow S that the still loose end portion 3.11 without the need for
  • Abutment element 7 moves in the rotation range of the pins 6.21.
  • the exemplary embodiment according to FIG. 2 c) agrees with that shown in FIG. 2 b), wherein FIG. 2 c) omits said abutment element 7.
  • Fig. 2d shows an embodiment of a
  • Winding device 6 which with the in Fig. 2a) in
  • the separator 6.4 has shown in FIG. 2e)
  • the two-part separator 6.41 in the form of a parallel blade on. This is shown schematically in Fig. 3b).
  • the two blades of the parallel blade 6.41 are each
  • the horizontal component is effected by an electromagnetic drive 6.44 with a guided in an electric coil magnet here, too.
  • the latter is additionally connected to support the oscillating movement with a spring 6.43.
  • End section 3.11 can be performed without the risk of getting caught by the gap between the cutting edges.
  • an additional blower device 6.3 'in the Embodiment of Fig. 2e) which has two air outlet openings 6.31 ', one of which is arranged below and above the carrier strip portion 3.1.
  • the two exiting air streams S ' are aligned at an angle to the transport direction T and allow a previously separated loose end portion of the support strip portion 3.1 in the opening or the inlet 6.42, here
  • a sensor device 6.5 with a sensor 6.51 is provided, which determines the position of the outer layer 3.12 of FIG.
  • Carrier strip roller 3.2 can determine.
  • Fig. 2f shows yet another embodiment, which substantially coincides with that shown in Fig. 2e), but in the embodiment in Fig. 2f) of the bobbin 6.22, in particular its axis of rotation, lies in the same plane in which the carrier strip portion 3.1 is supplied from the labeling device 2.
  • this plane in which the lower edge of the guide element 6.11 extends, runs in the
  • Winding begins, just continued in the horizontal direction to the bobbin 6.22.
  • Figures 4a) and b) show in perspective a bobbin 6.22 respectively in the state in which all pins 6.21
  • Winding device 6 and a control device 6.6 is provided, which can perform one or more of the following functions:

Landscapes

  • Winding Of Webs (AREA)
  • Labeling Devices (AREA)
  • Replacement Of Web Rolls (AREA)

Abstract

L'invention concerne une machine d'étiquetage (1) comportant un dispositif d'étiquetage (2) lequel comporte un organe d'acheminement (2.1) destiné à acheminer une bande de support (3) pourvue d'étiquettes détachables (4) et lequel comporte un organe de transfert (2.2) destiné à transférer les étiquettes (4) depuis la bande de support (3) vers un article (5) à étiqueter. Afin de pouvoir ôter la bande de support, après en avoir retiré les étiquettes, avec une complexité technique relativement faible et un grand confort de manipulation. La machine d'étiquetage (1) selon l'invention comporte en outre un dispositif d'enroulement (6) qui est destiné à enrouler une partie (3.1) laquelle appartient à la bande de support (3) et laquelle est dépourvue d'étiquettes. Le dispositif d'enroulement contient au moins un organe de guidage (6.1) pourvu d'un élément de guidage (6.11) le long duquel on peut faire passer la partie de bande de support (3.1) dans un sens de transport, et un organe d'enroulement (6.2) lequel est situé en aval de l'au moins un élément de guidage (6.11) et lequel comporte des moyens de fixation (6.21) permettant d'y fixer une partie terminale libre (3.11) de la partie de bande de support (3). Les moyens de fixation (6.21) sont disposés sur un noyau de bobine (6.22) monté rotatif sur un axe de rotation (X) pour ainsi suivre le mouvement rotatif du noyau de bobine (6.22). En outre, l'invention concerne un procédé d'étiquetage correspondant.
EP13736837.9A 2012-10-18 2013-07-03 Machine d'étiquetage équipée d'un dispositif d'enroulement pour une bande de support Not-in-force EP2844567B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL13736837T PL2844567T3 (pl) 2012-10-18 2013-07-03 Maszyna etykietująca z urządzeniem zwijającym dla taśmy nośnej

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102012020419.1A DE102012020419A1 (de) 2012-10-18 2012-10-18 Etikettiermaschine und Verfahren zum Etikettieren von Gegenständen
PCT/EP2013/064038 WO2014060124A1 (fr) 2012-10-18 2013-07-03 Machine d'étiquetage équipée d'un dispositif d'enroulement pour une bande de support

Publications (2)

Publication Number Publication Date
EP2844567A1 true EP2844567A1 (fr) 2015-03-11
EP2844567B1 EP2844567B1 (fr) 2015-09-23

Family

ID=48790392

Family Applications (1)

Application Number Title Priority Date Filing Date
EP13736837.9A Not-in-force EP2844567B1 (fr) 2012-10-18 2013-07-03 Machine d'étiquetage équipée d'un dispositif d'enroulement pour une bande de support

Country Status (9)

Country Link
US (1) US9751652B2 (fr)
EP (1) EP2844567B1 (fr)
CN (1) CN104736440B (fr)
CA (1) CA2885100C (fr)
DE (1) DE102012020419A1 (fr)
DK (1) DK2844567T3 (fr)
ES (1) ES2551600T3 (fr)
PL (1) PL2844567T3 (fr)
WO (1) WO2014060124A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015118732A1 (de) * 2015-11-02 2017-05-04 Espera-Werke Gmbh Vorrichtung und Verfahren zum Bedrucken von Etiketten mittels Thermodruck
ES2988930T3 (es) * 2017-04-20 2024-11-22 Actega North America Tech Inc Sistemas de aplicación de etiquetas
CN112384371B (zh) 2018-07-02 2022-08-05 阿克特加北美技术股份有限公司 用于对基材进行装饰的系统和方法
TWI709519B (zh) * 2020-01-22 2020-11-11 鴻勁精密股份有限公司 具換帶單元之測試設備及換帶方法
DE202024106054U1 (de) * 2024-10-22 2026-02-16 Krones Aktiengesellschaft Vorrichtung zum Aufwickeln eines Etikettenträgerbandes

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JPS5834380B2 (ja) 1974-11-13 1983-07-26 三菱重工業株式会社 マキトリマタハ マキモドシホウホウ
GB2012717B (en) 1978-01-23 1982-05-19 B & J Mfg Co Method of applying labels label applying apparatus and die cutter therefor
US4181555A (en) * 1978-02-07 1980-01-01 B & H Manufacturing Company, Inc. Labeling apparatus and method for continuously severing labels from continuous label stock and applying the severed labels to containers
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JPH05170238A (ja) * 1991-02-07 1993-07-09 Kirin Brewery Co Ltd ラベル貼り装置
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JP2597864Y2 (ja) * 1993-10-18 1999-07-19 株式会社サトー 帯状体の巻取機構
JP3411110B2 (ja) * 1994-09-14 2003-05-26 株式会社サトー 剥離台紙の巻取装置
FR2770502B1 (fr) * 1997-11-03 2000-01-28 Ier Dispositif pour enrouler un ruban et equipement d'impression pourvu de ce dispositif
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JP3686306B2 (ja) * 2000-04-20 2005-08-24 リンテック株式会社 剥離材回収装置
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DE102007034698B4 (de) 2007-07-16 2009-04-09 Bizerba Gmbh & Co. Kg Etikettiervorrichtung und Verfahren zur Etikettierung von Gegenständen
JP2010023964A (ja) * 2008-07-17 2010-02-04 Takatori Corp ラベル台紙の巻き取り方法及び巻き取り装置
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Also Published As

Publication number Publication date
ES2551600T3 (es) 2015-11-20
CA2885100C (fr) 2016-08-02
DE102012020419A1 (de) 2014-04-24
CN104736440B (zh) 2016-11-23
PL2844567T3 (pl) 2016-03-31
CA2885100A1 (fr) 2014-04-24
US20150298846A1 (en) 2015-10-22
DK2844567T3 (en) 2015-12-07
US9751652B2 (en) 2017-09-05
CN104736440A (zh) 2015-06-24
EP2844567B1 (fr) 2015-09-23
WO2014060124A1 (fr) 2014-04-24

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