EP2801535A2 - Dispositif d'étiquetage de récipient et de mise en place de gaines thermorétractables sur des récipients et procédé correspondant - Google Patents

Dispositif d'étiquetage de récipient et de mise en place de gaines thermorétractables sur des récipients et procédé correspondant Download PDF

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Publication number
EP2801535A2
EP2801535A2 EP14157565.4A EP14157565A EP2801535A2 EP 2801535 A2 EP2801535 A2 EP 2801535A2 EP 14157565 A EP14157565 A EP 14157565A EP 2801535 A2 EP2801535 A2 EP 2801535A2
Authority
EP
European Patent Office
Prior art keywords
containers
shrink
container
pitch
shrink sleeve
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
EP14157565.4A
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German (de)
English (en)
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EP2801535A3 (fr
EP2801535B1 (fr
Inventor
Harald Fischer
Bernd Braatz
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.)
Krones AG
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Krones AG
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Publication date
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Publication of EP2801535A2 publication Critical patent/EP2801535A2/fr
Publication of EP2801535A3 publication Critical patent/EP2801535A3/fr
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Publication of EP2801535B1 publication Critical patent/EP2801535B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C3/00Labelling other than flat surfaces
    • B65C3/06Affixing labels to short rigid containers
    • B65C3/065Affixing labels to short rigid containers by placing tubular labels around the container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C3/00Labelling other than flat surfaces
    • B65C3/06Affixing labels to short rigid containers
    • B65C3/08Affixing labels to short rigid containers to container bodies
    • B65C3/14Affixing labels to short rigid containers to container bodies the container being positioned for labelling with its centre-line vertical

Definitions

  • the present invention relates to a device according to the preamble of claim 1 and method according to the preambles of claims 13 and 14.
  • the DE 38 05 951 A1 discloses a method of applying a shrink sleeve to a closure end of a container, wherein the container and tube are conveyed substantially continuously.
  • the hose is fed from obliquely upwards, wherein the conveying direction of the hose has a component opposite to the conveying direction of the container.
  • the shrink sleeve is cut off below a mandrel over which it is folded, when the front lower end of the tube, viewed in the conveying direction of the container, is already below the upper edge of the closure end of the container.
  • the WO 2007/060705 A1 describes a device for applying wrap-around labels, which are designed as shrink labels.
  • An application head is provided with a shrink label.
  • the label is inserted in a cylindrical hollow body.
  • Parallel to the insertion of the label in the cylindrical hollow body the bottle to be labeled is also provided.
  • Label and bottle are inserted in parallel in the cylindrical hollow body. After the bottle is completely positioned in the cylindrical hollow body together with the label, warm air is blown into the hollow body, which causes the shrinkage of the label to the bottle. After the shrinking process of the label is completed, the bottle with the shrunk label is ejected by means of a piston from the cylindrical cavity.
  • US 4,325,726 describes a method and apparatus for attaching plastic labels to containers.
  • a cylindrical label is applied to a solid glass or plastic bottle.
  • the label consists of an oriented and heat shrinkable thermoplastic material and has a larger diameter than the container to which it is to be applied.
  • the label is telescoped over the container to be labeled, and as the label and container move through the shrink tunnel, the label is held in an aligned position with the container.
  • infrared energy acts on the label and the bottle, causing the label to shrink, causing the label to attach itself to the bottle.
  • the WO 2009/133440 A1 describes a method and apparatus for applying labels to containers.
  • the bottle provided with the label loose is placed in a tight container and stands on a floor that closes the container.
  • heating means are provided which generate the heat required for the shrinking process of the label.
  • the pressure in the chamber can be reduced by means of a pump.
  • the EP 2 287 080 A2 discloses a method and apparatus for labeling containers of different types of labels, wherein at least two labeling machines designed as a rotary type are provided. At least one type of label can be processed with each of the at least two labeling machines, and the label types that can be processed with the at least two labeling machines differ.
  • a controller can control the device such that the containers to be labeled are fed to the at least two labeling machines as a function of the type of label to be labeled.
  • the labels formed into shrink sleeves are shot over the containers.
  • these containers pass through a shrink tunnel, in which the film of the shrink sleeves contracts under the action of heat and engages tightly and wrinkle-free on the container.
  • the object of the invention is to provide a device and method to apply a shrink sleeve or a label or a label and a shrink sleeve even at high machine power to a container, wherein for the shrink sleeve both a PET material (polyethylene terephthalate), a OPS material (oriented polystyrene) as well as a PVC material (polyvinyl chloride) is suitable.
  • a PET material polyethylene terephthalate
  • OPS material oriented polystyrene
  • PVC material polyvinyl chloride
  • the term "container” means all for the admission of any products, such as e.g. Drinks, foodstuffs, pharmaceuticals, etc. suitable containers such as vessels, bottles, cans, glasses with and without screw cap, etc. to understand.
  • the shrink sleeves also called sleeves, can be made of PET, OPS or PVC.
  • the film tube is preferably pulled over a mandrel and opened, and a plurality of blades cut off the film tube, so that a shrink sleeve in a predetermined length results, which can then be applied to a container.
  • the apparatus for labeling containers and for applying shrink sleeves to containers comprises a labeling machine having a first pitch, the labeling machine being adapted to apply labels to the containers.
  • a arranged after the labeling conveyor belt, so-called subordinate conveyor belt is designed to transport thereon container at a speed, so-called downstream speed.
  • An arranged after the labeller Einteilschnecke, so-called downstream Einteilschnecke is designed to bring the transported by the downstream conveyor belt container to a second pitch of a subsequent shrink sleeve assembly.
  • the shrink sleeve assembly is designed to transfer shrink sleeves to the containers.
  • the labeling machine can comprise at least one labeling station, each with a labeling unit and a pressing device.
  • the containers can be received in container receptacles and passed past a labeling station.
  • labels can be applied to the container and pressed by means of the pressing device to the container surface.
  • the containers are then transported by means of the downstream conveyor belt, which moves at the downstream speed.
  • the existing spacing between the containers which leave the labeling machine and which are transported on the downstream conveyor belt can be changed so that the new spacing corresponds to the second pitch of the subsequent shrink sleeve aggregate.
  • the subordinate sub-slug may also be provided so as to maintain the existing spacing between the labeled containers, if this spacing corresponds to the second pitch. That is, the downstream sub-screw is preferably designed so that their division in the last flight coincides with the second pitch of the shrink sleeve assembly.
  • the containers can thus be fed to the shrink-sleeve aggregate at a predefined distance, which is required for attaching the shrink-sleeves, via the downstream one-piece worm.
  • Shrink sleeves are shot onto the containers by means of the shrink sleeve assembly.
  • a plurality of shrink sleeve assemblies are arranged one behind the other instead of the one shrink sleeve assembly, so that a larger number of containers can be equipped with shrink sleeves.
  • a shrink sleeve aggregate machine capacity is in the range of 40000 containers per hour, with two shrink sleeve aggregates in the range of 54,000 containers per hour.
  • the plurality of shrink sleeve aggregates each have the same pitch, so that the second pitch, which is generated by the downstream Einteilschnecke, is usable for all shrink sleeve assemblies. If the pitch of the plurality of shrink sleeve assemblies are different, it can be provided that an adjustment of the pitch of the container is made before the corresponding shrink sleeve assembly.
  • the second pitch is smaller than the first pitch.
  • a further conveyor belt so-called upstream conveyor belt, which is designed to transport containers located thereon at a speed, so-called upstream speed.
  • the transport of the containers in front of the labeling machine takes place in a so-called container flow, in which the containers are transported without clearance.
  • a further Einteilschnecke so-called upstream Einteilschnecke arranged, which is designed to bring the container to the first pitch.
  • a container stream or container with a distance d1 transported on the upstream conveyor belt can be widened by the upstream one-piece worm such that a spacing d2 is created between the containers, which corresponds to the division of the subsequent labeling machine.
  • the upstream one-piece check may be designed to reduce a distance between the containers when d1> d2. That is, the upstream sub-screw is preferably designed so that their pitch coincides in the last flight with the first pitch of the labeller.
  • the labeling machine can be designed as a linear conveyor or as a carousel.
  • a linear conveyor at least one labeling station, each comprising a labeling unit, and a pressing device are preferably provided on one side of the linear conveyor.
  • the labeling unit provides labels and places them on containers, which are passed to the labeling unit. By means of the labeling device subsequent pressing device an applied label is pressed against the container.
  • at least one labeling station is preferably arranged on the outer circumference of the carousel.
  • a pass device may be arranged between the upstream one-piece screw and the downstream one-piece screw, which is designed to transport the containers between the upstream conveyor belt and the downstream conveyor belt so that the containers do not pass through the labeling machine.
  • the pass device is preferably passed through by the containers when the containers are not to be labeled by means of the labeller.
  • the labeling machine can thus be uncoupled from the container transport path, i. the labeling machine will not pass through the containers.
  • an unnecessary pass through the labeling - as no labels are to be applied by her - avoided and the containers can go directly to the shrink sleeve assembly.
  • the apparatus may include a single circuit controller for shrink sleeve deployment.
  • a single circuit controller for shrink sleeve deployment.
  • the control is thus advantageous if, for example, only a labeling by the labeling machine to be made.
  • two shrink sleeve assemblies can thus be controlled so that only every second passing container gets passed from the first shrink sleeve assembly a shrink sleeve and the other containers get transferred accordingly from the second shrink sleeve assembly a shrink sleeve.
  • the apparatus may subsequently comprise a shrink sleeve positioning device for the shrink sleeve assembly, the positioning device comprising at least two downstream speed driven transport belts adapted to engage opposite sides of containers and to transfer the shrink sleeves from an initial position to an end position.
  • the transport belts move at the same speed as the downstream transport belt, a simple transfer of the containers transported by the downstream conveyor belt into the area between the two transport belts is possible, and in addition the second separation distance generated by the downstream dividing worm is maintained.
  • the containers are thus transported by the downstream conveyor belt and additionally guided in the area between the tram sports belt laterally from the conveyor belt. If the speeds of conveyor belt and conveyor belt were different, then there would be a shift and / or overturning of the containers in the area between the conveyor belts.
  • the two conveyor belts are in a corresponding orientation, so that they are designed to spend the shrink sleeves in a desired position.
  • the orientation of the two conveyor belts is variable, for example, the height at which they run, so that they can be adapted to different containers and / or arrangements of the shrink sleeves.
  • a lowering of the shrink sleeves can be achieved by arranging the transport belts respectively by means of two deflection rollers such that the transport belts each extend in the transport direction from one greater height to a smaller height, whereby the conveyor belts are each designed to spend the applied shrink sleeves from a first height to a second, smaller height.
  • the transport belts can each extend horizontally, so that the shrink sleeves can be held at the second, smaller height.
  • the device may comprise at least one brush element which is designed to bring a shrink sleeve applied to a container into a predetermined position with respect to the container, for example to displace it, wherein the at least one brush element preferably rotates. If a shrink sleeve has been passed through the shrink sleeve assembly to a container, the at least one brush element can act on the applied shrink sleeve and the container so that by means of the brush element, the shrink sleeve can be mounted and / or held in the predetermined position on the container.
  • the shrink sleeve along the lateral surface of the container to be moved down until the shrink sleeve is arranged at a predetermined distance from the bottom surface of the container.
  • at least one such brush element is provided, when shrink sleeves, so-called full sleeves, are to be attached, which cover the entire lateral surface of the container.
  • the apparatus may subsequently comprise at least one switchable heating device to the shrink sleeve assembly, for example a hot air nozzle adapted to pre-shrink a shrink sleeve applied to a container by heating to a pre-shrink temperature for a pre-shrinkage period.
  • the pre-shrink temperature may be, for example, in a temperature range of 70 ° C to 110 ° C, ideally 80 ° C to 90 ° C, and the pre-shrunk time may be a few seconds, preferably 1 to 3 seconds.
  • the pre-shrinkage temperature and / or the pre-shrinkage period can be selected and / or adjusted manually or automatically depending on the material of the shrink sleeve and / or the transport speed of the containers in the region of the heating device. Vorschumpfung the expansion of the shrink sleeve is reduced, and there is a prefixing of the pre-shrunk shrink sleeve on the container so that they can not slip in a further transport of the container, for example, to a heating tunnel or a steam tunnel.
  • the apparatus may subsequently comprise to the shrink sleeve assembly a heating tunnel or steam tunnel adapted to shrink-shrink a shrink sleeve applied to a container by heating to a shrink-up temperature for a shrinkage period.
  • the shrink-up temperature may be, for example, in a temperature range of 70 ° C to 110 ° C, ideally 80 ° C to 90 ° C, and the Aufschrumpfzeitdauer may be a few seconds, preferably 3 to 10 seconds.
  • the shrinking temperature and / or the shrinking time can be selected and / or adjusted manually or automatically depending on the material of the shrink sleeve and / or the transport speed of the containers in the heating tunnel or the steam tunnel.
  • the shrink sleeve is shrunk onto the container by reducing the expansion of the shrink sleeve and thereby adapts to the contours of the container, so that the shrink sleeve fits smoothly against the container and is fixed.
  • the labeling machine By controlling the labeling machine can be provided whether containers which pass through the labeling machine to be labeled or not. Depending on leave the labeling then labeled or unlabeled container. The distance of these containers is changed after leaving the labeling of the first pitch, which corresponds to the labeling, to the second pitch, which corresponds to the shrink sleeve assembly, so that by means of the shrink sleeve assembly, a transfer of shrink sleeves to the container is possible.
  • individual containers may or may not be provided with a shrink sleeve.
  • the pass device allows containers that are not to be labeled by the labeling machine to pass to the shrink sleeve assembly without passing through the labeling machine.
  • the labeling machine can thus be uncoupled from the Be bachelorertransportweg, and thus an unnecessary passage through the labeling machine is avoided.
  • the containers Prior to the shrink sleeve assembly, the containers are placed at the second pitch equal to that of the shrink sleeve aggregate.
  • individual containers may or may not be provided with a shrink sleeve.
  • FIG. 1 shows a first embodiment of a device 1 for labeling and for attaching shrink sleeves on containers. 2
  • the upstream conveyor belt 3 which moves at an upstream speed
  • containers 2 are transported.
  • the upstream sub-screw 4 is preferably designed so that the division of which in the last flight corresponds to the first pitch of the labeling machine 5.
  • the labeling machine 5 can be supplied with the container 2 to be labeled at a predefined distance, which is required for undertaking the labeling, via the upstream one-piece worm 4.
  • a labeling station comprising a labeling unit 6 and a pressing device 7 is arranged on one side of the labeling machine 5.
  • the containers 2 are received in container receptacles (not shown here).
  • the container receptacles may be turntables, centering bells or the like.
  • labels can be applied to the container 2 and pressed by means of the pressing device 7 to the container 2.
  • the containers 2 are then transferred to a downstream conveyor belt 9, which moves at a downstream speed.
  • the existing spacing between the containers 2 is changed, here reduced, that the new spacing corresponds to a second pitch of a subsequent shrink sleeve assembly 10.
  • That the subordinate sub-screw 8 is preferably designed so that their pitch in the last flight corresponds to the second pitch of the shrink sleeve assembly 10.
  • Shrink sleeves are shot onto the containers 2 by means of the shrink sleeve assembly 10. After the transfer of the shrink sleeves they are brought by means of rotating brushes 11 to their intended height.
  • a pre-shrinkage of the applied shrink sleeves can be carried out before the containers 2 are transported with the pre-shrunk shrink sleeves in a heating or steam tunnel 13, in which a shrinkage of the shrink sleeves.
  • FIG. 2 shows a second embodiment of a device 14 for labeling and attaching shrink sleeves on containers 2, this second embodiment 14 of the first embodiment 1 as in FIG. 1 described in construction up to the downstream sub-screw 8 corresponds.
  • the structure differs according to the downstream one-piece worm.
  • the second embodiment of the device 14 additionally comprises a positioning device with two drivable transport belts 15, which are moved synchronously with the downstream transport belt 9, ie, with the downstream transport speed. which are arranged after a shrink sleeve assembly 16 and are provided for positioning of shrink sleeves on containers 2.
  • an applied shrink sleeve is placed in the positioning device from a first height to a second, smaller height and thus positioned on the container 2 in the position provided for the shrink sleeve is.
  • FIG. 5 a side view of such a positioning device will be described.
  • FIG. 3 shows a third embodiment of a device 21 for labeling and attaching shrink sleeves on containers 22nd
  • containers 22 are transported.
  • the containers 22 are conveyed by an upstream Einteilschnecke 24 and an inlet star 25 of a labeling machine 26, which is designed as a carousel.
  • the container flow, in which the containers 22 are transported without clearance through the upstream conveyor belt 23 to the upstream Einteilschnecke 24 is widened by the upstream Einteilschnecke 24 so that between the containers 22 a spacing is generated, the first pitch of the labeling 26th equivalent. That is, the upstream sub-screw 24 is preferably designed so that their pitch in the last flight corresponds to the first pitch of the labeling machine 26.
  • the labeling device 26 can be used to position the containers 22 to be labeled via the upstream one-piece worm 24 be fed at a predefined distance. The predefined distance is therefore necessary so that the container to be labeled 22 can be transferred to the inlet star 25 for the labeling machine 26 and thus making the labeling is possible.
  • a labeling station comprising a labeling unit 27 and a pressing device 28 is arranged on the outer circumference of the carousel.
  • the containers 22 are received in container receptacles (not shown here) and passed by the labeling station.
  • the container receptacles may be turntables, centering bells or the like.
  • labels can be applied to the container 22 and pressed by means of the pressing device 28.
  • the container 22 are then fed through an outlet star 29 to the outlet of the labeling machine 26 and a downstream conveyor belt 31, which moves at a downstream speed.
  • the existing spacing between the containers 22 is changed such that the new spacing corresponds to a second pitch of a subsequent shrink sleeve aggregate 32. That the downstream sub-section screw 30 is preferably designed so that their pitch in the last flight corresponds to the second pitch of the shrink sleeve assembly 32.
  • Shrink sleeves are shot onto the containers 22 by means of the shrink sleeve assembly 32. After the transfer of shrink sleeves they are brought by means of rotating brush 33 to its intended height.
  • a pre-shrinkage of the shrink sleeves can take place before the containers 22 are transported with the pre-shrunk shrink sleeves in a heating or steam tunnel 35, in which a shrinkage of the shrink sleeves.
  • the third embodiment also includes a pass device 43 between the upstream sub-screw 24 and the downstream sub-screw 30.
  • This pass device 43 may be used when the containers 22 are to be transported directly to the shrink sleeve assembly 32 without passing through the labeling machine.
  • FIG. 4 shows a fourth embodiment of a device 36 for labeling and attaching shrink sleeves on containers 22, this fourth embodiment 36 of the third embodiment 21 as in FIG. 3 described in the structure up to the downstream Partial screw 30 corresponds.
  • the fourth embodiment of the device 36 additionally comprises a positioning device with two drivable transport belts 37 which are moved in synchronism with the downstream transport belt 31, ie at the downstream speed and which are arranged after a shrink sleeve aggregate 38 and are provided for positioning containers 22.
  • the applied shrink sleeve is placed in the positioning device from a first height to a smaller, second height and thus positioned on the container 22 in the position corresponding to the shrink sleeve is provided.
  • FIG. 5 a side view of such a positioning device will be described.
  • FIG. 5 shows a side view of a positioning device 44 for positioning shrink sleeves 45 on containers 46.
  • An apparatus for labeling containers and for attaching shrink sleeves on containers as in the Figures 2 and 4 may comprise two transport belts 47 which act on opposite sides of the containers 46 and applied shrink sleeves 45.
  • a transport belt has been omitted, so that the containers 46 with the applied shrink sleeves 45 and the transport belt 47 located behind the containers 46 can be seen.
  • the containers 46 with the applied shrink sleeves 45 are transported by the downstream conveyor belt 48 in a transport direction 49; in FIG. 5 the containers 46 are transported from left to right.
  • the shrink sleeve 46 After applying a shrink sleeve 45 to a container 46 through the shrink sleeve assembly (not shown), the shrink sleeve 46 is at a height h1 - measured from the surface of the downstream conveyor belt 48 to the lower edge of the shrink sleeve. Due to the lateral guidance of the transport belts 47, which are driven at a speed 51 which is equal to the speed downstream transport speed 49, the shrink sleeve 45 is brought in a first region 52 of the positioning device 44 from the height h1 to a smaller height h2 and thus on the container 46 positioned in the position which is provided for the shrink sleeve 45. In a second region 53 of the positioning device 44, the shrink sleeve 45 is held at the height h2.
  • a lowering of the shrink sleeves 45 is achieved in that the transport belt 47 is arranged by means of two deflection rollers such that the transport belt 47 extends in the transport direction 49 from a greater height to a smaller height, whereby the transport belt 47 thereto is designed to spend the applied shrink sleeves from the height h1 to the smaller height h2.
  • the transport belt 47 runs horizontally, so that the shrink sleeves 45 can be held at the height h2.
  • the returning portion of the conveyor belt 47 is arranged so that it does not come into contact with the containers and / or shrink sleeves.
  • the containers 46 with the applied and positioned shrink sleeves 45 reach the heater 50, by which a pre-shrinkage of the shrink sleeves 45 is achieved, i. by heating by means of the heating device 50, the expansion of the shrink sleeve 45 is reduced.
  • a prefixing of the pre-shrunk shrink sleeves 45 is achieved.

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EP14157565.4A 2013-05-10 2014-03-04 Dispositif d'étiquetage de récipient et de mise en place de gaines thermorétractables sur des récipients et procédé correspondant Active EP2801535B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013208589.3A DE102013208589A1 (de) 2013-05-10 2013-05-10 Vorrichtung zum Etikettieren von Behältern und zum Anbringen von Schrumpfhülsen auf Behältern und Verfahren dazu

Publications (3)

Publication Number Publication Date
EP2801535A2 true EP2801535A2 (fr) 2014-11-12
EP2801535A3 EP2801535A3 (fr) 2015-01-07
EP2801535B1 EP2801535B1 (fr) 2016-07-20

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EP (1) EP2801535B1 (fr)
CN (1) CN104139898B (fr)
DE (1) DE102013208589A1 (fr)

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CN108146736A (zh) * 2018-02-09 2018-06-12 浙江荟美食品饮料有限公司 饮料喷码贴标封瓶包装自动生产线
DE202018101615U1 (de) 2018-03-22 2019-06-27 Krones Ag Vorrichtung zum Anbringen von Schrumpf-Sleeves auf Behälter

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DE102015201853A1 (de) * 2015-02-03 2016-08-04 Krones Ag Anlage zum Ausstatten von Behältern mit Etiketten und Etikettenhülsen
KR101933375B1 (ko) * 2018-01-31 2018-12-31 김종훈 용기용 수축필름의 랩핑 머신
DE102018107552A1 (de) 2018-03-29 2019-10-02 Krones Aktiengesellschaft Verfahren und Behälterbehandlungsvorrichtung zur Behandlung und/oder zur Handhabung und/oder zum Transport von Behältern
DE102018107551A1 (de) 2018-03-29 2019-10-02 Krones Aktiengesellschaft Behälterbehandlungsstation und Verfahren zur Behandlung und/oder zur Temperierung von Behältern
TWI715126B (zh) 2019-07-29 2021-01-01 谷源塑膠股份有限公司 收縮標籤的包底裝置
CN211365242U (zh) * 2019-12-02 2020-08-28 浙江李子园食品股份有限公司 自动化套标缩标机

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US4325726A (en) 1980-09-11 1982-04-20 Owens-Illinois, Inc. Double jawed shaping tool for glass vials
DE3805951A1 (de) 1988-02-25 1989-09-07 Kronseder Maschf Krones Verfahren zum aufsetzen einer schrumpfhuelse auf das verschlussende eines behaelters und zugehoerige vorrichtung
WO2007060705A1 (fr) 2005-11-23 2007-05-31 Enrico Ghini Appareil pour appliquer des etiquettes en manchon constituees d'une matiere plastique thermoretractable
WO2009133440A1 (fr) 2008-04-30 2009-11-05 Sacmi Labelling S.P.A. Appareil et procédé d’application d’étiquettes à des contenants
EP2287080A2 (fr) 2009-08-21 2011-02-23 Krones AG Dispositif et procédé d'étiquetage de récipients dotés de types d'étiquettes différents

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN108146736A (zh) * 2018-02-09 2018-06-12 浙江荟美食品饮料有限公司 饮料喷码贴标封瓶包装自动生产线
CN108146736B (zh) * 2018-02-09 2023-06-13 浙江荟美食品饮料有限公司 饮料喷码贴标封瓶包装自动生产线
DE202018101615U1 (de) 2018-03-22 2019-06-27 Krones Ag Vorrichtung zum Anbringen von Schrumpf-Sleeves auf Behälter

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DE102013208589A1 (de) 2014-11-13
EP2801535A3 (fr) 2015-01-07
CN104139898B (zh) 2017-04-12
EP2801535B1 (fr) 2016-07-20
CN104139898A (zh) 2014-11-12

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