EP2567903A1 - Dispositif d'étiquetage - Google Patents

Dispositif d'étiquetage Download PDF

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Publication number
EP2567903A1
EP2567903A1 EP12174073A EP12174073A EP2567903A1 EP 2567903 A1 EP2567903 A1 EP 2567903A1 EP 12174073 A EP12174073 A EP 12174073A EP 12174073 A EP12174073 A EP 12174073A EP 2567903 A1 EP2567903 A1 EP 2567903A1
Authority
EP
European Patent Office
Prior art keywords
bearing element
rotatable
labeling device
pallet
bearing
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
EP12174073A
Other languages
German (de)
English (en)
Other versions
EP2567903B1 (fr
Inventor
Georg Gertlowski
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
Original Assignee
Krones AG
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 Krones AG filed Critical Krones AG
Publication of EP2567903A1 publication Critical patent/EP2567903A1/fr
Application granted granted Critical
Publication of EP2567903B1 publication Critical patent/EP2567903B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • B65C9/12Removing separate labels from stacks
    • B65C9/16Removing separate labels from stacks by wetting 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
    • B65C9/20Gluing the labels or articles
    • B65C9/22Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating
    • B65C9/2247Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating using liquid rollers or bands
    • B65C9/2256Applying the liquid on the label
    • 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
    • B65C9/20Gluing the labels or articles
    • B65C9/22Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating
    • B65C9/2273Gluing the labels or articles by wetting, e.g. by applying liquid glue or a liquid to a dry glue coating using wipers, pallets or segments
    • B65C9/2282Applying the liquid on the label
    • 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
    • B65C2009/0071Details of glueing devices
    • B65C2009/0075Constructional details of glueing rollers

Definitions

  • the invention relates to a labeling device with the features of the preamble of claim 1.
  • containers are provided with labels.
  • labeling devices are usually carried out with at least one element rotatable about an axis with two releasably mounted ends, such as a glue roller or a pallet shaft.
  • a glue film is usually applied to a pallet shaft with a glue roller.
  • a label is removed from a label stock and then the label is removed by a gripping mechanism and applied to a container.
  • the glue roller and the pallet shaft are driven by drive elements such as a servo motor with a gearbox. Due to the variety of forms of containers and labels often a conversion of the glue roller and / or the pallet shaft is required.
  • the pallet shafts are usually adapted to the label form.
  • the one end of the rotatable element is usually made cylindrical and cooperates with a bearing element with a corresponding, cylindrical outer surface as a plain bearing.
  • the other end of the rotatable element has a bearing with a detachable connection to a drive element, which is usually designed as a polygonal coupling sleeve.
  • the bearing element is separated from the end of the rotatable element and removed the rotatable element from the labeling device.
  • the object of the invention is to provide a labeling device that allows a more precise labeling.
  • the invention solves this problem in a labeling device having the features of the preamble of claim 1 with the features of the characterizing part, according to which a feed device is provided, via which a bearing element for exerting a force on one end of the rotatable element for centering is adjustable.
  • the rotatable element By providing the advancing device by means of which the bearing element is adjustable to exert a force on the end of the rotatable element for centering, the rotatable element can be centered relative to the axis and a precise rotation of the rotatable element can be achieved.
  • the reliability of the labeling process can be increased and / or the rejects reduced by incorrect labeling because the axis of the rotatable element can rotate without lateral play.
  • one or more labels can be applied to one or more containers with the labeling device.
  • the containers may be beverage containers, for example bottles or cans.
  • the labels may in particular be labels which are applied with an adhesive.
  • the labels may in particular be blanks made of paper or plastic, which in particular comprise a print which designates, describes and / or advertises the contents of the container.
  • the rotatable about an axis element may serve to receive or transport labeling elements that are needed for the labeling or support this.
  • the labeling elements may in particular be an adhesive or at least one label.
  • the adhesive may in particular be cold glue and / or hot glue.
  • the labeling element may be a solvent.
  • the rotatable element may comprise or be a glue roller or a pallet shaft, in particular the pallet shaft may comprise a pallet element.
  • the adhesive and / or solvent can be applied to the pallet element by means of the glue roller.
  • a label can be transported by the pallet element, for example from a label stock to a gripping mechanism.
  • the axis may be an axis of rotation about which the rotatable element is rotated, in particular the axis may be arranged vertically.
  • Rotatable may mean that the rotatable element is rotatable in particular by a range between 2 ° and 180 ° or in particular between 30 ° and 120 °.
  • the rotatable element for a respective operating mode of the labeling device can be manually and / or automatically replaceable, added or removable.
  • Operating modes may be, for example, labeling operations for different containers.
  • the bearing element may comprise a material having a Vickers hardness greater than 570 HV or a Rockwell hardness greater than 54 HRC, and may be made of ceramic and / or a cemented carbide such as iron, steel or hardened steel.
  • the force exerted by the bearing element on the end of the rotatable element may have at least one force component in the direction of the axis.
  • the bearing element may have an outer surface which comprises at least one oblique and / or curved portion.
  • this shape of the outer surface can be effected by the force acting on the end of the rotatable member, a centering of the rotatable member, so that the rotational movement of the rotatable member takes place about a desired axis of rotation.
  • a force component can be generated by the bearing element on the rotatable element by the inclined and / or curved sections, which stabilizes the rotatable element, in particular in the radial direction.
  • an oblique and / or curved portion can herein be referred to a portion which occupies an angle greater than 0 ° and less than 180 ° to the axis.
  • the outer surface of the bearing element may have the shape of the lateral surface of a pyramid or a truncated pyramid.
  • the outer surface can be at least partially represented by a revolvable profile curve, wherein the profile curve is at least in a section not parallel and not perpendicular to the axis.
  • the outer surface can be at least partially represented by a revolvable profile curve, wherein at least a portion of the profile curve with the axis occupies an intermediate angle in the range greater than 0 ° and less than 90 °.
  • At least partially representable by a revolvable profile curve can mean that the profile curve is revolved by at least one angular range, preferably by 360 °, in particular in a range of 90 ° to 150 °, in particular in a range of 30 ° to 70 °. Due to this shape of the outer surface, the centering can be effected even with occurring wear of the bearing element and / or the rotatable element.
  • the profile curve may comprise at least one line, circle, ellipse and / or hyperbola segment.
  • the production of the outer surface can be simplified.
  • the outer surface may have a partial region in the form of a spherical surface or an ellipsoidal surface.
  • the bearing element may be at least partially conical.
  • the shape of the outer surface may include the lateral surface of a cone or a truncated cone. As a result, the outer surface can be retained similar to a possible wear.
  • the outer surface can converge to a peak.
  • the bearing element may comprise or be a centering tip.
  • the outer surface can be made compact.
  • the outer surface may at least partially establish a connection between the element rotatable about an axis and the bearing element.
  • this compound can be implemented directly and / or detachably, in particular non-destructively detachable.
  • the rotatable element may comprise a material having a Vickers hardness greater than 570 HV or a Rockwell hardness greater than 54 HRC and may be made of ceramic and / or a cemented carbide such as iron, steel or hardened steel.
  • the material of the rotatable element and the material of the bearing element may be different in particular in the region of the outer surfaces and in particular have different degrees of hardness. This can be effected that only one of the two elements undergoes significant wear. This allows a better storage can be achieved.
  • the bearing element can be made stationary. Fixed may mean that the bearing element can not rotate with respect to the feed device.
  • the connection between the rotatable element and the bearing element can be made rotatable.
  • the connection between the rotatable member and the bearing member may be made non-rotatable and the rotatable member may include at least one bearing permitting rotation of the rotatable member therein.
  • the delivery device may comprise a receiving element on which the bearing element is rotatably mounted.
  • the connection between the bearing element and the receiving element may be designed with at least one roller bearing, which in particular receives the radial and / or axial forces and / or allows a rotational or pivoting movement. As a result, the wear in the region of the outer surface of the bearing element is reduced.
  • the bearing element can be mechanically, pneumatically, hydraulically and / or electrically adjustable with the feed device.
  • the position of the bearing element adjustable be.
  • the position can be adjustable relative to a carrier element and / or pallet carrier.
  • the position of the bearing element may be adjustable to adjust a defined force in the direction of the axis on the rotatable element and / or compensate for differences in length of the element rotatable about an axis.
  • Pneumatically or hydraulically adjustable may mean that the feed device comprises a single-acting cylinder with a spring or a double-acting cylinder.
  • the bearing element for removing the rotatable element in the direction of the axis can be adjustable and / or the bearing element can be arranged pivotable about an axis.
  • the bearing element may in particular be adjustable in order to release the connection between the rotatable element and the bearing element, for example, so that the rotatable element for the respective operating mode of the labeling device manually and / or automatically replaceable, addable or removable.
  • a plurality of bearing elements can be arranged on the carrier element and / or the pallet shaft carrier, wherein in particular a plurality of bearing elements can be adjusted together via the carrier element and / or the pallet carrier.
  • the outer surface and a force introduction end of the rotatable element may be formed correspondingly such that a positive and / or frictional connection can be produced.
  • the end of the rotatable element on which the bearing element exerts the force may be a force introduction end. Due to the positive and / or positive connection, the rotatable element can be positioned with respect to an axle and / or a bearing.
  • the other end of the rotatable element may comprise a connecting element to a drive element, in particular wherein the connecting element comprises a Hirth toothing.
  • the other end of the rotatable element may be opposite to the force introduction end.
  • the connecting element may comprise a releasable coupling, a spur gear coupling and / or a plan serration.
  • the toothing of the connecting element can be arranged on a conical base surface, wherein in particular the inner edge of the conical base surface is arranged vertically higher during operation of the labeling device than the outer edge of the conical base surface. This allows a better resistance to contamination can be achieved.
  • the connecting element may be detachable and in particular comprise two connecting halves, wherein in particular a first connecting half is associated with or connected to the rotatable element and a second connecting half is the driving element.
  • the drive element in the region of the connecting element may have a seal, wherein in particular the seal the penetration of Adhesive reduced in the interior of the rotatable element.
  • the connecting element may be such that the force which is exerted by the bearing element on the end of the rotatable element, a positive and / or frictional connection between two connecting halves of the connecting element causes.
  • the drive element may comprise at least one stepper motor or at least one servomotor.
  • the drive element may comprise at least one transmission.
  • the connecting element may comprise at least one positioning element, which allows a positive and / or positive connection in exactly one arrangement, in particular an angular position between the two connecting halves.
  • this positioning element may be at least one individual tooth, positioning nose or feather key.
  • the positioning element may in particular comprise or correspond to an irregular arrangement of teeth of the spur gear coupling and / or the Hirth gear teeth.
  • the connecting element may comprise at least one axial securing which secures the rotatable element in its axial position.
  • the axial securing may in particular comprise a magnetic and / or ferromagnetic element.
  • the rotatable element can be secured or fixed by the axial securing in its desired position when the connection between the rotatable element and the bearing element is released.
  • the invention also provides a beverage processing system comprising a labeling device as described above and a transport device for containers, in particular beverage containers.
  • the transport device and the labeling device can be arranged such that a gripping mechanism of the labeling device can attach the adhesives coated labels on containers.
  • the labeling device may in particular comprise one or more of the features described above.
  • the beverage processing plant may be, for example, a beverage bottling plant.
  • FIG. 1 illustrates a labeling device in plan view for explaining the basic structure. Shown is a support device 7 on which a glue roller 1 with a glue scraper 5, a pallet carousel 3 with a plurality of pallet shafts 30, a label stock 8 and a gripping mechanism 9 are arranged.
  • glue scraper 5 glue is applied uniformly thick on the rotating glue roller 1.
  • the pallet carousel 3 rotates with a plurality of pallet shafts 30, each comprising a shaft 35 and a pallet member 37 with a pallet surface 38.
  • the glue is picked up by a pallet shaft 30 which rotates relative to the pallet carousel 3 to evenly wet the entire pallet surface 38 with glue.
  • a label 81 is removed from the label stock 8 with a rolling movement of the pallet shaft 30. When removed, the label adheres to the glued pallet surface 38.
  • the pallet shaft 30 further transports the label 81 to a gripping mechanism 9 which removes the glued label 81 from the pallet shaft 30 and attaches it to a container 91.
  • FIG. 2 now shows a labeling device according to the invention in a larger detail in a side view.
  • a rotating glue roller 1 on which a glue supply and with the help of the glue scraper 5 a uniform glue film is applied.
  • the glue film is transferred to a pallet shaft 30, which is arranged in a pallet carousel and, after a rotation, removes a label 81 from a label stock 8.
  • the glue roller 1 At the upper end of the glue roller 1 there is a bearing element 12 designed as a centering tip, which bearing element is rotatably mounted in a feed device and can be displaced with it along the vertical axis A. Via a drive unit 10, the glue roller 1 is driven at the lower end via a releasable connecting element 15. Via the feed device 13, a force can be exerted downward on the bearing element 12, so that the glue roller 1 is clamped and centered between the connecting element 15 and the bearing element 12.
  • the pallet carousel 3 comprises a pallet rotary shaft 31, an upper pallet shaft carrier 32 and a lower pallet shaft carrier 33, which is connected to a drive unit 29.
  • the pallet carousel 3 comprises, in particular, a plurality of pallet shafts 30, each comprising a shaft 35 and a pallet element 37.
  • a bearing element 36 At the upper end of each pallet shaft 30 there is a bearing element 36, which is designed as a centering tip and is picked up by a feed device 43.
  • a releasable connecting element 34 is attached to a drive unit 29.
  • the bearing element 36 is rotatably mounted in the feed device 43 and can be adjusted by this vertically in the direction of the axis C and acted upon by a force.
  • the pallet shaft 30 is clamped by the applied force between the bearing member 36 and the connecting member 34 and centered on the axis C.
  • the pallet shafts 30 can rotate relative to the pallet shaft carriers 32, 33 in order to allow a rolling movement of the pallet elements 37.
  • This is controlled by the drive unit 29, for example via a control cam.
  • the drive unit 29 can additionally control the rotational movement of the entire pallet carousel 3 about the axis B.
  • Both support elements 70, 71 are firmly connected to one another via a plurality of support columns 72.
  • the carrier device 7 comprises the carrier elements 70, 71 and the carrier columns 72.
  • the delivery device 13 is connected to the upper carrier element 71 and the drive unit 10 is connected to the lower carrier element 70 via the drive holder 16.
  • the feed device 13 and the drive holder 16 can be adjusted horizontally with the adjusting screws 25 so that the distance a between the pallet element 37 and the glue roller 1 can be accurately adjusted to 0.01 mm in order to allow reliable labeling.
  • FIG. 3 shows a side view in partial cutaway view of a labeling device according to the invention.
  • a carrier element 71 a lower carrier element 70, a glue roller 1 rotatable about an axis A and a pallet carousel 3 rotatable about an axis B with pallet shafts 30 rotatably mounted about the axes C.
  • the upper support member 71 and the lower support member 70 are fixedly connected to each other (not shown).
  • the glue roller comprises a cylindrical roller 11, a first connecting half 18 and an upper counter bearing 20 with an abutment surface 22.
  • the abutment 20 has a connection to a bearing element 12 via the outer surface 21 and the abutment surface 22, which are designed to be complementary conical surfaces and form a traction.
  • the counter-bearing 20 With the conical outer surface 21 and the force of the feed device 13, the counter-bearing 20 is centered with respect to the axis of the bearing element 12.
  • an occurring wear of the outer surface 21 or the counter surface 22 can be compensated and thus the period be extended, after which the glue roller 1 would have to be repaired or replaced due to wear.
  • the feed device 13 can be adjustable, for example, mechanically, pneumatically, hydraulically or electrically in the direction of the axis A.
  • Pneumatically is understood to mean a "single-acting cylinder with compression spring” or, more advantageously, a “double-acting cylinder”.
  • the feed device 13 comprises a receiving element 14, in which the bearing element 12 is rotatably mounted so that it can run with the glue roller 1.
  • the receiving element 14 in this case comprises a plurality of ball bearings, which receive both axial and radial forces and at the same time allow a rotational movement of the bearing element 12 about the axis A.
  • the axial force of the feed device is transmitted via the already mentioned ball bearings from the fixed receiving element 14 to the follower bearing element 12.
  • FIG. 3 the lower connecting element 15 to a drive unit 10, a seal 19 and two connecting halves 17, 18 have the Hirth teeth, which can be positively joined together.
  • the seal 19 prevents the penetration of glue into the inner region of the glue roller 1.
  • the connecting element 15 is connected to the hub of a drive unit 10.
  • the glue roller 1 can be replaced when changing to another type of glue or another product.
  • the bearing element 12 is moved so far from the feed device 13 up that the glue roller 1 is completely released. Then this can be tilted and removed laterally.
  • the connecting element 15 is thereby separated. Subsequently, another type of glue roller 1 is used and the feed device 13 is moved so far down until the glue roller 1 is clamped and centered with a force between the bearing element 12 and the connecting half 17.
  • the drive unit 10 may include, for example, a servo motor and a transmission which applies the force to the hub of the drive unit 10.
  • the drive unit 10 is connected via a drive holder 16 with the lower carrier plate 70.
  • the pallet carousel 3 comprises a pallet rotary shaft 31, an upper pallet shaft support 32, a plurality of feeders 43 with the receiving units 44 and rotatably mounted therein bearing elements 36, a plurality of connecting halves 40, a lower pallet shaft 33 and a drive unit 29.
  • a plurality of pallet shafts 30 are rotatably arranged each comprising a shaft 35 with an abutment surface 41, a connecting half 39 and a pallet element 37 with a pallet surface 38.
  • each feed device 43 clamps a pallet shaft 30 between the bearing elements 36 and the connecting half 40. In this case, the feed device 43 exerts a force in the direction of the axis C down on the bearing element 36.
  • the outer surface 42 of the bearing element 36 is designed in the example as a conical surface.
  • the mating surface 41 also has a similar, conical surface and forms a frictional connection with the outer surface 42.
  • the feed device 43 can be adjustable, for example, mechanically, pneumatically, hydraulically or electrically in the direction of the axis C.
  • the feed device 43 comprises a receiving element 44, in which the bearing element 36 is rotatably mounted so that it can run with the pallet shaft 30.
  • the receiving element 44 in this case comprises a plurality of ball bearings, which receive both axial and radial forces and at the same time allow a rotational movement of the bearing element 36 about the axis C.
  • the axial force of the delivery device is over the already mentioned ball bearing from the fixed receiving element 44 transmitted to the follower bearing element 36.
  • the feed devices 43 can not be adjusted individually, but the upper pallet shaft carrier is adjusted vertically with a central feed device 45. Thus forces can be exerted equally on all bearing elements 36 via a single mechanism.
  • the connecting elements 34 comprise the connecting halves 39, 40, which are designed with a Hirth toothing with irregular teeth. Thereby, the connecting half 39 is centered with respect to the lower connecting half 40. Due to the Hirth serration with irregular teeth as the positioning element, it is ensured that each pallet shaft 30 has the intended angle of rotation relative to the drive unit 29 and can not be inserted into the labeling device in a twisted manner.
  • the pallet shafts 30 can be replaced when changing to another product.
  • the bearing element 36 is moved by the feed device 43, 45 so far up that the pallet shaft 30 is completely released. Then this can be tilted and removed laterally.
  • the connecting element 34 is thereby separated. Subsequently, another type of pallet shaft 30 is used and the feed device 43, 45 moved so far down until the pallet shaft 30 is clamped and centered with a force between the bearing member 36 and the connecting half 40.
  • the drive unit 29 may include, for example, a servo motor and a transmission which controls both the rotational movement of the pallet carousel 3, as well as the rotational movement of the pallet shafts 30 with the pallet elements 37th
  • the pallet rotary shaft 31 is received by a shaft bearing 46, wherein the shaft bearing 46 in turn is fixedly connected to the upper support member 71.
  • the feed device 13 With the screws 24, the drive bracket 16 and the screws 23, the feed device 13 can be moved horizontally. Thus, the distance a in the upper region between the cylindrical roller 11 and the pallet element surface 38 can be adjusted.
  • FIG. 4 shows an example of a delivery device 13 according to the invention in a partially sectioned illustration.
  • a pneumatic version of a delivery device 13 which can be connected via the holes 23 with a labeling device.
  • a receiving element 14 in the feed device 13 can be adjusted vertically along the axis D.
  • a cylindrical cavity 133 which is supplied via a channel 131 and a port 132 with compressed air.
  • the receiving element 14 which comprises a cylindrical piston 144 with a seal 141 and the ball bearings 142, 143. Radial forces are absorbed by the radial ball bearings 142 and axial forces are absorbed by the axial ball bearings 143, with the bearing element 12 being rotatably mounted. If the compressed air in the cavity 133 on or discharged, so the receiving element 14 moves downwards or upwards. As a result, a force can be applied to the bearing element 21 or this can be adjusted.
  • FIG. 5 shows by way of example a bearing element 36, which is designed as a centering tip in the form of a tapered outer surface 21.
  • the bearing element 36 is made of metal and thus particularly dimensionally stable. As a result of the outer surface 21 converging to form a tip made of hard metal, the bearing element 36 can be made particularly compact.
  • the bearing element 36 in FIG. 4 can, for example, as a bearing element 12.36 in FIG. 2 be used.
  • FIG. 6a shows an exemplary Hirth serration for use as a connecting element 34 between the drive unit 29 and a pallet shaft 30.
  • FIG. 5a shows the connecting halves 39,40 with the same, regular toothing.
  • FIG. 6b also shows an exemplary Hirth toothing for use as a connecting element 34 between the drive unit 29 and a pallet shaft 30, wherein both connecting halves 39,40 have two markings 47 as a positioning element, which indicates the intended angular position of both connecting halves 39,40 during manual insertion of the pallet shaft 30 ,
  • FIG. 6c shows a further exemplary Hirth toothing for use as a connecting element 34 between the drive unit 29 and the pallet shaft 30, wherein the connecting element 34 has a nose 48 as a positioning element, which allows a positive connection of the two connecting halves 39,40 only at exactly one angular position.
  • a positioning aid can be prevented in particular that the pallet shaft 30 is inserted with an unintended angular position in the labeling, which can lead to incorrect operation or damage to the labeling.
  • Figure 7a illustrates another exemplary embodiment of a Hirth serration for use as the first connecting half 39 of the connecting element 34, which has an irregular arrangement of teeth 50 as a positioning element.
  • FIG. 7b shows another exemplary connecting half 40 of a Hirth toothing, which has an irregular arrangement of teeth 49, wherein the irregular arrangement of teeth 49 a form-fitting in some areas of the teeth connection to the irregular arrangement of teeth 50 of the connecting half 39 in only one angular position received.
  • Figures 7c - 7e illustrate another exemplary Hirth serration for use as a fastener 34 with an axial lock made with two magnets 51,52. If the bearing element 36 in FIG. 3 adjusted upward and the abutment surfaces 41 released, the pallet shafts 30 would fall out of the labeling arbitrarily. The axial securing exerts a force in the direction of the axis to prevent it from falling out. However, the force can be removed during removal by a lateral tilting of the pallet shafts 30. The connection between the two connection halves 39,40 is then solved.
  • FIGS. 8a-8b show another exemplary Hirth serration for use as a connecting half 18 for a glue roller 1 in FIG FIG. 3 ,
  • a regular toothing 25 is shown, which is executed on a conical base surface.
  • the conical base surface of the toothing reduces the penetration of glue into the inner region of the glue roller 1.

Landscapes

  • Labeling Devices (AREA)
EP20120174073 2011-09-07 2012-06-28 Dispositif d'étiquetage Not-in-force EP2567903B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE201110082283 DE102011082283A1 (de) 2011-09-07 2011-09-07 Etikettiervorrichtung

Publications (2)

Publication Number Publication Date
EP2567903A1 true EP2567903A1 (fr) 2013-03-13
EP2567903B1 EP2567903B1 (fr) 2015-03-04

Family

ID=46465088

Family Applications (1)

Application Number Title Priority Date Filing Date
EP20120174073 Not-in-force EP2567903B1 (fr) 2011-09-07 2012-06-28 Dispositif d'étiquetage

Country Status (3)

Country Link
EP (1) EP2567903B1 (fr)
CN (1) CN102991786B (fr)
DE (1) DE102011082283A1 (fr)

Cited By (4)

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EP2724949A3 (fr) * 2012-10-25 2014-07-23 Krones AG Rouleau encolleur pour un dispositif d'étiquetage
EP2818426A1 (fr) * 2013-06-25 2014-12-31 Krones AG Agrégat d'étiquetage pour récipient
US9284086B2 (en) 2012-10-25 2016-03-15 Krones Ag Gluing unit
EP2610188B1 (fr) * 2011-12-30 2017-12-27 Krones AG Agrégat d'étiquetage

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DE102013212128A1 (de) * 2013-06-25 2015-01-08 Krones Ag Etikettiervorrichtung zum Aufbringen von Etiketten auf Behältern
DE102013212134A1 (de) * 2013-06-25 2015-01-08 Krones Ag Verfahren zur Einstellung der Position und/oder der Bewegungsabläufe einer Leimwalze und/oder einer Palette relativ zu einander in einem Etikettieraggregat, sowie Etikettieraggregat zur Durchführung des Verfahrens
DE202013103957U1 (de) * 2013-09-03 2014-12-04 Krones Ag Etikettiermaschine mit Servomotorantrieb
DE202013105886U1 (de) 2013-12-20 2015-03-23 Krones Ag Etikettiervorrichtung
DE202019102188U1 (de) * 2019-04-16 2020-07-23 Krones Ag Palettenkarussell für ein Etikettieraggregat zur Kaltleimetikettierung von Behältern
DE202019102186U1 (de) * 2019-04-16 2020-07-17 Krones Ag Prüfvorrichtung zum Überprüfen eines Abstands und/oder einer Achsenparallelität eines Palettenkarussells und einer Leimwalze zueinander an einem Etikettieraggregat
DE202020100408U1 (de) * 2020-01-27 2021-04-28 Krones Ag Palette für ein Palettenkarussell und Etikettiermaschine für Behälter
CN112373868B (zh) * 2020-11-02 2021-12-07 山东工商学院 一种资产管理系统
DE102022001674B4 (de) * 2022-05-12 2024-05-23 Mercedes-Benz Group AG Axialflussmaschine für ein Kraftfahrzeug, insbesondere für einen Kraftwagen
CN115285484B (zh) * 2022-08-25 2023-12-12 中建材创新科技研究院有限公司 一种石膏板防伪芯片安装装置

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DE3304191C2 (de) * 1983-02-08 1985-01-31 Krones Ag Hermann Kronseder Maschinenfabrik, 8402 Neutraubling Etikettieraggregat für Flaschen oder dgl.
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US1940011A (en) * 1933-03-27 1933-12-19 Walter W Oslund Picker mechanism
DD99336A5 (fr) * 1970-10-08 1973-08-05
DE3304191C2 (de) * 1983-02-08 1985-01-31 Krones Ag Hermann Kronseder Maschinenfabrik, 8402 Neutraubling Etikettieraggregat für Flaschen oder dgl.
DE3515675A1 (de) * 1985-05-02 1986-11-06 Hermann 8404 Wörth Kronseder Etikettieraggregat fuer flaschen oder dgl.
DE29822905U1 (de) * 1998-12-23 2000-02-24 KHS Maschinen- und Anlagenbau AG, 44143 Dortmund Leimauftragsvorrichtung für Etikettiermaschinen
DE202005007470U1 (de) * 2005-05-11 2005-07-07 Krones Ag Entnahmevorrichtung für Etiketten

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EP2610188B1 (fr) * 2011-12-30 2017-12-27 Krones AG Agrégat d'étiquetage
EP2724949A3 (fr) * 2012-10-25 2014-07-23 Krones AG Rouleau encolleur pour un dispositif d'étiquetage
US9284086B2 (en) 2012-10-25 2016-03-15 Krones Ag Gluing unit
EP2818426A1 (fr) * 2013-06-25 2014-12-31 Krones AG Agrégat d'étiquetage pour récipient

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EP2567903B1 (fr) 2015-03-04
DE102011082283A1 (de) 2013-03-07
CN102991786A (zh) 2013-03-27

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