WO2005039986A1 - Method and apparatus for application of linerless labels - Google Patents

Method and apparatus for application of linerless labels Download PDF

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Publication number
WO2005039986A1
WO2005039986A1 PCT/DK2003/000737 DK0300737W WO2005039986A1 WO 2005039986 A1 WO2005039986 A1 WO 2005039986A1 DK 0300737 W DK0300737 W DK 0300737W WO 2005039986 A1 WO2005039986 A1 WO 2005039986A1
Authority
WO
WIPO (PCT)
Prior art keywords
labels
linerless
individual
carrier
web
Prior art date
Application number
PCT/DK2003/000737
Other languages
French (fr)
Inventor
Hans Jensen
Original Assignee
Hm Labelling A/S
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 Hm Labelling A/S filed Critical Hm Labelling A/S
Priority to PCT/DK2003/000737 priority Critical patent/WO2005039986A1/en
Priority to AU2003277830A priority patent/AU2003277830A1/en
Priority to EP04762949A priority patent/EP1687207B1/en
Priority to AT04762949T priority patent/ATE393733T1/en
Priority to PCT/DK2004/000731 priority patent/WO2005039987A1/en
Priority to DE602004013459T priority patent/DE602004013459D1/en
Publication of WO2005039986A1 publication Critical patent/WO2005039986A1/en

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65CLABELLING OR TAGGING MACHINES, APPARATUS, OR PROCESSES
    • B65C11/00Manually-controlled or manually-operable label dispensers, e.g. modified for the application of labels to articles
    • B65C11/02Manually-controlled or manually-operable label dispensers, e.g. modified for the application of labels to articles having printing equipment
    • 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
    • B65C9/1803Label feeding from strips, e.g. from rolls the labels being cut from a 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
    • B65C9/08Label feeding
    • B65C9/18Label feeding from strips, e.g. from rolls
    • B65C9/1803Label feeding from strips, e.g. from rolls the labels being cut from a strip
    • B65C9/1815Label feeding from strips, e.g. from rolls the labels being cut from a strip and transferred by suction means
    • B65C9/1826Label feeding from strips, e.g. from rolls the labels being cut from a strip and transferred by suction means the suction means being a movable vacuum arm or pad

Definitions

  • the present invention relates to the field of labels that are provided without separation liners between the labels and layer of supply of labels, and rolls, especially linerless labels provided in roll form.
  • the present invention also relates to a method and an apparatus for applying linerless labels to substrates.
  • the present invention relates to a method for the application of linerless labels and of the type as indicated in the preamble of claim 1.
  • the invention furthermore relates to an apparatus for carrying out the method according to the invention and of the type as indicated in the preamble to claim 4.
  • Linerless labels which are not provided to commence - either to intermediate users or to end users - with liners over an adhesive face, referred to in the art as linerless labels, are less expensive than that of lined labels, more labels can be provided in a roll of a given diameter than conventional labels with release lines, and they are more environmentally friendly since they do not require the disposal of liners after use.
  • Linerless labels have also become increasingly more popular because of the many advantages associated therewith.
  • any type of labels - including linerless labels - are used, it also is necessary to be able to automatically print the labels in a cost- effective manner.
  • One way this can readily be accomplished is by using a thermal printer having a thermal printhead with a thermal ribbon unwind and rewind system, or a thermal printer with a direct thermal printhead.
  • conventional thermal printers are not capable of printing linerless labels, because there will be surfaces thereof which necessarily come into contact with the uncovered adhesive face of the linerless labels as the label are being fed to the printhead, during printing, or after- wards.
  • a variety of thermal printers are provided, which overcome this problem and are eminently suited for effective printing of linerless labels.
  • a linerless web from a supply roll including an interior core, e.g. of card board, with the adhesive face of the web facing downwards, - leading the linerless web passed a conventional preferably direct thermal print head,
  • the method according to the invention may with further advantages be such provided, that the final leading of said individual linerless labels to said outlet position is carried out by means of an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm, and that the final applying of said individual labels to said substrates is carried out by means of an application roller.
  • the method according to the invention may alternatively be such provided, that said individual labels in said outlet position are caught by a plate-shaped suction head on a carrier arm system by means of which said individual labels are applied onto said substrates, by way of example packings and the like.
  • the present invention furthermore relates to an apparatus for application of linerless labels onto substrates, by way of example packings and the like, comprising an unwinding system with a spring-loaded hub for a supply roll containing a linerless web and a conventional preferably direct thermal print head, which apparatus is characterized in, that said apparatus after said print head comprises a particular carrier roller in combination with a particularly provided carrier member, a stationary cutter for cutting said linerless web into individual printed labels, and an outlet position from which said individual labels may be either manually or automatically applied onto substrates, by way of example packings and the like.
  • the apparatus according to the invention may furthermore be such provided, that an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm member is provided for taken over the final leading of said individual linerless labels to said outlet position, and that the final applying of said individual labels is carried out by means of an application roller.
  • the apparatus according to the invention may be such provided, that in said outlet position is provided a plate-shaped suction head on a carrier arm system, by means of which said individual labels are caught and are applied onto said substrates, by way of example packings and the like.
  • the apparatus according to the invention may be such provided, that said particular carrier roller is made with an anti-sticking surface from a multi compound rubber material, and that said carrier surface combined with said carrier roller is made from steel and with an anti-sticking surface having saw tooth like corrugations the pointed edges of which are leading in the direction of conveyance of said individual linerless labels.
  • said stationary cutter comprises a upper stationary anvil and a lower movable V-shaped knife, and that a leading plate member is provided behind the cutter for guiding the front end of the individual labels safe to said inclined carrier surface and in between said belt conveyor and said holding down arm member.
  • said lower V-shaped knife furthermore is operating from the adhesive face of the web being provided with a preferably very thin layer of hot- melt glue in the order of some 16 - 18 g /m , which means that the knife system as a whole is only very little exposed to being dirty.
  • the apparatus according to the invention may be such provided, that in said outlet position is provided a pair of carrier arm members on which said individual labels is positioned adapted to be picked by hand and manually applied onto substrates, and that below said carrier arm members is placed a photo cell being adapted to cooperate with a mirror placed above said carrier arm members.
  • said spring-loaded hub comprises a recognizing system belonging to a steering system of the apparatus and being adapted to be able recognize an original supply roll of a linerless web being provided with an interior core, e.g. of cardboard, as said core being provided with a certain recognizable signal member such as a special metal member or possibly a socalled RFID- label.
  • RFID means Radio Frequency IDentification.
  • Fig. 1 shows a perspective view of an embodiment for a basic apparatus part of an apparatus according to the invention
  • Fig. 2 shows a perspective view of an embodiment for a label applying apparatus part for an apparatus according to the invention
  • Fig. 3 shows a perspective view of another embodiment for a label applying apparatus part for an apparatus according the invention
  • Fig. 4 shows a perspective view of a basic apparatus jf. Fig. 1 provided with a label applying apparatus part with a plate-shaped suction head for the application of labels,
  • Fig. 5 shows a perspective view of the label applying apparatus part jf. Fig. 4,
  • Fig. 6 shows a perspective view of a further embodiment for a label applying apparatus part with an outlet position provided by a pair of carrier arm members for an apparatus according the invention
  • Fig. 7 shows a perspective view of a special mounting plate member for the cutter of the apparatus according to the invention
  • Fig. 8 shows a similar view of the mounting plate member jf. Fig. 7 - seen from the opposite side thereof,
  • Fig. 9A shows a perspective view of a rear side cover plate member for the cutter
  • Fig. 9B shows a side view of the rear side cover plate member jf. Fig. 9A,
  • Fig. 10 shows a view of a label applying apparatus part jf. Fig. 2 for an apparatus according to the invention
  • Fig. 11 shows a detail view of the label applying apparatus part jf. Fig. 10,
  • Fig. 12 shows a detail side view of the print head and the cutter section - showing the path of the linerless web to be cut into individual printed linerless labels
  • Fig. 13 shows a detail view - seen from above - showing the position of the front end of the linerless web
  • Fig. 14 shows a detail view of the carrier roller in combination with the mounting plate member and the cutter - seen from the side and above - and with the print head swung backwards to show said parts
  • Fig. 15 shows a more close detail view of the carrier roller in combination with the mounting plate member and the cutter - seen from the side - showing the po- sition of the rear side cover plate member and the belt conveyor cooperating with the holding down arm member,
  • Fig. 16 shows a detail view of the front end of the linerless web on its way towards said belt conveyor and said holding down arm member, and
  • Fig. 17 shows a detail view illustrating the manner of cooperation between said belt conveyor and said holding down arm member.
  • a basic apparatus part 2 shown in Fig. 1 forms the main part of any apparatus for the applying of linerless labels according to the invention, and the basic apparatus part 2 inside a housing 3 comprises the necessary computerized control system for the printing and cutting of individual linerless labels as well as the necessary motor drives for the devices mentioned in the following.
  • the basic apparatus part 2 comprises a spring- loaded hub 4 for a supply roll 6 of a linerless web 10 (Fig. 12) being used for the forming of individual linerless labels 12 (Figs. 10 and 11) by means of a thermal print head 14 and a cutter device 16.
  • the basic apparatus part 2 have at the corners of an open end part 18 connection members 20, by means of which the basic apparatus part 2 may be connected to a label applying apparatus part 22 (Fig. 2) comprising an inclined carrier plate member 24, at the centre of which an endless belt conveyor 26 is provided for carrying out an active conveyance of an individual linerless label 12 (Figs. 10 and 12) held against the belt conveyor 26 by means of a holding down arm member 28, which above the top end of the carrier plate member 24 is pivotally connected to a shaft arm 30 projecting laterally from a housing 32 of the label applying apparatus part 22.
  • Fig. 3 shows a quite similar label applying apparatus part 34 having just a longer inclined carrier plate member 36 than that of the label applying apparatus part 22, as the label applying apparatus part 34 together with the basic apparatus part 2 is adapted for the applying of individual labels 12 having a larger length onto substrates such as packings and the like.
  • Fig. 4 shows a basic apparatus part 2 provided with an other type of label applying apparatus part 38 comprising a plate-shaped suction head 40 on a carrier arm system 42 by means of which said individual labels 12 may be applied onto said substances such as packings and the like.
  • Fig. 5 shows the label applying apparatus part 38 as a stand alone apparatus part before being connected to the basic apparatus part 2.
  • Fig. 6 shows a very simple label applying apparatus part 44 adapted to be interconnected with a basic apparatus part 2 and comprising in said outlet position a pair of carrier arm members 46 on which said individual labels successively is positioned adapted to be picked by hand and manually applied onto substrates in the form of packings or the like.
  • a photo cell 48 being adapted to cooperate with a mirror 50 placed above said carrier arm members 46.
  • Figs. 7 and 8 shows a mounting arm member 52 provided with an elongate concave hollo wness 54 adapted to take-up a side part of a particular carrier roller 56 (Figs. 14 and 15), which in combination with a particularly provided anti-sticking carrier surface 58 in the form of the top surface of said mounting arm member 52.
  • this surface 58 having saw tooth like corrugations the pointed edges of which are leading in the direction of conveyance of said individual linerless labels 12.
  • the carrier roller 56 is made with anti-sticking surface from a multi-compound rubber material.
  • a rear side cover plate member 60 for the cutting device 16 is shown in Figs. 9A and 9B.
  • This cover plate member 60 is provided with an inclined edge part 64 facing the knives of the cutter device 16.
  • said edge part 64 is of particular importance in order to be able ensure safe guidance of a front end 66 of said linerless web to said carrier plate member 24 and in between said belt conveyor 16 and said holding down arm member 28.
  • said edge part 64 has an angle of about 144° in relation to a vertical plane of the rear side of said cover plate member 60 and an angle of about 36° in relation to a horizontal plane.
  • At least the outer surface of said rear side cover plate member 60 as well as at least the outer surface of said mounting arm member 52 is coated or treated with an anti-sticking agent by way of example by using a socalled PlasmaCoat combining the excellent hardness and anti-wear of thermal spray processes with nonstick and sliding properties of fluoropolymers.
  • the label applying apparatus 22 shown in Fig. 2 is also shown in Fig. 10, where an individual linerless label 12 is shown during its way down the inclined carrier plate member 24 by means of the belt conveyor 26 and the holding down arm member 28. At the bottom of the inclined carrier plate member 24 is mounted an application roller 62 by means of which linerless labels 12 leaving the label applying apparatus 22 are finally applied to a substrates such as a packings or the like.
  • the holding down arm member 28 is made from a suitable plastic material in stead as in Fig. 10, where the same holding down arm member 28 is made from metal such as anodized aluminium.
  • the used ap- plication roller 62 has a larger width than that of the similar roller 62 of Fig. 10.
  • Fig. 12 shows the thermal print head 14 and the cutting device 16 together with the very first parts of the subsequent inclined carrier plate member 24, the endless belt conveyor 26 and the holding down arm member 28.
  • the linerless web 10 is fed under a horizontally projecting reversing roller 65 and in under the thermal print head 16, so that the front end of the linerless web 10 is positioned just in front of the cutting device 16.
  • Fig. 13 shows in principle the very same as that of Fig. 12 seen from above - and with the thermal print head 14 swung upwards/backwards, where the front end of the linerless web 10 is positioned just in front of the cutting device 16.
  • Fig. 14 shows a detail view of the carrier roller 56 in combination with the mounting plate member 52 and the cutting device 16 - seen from the side and above - and with the thermal print head 14 swung upwards/backwards to show said parts.
  • said carrier roller 56 in practice is also the driving roller operated by a suitable electric step motor for the unwinding of the linerless web 10 from the supply roll 6 and the forward movement of the linerless web 10 under the thermal print head 14 and through the cutting device 16.
  • Fig. 15 shows a more close detail view of the carrier roller 56 in combination with the mounting plate member 52 and the cutting device 16 - seen from the side - showing the position of the rear side cover plate member 60 and the belt conveyor 26 cooperat- ing with the holding down arm member 28.
  • Fig. 16 shows a detail view of the front end 66 of the linerless web 10 on its way towards said belt conveyor 26 and said holding down arm member 28, and Fig. 17 shows a detail view illustrating the manner of cooperation between said belt conveyor 26 and said holding down arm member 28 during the guidance of the front end of the linerless web 10.

Abstract

There is descried a method and an apparatus for application of linerless labels onto substrates, by way of example packings and the like, and comprising the following method steps and means for: unwinding a linerless web (10) from a supply roll (6) including an interior core, e.g. of cardboard, with the adhesive face of the web (10) facing downwards, leading the linerless web (10) passed a conventional preferably direct thermal print head (14), carrying the adhesive face of the linerless web by means of a particular carrier roller (56) in combination with a carrier member (52) having a particular profiled surface (58), cutting the linerless web into individual printed labels (12), and leading said individual labels (12) to an outlet position for either manually or automatically applying said labels onto substrates, by way of example packings.

Description

Method and Apparatus for Application of Linerless Labels
Field of the Invention The present invention relates to the field of labels that are provided without separation liners between the labels and layer of supply of labels, and rolls, especially linerless labels provided in roll form. The present invention also relates to a method and an apparatus for applying linerless labels to substrates.
More specific the present invention relates to a method for the application of linerless labels and of the type as indicated in the preamble of claim 1.
The invention furthermore relates to an apparatus for carrying out the method according to the invention and of the type as indicated in the preamble to claim 4.
Background of the Invention
Labels which are not provided to commence - either to intermediate users or to end users - with liners over an adhesive face, referred to in the art as linerless labels, are less expensive than that of lined labels, more labels can be provided in a roll of a given diameter than conventional labels with release lines, and they are more environmentally friendly since they do not require the disposal of liners after use.
Linerless labels have also become increasingly more popular because of the many advantages associated therewith. When any type of labels - including linerless labels - are used, it also is necessary to be able to automatically print the labels in a cost- effective manner. One way this can readily be accomplished is by using a thermal printer having a thermal printhead with a thermal ribbon unwind and rewind system, or a thermal printer with a direct thermal printhead. However, conventional thermal printers are not capable of printing linerless labels, because there will be surfaces thereof which necessarily come into contact with the uncovered adhesive face of the linerless labels as the label are being fed to the printhead, during printing, or after- wards. A variety of thermal printers are provided, which overcome this problem and are eminently suited for effective printing of linerless labels.
Purpose of the Invention On this background it is the purpose of the present invention to provide an improved method and apparatus for application of linerless labels onto substrates, by way of example packings and the like.
Summary of the Invention According to the invention there is provided a method for application of linerless labels onto substrates, by way of example packings and the like, and comprising the following steps:
- unwinding a linerless web from a supply roll including an interior core, e.g. of card board, with the adhesive face of the web facing downwards, - leading the linerless web passed a conventional preferably direct thermal print head,
- carrying the adhesive face of the linerless web by means of a particular carrier roller in combination with a carrier member having a particular profiled surface,
- cutting the linerless web into individual printed labels, and
- leading said individual labels to an outlet position for either manually or automati- cally applying said labels onto substrates, by way of example in the form of packings.
By means of rather simple provisions is hereby achieved an endeed improved method for successively unwinding of a linerless web, printing and cutting the web into individual linerless labels, which subsequently to the printing and forming at the very same operation may be applied onto substrates in the form of suitable packings and the like.
The method according to the invention may with further advantages be such provided, that the final leading of said individual linerless labels to said outlet position is carried out by means of an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm, and that the final applying of said individual labels to said substrates is carried out by means of an application roller. Or the method according to the invention may alternatively be such provided, that said individual labels in said outlet position are caught by a plate-shaped suction head on a carrier arm system by means of which said individual labels are applied onto said substrates, by way of example packings and the like.
As introductory mentioned the present invention furthermore relates to an apparatus for application of linerless labels onto substrates, by way of example packings and the like, comprising an unwinding system with a spring-loaded hub for a supply roll containing a linerless web and a conventional preferably direct thermal print head, which apparatus is characterized in, that said apparatus after said print head comprises a particular carrier roller in combination with a particularly provided carrier member, a stationary cutter for cutting said linerless web into individual printed labels, and an outlet position from which said individual labels may be either manually or automatically applied onto substrates, by way of example packings and the like.
The apparatus according to the invention may furthermore be such provided, that an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm member is provided for taken over the final leading of said individual linerless labels to said outlet position, and that the final applying of said individual labels is carried out by means of an application roller.
Alternatively the apparatus according to the invention may be such provided, that in said outlet position is provided a plate-shaped suction head on a carrier arm system, by means of which said individual labels are caught and are applied onto said substrates, by way of example packings and the like.
Furthermore it may be advantageously that the apparatus according to the invention may be such provided, that said particular carrier roller is made with an anti-sticking surface from a multi compound rubber material, and that said carrier surface combined with said carrier roller is made from steel and with an anti-sticking surface having saw tooth like corrugations the pointed edges of which are leading in the direction of conveyance of said individual linerless labels.. In order to ensure an optimal function of the stationary cutter the apparatus according to claim the invention may be such provided, that said stationary cutter comprises a upper stationary anvil and a lower movable V-shaped knife, and that a leading plate member is provided behind the cutter for guiding the front end of the individual labels safe to said inclined carrier surface and in between said belt conveyor and said holding down arm member. Because said lower V-shaped knife furthermore is operating from the adhesive face of the web being provided with a preferably very thin layer of hot- melt glue in the order of some 16 - 18 g /m , which means that the knife system as a whole is only very little exposed to being dirty.
In a certain and simple embodiment the apparatus according to the invention may be such provided, that in said outlet position is provided a pair of carrier arm members on which said individual labels is positioned adapted to be picked by hand and manually applied onto substrates, and that below said carrier arm members is placed a photo cell being adapted to cooperate with a mirror placed above said carrier arm members.
In order to be able to ensure optimal operation of the apparatus according to the invention, this may advantageously be such provided, that said spring-loaded hub comprises a recognizing system belonging to a steering system of the apparatus and being adapted to be able recognize an original supply roll of a linerless web being provided with an interior core, e.g. of cardboard, as said core being provided with a certain recognizable signal member such as a special metal member or possibly a socalled RFID- label. RFID means Radio Frequency IDentification.
Brief Description of the Drawings
In the following the invention is described in more detail reference being made to the accompanying drawing, in which:
Fig. 1 shows a perspective view of an embodiment for a basic apparatus part of an apparatus according to the invention,
Fig. 2 shows a perspective view of an embodiment for a label applying apparatus part for an apparatus according to the invention, Fig. 3 shows a perspective view of another embodiment for a label applying apparatus part for an apparatus according the invention,
Fig. 4 shows a perspective view of a basic apparatus jf. Fig. 1 provided with a label applying apparatus part with a plate-shaped suction head for the application of labels,
Fig. 5 shows a perspective view of the label applying apparatus part jf. Fig. 4,
Fig. 6 shows a perspective view of a further embodiment for a label applying apparatus part with an outlet position provided by a pair of carrier arm members for an apparatus according the invention,
Fig. 7 shows a perspective view of a special mounting plate member for the cutter of the apparatus according to the invention,
Fig. 8 shows a similar view of the mounting plate member jf. Fig. 7 - seen from the opposite side thereof,
Fig. 9A shows a perspective view of a rear side cover plate member for the cutter,
Fig. 9B shows a side view of the rear side cover plate member jf. Fig. 9A,
Fig. 10 shows a view of a label applying apparatus part jf. Fig. 2 for an apparatus according to the invention,
Fig. 11 shows a detail view of the label applying apparatus part jf. Fig. 10,
Fig. 12 shows a detail side view of the print head and the cutter section - showing the path of the linerless web to be cut into individual printed linerless labels, Fig. 13 shows a detail view - seen from above - showing the position of the front end of the linerless web,
Fig. 14 shows a detail view of the carrier roller in combination with the mounting plate member and the cutter - seen from the side and above - and with the print head swung backwards to show said parts,
Fig. 15 shows a more close detail view of the carrier roller in combination with the mounting plate member and the cutter - seen from the side - showing the po- sition of the rear side cover plate member and the belt conveyor cooperating with the holding down arm member,
Fig. 16 shows a detail view of the front end of the linerless web on its way towards said belt conveyor and said holding down arm member, and
Fig. 17 shows a detail view illustrating the manner of cooperation between said belt conveyor and said holding down arm member.
Detailed Description of the Invention A basic apparatus part 2 shown in Fig. 1 forms the main part of any apparatus for the applying of linerless labels according to the invention, and the basic apparatus part 2 inside a housing 3 comprises the necessary computerized control system for the printing and cutting of individual linerless labels as well as the necessary motor drives for the devices mentioned in the following. The basic apparatus part 2 comprises a spring- loaded hub 4 for a supply roll 6 of a linerless web 10 (Fig. 12) being used for the forming of individual linerless labels 12 (Figs. 10 and 11) by means of a thermal print head 14 and a cutter device 16.
The basic apparatus part 2 have at the corners of an open end part 18 connection members 20, by means of which the basic apparatus part 2 may be connected to a label applying apparatus part 22 (Fig. 2) comprising an inclined carrier plate member 24, at the centre of which an endless belt conveyor 26 is provided for carrying out an active conveyance of an individual linerless label 12 (Figs. 10 and 12) held against the belt conveyor 26 by means of a holding down arm member 28, which above the top end of the carrier plate member 24 is pivotally connected to a shaft arm 30 projecting laterally from a housing 32 of the label applying apparatus part 22.
Fig. 3 shows a quite similar label applying apparatus part 34 having just a longer inclined carrier plate member 36 than that of the label applying apparatus part 22, as the label applying apparatus part 34 together with the basic apparatus part 2 is adapted for the applying of individual labels 12 having a larger length onto substrates such as packings and the like.
Fig. 4 shows a basic apparatus part 2 provided with an other type of label applying apparatus part 38 comprising a plate-shaped suction head 40 on a carrier arm system 42 by means of which said individual labels 12 may be applied onto said substances such as packings and the like. Fig. 5 shows the label applying apparatus part 38 as a stand alone apparatus part before being connected to the basic apparatus part 2.
Fig. 6 shows a very simple label applying apparatus part 44 adapted to be interconnected with a basic apparatus part 2 and comprising in said outlet position a pair of carrier arm members 46 on which said individual labels successively is positioned adapted to be picked by hand and manually applied onto substrates in the form of packings or the like. Below said carrier arm members 46 is placed a photo cell 48 being adapted to cooperate with a mirror 50 placed above said carrier arm members 46.
Figs. 7 and 8 shows a mounting arm member 52 provided with an elongate concave hollo wness 54 adapted to take-up a side part of a particular carrier roller 56 (Figs. 14 and 15), which in combination with a particularly provided anti-sticking carrier surface 58 in the form of the top surface of said mounting arm member 52. As shown in the drawing (Figs. 7, 8 and 14) this surface 58 having saw tooth like corrugations the pointed edges of which are leading in the direction of conveyance of said individual linerless labels 12. The carrier roller 56 is made with anti-sticking surface from a multi-compound rubber material. A rear side cover plate member 60 for the cutting device 16 is shown in Figs. 9A and 9B. This cover plate member 60 is provided with an inclined edge part 64 facing the knives of the cutter device 16. In practice the actual angular configuration of said edge part 64 is of particular importance in order to be able ensure safe guidance of a front end 66 of said linerless web to said carrier plate member 24 and in between said belt conveyor 16 and said holding down arm member 28. Preferable said edge part 64 has an angle of about 144° in relation to a vertical plane of the rear side of said cover plate member 60 and an angle of about 36° in relation to a horizontal plane. Furthermore it is very important that at least the outer surface of said rear side cover plate member 60 as well as at least the outer surface of said mounting arm member 52 is coated or treated with an anti-sticking agent by way of example by using a socalled PlasmaCoat combining the excellent hardness and anti-wear of thermal spray processes with nonstick and sliding properties of fluoropolymers.
The label applying apparatus 22 shown in Fig. 2 is also shown in Fig. 10, where an individual linerless label 12 is shown during its way down the inclined carrier plate member 24 by means of the belt conveyor 26 and the holding down arm member 28. At the bottom of the inclined carrier plate member 24 is mounted an application roller 62 by means of which linerless labels 12 leaving the label applying apparatus 22 are finally applied to a substrates such as a packings or the like.
In the close-up detail view of Fig. 11 the holding down arm member 28 is made from a suitable plastic material in stead as in Fig. 10, where the same holding down arm member 28 is made from metal such as anodized aluminium. In Fig. 11 the used ap- plication roller 62 has a larger width than that of the similar roller 62 of Fig. 10.
The detail view of Fig. 12 shows the thermal print head 14 and the cutting device 16 together with the very first parts of the subsequent inclined carrier plate member 24, the endless belt conveyor 26 and the holding down arm member 28. From the supply roll 6 (not shown) the linerless web 10 is fed under a horizontally projecting reversing roller 65 and in under the thermal print head 16, so that the front end of the linerless web 10 is positioned just in front of the cutting device 16. Fig. 13 shows in principle the very same as that of Fig. 12 seen from above - and with the thermal print head 14 swung upwards/backwards, where the front end of the linerless web 10 is positioned just in front of the cutting device 16.
Fig. 14 shows a detail view of the carrier roller 56 in combination with the mounting plate member 52 and the cutting device 16 - seen from the side and above - and with the thermal print head 14 swung upwards/backwards to show said parts. It should be mentioned, that said carrier roller 56 in practice is also the driving roller operated by a suitable electric step motor for the unwinding of the linerless web 10 from the supply roll 6 and the forward movement of the linerless web 10 under the thermal print head 14 and through the cutting device 16.
Fig. 15 shows a more close detail view of the carrier roller 56 in combination with the mounting plate member 52 and the cutting device 16 - seen from the side - showing the position of the rear side cover plate member 60 and the belt conveyor 26 cooperat- ing with the holding down arm member 28.
Fig. 16 shows a detail view of the front end 66 of the linerless web 10 on its way towards said belt conveyor 26 and said holding down arm member 28, and Fig. 17 shows a detail view illustrating the manner of cooperation between said belt conveyor 26 and said holding down arm member 28 during the guidance of the front end of the linerless web 10.

Claims

CLAIMS 1. A method for application of linerless labels onto substrates, by way of example packings and the like, and comprising the following steps: - unwinding a linerless web from a supply roll including an interior core, e.g. of card board, with the adhesive face of the web facing downwards, - leading the linerless web passed a conventional preferably direct thermal print head, - carrying the adhesive face of the linerless web by means of a particular carrier roller in combination with a carrier member having a particular profiled surface, - cutting the linerless web into individual printed labels, and - leading said individual labels to an outlet position for either manually or automatically applying said labels onto substrates, by way of example packings.
2. A method according to claim 1, c h a r a c t e r i z e d in, that the final leading of said individual linerless labels to said outlet position is carried out by means of an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm member, and that the final applying of said individual labels to said substrates is carried out by means of an application roller.
3. A method according to claim 1, c h a r a c t e r i z e d in, that said individual labels in said outlet position are caught by a plate-shaped suction head on a carrier arm system by means of which said individual labels are applied onto said substrates, by way of example in the form of packings and the like.
4. An apparatus for application of linerless labels onto substrates, by way of example packings and the like, comprising an unwinding system with a spring-loaded hub for a supply roll containing a linerless web and a conventional preferably direct thermal print head, c h a r a c t e r iz e d in that said apparatus after said print head comprises ' a particular carrier roller in combination with a particularly provided carrier member, a stationary cutter for cutting said linerless web into individual printed labels, and an outlet position from which said individual labels may be either manually or automatically applied onto substrates, by way of example in the form of packings and the like.
5. An apparatus according to claims 4, characterized in that an inclined carrier plate member comprising a particular belt conveyor in combination with an upper holding down arm member is provided for taken over the final leading of said individual linerless labels to said outlet position, and that the final applying of said individual labels is carried out by means of an application roller.
6. An apparatus according to claims 4, c h a r a c t e r i z e d in, that in said outlet position is provided a plate-shaped suction head on a carrier arm system, by means of which said individual labels are caught and are applied onto said substrates, by way of example packings and the like.
7. An apparatus according to claims 4, characterized in, that said particular carrier roller is made with an anti-sticking surface from a multi compound rubber material, and that said carrier surface combined with said carrier roller is made from steel and with an anti-sticking surface having saw tooth like corrugations the pointed edges of which are leading in the direction of conveyance of said individual linerless labels..
8. An apparatus according to claims 4, characterized in, that said stationary cutter comprises a stationary upper anvil and a movable lower V-shaped knife, and that a leading plate member is provided behind the cutter for guiding the front end of said individual labels safely to said inclined carrier surface and in between said belt conveyor belt and said holding down arm member.
9. An apparatus according to claims 4, characterized in that in said outlet posi- tion is provided a pair of carrier arm members on which said individual labels is positioned adapted to be picked by hand and manually applied onto substrates, and that below said carrier arm members is placed a photo cell being adapted to cooperate with a mirror placed above said carrier arm members.
10. An apparatus according to claims 4, characterized m, that said spring- loaded hub comprises a recognizing system belonging to a steering system of the apparatus being adapted to be able recognize an original supply roll of a linerless web being provided with an interior core, e.g. of cardboard, as said core being provided with a certain recognizable signal member such as a special metal member or possibly a socalled RFID-label.
PCT/DK2003/000737 2003-10-29 2003-10-29 Method and apparatus for application of linerless labels WO2005039986A1 (en)

Priority Applications (6)

Application Number Priority Date Filing Date Title
PCT/DK2003/000737 WO2005039986A1 (en) 2003-10-29 2003-10-29 Method and apparatus for application of linerless labels
AU2003277830A AU2003277830A1 (en) 2003-10-29 2003-10-29 Method and apparatus for application of linerless labels
EP04762949A EP1687207B1 (en) 2003-10-29 2004-10-23 Method and apparatus for application of linerless labels
AT04762949T ATE393733T1 (en) 2003-10-29 2004-10-23 METHOD AND APPARATUS FOR APPLYING CARRIER-LESS LABELS
PCT/DK2004/000731 WO2005039987A1 (en) 2003-10-29 2004-10-23 Method and apparatus for application of linerless labels
DE602004013459T DE602004013459D1 (en) 2003-10-29 2004-10-23 METHOD AND DEVICE FOR ATTACHING CARRIER BANDLESS LABELS

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
PCT/DK2003/000737 WO2005039986A1 (en) 2003-10-29 2003-10-29 Method and apparatus for application of linerless labels

Publications (1)

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WO2005039986A1 true WO2005039986A1 (en) 2005-05-06

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PCT/DK2003/000737 WO2005039986A1 (en) 2003-10-29 2003-10-29 Method and apparatus for application of linerless labels
PCT/DK2004/000731 WO2005039987A1 (en) 2003-10-29 2004-10-23 Method and apparatus for application of linerless labels

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PCT/DK2004/000731 WO2005039987A1 (en) 2003-10-29 2004-10-23 Method and apparatus for application of linerless labels

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EP (1) EP1687207B1 (en)
AT (1) ATE393733T1 (en)
AU (1) AU2003277830A1 (en)
DE (1) DE602004013459D1 (en)
WO (2) WO2005039986A1 (en)

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Publication number Priority date Publication date Assignee Title
DK2476623T3 (en) 2011-01-18 2015-09-07 Hm Systems As An apparatus for applying labels without a liner
DE102011007575A1 (en) 2011-04-18 2012-10-18 Krones Aktiengesellschaft Labeling machine used for labeling container e.g. glass or plastic bottle, has rotating conveyor belt that is oriented horizontally with respect to print head that prints label in specific color
ITVR20120006A1 (en) * 2012-01-13 2013-07-14 Packlab S R L MACHINE LABELING BY APPLICATOR BUFFER FOR LINERLESS LABELS
ES2612551B2 (en) * 2017-01-04 2018-08-23 Orbital Gestión, S.L. LABEL MACHINE WITH MICROCHIP AND PROCEDURE FOR USING THE SAME
CN109094919B (en) * 2018-09-03 2020-09-29 靖江佳仁半导体科技有限公司 Wafer labeling equipment for integrated circuit
WO2023209361A1 (en) * 2022-04-26 2023-11-02 Marel Limited Labelling apparatus and method for labelling

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US4784714A (en) * 1986-02-10 1988-11-15 Ricoh Electronics, Inc. Linerless thermal label printer and applicator
EP0577241A2 (en) * 1992-07-01 1994-01-05 Moore Business Forms, Inc. Method and apparatus for handling linerless label material
US5497701A (en) * 1994-05-16 1996-03-12 Datasouth Computer Corporation Method and apparatus for printing linerless media having an adhesive backing
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US20030192639A1 (en) * 2002-04-12 2003-10-16 3M Innovative Properties Company Apparatus for printing and applying tape and methods of printing and applying tape

Also Published As

Publication number Publication date
EP1687207A1 (en) 2006-08-09
DE602004013459D1 (en) 2008-06-12
ATE393733T1 (en) 2008-05-15
EP1687207B1 (en) 2008-04-30
AU2003277830A1 (en) 2005-05-11
WO2005039987A1 (en) 2005-05-06

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