US20010022213A1 - Labels and manufacture thereof - Google Patents
Labels and manufacture thereof Download PDFInfo
- Publication number
- US20010022213A1 US20010022213A1 US09/846,193 US84619301A US2001022213A1 US 20010022213 A1 US20010022213 A1 US 20010022213A1 US 84619301 A US84619301 A US 84619301A US 2001022213 A1 US2001022213 A1 US 2001022213A1
- Authority
- US
- United States
- Prior art keywords
- web
- succession
- labels
- self
- printed
- 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.)
- Abandoned
Links
- 238000004519 manufacturing process Methods 0.000 title abstract description 13
- 238000007639 printing Methods 0.000 claims abstract description 94
- 239000000853 adhesive Substances 0.000 claims abstract description 89
- 239000000463 material Substances 0.000 claims abstract description 72
- 238000005520 cutting process Methods 0.000 claims abstract description 68
- 238000000034 method Methods 0.000 claims description 48
- 238000003384 imaging method Methods 0.000 claims description 8
- 238000010030 laminating Methods 0.000 claims description 4
- 239000002699 waste material Substances 0.000 description 22
- 230000008569 process Effects 0.000 description 20
- 230000001070 adhesive effect Effects 0.000 description 7
- 239000011159 matrix material Substances 0.000 description 6
- 229920003023 plastic Polymers 0.000 description 5
- 239000004820 Pressure-sensitive adhesive Substances 0.000 description 4
- 239000010410 layer Substances 0.000 description 4
- 241000842962 Apoda limacodes Species 0.000 description 3
- 230000008901 benefit Effects 0.000 description 3
- 239000011248 coating agent Substances 0.000 description 3
- 238000000576 coating method Methods 0.000 description 3
- 230000001276 controlling effect Effects 0.000 description 3
- 238000001514 detection method Methods 0.000 description 3
- 238000007644 letterpress printing Methods 0.000 description 3
- 239000004033 plastic Substances 0.000 description 3
- 238000011144 upstream manufacturing Methods 0.000 description 3
- 239000002966 varnish Substances 0.000 description 3
- 230000008859 change Effects 0.000 description 2
- 238000010276 construction Methods 0.000 description 2
- 230000000875 corresponding effect Effects 0.000 description 2
- 230000008878 coupling Effects 0.000 description 2
- 238000010168 coupling process Methods 0.000 description 2
- 238000005859 coupling reaction Methods 0.000 description 2
- 239000000976 ink Substances 0.000 description 2
- 229920001296 polysiloxane Polymers 0.000 description 2
- 235000000177 Indigofera tinctoria Nutrition 0.000 description 1
- 239000012790 adhesive layer Substances 0.000 description 1
- 230000004075 alteration Effects 0.000 description 1
- 230000002596 correlated effect Effects 0.000 description 1
- 230000000694 effects Effects 0.000 description 1
- 235000013305 food Nutrition 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 229940097275 indigo Drugs 0.000 description 1
- COHYTHOBJLSHDF-UHFFFAOYSA-N indigo powder Natural products N1C2=CC=CC=C2C(=O)C1=C1C(=O)C2=CC=CC=C2N1 COHYTHOBJLSHDF-UHFFFAOYSA-N 0.000 description 1
- 238000002372 labelling Methods 0.000 description 1
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- 239000002356 single layer Substances 0.000 description 1
Images
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B31—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31D—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER, NOT PROVIDED FOR IN SUBCLASSES B31B OR B31C
- B31D1/00—Multiple-step processes for making flat articles ; Making flat articles
- B31D1/02—Multiple-step processes for making flat articles ; Making flat articles the articles being labels or tags
- B31D1/021—Making adhesive labels having a multilayered structure, e.g. provided on carrier webs
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B31—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31D—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER, NOT PROVIDED FOR IN SUBCLASSES B31B OR B31C
- B31D1/00—Multiple-step processes for making flat articles ; Making flat articles
- B31D1/02—Multiple-step processes for making flat articles ; Making flat articles the articles being labels or tags
- B31D1/022—Label folding
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B31—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER; WORKING PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER
- B31D—MAKING ARTICLES OF PAPER, CARDBOARD OR MATERIAL WORKED IN A MANNER ANALOGOUS TO PAPER, NOT PROVIDED FOR IN SUBCLASSES B31B OR B31C
- B31D1/00—Multiple-step processes for making flat articles ; Making flat articles
- B31D1/02—Multiple-step processes for making flat articles ; Making flat articles the articles being labels or tags
- B31D1/026—Cutting or perforating
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T156/00—Adhesive bonding and miscellaneous chemical manufacture
- Y10T156/10—Methods of surface bonding and/or assembly therefor
- Y10T156/1002—Methods of surface bonding and/or assembly therefor with permanent bending or reshaping or surface deformation of self sustaining lamina
- Y10T156/1051—Methods of surface bonding and/or assembly therefor with permanent bending or reshaping or surface deformation of self sustaining lamina by folding
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T156/00—Adhesive bonding and miscellaneous chemical manufacture
- Y10T156/10—Methods of surface bonding and/or assembly therefor
- Y10T156/1052—Methods of surface bonding and/or assembly therefor with cutting, punching, tearing or severing
- Y10T156/1082—Partial cutting bonded sandwich [e.g., grooving or incising]
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T156/00—Adhesive bonding and miscellaneous chemical manufacture
- Y10T156/12—Surface bonding means and/or assembly means with cutting, punching, piercing, severing or tearing
- Y10T156/1317—Means feeding plural workpieces to be joined
- Y10T156/1322—Severing before bonding or assembling of parts
- Y10T156/133—Delivering cut part to indefinite or running length web
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T156/00—Adhesive bonding and miscellaneous chemical manufacture
- Y10T156/12—Surface bonding means and/or assembly means with cutting, punching, piercing, severing or tearing
- Y10T156/1317—Means feeding plural workpieces to be joined
- Y10T156/1343—Cutting indefinite length web after assembly with discrete article
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T156/00—Adhesive bonding and miscellaneous chemical manufacture
- Y10T156/17—Surface bonding means and/or assemblymeans with work feeding or handling means
- Y10T156/1702—For plural parts or plural areas of single part
- Y10T156/1712—Indefinite or running length work
- Y10T156/1734—Means bringing articles into association with web
Definitions
- the present invention relates to a method of and an apparatus for producing self-adhesive labels and to self-adhesive labels.
- the present invention aims at least partially to satisfy these needs.
- the present invention provides a method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of: (a) digitally printing a succession of images on a web; and (b) die cutting the web to form a succession of self-adhesive labels on a length of release material.
- the present invention further provides a method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:(a) digitally printing a succession of images an a web; (b) cutting the printed web into a succession of labels; and (c) applying the succession of labels to a second web including a release material.
- the present invention still further provides apparatus for producing a succession of self-adhesive labels on a length of release backing material, the apparatus comprising a digital printing unit for printing a web with a succession of images and a die-cutting device for cutting self-adhesive labels from the web.
- the present invention further provides apparatus for producing a succession of self-adhesive labels on a length of release material, the apparatus comprising a digital printing unit for printing a succession of images an a web, a cutting device for cutting the web into a succession of labels, and label applying device for applying the labels to a web including a release material.
- the present invention yet further provides a succession of self-adhesive labels carried on a length of release material, successive labels having at least two alternating digitally printed images.
- FIG. 1 is a schematic side view of an apparatus for producing self-adhesive labels in accordance with a first embodiment of the present invention
- FIG. 2 is a plan view of self-adhesive labels carried on a length of release backing material produced in accordance with an embodiment of the invention using the apparatus of FIG. 1;
- FIG. 3 is a schematic side view of an apparatus for producing labels in accordance with a second embodiment of the present invention.
- FIG. 4 is a section on line A-A of FIG. 3;
- FIG. 5 is a section on line B-B of FIG. 3;
- FIG. 6 is a schematic side view of an apparatus for producing self-adhesive labels in accordance with a further embodiment of the present invention.
- FIG. 7 is a schematic representation of the control system of the apparatus of FIG. 6.
- FIG. 1 there is shown an apparatus, designated generally as 2 , for the manufacture of printed self-adhesive labels in accordance with a first embodiment of the present invention.
- the apparatus 2 comprises a printing unit 4 and a die-cutting and waste removal unit 6 .
- a roller 8 in the printing unit 4 is provided for mounting a supply reel 10 of labelstock material 12 to be printed
- a rewind roller 13 is provided for mounting a reel 15 of the release backing material 14 of the labelstock material 12 carrying a succession of self-adhesive labels 16 thereon
- a waste wind up roller 18 is provided for supporting a reel 19 of the waste matrix 20 , formed from the self-adhesive paper web 22 of the labelstock material 12 , which waste matrix 20 is removed from the release material 14 at the die-cutting and waste removal station 6 .
- the printing unit 4 is a digital printing apparatus which includes a plurality of printing stations in a printing engine 21 .
- the printing unit 4 also includes a drive system, including rollers 30 , 32 , 34 , 36 , 38 , 40 , 42 for controllably conveying the web of labelstock material 12 through the printing unit 4 and to the die-cutting and waste removal unit 6 .
- the printing stations 22 , 24 , 26 , 28 are digital printing stations, working preferably with a dry toner process (although optionally with a wet ink process) which typically are similar to those employed in colour photocopiers or laser printers.
- the printing process may be a direct or offset digital process.
- the printing stations 22 , 24 , 26 , 28 are controlled by a computer input 44 which, together with computer software, controls the printing engine 21 of the printing unit 4 , and the drive system so as to ensure that the desired images are printed on the web 12 .
- the computer input 44 may include computer terminals set up with commercially available publishing software.
- the printing unit 4 together with its associated computer input 44 are available in commerce from Agfa-Gevaert N.V. of Belgium under the trade name Chromapress.
- the printing stations 22 , 24 , 26 , 28 employ an electrophotographic imaging process wherein a dry toner is applied to the web 12 to be printed by a rotating drum.
- the printed image is digitised and divided into an array of pixels which permits an extremely high quality image to be produced.
- the dry toner is fused onto the paper web at a heating station 46 downstream of the printing engine 21 .
- the printing stations 22 , 24 , 26 , 28 are, unlike the printing cylinders of known flexographic, rotary letterpress and offset lithography self-adhesive label printing apparatus, seamless, i.e. there is no requirement for the printing drum to have a portion extending across its circumference which cannot be employed to print an image. This results in the significant technical advantage that the printing stations 22 , 24 , 26 , 28 can each print images having variable repeat lengths. In fact the printing stations 22 , 24 , 26 , 28 can be controlled to print an image of infinite length with an appropriate computer input.
- the apparatus 2 for producing self-adhesive labels may be employed in a first run to produce a succession of self-adhesive labels having a first repeat length and then, with an appropriate command from the computer input 44 , may then be used in a second run to produce different labels having a different repeat length, this being achieved without the requirement between the runs for make ready time to modify the printing unit as would be required in the known flexographic, web offset or rotary letterpress label printing apparatus.
- the apparatus 2 for producing labels can be employed to print different images along the length of the labelstock material 12 .
- the apparatus may be set up by appropriate commands from the computer input 44 , to print, in alternation, front and back labels 48 , 50 on the release material 14 , the front and back labels 48 , 50 being subsequently employed for labelling a product such as a bottle.
- the computer input 44 for the printing unit 4 can readily be operated so as to print continually variable information such as alpha numeric characters, bar codes or matrix codes on selected labels.
- the apparatus 2 can readily be configured to print numerically varying serial numbers on selected labels 48 .
- the apparatus shown in FIG. 1 can be employed either to print only the upper surface of the self-adhesive paper web 20 of the labelstock web 12 or alternatively both sides of the labelstock web 12 , including the release material 14 of the labelstock web 12 .
- the release material 14 may be printed on its lower surface with variable information, typically sequential numbers, codes or barcodes associated with the respective labels on the release material.
- two labelstock webs may be passed through the printing unit 4 in back-to-back configuration so that the self-adhesive paper web of each labelstock web is printed.
- the die-cutting and waste removal unit 6 is configured so as to cut and remove the waste from both webs.
- a single labelstock web having a folded configuration so as to be of double thickness with a single longitudinal fold extending along the length thereof may be passed through the apparatus 2 .
- the longitudinal fold is slit off from the web, for example at the die-cutting and waste removal section 6 , so as to produce two separate reels of printed labels.
- a labelstock web comprising two self-adhesive paper webs adhered to a common web of release material which is coated with silicone on both sides thereof could be employed.
- a coating apparatus 49 for coating the upper printed surface of the labelstock web 12 with an overprinting varnish which is curable by ultra violet light may be disposed upstream of the die-cutting and waste removal unit 6 .
- An ultra violet lamp 51 is disposed downstream of the coating apparatus 49 .
- the lamp 51 emits ultra violet (UV) radiation which cures the varnish passing thereunder.
- UV ultra violet
- a suitable UV-curable overprinting varnish is available in commerce from Coates Inks in the United Kingdom.
- FIG. 3 A further embodiment of the present invention is illustrated in FIG. 3 in which an apparatus, designated generally as 52 , for producing self-adhesive labels incorporates a printing unit 54 which is arranged to print a single paper web 56 which is then laminated to a web 58 of release material to which has been applied a layer 60 of pressure-sensitive adhesive from an adhesive applicator 62 .
- the release material web 58 may have been pre-printed, or may be simultaneously printed by a printing unit (not shown) similar to printing unit 54 .
- a reel 64 of the paper web is mounted in the printing unit 54 and is fed out by the web conveying system through a printing engine 66 of the printing unit in which desired single or multicolour images are formed on the web by an electrophotographic process employing a dry toner system in a manner similar to that described above with reference to FIG. 1.
- the web 56 may-be printed on one or both sides.
- the printing process is controlled by the computer input 68 .
- the printed web 56 then passes to a laminating station 70 comprising a pair of opposed rollers 72 , 74 at which the printed web 56 is adhered to the underlying web of release material 58 which is fed out from a reae 75 thereof and has been coated with the layer 60 of pressure-sensitive adhesive which has been applied by the adhesive applicator 62 .
- the combined printed duplex labelstock web 76 is then conveyed to a die-cutting and waste removal unit 78 which die-cuts self-adhesive labels 80 from the printed paper web 56 .
- the resultant self-adhesive labels 80 carried on the backing 58 of release material are wound into a reel 82 and the waste matrix 84 of the paper web 56 is also wound into a waste reel 86 .
- the apparatus of FIG. 3 may be employed as described hereinabove to produce single layer adhesive labels so carried on a length of release material 58 .
- This particular embodiment has an advantage over that of FIG. 1 in that only a single paper web is conveyed through the printing unit 54 , which facilitates control of the printing operation and also permits both sides of the self-adhesive labels to be printed if desired. This is advantageous when for example the label is to be applied to a transparent bottle where it is desirable for the rear surface of the label to carry a printed image.
- the apparatus of FIG. 3 may also be configured so as to manufacture multilayer labels having at least one fold line.
- a plough folding device 88 as shown in FIG. 3 which may be of a known construction.
- the plough folding device 88 is positioned between the printing unit 54 and the laminating station 70 and is adapted to introduce one or more (in the illustrated embodiment only one) longitudinal fold into the printed paper web 56 .
- the folded paper web 56 is laminated to the underlying web of release material 58 carrying the pressure-sensitive adhesive layer 60 and after the die-cutting step the self-adhesive label has a multilayer configuration.
- the labelstock web 76 is overlaminated with a self-adhesive pressure-sensitive laminar material, for example a transparent plastics (e.g. polyester) self-adhesive web prior to die cutting.
- a self-adhesive pressure-sensitive laminar material for example a transparent plastics (e.g. polyester) self-adhesive web prior to die cutting.
- FIG. 4 shows a cross-section through the single printed paper web 56 upstream of the plough folding unit 88 of FIG. 3 and FIG. 5 is a cross-section through the resultant self-adhesive labels 80 prior to being wound onto the reel 82 .
- each label 80 incorporates a longitudinal fold line 90 between a bottom panel 92 and a top panel 94 of the self-adhesive label 80 .
- the top panel 94 is longer in the transverse direction than the bottom panel 92 so that the rear surface of the label consists of the rear surface of the bottom panel 92 and of an extending flap portion 96 of the top panel 94 .
- the top panel 94 can be releasably detached from the product by pulling the extending flap portion 96 thereby to reveal the previously hidden inwardly-directed surfaces of the bottom and top panels 92 , 94 .
- the apparatus of FIG. 3 may be configured so as to form multilaminar labels having a variety of different folded configurations.
- the adhesive layer 60 may be applied either continuously or as a succession of patches for adhering successive labels to the release material.
- the labels may be overlaminated with a self-adhesive transparent plastics web either before the die-cutting and waste-removal unit 78 or after the die-cutting and waste-removal unit 78 , in which case a further die-cutting and waste-removal unit is required to cut the plastics web into a succession of over-laminate portions each covering a respective self-adhesive label.
- FIG. 6 there is shown an apparatus, designated generally as 102 , for producing a reel 104 carrying a succession of self-adhesive labels 106 .
- the reel 104 comprises an indeterminate length of a backing web 108 of release material, typically comprising a silicone-faced backing paper.
- the backing web 108 is provided in a reel 110 of duplex labelstock material 119 comprising a self-adhesive web 112 of paper or plastics which is coated on its reverse side with pressure-sensitive adhesive and is carried on the release material web 108 .
- the web 112 may have been pre-printed, for example with a succession of images, by a digital printing process using a digital printing unit either earlier or simultaneously with the printing of the web 164 as herinbelow described. Alternatively, the self-adhesive web 112 may be omitted.
- the reel 110 is mounted in the apparatus 102 as a supply reel which is fed out over one or more guide rollers 114 to a label applying station, designated generally as 116 , which includes a pair of opposed rollers 118 , 120 between which the labelstock material 119 is passed.
- individual folded printed labels 122 are fed between the rollers 118 , 120 by a label feed system designated generally as 126 , whereby the folded labels 122 are applied to the upper surface of the self-adhesive web 112 .
- a self adhesive laminate 128 typically of plastics, is fed out from a supply reel 130 and between the rollers 118 , 120 so as to be laminated by its self-adhesive surface over the folded labels 122 which have been applied to the underlying web 112 of self-adhesive material.
- the folded labels 122 are, thereby adhered to the self-adhesive web 112 .
- the combined web/label assembly 131 is conveyed to a die-cuttinq station designated generally as 132 which includes an upper die-cutting roller 134 with a lower opposed backing roller 136 .
- the die-cutting station 134 is downstream in the direction of web movement from the label feed system 126 .
- the resultant self-adhesive labels 106 are cut out from the overlying laminar material 128 , the folded labels 122 and the self-adhesive web 112 .
- the release web 108 is not cut.
- the waste web skeleton 138 which may include waste pieces of the folded labels 122 is wound up on a waste reel 140 and the web of release backing material 108 carrying the succession of self-adhesive labels 106 is wound up on reel 104 as a take-up reel, the backing material web 108 having been fed over one or more guide rollers 142 .
- the label feed system 126 has an output end 44 past which the labelstock material 119 comprising the self-adhesive web 112 carried on the web 108 of release backing material is moved by a web conveying system comprising a drive unit (not shown) and the supply and take-up reels 104 and the guide rollers 114 , 142 , the drive unit rotating at least the take-up reel 104 and optionally the supply reel 104 and/or one or more of the guide rollers 114 , 142 .
- the label feed system 126 also includes an input end 146 which is disposed beneath a sheet folding unit designated generally as 148 .
- the label feed system 126 has a conveying device which comprises upper and lower endless belts 150 , 152 which are mounted between respective pairs of rollers 154 , 156 .
- the endless belts 150 , 152 are rotatably driven by the respective rollers 154 , 156 at least one of which is in turn driven by a feed motor 202 so as to move folded labels 122 in succession from the input end 146 at which folded labels 122 are received from the folding unit 148 to the output end 144 at which folded labels 122 are fed onto the self-adhesive web 112 between the rollers 118 , 120 .
- the folding unit 148 is of generally known construction and comprises a zigzag array of folding rollers 158 together with zig-zag array of folding pockets 160 an opposed sides of the array of rollers 158 .
- the folding rollers 158 rotate continuously to drive a sheet through the folding unit 148 .
- a sheet 162 is fed through the uppermost pair of rollers 158 and into the uppermost folding pocket 160 .
- the leading edge of the sheet 62 hits the end of the folding pocket 160
- the sheet 162 continues to be fed by the rollers 158 and the initially flat sheet 162 is then upset by this continued feeding so as to have a folded configuration with a single fold.
- the location of the fold in the sheet 162 is determined by the depth of the folding pocket 160 .
- the single folded sheet 162 is then fed by the next pair of rollers 158 (i.e. the second and third rollers) in the zig-zag array into the second folding pocket 160 and in the same way a second fold line is formed. This process continues until the desired folded sheet 162 is achieved, the sheet having a number of fold lines corresponding to the number of folding pockets 160 .
- the resultant fully folded label 122 is then fed out from the lowermost pair of rollers 158 between the endless belts 150 , 152 of the label feed system 126 .
- the folding unit 148 is supplied continuously with printed sheets 162 which have been formed from a single printed web 164 which is fed out from a printing unit 166 having the same configuration as the printing units of the embodiments of FIGS. 1 and 3. If desired, in order to provide additional pages in the ultimate label, the web 164 has been longitudinally plough folded prior to forming of the printed sheets.
- the printing unit 166 is controlled by a computer input 167 .
- the web 164 is thus printed on one or both sides by a digital printing technique.
- the printed web 164 is fed to a festoon 170 at which a supply length of the printed web 164 is tensioned.
- the web 164 then passes between a drive roller 172 and an upper opposed roller 174 of a web feed system 171 which feeds the web intermittently to a cutting device 176 comprising a cutting roller 178 and an opposed backing roller 180 .
- the cutting device 176 cuts off a desired length of the printed web to form a separate printed sheet 162 which is then fed into the folding unit 148 .
- the operation of the web feed system 171 and of the printing unit 166 are coupled together whereby the printed web 164 is fed on demand to the web feed system as and when required.
- the drive roller 172 is driven by an electromagnetic clutch 175 which has its input shaft 177 continuously driven.
- the electromagnetic clutch 175 is actuated intermittently so as to rotate the drive roller 72 when the printed web 164 is required to be fed through the cutting device 176 .
- the feed motor 202 continuously drives not only at least one of rollers 154 , 156 thereby continuously rotating the endless belts 150 , 152 of the label feed system 126 but also continuously drives the folding rollers 158 of the folding unit 148 and the input shaft 177 of the electromagnetic clutch 175 of the drive roller 172 for the printed web 164 .
- the driven roller or rollers 154 , 156 , the folding rollers 158 and the input shaft 177 are mechanically geared together, thereby providing a mechanical coupling between the web feed system 171 , the folding unit 148 and the label feed system 126 .
- the apparatus 102 includes a number of sensors, with associated control systems, for controlling and coordinating the operation of the various parts of the apparatus 102 .
- a printed web sensor 182 is provided between the festoon 170 and the drive roller 172 for the printed web 164 .
- the sensor 172 which is typically a photodetector, is adapted to detect a series of printed marks along the printed web 164 . The detection of each printed mark causes a detection signal to be generated which switches off the electromagnetic clutch 175 for the drive roller 172 and actuates the cutting device 176 when the web 164 has stopped.
- the cutting device, and the web drive are thereby operable in response to a detection signal from the sensor.
- a second sensor 184 is provided in the label feed system 126 and is adapted to detect each folded label 122 as it passes along the label feed system 126 .
- the sensor 184 is typically a photodetector which is adapted to detect either an edge, for example the leading edge, of each folded label 122 or a printed registration mark on each folded label 122 .
- the second sensor is adapted to control the application of the folded label 122 to the self-adhesive web 112 so that it is in registry with the die-cutting roller 134 . This registration is employed when the web 119 is not pre-printed, pre-cut or otherwise provided with a succession of registration points along the length of the web 119 .
- the second sensor 184 controls the application of the folded label 122 by varying the speed of the feed motor 202 in the manner described below.
- the variation of the speed of the feed motor 202 causes corresponding speeding up or slowing down of the web feed system 171 , the folding unit 148 and the label feed system 126 which are coupled together.
- the web conveying system 186 comprises a main motor 188 which drives the take-up reel 104 and preferably at least one of the supply reel. 110 , the guide rollers 114 , 142 and the rollers 120 and 136 .
- a speed setter 190 inputs a digital signal into the main motor 188 representative of the desired web speed.
- the main motor 188 is connected to an encoder 192 which is adapted continuously to output a series of pulses, the instantaneous rate of which is related to the actual speed of the main motor 188 .
- the pulses are received by a motor control 194 which compares the instantaneous pulse rate with the rate of the desired set speed and if there is a difference in those two rates, the motor control 194 outputs a feedback signal which is received by the main motor 188 and instantaneously corrects the speed of the main motor 188 .
- This feedback control provides continuous instantaneous control of the speed of the main motor 188 so that at any time the actual speed is the same as the desired set speed.
- the encoder 192 also outputs a pulse signal, comprising a series of pulses at a particular rate, to a pulse counter 196 .
- a pulse signal comprising a series of pulses at a particular rate.
- Each pulse is representative of a specific angular rotation of the main motor 188 and thus is representative of a specific distance which the labelstock web material has moved as a result of being driven by the main motor 188 .
- the pulse counter 196 outputs a series of pulses to a ratio selector 198 .
- the series of pulses could be outputted directly to the ratio selector 198 from the encoder 192 .
- the ratio selector 198 can he set to a predetermined ratio, typically to four decimal places, so that the pulse rate output therefrom is a predetermined ratio of the pulse rate input from the pulse counter 196 .
- the output of pulses from the ratio selector 198 is fed to a motor control 200 for a feed motor 202 of the label feed system 126 .
- the motor control 200 outputs a pulsed motor control signal to the feed motor 202 and the feed motor 202 rotates at a speed governed by the pulse rate of the pulsed motor control signal.
- the pulsed motor control signal controls the feed motor 202 and thereby the rate at which folded printed labels 122 are delivered onto the self-adhesive web 112 by the label feed system 126 .
- the rate at which the printed web 164 is fed by the web feed system 171 , thereby controlling the rate at which printed sheets 162 are fed into the folding unit 148 , and the rate of operation of the folding unit 148 are also correspondingly controlled because the web feed system 171 and the folding unit 148 are geared to the label feed system 126 .
- the feed motor 202 is connected to an encoder 204 which is adapted continuously to output a series of pulses, the instantaneous rate of which is related the actual speed of the feed motor 202 .
- the pulses are received by the motor control 200 which compares the instantaneous pulse rate with the rate of the desired set speed. If there is a difference in the two pulse rates, the motor control 200 outputs a feedback signal which may be positive or negative depending on whether the feed motor 102 is running slow or fast.
- the feedback signal is added arithmetically to the pulsed input from the ratio selector 198 to form the pulsed motor control signal which is fed to the feed motor 202 .
- the pulsed motor control signal may be continuously varied to ensure that the feed motor 202 is running at a speed that is at the desired ratio of the speed of the main motor 188 .
- the motor control 200 also acts as a pulsed signal accumulator.
- the web conveying system and the label feed system can be arranged to run at a set speed ratio, the speed ratio being related to the length of each finished label, the length of each folded label which is applied to the web and the spacing between the folded labels on the web.
- the label feed system 126 is also controlled with respect to the die-cutting roller 134 so as to ensure that when each folded printed label 122 is applied to the self-adhesive web 112 , the folded printed label 122 is applied at substantially the correct position, irrespective of any fluctuations or variations in the position of the folded printed labels upstream of the sensor 184 in the label feed system 126 and the folding unit 148 , so that when the folded printed label 122 is cut by the die-cutting roller 34 at the die-cutting station 132 , the die-cut is substantially in registration with the folded printed label 122 .
- the die-cutting roller 134 is provided with a die-sensor 206 .
- the die-sensor 206 detects when the die-cutting roller 134 is at a prescribed angular orientation and thus correlates the die-cutting roller 134 with respect to a particular stage of the die-cutting cycle.
- the die-sensor 206 may be arranged to emit a die-signal at the commencement of a rotary die-cutting operation.
- the die-sensor 206 is adapted to input a die-sensor signal to the pulse counter 196 which triggers the pulse counter 196 into outputting a pulse count signal to a comparator 208 .
- the folded label sensor 184 also sands a signal to the comparator 208 when it detects a folded label 122 .
- the two signals from the pulse counter 196 and the folded label sensor 184 received by the comparator 208 are processed and compared to yield an error signal which is indicative of any distance which the actual position of the detected folded label 122 in the label feed system 126 leads or lags a desired position which is in registry with respect to the die-cutting roller 134 .
- Such an error signal is outputted by the comparator 208 to the motor control accumulator 200 of the label feed system 126 .
- the feed motor 202 of the label feed system 126 causes the feed motor 202 of the label feed system 126 to be instantaneously speeded up or slowed down thereby to advance or retard the application to the self-adhesive web 112 of the detected folded label 122 in the label feed system 126 so that that detected folded label 122 is applied to the self-adhesive web 112 at the correct position with respect to the downstream die-cutting operation by the die-cutting roller 134 .
- the die-cutting roller 134 defines the position of the resultant self-adhesive labels 105 along the web of release material 108 and the position of the folded printed labels 122 is registered on the labelstock web 119 with respect to the die-cutting roller 134 .
- the folded printed labels 122 in the label feed system 126 chase the position of the die-cutting roller 134 and each folded printed label 122 is applied to a target position on the web 112 which is correlated to a subsequent die-cut made by the die-cutting roller 134 .
- the operating speeds of the printed web feed system 171 and the folding unit 148 are preset with respect to the set speed of the label feed system 126 so that folded sheets 122 are fed at a desired rate from the folding unit 148 into the label feed system 126 , but those operating speeds are varied in synchronism with any variation in the actual speed of the label feed system as a result of the coupling of those components together.
- the computer input 167 is provided with software to control not only the printing unit 164 but also the web food system 171 , the folding unit 148 , the label feed system 126 , the web conveying system 186 and the ratio selector 198 , so that all the components of the apparatus are operated in synchronism by a common control unit.
- the computer input 167 not only supplies printing control signals to the printing unit 164 but also web position and label feed rate control signals to the web conveying system and the label feed system.
- the web drive unit 168 continuously feeds the printed web 164 into the festoon 170 , and any slack in the web 164 , as a result of the intermittent operating of the drive roller 172 as described below, is taken up by the web drive unit 168 .
- the drive roller 172 feeds the printed web 164 through the cutting device 176 until the sensor 182 detects the next printed mark on the printed web 164 .
- the desired length of the printed web 164 has been fed through the cutting device 176 .
- the drive roller 172 is instantaneously stopped by the electromagnetic clutch 175 to stop the web movement through the cutting device 176 and the cutting roller 178 is actuated to cut the desired length from the printed web 164 .
- the cut sheet 162 is then fed into the folding unit 148 , folded to the desired folded configuration and then fed between the endless belts 150 , 152 of the label feed system 126 .
- the web drive roller 172 is started again to commence the next feeding, cutting and folding cycle.
- the label feed system 126 operates continuously and applies the succession of folded printed labels 122 onto the continuously moving web 112 .
- the speed of the label feed system 126 is set to be a particular ratio of the speed of the web conveying system and the application of each folded printed label 122 to the web 112 is controlled with respect to the position of the die-cutting roller 134 .
- the folded printed sheets 122 are adhered to the self-adhesive web 112 by the self-adhesive laminar material 128 and then the combined assembly 131 is die-cut at the die-cutting station 132 and the waste 133 removed.
- the printed web 164 may be cut to form printed sheets 162 with waste web portions between adjacent printed sheets 162 .
- the cutting unit 176 may then be adapted to effect two cuts during one cutting cycle, the first cut to cut off the printed sheet 162 and the second cut to cut off a waste web portion.
- the waste web portion may be ejected from the web feed system or the folding unit and discarded.
- This arrangement may be employed when printed web 164 is printed with a repeat length which is not the same as the length of the printed sheet. This enables the apparatus to utilise webs having fixed repeat lengths irrespective of variations in size of the printed sheets 162 . This is an important advantage because it enables the use of webs printed with fixed repeat lengths to be used for varying lengths of printed sheets.
- an adhesive applicator may be provided to deposit adhesive onto the upper surface of the self-adhesive web 112 or, when a web 112 is omitted, the backing web 108 , so as to adhere the sheets 122 to the respective web.
- the adhesive may be applied as a continuous layer or as a succession of patches.
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Abstract
An apparatus and method for producing a succession of self-adhesive labels carried on a length of release material is provided in which a succession of images are digitally printed on a self-adhesive web, the web is die cut to form a succession of self-adhesive labels on a length of release material, and the web is adhered to the backing of release material between the printing and die-cutting steps, so that during the printing step different images can be printed in alternation on the web, and the web can be folded.
Description
- This application is a continuation of application Ser. No. 08/869,965, filed Jun. 5, 1997, which in turn is a continuation of application Ser. No. 08/382,411, filed Feb. 2, 1995, now abandoned.
- The present invention relates to a method of and an apparatus for producing self-adhesive labels and to self-adhesive labels.
- The manufacture of printed and die-cut self-adhesive labels carried in succession on a length of release backing material, such as silicone-coated paper, has been known for many years. In such known processes, a reel of labelstock material, comprising a web of self-adhesive paper on a backing of release material, is passed through a single or multicolor web printing machine so as to print a succession of label images on the upper surf ace of the paper web and then, downstream of the printing station or stations in the machine, the paper web is die-cut at a die-cutting station and the waste matrix of self-adhesive paper surrounding the labels is stripped off the release material. The release material carrying the succession of die-cut self-adhesive labels is then wound up into a reel.
- Historically, such labels have been printed either by a flexographic printing process or by a rotary letterpress printing process. In these processes mechanical alteration of the printing press is necessary if different repeat lengths are printed. For both of these printing processes, when it is required to change the printed image or change the repeat length of the printed image, a significant amount of make ready time is required to set up the printing press. Thus both the flexographic and rotary letterpress printing processes for the manufacture of self-adhesive labels are only commercially suitable for the manufacture of high volumes of self-adhesive labels in long print runs and with fixed repeat lengths in the labels produced. A further problem in the use of these two printing processes, particularly the flexographic printing process, is that the printing quality is often not particularly high, and specifically not sufficiently high to enable high quality printed images, particularly pictures, to be printed on the labels.
- In order to overcome these problems of the known flexographic and rotary letterpress self-adhesive label manufacturing processes, in my EP-A-0098092 I devised a method and apparatus for producing self-adhesive labels in which a succession of individual lithographically-printed sheets were adhered to a length of labelstock material, and then the sheets themselves and the self-adhesive paper of the labelstock material were cut and the waste matrix removed thereby to form self-adhesive labels on a release material. These labels, in having lithographically printed images, enabled a higher quality printed image to be achieved than with the earlier flaxographic and rotary letterpress printing techniques. In addition, the method and apparatus of that invention were particularly suitable for the manufacture of small volumes of labels. This is because the sheets were separately printed on an offset lithographic sheet printing press and then a selected number of the sheets were applied to the labelstock web. In addition, the use of a sheet printing process in combination with the subsequent adhesion of the sheets to the web enables the ultimate labels to have variable repeat lengths. However, this earlier label manufacturing process requires two separate manufacturing steps i.e. sheet printing and then label manufacture.
- It would still be advantageous in the art for lithographically-printed self-adhesive labels to be made using a web printing process rather than by employing a sheet printing process with the subsequent sheets being assembled onto a web.
- In recent years offset lithogxaphy label presses have become available in commerce. In order to manufacture labels having variable repeat lengths, it is required that the printing cylinders are retracted from the web after each printing cycle and are moved, for example by a servomotor, so as to be radially repositioned. This enables the printing repeat to be varied. However, these lithographic label presses are both complicated and expensive. Furthermore, the lithographic printing cylinders still require long make ready times when the label image is to be changed, making the web offset lithographic label presses only commercially suitable for long print runs.
- There is thus still a need for a method and apparatus for producing high quality printed self-adhesive labels an a length of release material which readily enables either short or long print runs to be manufactured efficiently and cost effectively. There is also still a need for such method and apparatus which enable variable print lengths and variable printed images to be utilised without significant make ready times.
- The present invention aims at least partially to satisfy these needs.
- Accordingly, the present invention provides a method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of: (a) digitally printing a succession of images on a web; and (b) die cutting the web to form a succession of self-adhesive labels on a length of release material.
- The present invention further provides a method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:(a) digitally printing a succession of images an a web; (b) cutting the printed web into a succession of labels; and (c) applying the succession of labels to a second web including a release material.
- The present invention still further provides apparatus for producing a succession of self-adhesive labels on a length of release backing material, the apparatus comprising a digital printing unit for printing a web with a succession of images and a die-cutting device for cutting self-adhesive labels from the web.
- The present invention further provides apparatus for producing a succession of self-adhesive labels on a length of release material, the apparatus comprising a digital printing unit for printing a succession of images an a web, a cutting device for cutting the web into a succession of labels, and label applying device for applying the labels to a web including a release material.
- The present invention yet further provides a succession of self-adhesive labels carried on a length of release material, successive labels having at least two alternating digitally printed images.
- Embodiments of the present invention will now be described by way of example only, with reference to the accompanying drawings, in which:
- FIG. 1 is a schematic side view of an apparatus for producing self-adhesive labels in accordance with a first embodiment of the present invention;
- FIG. 2 is a plan view of self-adhesive labels carried on a length of release backing material produced in accordance with an embodiment of the invention using the apparatus of FIG. 1;
- FIG. 3 is a schematic side view of an apparatus for producing labels in accordance with a second embodiment of the present invention;
- FIG. 4 is a section on line A-A of FIG. 3;
- FIG. 5 is a section on line B-B of FIG. 3;
- FIG. 6 is a schematic side view of an apparatus for producing self-adhesive labels in accordance with a further embodiment of the present invention; and
- FIG. 7 is a schematic representation of the control system of the apparatus of FIG. 6.
- Referring to FIG. 1, there is shown an apparatus, designated generally as 2, for the manufacture of printed self-adhesive labels in accordance with a first embodiment of the present invention.
- The
apparatus 2 comprises a printing unit 4 and a die-cutting and waste removal unit 6. Aroller 8 in the printing unit 4 is provided for mounting a supply reel 10 oflabelstock material 12 to be printed, arewind roller 13 is provided for mounting areel 15 of the release backingmaterial 14 of thelabelstock material 12 carrying a succession of self-adhesive labels 16 thereon and a waste wind uproller 18 is provided for supporting areel 19 of thewaste matrix 20, formed from the self-adhesive paper web 22 of thelabelstock material 12, whichwaste matrix 20 is removed from therelease material 14 at the die-cutting and waste removal station 6. In accordance with the invention, the printing unit 4 is a digital printing apparatus which includes a plurality of printing stations in aprinting engine 21. In the illustrated embodiment there are four 22,24,26,28 which are each arranged to print a respective colour, or black, on one or both sides of theprinting stations labelstock material 12. The printing unit 4 also includes a drive system, including 30,32,34,36,38,40,42 for controllably conveying the web ofrollers labelstock material 12 through the printing unit 4 and to the die-cutting and waste removal unit 6. The 22,24,26,28 are digital printing stations, working preferably with a dry toner process (although optionally with a wet ink process) which typically are similar to those employed in colour photocopiers or laser printers. The printing process may be a direct or offset digital process. Theprinting stations 22,24,26,28 are controlled by aprinting stations computer input 44 which, together with computer software, controls theprinting engine 21 of the printing unit 4, and the drive system so as to ensure that the desired images are printed on theweb 12. Thecomputer input 44 may include computer terminals set up with commercially available publishing software. The printing unit 4 together with its associatedcomputer input 44 are available in commerce from Agfa-Gevaert N.V. of Belgium under the trade name Chromapress. Alternative printing units are available from Xeikon N.V. of Belgium or Indigo of the Netherlands. The 22,24,26,28 employ an electrophotographic imaging process wherein a dry toner is applied to theprinting stations web 12 to be printed by a rotating drum. The printed image is digitised and divided into an array of pixels which permits an extremely high quality image to be produced. The dry toner is fused onto the paper web at aheating station 46 downstream of theprinting engine 21. - The
22,24,26,28 are, unlike the printing cylinders of known flexographic, rotary letterpress and offset lithography self-adhesive label printing apparatus, seamless, i.e. there is no requirement for the printing drum to have a portion extending across its circumference which cannot be employed to print an image. This results in the significant technical advantage that theprinting stations 22,24,26,28 can each print images having variable repeat lengths. In fact theprinting stations 22,24,26,28 can be controlled to print an image of infinite length with an appropriate computer input. This means that theprinting stations apparatus 2 for producing self-adhesive labels may be employed in a first run to produce a succession of self-adhesive labels having a first repeat length and then, with an appropriate command from thecomputer input 44, may then be used in a second run to produce different labels having a different repeat length, this being achieved without the requirement between the runs for make ready time to modify the printing unit as would be required in the known flexographic, web offset or rotary letterpress label printing apparatus. - In addition, the
apparatus 2 for producing labels can be employed to print different images along the length of thelabelstock material 12. For example, as shown in FIG. 2, the apparatus may be set up by appropriate commands from thecomputer input 44, to print, in alternation, front and back labels 48,50 on therelease material 14, the front and back labels 48,50 being subsequently employed for labelling a product such as a bottle. - Furthermore, the
computer input 44 for the printing unit 4 can readily be operated so as to print continually variable information such as alpha numeric characters, bar codes or matrix codes on selected labels. For example, as shown in FIG. 2, theapparatus 2 can readily be configured to print numerically varying serial numbers on selected labels 48. - The apparatus shown in FIG. 1 can be employed either to print only the upper surface of the self-
adhesive paper web 20 of thelabelstock web 12 or alternatively both sides of thelabelstock web 12, including therelease material 14 of thelabelstock web 12. For example, therelease material 14 may be printed on its lower surface with variable information, typically sequential numbers, codes or barcodes associated with the respective labels on the release material. In alternative embodiments of the present invention two labelstock webs may be passed through the printing unit 4 in back-to-back configuration so that the self-adhesive paper web of each labelstock web is printed. The die-cutting and waste removal unit 6 is configured so as to cut and remove the waste from both webs. Alternatively, a single labelstock web having a folded configuration so as to be of double thickness with a single longitudinal fold extending along the length thereof may be passed through theapparatus 2. The longitudinal fold is slit off from the web, for example at the die-cutting and waste removal section 6, so as to produce two separate reels of printed labels. In a further embodiment, a labelstock web comprising two self-adhesive paper webs adhered to a common web of release material which is coated with silicone on both sides thereof could be employed. - In order to improve the colour fastness and durability of the printing on the upper surface of the
labelstock web 12, as shown in FIG. 1 a coating apparatus 49 for coating the upper printed surface of thelabelstock web 12 with an overprinting varnish which is curable by ultra violet light may be disposed upstream of the die-cutting and waste removal unit 6. An ultra violet lamp 51 is disposed downstream of the coating apparatus 49. The lamp 51 emits ultra violet (UV) radiation which cures the varnish passing thereunder. A suitable UV-curable overprinting varnish is available in commerce from Coates Inks in the United Kingdom. - A further embodiment of the present invention is illustrated in FIG. 3 in which an apparatus, designated generally as 52, for producing self-adhesive labels incorporates a
printing unit 54 which is arranged to print asingle paper web 56 which is then laminated to aweb 58 of release material to which has been applied alayer 60 of pressure-sensitive adhesive from anadhesive applicator 62. Therelease material web 58 may have been pre-printed, or may be simultaneously printed by a printing unit (not shown) similar toprinting unit 54. - A
reel 64 of the paper web is mounted in theprinting unit 54 and is fed out by the web conveying system through aprinting engine 66 of the printing unit in which desired single or multicolour images are formed on the web by an electrophotographic process employing a dry toner system in a manner similar to that described above with reference to FIG. 1. Theweb 56 may-be printed on one or both sides. The printing process is controlled by thecomputer input 68. - The printed
web 56 then passes to alaminating station 70 comprising a pair of 72,74 at which the printedopposed rollers web 56 is adhered to the underlying web ofrelease material 58 which is fed out from areae 75 thereof and has been coated with thelayer 60 of pressure-sensitive adhesive which has been applied by theadhesive applicator 62. The combined printedduplex labelstock web 76 is then conveyed to a die-cutting andwaste removal unit 78 which die-cuts self-adhesive labels 80 from the printedpaper web 56. The resultant self-adhesive labels 80 carried on thebacking 58 of release material are wound into areel 82 and thewaste matrix 84 of thepaper web 56 is also wound into awaste reel 86. - The apparatus of FIG. 3 may be employed as described hereinabove to produce single layer adhesive labels so carried on a length of
release material 58. This particular embodiment has an advantage over that of FIG. 1 in that only a single paper web is conveyed through theprinting unit 54, which facilitates control of the printing operation and also permits both sides of the self-adhesive labels to be printed if desired. This is advantageous when for example the label is to be applied to a transparent bottle where it is desirable for the rear surface of the label to carry a printed image. - However, the apparatus of FIG. 3 may also be configured so as to manufacture multilayer labels having at least one fold line. Such a modified configuration is provided by a
plough folding device 88 as shown in FIG. 3 which may be of a known construction. Theplough folding device 88 is positioned between theprinting unit 54 and thelaminating station 70 and is adapted to introduce one or more (in the illustrated embodiment only one) longitudinal fold into the printedpaper web 56. The foldedpaper web 56 is laminated to the underlying web ofrelease material 58 carrying the pressure-sensitive adhesive layer 60 and after the die-cutting step the self-adhesive label has a multilayer configuration. - In a further modification of the embodiment of FIG. 3, the
labelstock web 76 is overlaminated with a self-adhesive pressure-sensitive laminar material, for example a transparent plastics (e.g. polyester) self-adhesive web prior to die cutting. - FIG. 4 shows a cross-section through the single printed
paper web 56 upstream of theplough folding unit 88 of FIG. 3 and FIG. 5 is a cross-section through the resultant self-adhesive labels 80 prior to being wound onto thereel 82. It will be seen that eachlabel 80 incorporates alongitudinal fold line 90 between abottom panel 92 and atop panel 94 of the self-adhesive label 80. Thetop panel 94 is longer in the transverse direction than thebottom panel 92 so that the rear surface of the label consists of the rear surface of thebottom panel 92 and of an extendingflap portion 96 of thetop panel 94. After thelabel 80 has been adhered to a product, thetop panel 94 can be releasably detached from the product by pulling the extendingflap portion 96 thereby to reveal the previously hidden inwardly-directed surfaces of the bottom and 92,94.top panels - The apparatus of FIG. 3 may be configured so as to form multilaminar labels having a variety of different folded configurations. For example, the
adhesive layer 60 may be applied either continuously or as a succession of patches for adhering successive labels to the release material. The labels may be overlaminated with a self-adhesive transparent plastics web either before the die-cutting and waste-removal unit 78 or after the die-cutting and waste-removal unit 78, in which case a further die-cutting and waste-removal unit is required to cut the plastics web into a succession of over-laminate portions each covering a respective self-adhesive label. - A further imbodiment of apparatus for producing self-adhesive labels is illustrated in FIGS. 6 and 7.
- Referring to FIG. 6, there is shown an apparatus, designated generally as 102, for producing a
reel 104 carrying a succession of self-adhesive labels 106. Thereel 104 comprises an indeterminate length of abacking web 108 of release material, typically comprising a silicone-faced backing paper. Thebacking web 108 is provided in areel 110 ofduplex labelstock material 119 comprising a self-adhesive web 112 of paper or plastics which is coated on its reverse side with pressure-sensitive adhesive and is carried on therelease material web 108. Theweb 112 may have been pre-printed, for example with a succession of images, by a digital printing process using a digital printing unit either earlier or simultaneously with the printing of theweb 164 as herinbelow described. Alternatively, the self-adhesive web 112 may be omitted. Thereel 110 is mounted in theapparatus 102 as a supply reel which is fed out over one ormore guide rollers 114 to a label applying station, designated generally as 116, which includes a pair of 118,120 between which theopposed rollers labelstock material 119 is passed. At thelabel applying station 116, individual folded printedlabels 122 are fed between the 118, 120 by a label feed system designated generally as 126, whereby the foldedrollers labels 122 are applied to the upper surface of the self-adhesive web 112. A selfadhesive laminate 128, typically of plastics, is fed out from asupply reel 130 and between the 118,120 so as to be laminated by its self-adhesive surface over the foldedrollers labels 122 which have been applied to theunderlying web 112 of self-adhesive material. The folded labels 122 are, thereby adhered to the self-adhesive web 112. The combined web/label assembly 131 is conveyed to a die-cuttinq station designated generally as 132 which includes an upper die-cuttingroller 134 with a loweropposed backing roller 136. The die-cuttingstation 134 is downstream in the direction of web movement from thelabel feed system 126. At the die-cuttingstation 132, the resultant self-adhesive labels 106 are cut out from the overlyinglaminar material 128, the foldedlabels 122 and the self-adhesive web 112. Therelease web 108 is not cut. Thewaste web skeleton 138 which may include waste pieces of the foldedlabels 122 is wound up on awaste reel 140 and the web ofrelease backing material 108 carrying the succession of self-adhesive labels 106 is wound up onreel 104 as a take-up reel, thebacking material web 108 having been fed over one ormore guide rollers 142. - The
label feed system 126 has anoutput end 44 past which thelabelstock material 119 comprising the self-adhesive web 112 carried on theweb 108 of release backing material is moved by a web conveying system comprising a drive unit (not shown) and the supply and take-upreels 104 and the 114,142, the drive unit rotating at least the take-upguide rollers reel 104 and optionally thesupply reel 104 and/or one or more of the 114,142. Theguide rollers label feed system 126 also includes an input end 146 which is disposed beneath a sheet folding unit designated generally as 148. Thelabel feed system 126 has a conveying device which comprises upper and lowerendless belts 150,152 which are mounted between respective pairs of 154,156. Therollers endless belts 150,152 are rotatably driven by the 154,156 at least one of which is in turn driven by arespective rollers feed motor 202 so as to move foldedlabels 122 in succession from the input end 146 at which foldedlabels 122 are received from thefolding unit 148 to theoutput end 144 at which foldedlabels 122 are fed onto the self-adhesive web 112 between the 118,120.rollers - The
folding unit 148 is of generally known construction and comprises a zigzag array offolding rollers 158 together with zig-zag array offolding pockets 160 an opposed sides of the array ofrollers 158. In use, thefolding rollers 158 rotate continuously to drive a sheet through thefolding unit 148. In use, a sheet 162 is fed through the uppermost pair ofrollers 158 and into theuppermost folding pocket 160. When the leading edge of thesheet 62 hits the end of thefolding pocket 160, the sheet 162 continues to be fed by therollers 158 and the initially flat sheet 162 is then upset by this continued feeding so as to have a folded configuration with a single fold. The location of the fold in the sheet 162 is determined by the depth of thefolding pocket 160. The single folded sheet 162 is then fed by the next pair of rollers 158 (i.e. the second and third rollers) in the zig-zag array into thesecond folding pocket 160 and in the same way a second fold line is formed. This process continues until the desired folded sheet 162 is achieved, the sheet having a number of fold lines corresponding to the number of folding pockets 160. The resultant fully foldedlabel 122 is then fed out from the lowermost pair ofrollers 158 between theendless belts 150,152 of thelabel feed system 126. - The
folding unit 148 is supplied continuously with printed sheets 162 which have been formed from a single printedweb 164 which is fed out from aprinting unit 166 having the same configuration as the printing units of the embodiments of FIGS. 1 and 3. If desired, in order to provide additional pages in the ultimate label, theweb 164 has been longitudinally plough folded prior to forming of the printed sheets. Theprinting unit 166 is controlled by acomputer input 167. Theweb 164 is thus printed on one or both sides by a digital printing technique. The printedweb 164 is fed to afestoon 170 at which a supply length of the printedweb 164 is tensioned. Theweb 164 then passes between a drive roller 172 and an upperopposed roller 174 of aweb feed system 171 which feeds the web intermittently to acutting device 176 comprising a cuttingroller 178 and anopposed backing roller 180. Thecutting device 176 cuts off a desired length of the printed web to form a separate printed sheet 162 which is then fed into thefolding unit 148. The operation of theweb feed system 171 and of theprinting unit 166 are coupled together whereby the printedweb 164 is fed on demand to the web feed system as and when required. - The drive roller 172 is driven by an
electromagnetic clutch 175 which has itsinput shaft 177 continuously driven. Theelectromagnetic clutch 175 is actuated intermittently so as to rotate thedrive roller 72 when the printedweb 164 is required to be fed through thecutting device 176. - The
feed motor 202 continuously drives not only at least one of 154,156 thereby continuously rotating therollers endless belts 150,152 of thelabel feed system 126 but also continuously drives thefolding rollers 158 of thefolding unit 148 and theinput shaft 177 of theelectromagnetic clutch 175 of the drive roller 172 for the printedweb 164. Preferably, the driven roller or 154,156, therollers folding rollers 158 and theinput shaft 177 are mechanically geared together, thereby providing a mechanical coupling between theweb feed system 171, thefolding unit 148 and thelabel feed system 126. - The
apparatus 102 includes a number of sensors, with associated control systems, for controlling and coordinating the operation of the various parts of theapparatus 102. A printedweb sensor 182 is provided between thefestoon 170 and the drive roller 172 for the printedweb 164. The sensor 172, which is typically a photodetector, is adapted to detect a series of printed marks along the printedweb 164. The detection of each printed mark causes a detection signal to be generated which switches off theelectromagnetic clutch 175 for the drive roller 172 and actuates thecutting device 176 when theweb 164 has stopped. The cutting device, and the web drive, are thereby operable in response to a detection signal from the sensor. This ensures that accurately cut printed sheets 162 are formed from the printedweb 164, each printed sheet 162 having the required length and being registered with respect to the printing on theweb 164. Theweb 164 is then moved again through thecutting device 176 after a short delay in the next cycle by actuation of theelectromagnetic clutch 175 for the drive roller 172. - A
second sensor 184 is provided in thelabel feed system 126 and is adapted to detect each foldedlabel 122 as it passes along thelabel feed system 126. Thesensor 184 is typically a photodetector which is adapted to detect either an edge, for example the leading edge, of each foldedlabel 122 or a printed registration mark on each foldedlabel 122. The second sensor is adapted to control the application of the foldedlabel 122 to the self-adhesive web 112 so that it is in registry with the die-cuttingroller 134. This registration is employed when theweb 119 is not pre-printed, pre-cut or otherwise provided with a succession of registration points along the length of theweb 119. Thesecond sensor 184 controls the application of the foldedlabel 122 by varying the speed of thefeed motor 202 in the manner described below. The variation of the speed of thefeed motor 202 causes corresponding speeding up or slowing down of theweb feed system 171, thefolding unit 148 and thelabel feed system 126 which are coupled together. - An embodiment of a control system for controlling and coordinating the operation of the
label feed system 126, together with theweb feed system 171 and thefolding unit 148, the web conveying system and the die-cuttingroller 134 of FIG. 6 will now be described with reference to FIG. 7. Theweb conveying system 186 comprises amain motor 188 which drives the take-upreel 104 and preferably at least one of the supply reel. 110, the 114,142 and theguide rollers 120 and 136. Arollers speed setter 190 inputs a digital signal into themain motor 188 representative of the desired web speed. Themain motor 188 is connected to anencoder 192 which is adapted continuously to output a series of pulses, the instantaneous rate of which is related to the actual speed of themain motor 188. The pulses are received by a motor control 194 which compares the instantaneous pulse rate with the rate of the desired set speed and if there is a difference in those two rates, the motor control 194 outputs a feedback signal which is received by themain motor 188 and instantaneously corrects the speed of themain motor 188. - This feedback control provides continuous instantaneous control of the speed of the
main motor 188 so that at any time the actual speed is the same as the desired set speed. - The
encoder 192 also outputs a pulse signal, comprising a series of pulses at a particular rate, to apulse counter 196. Each pulse is representative of a specific angular rotation of themain motor 188 and thus is representative of a specific distance which the labelstock web material has moved as a result of being driven by themain motor 188. - The
pulse counter 196 outputs a series of pulses to aratio selector 198. However, in an alternative arrangement, the series of pulses could be outputted directly to theratio selector 198 from theencoder 192. Theratio selector 198 can he set to a predetermined ratio, typically to four decimal places, so that the pulse rate output therefrom is a predetermined ratio of the pulse rate input from thepulse counter 196. The output of pulses from theratio selector 198 is fed to amotor control 200 for afeed motor 202 of thelabel feed system 126. Themotor control 200 outputs a pulsed motor control signal to thefeed motor 202 and thefeed motor 202 rotates at a speed governed by the pulse rate of the pulsed motor control signal. In this way, the pulsed motor control signal controls thefeed motor 202 and thereby the rate at which folded printedlabels 122 are delivered onto the self-adhesive web 112 by thelabel feed system 126. The rate at which the printedweb 164 is fed by theweb feed system 171, thereby controlling the rate at which printed sheets 162 are fed into thefolding unit 148, and the rate of operation of thefolding unit 148 are also correspondingly controlled because theweb feed system 171 and thefolding unit 148 are geared to thelabel feed system 126. - In a manner similar to that of the
main motor 188, thefeed motor 202 is connected to anencoder 204 which is adapted continuously to output a series of pulses, the instantaneous rate of which is related the actual speed of thefeed motor 202. The pulses are received by themotor control 200 which compares the instantaneous pulse rate with the rate of the desired set speed. If there is a difference in the two pulse rates, themotor control 200 outputs a feedback signal which may be positive or negative depending on whether thefeed motor 102 is running slow or fast. The feedback signal is added arithmetically to the pulsed input from theratio selector 198 to form the pulsed motor control signal which is fed to thefeed motor 202. Thus the pulsed motor control signal may be continuously varied to ensure that thefeed motor 202 is running at a speed that is at the desired ratio of the speed of themain motor 188. It will be understood that themotor control 200 also acts as a pulsed signal accumulator. - In this way the web conveying system and the label feed system can be arranged to run at a set speed ratio, the speed ratio being related to the length of each finished label, the length of each folded label which is applied to the web and the spacing between the folded labels on the web.
- The
label feed system 126 is also controlled with respect to the die-cuttingroller 134 so as to ensure that when each folded printedlabel 122 is applied to the self-adhesive web 112, the folded printedlabel 122 is applied at substantially the correct position, irrespective of any fluctuations or variations in the position of the folded printed labels upstream of thesensor 184 in thelabel feed system 126 and thefolding unit 148, so that when the folded printedlabel 122 is cut by the die-cuttingroller 34 at the die-cuttingstation 132, the die-cut is substantially in registration with the folded printedlabel 122. - The die-cutting
roller 134 is provided with a die-sensor 206. The die-sensor 206 detects when the die-cuttingroller 134 is at a prescribed angular orientation and thus correlates the die-cuttingroller 134 with respect to a particular stage of the die-cutting cycle. For example, the die-sensor 206 may be arranged to emit a die-signal at the commencement of a rotary die-cutting operation. The die-sensor 206 is adapted to input a die-sensor signal to thepulse counter 196 which triggers thepulse counter 196 into outputting a pulse count signal to acomparator 208. The foldedlabel sensor 184 also sands a signal to thecomparator 208 when it detects a foldedlabel 122. The two signals from thepulse counter 196 and the foldedlabel sensor 184 received by thecomparator 208 are processed and compared to yield an error signal which is indicative of any distance which the actual position of the detected foldedlabel 122 in thelabel feed system 126 leads or lags a desired position which is in registry with respect to the die-cuttingroller 134. Such an error signal is outputted by thecomparator 208 to themotor control accumulator 200 of thelabel feed system 126. This causes thefeed motor 202 of thelabel feed system 126 to be instantaneously speeded up or slowed down thereby to advance or retard the application to the self-adhesive web 112 of the detected foldedlabel 122 in thelabel feed system 126 so that that detected foldedlabel 122 is applied to the self-adhesive web 112 at the correct position with respect to the downstream die-cutting operation by the die-cuttingroller 134. In this label producing apparatus, the die-cuttingroller 134 defines the position of the resultant self-adhesive labels 105 along the web ofrelease material 108 and the position of the folded printedlabels 122 is registered on thelabelstock web 119 with respect to the die-cuttingroller 134. Thus the folded printedlabels 122 in thelabel feed system 126 chase the position of the die-cuttingroller 134 and each folded printedlabel 122 is applied to a target position on theweb 112 which is correlated to a subsequent die-cut made by the die-cuttingroller 134. - The operating speeds of the printed
web feed system 171 and thefolding unit 148 are preset with respect to the set speed of thelabel feed system 126 so that foldedsheets 122 are fed at a desired rate from thefolding unit 148 into thelabel feed system 126, but those operating speeds are varied in synchronism with any variation in the actual speed of the label feed system as a result of the coupling of those components together. - In an alternative embodiment of the apparatus of FIG. 6, the
computer input 167 is provided with software to control not only theprinting unit 164 but also theweb food system 171, thefolding unit 148, thelabel feed system 126, theweb conveying system 186 and theratio selector 198, so that all the components of the apparatus are operated in synchronism by a common control unit. Thus for example thecomputer input 167 not only supplies printing control signals to theprinting unit 164 but also web position and label feed rate control signals to the web conveying system and the label feed system. - In operation, the
web drive unit 168 continuously feeds the printedweb 164 into thefestoon 170, and any slack in theweb 164, as a result of the intermittent operating of the drive roller 172 as described below, is taken up by theweb drive unit 168. The drive roller 172 feeds the printedweb 164 through thecutting device 176 until thesensor 182 detects the next printed mark on the printedweb 164. At this point, the desired length of the printedweb 164 has been fed through thecutting device 176. The drive roller 172 is instantaneously stopped by theelectromagnetic clutch 175 to stop the web movement through thecutting device 176 and the cuttingroller 178 is actuated to cut the desired length from the printedweb 164. The cut sheet 162 is then fed into thefolding unit 148, folded to the desired folded configuration and then fed between theendless belts 150,152 of thelabel feed system 126. After the cutting operation, the web drive roller 172 is started again to commence the next feeding, cutting and folding cycle. - The
label feed system 126 operates continuously and applies the succession of folded printedlabels 122 onto the continuously movingweb 112. As described hereinabove, the speed of thelabel feed system 126 is set to be a particular ratio of the speed of the web conveying system and the application of each folded printedlabel 122 to theweb 112 is controlled with respect to the position of the die-cuttingroller 134. - The folded printed
sheets 122 are adhered to the self-adhesive web 112 by the self-adhesivelaminar material 128 and then the combinedassembly 131 is die-cut at the die-cuttingstation 132 and the waste 133 removed. - In an alternative arrangement, the printed
web 164 may be cut to form printed sheets 162 with waste web portions between adjacent printed sheets 162. Thecutting unit 176 may then be adapted to effect two cuts during one cutting cycle, the first cut to cut off the printed sheet 162 and the second cut to cut off a waste web portion. The waste web portion may be ejected from the web feed system or the folding unit and discarded. This arrangement may be employed when printedweb 164 is printed with a repeat length which is not the same as the length of the printed sheet. This enables the apparatus to utilise webs having fixed repeat lengths irrespective of variations in size of the printed sheets 162. This is an important advantage because it enables the use of webs printed with fixed repeat lengths to be used for varying lengths of printed sheets. - In alternative embodiments of the method and apparatus of FIG. 6, an adhesive applicator may be provided to deposit adhesive onto the upper surface of the self-
adhesive web 112 or, when aweb 112 is omitted, thebacking web 108, so as to adhere thesheets 122 to the respective web. The adhesive may be applied as a continuous layer or as a succession of patches.
Claims (19)
1. A method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:
(a) digitally printing by electrophotographic imaging a succession of images on a web; and
(b) die cutting the web to form a succession of self-adhesive labels on a length of release material.
2. A method according to wherein in the printing step different images are printed in alternation on the web.
claim 1
3. A method according to wherein continuously variable information is additionally printed on the web in the printing step.
claim 1
4. A method according to wherein the web is printed on both sides thereof.
claim 1
5. A method according to wherein the web is folded after the printing step and prior to being adhered to the backing of release material.
claim 1
6. A method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:
(a) digitally printing by electrophotographic imaging a succession of images on a web;
(b) cutting the printed web into a succession of labels; and
(c) adhering the succession of labels to a second web including a release material.
7. A method according to wherein the labels are folded between the cutting and adhering steps.
claim 6
8. A method according to wherein the labels are further die-cut after being adhered to the second web.
claim 6
9. A method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:
(a) digitally printing by electrophotographic imaging a succession of images on a web;
(b) cutting the printed web into a succession of sheets; and
(c) adhering the succession of sheets to a second web including a release material.
10. A method according to wherein the sheets are folded between the cutting and adhering steps.
claim 9
11. A method according to wherein the sheets are further die-cut after being adhered to the second web.
claim 9
12. Apparatus for producing a succession of self-adhesive labels step on a length of release backing material, the apparatus comprising a digital printing unit for printing by electrophotographic imaging a web with a succession of images, the web being adhered to a release backing material web before or after the printing by the printing unit, and a die-cutting device for die-cutting self-adhesive labels from the web.
13. Apparatus according to further comprising a laminating device for laminating the printed web to a web of release material.
claim 12
14. Apparatus according to further comprising a folding web device for introducing at least one longitudinal fold into the printed web.
claim 13
15. Apparatus for producing a succession of self-adhesive labels the on a length of release material, the apparatus comprising a digital printing unit for printing by electrophotographic imaging a succession of images on a web, a cutting device for cutting the web into a succession of labels, and label applying device for applying the labels to a web including a release material, the web labels being adhered to the web to form self-adhesive labels.
16. Apparatus according to further comprising a folding device for folding the labels before they are applied to the web.
claim 15
17. A succession of self-adhesive labels carried on a length of release material, successive labels having at least two alternating images digitally printed by electrophotographic imaging.
18. A succession of self-adhesive labels according to wherein selected labels are digitally printed with continuously variable information.
claim 17
19. A method of producing a succession of self-adhesive labels carried on a length of release material, the method including the steps of:
(a) digitally printing by electrophotographic imaging a succession of images on a web; and
(b) die cutting the web to form a succession of self-adhesive labels on a length of release material;
wherein the web is self-adhesive and is carried on a backing of release material, wherein the web is adhered to the backing of release material between the printing and die-cutting steps, wherein during the printing step different images are printed in alternation on the web, and wherein the web is folded after the printing step.
Priority Applications (1)
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|---|---|---|---|
| US09/846,193 US20010022213A1 (en) | 1994-05-27 | 2001-05-02 | Labels and manufacture thereof |
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| Application Number | Priority Date | Filing Date | Title |
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| GB9410729A GB2289664B (en) | 1994-05-27 | 1994-05-27 | Labels and manufacture thereof |
| GB9410729.9 | 1994-05-27 | ||
| GB9414557A GB2289665B (en) | 1994-05-27 | 1994-07-19 | Labels and manufacture thereof |
| US38241195A | 1995-02-02 | 1995-02-02 | |
| US86996597A | 1997-06-05 | 1997-06-05 | |
| US09/846,193 US20010022213A1 (en) | 1994-05-27 | 2001-05-02 | Labels and manufacture thereof |
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| US09/846,193 Abandoned US20010022213A1 (en) | 1994-05-27 | 2001-05-02 | Labels and manufacture thereof |
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| US08/443,669 Expired - Fee Related US5674334A (en) | 1994-05-27 | 1995-05-18 | Labels and manufacture thereof |
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| EP (2) | EP0914940A3 (en) |
| AT (1) | ATE183435T1 (en) |
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| CA (1) | CA2149389A1 (en) |
| DE (1) | DE69511457T2 (en) |
| DK (1) | DK0684129T3 (en) |
| ES (1) | ES2136796T3 (en) |
| GB (2) | GB2289664B (en) |
| GR (1) | GR3031652T3 (en) |
| TW (2) | TW375581B (en) |
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Cited By (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20030144853A1 (en) * | 2002-01-25 | 2003-07-31 | Stehouwer William J. | Carton labeling system and process |
| US20030234073A1 (en) * | 2002-06-21 | 2003-12-25 | Franko, Joseph D. | Roll-to-roll method of creating extended text labels |
| US20050049130A1 (en) * | 2003-09-03 | 2005-03-03 | Joseph Kosa | Printing registration product and method |
| US20050204978A1 (en) * | 2004-03-22 | 2005-09-22 | Huddleston David E | Repositionable adhesive mounted fabric assembly and decoration process |
| US20090167013A1 (en) * | 2005-11-30 | 2009-07-02 | Max Co., Ltd. | Release coated paper-attached label and label printer |
| US20110070384A1 (en) * | 2009-09-18 | 2011-03-24 | The Coca-Cola Company | Wrap-around label, label stock and label processing |
Families Citing this family (33)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| GB2218541B (en) * | 1988-05-11 | 1993-04-21 | Instance Ltd David J | Method of and apparatus for producing labels |
| US5803347A (en) * | 1995-06-26 | 1998-09-08 | Sainz; Raymond R. | Protective device for use with containers having handhold openings |
| AU706191B2 (en) * | 1995-12-13 | 1999-06-10 | Castle Graphics Pty Limited | Labels and method of manufacturing labels |
| US5863628A (en) * | 1996-08-08 | 1999-01-26 | Inprint Systems, Inc. | Self-adhesive labels and manufacture thereof |
| GB2319762B (en) | 1996-11-28 | 2000-06-28 | Instance Ltd David J | Manufacture of self-adhesive labels |
| ITTO970043A1 (en) * | 1997-01-23 | 1998-07-23 | Euroway S R L | PROCEDURE FOR THE PRODUCTION AND APPLICATION OF COLOR PRINTED SHEETS, WITH DIGITAL PRINTING SYSTEM, ON THE INSTRUMENT CASES |
| US6086694A (en) * | 1997-04-01 | 2000-07-11 | Stanley Lerner | High speed web machine |
| DE19726982B4 (en) * | 1997-06-25 | 2005-12-29 | Peter Prinz | Device for producing multi-layer folded labels |
| US6182572B1 (en) * | 1998-08-29 | 2001-02-06 | Malessa Partners, L.L.C. | Method and apparatus for producing multiple cut business forms |
| AUPQ439299A0 (en) * | 1999-12-01 | 1999-12-23 | Silverbrook Research Pty Ltd | Interface system |
| US6378588B1 (en) * | 1999-05-28 | 2002-04-30 | The Standard Register Company | Apparatus for in-line folding and affixing of tuck label |
| US6656555B1 (en) * | 1999-10-13 | 2003-12-02 | Malessa Partners, L.L.C. | Integrated forms and method of making such forms |
| US6986820B2 (en) * | 2000-01-21 | 2006-01-17 | Kimberly-Clark Worldwide, Inc. | Processes and apparatus for making disposable absorbent articles |
| US6951596B2 (en) | 2002-01-18 | 2005-10-04 | Avery Dennison Corporation | RFID label technique |
| US7077435B1 (en) | 2001-08-16 | 2006-07-18 | Cowan Randy G | Label structure and method of forming the label structure |
| US6439614B1 (en) | 2001-08-16 | 2002-08-27 | Randy G. Cowan | Nested leaflet label structure |
| US7824029B2 (en) * | 2002-05-10 | 2010-11-02 | L-1 Secure Credentialing, Inc. | Identification card printer-assembler for over the counter card issuing |
| US7063874B2 (en) * | 2002-10-04 | 2006-06-20 | Raypress Corporation | Paperback rider instantly redeemable coupon |
| ITBO20040405A1 (en) * | 2004-06-25 | 2004-09-25 | Gd Spa | METHOD AND UNIT TO FOLD COUPON INTO A PACKAGING MACHINE |
| US7947351B1 (en) | 2007-08-06 | 2011-05-24 | Cowan Randy G | Label structure incorporating a leaflet for use on small containers |
| US8003183B1 (en) | 2007-08-06 | 2011-08-23 | Randy G Cowan | Label structure incorporating a leaflet for use on small containers |
| US8399083B2 (en) * | 2007-08-06 | 2013-03-19 | Randy G. Cowan | Label structure incorporating a leaflet for use on small containers |
| JP4664960B2 (en) * | 2007-12-11 | 2011-04-06 | 株式会社サトー知識財産研究所 | Label sheet making device |
| US8101256B1 (en) | 2008-02-21 | 2012-01-24 | Cowan Randy G | Label structure including a two ply reclosable flap |
| US7842155B1 (en) | 2008-07-17 | 2010-11-30 | Randy Cowan | Process for making a post-assembly markable label |
| US8007623B2 (en) * | 2009-03-27 | 2011-08-30 | Curt G. Joa, Inc. | Apparatus and method for intermittent application of stretchable web to target web |
| US8673098B2 (en) | 2009-10-28 | 2014-03-18 | Curt G. Joa, Inc. | Method and apparatus for stretching segmented stretchable film and application of the segmented film to a moving web |
| US9259891B2 (en) | 2013-06-14 | 2016-02-16 | Electronic Imaging Services, Inc. | Pad of labels and labels for use on store shelves in a retail environment |
| US9376286B1 (en) | 2014-09-02 | 2016-06-28 | Electronic Imaging Services, Inc. | Label stacking machine and method |
| CN106944364A (en) * | 2017-03-08 | 2017-07-14 | 苏州飞人自动化设备有限公司 | Automatic waste removing and mark supplementing method and device based on accurate cutting |
| CN106944363A (en) * | 2017-03-08 | 2017-07-14 | 苏州飞人自动化设备有限公司 | Automatic waste-removing and mark-supplementing method and device based on die cutting punching |
| CN110271225A (en) * | 2019-04-10 | 2019-09-24 | 江苏麦瑞特科技有限公司 | A kind of double folding tag device and its process flow |
| US11618177B1 (en) | 2022-04-12 | 2023-04-04 | Bradley W Boesel | Orbital knife |
Family Cites Families (37)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US3713948A (en) * | 1970-12-14 | 1973-01-30 | Xerox Corp | Labeling machine |
| JPS581827B2 (en) * | 1977-07-21 | 1983-01-13 | 神鋼電機株式会社 | Aviation bus tag printing device |
| DE2913538C2 (en) * | 1979-04-04 | 1983-04-07 | Jagenberg-Werke AG, 4000 Düsseldorf | Labeling station for objects such as bottles |
| US4274903A (en) * | 1979-07-13 | 1981-06-23 | Mock Vernon A | High speed programmable pressure-sensitive transfer tape applicator |
| US4359358A (en) * | 1980-03-17 | 1982-11-16 | Graphic Resources, Inc. | In-store coupon and methods |
| JPS58151655A (en) * | 1982-03-03 | 1983-09-08 | Fujitsu Ltd | Information processing device |
| GB2122968B (en) * | 1982-06-25 | 1985-09-04 | Instance David John | Method and apparatus for producing labels |
| GB2127378B (en) * | 1982-09-15 | 1985-07-24 | David John Instance | Methods of producing labels |
| GB8316796D0 (en) * | 1983-06-21 | 1983-07-27 | Instance D J | Label |
| GB2152005B (en) * | 1983-12-23 | 1987-07-15 | Photoleaflets | Self-adhesive prints or labels |
| GB2159118B (en) * | 1984-05-18 | 1987-07-08 | David John Instance | Method and apparatus for producing labels |
| GB2164915B (en) * | 1984-09-27 | 1988-04-07 | Instance Ltd David J | Producing composite labels |
| EP0180365B1 (en) * | 1984-10-29 | 1992-05-20 | David John Instance | Labels and manufacture thereof |
| GB2186545B (en) * | 1986-01-24 | 1989-11-01 | Instance Ltd David J | Labels and manufacture thereof |
| GB2191463B (en) * | 1986-06-11 | 1990-05-02 | Instance Ltd David J | A label |
| GB8623496D0 (en) * | 1986-09-30 | 1986-11-05 | Ko Pack Uk Ltd | Labels |
| IT210015Z2 (en) * | 1987-03-02 | 1988-11-14 | Pulsar Di Resta Alessandro E C | SELF-ADHESIVE LABEL-PUNCH WITH SILICONE PAPER TONGUE. |
| US4738079A (en) * | 1987-04-07 | 1988-04-19 | Lantech, Inc. | Method and apparatus for severing packaging material between successive wrapped loads during a continuous wrapping process |
| GB2212474B (en) * | 1987-11-24 | 1992-04-15 | Instance Ltd David J | Labels and manufacture thereof |
| SE457070B (en) * | 1987-12-14 | 1988-11-28 | Alf Baellgren | KEEPING AND DEVICE FOR MAKING DOUBLE WEIGHT LABELS |
| GB2218541B (en) * | 1988-05-11 | 1993-04-21 | Instance Ltd David J | Method of and apparatus for producing labels |
| GB2223476B (en) * | 1988-08-16 | 1992-09-02 | Instance Ltd David J | Labels and manufacture thereof |
| US5083979A (en) * | 1988-09-29 | 1992-01-28 | Burt Dennis M | Protective label form and method |
| GB8827507D0 (en) * | 1988-11-24 | 1988-12-29 | Instance Ltd David J | Labels & manufacture thereof |
| EP0386849B1 (en) * | 1989-03-03 | 1994-09-28 | Fransiscus Stouten | Method of producing labels and a label |
| ATE165470T1 (en) * | 1989-09-28 | 1998-05-15 | David John Instance | LABEL AND ITS PRODUCTION |
| GB8921925D0 (en) * | 1989-09-28 | 1989-11-15 | Instance Ltd David J | Labels and manufacture thereof |
| ATE119470T1 (en) * | 1989-09-28 | 1995-03-15 | David John Instance | LABELS AND THEIR PRODUCTION. |
| US5021110A (en) * | 1989-11-20 | 1991-06-04 | Ko-Pack Corporation | Process for manufacturing self-adhesive multilayer label |
| IE893823A1 (en) * | 1989-11-30 | 1991-06-05 | Creative Europ Ltd | A carrier |
| US5017257A (en) * | 1989-12-26 | 1991-05-21 | Imtec Inc. | Variable length die cutter and method of cutting composite label |
| GB2248052B (en) * | 1990-08-31 | 1994-06-08 | Instance Ltd David J | Bag ties and manufacture thereof |
| GB2247662B (en) * | 1990-08-31 | 1994-11-02 | Instance Ltd David J | Labels and manufacture thereof |
| AU8745391A (en) * | 1990-09-27 | 1992-04-28 | Computype, Inc. | Rotary die cutting mechanism |
| US5127676A (en) * | 1991-02-25 | 1992-07-07 | Ccl Label, Inc. | Folded leaflet label |
| US5219183A (en) * | 1991-11-15 | 1993-06-15 | Ccl Label, Inc. | Printable sheet having separable card |
| US5413651A (en) * | 1993-03-23 | 1995-05-09 | B&H Manufacturing Company | Universal roll-fed label cutter |
-
1994
- 1994-05-27 GB GB9410729A patent/GB2289664B/en not_active Expired - Fee Related
- 1994-07-19 GB GB9414557A patent/GB2289665B/en not_active Expired - Fee Related
-
1995
- 1995-05-03 EP EP98203795A patent/EP0914940A3/en not_active Withdrawn
- 1995-05-03 ES ES95303033T patent/ES2136796T3/en not_active Expired - Lifetime
- 1995-05-03 DE DE69511457T patent/DE69511457T2/en not_active Expired - Fee Related
- 1995-05-03 EP EP95303033A patent/EP0684129B1/en not_active Expired - Lifetime
- 1995-05-03 DK DK95303033T patent/DK0684129T3/en active
- 1995-05-03 AT AT95303033T patent/ATE183435T1/en not_active IP Right Cessation
- 1995-05-15 CA CA002149389A patent/CA2149389A1/en not_active Abandoned
- 1995-05-15 AU AU20046/95A patent/AU696333B2/en not_active Ceased
- 1995-05-18 TW TW084104941A patent/TW375581B/en active
- 1995-05-18 US US08/443,669 patent/US5674334A/en not_active Expired - Fee Related
- 1995-05-18 TW TW086101729A patent/TW348116B/en active
- 1995-05-26 ZA ZA954329A patent/ZA954329B/en unknown
-
1999
- 1999-10-27 GR GR990402741T patent/GR3031652T3/en unknown
-
2001
- 2001-05-02 US US09/846,193 patent/US20010022213A1/en not_active Abandoned
Cited By (7)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US20030144853A1 (en) * | 2002-01-25 | 2003-07-31 | Stehouwer William J. | Carton labeling system and process |
| US20030234073A1 (en) * | 2002-06-21 | 2003-12-25 | Franko, Joseph D. | Roll-to-roll method of creating extended text labels |
| US6811640B2 (en) * | 2002-06-21 | 2004-11-02 | Quality Assured Enterprises, Inc. | Roll-to-roll method of creating extended text labels |
| US20050049130A1 (en) * | 2003-09-03 | 2005-03-03 | Joseph Kosa | Printing registration product and method |
| US20050204978A1 (en) * | 2004-03-22 | 2005-09-22 | Huddleston David E | Repositionable adhesive mounted fabric assembly and decoration process |
| US20090167013A1 (en) * | 2005-11-30 | 2009-07-02 | Max Co., Ltd. | Release coated paper-attached label and label printer |
| US20110070384A1 (en) * | 2009-09-18 | 2011-03-24 | The Coca-Cola Company | Wrap-around label, label stock and label processing |
Also Published As
| Publication number | Publication date |
|---|---|
| GB2289664A (en) | 1995-11-29 |
| EP0684129A3 (en) | 1997-01-29 |
| DE69511457T2 (en) | 2000-03-09 |
| ZA954329B (en) | 1996-05-14 |
| AU696333B2 (en) | 1998-09-10 |
| CA2149389A1 (en) | 1995-11-28 |
| DE69511457D1 (en) | 1999-09-23 |
| EP0684129A2 (en) | 1995-11-29 |
| TW348116B (en) | 1998-12-21 |
| EP0914940A2 (en) | 1999-05-12 |
| ES2136796T3 (en) | 1999-12-01 |
| ATE183435T1 (en) | 1999-09-15 |
| AU2004695A (en) | 1995-12-07 |
| GB9410729D0 (en) | 1994-07-13 |
| EP0914940A3 (en) | 2004-08-11 |
| GB9414557D0 (en) | 1994-09-07 |
| US5674334A (en) | 1997-10-07 |
| GB2289665A (en) | 1995-11-29 |
| GR3031652T3 (en) | 2000-02-29 |
| GB2289664B (en) | 1998-04-29 |
| GB2289665B (en) | 1998-03-04 |
| EP0684129B1 (en) | 1999-08-18 |
| DK0684129T3 (en) | 1999-12-06 |
| TW375581B (en) | 1999-12-01 |
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Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| STCB | Information on status: application discontinuation |
Free format text: ABANDONED -- FAILURE TO RESPOND TO AN OFFICE ACTION |