EP3781410A1 - Installation de fabrication servant à produire des documents de sécurité ou des livres - Google Patents
Installation de fabrication servant à produire des documents de sécurité ou des livresInfo
- Publication number
- EP3781410A1 EP3781410A1 EP19730767.1A EP19730767A EP3781410A1 EP 3781410 A1 EP3781410 A1 EP 3781410A1 EP 19730767 A EP19730767 A EP 19730767A EP 3781410 A1 EP3781410 A1 EP 3781410A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- production
- component
- adhesive
- designed
- manufacturing
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Granted
Links
Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42D—BOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
- B42D25/00—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
- B42D25/20—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof characterised by a particular use or purpose
- B42D25/24—Passports
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42C—BOOKBINDING
- B42C13/00—Bookbinding presses; Joint-creasing equipment for bookbinding; Drying or setting devices for books
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42C—BOOKBINDING
- B42C19/00—Multi-step processes for making books
- B42C19/08—Conveying between operating stations in machines
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42C—BOOKBINDING
- B42C9/00—Applying glue or adhesive peculiar to bookbinding
- B42C9/0056—Applying glue or adhesive peculiar to bookbinding applying tape or covers precoated with adhesive to a stack of sheets
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42D—BOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
- B42D25/00—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
- B42D25/30—Identification or security features, e.g. for preventing forgery
- B42D25/305—Associated digital information
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42D—BOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
- B42D25/00—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
- B42D25/40—Manufacture
- B42D25/45—Associating two or more layers
- B42D25/455—Associating two or more layers using heat
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42D—BOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
- B42D25/00—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
- B42D25/40—Manufacture
- B42D25/45—Associating two or more layers
- B42D25/46—Associating two or more layers using pressure
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B42—BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
- B42D—BOOKS; BOOK COVERS; LOOSE LEAVES; PRINTED MATTER CHARACTERISED BY IDENTIFICATION OR SECURITY FEATURES; PRINTED MATTER OF SPECIAL FORMAT OR STYLE NOT OTHERWISE PROVIDED FOR; DEVICES FOR USE THEREWITH AND NOT OTHERWISE PROVIDED FOR; MOVABLE-STRIP WRITING OR READING APPARATUS
- B42D25/00—Information-bearing cards or sheet-like structures characterised by identification or security features; Manufacture thereof
- B42D25/40—Manufacture
- B42D25/45—Associating two or more layers
- B42D25/465—Associating two or more layers using chemicals or adhesives
- B42D25/47—Associating two or more layers using chemicals or adhesives using adhesives
Definitions
- Security documents such as passports are usually first produced in large quantities as raw documents and then personalized.
- passports are usually produced as a book document with a document cover and a multi-page, in particular sewn, paper stack (also: paper set) inserted in the document cover.
- electronic devices or components for example RFID transponders that can be read without contact, into the security or book documents in order to add further security features to the security or book documents.
- RFID transponders for example RFID transponders that can be read without contact
- Both pre-programmed and freely programmable electronic devices or components can be integrated into the security documents, for example to store personal data or to enable the integrity of the security document to be checked using an individually readable electronic document key.
- Another disadvantage of known methods for the production of security or book documents, in particular with electronic devices or components, is that the electronic components can subsequently be detached and / or exchanged from the security document, for example by removing or replacing a security Inlays or a set of papers from a book document. In this way, the integrity of a can electronically readable documents key to be undermined In ⁇ play. Underlying problem
- a method or a device which increases the efficiency of the production of security or book documents and / or at least makes subsequent change or falsification of the security or book documents to be made more difficult.
- a production facility for the production of security or book documents has a main conveying device which is designed and arranged to convey a first production component for a security or book document along a main conveying direction.
- a first secondary conveying device is designed and arranged to convey at least one second production component for a security or book document along a first secondary conveying direction.
- a first heating unit is designed and arranged to heat an adhesive.
- a first coating device is designed and arranged to apply the heated adhesive to at least part of a surface of the second production component.
- a first positioning device is designed and arranged to arrange the second production component with the heated adhesive on the first production component.
- a thermopress is designed and arranged to press the first production component and the production components arranged on the first production component together.
- the first coating device is at least further constructed and arranged, at least so much heated glue on at least component part of the second Vietnameseskom ⁇ apply that raised elements are converts from the heated adhesive from the surface of the second production component so that the heated adhesive on the second manufacturing component forms an essentially flat adhesive contact surface without raised elements.
- a production system for the production of security or book documents has a main conveying device which is designed and arranged to convey a first production component for a security or book document along a main conveying direction.
- a first secondary conveying device is designed and arranged to convey at least one second production component for a security or book document along a first secondary conveying direction.
- Electronic devices or components in particular, can be arranged on a surface of the second production component.
- a first heating unit is designed and arranged to heat an adhesive. Furthermore, a first coating device is designed and arranged to apply the heated adhesive to at least part of a surface of the second production component.
- the adhesive can in particular be applied to a part of a surface on which electronic devices or components are arranged.
- a first positioning device is designed and arranged to arrange the second production component with the heated adhesive on the first production component.
- the second production component can be arranged on the first production component in such a way that the adhesive establishes an adhesive connection between the first and the second production component.
- a thermal press is constructed and arranged to compress the first production component and arranged on the first production component manufacturing components MITEI ⁇ Nander.
- a compression of the manufacturing components here refers to the temporary application of a compressive force to the successive manufacturing arranged ⁇ components such that the arranged on the first production component / n production component / s of the first production component are pressed in direction.
- At least the first coating apparatus is embodied and arranged, at least so much heated adhesive component on at least a portion of the second Vietnameseskom ⁇ apply that - when applying that - when raised from the surface of the second production component elements, for example electronic components having - the raised from the surface of the second production component elements of the heated glue at least partially be reshaped so that the heated adhesive on the second production component forms a plane adhesive contact surface, without it ⁇ habene elements.
- This flat adhesive contact surface without raised elements can produce the adhesive connection to the first production component in such a way that the first and / or the second production component and the adhesive completely surround the raised elements, which can be arranged on the second production component, in cooperation.
- raised elements on the surface of the second production component, to which the first coating unit at least partially applies adhesive is not a mandatory requirement. If there are no raised elements on the surface of the second production component, to which adhesive is at least partially applied by the first coating unit, the application of the adhesive forms a flat contact surface, in which case there are no requirements for the material thickness / Thickness of the adhesive application. However, if raised elements are present on the surface of the second production component, to which adhesive is at least partially applied by the first coating unit, the material thickness / thickness of the adhesive application must be at least so large / high that the adhesive at least partially reshapes the raised elements and there is a flat adhesive contact surface without raised elements,
- Unevenness on the surface of the second production component, to which adhesive is at least partially applied by the first coating unit, can also be compensated for by the adhesive layer, so that a flat adhesive contact surface results.
- At least triedbiidet the first coating device to and angeord ⁇ net be at least so much heated glue supply component applied to at least a portion of the second Ferti ⁇ that order from the surface of the first production component raised elements, for example electronic components, from the heated adhesive ⁇ are formed as soon as the second positioning device arranges the second production component with the heated adhesive on the first production component.
- the first and second production components and the adhesive can completely surround the raised elements of the first production component, for example electronic components.
- An advantage of such apparatus is that, for example, the electronic components or other raised elements not to be prepared for this purpose recesses in depressions or from ⁇ a production component to move and / or are to be fixed. Rather , the components / devices are shaped by the heated and thus softened / melted adhesive in such a way that the components / devices are shaped in the adhesive layer that connects the first and the second production components. are recorded conclusively and can be detached from it only with difficulty, at least after the adhesive has cooled and / or the production components have been pressed.
- a second secondary conveying device can be designed and arranged to convey a third production component for a security or book document along a second secondary conveying direction.
- a second heating unit can be designed and arranged to heat an adhesive.
- a second coating device can be designed and arranged to apply the heated adhesive to at least part of the third production component.
- a second positioning device can be designed and arranged to arrange the third production component with the heated adhesive on the first and / or the second production component.
- the production components can be arranged in batches by the production system, so that the second production component is arranged on the first production component and then the third production component is arranged on the second production component.
- the second coating apparatus may further constructed and arranged to be to apply at least so much heated glue on at least component part of the third manufacturing ⁇ that erha- bene elements from the heated adhesive are transforms of the surface of the third production component so that the heated adhesive - fabric on the third manufacturing component forms a flat adhesive contact surface without raised elements.
- the second coating device and arranged to apply at least so much heated glue on at least component part of the third Vietnameseskom ⁇ that the from the surface of the first and / or second Vietnameseskom ⁇ component raised elements, such as electronic components, of ⁇ heated adhesive material be reshaped, as soon as the positioning device, the third Vietnameseskomponen ⁇ te with the heated adhesive on the first and / or second component to manufacturing ⁇ arranged.
- the first and / or second and third production components and the adhesive can completely surround the raised elements of the first and / or second production components, for example electronic components.
- a layered structure of the security document ⁇ ment can be carried out, wherein a plurality of production elements are respectively disposed to each other or partially next to each other on the first production element, each production element comparable with at least one further manufacturing element with an adhesive can be bound which positively encloses raised elements arranged on the respective production elements, in particular electronic components, so that the layered structure of the security document produced has no raised elements / components on an outer surface.
- the first manufacturing component can be an envelope for a security or book document and the second manufacturing component can be an envelope inlay for a security or book document with an RFID transponder positioned on a surface of the envelope inlay.
- the surface of the envelope inlay on which the RFID transponder is positioned can be coated with the heated adhesive by the first coating device in such a way that the heated adhesive forms the RFID transponder so that the heated adhesive forms a flat contact surface on the surface of the envelope inlay
- the first positioning device can arrange the envelope inlay with the heated adhesive on the envelope in such a way that the flat contact surface of the heated adhesive is brought into contact with the envelope, in particular with an inside of the envelope.
- the envelope with the glued cover inlay can compressed and / or cooled, This allows a safety or book documents with an integrated RFID transponder produced who ⁇ without the RFID tag in advance depressions and / or recesses, for Example in the cover of the security or book document would have to be produced.
- An exact alignment of the RFID transponder on the envelope inlay can also be omitted. Manufacturing efficiency can thereby be increased and manufacturing costs can be reduced.
- the first and / or second secondary conveying device can convey several, in particular two, production elements in parallel along the respective secondary conveying direction.
- the parallel supported each manufacturing components can be coated fabric by the first or second coating device with adhesive ⁇ and sequentially through the first or second positioning means, either simultaneously / parallel or in succession / disposed on the first and / or the second manufacturing component respectively.
- two cover inlays can be simultaneously conveyed through the first secondary conveyor, coated with the heated adhesive by the first coating device, and arranged on a cover for a book document, in particular on an inside of the cover, by the first positioning device.
- a shock In order ⁇ inlay arranged on one half or on an inner surface of an envelope for a book document / glued respectively.
- the first manufacturing component can be a sewn paper stack / paper set for a security or book document and the second manufacturing component can be an envelope inlay for a security or book document with an RFID transponder positioned on a surface of the envelope inlay.
- the third manufacturing component can be an envelope for a security or book document.
- the envelope inlay can be arranged / glued onto the paper stack / paper set by the first positioning device, wherein the envelope can in turn be arranged / glued onto the envelope inlay and / or onto the paper stack / paper set by the second positioning device.
- two envelope inlays can be arranged / glued onto the sewn paper stack / paper set by the first positioning device, wherein the envelope can in turn be arranged / glued onto the envelope inlays by the second positioning device.
- the production system can also have a first storage magazine, which is designed and arranged to provide a plurality of first production components, and / or a first separating mechanism, which is designed and arranged to separate the provided first production components and to the main conveyor handed over, exhibit.
- the production system can have a first centering station, which is designed and arranged to align the production components conveyed by the main conveyor device on the basis of a predetermined target position.
- the first centering station can align the conveyed production components, for example with suitable stop elements, for example in the x and / or y direction.
- the manufacturing system can further comprises a second supply magazine, which is designed and arranged to a plurality of second manufacturing components ready ⁇ determine and / or a second separating mechanism which is constructed and arranged to separate the second manufacturing components provided and to the to pass the first secondary conveyor.
- the production plant may have a second centering station, which to this is excluded and is arranged supported by the first side conveyor Ferti ⁇ supply components on the basis of a predetermined nominal position align.
- Can rierstation the second centering ⁇ the promoted production components for example, suitable for this purpose, for example, stop elements in the x and / or y direction to align.
- the production system can have a first assembly device which is designed and arranged to equip the production components conveyed by the first secondary conveyor device with electronic components, in particular with RFID transponders.
- already assembled production components can be provided by the second storage magazine and / or conveyed by the first secondary conveyor.
- the production system can have a third storage magazine, which is designed and arranged to provide a plurality of third production components, and / or a third separating mechanism, which is designed and arranged to separate and provide the third production components provided to hand over the second secondary conveyor.
- the production system can have a third centering station, which is designed and arranged to align the production components conveyed by the second secondary conveyor device on the basis of a predetermined target position.
- the third centering station can align the conveyed production components, for example with suitable stop elements, for example in the x and / or y direction.
- the production plant may have a second mounting device which is constructed and arranged that the promoted by the second side conveyor ⁇ th manufacturing components with electronic components, in particular to be fitted with RFID transponders.
- a second mounting device which is constructed and arranged that the promoted by the second side conveyor ⁇ th manufacturing components with electronic components, in particular to be fitted with RFID transponders.
- already stocked manufacturing components through the third supply magazine provided and / or by the second side conveyor ge ⁇ promotes be.
- the main conveying device can convey the first manufacturing component (s) in cycles, and / or the first secondary conveying device can convey the second manufacturing component (s) in cycles. Further, the second sub-conveyor, the third / n manufacturing ⁇ component / n cycles promote.
- the main conveyor and / or the first secondary conveyor and / or the second secondary conveyor can each be designed as a conveyor belt with drivers that are regularly spaced apart from one another.
- the main conveyor and / or the first secondary conveyor and / or the second secondary conveyor can each capture one or more, in particular optically de, have position detection sensors, which are arranged and designed to detect a position of a conveyed manufacturing component on the main conveyor and / or on the first secondary conveyor and / or on the second secondary conveyor.
- the positioning device (s) can be controlled and / or adjusted on the basis of the detected position (s) of the respectively conveyed production components.
- the first and / or the second positioning device can each be designed as a vacuum gripper.
- the first positioning device which in particular can be a vacuum gripper, can be arranged and designed to receive the second production component from the first secondary conveyor device, then to convey it to the first coating device, which applies the heated adhesive to at least part of the second production component , and then to arrange the second manufacturing component on the first manufacturing component.
- the second positioning device which in particular can be a vacuum gripper, can be arranged and designed to receive the third production component from the second secondary conveyor, then to convey it to the second coating device, which applies the heated adhesive to at least part of the third production component, and the then arrange the third production component on the first and / or second production component.
- first and / or second positioning device which in each case can be a vacuum gripper in particular, can be arranged and designed to be able to be swung out manually from an intended working position by an operator, for example to facilitate maintenance work.
- the first positioning device is a vacuum gripper which has at least one (or two, three, four ...) holding element (s) with a contact surface for contacting the second production component, the first positioning device being designed such that the holding element between a first position, in which the plant ⁇ surface plane and a second position in which the contact surface is curved outwardly, back and forth movable.
- the vacuum gripper can have two, three or four holding elements.
- the second production component takes over the curvature of the contact surface given in the second position and thus when it is put on io
- the first manufacturing component first contacts this only with a central area and then with the rest of the area. This movement sequence allows air inclusions or small air bubbles to escape particularly easily, so that the probability is reduced that there are undesired air inclusions within the adhesive connection. In this way, an improved quality of the adhesive bond can be achieved overall.
- the first positioning device furthermore has a plate element and at least one (or two, three, four ...) bending element (s), the design being such that the holding element lies flat against the plate element in the first position and in the second position is spaced apart from the plate element in a central region by the bending element.
- one bending element can be provided per holding element.
- the bending element can be, for example, a lifting cylinder which is arranged to reach through an opening formed in a central region of the plate element, the lifting cylinder being able to be extended out of the opening and inserted into the opening.
- the holding element can be moved back and forth between the first position and the second position by the bending element.
- an edge region of the retaining element is connected to the plate member ver ⁇ , then that the edge region can not become detached from the plate member, insbesonde ⁇ also not re, when the holding member is in the second position.
- the first positioning device furthermore has a drive unit which is designed and arranged to move the plate element together with the holding element arranged thereon and the second production component held on the holding element in a spring direction in a first direction pointing towards the first production component.
- a drive unit which is designed and arranged to move the plate element together with the holding element arranged thereon and the second production component held on the holding element in a spring direction in a first direction pointing towards the first production component.
- the drive unit is further designed and arranged to move the plate element together with the holding element arranged thereon in a second direction opposite to the first direction.
- the holding element can be suitably detached from the second production component after the gluing process has taken place.
- the drive unit has a rotary cylinder which is spring-mounted.
- the drive unit can have at least one ball screw.
- the first positioning device is designed and arranged to carry out the following movement sequence:
- the second production component is picked up by the vacuum gripper, so that the second production component rests on the holding element.
- the side of the second production component on which the adhesive is applied points away from the holding element. If the holding element is not already in the second position, the holding element is moved into the second position by the bending element, so that the second manufacturing component is given a slight curvature.
- the holding element is slowly moved back into the first position by the bending element until the holding element rests flat on the second production component with its contact surface.
- the first positioning device is detached or lifted from the second production component after the adhesive layer has dried in one embodiment as follows: First, an outer region of the holding element is detached from the second production component by the holding element being moved from the first position by the bending element in the second position is moved and at the same time the plate element is moved away from the production components glued together by the drive unit. Subsequently, also the remaining portion of the holding member is released from the second production component by the plate element with the retaining element by the drive unit continue ⁇ be moved is.
- the second positioning device is designed in an analogous manner to hold and move the third production component.
- the main conveying direction and the first secondary conveying direction and / or the second secondary conveying direction can run at an angle to one another, in particular essentially orthogonally to one another.
- An advantage here is that the production system can be implemented in a particularly compact and space-saving manner.
- the adhesive to be heated can be an, in particular solvent-resistant, thermally activatable and / or reactive adhesive.
- the adhesive can be a hot melt adhesive based on PUR.
- the adhesive cannot be thermally activated again after curing on a production component.
- a reactive hot melt adhesive can be used which, after being heated for the first time and then cooling, cannot be softened / liquefied again by heating again, or at least cannot be softened / liquefied again by heating to the original production temperature.
- An advantage here is that an electronic component, for example, which is at least partially surrounded by a form fit ⁇ such a reactive adhesive does not or can only with great difficulty nondestructive exchanged or removed from the safety or book document.
- a reactive hot melt adhesive can not interconnected or bonded manufacturing components or has difficulties destruc ⁇ approximately freely be detached from one another.
- the heating unit may be arranged and configured to heat the adhesive least ⁇ min 135 ° Celsius.
- the first and / or second heating unit and / or the first and / or the second Be ⁇ coating device may be a suction nozzle for glue vapors have.
- first and / or the second heating unit and / or the first and / or the second coating device can be assemblies separately formed from the production system.
- the heating unit / s and / or the coating device may / s on a transport pedestal, for example on a roller ⁇ subset to be mounted and positioned by an operator.
- An advantage here is that the heating unit (s) and / or the coating device (s) can easily be exchanged, serviced and / or replaced.
- the thermal press of the production system can have a first press plate and a second press plate, the first press plate being heatable with a first press heating unit and / or being coolable with a first press cooling unit.
- the second press plate can be heated with a second press heating unit and / or can be cooled with a second press cooling unit.
- the thermal press can also be set up to press the production components with a predetermined pressing temperature and / or a predetermined pressing pressure and / or a predetermined pressing temperature curve and / or a predetermined pressing pressure curve and / or a predetermined pressing duration.
- thermopress allows the adhesive to cool down or harden under predetermined, reproducible pressure and temperature conditions.
- the thermal press can be arranged laterally to the main conveying direction next to the main conveying device.
- thermopress next to the main conveyor device which can be, for example, a conveyor belt
- main conveyor device which can be, for example, a conveyor belt
- the production system can also have a first press slide, which is designed and arranged to convey the stacked production components from the main conveyor to a position between the first press plate and the second press plate, and a second press slide, which is designed and arranged for this purpose. convey the stacked manufacturing components from a position between the first press plate and the second press plate onto the main conveyor.
- the first and the second slide can each convey or shift the production components arranged one on top of the other in a direction that is at an angle, in particular essentially orthogonal, to the main conveying direction.
- the production components to be pressed can be moved with the first slide from the main conveyor into a press space which is defined between the first press plate and the second press plate.
- the second slide the, in particular pressed, manufacturing components can be moved from the press space onto the main conveyor device.
- the thermopress has a press support and a press plate, the press plate being heatable with a press heating unit and / or being coolable with a press cooling unit.
- the presses are adjustable, for example by means of a knee lever.
- the press support can also be designed to be heatable and / or coolable. In this way, it can be achieved that the production components can be heated or cooled more.
- the thermal press is arranged on the main conveyor.
- the press support can be arranged at the level of the main transport.
- the thermal press is also designed, in one configuration, to press the production components with a predetermined pressing temperature and / or a predetermined pressing pressure and / or a predetermined pressing temperature curve and / or a predetermined pressing pressure curve and / or a predetermined pressing duration.
- This design enables the production components to be connected particularly quickly because, in contrast to the above-mentioned thermal press arranged laterally to the main conveying direction, no lateral displacement of the manufacturing components from the main conveying direction into the thermopress is required. In addition, a simpler construction is possible because no slides or the like are necessary for the lateral movement.
- thermopress is also provided, which is designed and arranged to press the third production component and the production components arranged on the third production component together.
- thermopresses ensure that the respective manufacturing components are pressed after each of the two positioning steps in question, and thus the adhesive is immediately cured. In this way, better adhesion is made possible, that is, an improved quality of the adhesive bond. This can also reduce potential air pockets.
- a vacuum suction and / or an air-permeable material such as paper or Teflon, is provided on the press plate or on at least one of the press plates in order to allow air to escape during the gluing process or during pressing.
- openings can be provided for this purpose in the press plate or in the press plates. The same can also be provided for the press support.
- the production system can also have a control device.
- the control device can include, for example, optical sensors or readout devices for RFID transponders.
- the control device can check the manufactured security or book documents and / or the production components to be manufactured for external damage and / or the functionality of electronic components or devices, for example of RFID transponders.
- first and / or second secondary conveying device in each case conveys a plurality, for example two, manufacturing components in parallel and the manufacturing components conveyed in parallel each have electronic components or devices, in particular RFID transponders
- a plurality of reading devices can be in the area the first and / or second secondary conveyor.
- the number of readout devices can correspond to the number of manufacturing components with electronic components that are conveyed in parallel.
- a method for producing security or book documents has the following steps:
- the method can further comprise at least one of the following steps:
- Fig. 1 shows schematically an example of a production plant for security or book documents.
- FIG. 2 schematically shows an example of a structure of a security or book document.
- 3 schematically shows a further example of a structure of a security or book document.
- 4 also schematically shows an example of a structure of a security or book document.
- FIG. 5 shows schematically in cross section a first example of a design of a positioning device.
- FIG. 6 schematically shows in cross section a second example of a design of a positioning device.
- FIG. 7 shows schematically in cross section a variant of the example shown in FIG. 6.
- FIG. 8 shows a plan view corresponding to the representation from FIG. 7.
- Fig. 9 shows schematically another example of the design of the manufacturing plant.
- FIG. 1 shows an example of a production plant 1 for security or book documents.
- the production system 1 has a main conveyor belt 10, which transports the first production components, for example envelopes for book documents to be produced, in cycles in the conveying direction F.
- a first storage magazine 11 stores a large number of first production components, which are arranged individually on the main conveyor belt 10 by a first separating mechanism 12.
- a first centering station aligns these first production components, possibly based on a predetermined target position.
- the camera sensors 14, 15 and 16 each determine a position and a position of the first production components on the conveyor belt 10.
- An output unit 13 is set up to take over the produced security or book documents or components for security or book documents from the main conveyor belt and spend and / or stockpile.
- the first secondary conveyor belt 20 which guides the second production components, for example envelope inlays, in cycles in the conveying direction NI.
- the first secondary conveyor 20, a second storage magazine 21 and a second separating mechanism 22 are assigned.
- the second storage magazine 21 stores a large number of second production components, for example cover inlays for book documents, on each of which an RFID transponder is positioned, so that the surface of the cover inlays on which the RFID transponders are positioned are electronic components and thus raised elements. has elements.
- the RFID transponders can be attached to a surface of the envelope inlays and / or can be raised in relief from the surface of the envelope inlays.
- the second separating mechanism 22 arranges the second production components, for example the envelope inlays, individually on the secondary conveyor belt 20, which conveys the second production components in cycles.
- a second centering station 23 aligns the production components conveyed by the first secondary conveyor belt on the basis of a predetermined target position.
- a first adhesive heater 24 holds a reactive PUR adhesive ready.
- the first adhesive heater 24 heats at least part of the reactive PUR adhesive and provides the heated PUR adhesive to a first coating device 25 for processing.
- the first coating device 25 coats a surface of the production components conveyed on the first conveyor belt 20 with the heated PUR adhesive.
- the first coating device 25 can coat envelope inlays conveyed on the first secondary conveyor belt with adhesive.
- the first coating unit 25 coats a surface of the conveyed production components with the adhesive in such a way that raised elements on the coated surface, for example an RFID transponder, are completely enclosed by the adhesive and the production component or are at least shaped in such a way that a flat adhesive contact surface without protruding / excellent elements arise from this adhesive contact surface.
- raised elements for example RFID transponders arranged on an envelope inlay
- this flat adhesive contact surface can also be generated when the production component being conveyed has no raised elements, for example in the case of compensation or buffer inlays for a book document.
- a camera sensor 26 detects a position of the coated second production components on the first secondary conveyor belt 20 and uses a downstream image evaluation to check whether the production components have property and / or position errors.
- a first positioning device 27 picks up one of the second production components, for example a coated envelope inlay, which is cyclically conveyed by the first secondary conveyor belt 20, and positions this second production component on a first production component, which is cyclically from the main conveyor belt is promoted.
- the first positioning device 27 can also pick up an as yet uncoated second production component from the first secondary conveyor belt 20 and move it to the first coating unit 25, which coats a surface of the second production component with the heated PUR adhesive while the second production component is received by the first positioning device 27. The first positioning device 27 can then position the second production component, which is now coated with adhesive, on the first production component.
- the second manufacturing component is always arranged by the first positioning device 27 on the first manufacturing component such that the adhesive contact surface of the second manufacturing component faces a surface of the first manufacturing component, so that the first and the second manufacturing component form an adhesive bond with the adhesive.
- an envelope inlay can be glued to an inside of an envelope for a book or security document, wherein an RFID transponder can be positioned on the envelope inlay, which is completely surrounded by the envelope inlay and the adhesive and / or the envelope ,
- the production components arranged one on top of the other are then conveyed in cycles in the main conveying direction F by the main conveyor belt 10.
- the first positioning device 27 can be controlled and / or adjusted on the basis of the detection of the camera sensors 14, 26. At least one of the camera sensors 14, 26 can also be configured to detect whether the adhesive is applied evenly to the relevant manufacturing component.
- the first secondary conveyor belt 30 also shows the second secondary conveyor belt 30, which guides the third production components, for example envelope inlays, in cycles in the conveying direction N2.
- the second secondary conveyor belt 30, a third storage magazine 31 and a third separating mechanism 32 are assigned.
- the third storage magazine 31 stores a large number of third production components, for example compensating cover inlays for book documents, on which no electronic components are positioned.
- the third separation mechanism 32 arranges the third production components, for example the envelope displays, individually on the second secondary conveyor belt 30, which conveys the third production components in cycles.
- a third centering station 33 aligns the production components conveyed by the second secondary conveyor belt 30 on the basis of a predetermined target position.
- a second adhesive heater 34 holds a reactive PUR adhesive ready.
- the second adhesive heater 34 heats at least part of the reactive PUR adhesive and provides the heated PUR adhesive to a second coating device 35 for processing.
- the second coating device 35 coats a surface of the production components conveyed on the second secondary conveyor belt 30 with the heated PUR adhesive.
- the coating device 35 can coat envelope inlays conveyed on the second secondary conveyor belt with adhesive.
- the second coating unit 35 coats the surface of the conveyed production components with the adhesive in such a way that raised elements and / or unevenness are completely filled up / formed, so that a flat adhesive contact surface is created without outstanding / outstanding elements and / or depressions protruding from this adhesive contact surface.
- An additional camera sensor 36 detects a position of the coated third production components on the second secondary conveyor belt 30 and uses a downstream image evaluation to check whether the production components have property and / or position errors. In a further development (not shown), production components with identified property and / or position errors can be separated from the production. The additional camera sensor 36 can also be configured to detect whether the adhesive is applied evenly to the relevant manufacturing component.
- a second positioning device 37 picks up one of the third production components, for example a coated envelope inlay, which is cyclically conveyed by the second secondary conveyor belt 30, and positions this third production component on a first production component next to the second production component, which is clocked by the main conveyor belt.
- the third manufacturing component can also be positioned on the second manufacturing component.
- the second positioning device 37 can also pick up a third production component that has not yet been coated from the second secondary conveyor belt 30 and move it to the second coating unit 35, which coats a surface of the third production component with the heated PUR adhesive, while the third production component is received by the second positioning device 37. The second positioning device 37 can then position the third production component, which is now coated with adhesive, on the first and / or second production component.
- the third manufacturing component is always arranged by the second positioning device 37 on the first and / or second manufacturing component such that the adhesive contact surface of the third manufacturing component faces a surface of the first and / or second manufacturing component, so that the third and the first and / or enter into a second manufacturing component with the heated adhesive.
- a compensating envelope inlay can be arranged on an inside of an envelope next to an envelope inlay already positioned by the first positioning device 27.
- the second positioning device 37 can be controlled and / or adjusted on the basis of the detection of one or more of the camera sensors 14, 15, 36.
- the first and / or the second secondary conveyor belt 20, 30 can each convey a plurality of identical or different manufacturing components in parallel.
- a secondary conveyor belt 20, 30 can convey two inlays in parallel and a positioning device 27, 37 can glue these inlays, which are conveyed in parallel, one after the other or simultaneously into an envelope.
- the centering units 23, 33 and / or the coating devices 25, 35 can each be arranged and designed to align two or more production components in parallel or in succession or to coat them with adhesive. This can further increase the efficiency of production.
- the production system 1 can have devices for reading out RFID transponders, which are positioned in the area of the secondary conveyor belts 20, 30 and are designed to determine the functionality of RFID transponders before production components, which are RFID Have transponders, by means of which positioning devices 27, 37 are positioned on a first and / or second production component.
- manufacturing components that have non-functional RFID transponders can be discarded.
- the production components arranged one on top of the other are then conveyed in cycles in the main conveying direction F by the main conveyor belt 10.
- the conveying directions NI and N2 of the secondary conveyor belts run orthogonally to the main conveying direction F in the example shown, but this is not necessary in all embodiments.
- the conveying directions NI and / or N2 can also run at a 45 ° angle to the main conveying direction F in order to enable an even more compact construction of the production system.
- FIG. 1 shows a thermal press 40 which is arranged on the side next to the main conveyor belt 10 and has an upper and a lower press plate.
- the production components arranged one after the other on the main conveyor belt 10 are moved by a first slide (not shown) into a press space defined between the upper and the lower press plate, away from the main conveyor belt 10.
- the thermopress then presses the production components arranged on top of one another and the adhesives applied between the production components by lowering the upper press plate.
- the manufacturing components can also be pressed by moving the upper and lower press plates toward one another or by lifting the lower press plate.
- the thermopress is designed to press the production components glued to one another at a predetermined temperature or with a predetermined temperature profile.
- the upper and the lower press plate of the thermal press 40 each have a thermal unit which is designed to regulate or specify a temperature and / or a temperature profile of the respective press plate.
- the thermal unit can in particular comprise a cooling unit and a heating unit.
- a second slide (not shown) moves the pressed production components out of the press space of the thermal press back onto the main conveyor belt 10, which further conveys the pressed production components along the main conveying direction F.
- An inspection device 17 checks the pressed production components with a camera sensor for property errors.
- the inspection device 17 can comprise a reading device for RFID transponders, which is suitable for checking the functionality of FRID transponders, which can be contained in the pressed production components.
- the pressed manufacturing components are transported from the main conveyor 10 along the main conveying direction F to the output unit 13, which the pressed components supply components from the main conveyor belt 10 and stored.
- the output unit 13 can separate the pressed production components into good and
- FIG. 2 shows a first example for a book or security document 100, which can be produced with a production system, as is shown schematically in FIG. 1.
- a book cover 110 represents the first production component, which is conveyed by the main conveyor belt 10, as shown in FIG. 1.
- the book cover 110 is transported in the opened state and with its inside to the outside (or with its outside facing the main conveyor belt 10) from the main conveyor belt 10, so that the positioning devices can arrange manufacturing components on the inside of the book cover 110.
- the adhesive layer 122 faces the inside of the book cover 110.
- An RFID transponder B1 arranged on the cover inlay 121 is completely enclosed by the adhesive layer 122 applied on the cover inlay 121 and the cover inlay 121.
- the adhesive layer 122 forms a flat contact surface with the inside of the book cover 110. It is therefore not necessary to make a recess or recess in the book cover 110 for receiving the RFID transponder.
- a compensation cover inlay 123 is glued or arranged by the second positioning device 37 with a second adhesive view 124 onto the inside of the book cover 110.
- the equalization envelope inlay 123 has the same material thickness as the envelope inlay 121, but no electronic components are arranged on the equalization envelope inlay 123.
- the second adhesive layer 124 also forms a flat contact surface with the inside of the book cover 110, which faces the inside of the book cover 110.
- the second adhesive layer 124 has the same layer thickness / application depth as the first adhesive layer, but this is not necessary in all embodiments.
- the fold area 140 of the book cover 110 is not covered by one of the cover inlays 121, 123 or is not glued to one of the cover inlays 121, 123.
- the cover inlay 121 with the RFID transponder is the second production component.
- component and the compensating cover inlay 123 represents the third production component, after arranging the cover inlay 121 and the compensating cover inlay 123 on the book cover 110 by the thermal press 40, as shown schematically in FIG. 1, pressed.
- the pressed components are then checked with the inspection device 17 and picked up and stored by the output unit 13.
- FIG. 3 shows an alternative second example for a book or security document 200, which can also be produced with a production system, as is shown schematically in FIG. 1.
- a sewn paper stack 210 (also: paper set or book pages of the book or security document) represents the first production component that is conveyed on the main conveyor belt 10, as shown in FIG. 1.
- the first positioning device 27 sticks or arranges the two envelope inlays 221 and 223 onto the sewn paper stack 210.
- the sticking or arrangement of the envelope inlays 221 and 223 by the positioning device 27 takes place simultaneously / in parallel.
- the envelope inlays 221 and 223 can also be arranged / glued one after the other by the first positioning device 27 on the paper stack 210.
- the envelope inlays 221 and 223 are each coated with an adhesive layer 222, 224, the adhesive layer 222 reshaping an RFID transponder B2 arranged on the envelope inlay 221 in such a way that the paper stack 210, the adhesive layer 222 and the envelope inlay 221 completely remove the RFID transponder B2 enclose as soon as the envelope inlay 221 is arranged or glued to the paper stack 210.
- adhesive layers 222 and 224 plan out adhesive contact surfaces which face the first production component - here the paper stack 210.
- the second positioning device 37 glues or arranges a book cover 230 for the book document with a fold area 240 onto the cover inlays 221 and 223.
- the book cover represents the third production component.
- a layer of adhesive 232, 234 was applied to the coating unit 35 on part of a surface of the book cover 230 applied.
- the positioning device 37 arranges the book cover 230 on the cover inlays 221 and 223, the adhesive layer 232, 234 facing the cover inlays 221 and 223. The arrangement shown in FIG.
- the cover inlays 221, 223 the second manufacturing component (s) and the book cover 230 the third manufacturing component can, as already for FIG. 1 and FIG 2 after the third production component has been arranged, pressed, checked and output by the production system.
- FIG. 4 shows a further alternative example for a book or security document 300, which can also be produced with a production system, as is shown schematically in FIG. 1.
- a sewn paper stack 310 represents the first production component which is on the main conveyor belt 10, as shown in FIG. 1, is promoted.
- cover inlays 321 and 323 together represent the second production component, which are each arranged or glued to the paper stack 310 by the first positioning device 27 with an adhesive layer 322, 324 facing the paper stack 310.
- the adhesive layers 322 and 324 each form a flat adhesive contact surface with the paper stack 310.
- an RFID transponder B3 is arranged on a surface of the envelope inlay 321 facing away from the first production component - the paper stack 310 - so that - unlike as shown in FIG. 3 - this does not differ from the envelope inlay 321, of the adhesive layer 322 and the paper stack 310 after the first positioning device 37 has arranged the envelope inlay 321 with the adhesive layer 322 on the paper stack 310.
- the book cover 330 which represents the third production component analogously to the example shown in FIG. 3, is partially coated with an adhesive layer 332, 334, which faces the cover inlays 321 and 323 or the paper stack 310 and in each case forms a flat adhesive contact surface with respect to these ,
- the adhesive layer 332, 334 is applied by the second coating device 35 to the book cover 330 in such a way that the RFID transponder B3 raised from the surface of the cover inlay 321, which faces the book cover 330, is reshaped by the heated adhesive layer 332 as soon as the second positioning device 35 has positioned or glued the book cover 330 onto the cover inlays 321 and 323.
- the envelope inlay 321, in cooperation with the adhesive layer 332, completely encloses the RFID transponder B3.
- FIG. 4 in which the paper stack 310 represents the first manufacturing component, the cover inlays 321, 323 the second manufacturing component (s) and the book cover 330 the third manufacturing component, can, as already described for FIGS. 1-3 , after the third production component has been arranged, further pressed, checked and output by the production system.
- FIGS. 2-4 The advantages of the devices shown in FIGS. 2-4 are that they can be produced very efficiently. Furthermore, the RFID transponders described by way of example are particularly difficult to remove / replace from the security or book documents without destruction, in particular if the adhesive used is a reactive hot-melt adhesive.
- the production system shown in FIG. 1 also offers the advantage that the examples shown in FIGS. 2-4 can all be produced with the described device without requiring significant structural adjustments to the described production system.
- the system described can be implemented in a particularly space-efficient manner and also improves manufacturing efficiency, since there are no recesses and / or recesses to accommodate, for example, electronic components.
- FIG. 5 shows a schematic cross section of a possible design of the first and / or second positioning device 27, 37 in the form of a vacuum gripper, which has two main components, namely a plate element 2703, here in the form of a metal plate, for example, and at least one holding element 2701 for receiving and holding the relevant manufacturing component, here, for example, the second manufacturing component 121, and for arranging this manufacturing component together with the heated adhesive on the relevant further manufacturing component, here, for example, the first manufacturing component 110 located on the main conveyor belt 10.
- the holding element 2701 can be, for example, a Act a suction pad or a suction pad.
- a drive unit (not shown in FIG.
- the plate element 2703 and the holding element 2701 are each designed with flat surfaces. With this design it can happen that during the production of the Form an adhesive connection between the production components 110, 121 air bubbles or air inclusions, as a result of which the quality of the adhesive connection is impaired.
- FIG. 6 shows a further possible design of the first and / or second positioning device 27, 37, in which the probability that the adhesive connection has undesired air inclusions is reduced.
- the positioning device is designed as a vacuum gripper and has a plate element 273, for example in the form of a metal plate, a holding element 271 and, as indicated by a double arrow, a corresponding drive unit.
- the holding element 271 can be, for example, a suction pad or a suction pad.
- the holding element 271 has a contact surface 272 for contacting the second production component 121.
- the holding element 271 is moved from a first position in which the bending element 274 is moved in and the contact surface 272 is flat by the bending element 274 moving out of the opening into a second position in which the contact surface 272 is curved outwards is.
- the curvature of the contact surface 272 is - as indicated only schematically in FIG. 6 - transferred to the second production component 121 held on the holding element 271, so that the latter is slightly curved outwards on the side facing the first production component 110.
- the holding element 271 is still securely connected to the plate element 273 via its corner points or short outer sides and cannot therefore detach.
- the corresponding countermovement that is to say the movement of the holding element 271 from the curved, second position into the plane first position, can be triggered by correspondingly moving the bending element 274 into the opening.
- the second production component 121 is positioned on the first production component 110 with a very small curvature downwards, so that first a central region of the second production component 121 and then its outer sides are positioned on the first production component 110, that is to say from the center towards the outer side th.
- the bending element 274 or the lifting cylinder moves slowly into its starting position, i.e. back into the opening, while the plate element 273 is still moved downward by the drive unit, so that the holding element 271 becomes flat again, i.e. into its reaches the first position and rests with its entire surface on the second production component 121.
- the holding element 271 is then removed from the two production components connected to one another or from the main transport in a reverse order: first the outer sides and then the center of the holding element 271 are detached from the glued-on production components. Initially, the bending element 274 or the lifting cylinder moves again in the direction of the holding element 271 in order to generate the bulge again. Alternatively, the holding element 271 can remain flat when removed, the bending element 274 not moving.
- the bending element 274 is automatically activated before the holding element 271 is placed on and removed from the main transport.
- the force, distance or time of the lifting cylinder movement can be set either manually or automatically with the help of appropriate monitoring sensors.
- FIG. 7 shows a corresponding top view.
- the drive unit 275 has a rotary cylinder 2751 and at least four ball screws 2752.
- ball screws 2752 for example ball bushings, ball bushings or linear ball bearings can be provided.
- the rotary cylinder 2751 and the ball screws 2752 are arranged on the plate element 273 on the side opposite the main transport.
- the ball spindles 2752 are ordinary, non-driven ball spindles 2752 with ball guides at the corners of the plate element 273.
- the rotary cylinder 2751 is an electrically driven rotary cylinder which is resiliently mounted in a central region of the plate element 273. In the embodiment shown in FIG. 8, two bending elements 274 are provided as an example.
- the rotary cylinder 2751 and the ball screws 2752 enable a particularly even and gentle placement and lifting of the plate element 273 with the holding element 271 arranged thereon, in particular due to the resilient mounting of the rotary cylinder 2751, which is suitable for the respective movement of the Bending element 274 or lifting cylinder or can be matched to the curvature of the holder element 271.
- the rotary cylinder 2751 and above all the ball screws 2752 make it possible for the plate element 273 not to bend during the arching of the holding element 271, since they counteract the bending element 274 or the outer sides of the holding element 271 which point upwards at the moment of the arching ,
- This design leads to an improved distribution of force on the holding element 271 or the manufacturing components lying underneath and thus additionally reduces the likelihood of the formation of air bubbles.
- the flow properties of the adhesive can in particular be chosen so that the adhesive does not collect in the middle of the curvature or flow downwards.
- the drive unit 275 enables improved force distribution and a better placement and lifting of the plate element 273.
- the production plant has a first input 1001, which comprises the function of the above-mentioned first separation mechanism, a second input 1002, which comprises the function of the above-mentioned second separation mechanism, and a third input 1003, which comprises the function of the above-mentioned third separation mechanism. Furthermore, the production system again comprises an output unit 13, which is divided here into the two sections “verification” 1004 and “box or magazine output” 1005.
- thermopress 42 and a further thermopress 43 are provided here, the thermopresses 42, 43 being arranged on the main conveying device, in other words directly on the main conveyor, i.e. not on the side of the main conveyor.
- the thermal press 42 is designed and arranged to press the first production component 110 and the second production component 121 arranged on the first production component 110 together.
- the further thermopress 43 is for example designed and arranged to press together the first production component 110 and the third production component 123 arranged on the first production component 110. Accordingly, the thermal press 42 is arranged on the main conveyor between the first positioning device 27 and the second positioning device 37 and the further thermal press 43 is arranged on the main conveyor between the second positioning device 37 and the output unit 13.
- the thermal press 42 has a press support which is not arranged to be movable at the level of the main transport.
- the press pad cannot be heated or cooled.
- the press support can be heated and / or cooled.
- a press plate Arranged above the press support is a press plate which can be adjusted vertically, for example via a toggle lever, and which can be heated and / or cooled.
- the further thermopress 43 is designed analogously.
- the design is such that the following sequence is possible: after the positioning of the second manufacturing component 121 on the first manufacturing component 110 by the first positioning device 27, these two manufacturing components are conveyed into the opened thermal press 42 with the conveyor belt of the main conveyor device. At the same time, a further first production component and a further second production component bonded to it, which have previously been connected in the thermal press 42, can be conveyed out of the thermal press 42 in the direction of the second positioning device 37 or the further thermal press 43 or to the output unit 13. Au ⁇ ßerdem can here the next following first production component are transported from the first input 1001 to the first positioning device 27th
- thermopress 42 is closed with the press plate adjustable from above and the respective production components are pressed together.
- the pressing times can either be set variably or they last as long as the skin transport stops.
- the further thermal press 43 is constructed analogously to the first-mentioned thermal press 42 and is used, for example, to connect the third manufacturing component 123 to the first manufacturing component 110.
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- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Health & Medical Sciences (AREA)
- Chemical & Material Sciences (AREA)
- Chemical Kinetics & Catalysis (AREA)
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Abstract
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102018004914.1A DE102018004914B4 (de) | 2018-06-20 | 2018-06-20 | Fertigungsanlage für die Herstellung von Sicherheits- oder Buchdokumenten |
| PCT/EP2019/065577 WO2019243167A1 (fr) | 2018-06-20 | 2019-06-13 | Installation de fabrication servant à produire des documents de sécurité ou des livres |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3781410A1 true EP3781410A1 (fr) | 2021-02-24 |
| EP3781410B1 EP3781410B1 (fr) | 2022-06-01 |
Family
ID=66867148
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP19730767.1A Active EP3781410B1 (fr) | 2018-06-20 | 2019-06-13 | Installation de fabrication servant à produire des documents de sécurité ou des livres |
Country Status (4)
| Country | Link |
|---|---|
| EP (1) | EP3781410B1 (fr) |
| DE (1) | DE102018004914B4 (fr) |
| PL (1) | PL3781410T3 (fr) |
| WO (1) | WO2019243167A1 (fr) |
Families Citing this family (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE102021117583A1 (de) * | 2021-07-07 | 2023-01-12 | Bundesdruckerei Gmbh | Verfahren und Vorrichtung zum Herstellen eines Dokumentenkörpers für ein Sicherheitsdokument |
| CN120841260B (zh) * | 2025-09-22 | 2025-11-21 | 如皋昌昇书刊机械有限公司 | 一种书刊生产用压平设备 |
Family Cites Families (6)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE19504194C1 (de) | 1995-02-09 | 1996-04-04 | Interlock Ag | Verfahren zur Herstellung von Ausweiskarten und danach hergestellte Ausweiskarte |
| JP4588139B2 (ja) | 1999-08-31 | 2010-11-24 | リンテック株式会社 | Icカードの製造方法 |
| FR2824018B1 (fr) | 2001-04-26 | 2003-07-04 | Arjo Wiggins Sa | Couverture incorporant un dispositif d'identification radiofrequence |
| TWI764875B (zh) * | 2015-11-03 | 2022-05-21 | 德商利昂哈德 庫爾茲公司 | 用於將薄膜上的轉印層施覆在底材上的方法及其施覆裝置 |
| DE102016218046B4 (de) * | 2016-09-20 | 2021-09-16 | Bundesdruckerei Gmbh | Verfahren, Vorrichtung und System zur Herstellung eines buchartigen Ausweis-, Wert- oder Sicherheitsdokument und buchartiges Ausweis-, Wert- oder Sicherheitsdokument |
| DE102016218047B4 (de) | 2016-09-20 | 2020-07-23 | Bundesdruckerei Gmbh | Verfahren, Vorrichtung und System zur Herstellung eines buchförmigen Ausweis-, Wert- oder Sicherheitsdokument und buchförmiges Ausweis-, Wert- oder Sicherheitsdokument |
-
2018
- 2018-06-20 DE DE102018004914.1A patent/DE102018004914B4/de active Active
-
2019
- 2019-06-13 WO PCT/EP2019/065577 patent/WO2019243167A1/fr not_active Ceased
- 2019-06-13 PL PL19730767.1T patent/PL3781410T3/pl unknown
- 2019-06-13 EP EP19730767.1A patent/EP3781410B1/fr active Active
Also Published As
| Publication number | Publication date |
|---|---|
| DE102018004914A1 (de) | 2019-12-24 |
| EP3781410B1 (fr) | 2022-06-01 |
| WO2019243167A1 (fr) | 2019-12-26 |
| DE102018004914B4 (de) | 2024-06-06 |
| PL3781410T3 (pl) | 2022-09-05 |
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