EP1902854B1 - Procédé et dispositif destinés au traitement d'une impression - Google Patents

Procédé et dispositif destinés au traitement d'une impression Download PDF

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Publication number
EP1902854B1
EP1902854B1 EP20070017440 EP07017440A EP1902854B1 EP 1902854 B1 EP1902854 B1 EP 1902854B1 EP 20070017440 EP20070017440 EP 20070017440 EP 07017440 A EP07017440 A EP 07017440A EP 1902854 B1 EP1902854 B1 EP 1902854B1
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EP
European Patent Office
Prior art keywords
suction
suction openings
negative pressure
vacuum
compressed air
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.)
Not-in-force
Application number
EP20070017440
Other languages
German (de)
English (en)
Other versions
EP1902854B2 (fr
EP1902854A3 (fr
EP1902854A2 (fr
Inventor
Jutta R. Brörken
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wohlenberg Buchbindesysteme GmbH
Original Assignee
Wohlenberg Buchbindesysteme GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
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Application filed by Wohlenberg Buchbindesysteme GmbH filed Critical Wohlenberg Buchbindesysteme GmbH
Publication of EP1902854A2 publication Critical patent/EP1902854A2/fr
Publication of EP1902854A3 publication Critical patent/EP1902854A3/fr
Application granted granted Critical
Publication of EP1902854B1 publication Critical patent/EP1902854B1/fr
Publication of EP1902854B2 publication Critical patent/EP1902854B2/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42CBOOKBINDING
    • B42C1/00Collating or gathering sheets combined with processes for permanently attaching together sheets or signatures or for interposing inserts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42CBOOKBINDING
    • B42C9/00Applying glue or adhesive peculiar to bookbinding
    • B42C9/02Applying glue or adhesive peculiar to bookbinding for securing back linings, strips, ribbons or headbands

Definitions

  • the invention relates to a device for further printing, in particular a Dolzelstation for connecting a Desired Materials with a sheet stack according to the preamble of claim 1. Furthermore, the invention relates to a method for print finishing, in particular for connecting a DesilzelstMails with a sheet stack, according to the preamble of claim 11 ,
  • a folding strip is in particular connected by a folding station to a stack of sheets, such as a book block.
  • zelstsammlung is withdrawn from a supply, in particular a role with Desilzelmaterial, and positioned on a Klalzeltisch.
  • Mahlzelstsammlung is fixed on a suction suction at the top suction plate by vacuum. Thereafter, the Desilzelstender is cut off from the band-shaped Desilzelmaterial and pressed from the Desilzeltisch against the sheet stack, in particular book block, and hereby usually connected by gluing.
  • the invention is an object of the invention to provide an apparatus and a method for postpress, in particular for connecting a divelzelstMails with a stack of sheets such as a book block, whereby the suction openings of the suction plate of Kaylzelticians in a simple manner preferably individually be supplied with negative pressure.
  • An apparatus for achieving this object has the features of claim 1. Accordingly, vacuum generators are provided for generating the vacuum required by at least some suction openings.
  • the respective vacuum generator is arranged in or on the suction plate of the folding table.
  • a plurality of vacuum generators are provided, wherein preferably each vacuum generator is assigned its own suction opening or a group of a smaller number of suction openings than the total number of suction openings.
  • each vacuum generator is assigned its own suction opening or a group of a smaller number of suction openings than the total number of suction openings.
  • the respective vacuum generator is designed to form the required negative pressure from compressed air.
  • the vacuum generator thus converts compressed air into a negative pressure or in other words a vacuum or suction air.
  • each vacuum generator or groups of several vacuum generators is associated with an individually controllable compressed air supply.
  • the compressed air supply of each vacuum generator can be interrupted completely if necessary or preferably also be throttled continuously. It is also possible to change the pressure of the compressed air supply. In this way, the vacuum generator can generate negative pressure as needed or the negative pressure can also be varied so that the suction openings suck in the rabbet strips with different thicknesses.
  • each suction opening or each group of several suction openings is connected via its own supply channel to the vacuum generator associated with the suction opening or group of suction openings.
  • the supply channel is located in the suction plate. He creates a relatively short connection of the vacuum generator with this associated individual suction port or group of suction ports. As a result, only this relatively short connection channel needs to be evacuated to apply negative pressure to the suction opening or suction openings. The evacuation of this short connection channel can be done quickly, so that shortly after opening the compressed air supply of the respective vacuum generator vacuum is present at the suction port or the group of suction ports.
  • the respective vacuum generator is preferably designed as at least one vacuum pump.
  • the vacuum pump is one which operates on the ejector principle. If a large negative pressure or a large volume of air under vacuum is required, it makes sense to use at least partially based on the multi-stage ejector principle working vacuum pumps.
  • the invention can also be realized with another vacuum generator, in particular vacuum pumps, which do not work according to the ejector principle, but with moving parts, such as paddle wheels.
  • a working according to the ejector principle or the multi-stage Ejektor87 vacuum pump is particularly compact and can therefore according to a preferred embodiment of the invention in a simple sack or through hole receiving in Klalzeltisch, in particular the suction plate of the same order.
  • the respective vacuum pump can be placed almost directly on the respective suction opening, resulting in supply channels with a small volume, so that only a small amount of air is to be evacuated from the respective supply channel to produce the negative pressure at the respective suction opening. Consequently, only a relatively small amount of compressed air is required to produce the vacuum necessary for sucking the trim strip on top of the suction plate.
  • a development of the invention provides that the respective suction opening temporarily, in particular short-term, not with negative pressure, but with compressed air can be acted upon. As a result, there is a rinsing while cleaning the supply channel and, above all also the suction openings instead.
  • the DesilzelstMail is separated from the suction port or the group of the respective suction opening, which is particularly useful if the surface of the Desilzelstsammlungs has slightly adhesive properties or adheres by adhesive residues on the top of the suction plate. Even paper, dust and / or release agents can be reliably eliminated by flushing the suction openings with compressed air. This avoids that, for example, during service interruptions clog the suction openings in particular by paper jam, release agent or adhesive.
  • a compressed air connection is additionally assigned to the respective supply channel.
  • compressed air can be introduced into the supply channel for supplying the respective suction opening when the vacuum generator is switched off.
  • the selective negative pressure of the suction openings is preferably brought about by the fact that individual suction openings or groups of several suction openings can be supplied optionally with negative pressure. It is expediently only a vacuum supply of such suction openings, which are covered by the currently processed KaylzelstMail.
  • the vacuum supply of the suction opening is thus adapted according to the invention individually to the respective Hurlzelstsammlung.
  • a method for solving the above-mentioned problem comprises the measures of claim 11. Thereafter, it is provided to generate the negative pressure for temporarily fixing the Desilzelstsammlungs on the suction plate of Klalzelticians of compressed air.
  • a stream of compressed air is converted into negative pressure, which sucks the Desilzelstsammlung at the top of the suction plate.
  • the conversion of compressed air into negative pressure eliminates the need for a separate vacuum source.
  • a negative pressure is formed by vacuum pumps. As the compressed air flows through the vacuum pumps, they create a vacuum which serves to maintain a vacuum at the suction ports in the suction plate for pneumatically fixing the respective trim strip to the suction plate of the folding table as long as the trim strip is to be held on the suction plate.
  • individual suction openings or groups of a smaller number of suction openings are selectively supplied with negative pressure.
  • it is possible to apply at different sizes Desirably only those suction openings in the Sauplatte Desilzelticians with negative pressure, which are covered by the respective Kaylzelstender.
  • the vacant suction openings are not subjected to negative pressure, resulting in a Reduces the volume of air to be evacuated and prevents noise sucked in by the free suction openings air.
  • the method is provided to supply individual suction openings or groups of suction openings either with negative pressure or overpressure. So it is possible to separate DesilzelstMail whose fixation is to be lifted on the suction plate from the suction plate. At the same time, the suction openings are cleaned by blowing out with compressed air. All suction openings can be blown out with compressed air. However, it is also conceivable to apply only compressed air to those suction openings that were previously supplied with negative pressure, and thereby to clean them.
  • the compressed air supply of the suction openings can be controlled by immediately after completion of the vacuum supply or preferably later through the suction openings pressurized air is blown out, optionally with a time delay, the individual suction ports or groups of suction ports, which act as blast openings during the compressed air.
  • the Desired Sealzelstation 10 has a Klazeltisch 11 with a suction plate 12.
  • the suction plate 12 has a rectangular base with a flat, horizontal top 13.
  • a strip-shaped Formatbegrenzer 14 is arranged on the top 13 of the suction plate 12.
  • the format limiter 14 is displaceable relative to a longer longitudinal edge 15 of the suction plate 12, so that a stop edge 16 pointing towards the longitudinal edge 15 of the format limiter 14 can be changed at a parallel distance from the longitudinal edge 15 of the suction plate 12. In the adjusted position, the format limiter 14 can be fixed on the suction plate 12.
  • a preferably stationary edge limiter 17 is provided on the upper side 13 of the suction plate 12.
  • This has an inner abutment edge 18 which extends at a right angle to the stop edge 16 of the format limiter 14.
  • the Randbe dictionary 17 may be omitted if necessary.
  • a fixed cutting bar 19 is arranged, which extends over almost the entire length of the longitudinal edge 15.
  • the cutting bar 19 is assigned an up and down movable knife 20.
  • the Desired Material 21 From a supply roll or other storage means
  • the Desilzelmaterial 21 has a width, which is required to form a Hurlzelstsammlung 24 with such a width, the width of the to be provided with the DesilzelstMail 24 book block 22 (only in the Fig. 2 shown) corresponds.
  • the Formatbegrenzer 14 is adjusted so that a free edge 23 of the Desilzelmaterials 21 is matched to the thickness of the book block 22 when resting against the stop edge 16.
  • the Desilzelmaterial 21 is passed between the cutting bar 19 and the raised blade 20 through the top 13 of the suction plate 12 to the format limiter 14. By moving down the knife 20, a rabbet strip 24 is cut off from the continuous rabbeting material 21, adjusted to the thickness of the book block 22.
  • the Desired Sealzelstsammlung 24 is fixed before separation from the web-shaped Kaylzelmaterial 21 and until it is connected to the back of the book block 22 on the upper side 13 of the suction plate 12 by vacuum.
  • the suction plate 12 with in the top 13th provided the same opening suction openings, which is in the embodiment shown to suction nozzles 25.
  • After cutting off the DesilzelstMails 24 takes place gluing the same with the back of the book block 22.
  • on the top 13 of the suction plate 12 is still fixed by vacuum
  • the suction plate 12 are associated with a plurality of in the top 13 of the same opening suction nozzles 25. This assignment is done in groups. In the embodiment shown, several groups of three or four suction nozzles 25 are formed. All suction nozzles 25 are the same design in the illustrated embodiment, in particular have the same diameter.
  • the suction plate 12 of the embodiment shown ( Fig. 1 ) has three groups each having three equal suction nozzles 25 and four groups each having four equal suction nozzles 25.
  • the three or four suction nozzles 25 of each group are arranged in a row by arranging the suction nozzles 25 of each group on a (imaginary) straight line , In the groups with three suction nozzles 25, these have mutually equal distances.
  • a group of four suction nozzles 25 is arranged transversely to the other groups of the suction nozzles 25, so that the imaginary line on which the four suction nozzles 25 of this group lie, at a distance parallel to the longitudinal edge 15 of the suction plate 12 extends.
  • the four suction nozzles 25 of this group are located close to the edge limiter 17, so that the longitudinal edge 26 of the sheet-shaped Kaylzelmaterials 21 adjacent thereto or guided thereon can be fixed by vacuum on the suction plate 12 in a targeted manner.
  • the invention is not on in the Fig. 1 shown distribution of the suction nozzles 25 on the upper side 13 of the suction plate 12 and the grouping of the suction nozzles 25 limited. Rather, the distribution of the suction nozzles 25 on the top 13 of the suction plate 12 may be arbitrary within the scope of the invention. The distribution of the suction nozzles 25 on the upper side 13 of the suction plate 12 is therefore carried out as needed, the arrangement of the Fig. 2 represents only one of many possible embodiments of the invention.
  • the three or four suction nozzles 25 of each group are connected inside the suction plate 12 by a common supply channel 27.
  • the suction plate 12 shown with seven groups of three or four suction nozzles 25 thus has in its interior seven preferably equal supply channels 27. All supply channels 27 open at one end in a transverse end face or a longitudinal end face 32 of the suction plate 12. A thus open end 28 of each supply channel 27 is provided with a compressed air connection not shown in the figures. As a result, each supply channel 27 can be supplied with compressed air. In addition, in each supply channel 27 opens a short transverse channel 29, which serves to supply a vacuum to the supply channel 27, whereby the suction nozzles 25 are acted upon by negative pressure.
  • the negative pressure at the suction nozzles 25 is generated from compressed air.
  • a vacuum generator which can be supplied with compressed air produces the vacuum (or the vacuum) at the suction nozzles 25 required for firmly squeezing the Desilzelmaterials 21 and the Desilzelst Shape 24 on the upper side 13 of the suction plate 12.
  • each group of three or four suction nozzles 25 is assigned its own vacuum generator.
  • the respective vacuum generator is largely or possibly completely within the suction plate 12.
  • the vacuum formed by the respective vacuum generator passes through the transverse channel 29 in the respective supply channel 27 and from there to the supply channel 27 associated group of three or four or a larger or smaller number of suction nozzles 25.
  • Each group of suction nozzles 25 is associated with a same vacuum generator.
  • the vacuum generator is in the present case a vacuum pump 30.
  • This operates on the principle of an ejector, which generates a suction at the axial flow of compressed air flowing through nozzles, at the openings of the nozzle, whereby the jet flowing through the nozzle Compressed air sucked air and thereby a vacuum generated. It comes as a vacuum pump 30 both a single-stage ejector and a multi-stage ejector into consideration, depending on how large the Saugluft lead to the respective group of suction nozzles 25.
  • the vacuum pump 30 shown here has a substantially cylindrical shape.
  • the cylindrical vacuum pump 30 is mostly stored in the suction plate 12 and thus integrated into the folding table 11.
  • the suction plate 12 forms a housing surrounding the respective vacuum pump 30.
  • each vacuum pump 30 is located in a separate bore 31 in the suction plate 12.
  • the bore 31 is formed in the embodiment shown as a multi-stage through hole.
  • the in the Fig. 2 shown bore 31 extends from a longer end face 32 of the suction plate 12. From here, the respective vacuum pump 30 is inserted or screwed into the bore 31 largely.
  • six bores 31 are arranged in the end face 32 for receiving a respective vacuum pump 30.
  • a further bore 31 is located in a shorter end face for receiving a vacuum pump 30, which is provided for the vacuum supply of the group of suction nozzles 25 which is provided on a parallel to the longitudinal edge 15 of the suction plate 12 extending line.
  • a reduced diameter front end of the vacuum pump 30 is located in a portion of the bore 31 of smaller diameter. This hole is bent in the illustrated embodiment by 90 °, so that it opens into a bottom 33 of the suction plate 12 ( Fig. 2 ).
  • the opening in the bottom 33 end 34 of the bore 31 is provided with a in the Fig. 2 not shown connection for a compressed air supply line. Compressed air flows into the inlet side of the respective vacuum pump 30 from the connection at the end 34 of each bore 31.
  • the compressed air After the compressed air has flowed through the vacuum pump 30 in the longitudinal direction, the compressed air flows outward via an outlet end of the vacuum pump 30 located outside the suction plate 12.
  • the output end of the vacuum pump 30 is provided with a muffler 35, which serves to reduce the noise exiting from the vacuum pump 30 air.
  • each vacuum pump 30 is further controllable.
  • a non-illustrated shut-off valve is arranged in front of each vacuum pump 30, preferably in the region of the connection of the compressed air supply line to the end 34 of the bore 31 for supplying compressed air to the vacuum pump 30.
  • the valve, in particular shut-off valve as a throttle valve or an adjusting throttle, so that not only an interruption or release of compressed air supply is possible, but also the volume flow of the compressed air can be changed to the vacuum at the suction nozzles 25 individual or change all groups.
  • the supply of compressed air to the lying below the Desilzelmaterial 21 suction nozzles 25 supplying vacuum pumps 30 is also interrupted when the DesilzelstMail 24 is released from the top 13 of the suction plate 12 by briefly the respective suction nozzles 25 are not subjected to negative pressure, but directly be supplied with compressed air, which is passed through the connection at the open end 28 of the respective supply channel 27 to the then acting as compressed air nozzles suction nozzles 25.
  • the generated vacuum at the suction nozzles 25 or other suction openings can be varied by changing the amount of compressed air supplied to the respective vacuum pump 30 or different pressure of the same.
  • the vacuum can be changed equally at all suction nozzles 25. It is also conceivable to supply the suction nozzles 25 of different groups with different degrees of vacuum or negative pressure.
  • each group of suction nozzles 25 is associated with a vacuum pump 30, a selection of groups can be made with suction nozzles 25, which are used for sucking and fixing the Desilzelmaterials 21 or Desilzelstographies 24 on the suction plate 12.
  • this selection is made according to the size of the currently used strip-shaped Desilzelmaterials 21 by only the vacuum pump 30 of such groups of suction nozzles 25 are supplied with compressed air, which are covered by the Schlelzelmaterial 21 and the Schlelzelstsammlung 24. Accordingly, even at the covered suction openings 25 negative pressure for sucking the Desilzelmaterials 21 or Desilzelstsammlungs 24 at.
  • the compressed air supply of the suction nozzles 25 for separating the DesilzelstMails 24 from the top 13 of the suction plate 12 is also used to blow the suction nozzles 25 by blown from the compressed air glue particles or dust from the suction nozzles 25 and / or blown out of the suction nozzles 25.
  • the inventive method thus makes it possible not only to generate negative pressure for sucking Desilzelmaterial 21 or Desilzelstsammlung 24 from compressed air, but alternatively or additionally an individual control of Saug Kunststoffmakers the suction nozzles 25 any groups of several suction nozzles 25 and optionally also a compressed air supply to the suction nozzles 25 all or selected groups of a plurality of suction nozzles 25, preferably only those suction nozzles 25, which are covered by the KlalzelstMail and therefore may be involved in the pressurestel of the DesilzelstMails 24 on the suction plate 12. It is also possible to control the strength of the negative pressure and / or the pressure individually, for example by changing the compressed air flow by throttling or using different compressed air sources with different pressures. Finally, the temporal succession of the vacuum generation or compressed air supply of the suction nozzles 25 of different groups can be changed individually.
  • the invention is suitable not only for Desilzelstationen 10, but also for other machines of the print finishing, in which vacuum for the supply of suckers, suction ports and / or suction nozzles 25 is required.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Jet Pumps And Other Pumps (AREA)
  • Manipulator (AREA)
  • Sheets, Magazines, And Separation Thereof (AREA)

Claims (12)

  1. Dispositif de finition d'une impression, en particulier poste d'application de dos (10) pour relier une bande de dos (24) à une pile de feuilles, de préférence à un bloc de livre (22), comprenant une table d'application de dos (11) présentant une plaque aspirante (12), la plaque aspirante (12) présentant plusieurs ouvertures d'aspiration pouvant être sollicitées par une dépression, caractérisé par des générateurs de vide pour fournir la dépression à au moins certaines ouvertures d'aspiration, les générateurs de vide étant disposés dans ou sur la plaque d'aspiration (12) de la table d'application de dos (11) et les ouvertures d'aspiration pouvant être sollicitées avec une dépression de manière sélective.
  2. Dispositif selon la revendication 1, caractérisé en ce qu'un générateur de vide est associé à chaque ouverture d'aspiration ou à chaque groupe de plusieurs ouvertures d'aspiration, en particulier chaque ouverture d'aspiration ou chaque groupe de plusieurs ouvertures d'aspiration est en liaison avec un canal d'alimentation propre (27) et le générateur de vide associé à l'ouverture d'aspiration ou au groupe de plusieurs ouvertures d'aspiration est en liaison avec ce canal d'alimentation (27).
  3. Dispositif selon la revendication 1 ou 2, caractérisé en ce que chaque générateur de vide est réalisé pour former une dépression à partir d'air comprimé, et de préférence une alimentation en air comprimé notamment commandable individuellement est associée à chaque générateur de vide, des ouvertures d'aspiration individuelles ou des groupes de plusieurs ouvertures d'aspiration pouvant éventuellement être alimentés de préférence brièvement en air comprimé à la place de la dépression, de préférence un raccord d'air comprimé étant associé directement au canal d'alimentation respectif (27) pour l'alimentation en air comprimé des ouvertures d'aspiration.
  4. Dispositif selon la revendication 3, caractérisé en ce que l'alimentation en air comprimé de chaque générateur de vide peut être interrompue individuellement et/ou la pression et/ou le flux d'air de l'air comprimé pouvant être acheminé au générateur de vide respectif peut être modifié.
  5. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce que les générateurs de vide sont réalisés sous forme de pompes à vide (30) qui fonctionnent de préférence selon le principe d'un éjecteur, notamment sont réalisés sous forme de pompes à vide (30) fonctionnant selon le principe d'un éjecteur à plusieurs étages, de préférence la ou chaque pompe à vide (30) étant disposée au moins en partie dans un logement dans la plaque d'aspiration (12) réalisé de préférence sous forme d'au moins un alésage (31), de préférence la pompe à vide respective (30) est disposée hermétiquement contre l'ouverture d'aspiration ou le groupe de plusieurs ouvertures d'aspiration.
  6. Dispositif selon l'une quelconque des revendications précédentes, caractérisé en ce que l'intensité de la dépression et/ou du flux d'air d'aspiration peut être modifiée.
  7. Dispositif selon la revendication 6, caractérisé en ce que les ouvertures d'aspiration individuelles ou les groupes de plusieurs ouvertures d'aspiration peuvent être alimentés de manière sélective en dépression.
  8. Dispositif selon la revendication 6 ou 7, caractérisé en ce que les ouvertures d'aspiration individuelles ou les groupes d'ouvertures d'aspiration sélectionnées peuvent être alimentés individuellement, de préférence brièvement, en air comprimé au lieu de dépression, la pression de l'air comprimé et/ou du flux d'air comprimé de chaque ouverture d'aspiration ou de chaque groupe de plusieurs ouvertures d'aspiration pouvant éventuellement être modifiée.
  9. Dispositif selon l'une quelconque des revendications 6 à 8, caractérisé en ce que chaque groupe d'ouvertures d'aspiration est associé à un canal d'alimentation propre (27) et de préférence chaque canal d'alimentation (27) présente un apport en dépression et un raccord d'air comprimé.
  10. Dispositif selon la revendication 6, caractérisé en ce que plusieurs groupes d'ouvertures d'aspiration disposées à chaque fois en une rangée sont associés au côté supérieur (13) de la plaque d'aspiration (12) servant d'appui pour une bande de dos (24), les ouvertures d'aspiration étant réalisées de préférence sous forme de buses d'aspiration (25), notamment au moins les rangées d'ouvertures d'aspiration ou de buses d'aspiration (25) de certains groupes s'étendant parallèlement les unes aux autres.
  11. Procédé de finition d'une impression, en particulier pour relier une bande de dos (24) à une pile de feuilles, de préférence à un bloc de livre (22), la bande de dos (24) étant fixée par dépression brièvement sur une plaque d'aspiration (12) d'une table d'application de dos (11), caractérisé en ce que la dépression est produite par des pompes à vide (30) fonctionnant selon le principe d'un éjecteur à partir d'un flux d'air comprimé et des ouvertures d'aspiration individuelles ou sélectionnées ou des groupes de plusieurs ouvertures d'aspiration peuvent être alimentés de manière ciblée avec une dépression.
  12. Procédé selon la revendication 11, caractérisé en ce que des ouvertures d'aspiration individuelles ou sélectionnées ou des groupes de plusieurs ouvertures d'aspiration peuvent être alimentés de manière ciblée au choix avec une dépression ou une surpression (air comprimé).
EP07017440.4A 2006-09-15 2007-09-06 Procédé et dispositif destinés au traitement d'une impression Not-in-force EP1902854B2 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102006044156A DE102006044156A1 (de) 2006-09-15 2006-09-15 Vorrichtung und Verfahren zur Druckweiterverarbeitung

Publications (4)

Publication Number Publication Date
EP1902854A2 EP1902854A2 (fr) 2008-03-26
EP1902854A3 EP1902854A3 (fr) 2011-05-25
EP1902854B1 true EP1902854B1 (fr) 2012-11-14
EP1902854B2 EP1902854B2 (fr) 2015-09-30

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ID=39027075

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07017440.4A Not-in-force EP1902854B2 (fr) 2006-09-15 2007-09-06 Procédé et dispositif destinés au traitement d'une impression

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EP (1) EP1902854B2 (fr)
DE (1) DE102006044156A1 (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102013001684A1 (de) 2013-01-31 2014-07-31 Kolbus Gmbh & Co. Kg Vorrichtung zum Aufbringen von Hinterklebematerial in der Druckweiterverarbeitung
DE102013214454A1 (de) * 2013-07-24 2015-01-29 manroland sheetfed GmbH Bogenführungszylinder mit einer pneumatischen Bogenhaltevorrichtung
EP3939800B1 (fr) * 2020-06-03 2025-10-08 Horizon Inc. Appareil de fixation d'élément supplémentaire et système de liaison le comprenant
EP3919284A1 (fr) 2020-06-03 2021-12-08 Horizon Inc. Appareil de fixation d'élément supplémentaire et système de liaison le comprenant
CN116061223B (zh) * 2021-11-04 2025-09-12 深圳鹏斐克科技有限公司 真空发生器用安装装置以及真空吸附装置

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3405709A1 (de) * 1983-03-04 1984-09-06 E.C.H. Will (Gmbh & Co), 2000 Hamburg Vorrichtung zum faelzeln von bloecken aus papierblaettern
DE4141767A1 (de) * 1991-12-18 1993-06-24 Will E C H Gmbh & Co Verfahren und anordnung zum herstellen von buechern und broschueren
DE19517176A1 (de) * 1995-05-10 1996-11-14 Kolbus Gmbh & Co Kg Einrichtung zum Anbringen von flächig beleimten biegsamen Bezugsmaterialstücken auf Pappen
DE19622917A1 (de) * 1995-07-14 1997-01-16 Kolbus Gmbh & Co Kg Einrichtung zum Fälzeln oder Hinterkleben von Buchblocks
DE19845923B4 (de) * 1998-10-06 2010-04-22 Dr. Günther Kast GmbH & Co. Technische Gewebe Spezial-Fasererzeugnisse KG Verfahren zur Herstellung eines Hinterklebematerials für einen Buchblock, Hinterklebematerial sowie Buch
DE10210843A1 (de) * 2002-03-12 2003-10-09 Horst Rathert Klebebinder für die Herstellung von Blocks und Broschüren insbesondere für Kleinauflagen

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Publication number Publication date
EP1902854B2 (fr) 2015-09-30
DE102006044156A1 (de) 2008-03-27
EP1902854A3 (fr) 2011-05-25
EP1902854A2 (fr) 2008-03-26

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