EP3466688B1 - Unité de transport destinée à transférer un manchon d'impression, dispositif de transport, système de production de produits imprimés ainsi que procédé de recharge - Google Patents

Unité de transport destinée à transférer un manchon d'impression, dispositif de transport, système de production de produits imprimés ainsi que procédé de recharge Download PDF

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Publication number
EP3466688B1
EP3466688B1 EP18189890.9A EP18189890A EP3466688B1 EP 3466688 B1 EP3466688 B1 EP 3466688B1 EP 18189890 A EP18189890 A EP 18189890A EP 3466688 B1 EP3466688 B1 EP 3466688B1
Authority
EP
European Patent Office
Prior art keywords
receiving means
unit
state
closure
printing sleeve
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.)
Active
Application number
EP18189890.9A
Other languages
German (de)
English (en)
Other versions
EP3466688A1 (fr
Inventor
Alexander Borger
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.)
Windmoeller and Hoelscher KG
Original Assignee
Windmoeller and Hoelscher KG
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Publication date
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Publication of EP3466688A1 publication Critical patent/EP3466688A1/fr
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Publication of EP3466688B1 publication Critical patent/EP3466688B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F13/00Common details of rotary presses or machines
    • B41F13/0016Storage devices for printing cylinders
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F27/00Devices for attaching printing elements or formes to supports
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41FPRINTING MACHINES OR PRESSES
    • B41F27/00Devices for attaching printing elements or formes to supports
    • B41F27/12Devices for attaching printing elements or formes to supports for attaching flexible printing formes
    • B41F27/1206Feeding to or removing from the forme cylinder
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2227/00Mounting or handling printing plates; Forming printing surfaces in situ
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2227/00Mounting or handling printing plates; Forming printing surfaces in situ
    • B41P2227/50Devices for storing printing plates
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B41PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41PINDEXING SCHEME RELATING TO PRINTING, LINING MACHINES, TYPEWRITERS, AND TO STAMPS
    • B41P2227/00Mounting or handling printing plates; Forming printing surfaces in situ
    • B41P2227/60Devices for transferring printing plates

Definitions

  • the present invention relates to a transport unit for transporting a printing sleeve from a supply position to a working position in a printing press, a transport device for transporting a printing sleeve from a supply position to a working position in a printing press, a system for the production of printed products and a setup method for setting up a printing press with a pressure sleeve.
  • Printing machines in particular flexographic printing machines, are known from the prior art. Such printing machines are used to print products such as To produce print media, printed packaging or the like, for example.
  • a format cylinder can be provided on which the flat material to be printed runs and inking units are arranged around the format cylinder, which apply the printing ink to the flat material.
  • Such inking units usually have different printing sleeves, which are rotatably mounted on receiving bearings of the printing press and distribute the printing ink or produce the printed image. In the event of an image change or wear of the printing sleeves, such printing sleeves must be replaced after a certain period of time during operation. For this purpose it is known to drive several printing sleeves with a transport carriage to the printing press, to remove them from the transport carriage and to insert them into the printing press.
  • an object of the present invention is to at least partially eliminate the above disadvantages known from the prior art.
  • an object of the present invention is to simplify setting up a printing press with a printing sleeve and to shorten the set-up time required for setting up the printing press.
  • the transport unit for transporting a printing sleeve from a supply position to a working position, which is located in a printing press has a receiving means for receiving the printing sleeve and a closure unit.
  • the closure unit can be brought into a safe state, into a supply state and into a release state.
  • the pressure sleeve can be received by the receiving means in the supply state of the closure unit, the pressure sleeve being removable from the receiving means in the release state of the closure unit, and removal of the pressure sleeve in the safe state of the closure unit is prevented.
  • the pressure sleeve can thus be removed from the receiving means in the dispensing state and removal is prevented in the safe state when the pressure sleeve is on the receiving means.
  • the receiving means can also prevent the pressure sleeve from being received by the receiving means when the closure unit is in the safe state.
  • the receiving means can be inaccessible at least in certain areas.
  • the supply state, the safety state and/or the dispensing state can be reached and/or controlled one after the other.
  • the supply position can preferably include storage of the printing sleeves on a transport carriage, in particular a lifting carriage.
  • the working position can also be provided on a receiving bearing of the printing machine.
  • the working position can thus be the position of the printing sleeve in which the printing sleeve is located when the printing press is in operation.
  • the closure unit can preferably directly on be arranged receiving means.
  • the closure unit can connect the receiving means to a transport structure of the transport unit.
  • the receiving means can thus be mounted directly on the closure unit.
  • the pressure sleeve can be received by the receiving means.
  • the conveying unit can preferably be arranged in the feeding state at the feeding position, so that the pressure sleeve can be placed on the receiving means, for example by a transport carriage.
  • the receiving means can preferably be arranged at the working position, so that an operator can push the pressure sleeve from the transport unit into the working position.
  • the receiving means can store the printing sleeve together with a receiving bearing of the printing machine.
  • the removal of the pressure sleeve is prevented in the safe state when the pressure sleeve is received by the receiving means. This makes it possible, for example, to move the transport unit from an orientation toward the supply position to an orientation toward the working position, without the pressure sleeve being able to fall down and thus be damaged.
  • the closure unit can also cover an opening or an end of the receiving means in order to prevent the pressure sleeve from being removed.
  • the pressure sleeve is also prevented from being received in the supply state, so that the receiving means is at least partially closed by the closure unit in the safe state.
  • the pressure sleeve can preferably be understood to mean a pressure sleeve.
  • the printing sleeve can comprise a printed image structure, by means of which a flat material can be printed with a printed image using printing ink.
  • the printing machine can preferably be a flexographic printing machine. In order to transport the printing sleeve from the supply position to the working position, the transport unit is designed in particular to be movable.
  • the transport unit can be guided on a frame or be movable on a base, for example via rollers.
  • the transport of the printing sleeve by the transport unit from the supply position to the working position can thus comprise at least a part of the distance or the entire distance between the supply position and the working position.
  • Transport can thus preferably be understood to mean transport at least in sections.
  • the transport of the pressure sleeve from the supply position to the working position can thus take place at least in sections by means of the transport unit.
  • the transport unit according to the invention can transport the printing sleeve from a transport carriage into the printing press in a simple and time-saving manner. Due to the transport unit, only a single operator may be necessary for this purpose, who pushes the printing sleeve from the transport carriage onto the transport unit and from the transport unit into the printing press. A second operator, who bears part of the weight of the pressure sleeve, is in particular not necessary due to the transport unit.
  • the closure unit is transferred from the supply state to the release state, it can be provided, for example, that the receiving means is rotated so that the pressure sleeve is introduced into the transport unit with a first end first and removed from the transport unit with a second end opposite the first end first will.
  • the printing sleeves are already aligned on the transport carriage in such a way that a first end, which is oriented from the transport carriage to the printing press, is the first to be mounted in the printing press.
  • the pressure sleeve can preferably be received by the receiving means on one side of the receiving means in the supply state and can be removed from the receiving means on the opposite side of the receiving means in the dispensing state.
  • the operator therefore requires less physical strength in order to transport the pressure sleeve from the supply position to the working position. This has a positive effect on occupational safety and, at the same time, the set-up time of the printing press.
  • the transport unit can be used to quickly and precisely align the receiving means at the delivery position and then at the working position, so that even an adjustment of a lifting platform on which the carriage of the pressure sleeve can take place, may not be necessary.
  • the receiving means and the closure unit can form a lock for the pressure sleeve, as a result of which the pressure sleeve can be received by the receiving means on a receiving side of the transport unit in the supply state and can be removed from the receiving means on a delivery side of the transport unit in the delivery state.
  • the closure unit it is preferably possible for the closure unit to prevent removal of the pressure sleeve on the delivery side in the supply state and reception of the pressure sleeve on the receiving side in the delivery state. This results in a simple sequence of work steps that can be carried out at high speed by an operator.
  • the receiving side is opposite or substantially opposite the delivery side with respect to the receiving means.
  • the alignment of the receiving means at the supply position and at the working position can be facilitated.
  • the lock effect can also ensure that the receiving means can be fitted with the pressure sleeve in the correct position and the pressure sleeve can be removed from the receiving means in the correct position.
  • the receiving means can preferably be arranged horizontally or essentially horizontally on the closure unit and/or a transport structure of the transport unit.
  • the closure unit has a first closure element and a second closure element, with the first closure element fixing a first end of the receiving means in the dispensing state and the second closing element fixing a second end of the receiving means in the supply state.
  • the first end of the receiving means is provided on the receiving side and the second end on the delivery side of the transport unit.
  • the receiving means can thus preferably be supported by the closure unit, in particular with the support being realized by the first closure element in the dispensing state and by the second closure element in the supply state.
  • the receiving means can be designed in a particularly simple manner.
  • the total number of components of the transport unit can be low, so that the costs of the transport unit can be saved and at the same time there is a low-wear structure.
  • the sluice effect can be realized in this way, which enables a simple sequence of work steps in order to convey the printing sleeve from the supply position to the working position.
  • the first closure element in the dispensing state and the second closure element in the supply state act as torque supports in relation to the receiving means.
  • the closure element can, for example, in the delivery state, when the pressure sleeve is still held by the receiving means, a weight of the pressure sleeve by storing the receiving means without the receiving means being supported by further measures. At least one weight of the receiving means can likewise be accommodated by the second closure element in the supply state, so that no further support of the receiving means is necessary in the supply state either.
  • the receiving means can be accessible from both sides at the same time for receiving or releasing the pressure sleeve, without other supports having a disruptive effect.
  • the receiving means can be fully freely accessible on one side in the supply state and in the dispensing state.
  • the first and/or the second closure element can advantageously have two pivoting sections which are designed to grip the receiving means.
  • Each of the pivoting sections can preferably have a guide area for guiding the receiving means when gripping the receiving means.
  • the first and/or second closure element can be designed as a gripper due to the two pivoting sections.
  • the first closure element can be detached from the receiving means in the supply state of the closure unit and at least partially encompass the receiving means in the dispensing state and/or the second closure element can grasp the receiving means in the dispensing state and be detached from the receiving means in the supply state. This can result in a hanging mounting of the receiving means, which can also make it easier for the receiving means to slide the pressure sleeve on.
  • the receiving means can be designed, for example, as a receiving mandrel, which is gripped on one side by closure elements.
  • each of the pivoting sections has a guide area for guiding the receiving means.
  • the receiving means is preferably designed in such a way that the receiving means is inclined on one side, in particular before the removal of the pressure sleeve, when the closure unit is in the dispensing state.
  • the first closure element can act as a moment support and a weight from the pressure sleeve and a weight from the receiving means can result in the receiving means lowering on one side, in particular along a bending line.
  • the pressure sleeve can be removed more easily from the receiving means, since the pressure sleeve and receiving means are slightly inclined, and the pressure sleeve can therefore be removed more easily from the receiving means, in particular by sliding.
  • the receiving means can be designed in such a way that the receiving means is inclined on one side before receiving the pressure sleeve when the closure unit is in the supply state.
  • This can simplify the supply of the pressure sleeve to the receiving means, since, for example, the receiving means, if this is designed as a receiving mandrel, can have a lateral surface that also inclines towards the pressure sleeve, so that the pressure sleeve can be slid on more easily.
  • the holding means is preferably dimensioned in such a way that an elongation during the inclination remains within an elastic range of a material of the holding means. As a result, the service life of the receiving means can be increased.
  • the receiving means is preferably a receiving mandrel onto which a through-opening of the pressure sleeve can be slid in such a way that the pressure sleeve rests with a lateral surface of the through-opening on the receiving mandrel.
  • the receiving mandrel can store part of the weight of the pressure sleeve when picking up the pressure sleeve and thus support the operator when pushing on and removing the pressure sleeve, so that the operator, for example, only performs the translational sliding movement.
  • the receiving means has a threading area and/or a sliding coating, in particular through the threading area and/or the sliding coating Sliding the pressure sleeve onto the receiving means is facilitated.
  • the threading area can include a chamfer and/or rounding, for example, so that the diameter at one end, in particular at both ends, of the receiving means is reduced and thus a slight deviation in the positioning of the receiving means at the working position or the supply position is tolerable.
  • the anti-friction coating can also make it easier to push it on, so that the pressure sleeve only experiences a low level of frictional resistance when it is pushed onto the receiving means. As a result, the transport of the printing sleeve from the supply position to the working position can be facilitated overall.
  • a control unit is provided, by which the closure unit can be controlled in such a way that the supply state and the delivery state can only be reached starting from a safety state. This can ensure that the receiving means is stored securely at all times during the transport process and in particular cannot fall out of the transport unit together with the pressure sleeve or individually through incorrect operation when the receiving means is stored by the locking unit.
  • the control unit can also include a microcontroller and/or a processor. The control unit can preferably be arranged on a transport structure of the transport unit or on a frame of a transport device.
  • a handle can preferably be provided, on which the transport unit can be moved manually.
  • the gripping means can preferably have a first gripping section and a second gripping section for gripping the gripping means with both hands.
  • the first and/or second handle section can preferably each be eccentric. This can result in intuitive gripping of the gripping means with both hands, so that the user can operate the gripping means reliably and at the same time it is ensured that the operator grips the gripping means when the closure unit is transferred from the supply state and/or from the dispensing state to the safety state.
  • the first and second handle sections can preferably be arranged in such a way that the first and second handle sections can be gripped in one plane. This results in an ergonomically favorable posture for the user when adjusting the transport unit.
  • the manual mobility of the transport unit also results in a simple control option for the transport unit, so that the operator can adjust the transport unit intuitively and quickly from the supply position to the working position, without having to rely on a drive control, for example.
  • the transport unit can include a lifting support to support a manual, preferably vertical, movement. A gas pressure spring can thus be provided, through which a force can be applied to support the manual movement of the operator. Additionally or alternatively, the lifting support can be realized by the drive means.
  • a drive means can also be provided, by means of which the conveyor unit can be adjusted, preferably vertically and/or horizontally.
  • the drive means can preferably be controllable by at least one operating element, which is arranged on a transport structure of the transport unit.
  • the transport structure can, for example, comprise a strut which connects the receiving side and the delivery side of the transport unit.
  • the drive means can preferably comprise an electric, hydraulic and/or pneumatic drive.
  • a pneumatic drive for example, is advantageous since pneumatic connections are often present in corresponding production environments in order to supply such drive means with the appropriate air pressure.
  • the operating element can be used with the drive means to enable fine adjustment of the receiving means, in particular in the vertical direction.
  • control element can preferably be designed as a button that allows a slight adjustment of the receiving means. It can thus be provided, for example, that the transport unit is manually adjusted in a rough orientation to the supply position or to the working position and then fine adjustment is carried out via the drive means. A very fine alignment of the receiving means can thus be achieved by the drive means and at the same time the operator can concentrate on the positioning without having to operate the handle means, for example. So is e.g. conceivable that the operating element is arranged on a remote control, which is connected to the transport unit via a cable or which is designed wirelessly.
  • a positioning aid in particular an optical positioning aid, can preferably be provided in a conveying unit according to the invention, by means of which a relative position of the conveying unit to the pressure sleeve in the supply position and/or to the working position can be determined.
  • the optical positioning aid can include a laser, for example, which is arranged on the closure unit and is aligned in such a way that a laser light generated at a certain distance from the positioning aid can indicate an orientation of the receiving means.
  • a mechanical positioning aid is also conceivable, which can be folded out, for example, in order to determine a relative position of the transport unit to the supply position or to the working position.
  • the receiving means can be telescopic in order to facilitate positioning and/or to facilitate the transfer of the pressure sleeve from the transport unit to the working position or from the supply position to the transport unit for an operator.
  • a conveying device for conveying a printing sleeve from a supply position to a working position in a printing press.
  • a transport unit according to the invention is provided, which is movably mounted on a frame.
  • a conveying device according to the invention thus brings with it the same advantages as have already been described in detail with reference to a conveying unit according to the invention.
  • the frame can preferably be designed to be fixed, so that a relative position of the transport unit to the printing press and/or to the working position is ensured.
  • the transportation unit can be suspended from the frame.
  • a foot space below the transportation unit can be free and thus continue to be available as a work surface, movement surface and/or storage surface.
  • the suspended mounting has the advantage that the height of the receiving means can be easily adjusted.
  • the frame can be attached to, in particular on, an adjustable lifting platform.
  • the height of the receiving means can be adjusted to a small extent, so that the operator can work at a comfortable height at all times without having to reach into an overhead area, for example.
  • the lifting platform can preferably include a platform with which the frame can be adjusted, in particular together with a transport carriage for transporting the printing sleeve.
  • the frame can have at least one rail on which the transport unit is movably mounted.
  • the frame can preferably have a pair of rails on which the transport unit is mounted. This results in an easy way to adjust the transportation unit along the frame.
  • the transport unit can have rollers which run on the rail or the pair of rails.
  • a sliding guide is also conceivable here.
  • a linear adjustability of the transport unit, in particular parallel to a front side of the printing press, can preferably be realized by the rail or the pair of rails. It can thus be ensured that the distance between the transport unit and the supply position and the working position is maintained and the operator only has to take over the horizontal and/or vertical positioning, but not positioning in a further spatial direction.
  • At least the receiving means in particular the transport unit, is mounted so that it can rotate about a vertical axis, preferably by at least 180 degrees.
  • This can, for example.
  • a misalignment of a pressure sleeve on the Transport carriage be correctable, so even if the printing sleeve is oriented opposite to the required orientation in the printing press in the supply position, the printing press can be transported to the working position in a simple manner.
  • the feeding state of the closure unit can correspond to the dispensing state of the closure unit, with the receiving means being rotated in each case.
  • a system for the production of printed matter has a printing machine in which a printing sleeve can be placed in a working position. Furthermore, the system for the production of printed products has a conveying device according to one of the preceding claims for conveying the printing sleeve from a supply position to the working position.
  • a system according to the invention thus brings with it the same advantages as have already been described in detail with reference to a transport device according to the invention and/or a transport unit according to the invention.
  • the frame of the conveying device can preferably be designed so as to be fixed in relation to the printing press, at least in one direction.
  • Closure element and a second closure element wherein the first closure element fixes a first end of the receiving means in the dispensing state and the second closure element fixes a second end of the receiving means in the supply state (II), the first closure element in the dispensing state (III) and the second closure element in the supply state (II) act as a moment support compared to the receiving means.
  • a set-up method according to the invention thus entails the same advantages as have already been described in detail with reference to a transport unit according to the invention.
  • the transport unit can be part of a transport device according to the invention and/or part of a system according to the invention.
  • a set-up method according to the invention thus brings with it the same advantages as have already been described in detail with reference to a conveying device according to the invention and/or a system according to the invention.
  • the receiving means can preferably be listed as a receiving mandrel, so that the printing machine can preferably be pushed onto the receiving means.
  • the pushing-on can be carried out in such a way that an outer surface of a through-opening of the pressure sleeve rests on the receiving means.
  • the transfer of the closure unit from the supply state to the safety state can preferably include gripping the receiving means by a closure element of the closure unit.
  • the transfer of the closure unit from the safety state to the release state can preferably include detaching a closure element from the receiving means.
  • the pressure sleeve can be removed from a delivery side of the transport unit and the pressure sleeve can be applied from a receiving side.
  • the interposition of the safety state can also ensure that the receiving means can be stored by the closure unit itself and, on the other hand, that the pressure sleeve can be safely transported by means of the transport unit.
  • the movement can preferably be carried out at least partially manually and/or at least partially automatically.
  • the at least partially automated movement can be controlled by an operating element, for example.
  • the at least partially manual movement of the transport unit can be supported, for example, by a drive means, so that the operator only notices a small proportion of the weight during the movement. Due to the movement of the transport unit from the supply position to the working position, it is not necessary, for example, for the supply position and working position to be aligned with one another in advance, but the movement can take place in the vertical and/or horizontal direction by means of the transport unit.
  • the alignment of the receiving means can in particular include a fine adjustment by means of a drive means.
  • the transport unit can include a positioning aid, which facilitates the alignment of the receiving means at the delivery position or the working position.
  • aligning the feed position can include, for example, aligning the receiving means parallel to a receiving bearing of a transport carriage and/or aligning the receiving means at the working position can include orienting the receiving means to a receiving bearing of the printing press.
  • manual movement of the transport unit can provide for rough positioning and then alignment of the receiving means by means of fine adjustment. This allows the recording of the pressure sleeve or the removal of the pressure sleeve can be made easier for the operator, especially if the receiving means is aligned as precisely as possible.
  • the closure unit can be transferred from the safety state to the supply state by opening a first closure element of the closure unit, in particular with the first closure element encompassing a first end of the receiving means in the safety state and being released from the first end of the receiving means in the supply state.
  • the mounting means can be supported at least partially by the closure unit and at the same time it is easier to slide the pressure sleeve onto the mounting means, in particular without the mounting means contacting an outside of the pressure sleeve.
  • the closure unit is transferred from the safety state to the release state by opening a second closure element of the closure unit, in particular with the second closure element encompassing a first end of the receiving means in the safety state and being released from the second end of the receiving means in the supply state is.
  • the receiving means can thus have a free end in the release state, from which the pressure sleeve is merely pushed or pulled down.
  • the receiving means can incline on one side when the closure unit is transferred from the safe state to the release state, in particular the inclination being at least substantially canceled when the closure unit is transferred from the release state to the safe state.
  • the expression essentially eliminated refers to the fact that a bending line of the receiving means can also be given by the dead weight of the receiving means and/or by the weight of the pressure sleeve, although at least the two ends of the receiving means can preferably be located in one plane.
  • the inclination can also be completely eliminated in the safe state.
  • removing the pressure sleeve from the receiving means can be facilitated if this tilts slightly on one side and the pressure sleeve can thus at least partially slip off the receiving means.
  • the elimination of the inclination can be ensured, for example, by a guide area of a closure element.
  • the method steps can be carried out at least partially in parallel or one after the other.
  • the method steps can be carried out in the order described or in a different order. In particular, individual method steps or all method steps can be repeated.
  • FIG 1 shows a system 5 according to the invention for the production of printed products in a first exemplary embodiment in a schematic representation.
  • a part of a printing press 6 is shown, in which a printing sleeve 2 can be placed in a working position 4 .
  • the working position 4 can include a sleeve receptacle 6.1 within the printing machine 6, onto which the printing sleeve 2 can be slid.
  • a conveying device 1 for conveying the printing sleeve 2 from a supply position 3 to the working position 4 is arranged in front of the printing press 6 .
  • the feed position 3 includes at least one transport carriage 8, which is placed on a lifting platform 7, so that the printing sleeve 2 can be removed from the feed position 3 of the transport carriage 8 and a transport unit 10 of the transport device 1 can be fed.
  • the transport unit 10 is arranged, in particular suspended, on a frame 30 .
  • the frame 30 has a pair of rails with two rails 33 on which the transport unit 10 is movably mounted. As a result, the transport unit 10 can be adjusted along the rails 33, in particular linearly, without the distance from the printing press 6 being changed.
  • the transport unit 10 has a handle 13, on which an operator 9 can adjust the transport unit 10.
  • the transport unit 10 has a receiving means 11, which by a Closure unit 20 is stored in a security state I on a receiving side 10.1 and on a delivery side 10.2.
  • the closure unit 20 is shown in a delivery state III, with the closure unit 20 being at least partially open, so that the receiving means 11 on the delivery side 10.2 of the transport unit 10 is detached from the closure unit 20.
  • the conveying device 1 in particular the conveying unit 10 , has a drive means 31 for the at least partially automated movement of the conveying unit 10 .
  • the drive means 31 can in particular be designed as an electric motor, a hydraulic motor and/or a pneumatic motor.
  • the drive means 31 can comprise a gas pressure spring, which can support a manual vertical movement of the transport unit 10, for example, so that the operator 9 only has to exert a small amount of force to move the transport unit 10, in particular to lift it.
  • the drive means 31 can be provided to enable fine adjustment of the transport unit 10 , with the movement of the transport unit 10 preferably being able to be controlled by an operating element 32 .
  • the operating element 32 can be arranged on the handle means 13 in order to enable an ergonomically favorable, intuitive actuation.
  • the frame 30 of the transport device 1 is fixedly mounted on the lifting platform 7 , it being height-adjustable with a platform of the lifting platform 7 .
  • the transport unit 10 can be operated at a height that is comfortable for the operator 9 even if the working position 4 to be reached for the printing sleeve 2 is located in an overhead area of the operator 9 within the printing press 6 .
  • the Figures 2a and 2b show the transport unit 10 of the first exemplary embodiment in a schematic view in a supply state II.
  • the transport device 1 preferably the transport unit 10
  • the transport device has a control unit 34, which is designed in such a way that the supply state II and the delivery state III can only be controlled from the safety state I are reachable. Provision can thus be made for the safety state I to be interposed in terms of control technology between the supply state II and the delivery state III, so that incorrect operation can be prevented.
  • a second closure element 22 of the closure unit 20 is closed on the delivery side 10.2 of the transport unit 10 and supports the receiving means 11. Furthermore, two pivoting sections 23 of a first closure element 21 are around one Pivot axis pivoted and released from the receiving means 11.
  • the first and second closure element 21, 22 are arranged in particular on a transport structure 15 of the transport unit 10, preferably with the receiving means 11 being separated from the transport structure 15 by the closure elements 21, 22.
  • the transport unit 10 is aligned with the receiving means 11 at the feed position 3, so that a pressure sleeve 2 can be pushed onto the receiving means 11 by the transport carriage 8 in accordance with a movement 102. This can preferably be done manually by an operator 9 .
  • the pressure sleeve 2 is supported at least partially by a transport mount 8.1 of the transport carriage 8 for receiving the pressure sleeve 2 on the transport carriage 8 and at least partially by the receiving means 11 until the pressure sleeve 2 is only supported by the Recording means 11 is supported.
  • the receiving means 11 is also arranged in a through-opening 2.1 of the pressure sleeve 2, so that it is mounted on the inside on a lateral surface 2.2 of the through-opening 2.1 and an outer surface of the pressure sleeve 2 is not contacted by the receiving means 11, thereby avoiding damage.
  • FIG 2b the supply state II of the closure unit 20 is also shown, while the pressure sleeve 2 is applied to the receiving means 11.
  • the closure unit 20 of the transport unit 10 can then be transferred 103 from the supply state II to the safety state I by pivoting the pivoting sections 23 towards the receiving means 11 and thereby gripping the receiving means 11 .
  • the second closure element 22 acts as a torque support, so that a weight of the receiving means 11 and/or the pressure sleeve 2 can be supported, in particular on one side.
  • Figure 3a shows the closure unit 20 in safety state I, in which removal of the pressure sleeve 2 is prevented, in which the first and second closure element 21, 22 of the closure unit 20 is closed.
  • the first and second closure element 21, 22 each encompass a first end 11.1 and a second end 11.2, so that they are fixed.
  • the transport unit 10 in the security state I, can be mounted at least partially rotatably about a vertical axis 14 in order to place the receiving means 11 together with the pressure sleeve 2 in a favorable position for removal to bring position.
  • a movement 104 of the transport unit 10 from the supply position 3 to a working position 4 can be carried out.
  • the transport unit 10 is adjusted along the rails 33 of the frame 30, preferably linearly, so that the printing sleeve 2 can be transported to the intended working position 4 in the printing press 6.
  • the operator 9 can, for example, grip the grip means 13 on a first and a second grip section 13.1, 13.2 with one hand each, in particular in one plane, and thereby at least partially manually adjust the transport unit 10 with both hands.
  • Figure 4a shows an alignment of the transport unit 10 with the receiving means 11 at the working position 4, the receiving means 11 being aligned with a sleeve receptacle 6.1.
  • the transport unit 10 can preferably be finely adjusted via the operating element 32 in that the drive means 31 is actuated and causes a vertical movement of the receiving means 11 .
  • the closure unit 20 is transferred 105 from the safety state I to the release state III, so that the pressure sleeve 2 can be removed from the receiving means 11 in the direction of the working position 4 .
  • two pivoting sections 23 of the second closure element 22 of the closure unit 20 are pivoted, so that the receiving means 11 is detached from the second closure element 22 and the pressure sleeve 2 is correspondingly accessible here.
  • the pressure sleeve 2 can thus be removed from the transport unit 10 on the discharge side 10.2.
  • the pressure sleeve 2 can be pushed from the receiving means 11 onto the sleeve receptacle 6.1 of the printing machine 6 in accordance with a removal 106 of the pressure sleeve 2.
  • the pressure sleeve 2 is partially supported by the receiving means 11 and partially by the sleeve receptacle 6.1 of the printing press 6. The method can then be repeated accordingly for the next pressure sleeve 2 on the transport carriage 8.
  • FIG. 5 shows a transport unit 10 of a system 5 in a partial view with a pressure sleeve 2 which is mounted on a receiving means 11 and wherein the receiving means 11 is mounted by a second closure element 22 of a closure unit 20.
  • the transport unit 10 has a positioning aid 12, which is in particular an optical positioning aid.
  • an operator 9 has a simple orientation aid in order to be able to geometrically estimate the removal of the printing sleeve 2 from the receiving means 11 and in particular the feeding of the printing sleeve 2 to the sleeve receptacle 6.1 of the printing press 6.
  • FIG 6 shows a first end 11.1 of a receiving means 11 in a schematic representation, the first end 11.1 of the receiving means 11 being encompassed by two pivoting sections 23 of a first closure element 21 of a closure unit 20.
  • the pivoting sections 23 each have a guide area 23.1, through which the first end 11.1 of the receiving means 11 can also be gripped by the first closure element 21 when the receiving means 11 inclines on one side and a receiving area of the closure unit 20 is therefore not concentric with the first end 11.1 of the receiving means 11 is.
  • the guide area 23.1 has a curved or sloping shape, so that the first end 11.1 is guided until it is preferably completely received by the first closure element 21.
  • FIG. 1 also shows a receiving means 11, which is designed as a receiving mandrel and thus has a rod-like longitudinal extension.
  • a pressure sleeve 2 lies with a lateral surface 2.2, a through-opening 2.1 of the pressure sleeve 2 on the receiving means 11, so that an outer area of the pressure sleeve 2 is not contacted by the receiving means 11.
  • the receiving means 11 also has a threading area 11.4, which is designed obliquely at least in some areas, so that the pressure sleeve 2 can be slid onto the receiving means 11 more easily. Furthermore, as a result, in particular an exact positioning of the receiving means 11 may not be necessary.
  • the receiving means 11 has a sliding coating 11.3, which reduces frictional resistance between the pressure sleeve 2 and the receiving means 11, so that it is easier for an operator 9 to push the pressure sleeve 2 onto the receiving means 11 and to remove the pressure sleeve 2 from the receiving means 11 is.
  • Figure 7b also shows a transport unit 10 with a receiving means 11, wherein a closure unit 20 of the transport unit 10 is shown in a supply state II.
  • the receiving means 11 is supported by a second closure element 22 , the second closure element 22 acting as a moment support for the receiving means 11 .
  • the receiving means 11 inclines downwards on one side under its own weight along a direction of inclination 11.5, since a first closure element 21 of the closure unit 20 is detached from the receiving means 11. Accordingly, the receiving means 11 inclines along a bending line.
  • the inclination along the direction of inclination 11.5 becomes correspondingly larger when a pressure sleeve 2 rests on the receiving means 11 and thus also contributes at least partially to the bending line through its weight.
  • the first and / or the second closure element 21, 22 according to the embodiment of figure 6 designed to compensate for the inclination of the receiving means 11 when the shutter unit 20 closes.
  • FIG 8 also shows a set-up method 100 in a schematic representation of method steps in a further exemplary embodiment.
  • a transfer 101 of a closure unit 20 of a transport unit 10 from a security state I to a supply state II is provided.
  • a receiving means 11 is closed by the closure unit 20 and in the supply state II it is possible for a pressure sleeve 2 to be received by the receiving means 11 .
  • the pressure sleeve 2 is then applied 102, in particular by sliding it, from a feed position 3 onto the receiving means 11 of the transport unit 10 and the closure unit 20 is transferred 103 from the feed state II to the safety state I.
  • the transport unit 10 moves 104 the transport unit 10 from the Feeding position 3 to a working position 4 of the printing press 6 is possible at least partially manually and/or at least partially automatically, with the conveying unit 10 being adjusted so that the pressing sleeve 2 can be easily pushed onto a sleeve receptacle 6.1 of a printing press 6.
  • the movement 104 includes aligning the receiving means 11 at the supply position 3 and/or aligning the receiving means 11 at the working position 4 .
  • the closure unit 20 can then be checked 105 from safety state I to a release state III, in which the pressure sleeve 2 in the receiving means 11 can be removed, so that the pressure sleeve 2 can be removed 106 from the receiving means 11 and the pressure sleeve 2 can be moved to the working position 4 can.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Replacement Of Web Rolls (AREA)

Claims (18)

  1. Unité de transport (10) pour le transport d'un manchon d'impression (2) d'une position d'alimentation (3) vers une position de travail (4) dans une presse à imprimer (6) comprenant un moyen de logement (11) pour le logement du manchon d'impression (2) et une unité de fermeture (20),
    dans laquelle l'unité de fermeture (20) peut être mise dans un état de sécurité (I), un état d'alimentation (II) et un état d'évacuation (III),
    dans laquelle le manchon d'impression (2) peut être logé par le moyen de logement (11) dans l'état d'alimentation (II) de l'unité de fermeture (20),
    dans laquelle le manchon d'impression (2) peut être retiré du moyen de logement (11) dans l'état d'évacuation (III) de l'unité de fermeture (20),
    et un retrait du manchon d'impression (2) est empêché dans l'état de sécurité (I) de l'unité de fermeture (20),
    caractérisée en ce que
    l'unité de fermeture (20) comprend un premier élément de fermeture (21) et un deuxième élément de fermeture (22), dans laquelle le premier élément de fermeture (21) fixe, dans l'état d'évacuation (III), une première extrémité (11.1) du moyen de logement (11) et le deuxième élément de fermeture (22) fixe, dans l'état d'alimentation (II), une deuxième extrémité (11.2) du moyen de logement (11), dans laquelle le premier élément de fermeture (21), dans l'état d'évacuation (III), et le deuxième élément de fermeture (22), dans l'état d'alimentation (II), agissent, par rapport au moyen de logement (11), comme un support de couple.
  2. Unité de transport (10) selon la revendication 1,
    caractérisée en ce que
    le moyen de logement (11) et l'unité de fermeture (20) constituent un sas pour le manchon d'impression (2), ce qui permet de loger le manchon d'impression (2), dans l'état d'alimentation (II), sur un côté de logement (10.1) de l'unité de transport (10) par le moyen de logement (11) et, de le retirer, dans l'état d'évacuation (III), sur un côté d'évacuation (10.2) de l'unité de transport (10), du moyen de logement (11), plus particulièrement dans laquelle, dans l'état d'alimentation (II), un retrait du manchon d'impression (2) sur le côté d'évacuation (10.2) et, dans l'état d'évacuation (III), un logement du manchon d'impression (2) sur le côté de logement (10.1), est empêché par l'unité de fermeture (20).
  3. Unité de transport (10) selon la revendication 1 ou 2,
    caractérisée en ce que
    le premier et/ou le deuxième élément de fermeture (21, 22) comprend deux portions pivotantes (23) qui sont conçues pour la préhension du moyen de logement (11), plus particulièrement dans laquelle chacune des portions pivotantes (23) comprend une zone de guidage (23.1) pour le guidage du moyen de logement (11) lors de la préhension du moyen de logement (11).
  4. Unité de transport (10) selon l'une des revendications précédentes,
    caractérisée en ce que
    le moyen de logement (11) est conçu de façon à ce que le moyen de logement (11) soit incliné sur un côté lorsque l'unité de fermeture (20) se trouve dans l'état d'évacuation (III) et/ou en ce que le moyen de logement (11) est un mandrin de logement sur lequel une ouverture de passage (2.1) du manchon d'impression (2) peut être coulissée de façon à ce que le manchon d'impression (2) s'appuie, avec une surface d'enveloppe (2.2) de l'ouverture de passage (2.1), sur le mandrin de logement et/ou en ce que le moyen de logement (11) comprend une zone d'enfilage (11.4) et/ou un revêtement de glissement (11.3), plus particulièrement dans laquelle la zone d'enfilage (11.4) et/ou le revêtement de glissement (11.3) facilite le coulissement du manchon d'impression (2) sur le moyen de logement (11).
  5. Unité de transport (10) selon l'une des revendications précédentes,
    caractérisée en ce que
    une unité de commande (34) est prévue, qui permet de contrôler l'unité de fermeture (20) de façon à ce que l'état d'alimentation (II) et l'état d'évacuation (III) peuvent être atteints chacun uniquement à partir d'un état de sécurité (I).
  6. Unité de transport (10) selon l'une des revendications précédentes,
    caractérisée en ce que
    un moyen de préhension (13) est prévu, sur lequel l'unité de transport (10) peut être déplacée manuellement, plus particulièrement dans laquelle le moyen de préhension (13) comprend une première portion de préhension (13.1) et une deuxième portion de préhension (13.2) pour la préhension du moyen de préhension (13) à deux mains.
  7. Unité de transport (10) selon l'une des revendications précédentes,
    caractérisée en ce que
    un moyen d'entraînement (31) est prévu, qui permet de déplacer le moyen de logement (11), plus particulièrement dans laquelle le moyen d'entraînement (31) peut être contrôlé par au moins un élément de commande (32) et/ou en ce qu'une aide au positionnement (12), plus particulièrement optique, est prévue, qui permet de déterminer une position relative de l'unité de transport (10) par rapport au manchon d'impression (2) dans la position d'alimentation (3) et/ou la position de travail (4).
  8. Dispositif de transport (1) pour le transport d'un manchon d'impression (2) d'une position d'alimentation (3) vers une position de travail (4) dans une presse à imprimer (6),
    caractérisé en ce que
    une unité de transport (10) selon l'une des revendications précédentes est logée de manière mobile au niveau d'un châssis (30).
  9. Dispositif de transport (1) selon la revendication 8,
    caractérisé en ce que
    l'unité de transport (10) est suspendue au châssis (30) et/ou le châssis (30) est fixé à une plate-forme élévatrice réglable (7).
  10. Dispositif de transport (1) selon l'une des revendications 8 ou 9,
    caractérisé en ce que
    le châssis (30) comprend au moins un rail (33), plus particulièrement une paire de rails, sur lequel l'unité de transport (10) est logée de manière mobile et/ou en ce qu'au moins le moyen de logement (11) est logé de manière rotative, plus particulièrement sur au moins 180°, autour d'un axe vertical (14).
  11. Système (5) pour la production de produits imprimés, comprenant
    une presse à imprimer (6) dans laquelle un manchon d'impression (2) peut être placé dans une position de travail (4) et
    un dispositif de transport (1) selon l'une des revendications précédentes pour le transport du manchon d'impression (2) d'une position d'alimentation (3) vers la position de travail (4).
  12. Procédé d'équipement (100) pour l'équipement d'une presse à imprimer (6) avec un manchon d'impression (2) à l'aide d'une unité de transport (10), plus particulièrement selon l'une des revendications 1 à 7, comprenant les étapes suivantes :
    - application (102), plus particulièrement coulissement, du manchon d'impression (2) à partir d'une position d'alimentation (3), sur un moyen de logement (11) de l'unité de transport (10),
    - passage (103) d'une unité de fermeture (20) de l'unité de transport (10) d'un état d'alimentation (II), dans lequel le manchon d'impression (2) peut être logé par le moyen de logement (11), dans un état de sécurité (I) dans lequel le retrait du manchon d'impression (2) est empêché,
    - passage (105) de l'unité de fermeture (20) de l'état de sécurité (I) vers un état d'évacuation (III) dans lequel le manchon d'impression (2) peut être retiré du moyen de logement (11),
    - retrait (106) du manchon d'impression (2) du moyen de logement (11) et placement du manchon d'impression (2) dans une position de travail (4) dans la presse à imprimer (6),
    dans lequel l'unité de fermeture (20) comprend un premier élément de fermeture (21) et un deuxième élément de fermeture (22), dans lequel le premier élément de fermeture (21) fixe, dans l'état d'évacuation (III), une première extrémité (11.1) du moyen de logement (11) et le deuxième élément de fermeture (22) fixe, dans l'état d'alimentation (II), une deuxième extrémité (11.2) du moyen de logement (11), dans lequel le premier élément de fermeture (21), dans l'état d'évacuation (III), et le deuxième élément de fermeture (22), dans l'état d'alimentation (II), agissent, par rapport au moyen de logement (11), comme un support de couple.
  13. Procédé d'équipement (100) selon la revendication 12,
    caractérisé en ce que
    le procédé d'équipement (100) comprend l'étape suivante :
    - passage (101) de l'unité de fermeture (20) de l'état de sécurité (I) à l'état d'alimentation (II) et/ou
    - déplacement (104) de l'unité de transport (10) entre la position d'alimentation (3) et la position de travail (4), plus particulièrement dans lequel le déplacement (104) a lieu au moins partiellement manuellement et/ou au moins partiellement de manière automatisée.
  14. Procédé d'équipement (100) selon la revendication 13,
    caractérisé en ce que
    le déplacement (104) de l'unité de transport (10) comprend au moins une des étapes suivantes :
    - orientation du moyen de logement (11) au niveau de la position d'alimentation (3) du manchon d'impression (2),
    - orientation du moyen de logement (11) au niveau de la position de travail (4) du manchon d'impression (2).
  15. Procédé d'équipement (100) selon l'une des revendications 12 à 14,
    caractérisé en ce que
    le passage (101) de l'unité de fermeture (20) de l'état de sécurité (I) à l'état d'alimentation (II) a lieu grâce à l'ouverture d'un premier élément de fermeture (21) de l'unité de fermeture (20), plus particulièrement dans lequel le premier élément de fermeture (21) entoure, dans l'état de sécurité (I), une première extrémité (11.1) du moyen de logement (11) et, dans l'état d'alimentation (II), il est détaché de la première extrémité (11.1) du moyen de logement (11).
  16. Procédé d'équipement (100) selon l'une des revendications 12 à 15,
    caractérisé en ce que
    le passage (105) de l'unité de fermeture (20) de l'état de sécurité (I) à l'état d'évacuation (III) a lieu grâce à l'ouverture d'un deuxième élément de fermeture (22) de l'unité de fermeture (20), plus particulièrement dans lequel le deuxième élément de fermeture (22) entoure, dans l'état de sécurité (I), une deuxième extrémité (11.2) du moyen de logement (11) et, dans l'état d'alimentation (II), il est détaché de la deuxième extrémité (11.1) du moyen de logement (11).
  17. Procédé d'équipement (100) selon l'une des revendications 12 à 16,
    caractérisé en ce que
    le moyen de logement (11) s'incline sur un côté lorsque l'unité de fermeture (20) passe de l'état de sécurité (I) à l'état d'évacuation (III), plus particulièrement dans lequel l'inclinaison disparaît au moins globalement lors du passage de l'unité de fermeture (20) de l'état d'évacuation (III) à l'état de sécurité (I).
  18. Procédé d'équipement (100) selon l'une des revendications 12 à 17,
    caractérisé en ce que
    l'unité de transport (10) fait partie d'un dispositif de transport (1) selon l'une des revendications 8 à 10 et/ou fait partie d'un système selon la revendication 11.
EP18189890.9A 2017-10-09 2018-08-21 Unité de transport destinée à transférer un manchon d'impression, dispositif de transport, système de production de produits imprimés ainsi que procédé de recharge Active EP3466688B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102017123317.2A DE102017123317A1 (de) 2017-10-09 2017-10-09 Beförderungseinheit zur Beförderung einer Druckhülse, Beförderungsvorrichtung, System für die Produktion von Druckerzeugnissen sowie Rüstverfahren

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Publication Number Publication Date
EP3466688A1 EP3466688A1 (fr) 2019-04-10
EP3466688B1 true EP3466688B1 (fr) 2022-03-30

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EP (1) EP3466688B1 (fr)
DE (1) DE102017123317A1 (fr)
ES (1) ES2911486T3 (fr)

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EP4360883A1 (fr) * 2022-10-31 2024-05-01 Bobst Bielefeld GmbH Ensemble d'impression avec une unité de manipulation d'outils d'impression

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IT1230954B (it) * 1989-06-30 1991-11-08 Cerutti Spa Off Mec Gruppo di stampa con forma stampante a sostituzione rapida.
DE202004011420U1 (de) * 2004-07-21 2004-09-30 Comexi S.A. Automatische Vorrichtung für die Bewegung und den Transport von Druckmänteln
DE102004037253B4 (de) * 2004-07-31 2013-09-05 Windmöller & Hölscher Kg Sleevewechselsystem

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ES2911486T3 (es) 2022-05-19
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