EP1491302A1 - Trennblatt-Spendevorrichtung und Spendeverfahren für Trennblätter - Google Patents

Trennblatt-Spendevorrichtung und Spendeverfahren für Trennblätter Download PDF

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Publication number
EP1491302A1
EP1491302A1 EP20040011622 EP04011622A EP1491302A1 EP 1491302 A1 EP1491302 A1 EP 1491302A1 EP 20040011622 EP20040011622 EP 20040011622 EP 04011622 A EP04011622 A EP 04011622A EP 1491302 A1 EP1491302 A1 EP 1491302A1
Authority
EP
European Patent Office
Prior art keywords
separator sheet
carriage
dispenser according
transport roller
cutting
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
Application number
EP20040011622
Other languages
German (de)
English (en)
French (fr)
Other versions
EP1491302B1 (de
Inventor
Heinrich Schöne
Rainer Seemann
Wilhelm Huonker
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.)
Bizerba SE and Co KG
Original Assignee
Bizerba SE and Co KG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Bizerba SE and Co KG filed Critical Bizerba SE and Co KG
Publication of EP1491302A1 publication Critical patent/EP1491302A1/de
Application granted granted Critical
Publication of EP1491302B1 publication Critical patent/EP1491302B1/de
Anticipated expiration legal-status Critical
Not-in-force legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/27Means for performing other operations combined with cutting
    • B26D7/32Means for performing other operations combined with cutting for conveying or stacking cut product
    • B26D7/325Means for performing other operations combined with cutting for conveying or stacking cut product stacking the cut product individually separated by separator elements
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/27Means for performing other operations combined with cutting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26DCUTTING; DETAILS COMMON TO MACHINES FOR PERFORATING, PUNCHING, CUTTING-OUT, STAMPING-OUT OR SEVERING
    • B26D7/00Details of apparatus for cutting, cutting-out, stamping-out, punching, perforating, or severing by means other than cutting
    • B26D7/27Means for performing other operations combined with cutting
    • B26D7/32Means for performing other operations combined with cutting for conveying or stacking cut product
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B25/00Packaging other articles presenting special problems
    • B65B25/06Packaging slices or specially-shaped pieces of meat, cheese, or other plastic or tacky products
    • B65B25/08Packaging slices or specially-shaped pieces of meat, cheese, or other plastic or tacky products between layers or strips of sheet or web material, e.g. in webs folded to zig-zag form
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T83/00Cutting
    • Y10T83/647With means to convey work relative to tool station
    • Y10T83/6492Plural passes of diminishing work piece through tool station
    • Y10T83/6499Work rectilinearly reciprocated through tool station

Definitions

  • the invention relates to a separator sheet dispenser for Thomasgutalin and in particular for food slices, comprising a holder for separating material, a cutting device for the production of dividing sheets and a transport device with at least one rotatable transport roller for transporting web-like separating material.
  • Such divider dispensers are also referred to as interleavers.
  • the invention further relates to a dispensing method for separating sheets between Thomasgutinn, in particular food slices, in which a release sheet is deposited on a Thomasgutin.
  • the present invention seeks to improve a separator sheet dispensing device of the type mentioned so that it can be used in a simple manner in conjunction with a cutting machine for the production of Thomasgutharin.
  • a release blade can be placed on a Thomasgutissue regardless of the spatial position in which the clippings.
  • a Thomasgutissue can also be delivered non-horizontal and vertical in particular and still a release sheet are placed on the Thomasgutusion.
  • the release sheet dispensing device can be easily on a slicing machine assemble or integrate into a slicing machine.
  • clippings can be deflected from a cutting plane into a transverse plane by the deflection device.
  • clippings can thereby be transferred to a conveying device, by means of which cutting material can be guided away from a cutting knife for clippings.
  • the deflection device has one or more driver elements for clippings.
  • a driver element ensures that a Thomasgutrine is deflected by a cutting plane.
  • Such a driver element may be formed, for example, as a sliding element. It can also be designed as a rotatable element, which is driven in particular in order to provide in this way for a deflection.
  • the deflection device comprises a rotatable element such as a roller as a driver element.
  • a release sheet can take over from the transport roller and continue to transport to put it on the clippings can.
  • the deflection device is arranged and designed so that separation material is entrained.
  • a release sheet can be transferred from the at least one transport roller so as to be able to deposit the release sheet on the cut again.
  • the at least one transport roller is arranged and designed so that a release blade on the deflection device for clippings the Clippings can be fed.
  • a release sheet can be placed directly on the origin of a Thomasgutemia on the clippings.
  • the device can be made compact, in particular as a combination of cutting machine and separator sheet dispensing device.
  • the at least one transport roller and the deflection device are arranged and designed so that a cut and the cut material supplied release sheet is entrained by the clippings, then the design effort for storing and taking away the release sheet is minimized by a Thomasgutusion.
  • the release material is formed so that a sufficiently large adhesive force is present on the clippings, so that a stored release sheet is transported by the clippings themselves.
  • the transport device of the at least one transport roller opposite a rigid element is arranged as a counter element. Between this counter element or the counter-elements and the one or more transport rollers, the release material is passed. If the counter-element is rigid, then the release material can be easily gripped, if it is not to be transported, for example, to unroll release material from a roll.
  • a release sheet when cutting a Thomasgutrine this can be fed. This makes it possible to build a compact device. There is no need to caching the slices to be provided with release sheets.
  • a separator sheet feed to the clippings takes place synchronously with a cutting operation for the clippings.
  • the conveyor comprises a chain frame.
  • one or more chains are movable to which Thomasgutalin are as it were aufsp screenbar to transport them.
  • the at least one transport roller is arranged facing the conveyor.
  • the deflection device is arranged facing the conveyor.
  • a Thomasgutular is deflected by the cutting plane in a transport direction.
  • a release sheet can be put down.
  • a separating sheet between the chain frame of the at least one transport roller can be fed to the clippings.
  • the deflection device is arranged and designed so that a separating sheet can be passed on from the at least one transport roller to a driver element of the deflection device.
  • a rotatable element as a driving element of the deflection and the at least one transport roller parallel axes of rotation, to ensure safe transfer.
  • a conveying direction is substantially parallel to an axis of rotation of a circular blade for cutting material to be cut (cut material) to provide transport away from this circular blade.
  • a conveying direction is preferably substantially perpendicular to the axis of rotation of the at least one transport roller.
  • the at least one transport roller is arranged and designed so that a separating blade of a movement in the Transport device transverse to a conveying direction for clippings in a movement in the conveying direction is reversible. This in turn results in a compact construction, in particular a combination of separating sheet dispensing device and slicing-cutting machine.
  • the at least one transport roller is driven to provide for transport of the transport material. It can then also be achieved that the separating material can be grasped, for example, to unroll it from a roll.
  • the holder holds stacked separating material or in a magazine recorded release material.
  • a space-saving training can be achieved if the holder is designed to receive a separator roll. In this case, then coiled release material for the production of release sheets can be unwound from a roll.
  • the at least one transport roller has a flat area and in particular a flattened area, so that the transport roller is not circular in cross-section, but corresponds to a circle in which a circle segment has been cut off. If this flat region is parallel to a separating material web, then the separating material between this flat region and a counter element can be inserted in a simple manner. Then, when the transport roller rotates slightly so that the round area is applied, then in this way the transport material can be taken safely. Based on this, in turn, a settlement of the Separating material from a roll by the role of the transport roller is moved away.
  • the above-mentioned object is also achieved if the holder for the separating material roll is arranged on a linearly displaceable slide. By moving the carriage, a settlement of release material can be achieved, whereby the release material can be tensioned simultaneously. About a linearly displaceable carriage, a compact structure can be achieved.
  • the carriage is displaceably guided relative to the at least one transport roller, wherein transport material can be grasped via the transport roller and a laying and in particular a development of transport material can be achieved by a movement away from the transport roller.
  • the carriage has one or more recesses, which are adapted to the at least one transport roller to facilitate the gripping of the release material by the transport roller. If transport material is above this recess and then the carriage is moved to the transport roller, then there is a counter element in the region of the recess below the separator material and a transport roller in the region of the recess above the separator material. A gripping of the release material is then simplified.
  • the carriage movement is driven and thereby driven driven to be able to produce separator sheets in a simple manner.
  • the carriage is displaceable in particular in a direction transverse to the axis of rotation of the at least one transport roller.
  • the carriage is displaceable away from a cutting blade in a direction transverse to a conveying direction of clippings. It can then achieve a compact design for the device.
  • the carriage is displaceable transversely to a rotational axis of a circular blade for clippings.
  • the carriage is displaceable parallel to a direction of displacement of a receiving carriage for good to be cut. This also makes it possible to achieve a compact construction of an overall apparatus comprising a slicing machine with receiving sled and a divider dispenser.
  • the carriage is guided on a stop plate for good to be cut or a plate parallel to the stop plate. This also makes it possible to achieve a compact design.
  • the carriage is guided on a housing parts of a cutting machine.
  • the transport device is mounted on the stop plate or the parallel plate. It is also possible that the Transport device is mounted on a housing of a cutting machine and in particular sliced cutting machine.
  • the deflection device is mounted so that the distance to the stop plate is fixed.
  • a distance of the stop plate on a circular blade can be adjusted slice thickness for Thomasgutluden.
  • the transport device is mounted on the stop plate, then it is moved with an adjustment of the cutting thickness.
  • the distance of the deflector is fixed to the stop plate, then the relative position between the transport roller means and the deflection does not change, so that regardless of the position of the stop plate both the transfer function (deflection function) remains guaranteed for clippings as well as for release sheets.
  • Such a fixed distance relationship between the stop plate and the deflecting device can be achieved if the deflecting device is arranged and designed so that it is displaced during a displacement of the stop plate. Such an arrangement and design is known from the prior art.
  • the deflection device is mounted on the conveyor. As a result, the task of the deflection, diverting sliced slices to the conveyor, perform in a secure manner.
  • separating material between the at least one transport roller and the holder can be laid and in particular unrolled via the carriage movement when the separating material is wound onto a roll.
  • a Linear movement of the carriage is then unrolled release material while at the same time kept taut.
  • the cutting device is held on the carriage. It can then be carried out in a simple manner, a cutting movement, which can be carried out in particular automatically with a mechanical control. If the cutter comprises a height-displaceable blade guided on the carriage, then a release blade can be cut in a precise and simple manner.
  • the cutting knife is in particular a serrated knife.
  • the carriage has a groove for dipping a cutting blade of the cutting device.
  • the groove acts as a counter element to the cutting blade. This can improve the cutting result.
  • a positioning device and in particular a mechanical positioning device is provided, by means of which a cutting knife can be brought into a vertical position and fixed there, and by means of which this height position can be released to initiate a cutting movement.
  • the release material is released in order to be able to grasp this and to be able to roll release material from a roll. Starting from this height position, a cutting movement can be performed by the cutting blade is moved.
  • Such a positioning device can be realized in a simple manner if a ramp is provided, by means of which the cutting blade can be brought into its vertical position. By a carriage movement can thereby bring the cutting blade automatically in its vertical position and secure there.
  • the ramp is arranged and designed so that the cutting blade can be brought into its height position when the carriage moves towards the at least one transport roller.
  • the approach to the transport roller takes place in particular when a separator sheet has been separated and dispensed in order to produce a new separator sheet, again separating material must be unrolled. After moving the carriage on the at least one transport roller separating material can in turn take hold of the transport roller and hold to provide a settlement. With appropriate training of the ramp can be automatically bring the cutting blade back to its vertical position.
  • the movement of the cutting blade to a cutting motion can be easily driven when the cutting blade is spring loaded.
  • the spring force acts in the direction of the release material.
  • the height position can then be secured in a simple manner by the movement of the cutting blade is locked on the release sheet.
  • Such a blockage in turn can be solved in a simple manner, so that the spring force can initiate a cutting movement.
  • the positioning device comprises a stop for the carriage, via which a cutting blade movement can be triggered on unrolled separating material towards the separation of a release sheet.
  • the stop acts on the cutting blade in such a way that the blocking is canceled in the vertical position.
  • the stop for setting the separator sheet length is lockable displaceable.
  • the separator blade length in a large length range, which is determined essentially by the displacement length and the stop of the carriage set.
  • the carriage movement is synchronized to Trennblattspenden.
  • Trennblattspenden For example, after making a release sheet this donated.
  • preparations can be made simultaneously to produce a new release sheet, in particular by moving the carriage accordingly.
  • the carriage is moved towards the at least one transport roller so as to prepare for the production of a new release sheet.
  • a sensor for detecting at least one end position of the carriage is provided. It may be provided that this sensor is coupled to a stop for initiating the cutting movement. About this sensor can detect at least one end position of the carriage so as to provide for a synchronization of the Trennblatther too with the separator sheet feeder.
  • a sensor can be provided by means of which the position of the carriage relative to the at least one transport roller can be determined and, in particular, determined absolutely. It may be, for example, an inductive length sensor or an optical length sensor. It can also be an inductive angle sensor or the like.
  • a control and regulation device then has at any time information about the position of the carriage, so as to be able to provide in turn for an optimized control and regulation of a sheet dispensing operation and the Trennbattspendeher too.
  • the release sheet dispensing device according to the invention can be used in connection with a slicing machine.
  • this slicing machine is provided with a conveyor for sliced slices.
  • the slicing machine according to the invention comprises in particular a driven circular knife for slicing production. Furthermore, a slidable receiving carriage and in particular automatically moving receiving carriage is provided for material to be cut. Also, a stop plate for good to be cut can be provided, on which in turn the separator sheet dispensing device is mounted.
  • Sliced slicing machines which may be provided with a separator sheet dispenser according to the invention are, for example, in the WO 96/05952 and EP 0 827 816 A1, to which reference is expressly made.
  • the invention has for its object to improve a dispensing method of the type mentioned so that it is universally applicable.
  • This object is achieved according to the invention in the dispensing method mentioned above, that a release sheet is fed to the clippings between a conveyor for clippings and a deflection for clippings.
  • the method according to the invention has the advantages already explained in connection with the device according to the invention.
  • a release sheet can define defined and put down especially immediately after production of the clippings.
  • a corresponding device can be built compact.
  • a release sheet is dispensed during the cutting of a clippings disk.
  • care must be taken, for example, for no intermediate storage of Thomasgutierin for the deposition of separator sheets.
  • separating material is supplied to the deflection device via at least one transport roller.
  • the transport roller can be arranged in the vicinity of the deflection device.
  • the deflection device can then itself provide for a transport of the release material.
  • the at least one transport roller grips release material to unwind it from the roll. This gripping occurs during a non-dispensing period for release material.
  • an angular position of the at least one separating roller is controlled so that a gripping of the separating material is made possible. This is advantageous when the separation roller is not rotationally symmetrical and in particular has a flattening to facilitate gripping.
  • the release material between the at least one transport roller and the roller is unwound by a carriage with the roller moves away from the at least one transport roller.
  • a separator sheet is cut off automatically, said cutting movement is coupled to the achievement of the end position.
  • separator sheet production and separator sheet feed are synchronized with a cutting process for the production of cut material.
  • FIG. 1 An exemplary embodiment of a dividing sheet dispensing device according to the invention, which is shown as a whole in FIG. 1 and denoted there by 10, is assigned to a food cutting machine 12.
  • Such food slicing machines are also referred to as slicing machines. Examples of such slicing machines are described in WO 96/05952 or EP 0 827 816 A1, to which reference is expressly made. They can be used to make sliced slices from blocks of food such as sausage or cheese.
  • the release sheet dispenser 10 of the present invention may be provided to or mounted on the food slicer 12.
  • the release sheet dispensing device 10 is mounted on a stop plate 14 for good to be cut.
  • this is held on a receiving carriage and guided longitudinally displaceable parallel to the stop plate 14.
  • the disk thickness can be adjusted.
  • a cutting plane for the clippings is parallel to the stop plate 14.
  • the separator sheet dispenser 10 is mounted on the side of the stop plate 14, which is opposite to the stop side for the food block 16.
  • the slicing machine 12 comprises a circular blade 18 which is rotatable about an axis of rotation which is perpendicular to the stopper plate 14. In Figure 1, this axis of rotation is perpendicular to the plane.
  • a gap 20 is formed, through which a Thomasgutular 22 ( Figure 5) can be discharged.
  • a deflection device 24 For the removal of Thomasgutierin 22 of the circular blade 18 away a deflection device 24 is provided, which deflects a Thomasgutissue 22 from the cutting plane (parallel to the stop plate 14) in a transverse plane and in particular emits a Schneidgutinflammatory 22 to a conveyor 26, on the cut Thomasgutusionn 22 of the circular blade 18 are transported away.
  • a conveying direction 28 of the conveyor 26 is substantially parallel to the axis of rotation of the circular blade 18 ( Figure 5).
  • the conveyor 26 may comprise a chain frame 30 on which a plurality of spaced chains 32 are guided in parallel.
  • the chains are driven by a chain roller 34.
  • An axis of rotation 36 of such a chain roller is perpendicular to the conveying direction 28th
  • the chains are designed so that they can take Thomasgutalin 22.
  • the deflection device 24 is the chain frame 30 of the conveyor 26 opposite and arranged facing. It comprises as driver elements, for example, rotatable elements such as a plurality of spaced circumferentially toothed rollers 38.
  • the rollers 38 have a common shaft, so that they are synchronously rotatable about a rotation axis 40 which is parallel to the axis of rotation 36.
  • a driver element is designed to be non-rotatable, such as a sliding element, which provides for feeding a Thomasgutemia to the conveyor 26.
  • the teeth of the rollers 38 are formed so that they press Thomasgutalin 22 on the chain skewers.
  • the rollers 38 are driven by a gear connection in synchronism with the chain roller 34.
  • the deflection device 24 comprises a stripping element 42 (FIG. 5) which partially surrounds the rollers 38.
  • This scraper element 42 has recesses so that chain spikes between adjacent rollers 38 can dive to ensure the transfer of the sliced slices on the conveyor 26.
  • the stripping element 42 is made of a material which has low adhesion forces for sliced slices 22. It ensures that Thomasgutalin 22 are deflected by the deflector 24 on the conveyor 26 and not taken by the rotating rollers 38 with these and are led away from the conveyor 26.
  • this wiping element 42 is arranged in particular in a region in which there is the risk that a Thomasgutissue 22 is released from the conveyor 26 again or depositing on the conveyor 26 is prevented.
  • the stripping element 42 has an intermediate space 44 between the conveying device 26 and the deflection device 24, through which a chopped slice 22 is transported. In and in front of this intermediate space 44 (facing the circular blade 18), the cut-slice is deflected from the cutting plane into the conveying direction 28.
  • the separator sheet dispenser 10 comprises a transport means designated as a whole 46, wherein the rollers 38 also have transport function for separator sheets, as will be described in more detail below.
  • the deflection device 24 facing a transport roller device 48 is arranged ( Figure 1), which in the embodiment shown a first transport roller 50 and a second transport roller 52 which sit on a common driven shaft 54.
  • the shaft 54 is driven by a motor 56 and in particular an electric motor.
  • the two transport rollers 50 and 52 are used for gripping and transporting a separating material web 57. They are made for example of rubber.
  • the transport rollers 50, 52 in this case comprise a flattened and in particular flat region 58 (FIG. 5), which, as will be described in more detail below, facilitates the gripping of the separating material.
  • the transport rollers 50 are therefore not circular, but correspond to a circle with a cut circle segment.
  • the shaft 54 is provided with a marking 60.
  • the flattened region 58 can then be positioned exactly with respect to the separating material.
  • the separator sheet dispenser 10 comprises a linearly displaceable carriage 64, which is movably guided on the stop plate 14. It may alternatively be provided that the carriage is guided displaceably on a parallel to the stop plate 14 positioned plate.
  • a direction of movement 66 of this carriage 64 is transverse and in particular perpendicular to a rotation axis 68 of the transport rollers 50 and 52, wherein this axis of rotation 68 in turn is parallel to the axes of rotation 36 and 40.
  • the direction of movement 66 of the carriage 64 is in this case, in particular, parallel to a direction of movement of a receiving carriage for goods 16 to be cut on the slicing machine 12.
  • the carriage 64 is movable toward and away from the transport roller device 48.
  • the carriage comprises a holder 70 for a release material, which is web-shaped and is wound, for example, into a roll 72.
  • the roller 72 is then held by the holder 70.
  • the release material can also be kept as a stack or be replenished from a magazine.
  • the holder is then designed accordingly.
  • the release material is a material suitable for separating clippings discs 22 from one another. In particular, this must be suitable to separate fatty food slices from each other.
  • One possible material is parchment paper.
  • a plastic film material is used.
  • the carriage 64 has at its end facing the transport roller 48 end recesses 78, 80, which are adapted to the associated transport rollers 50, 52 with their respective counter-elements 74. Through these recesses 78, 80 it is possible that the carriage 64 via the transport rollers 50, 52 with their counter-elements 74 so relative to the transport roller means 48 is displaceable, that the transport rollers 50, 52 are above the carriage 64 with the release material 57 to this easier to grab. This will be described in more detail below.
  • the carriage 64 is provided with a cutting device designated as a whole by 82, via which separator material sheets for dispensing the sliced slices 22 can be produced from the separating material 57.
  • the cutting device 82 comprises a cutting knife 84, which is arranged vertically displaceable on the carriage 64 ( Figures 1 to 4).
  • a displacement direction 86 of the cutting blade 84 is transverse and in particular perpendicular to the direction of movement 66 of the carriage 64 ( Figures 3 and 4).
  • the cutting knife 84 is held on a displaceable in this direction knife carriage 88.
  • the knife carriage 88 is guided on a guide 90, which extends transversely and in particular perpendicular to the stop plate 14.
  • the carriage 88 itself is acted upon by a spring 92 whose spring force acts in the direction of the stop plate 14 when the spring 92 is compressed. If the spring 92 is released, then this drives the knife carriage 88 and thus the cutting blade 84 to the separating material web 57 in order to cut them and thus produce a separator sheet 76.
  • the carriage 64 is provided with a groove 94 in the region of the recesses 78, 80.
  • a counter element for the cutting blade 84 is formed to improve its cutting action.
  • the spring 92 is supported on a support element 96 which is arranged on an end of the guide 90 facing away from the stop plate 14.
  • a positioning device 98 for the cutting knife 84 which is designed in particular as a serrated knife, is provided, by means of which the cutting knife 84 can be automatically positioned and automatically perform a cutting movement.
  • the positioning device 98 comprises a ramp 100, which is arranged with respect to the transport roller device 48, that the cutting blade 84 can be brought to the transport roller device 48 in a vertical position upon movement of the carriage 64 and can be fixed there.
  • the ramp 100 is arranged in the vicinity of the transport roller device 48 and has a height increase 102 in the direction of the transport roller device 48 (and in the direction of the deflection device 24).
  • a flat portion 104 is provided, which adjoins the height increase 102 and which is formed so that the cutting blade 84 is in its vertical position (which is shown schematically in Figure 3) above the transport rollers 50, 52.
  • the knife carriage 88 of the cutting device 82 is aligned with the ramp 100 and has a rolling element 106 which can roll on the ramp 100 and in particular on its height increase 102.
  • the rolling element 106 rolls Height increase 102 and thereby leads to an increase in height of the blade carriage 88 of the cutter 82 relative to the stop plate 14.
  • the spring 92 is compressed, ie the spring force must be overcome. This force comes from the driven movement of the carriage 64.
  • a securing element 108 is provided, which is fixedly arranged with respect to the support element 96 of the carriage 64 and which engages in the knife carriage 88 of the cutting device 82 in order to lock its movement on the stop plate 14.
  • a spring plate or the like is provided as a securing element 108.
  • the securing element 108 can be triggered via a stop element 110.
  • This stop element 110 (FIGS. 1 to 4) is designed such that, when the carriage 64 reaches this stop element 110 in a suitable position, it guides the securing element 108 away from the knife carriage 88 and thus lifts the blocking of the height displaceability onto the stop plate 14.
  • the spring 92 drives the knife carriage 88 and thus the cutting blade 84 in the direction of the stop plate 14 and causes a severing of the release material 57, so again to produce a separator sheet 76.
  • the stop element 110 is arranged in particular displaceable with respect to the stop plate 14, as indicated in Figure 1 by the arrows 112.
  • the length of a severed separating blade 76 can be adjusted: the greater the distance between the stop element 110 (in the direction of movement 66 of the carriage 64) to the transport roller device 48, the greater the length of a severed separating sheet 76th
  • the carriage 64 is driven by an electric motor 114, wherein in particular a belt drive 116 is still provided for converting a rotational movement of a motor shaft into a linear movement of the carriage 64.
  • a sensor 118 such as a Hall sensor may be provided.
  • a magnet 120 is disposed on the carriage 64.
  • the sensor 118 is displaceable together with the stop element 110.
  • a sensor 122 by means of which the absolute position of the carriage relative to the transport roller device 48 can be determined. It may be, for example, an inductive sensor or an optical sensor. This sensor 122 may have a linear extension in the direction of movement 66 or it may be coupled to a motor shaft of the motor 114 in order to detect the carriage position from the motor shaft position. With this sensor 122, the end position of the carriage 64 can be determined in particular then. As will be described in more detail below, a synchronization between the separator sheet feed to the sliced slices 22 and a movement of the sled 64 can be carried out via this sensor 122.
  • the release sheet dispenser 10 of the invention operates as follows:
  • the carriage 64 is moved forward toward the transport roller means 48 so that the transport rollers 50, 52 can grip release material 57.
  • the separating material 57 is unrolled on the carriage 64, so that it lies in the region of the recesses 78, 80.
  • the cutting blade 84 is displaced to its height position as the rolling element 106 rolls up the ramp 100. The cutting blade is then above the transport rollers 50, 52nd
  • the motor 56 is driven to rotate the transport rollers 50, 52 so that the flattened portion 58 of the transport rollers 50, 52 is aligned parallel to the stop plate 14.
  • the carriage 64 then moves with its recesses 78, 80 so that the transport rollers 50, 52 and their counter-elements 74 can dive into these recesses 78, 80.
  • the release material between the transport rollers 50 and 52 between these and their counter-elements 74 can then be taken and held.
  • the length of the severed separating sheet 76 is adjustable.
  • a signal is generated by the sensor 118 or by the sensor 122, which indicates to a control and regulating device that the end position of the carriage 64 has been reached.
  • the release sheet dispenser 10 has now made a release sheet 76 which can be stored on a Thomasgutieri 22.
  • This deposition is synchronized with the cutting of such Thomasgutefficiency 22: If a food block 16 is cut and a Thomasgutfactor formed, as indicated in Figure 5, then the Thomasgutissue 22 is already on the cutting plane 22 in a plane across the deflection during the cutting movement diverted.
  • the deflection device 24 may also include a fixed deflecting element 124 for this purpose. By the deflection 124, the Thomasgutissue 22 is deposited on the conveyor 26, where it is detected by the chains 32 and thereby impaled to a certain extent and is transported in the conveying direction 28.
  • the separator sheet is fed by the transport roller device 48 of the deflection device 24 and then deposited there on the Thomasgutissue 22.
  • the Thomasgutemian with filed separator sheet 76 are then placed at the end of the conveyor 26 by a stripper (not shown in the figures) on a tray. Since the Thomasgutissuen 22 are stored with adjacent dividers, different deposit patterns can be achieved. For example, the sliced slices 22 can be stored in a shingled, rosette-shaped or even stacked form. By the Abeller a Thomasgutissue with arranged thereon divider sheet with the divider side down.
  • the movement of the carriage 64, the rotation of the transport roller means 48 for gripping the separation material and for advancing the separation material and transfer to the deflector 24 are synchronized.
  • a control and regulating device is provided, which synchronized with the cutting movement for a corresponding movement of the carriage 64 and a rotation of the transport roller device 48 provides. Via the sensors 82, 118 and 122, these movements can be controlled or regulated or monitored.
  • control and regulating device can also control or regulate whether at all a separator sheet should be stored and when this should happen. This can be set by a user, for example.
  • a sensor for material to be cut determines the fat content before or during cutting. If it is determined that the fat content is so high that there is a risk that glued together Thomasgutalin stick together, then the control and regulating device can ensure that a release sheet is placed on the respective Thomasgutemian.
  • the cutting movement of the cutting blade 84 is mechanically controlled automatically, so that no electronic control is necessary here.
  • a severed separating sheet 76 is transferred from the transporting roller device 48 to the deflecting device 24 in order to be able to be deposited therefrom onto a clippings disk 22.
EP20040011622 2003-06-27 2004-05-15 Trennblatt-Spendevorrichtung und Spendeverfahren für Trennblätter Not-in-force EP1491302B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE10329842 2003-06-27
DE2003129842 DE10329842A1 (de) 2003-06-27 2003-06-27 Trennblatt-Spendevorrichtung und Spendeverfahren für Trennblätter

Publications (2)

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EP1491302A1 true EP1491302A1 (de) 2004-12-29
EP1491302B1 EP1491302B1 (de) 2006-11-15

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Application Number Title Priority Date Filing Date
EP20040011622 Not-in-force EP1491302B1 (de) 2003-06-27 2004-05-15 Trennblatt-Spendevorrichtung und Spendeverfahren für Trennblätter

Country Status (5)

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US (1) US20050034588A1 (ru)
EP (1) EP1491302B1 (ru)
AT (1) ATE345202T1 (ru)
DE (2) DE10329842A1 (ru)
ES (1) ES2273119T3 (ru)

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102007048015A1 (de) 2007-09-27 2009-04-02 Bizerba Gmbh & Co. Kg Lebensmittel-Schneidemaschine und Verfahren zur Ablage von Lebensmittel-Schnittgutscheiben
EP2226170A1 (de) * 2009-03-06 2010-09-08 Bizerba GmbH & Co. KG Zuführkettenrahmen für automatische Scheibenschneidemaschinen
CN104519746A (zh) * 2012-06-06 2015-04-15 动力机械公司 分配配料的系统和方法

Families Citing this family (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AT508039B1 (de) * 2009-04-03 2012-07-15 Kuchler Fritz Aufschnittschneidemaschine
US9326544B2 (en) 2012-06-06 2016-05-03 Momentum Machines Company System and method for dispensing toppings
US10905150B2 (en) 2012-06-06 2021-02-02 Creator, Inc. System for dispensing toppings
US9295282B2 (en) 2012-06-06 2016-03-29 Momentum Machines Company System and method for dispensing toppings
US9295281B2 (en) 2012-06-06 2016-03-29 Momentum Machines Company System and method for dispensing toppings
US10068273B2 (en) 2013-03-13 2018-09-04 Creator, Inc. Method for delivering a custom sandwich to a patron
US11023949B2 (en) 2013-03-13 2021-06-01 Creator, Inc. Method for delivering a custom sandwich to a patron
DK3495104T3 (da) * 2017-12-05 2020-09-28 Marel Meat Bv Et fødevareseparatorapparat
ES2829806T3 (es) * 2018-05-08 2021-06-02 Hoefliger Harro Verpackung Dispositivo y procedimiento para acortar a medida la longitud de material de sutura quirúrgica
WO2019246459A1 (en) 2018-06-20 2019-12-26 Creator, Inc. System and method for dispensing toppings

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US1519354A (en) * 1922-07-10 1924-12-16 Us Slicing Machine Co Slice receiver for slicing machines
US2813798A (en) * 1954-01-28 1957-11-19 Package Entpr Inc Method for placing paper sheets between slices in a stack
FR2488567A1 (fr) * 1980-08-12 1982-02-19 Journo Moise Procede et machine de conditionnement de crepes, feuilles de bricks, de pate feuilletee ou analogues
EP0465256A1 (en) * 1990-07-05 1992-01-08 Oscar Mayer Foods Corporation Apparatus for transferring material strips onto a web

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DE9104580U1 (ru) * 1991-04-16 1992-06-17 Natec Reich, Summer Gmbh & Co Kg, 8996 Opfenbach, De
DE4429628A1 (de) * 1994-08-20 1996-02-22 Bizerba Gmbh & Co Kg Aufschnittschneidemaschine
AT409734B (de) * 2001-05-18 2002-10-25 Kuchler Fritz Aufschnittschneideanordnung

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Publication number Priority date Publication date Assignee Title
US1519354A (en) * 1922-07-10 1924-12-16 Us Slicing Machine Co Slice receiver for slicing machines
US2813798A (en) * 1954-01-28 1957-11-19 Package Entpr Inc Method for placing paper sheets between slices in a stack
FR2488567A1 (fr) * 1980-08-12 1982-02-19 Journo Moise Procede et machine de conditionnement de crepes, feuilles de bricks, de pate feuilletee ou analogues
EP0465256A1 (en) * 1990-07-05 1992-01-08 Oscar Mayer Foods Corporation Apparatus for transferring material strips onto a web

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102007048015A1 (de) 2007-09-27 2009-04-02 Bizerba Gmbh & Co. Kg Lebensmittel-Schneidemaschine und Verfahren zur Ablage von Lebensmittel-Schnittgutscheiben
EP2226170A1 (de) * 2009-03-06 2010-09-08 Bizerba GmbH & Co. KG Zuführkettenrahmen für automatische Scheibenschneidemaschinen
CN104519746A (zh) * 2012-06-06 2015-04-15 动力机械公司 分配配料的系统和方法

Also Published As

Publication number Publication date
EP1491302B1 (de) 2006-11-15
ES2273119T3 (es) 2007-05-01
ATE345202T1 (de) 2006-12-15
DE502004001984D1 (de) 2006-12-28
DE10329842A1 (de) 2005-01-20
US20050034588A1 (en) 2005-02-17

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