EP3315420B1 - Machine d'emballage par emboutissage - Google Patents

Machine d'emballage par emboutissage Download PDF

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Publication number
EP3315420B1
EP3315420B1 EP16196154.5A EP16196154A EP3315420B1 EP 3315420 B1 EP3315420 B1 EP 3315420B1 EP 16196154 A EP16196154 A EP 16196154A EP 3315420 B1 EP3315420 B1 EP 3315420B1
Authority
EP
European Patent Office
Prior art keywords
film
packaging machine
area
thermo
station
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
EP16196154.5A
Other languages
German (de)
English (en)
Other versions
EP3315420A1 (fr
Inventor
Elmar Ehrmann
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.)
Multivac Sepp Haggenmueller GmbH and Co KG
Original Assignee
Multivac Sepp Haggenmueller GmbH 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 Multivac Sepp Haggenmueller GmbH and Co KG filed Critical Multivac Sepp Haggenmueller GmbH and Co KG
Priority to EP16196154.5A priority Critical patent/EP3315420B1/fr
Priority to ES16196154T priority patent/ES2805229T3/es
Priority to US15/795,120 priority patent/US10689136B2/en
Priority to CN201711025330.6A priority patent/CN108001722B/zh
Publication of EP3315420A1 publication Critical patent/EP3315420A1/fr
Application granted granted Critical
Publication of EP3315420B1 publication Critical patent/EP3315420B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/10Feeding, e.g. conveying, single articles
    • B65B35/24Feeding, e.g. conveying, single articles by endless belts or chains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B11/00Wrapping, e.g. partially or wholly enclosing, articles or quantities of material, in strips, sheets or blanks, of flexible material
    • B65B11/50Enclosing articles, or quantities of material, by disposing contents between two sheets, e.g. pocketed sheets, and securing their opposed free margins
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B35/00Supplying, feeding, arranging or orientating articles to be packaged
    • B65B35/30Arranging and feeding articles in groups
    • B65B35/44Arranging and feeding articles in groups by endless belts or chains
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B41/00Supplying or feeding container-forming sheets or wrapping material
    • B65B41/12Feeding webs from rolls
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B41/00Supplying or feeding container-forming sheets or wrapping material
    • B65B41/12Feeding webs from rolls
    • B65B41/14Feeding webs from rolls by grippers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B61/00Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
    • B65B61/04Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages
    • B65B61/06Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages by cutting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B61/00Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
    • B65B61/04Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages
    • B65B61/06Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages by cutting
    • B65B61/065Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for severing webs, or for separating joined packages by cutting by punching out
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B61/00Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages
    • B65B61/28Auxiliary devices, not otherwise provided for, for operating on sheets, blanks, webs, binding material, containers or packages for discharging completed packages from machines
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B65/00Details peculiar to packaging machines and not otherwise provided for; Arrangements of such details
    • B65B65/003Packaging lines, e.g. general layout
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B7/00Closing containers or receptacles after filling
    • B65B7/16Closing semi-rigid or rigid containers or receptacles not deformed by, or not taking-up shape of, contents, e.g. boxes or cartons
    • B65B7/162Closing semi-rigid or rigid containers or receptacles not deformed by, or not taking-up shape of, contents, e.g. boxes or cartons by feeding web material to securing means
    • B65B7/164Securing by heat-sealing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B9/00Enclosing successive articles, or quantities of material, e.g. liquids or semiliquids, in flat, folded, or tubular webs of flexible sheet material; Subdividing filled flexible tubes to form packages
    • B65B9/02Enclosing successive articles, or quantities of material between opposed webs
    • B65B9/04Enclosing successive articles, or quantities of material between opposed webs one or both webs being formed with pockets for the reception of the articles, or of the quantities of material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B9/00Enclosing successive articles, or quantities of material, e.g. liquids or semiliquids, in flat, folded, or tubular webs of flexible sheet material; Subdividing filled flexible tubes to form packages
    • B65B9/02Enclosing successive articles, or quantities of material between opposed webs
    • B65B9/04Enclosing successive articles, or quantities of material between opposed webs one or both webs being formed with pockets for the reception of the articles, or of the quantities of material
    • B65B9/045Enclosing successive articles, or quantities of material between opposed webs one or both webs being formed with pockets for the reception of the articles, or of the quantities of material for single articles, e.g. tablets

Definitions

  • the invention relates to the field of packaging machines.
  • the invention relates to a thermoforming packaging machine which can be designed, for example, for packaging food products.
  • thermoforming packaging machines troughs are formed in a bottom film web by means of a forming station.
  • the troughs are filled in an insertion section with products to be packed.
  • the filled troughs are sealed with a top film in a sealing station.
  • the resulting packaging can be evacuated or filled with protective gas to increase the shelf life of the packaged products.
  • the filled and closed troughs present in the lower film web are separated from one another in order to obtain individual packagings or connected groups of packagings.
  • the bottom film web is conveyed along a transport direction by means of a transport device.
  • the forming station, the insertion section, the sealing station and the cutting station are expediently arranged in the order mentioned along the transport direction.
  • the forming station, the sealing station and the cutting station can be arranged on a machine frame of the thermoforming packaging machine. It is known to bring the products to be packaged via one or more feed belts to the thermoforming packaging machine in the area of the insertion section, where the products are transferred, for example, by means of a picker or manually into the troughs of the bottom film web. Since the distance between the feed belt and the troughs to be filled must be overcome each time the products are transferred from the feed belt to the troughs, the cycle or cycle time depends, among other things, on this distance. The minimum distance that can be achieved between the feed belt and the bottom film web with the recesses formed therein is limited, among other things, by the space requirement of the machine frame and the side panels on both sides of the thermoforming packaging machine.
  • thermoforming packaging machine according to a specialized design is known.
  • This comprises a side profile, on the inside of which a chain guide for a film clip chain for transporting the bottom film web is attached.
  • the side profile which is arranged along the insertion path, is at the same time part of the product feed for conveying the products to be packaged to the insertion path.
  • the product feed is thus formed integrally with the side profile of the thermoforming packaging machine in order to reduce the distance between the products supplied and the troughs to be filled, and thus the ways to implement them shorten the products in the troughs.
  • thermoforming packaging machine cannot simply be combined with different product feed systems depending on the conditions of use.
  • thermoforming packaging machine is difficult to adapt to the spatial conditions of the place of use.
  • the deep-drawing packaging machine disclosed there comprises clamp chains held in chain guides for holding and transporting the bottom film on both sides along the transport direction.
  • the chain guides are aligned horizontally along the forming station and along the sealing station.
  • the chain guides have an increasing orientation along an insertion section lying between the forming station and the sealing station.
  • the chain guides along the insertion path are preferably inclined at an angle of 10 ° to 30 ° to the horizontal.
  • products to be packaged are inserted directly into the troughs of the bottom film via a product insert belt, which is designed as a retraction belt and extends above the film transport plane parallel to the transport direction.
  • thermoforming packaging machine Since the product insert tape must extend above the film transport level for this purpose, care must be taken when designing the thermoforming packaging machine that moving upper parts of the forming station do not come into conflict with the product insert tape during operation.
  • the direct insertion of products into troughs running along an ascending area by means of a retraction belt can be unsuitable for certain products and trough shapes and requires a precise coordination of the operation of the individual components of the packaging machine.
  • the EP 2 412 632 B1 shows a thermoforming packaging machine in which the bottom film is not transported in a constant transport level through the various workstations of the packaging machine, but is transported in a transition area from a first transport level to a different second transport level.
  • the bottom film passes through the deep-drawing station in the first, horizontal transport plane. Downstream of the thermoforming station, the bottom film comprising the packaging troughs is steered upward at an angle of approximately 50 °, whereupon it merges into a horizontal, second transport level, which is higher than the first transport level. Products to be packaged are fed via a horizontal conveyor, which extends directly above the bottom film web in the film transport direction.
  • the packaging troughs are filled in the transition area, in which the packaging troughs are conveyed from the first transport level to the second transport level, which facilitates the direct loading of the products by means of the horizontal conveyor.
  • Thermoforming packaging machines which have complete cutting stations in order to separate several packages from a film composite.
  • the cut packaging remains on support elements and is then transported out of the complete cutting station onto a conveyor belt by means of a subsequent preference of the residual film grid, which transports the packaging out of the thermoforming packaging machine or onwards.
  • the disadvantage here is that the packaging is conveyed to a subsequent work process on the conveyor belt in an uncontrolled manner.
  • the total length of the arrangement can become relatively large, so that the arrangement cannot be used in confined spaces.
  • thermoforming packaging machine which, with a high work cycle and a high degree of accuracy, enables products to be packaged to be supplied and / or filled and sealed packages to be removed.
  • thermoforming packaging machine comprises a molding station, an insertion section, a sealing station and a cutting station.
  • a transport device of the thermoforming packaging machine is designed to convey a lower film in a film transport surface along a transport direction from the forming station via the insertion path to the sealing station and further to the cutting station.
  • the molding station comprises a molding tool for forming troughs in the bottom film, in particular by deep drawing the bottom film.
  • the troughs formed in the bottom film are filled with products to be packaged, in particular with food. This can be done, for example, using a robot device, such as. B. a picker, or done manually.
  • the sealing station comprises a sealing tool for closing the troughs with an upper film. Sealing can take place under a protective gas atmosphere or vacuum to make the packaged products particularly durable.
  • the top film can be sealed in the sealing station by means of pressure and heat and / or by ultrasonic welding to close the troughs on the bottom film.
  • the cutting station arranged downstream along the transport direction of the sealing station is designed, in particular, to automatically separate the closed troughs, so that the packaged products are released from the composite of the bottom film.
  • the cutting station can be designed, for example, as a complete cutting station.
  • thermoforming packaging machine A particular focus of the invention is on how products to be packaged are fed to the thermoforming packaging machine and / or finished packaging can be discharged from the thermoforming packaging machine. According to the principle on which the invention is based, the feeding and removal of elements (products to be packaged or finished packaged products) can be improved in a largely analogous manner during the operation of the thermoforming packaging machine.
  • the film transport surface between the molding station and the sealing station comprises a first along the Transport direction increasing area. This first ascending area is adjoined by a first flat area encompassing the insertion section along the transport direction.
  • the information “increasing” and “level” can be understood in the sense of the invention in comparison to a horizontal level.
  • An “increasing” area of the film transport surface is then to be understood as an area in which a vertical height of the film transport surface increases as it progresses along the transport direction.
  • a "flat" area represents an area over which the vertical height of the film transport surface remains at least substantially constant as it progresses along the transport direction.
  • a product feed device for conveying products to be packaged that extends parallel to the transport direction extends in the transport direction at least along the insertion path and in a top view of the thermoforming packaging machine next to the insertion path. It is sufficient here if the product feed device extends in the area of the insertion path parallel to the transport direction of the bottom film. It is not excluded that the product feed device also does not convey parallel to the transport direction in some areas. For example, the product feed device can extend onto the insertion path at an angle to the transport direction. Products fed from the product feed device can be manually or automatically transferred from the product feed device into the troughs of the bottom film along the insertion path, for example by a picker.
  • the result is that the film transport area on the insert section is increased compared to a side frame of a machine frame of the thermoforming packaging machine, which can carry the sealing station, for example.
  • the product feed device can be brought along the insertion section particularly close to the bottom film with the recesses formed therein, since the side frame of the machine frame is not in the way.
  • a shorter transfer path for the products between the product feed device and the troughs of the bottom film can be achieved, and the work cycle of the thermoforming packaging machine can thus be increased.
  • thermoforming packaging machine can be designed in such a way that the film transport surface between the sealing station and the cutting station comprises a second area rising along the transport direction.
  • the second rising area includes the cutting station second flat area of the film transport surface.
  • a packaging discharge device that conveys parallel to the transport direction for discharging filled and closed packages extends in the transport direction at least along the second flat area and in a top view of the thermoforming packaging machine next to the second flat area. After they have been separated by the cutting station, the filled and sealed packages can be transferred laterally manually or automatically to the packaging discharge device for guiding them away from the thermoforming packaging machine, for example by means of a picker.
  • the film transport area in the second flat area at the cutting station is increased compared to a side frame of a machine frame of the thermoforming packaging machine.
  • the machine frame which in particular can carry the sealing station, preferably does not prevent the packaging discharge device from being brought particularly close to the film transport surface.
  • the transport route is reduced when the packaging is transferred to the packaging discharge device and the finished packaging can be removed more quickly.
  • a packaging machine can have both the first rising area, the first flat area and the correspondingly arranged product feed device and also the second rising area, the second flat area and the correspondingly designed packaging removal device.
  • first rising area, the first flat area and the associated product feed device are provided and the removal of the filled and closed packages is at least partially realized in some other way.
  • second rising area, the second flat area and the corresponding packaging discharge device are provided and the supply of products to be packaged is at least partially implemented differently.
  • a level area of the film transport surface increased by a rising area means that a corresponding transport device can be brought as close as possible to the side of the film transport surface and thus a corresponding one Implementation path is reduced.
  • the thermoforming packaging machine can comprise a machine frame with a side frame arranged along the transport direction of the lower film with an upper interfering edge.
  • the machine frame can carry the forming station and / or the sealing station. Alternatively or additionally, the machine frame can also carry the cutting station.
  • the film transport surface By lifting the film transport surface in the first and / or second rising area, the film transport surface can be guided over the upper interfering edge of the side frame in the area relevant for feeding the products and / or removing the finished packaging.
  • the transport device for the lower film can have a chain guide arranged along the transport direction, in which at least one film transport chain is guided for conveying the lower film.
  • the chain guide can have guide elements arranged on both sides along the transport direction for guiding film transport chains.
  • An exemplary chain guide is from the EP 1 816 075 A1 known.
  • the chain guide is attached to the side frame. It is particularly preferred if the chain guide lies on the inside with respect to the side frame. As a result, the chain guide is compactly integrated into the thermoforming packaging machine and is at least partially imperceptible to the outside. It also prevents accidental access, which could lead to injuries.
  • the film transport surface can lie before the first and / or second rising area of the film transport surface under the interference edge of the side frame.
  • This can e.g. B. can be realized by a suitable design of the chain guide.
  • the film transport surface lies in relation to the film transport direction in front of the first and / or second rising area at approximately the same level as the interference edge of the side frame or, for example, slightly above the interference edge of the side frame.
  • the film transport surface in the area of the molding station and / or the sealing station is approximately at the level of the interference edge of the side frame of the machine frame.
  • the film transport surface In its first and / or second flat area, the film transport surface can be higher than the interference edge of the side frame.
  • the film transport surface in the first and / or the second flat area are at least 5 cm, at least 10 cm or at least 15 cm above the interference edge of the side frame. This ensures that the side frame does not stand in the way of bringing a product feed device or a packaging discharge device close to the bottom film.
  • the product feed device can be designed as a product feed belt. However, it is also possible that the product feed device is designed differently.
  • the product feed device could be designed as a shuttle arrangement for feeding products.
  • Exemplary shuttle arrangements are from the DE 10 2014 119 351 A1 and the DE 10 2014 106 400 A1 known.
  • Such shuttle arrangements include a rail system and transport shuttles, which are movably mounted therein along a conveying direction and have a surface for receiving products to be transported.
  • the transport shuttle can be moved through the rail system, for example, by means of variable magnetic fields that can be generated by the rail system.
  • the packaging discharge device can be designed as a packaging discharge belt.
  • the packaging removal device can be designed differently, for example as a shuttle arrangement for removing packaging.
  • a conveying surface of the product feed device can be arranged at least in regions, in particular laterally next to the first flat region of the film transport surface, above the side frame of the machine frame.
  • a conveying surface of the packaging discharge device can be arranged at least in regions, in particular laterally next to the second flat region of the film transport surface, above the side frame of the machine frame.
  • a distance between the first flat area of the film transport surface and the product feed device and / or a distance between the second flat area of the film transport surface and the packaging discharge device can be less than 5 cm, less than 10 cm or less than 15 cm.
  • the first flat area of the film transport surface can be at least at the same height as the conveying surface of the product feed device.
  • the second flat region of the film transport surface can be at least at the same height as the conveying surface of the packaging discharge device. It may be advantageous if the first flat region of the film transport surface is at approximately the same height as the conveying surface of the product feed device and / or if the second flat region of the film transport surface is at approximately the same height as the conveying surface of the Packaging discharge device is. In this case, the distance to be covered when moving products to be packaged or packaged is also minimized in the vertical direction. For example, a distance of the corresponding surfaces from one another along a vertical axis can be at most 1 cm, at most 2 cm or at most 5 cm.
  • the product feed device can extend essentially to the sealing station. In this way, a particularly long insertion path can be realized, as a result of which a larger number of products are simultaneously placed along the insertion path in the troughs formed in the bottom film and the machine throughput can thus be increased.
  • the course of the film transport surface can be adapted according to a preferred arrangement of the forming station, the sealing station and the cutting station.
  • the film transport surface can comprise a region that follows the first flat region and falls along the transport direction.
  • the vertical height of the film transport surface can decrease over the falling area by the amount by which it has been raised over the first rising area.
  • thermoforming packaging machine 1 according to an embodiment of the invention is shown schematically in side view.
  • Fig. 2 shows a schematic side view of a thermoforming packaging machine 1 according to a further embodiment, which in some aspects corresponds to that in FIG Fig. 1 shown embodiment matches.
  • the thermoforming packaging machine 1 comprises a transport device 2, which is designed to convey a lower film 3 in a film transport surface 4 (areas hidden in the side view thereof are shown in dashed lines) along a transport direction T.
  • the bottom film 3 can be removed, for example, from a supply roll 6 attached to a machine frame 5 of the thermoforming packaging machine 1.
  • a forming station 7, an insertion section 8, a sealing station 9 and a cutting station 10 are provided in the order mentioned.
  • troughs 12 are formed in the bottom film 3 by the molding station 7 by means of a molding tool, in particular by deep drawing.
  • the molding tool can comprise an upper mold part 11a and a lower mold part 11b.
  • the troughs 12 are filled with products 13 to be packed along the insertion path 8.
  • the sealing station 9 comprises a sealing tool for closing the troughs 12 with an upper film 15.
  • the sealing tool can comprise an upper sealing tool part 14a and a lower sealing tool part 14b.
  • the sealing tool or a part thereof can be moved perpendicular to the direction of transport T and can be designed to cover the lower film 3 and the upper film 15 along corresponding weld seams 16 (cf. 5A and 5B ) sealed with pressure and heat.
  • the sealing station 9 can be designed to carry out the sealing process under a protective gas atmosphere or under vacuum in order to increase the shelf life of the packaged products 13.
  • the cutting station 10 downstream of the sealing station 9 along the transport direction T is designed to separate the packages formed by the filled and closed with the upper film 15 troughs 12. In particular, the cutting station 10 can be a complete cutting station.
  • a product feed device 20 is provided, which in the embodiment shown is designed as a product feed belt. This conveys the products 13 at least in regions parallel to the transport direction T of the bottom film 3.
  • the product feed device 20 extends at least along the insertion path 8.
  • the product feed device 20 extends next to the insertion path 8, that is to say next to the bottom film 3 in the region of the insertion section 8.
  • a product feed device 20 can be provided on both sides in order to be able to feed products 13 to be packaged on both sides of the bottom film 3. However, it is sufficient if a product feed device 20 is provided on one side of the insertion section 8.
  • the products 13 to be packaged can be laterally converted by the product feed device 20 into the troughs 12 of the lower film 3 by means of a picker 21. It is also conceivable to transfer the products 13 automatically or manually from the product feed device 20 into the troughs 12.
  • the transport device 2 for conveying the lower film 3 comprises chain guides 16 arranged on both sides along the transport direction T, in each of which one or more film transport chains 17 are guided for conveying the lower film 3.
  • the course of the film transport surface 4 can be determined by suitably laying out the chain guides 16.
  • the chain guides 16 arranged on both sides preferably run essentially parallel to one another, so that the film transport surface 4 has essentially no inclination with respect to a transverse direction of the thermoforming packaging machine 1.
  • the lower film 3 is guided in such a way that the film transport surface 4 comprises a first rising region 23 along the transport direction T between the forming station 7 and the sealing station 9.
  • the vertical height of the film transport surface 4 increases along the transport direction T of the lower film 3.
  • the vertical height of the film transport surface 4 can increase strictly monotonously or monotonously in the rising region 23.
  • the vertical height of the film transport surface 4 temporarily decreases in the course of the rising region 23, as long as the vertical height of the film transport surface 4 with respect to the transport direction T is lower at the beginning of the rising region 23 than at the end of the rising region 23.
  • the vertical height of the film transport surface 4 can increase by at least 5 cm, at least 10 cm or at least 15 cm over the first rising region 23.
  • the first rising area 23 is adjoined by a first flat area 25, in which the film transport surface 4 extends at least substantially horizontally.
  • the first flat region 25 comprises the insertion section 8 for filling the troughs 12 with the products 13 to be packaged.
  • Figure 3A shows sections of a sectional view through the in the 1 and 2 Thermoforming packaging machines 1 shown, the position of the cutting plane in the 1 and 2 is marked by line A and the cutting plane is perpendicular to the transport direction T.
  • the chain guide 16 in which the film transport chain 17 is guided for conveying the bottom film 3, is attached to an inside of a side frame 28 of the machine frame 5 of the thermoforming packaging machine 1.
  • the chain guide 16 comprises an element with an L-shaped section, on which guide rails 29 are provided, between which the film transport chain 17 is guided.
  • Figure 3A shows the situation at a position which is arranged in relation to the transport direction T in front of the first rising area 23 of the film transport surface 4.
  • the film transport surface 4 is arranged below an interference edge 30 of the side frame 28.
  • the film transport surface 4 could also be at the same height as the interference edge 30 of the side frame 28 or be arranged somewhat above it. It is advantageous if the film transport surface 4 is arranged slightly below the interfering edge 30 or at approximately the same height as the interfering edge 30, since in this way the lower film 3 can be optimally processed by the forming station 7 carried by the machine frame 5 without the operation of the forming station 7 is affected by the machine frame 5.
  • the product feed device 20 is already arranged in front of the first rising area 23 above the side frame 28 of the machine frame 5. However, this is not necessary. It would also be conceivable that the product feed device 20 is guided obliquely from a laterally further position onto the thermoforming packaging machine 1 and only runs parallel to the transport direction T in the area of the insertion path 8. For example, it could be ensured that the product feed device 20 does not hinder the operation of the molding station 7.
  • Figure 3B shows sections of a sectional view through the in the 1 and 2 Thermoforming packaging machines 1 shown, the position of the cutting plane perpendicular to the transport direction T in the 1 and 2 is indicated by line B.
  • Figure 3B shows a section in the area of the first flat area 25 of the film transport surface 4.
  • the film transport surface 4 is provided at a higher position.
  • the film transport surface 4 is higher than the interference edge 30 of the side frame 28 Figure 3B it can be seen that this allows the product feed device 20 to be brought particularly close to the insertion path 8, in particular to the lower film 3 in the region of the insertion path 8. Due to the increased film transport surface 4, the product feed device 20 can run over the interference edge 30 of the side frame 28 of the machine frame 5 and at the same time a conveying surface 32 of the product feed device 20 can be essentially at the same height as the film transport surface 4.
  • a lateral distance d11 between the conveying surface 32 of the product feed device 20 and the first flat region 25 of the film transport surface 4 is less than 5 cm, less than 10 cm or less than 15 cm.
  • a vertical distance d1v between the conveying surface 32 of the product feed device 20 and the first flat region 25 of the film transport surface 4 can be, for example, less than 1 cm, less than 2 cm, less than 5 cm or less than 10 cm.
  • the product feed device 20 can extend essentially to the sealing station 9. This can mean that a distance between the sealing station 9 and the product feed device 20 measured along the transport direction T is less than 50 cm, less than 30 cm, less than 20 cm or is less than 10 cm. With such a configuration, the insertion section 8 can be made particularly long.
  • the film transport surface 4 comprises a region 33 following the first flat region 25 with respect to the transport direction T and falling along the transport direction T.
  • the height of the film transport surface 4 decreases over the falling region 33 by the same amount that it is has increased in the course of the first rising region 23. It can thereby be achieved that the film transport surface 4 is arranged in the area of the sealing station 9 downstream of the sloping area 33 at approximately the same height as in the area of the forming station 7. Similar to the forming station 7, the sealing station 9 can simply be attached to the machine frame 5 and finds the bottom film 3 at a height suitable for processing.
  • no sloping region of the film transport surface 4 is provided after the first flat region 25.
  • the side frame 28 of the machine frame 5 is made higher with respect to the transport direction T than in the first flat area 25 and further ahead with respect to the transport direction T.
  • the sealing station 9 attached to the machine frame 5 is thus arranged higher than the forming station 7.
  • the bottom film 3 can be fed to the sealing station 9 attached to the machine frame 5 at a suitable height even without the provision of a falling region of the film transport surface 4. It would also be conceivable to arrange the sealing station 9 at any other height if the film transport surface 4 is suitably adapted.
  • the bottom film 3 with the troughs 12 formed therein, filled and closed with the top film 15 is fed to the cutting station 10 after the sealing station 9, where the filled and closed troughs 12 are separated.
  • the separated, packaged products 13 can then be removed from the thermoforming packaging machine 1. This can be done in different ways, which are detailed in the 1 and 2 are not shown.
  • the separated packaging could be removed in a simple manner by manual removal after the separation by the cutting station 10. It is also conceivable to further transport the packaging via discharge devices, in particular discharge belts.
  • the packaging can be moved manually or automatically onto one or more discharge devices or dropped.
  • thermoforming packaging machine 1 comprises a transport device 2, which is designed to convey the lower film 3 in a film transport surface 4 along the transport direction T.
  • the lower film 3 runs along the transport direction T through the forming station 7, the insertion section 8, the sealing station 9 and the cutting station 10 in the order mentioned.
  • the forming station 7, the sealing station 9 and the cutting station 10 can, as in the embodiments of FIGS 1 to 3 be executed.
  • the film transport surface 4 extends from the forming station 7 via the insertion path 8 to the sealing station 9 in a horizontal plane.
  • the transport device 2 for conveying the lower film 3 can be similar to that in the embodiments of FIG Figures 1 to 3 Include chain guides 16 arranged on both sides along the transport direction T, in each of which one or more film transport chains 17 are guided for conveying the bottom film 3.
  • the film transport surface 4 of the sealing station 9 subsequently has a special course with respect to the transport direction T, which enables quick and efficient removal of packaged products 13.
  • the lower film 3 is guided in such a way that the film transport surface 4 comprises a second rising region 43 along the transport direction T between the sealing station 9 and the cutting station 10. In the course of the second rising region 43, the vertical height of the film transport surface 4 increases along the transport direction T of the lower film 3.
  • the vertical height of the film transport surface 4 can increase by at least 5 cm, at least 10 cm or at least 15 cm over the second rising region 43.
  • the second rising region 43 is followed by a second flat region 45 at the cutting station 10, in which the film transport surface 4 extends at least substantially horizontally.
  • a packaging removal device 50 is provided, which in the embodiment shown is designed as a packaging removal belt. This extends at least along the second flat area 45. In a plan view of the deep-drawing packaging machine 1, the packaging removal device 50 extends alongside the second flat area 45 of the lower film 3.
  • a packaging removal device 50 can be provided on both sides in order to be able to discharge finished packaging 3 on both sides of the lower film. However, it is sufficient if a packaging removal device 50 is provided on one side of the film transport surface 4.
  • the packaged products 13 can be transferred laterally to the packaging discharge device 50 by means of a picker 21. It is also conceivable to otherwise place the packaged products 13 automatically or manually on the packaging discharge device 50.
  • the packaging removal device 50 does not extend next to but under the cutting station 10, for example approximately at the level of the film transport surface 4 in front of the rising area 43, so that the packaging separated at the cutting station 10 falls onto the packaging removal device 50.
  • Figure 5A shows a section of a sectional view through the in Fig. 4 Thermoforming packaging machine 1 shown, the position of the cutting plane in Fig. 4 is marked by the line A 'and the cutting plane is perpendicular to the transport direction T.
  • the chain guide 16 in which the film transport chain 17 is guided for conveying the bottom film 3, is attached to an inside of a side frame 28 of the machine frame 5 of the thermoforming packaging machine 1.
  • the chain guide 16 comprises an L-shaped element on which guide rails 29 are provided, between which the film transport chain 17 is guided.
  • Figure 5A shows the situation at a position which lies in front of the second rising region 43 of the film transport surface 4 with respect to the transport direction T.
  • the film transport surface 4 is arranged below an interference edge 30 of the side frame 28.
  • the film transport surface 4 could also be at the same height as the interference edge 30 of the side frame 28 or be arranged somewhat above it. It is advantageous if the film transport surface 4 is arranged slightly below the interfering edge 30 or at approximately the same height as the interfering edge 30, since the troughs 12 formed in the lower film 3 can be optimally closed by the sealing station 9 carried by the machine frame 5 without the operation of the sealing station 9 is impaired by the machine frame 5.
  • Figure 5B shows a section of a sectional view through the in Fig. 4 Thermoforming packaging machine 1 shown, the position of the cutting plane perpendicular to the transport direction T in Fig. 4 is indicated by line B '.
  • Figure 5B shows a section in the area of the second flat area 45 of the film transport surface 4.
  • the film transport surface 4 is provided at a higher position.
  • the film transport surface 4 is higher than the interference edge 30 of the side frame 28 Figure 5B it can be seen that this allows the packaging removal device 50 to be brought particularly close to the second flat region 45 of the lower film 3.
  • the packaging removal device 50 can run over the interference edge 30 of the side frame 28 of the machine frame 5 and at the same time a conveying surface 52 of the packaging removal device 50 can lie essentially at the same height as the film transport surface 4.
  • a lateral distance d2l between the conveying surface 52 of the packaging removal device 50 and the second flat region 45 of the film transport surface 4 is less than 5 cm, less than 10 cm or less than 15 cm.
  • a vertical distance d1v between the conveying surface 52 of the packaging discharge device 50 and the second flat region 45 of the film transport surface 4 can be, for example, less than 1 cm, less than 2 cm, less than 5 cm or less than 10 cm.
  • Thermoforming packaging machines 1 which allow products 13 to be packaged to be brought particularly quickly into the troughs 12 formed in the bottom film 3 in the region of the insertion section 8.
  • the film transport surface 4 comprises the first rising area 23 and the first flat area 25 comprising the insertion path 8.
  • the product feed device 20 for feeding products 13 extends in the transport direction T at least along the insertion path 8 and in plan view next to the insertion path 8 Following the sealing station 9, the course of the film transport surface 4 can in principle be designed as desired.
  • the finished packaged products 13 can be removed from the thermoforming packaging machine 1 in any manner.
  • the packaged products 13 could be removed manually or automatically.
  • thermoforming packaging machine 1 which allows the packaged and separated products 13 to be removed from the thermoforming packaging machine 1 in a particularly efficient manner.
  • the sealing station 9 is followed by the second rising area 43 and the second flat area 45 of the film transport surface 4 intended.
  • the packaging removal device 50 for discharging filled and closed packages extends with respect to the transport direction T at least along the second flat area 45 and in plan view next to the second flat area 45 of the film transport surface 4.
  • the course of the film transport surface can 4 can in principle be chosen arbitrarily.
  • the manner in which products 13 to be packaged are fed in and the products 13 to be packaged are transferred into the troughs 12 of the bottom film 3 can also be designed as desired.
  • the products 13 can be converted into the troughs 12 manually or automatically.
  • thermoforming packaging machine 1 the specially designed product feed ( 1 to 3 ) with the first rising area 23, the first flat area 25 and the product feed device 20 and, at the same time, the described packaging removal combined with the second rising area 43, the second flat area 45 and the packaging removal device 50.
  • the work cycle of the thermoforming packaging machine 1 can be increased particularly strongly, since both the product supply and the removal of the finished packaging take place particularly quickly and efficiently.
  • the course of the film transport surface 4 in the area between the molding station 7 and the sealing station 9 could, for example, be that in FIGS 1 or 2 correspond to the course shown. Following the sealing station 9, the course of the film transport surface 4 could, for example, as in FIG Fig. 4 be shown.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Containers And Plastic Fillers For Packaging (AREA)

Claims (15)

  1. Machine d'emballage par emboutissage (1) comprenant:
    une station de formage (7) avec un outil de formage pour former des cavités (12) dans un film de fond (3);
    une section d'insertion (8) pour le remplissage des cavités (12) avec des produits (13);
    une station de scellement (9) avec un outil de scellement pour fermer les cavités (12) avec un film supérieur (15);
    un poste de découpe (10) pour la séparation des cavités fermées (12); et
    un dispositif de transport (2) qui est conçu pour transporter le film inférieur (3) dans une surface de transport de film (4) le long d'une direction de transport (T) depuis la station de formage (7) via la section d'insertion (8) jusqu'à la station de scellement (9) et ensuite jusqu'à la station de coupe (10), dans lequel
    a) la surface de transport du film (4) entre la station de formage (7) et la station de scellement (9) comprend une première zone (23) s'élevant le long de la direction de transport (T) par rapport à un plan horizontal, dont l'élévation assure que la surface de transport du film (4) est surélevée au niveau de la section d'insertion (8) par rapport à un cadre latéral (28) d'un bâti de machine (5) de la machine d'emballage par emboutissage (1), à la première zone montante (23) se raccorde une première zone plane (25) qui comprend la section d'insertion (8) et dans laquelle la surface de transport du film (4) s'étend au moins sensiblement horizontalement, et un dispositif d'alimentation en produits (20) transportant parallèlement à la direction de transport (T) pour l'alimentation en produits (13) dans la direction de transport (T) s'étend au moins le long de la section d'insertion (8) et, en vue de dessus, à côté de la section d'insertion (8),
    et/ou
    b) la surface de transport du film (4) entre la station de scellement (9) et la station de découpe (10) comprend une seconde zone (43) qui s'élève dans la direction de transport (T) par rapport à un plan horizontal, grâce à l'élévation de laquelle on obtient que la surface de transport du film (4) à la station de découpe (10) soit soulevée par rapport à un cadre latéral (28) d'un bâti de machine (5) de la machine d'emballage par emboutissage (1), la seconde zone ascendante (43) au niveau du poste de découpe (10) est suivie d'une seconde zone plane (45) dans laquelle la surface de transport du film (4) s'étend au moins sensiblement horizontalement, et un dispositif d'évacuation des emballages (50) transportant parallèlement à la direction de transport (T) pour évacuer les emballages remplis et scellés s'étend dans la direction de transport (T) au moins le long de la seconde zone plane (45) et, en vue de dessus, à côté de la seconde zone plane (45).
  2. Machine d'emballage par emboutissage selon la revendication 1, caractérisée en ce que le dispositif de transport (2) présente un guide de chaîne (16) disposé le long de la direction de transport (T), dans lequel est guidée au moins une chaîne de transport de film (17) pour le transport du film inférieur (3).
  3. Machine d'emballage par emboutissage selon la revendication 2, caractérisée en ce que le châssis latéral (28) du bâti (5) de la machine d'emballage par emboutissage (1) est disposé le long de la direction de transport (T) et présente un bord supérieur d'interférence (30).
  4. Machine d'emballage par emboutissage selon la revendication 3, caractérisée en ce que les guides de chaîne (16) sont fixés sur le châssis latéral (28).
  5. Machine d'emballage à emboutissage selon la revendication 3 ou 4, caractérisée en ce que la surface de transport du film (4) est guidée par sa première et/ou sa seconde zone de montée (23, 43) à une hauteur située au-dessus du bord d'interférence (30) du cadre latéral (28).
  6. Machine d'emballage par emboutissage selon l'une quelconque des revendications 3 à 5, caractérisée en ce que la surface de transport du film (4) dans la première et/ou la seconde zone plane (25, 45) est plus haute que le bord d'interférence (30) du cadre latéral (28).
  7. Machine d'emballage par emboutissage selon les revendications 5 ou 6, caractérisée en ce que la surface de transport du film (4) se trouve en dessous du bord d'interférence (30) du cadre latéral (28) par rapport à la direction de transport (T) devant la première et/ou la seconde zone montante (23, 43).
  8. Machine de thermoformage d'emballages selon l'une des revendications 3 à 7, caractérisée en ce qu'une surface de transport (32, 52) du dispositif d'alimentation en produits (20) ou du dispositif d'évacuation des emballages (50) est disposée au moins par zones au-dessus du cadre latéral (28) du bâti de la machine (5) ou au-dessus d'un côté supérieur du poste de formage (7).
  9. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce qu'une distance latérale (d11) de la première zone plane (25) de la surface de transport du film (4) au dispositif d'alimentation du produit (20) est inférieure à 5 cm, inférieure à 10 cm ou inférieure à 15 cm.
  10. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce qu'une distance latérale (d2l) de la seconde zone plane (45) de la surface de transport du film (4) au dispositif de déchargement du paquet (50) est inférieure à 5 cm, inférieure à 10 cm ou inférieure à 15 cm.
  11. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce que la première zone plane (25) de la surface de transport du film (4) est au moins au même niveau qu'une surface de transport (32) du dispositif d'alimentation en produits (20).
  12. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce que la seconde zone plane (45) de la surface de transport du film (4) se trouve au moins à la même hauteur qu'une surface de transport (52) du dispositif d'évacuation des emballages (50).
  13. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce que le dispositif d'alimentation en produits (20) s'étend au moins sensiblement jusqu'au poste de scellement (9).
  14. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce que la surface de transport du film (4) comprend une zone (33) qui suit la première et/ou la seconde zone plane (25, 45) et qui est inclinée vers le bas dans la direction de transport (T).
  15. Machine d'emballage par emboutissage selon l'une des revendications précédentes, caractérisée en ce que le poste de formage (7) et le poste de scellement (9) sont disposés dans un plan horizontal commun.
EP16196154.5A 2016-10-28 2016-10-28 Machine d'emballage par emboutissage Active EP3315420B1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP16196154.5A EP3315420B1 (fr) 2016-10-28 2016-10-28 Machine d'emballage par emboutissage
ES16196154T ES2805229T3 (es) 2016-10-28 2016-10-28 Máquina de envasado por embutición profunda
US15/795,120 US10689136B2 (en) 2016-10-28 2017-10-26 Thermo-forming packaging machine
CN201711025330.6A CN108001722B (zh) 2016-10-28 2017-10-27 热成形包装机

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP16196154.5A EP3315420B1 (fr) 2016-10-28 2016-10-28 Machine d'emballage par emboutissage

Publications (2)

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EP3315420A1 EP3315420A1 (fr) 2018-05-02
EP3315420B1 true EP3315420B1 (fr) 2020-04-15

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US (1) US10689136B2 (fr)
EP (1) EP3315420B1 (fr)
CN (1) CN108001722B (fr)
ES (1) ES2805229T3 (fr)

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Also Published As

Publication number Publication date
EP3315420A1 (fr) 2018-05-02
US20180118383A1 (en) 2018-05-03
ES2805229T3 (es) 2021-02-11
US10689136B2 (en) 2020-06-23
CN108001722A (zh) 2018-05-08
CN108001722B (zh) 2020-09-18

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