WO2015003852A1 - Dispositif et procédé de dépliage, de remplissage et de fermeture d'enveloppes d'emballage - Google Patents

Dispositif et procédé de dépliage, de remplissage et de fermeture d'enveloppes d'emballage Download PDF

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Publication number
WO2015003852A1
WO2015003852A1 PCT/EP2014/061439 EP2014061439W WO2015003852A1 WO 2015003852 A1 WO2015003852 A1 WO 2015003852A1 EP 2014061439 W EP2014061439 W EP 2014061439W WO 2015003852 A1 WO2015003852 A1 WO 2015003852A1
Authority
WO
WIPO (PCT)
Prior art keywords
cells
packing
shells
aseptic chamber
packaging
Prior art date
Application number
PCT/EP2014/061439
Other languages
German (de)
English (en)
Other versions
WO2015003852A9 (fr
Inventor
Werner Seiche
Original Assignee
Sig Technology Ag
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 Sig Technology Ag filed Critical Sig Technology Ag
Priority to AU2014289560A priority Critical patent/AU2014289560A1/en
Priority to BR112016000189A priority patent/BR112016000189A2/pt
Priority to RU2016104024A priority patent/RU2616817C1/ru
Priority to US14/903,127 priority patent/US20160376045A1/en
Priority to CN201480039334.8A priority patent/CN105377699A/zh
Priority to JP2016524715A priority patent/JP2016527152A/ja
Priority to MX2015017024A priority patent/MX2015017024A/es
Priority to EP14727547.3A priority patent/EP3019405B1/fr
Priority to ES14727547.3T priority patent/ES2640107T3/es
Publication of WO2015003852A1 publication Critical patent/WO2015003852A1/fr
Publication of WO2015003852A9 publication Critical patent/WO2015003852A9/fr

Links

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
    • B65B55/00Preserving, protecting or purifying packages or package contents in association with packaging
    • B65B55/02Sterilising, e.g. of complete packages
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B55/00Preserving, protecting or purifying packages or package contents in association with packaging
    • B65B55/02Sterilising, e.g. of complete packages
    • B65B55/027Packaging in aseptic chambers
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B3/00Packaging plastic material, semiliquids, liquids or mixed solids and liquids, in individual containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, or jars
    • B65B3/02Machines characterised by the incorporation of means for making the containers or receptacles
    • B65B3/025Making parallelepipedal containers from a single carton blank
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/08Forming three-dimensional containers from sheet material
    • B65B43/10Forming three-dimensional containers from sheet material by folding the 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
    • B65B43/00Forming, feeding, opening or setting-up containers or receptacles in association with packaging
    • B65B43/42Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation
    • B65B43/50Feeding or positioning bags, boxes, or cartons in the distended, opened, or set-up state; Feeding preformed rigid containers, e.g. tins, capsules, glass tubes, glasses, to the packaging position; Locating containers or receptacles at the filling position; Supporting containers or receptacles during the filling operation using rotary tables or turrets
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B5/00Packaging individual articles in containers or receptacles, e.g. bags, sacks, boxes, cartons, cans, jars
    • B65B5/06Packaging groups of articles, the groups being treated as single articles
    • B65B5/065Gable-topped container
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B55/00Preserving, protecting or purifying packages or package contents in association with packaging
    • B65B55/02Sterilising, e.g. of complete packages
    • B65B55/025Packaging in aseptic tunnels
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65BMACHINES, APPARATUS OR DEVICES FOR, OR METHODS OF, PACKAGING ARTICLES OR MATERIALS; UNPACKING
    • B65B55/00Preserving, protecting or purifying packages or package contents in association with packaging
    • B65B55/02Sterilising, e.g. of complete packages
    • B65B55/04Sterilising wrappers or receptacles prior to, or during, packaging
    • 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
    • B65B7/20Closing semi-rigid or rigid containers or receptacles not deformed by, or not taking-up shape of, contents, e.g. boxes or cartons by folding-down preformed flaps

Definitions

  • the invention relates to an apparatus for unfolding, aseptically filling and aseptically closing packaging coats, comprising: a transport device comprising a conveyor belt and cells connected to the conveyor belt for transporting the packaging coats, a device for unfolding and feeding the packaging coats to the cells of the transport device, a device for Sterilizing of the packaging coats, means for folding and closing the bottom surfaces of the packaging coats, means for filling the packaging coats
  • Packaging wraps with contents means for folding and closing the gable surfaces of the wrapper coats, and having an aseptic chamber.
  • the invention also relates to a process for unfolding, aseptic filling and aseptic sealing of packaging coats comprising the following steps: a) unfolding and feeding the packaging coats to cells fastened to a conveyor belt, b) sterilizing the packaging coats, c) folding and closing the packaging coats
  • the term " aseptic" in particular sets a germ reduction rate of the filling or packaging plant of at least four
  • the germ reduction rate is determined by means of defined test methods with suitable test germs. Not every plant known from the prior art with aseptic or sterile properties can therefore be regarded as "aseptic" within the meaning of this invention.
  • Packaging can be done in different ways and in different ways
  • Blanks are very flat and thus can be stacked to save space.
  • the blanks or packing coats can be made at a different location than the folding and filling of the packaging coats is often used as a material composites, for example, a composite of several thin layers of paper, cardboard, plastic or metal.
  • Such packaging is widely used, especially in the food industry.
  • numerous devices and methods are known with which flat folded packaging coats unfolded, closed on one side, filled with content and can then be completely closed.
  • Conventional non-aseptic devices and methods for unfolding, filling and sealing composite packaging are known, for example, from EP 0 112 605 A2 or US 3,060,654.
  • Procedures therefore not An improvement in the durability can be achieved by plants that are sterilized before filling the packs
  • the state achieved by the sterilization should be maintained.
  • the means of transport with which the packages are transported for example, conveyor belts or mandrel wheels - completely enclosed by a chamber. This has the purpose of re-packing the packages following sterilization
  • Such systems are therefore more of an aseptic tunnel than an aseptic chamber, with sluices at the entrance and exit of the tunnel to ensure that the tunnel is sealed, for example by a curtain of sterile air.
  • Such devices and methods are known, for example, from WO 2011/002383 A1.
  • the problem remains that the means of transport - at least in a subarea of the plant - are also passed through the aseptic tunnel and in this way impurities, e.g. in the form of lubricant or dust, could carry it into the tunnel.
  • the invention has the object, as well as the above-mentioned and previously described method to design and further develop the above-mentioned method such that, despite the most economical use of sterilizing means improved hygiene in the filling of composite packaging achieved becomes.
  • the invention is based on the idea that only the immediate environment of
  • a conveyor is understood to mean any means that is suitable; to move the cells, for example, belts, chains or the like.
  • the solution according to the invention is structurally more complex, it has the considerable advantage that the conveyor belt can not carry any contaminants into the aseptic chamber.
  • the volume of the aseptic chamber may be smaller when the conveyor belt is outside the aseptic chamber. The removal of the conveyor belt and the small chamber volume, despite a more economical use of sterilant (e.g.
  • an aseptic chamber is understood to mean a space which is suitable for shielding a certain volume, in particular aseptic air, from an external environment, in particular non-aseptic air. Sterile, ie largely germ-free conditions can be generated, for example, by the device described in WO 2010/142278 A1 and by the method described therein. According to one embodiment of the invention, it is provided that the aseptic chamber has a wall with a slot extending in the transport direction.
  • This configuration represents a structurally particularly simple way of letting the cells run within the aseptic chamber although the conveyor belt runs outside the chamber For example, they may be passed through a narrow support arm which extends from the conveyor belt through the slot into the interior of the aseptic chamber where it is connected to the cells.
  • the slot is sealed with a gasket
  • the cells at least in the area of the device for sterilizing the packaging coats, the device for folding and closing the bottom surfaces of the packaging coats, the device for Filling the packing shells with contents, and the means for folding and closing the gable surfaces of the packing shells are arranged within the aseptic chamber.
  • the cells are preferably arranged continuously within the same aseptic chamber during said steps and between said steps. The cells can only be sterilized, bottom folded / sealed, filled and in hygienically critical steps
  • Giebelfaltung / -êtelung are arranged within the aseptic chamber, the volume to be kept sterile can be further reduced.
  • the cells are thus introduced into the aseptic chamber before or during the sterilization and are led out of the aseptic chamber again during or after the gable folding / sealing in this design can also be spoken of an aseptic "tunnel.”
  • the conveyor belt is always outside the aseptic
  • the inlet and outlet of the aseptic chamber are sealed. This may be done, for example, by a " curtain" of sterile air.
  • the filled and sealed packaging coats must be removed from the cells of the transport device, so that the cells can again accept new, not yet filled packing coats. This can be done, for example, by gripping arms which grip the packing shells at the seams which form during the sealing of the gable surfaces and the bottom surfaces ("fin seams").
  • Conveyor belt and the cells are arranged in a horizontal plane.
  • This design ensures that the packing shells are guided in a horizontal plane.
  • This has the advantage that the packing shells and possibly their contents are not exposed to vertical accelerations.
  • the arrangement in a horizontal level has the advantage that all areas of the system are equally accessible to carry out, for example, cleaning, maintenance or repair bills.
  • fold lines are pre-broken, which are located between adjacent floor surfaces and adjacent gable surfaces respectively between Bodenftumbleen and adjacent side surfaces and between gable surfaces and adjacent side surfaces.
  • This pre-breaking has the purpose of
  • the reliability of the device can be increased by providing according to a further embodiment of the invention, that the device comprises at least one means for discharging defective packing coats from the cells and - if the device is arranged in the region of the aseptic chamber - from the aseptic chamber
  • Defective packing shells may cause the device to come to a standstill. For example, an improperly folded package sheath could fall out of the cells. In addition, poor folding could lead to insufficiently tight sealing of the bottom or the gable. Both a packaging sheath that has fallen out of the cell and a leaky packaging sheath could result in the contents not remaining in the packaging sheath during filling but rather the device contaminated, which often requires several hours of cleaning and disinfection of the device requires This can be avoided by facilities where defective
  • Packing coats are separated or discharged.
  • sensors in particular optical sensors are provided which determine the state of
  • Packing coat carries, suspend or at least stop.
  • the device has a device for finishing the packaging coats, in particular for applying the ears of the packaging coats.
  • the final production brings the already filled and sealed packaging coats into their ready-to-sell form.
  • protruding areas in the final production are provided.
  • ears Packaging material applied A fixation of the ears
  • the packing shells have already been removed from the cells in the area of final production.
  • a further increase in hygiene can be achieved according to a further embodiment of the invention by the device, a device for
  • Conditioning the cells in particular for cleaning, disinfecting and / or drying of the cells
  • the conditioning is arranged between the device for removing the packaging coats and the means for feeding the packaging coats
  • the device for filling the packaging coats with contents is a rotary
  • the device for filling the packaging coats with contents is a rotary
  • the advantage of a rotary runner is mainly in a more compact design of the device, as well as the area in which the conveyor belt is deflected is used to fill the packaging coats.
  • the area in which the conveyor belt is deflected is used to fill the packaging coats.
  • Conveyor belt is guided outside the aseptic chamber.
  • the cells are guided through the aseptic chamber at least during steps b), c), d) and e).
  • the cells are introduced into the aseptic chamber before or during the sterilization and again out of the aseptic chamber during or after the gable folding / sealing
  • a further teaching of the invention provides that after step a) and before step b) the following step is carried out: aa) pre-folding of the bottom surfaces and / or the gable surfaces of the packing shells.
  • those fold lines are pre-broken, which are located between adjacent bottom surfaces and adjacent gable surfaces respectively between bottom surfaces and adjacent side surfaces and between gable surfaces and adjacent side surfaces.
  • the purpose of this pre-breaking is to make the fold lines more flexible, so that the final folding can be faster, easier and more precise. It can be provided that both the bottom surfaces and the gable surfaces are pre-folded before step b) [sterilization]. This has the advantage that dust formed during the prefolding does not impair the result of the sterilization. It is also sufficient, however, that the
  • step a in particular after step aa) and before step b), the following step is carried out: ab) removal of defective packing shells from the cells of
  • Transport means Alternatively or additionally, it is provided that after step c) and before step d), the following step is carried out: ca) removal of defective packaging coats from the cells of the transport device and from the aseptic chamber.
  • An ejection of defective packaging coats has above all the advantage already described above that the device works more reliably and as possible without interruptions
  • Packungsmäntel during step d) are guided along a circular path.
  • the leadership of the packaging coats along the circular path has the advantage of a compact design of the device.
  • Packungsmäntel be performed obliquely in the filling device.
  • a further embodiment of the invention provides that after step e) the following step is carried out: f) removing the filled and closed
  • Packungsmäntel is required in a device with endless circulating conveyor belt to be able to load the cells again with packing coats.
  • step f) it is proposed that the following step be carried out after step f): g) Finishing the packing shells, in particular applying the ears of the packing shells. By finishing the packing coats are brought into a salable condition
  • step f) the following step is carried out: h) conditioning of the cells of
  • Transport device in particular cleaning, disinfecting and / or drying the Cells of the transport device.
  • the hygiene of the process can be further improved.
  • the steps g) (final production) and h) (conditioning) can take place simultaneously, since the
  • Packing coats are no longer in the cells to be conditioned in the final production.
  • a particularly uniform and thus low-wear operation can be achieved by the conveyor belt and the cells have a constant speed after a further embodiment of the method.
  • the speed of the conveyor belt is changed, wherein the
  • Speed is always greater than zero.
  • a cyclic variation of the speed may in particular be a fluctuation about an average
  • the conveyor belt should therefore be stopped at any time, as would be the case with an intermittent operation.
  • a cyclic variation of the speed of the conveyor belt allows an optimization of certain
  • Procedural steps such as the enthralling of the packaging coats into the cells.
  • the aseptic chamber can not be hermetically sealed in operation despite seals and locks. In order to avoid that non-sterile air from the environment penetrates into the aseptic chamber becomes a continuous
  • Fig. 1A is a known from the prior art blank for folding a
  • FIG. 1B is a prior art packing jacket formed from the blank shown in FIG. 1A; FIG. in the flat folded state, the packing casing of FIG. 1B in the unfolded state, the packing casing of FIG. 1C in the filled and closed state, FIG. 1E the packing casing of FIG. 1C in the filled, closed and
  • Fig. 2 shows an inventive device for unfolding, filling
  • FIG. 3 shows a part of the device shown in Figure 2 in cross section along the section plane III-III shown in Figure 2, and
  • FIG. 1A shows a blank 1 known from the prior art, from which a packing jacket can be formed.
  • the blank 1 may comprise a plurality of layers of different materials, for example paper, cardboard, plastic or metal, in particular aluminum.
  • the blank 1 has a plurality of Paltlinien 2, which should facilitate the folding of the blank 1 and divide the blank 1 into several areas.
  • the blank 1 may be divided into a first side surface 3, a second side surface 4, a front surface 5, a rear surface 6, a sealing surface 7, bottom surfaces 8 and gable surfaces 9.
  • a packing jacket can be formed by the blank 1 is folded such that the sealing surface 7 connected to the front surface 5, in particular can be welded.
  • FIG. 1B shows a packing jacket 10 known from the prior art in the flat folded state.
  • the regions of the packing jacket already described in connection with FIG. 1A are provided with corresponding reference symbols in FIG. 1B.
  • the blank 1 has been folded in such a way that the sealing surface 7 and the front surface S are arranged overlapping, so that the two surfaces can be welded together flatly.
  • a longitudinal seam 11 is formed.
  • the packing jacket 10 is shown in a flat folded state. In this state, one side surface 4 (hidden in Fig. 1B) lies under the front surface 5 while the other side surface 3 lies on the rear surface 6 (hidden in FIG. 1B).
  • Packungsmäntel 10 are stacked particularly space-saving. Therefore, the packing shells 10 are often stacked at the place of manufacture and transported in batches to the place of filling. Only there are the packing shells
  • FIG. 1C the packing jacket 10 from FIG. 1B is shown in the unfolded state.
  • the unfolded state is understood to mean a configuration in which an angle of approximately 90 ° is formed between the two respectively adjacent surfaces 3, 4, 5, 6, so that the packing jacket 10 has one, depending on the shape of these surfaces
  • the opposing rare surfaces 3, 4 are arranged parallel to each other. The same applies to the front surface 5 and the rear surface. 6
  • FIGS. 1D and 1E show the packing jacket 10 from FIG. 1C in the filled and closed state.
  • floor areas 8 In the area of floor areas 8 and in the area of
  • Gable surfaces 9 are formed after closing a fin seam 12.
  • the edge regions of the bottom surfaces 8 and the gable surfaces 9 projecting areas of excess material, which are also referred to as "ears" 13.
  • Fig. 1D are the fin seams 12 and the ears 13.
  • both the fin seams 12 and the ears 13 have been applied by adhesive bonding, for example, the ears 13 formed by the gable surfaces 9 are applied to the side surfaces 3, 4 while those created by the bottom surfaces 8 - So lower - ears 13 are applied to the underside of the package shell 10. (Note: Fig. 1E is still adapted accordingly l)
  • the packaging jacket 10 is therefore shown in a salable condition
  • FIG. 2 shows a device 14 according to the invention for unfolding, filling and closing packaging shells 10 in a top view.
  • the device 14 initially comprises a transport device, which in the exemplary embodiment shown in FIG. 2 is a circulating, endless conveyor belt 15
  • the transport belt 15 and the cells 16 are preferably arranged in a horizontal plane.
  • the device 14 also comprises a device 17 for unfolding and feeding the packing shells 10 to the transport device.
  • This device 17 comprises a
  • the singulator 18 for separating and providing the flat Packungsmäntel 10 and a transfer unit 19.
  • the singulator 18 may be, for example, a magazine from which the flat
  • the transfer unit 19 can be designed, for example, as a rotating drum with suction elements for sucking the packing shells 10.
  • the device 17 is also referred to as "infeed"
  • the device 20 may comprise a sensor. Furthermore, the device 14 has a device 21 for sterilizing the pack coats 10. This may be the device known from WO 2010/142278 A1.
  • a device 22 for folding and closing the bottom surfaces 8 of the packaging shells 10 is provided as part of the device 14, followed by a second means 20 for discharging defective packaging coats 10.
  • the closing of the bottom surfaces 8 can by activating the
  • the devices 20, 21, 22 are arranged in a region in which the cells 16 of the transport device are guided along a straight line.
  • the device 14 shown in FIG. 2 comprises a device 23 for filling the packaging shells 10 with contents.
  • This device 23 is designed as a rotary so that the packing shells 10 are guided in the region of this device 23 along a circular path. After filling, the
  • the closing of the gable surfaces 9 can also be done by activation of the packaging material with hot air or by suitable welding or bonding process.
  • the device 14 also comprises a device 25 for removing the now filled and sealed packing jackets 10 from the cells 16 of the transport device.
  • This device 25 may comprise, for example, gripping arms and a conveyor belt for guiding the packing sheaths 10 removed from the transport device away from the device 14.
  • the device 25 is also referred to as "outfeed”.
  • a device 26 is provided for the final production of the packaging shells 10, whereby, for example, the application and adhering of the protruding "ears" 13 of the
  • This device 27 is arranged between the "outfeed” 25 and the “infeed” 17 and is therefore located in a region in which the cells 16 do not carry packing shells 10. In this way, the cells 16 can be conditioned particularly well by the device 27, which means, for example, a cleaning, disinfecting or drying of the cells 16.
  • the device 14 shown in Fig. 2 is characterized by a specially designed aseptic chamber 28.
  • the cells 16 of the transport device are arranged at least in the region of the devices 21, 22, 23 and 24 within the aseptic chamber 28. In this way, the degree of sterility achieved in the device 21 by the sterilization in the following devices 22, 23 and 24 can be largely remain.
  • FIG 3 shows a part of the device 14 shown in Figure 2 in cross section along the section plane III-III shown in Fig. 2.
  • the selected view is a cross-section through the aseptic chamber 28.
  • the aseptic chamber 28 has a wall 29 which encloses the cells 16 of the transport means.
  • the cells 16 have a back wall 30, side walls 31 and not in FIG shown - spring elements.
  • the spring elements are made of an elastic material, such as spring steel or a flexible plastic and serve to hold the packing shells 10 in the cells 16 and
  • the size of the cell 16 is sized to match the size of the package sheath 10 tuned; that both the bottom surfaces 8 and the gable surfaces 9 of the packing shells 10 protrude downwards or upwards out of the cell 16. This facilitates the accessibility of the bottom and gable surfaces 8, 9 so that they can easily be folded and sealed while being held by the cells 16.
  • FIG. 3 The rear wall 30 of the cell 16 shown in Fig. 3 is connected via a support arm 32 and a mounting plate 33 with the conveyor belt 15.
  • the holding arm 32 is led out of the aseptic chamber 28 through a slot 34; in other words, the cell 16 is disposed within the aseptic chamber 28 and enclosed by the wall 29 while the conveyor belt 15 is located outside the aseptic chamber 28.
  • Fig. 4 is the drain a method according to the invention for unfolding, filling and closing of pack coats 10 in a schematic
  • Packing jackets 10 record, there is a conditioning, so for example, a cleaning of the cells 16 in the device 27.
  • the final production of the packaging 10 coats in the device 26 and the conditioning of the cells 16 in the device 27 can take place simultaneously.

Abstract

L'invention concerne un dispositif (14) permettant le dépliage, le remplissage aseptique et la fermeture aseptique d'enveloppes d'emballage (10). Ce dispositif est pourvu : d'un système de transport comprenant une bande transporteuse (15) et des cellules (16) reliées à la bande transporteuse (15) et pour le transport des enveloppes d'emballage (10), d'un système (17) permettant le dépliage et l'amenée des enveloppes d'emballage (10) aux cellules (16) du système de transport, d'un système (21) permettant de stériliser les enveloppes d'emballage (10), d'un système (22) permettant le pliage et la fermeture des surfaces inférieures (8) des enveloppes d'emballage (10), d'un système (23) permettant le remplissage des enveloppes d'emballage (10) avec des contenus, d'un système (24) permettant le pliage et la fermeture des surfaces supérieures (9) des enveloppes d'emballage (10), et d'une chambre aseptique (28). L'invention concerne en outre un procédé correspondant. L'invention vise à améliorer l'hygiène lors du remplissage d'emballages composites, et ce malgré l'utilisation la plus économique possible de moyens de stérilisation. A cet effet, les cellules (16) sont disposées au moins dans une partie du dispositif (14) à l'intérieur de la chambre aseptique (28), tandis que la bande transporteuse (15) est disposée à l'extérieur de la chambre aseptique (28).
PCT/EP2014/061439 2013-07-09 2014-06-03 Dispositif et procédé de dépliage, de remplissage et de fermeture d'enveloppes d'emballage WO2015003852A1 (fr)

Priority Applications (9)

Application Number Priority Date Filing Date Title
AU2014289560A AU2014289560A1 (en) 2013-07-09 2014-06-03 Device and method for folding open, filling, and closing packing coverings
BR112016000189A BR112016000189A2 (pt) 2013-07-09 2014-06-03 Sistema e método para o dobramento, preenchimento e vedação de mangas cartonadas
RU2016104024A RU2616817C1 (ru) 2013-07-09 2014-06-03 Установка и способ раскрывания, заполнения и запечатывания упаковочных пакетов
US14/903,127 US20160376045A1 (en) 2013-07-09 2014-06-03 System and Method for the Folding, Filling and Sealing of Carton Sleeves
CN201480039334.8A CN105377699A (zh) 2013-07-09 2014-06-03 用于展开、填充并密封包装箱套的设备和方法
JP2016524715A JP2016527152A (ja) 2013-07-09 2014-06-03 カートンスリーブを折り、充填し、シールするシステムおよび方法
MX2015017024A MX2015017024A (es) 2013-07-09 2014-06-03 Sistema y metodo para el doblado, llenado y sellado de mangas de carton.
EP14727547.3A EP3019405B1 (fr) 2013-07-09 2014-06-03 Dispositif et procédé de dépliage, de remplissage et de fermeture d'enveloppes d'emballage
ES14727547.3T ES2640107T3 (es) 2013-07-09 2014-06-03 Dispositivo y procedimiento para desplegar, llenar y cerrar envolturas de envasado

Applications Claiming Priority (2)

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DE102013107223.2 2013-07-09
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WO2019068384A1 (fr) 2017-10-04 2019-04-11 cSIG TECHNOLOGY AG Enveloppe d'emballage, emballage et procédé de fabrication d'un emballage
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US20160376045A1 (en) 2016-12-29
EP3019405A1 (fr) 2016-05-18
DE102013107223A1 (de) 2015-01-15
DE102013107223B4 (de) 2017-12-07
JP2016527152A (ja) 2016-09-08
EP3019405B1 (fr) 2017-08-16
ES2640107T3 (es) 2017-10-31
BR112016000189A2 (pt) 2017-08-29
PL3019405T3 (pl) 2017-11-30
WO2015003852A9 (fr) 2015-03-19
AU2014289560A1 (en) 2015-12-03
RU2616817C1 (ru) 2017-04-18
MX2015017024A (es) 2016-04-25
TW201509753A (zh) 2015-03-16

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