EP3980340B1 - Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters - Google Patents

Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters Download PDF

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Publication number
EP3980340B1
EP3980340B1 EP20731421.2A EP20731421A EP3980340B1 EP 3980340 B1 EP3980340 B1 EP 3980340B1 EP 20731421 A EP20731421 A EP 20731421A EP 3980340 B1 EP3980340 B1 EP 3980340B1
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EP
European Patent Office
Prior art keywords
separating
section
outer part
sleeve
predetermined
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
EP20731421.2A
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German (de)
English (en)
French (fr)
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EP3980340A1 (de
EP3980340C0 (de
Inventor
Steffen Riethmüller
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.)
Greiner Packaging AG
Original Assignee
Greiner Packaging AG
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Filing date
Publication date
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Application filed by Greiner Packaging AG filed Critical Greiner Packaging AG
Priority to RS20231146A priority Critical patent/RS64902B1/sr
Priority to EP23195056.9A priority patent/EP4265536B1/de
Publication of EP3980340A1 publication Critical patent/EP3980340A1/de
Application granted granted Critical
Publication of EP3980340B1 publication Critical patent/EP3980340B1/de
Publication of EP3980340C0 publication Critical patent/EP3980340C0/de
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Anticipated expiration legal-status Critical

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Classifications

    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D3/00—Rigid or semi-rigid containers having bodies or peripheral walls of curved or partially-curved cross-section made by winding or bending paper without folding along defined lines
    • B65D3/26—Opening arrangements or devices incorporated in, or attached to, containers
    • B65D3/261—Opening arrangements or devices incorporated in, or attached to, containers the opening arrangement being located in the container side wall
    • B65D3/264—Opening arrangements or devices incorporated in, or attached to, containers the opening arrangement being located in the container side wall forming a longitudinal line of weakness
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D1/00—Rigid or semi-rigid containers having bodies formed in one piece, e.g. by casting metallic material, by moulding plastics, by blowing vitreous material, by throwing ceramic material, by moulding pulped fibrous material or by deep-drawing operations performed on sheet material
    • B65D1/22—Boxes or like containers with side walls of substantial depth for enclosing contents
    • B65D1/26—Thin-walled containers, e.g. formed by deep-drawing operations
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D25/00—Details of other kinds or types of rigid or semi-rigid containers
    • B65D25/34—Coverings or external coatings
    • B65D25/36—Coverings or external coatings formed by applying sheet material
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D3/00—Rigid or semi-rigid containers having bodies or peripheral walls of curved or partially-curved cross-section made by winding or bending paper without folding along defined lines
    • B65D3/02—Rigid or semi-rigid containers having bodies or peripheral walls of curved or partially-curved cross-section made by winding or bending paper without folding along defined lines characterised by shape
    • B65D3/06—Rigid or semi-rigid containers having bodies or peripheral walls of curved or partially-curved cross-section made by winding or bending paper without folding along defined lines characterised by shape essentially conical or frusto-conical
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D3/00—Rigid or semi-rigid containers having bodies or peripheral walls of curved or partially-curved cross-section made by winding or bending paper without folding along defined lines
    • B65D3/26—Opening arrangements or devices incorporated in, or attached to, containers
    • B65D3/261—Opening arrangements or devices incorporated in, or attached to, containers the opening arrangement being located in the container side wall
    • B65D3/264—Opening arrangements or devices incorporated in, or attached to, containers the opening arrangement being located in the container side wall forming a longitudinal line of weakness
    • B65D3/265—Opening arrangements or devices incorporated in, or attached to, containers the opening arrangement being located in the container side wall forming a longitudinal line of weakness and having an attached or applied tearing or reinforcing element
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2565/00—Wrappers or flexible covers; Packaging materials of special type or form
    • B65D2565/38—Packaging materials of special type or form
    • B65D2565/381—Details of packaging materials of special type or form
    • B65D2565/384—Details of packaging materials of special type or form made of recycled material
    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B65—CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65D—CONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D2565/00—Wrappers or flexible covers; Packaging materials of special type or form
    • B65D2565/38—Packaging materials of special type or form
    • B65D2565/381—Details of packaging materials of special type or form
    • B65D2565/385—Details of packaging materials of special type or form especially suited for or with means facilitating recycling

Definitions

  • the invention relates to a collar-shaped outer part formed from a blank for encasing a cup-shaped inner container and to a combination packaging container formed from the inner container and the outer part.
  • the invention also relates to a method for separating the combi-packaging container into its inner container and the outer part by separating the predetermined separation area.
  • the WO 2009/130043 A1 describes, among other things, a sleeve-shaped outer part for forming a combination packaging container.
  • the outer part is formed from a blank by raising and joining ends together in an overlapping area.
  • an actuating means for separating a predetermined separating area is provided, which is arranged between the two end areas spaced apart from one another in the axial direction.
  • the actuating means is formed by an opening extending up to the overlapping area, with the long side of the overlapping end forming the detection section.
  • an actuating tab is provided which can be detached from the casing in a U-shaped peripheral line, in which the weakened line delimiting the actuating tab ends on the longitudinal side of the overlapping end.
  • From the EP 2 338 804 B1 is a packaging container with a first container part having a container bottom and a container wall extending from the container bottom in the direction of a container edge, and a second container part reinforcing the container wall in the form of a sleeve that is detachably connected to the first container part and rests at least partially on the outer surface of the container wall , known.
  • the second container part has a weakened line running from an upper edge of the second container part facing the container edge in the direction of a lower edge of the second container part facing the container bottom.
  • the second container part is detachable from the first container part by severing the second container part along the line of weakness.
  • the second container part also has a gripping area that is to be gripped manually in order to cut through the second container part and from which the second container part can be detached from the first container part.
  • the weakened line has an engagement section delimiting the gripping area with a reinforced weakening and/or a cutting line, which forms the starting section for severing the second container part along the weakened line.
  • an access area adjoining the gripping area lying on the side of the weakening line opposite the gripping area, which has two predetermined separating lines running transversely to the weakening line, which end on one side in the engagement section of the weakening line.
  • More cuff-shaped outer parts are off JP 2009 126536 A and DE 10 2011 014844 A1 known.
  • the object of the present invention was to overcome the disadvantages of the prior art and to provide a sleeve-shaped outer part and a combination packaging container comprising a cup-shaped inner container with a sleeve-shaped outer part surrounding it, by means of which a user is able to safely and above all to be able to carry out continuous separation of the intended separation area.
  • a method for separating the predetermined separation area and the subsequent separation of its outer part and inner container should also be created.
  • a sleeve-shaped outer part and a combination packaging container comprising a cup-shaped inner container and a sleeve-shaped outer part designed in this way according to the claims.
  • the advantage achieved in this way is that due to the lateral offset of the detection section, which extends in the circumferential direction of the jacket, with respect to the separating sections that run towards one another and are mostly located on both sides, and the additional ends that overlap each other in the axial direction on both sides of the actuating means, there is a separate predetermined separating section in each case Coat of the outer part is created.
  • the detection section of the actuating means is formed by a cutting line that completely penetrates the jacket. This saves the user an additional separating process in the area of the jacket and he can grasp the detection section directly in the area of the cutting line and start the separating process for the subsequent separate disposal of the inner container and outer part.
  • Another embodiment is characterized in that the cutting line has a straight longitudinal course. This creates the possibility for the user to be able to capture the detection section at any desired point in order to be able to initiate the start of the breakdown.
  • a further possible embodiment has the feature that the cutting line has a curved longitudinal course, in particular a curved longitudinal course. Depending on the course of the curvature, namely convex or concave, gripping of the detection section can thus be designed more individually.
  • a further embodiment provides that the actuating means comprises an opening which completely passes through the jacket and which opening is arranged on the side of the detection section which is remote from the overlapping region and directly adjoining the detection section.
  • the actuating means can be designed to be even more visible and optically more easily recognizable.
  • Another embodiment is characterized in that the actuating means is arranged approximately centrally between the two end faces spaced apart from one another in the direction of the overall height.
  • a central point of application can be provided in the direction of the entire structural height or longitudinal extent. An even more even separation of the outer part in both directions can thus be achieved.
  • a further preferred embodiment is characterized in that first predetermined separation points of the two separation sections, which are each arranged immediately adjacent to the two acquisition section ends of the acquisition section, each have a parallel direction to the imaginary connecting line between the two separation sections on their side facing away from the acquisition section first longitudinal course and each have, on their side facing the detection section, a second longitudinal course aligned in the direction of the detection section. Due to the specially designed longitudinal course of the first predetermined separating points, an even more directed separation of the predetermined separating sections between the detection section and the respective ends of the separating sections can be achieved. Due to the second longitudinal course of the first predetermined separation point, which is respectively aligned in the direction of the detection section, an even more directed and even better defined opening direction is created.
  • the second longitudinal course is curved in an arc shape and/or runs at an angle with respect to the first longitudinal course. This achieves an even better directed deflection of the tearing process from the respective predetermined separating sections to the two separating sections.
  • Another alternative embodiment is characterized in that second predetermined separating points and/or third predetermined separating points of the two separating sections, which are each arranged adjacent to the first predetermined separating points and on the side facing away from the actuating means, have an orientation running at an angle to the imaginary connecting line. The separating process between directly adjacent predetermined separation points can be facilitated and improved by the additional predetermined separation points aligned at an angle.
  • a further possible and optionally alternative embodiment has the feature that the angled orientation of the second predetermined separation points and/or third predetermined separation points of the first separation section and the second separation section is selected such that they are each aligned towards one another on the side facing away from the actuating means.
  • the separating behavior in the region of the predetermined separating section can be made even safer by the respective angular orientation of the further predetermined separating points of respectively corresponding predetermined separating points of the two separating sections.
  • a further embodiment provides that an angle enclosed by the second predetermined separating points of the first and second separating section or an angle enclosed by the third predetermined separating points of the first and second separating section is formed differently from one another, starting from the actuating means towards the respective end faces.
  • the tearing behavior can be significantly improved even as the separation process progresses between immediately adjacent predetermined separation points.
  • Another embodiment is characterized in that the angle included, starting from the actuating means, increases towards the respective end faces and is therefore larger.
  • the changing and increasing included angle defines an approximately constant separating force over the entire opening path.
  • the imaginary straight connecting line of the two separating sections is arranged between the detection section and the overlapping area.
  • a further preferred embodiment is characterized in that the predetermined separation area is arranged or formed in the first end section and the first end section is overlapped on the inside in the overlapping area and on the outside by the second end section.
  • the predetermined separation area can thus be arranged to run directly adjacent to the overlapping longitudinal edge of the second end section located on the outside. By covering the second end area, an even more reliable separation of the predetermined separation area can be achieved due to the more stable overlapping area.
  • the predetermined separation area is arranged to run in a parallel direction with respect to a longitudinal edge of the overlapping, outer, second end section.
  • the predetermined separation area can be arranged directly adjacent to the longitudinal edge of the overlapping, external, second end section. In this way, a protective effect can also be achieved for the intended separation area and, moreover, unintentional separation can be largely prevented.
  • Another embodiment is characterized in that the predetermined separation area is arranged or formed in the first end section and the first end section is arranged on the outside in the overlapping area and the second end section is arranged on the inside and overlapped by the first end section on the outside.
  • a further possible embodiment has the features that the intended separating area is arranged to run in a parallel direction with respect to a longitudinal edge of the overlapped inner second end section.
  • the covered longitudinal edge located underneath can thus serve as support and reinforcement for the separating process of the intended separating area.
  • a further embodiment provides that the predetermined separation area is arranged or formed outside of the overlapping area. Depending on the overlapping arrangement of the end sections facing one another, a reliable tearing process can thus always be guaranteed.
  • Another embodiment is characterized in that the blank is formed from a cellulose material.
  • the printing and optical design of the inner container encased with the collar-shaped outer part can be improved and, moreover, the accumulation of plastic material to be disposed of can be reduced.
  • a further preferred embodiment is characterized in that the cellulose material is formed from a recycling material.
  • Raw material resources can thus be saved.
  • a safe and continuous separation process of the intended separation area can be made possible even when using cellulose recycling materials. Otherwise, the continuous separation process is not possible completely and consistently flawlessly when using recycling materials due to the shorter fiber lengths.
  • the invention also relates to a combination packaging container comprising a cup-shaped inner container with a container jacket, a base, a flange and a collar-shaped outer part designed according to the invention and at least partially surrounding the inner container on its container jacket.
  • the outer part forms a piece that belongs together, which can be disposed of easily and, above all, in one piece for proper disposal and collection of recyclables.
  • the outer part also has, on its end section facing the flange, a folded edge that is folded inwards in the direction of the container jacket, and the inner container has a wall section that is offset inwards, which wall section is directly adjacent to the flange in the container jacket is arranged or formed and defines a receiving space, in which receiving space the folded edge is received, and that the inner container has a shoulder on the bottom side, on which shoulder the outer part is supported.
  • a form-fitting mounting between the fold edge of the outer part and the receiving space offset inwards in the direction of the longitudinal axis can thus also be created.
  • the object of the invention is also achieved by a method for separating an outer part equipped with the predetermined separation area designed according to the invention from an inner container, which together form the combi-packaging container, in that the procedure for separating the predetermined separation area is such that a direction towards compressive force -F- directed towards the combination packaging container is applied and at least the container shell of the combination packaging container is spatially deformed and the applied compressive force -F- is at least partially converted by the spatial deformation into a separating force that at least partially separates the intended separating area.
  • the compressive force -F- applied leads at least to a spatial deformation of the container shell, as a result of which the compressive force is at least partially transmitted from the inner container to the outer part and/or deflected onto this.
  • the target severing area is thus subjected to a severing force acting in the radial direction and/or in the circumferential direction, and the severing force carries out the severing process of the target severing area at least partially, but preferably continuously over the entire height or length of the outer part in the direction of the target severing area .
  • the combination packaging container rests either with its closed end or with its open end of the inner container on a support surface switched off and then the compressive force -F- is exerted on the end facing away from the support surface in the direction of the support surface.
  • the compressive force can be applied to the combi-packaging container and introduced into it, for example with human strength. The risk of injury can be minimized with the arrangement in which the compressive force is applied to the ground.
  • a further advantageous procedure is characterized in that the compressive force -F- is applied to the combi-packaging container in a parallel orientation with respect to a longitudinal axis extending between the open end and the closed end or in an orientation at an angle thereto with respect to the longitudinal axis.
  • the compressive force can thus be deflected, at least for the most part, into a tearing force acting in a predominantly radial direction, which leads to the outer part bursting open along the intended separation area. If the direction of force application deviates from this, the separation of the predetermined separation area can also be brought about by the spatial deformation.
  • a variant of the method is also advantageous in which the compressive force -F- is applied to the combination packaging container by means of a pressing device. With this procedure, the user of the combination packaging container can be spared the separation process and the associated detachment of the outer part from the inner container.
  • a combi-packaging container 1 is shown as an example for a large number of possible different shapes, with the combi-packaging containers 1 being designed in the shape of cups or bowls.
  • the combination packaging container 1 comprises a cup- or bowl-shaped inner container 2 with a base 3 and a container jacket 4.
  • the inner container 2 also has an open end 5 on its side facing away from the base 3, with a den Container jacket 4 projecting outwardly flange 6 can be provided.
  • the base 3 forms a closed end 7 for the container jacket 4 .
  • the inner container 2 is preferably formed by a component which is produced in a deep-drawing process and which can be produced quickly and, above all, in a short cycle time.
  • the process of deep-drawing is well known and will therefore not be discussed in detail.
  • the deep-drawing process is particularly suitable for using a deep-drawing tool to produce the inner container 2 from a layer to be formed of a formable material with a wall thickness that is sufficient to ensure tightness during storage, use and disposal. Relatively thin wall thicknesses of the inner container 2 can be produced by this production process.
  • a longitudinal axis 8 extends in the axial direction between the open end 5 and the end 7 closed with the bottom 3, which can also represent a central axis if the design is symmetrical.
  • a sealing plate not shown in detail.
  • the flange 6 forms a sealing flange.
  • the inner container 2 In the axial direction and thus in the direction of the longitudinal axis 8, the inner container 2 has a container height 9 between its open end 5, in particular the flange 6, and the bottom 3, whereby the capacity of the inner container 2 is determined depending on the cross-sectional dimensions.
  • a receiving space of the inner container 2 is thus defined by the container height 9 in conjunction with the cross-sectional dimensions.
  • the container shell 4 is understood to mean that section of the inner container 2 which extends between the open end 5, in particular the flange 6, and the base 3 in a predominantly axial direction.
  • the inner container 2 with its container jacket 4 is preferred designed in such a way that it preferably tapers conically starting from the open end towards the bottom.
  • the container casing 4 of the inner container 2 can have a back draft 10 in its peripheral section adjacent to the base 3 .
  • the back draft 10 is also part of the container shell 4, but seen in axial section with respect to an imaginary, rectilinear connecting line between the flange 6 and the base 3 is arranged offset to the inside.
  • the rear slide 10 for its part has at least two rear slide wall sections, not designated in any more detail, with the two rear slide wall sections having a different inclination or direction with respect to the longitudinal axis 8 than the rest of the container jacket 4 when viewed in axial section.
  • the first back draft wall section immediately adjoining the bottom 3 is arranged or formed to extend predominantly in the direction of the container height 9 towards the open end 5 .
  • the further rear wall section extends in a predominantly vertical direction with respect to the container height 9, starting from the end of the first rear wall section facing away from the base 3 towards the container casing 4.
  • the further rear wall section forms a stacking shoulder. This stacking shoulder serves to allow a similar combi-packaging container 1 with its base 3, in particular the edge-side transition section between the base 3 and the container casing 4, to be supported on it.
  • the inner container 2 can have a shoulder 11 or a bulge protruding on the side facing away from the longitudinal axis 8 in the immediate transition region between the base 3 and the container casing 4, in particular between the base 3 and the rear section.
  • the combi-packaging container 1 also includes an outer part 12 which is designed in the shape of a collar or jacket and surrounds the inner container 2 in the region of its container jacket 4 at least in sections or in certain areas.
  • the shoulder 11 described above can be used, for example, to hold the collar-shaped outer part 12 in a latched manner on the inner container 2 .
  • the collar-shaped outer part 12 is supported with its first end face 19 facing the base 3 of the inner container 2 on this shoulder 11 formed in the transition area.
  • the shoulder 11 can thus also be referred to as a latching means for holding the outer part 12 on the inner container 2 .
  • a further latching means in the area of the open end 5 can be, for example, the flange 6 .
  • the collar-shaped outer part 12 comprises a second end face 20 which in turn faces the open end 5 or the flange 6 .
  • the sleeve-shaped outer part 12 is preferably formed from a cellulose material, such as cardboard material, with sufficient strength in relation to the absorption and transmission of compressive forces, in particular axially acting ones, and is wound from a planar blank 13 to form a jacket, as is already well known .
  • the blank 13 is usually printed in its undeformed flat position and optionally also provided with an additional coating.
  • a cellulose material is usually used as the material, although this can also be cardboard or strong paper produced in a recycling process. If a layer or ply of the outer part 12 is formed from a recycling material, an additional layer made of a higher-quality paper can be arranged or connected to at least one of the surfaces. This additional layer is used for flawless printing to produce decorations, lettering and product information.
  • the collar-like or jacket-like outer part 12 leads to an additional reinforcement or stiffening effect of the inner container 2 and thus of the entire combination packaging container 1.
  • this ensures high strength and good heat insulation and, on the other hand, optimum light protection for the contents of the packaging container.
  • the cardboard is additionally coated or sealed with a water-repellent material in the area of the cut edges. This is particularly advantageous when the combi-packaging containers 1 are exposed to an increased ingress of moisture.
  • a water-repellent layer prevent the box from swelling in a humid environment and ultimately from detaching from the container jacket 4 of the combi-packaging container 1 .
  • the collar-shaped outer part 12 is wound from the mostly planar blank 13 to form a jacket.
  • end sections 14, 15 facing one another are then connected to one another in an overlap region 16, shown in simplified form. This is done by a so-called overlap seam, by means of which the first end section 14 and the second end section 15 adhere to one another, for example by means of an adhesive.
  • the winding and the subsequent connection of the two end sections 14, 15 can be carried out, for example by gluing, as is already well known from the prior art.
  • the first end section 14 of the blank 13 ends with a first longitudinal edge 17 and the second end section 15 in turn ends with a second longitudinal edge 18.
  • the two longitudinal edges 17, 18 run approximately parallel to one another, with the overlapping area 16 in between viewed in the circumferential direction an overlap width is formed.
  • the outer part 12 also has the first end face 19 and the second end face 20, the two end faces 19, 20 being spaced apart from one another and defining an overall height 21 of the jacket in the erected state.
  • the longitudinal axis 8 already described above can also define the common longitudinal axis for the outer part 12, in particular when the outer part 12 is in its mounted position on the inner container 2. In most cases, the overall height 21 of the shell is slightly less than the container height 9 of the inner container 2 in the same spatial direction - namely in the direction of the longitudinal axis 8.
  • At least one predetermined separation area 22 is provided in the jacket of the outer part 12 .
  • the predetermined severing area 22 here comprises a first severing section 23, a second severing section 24 and an actuating means 25 for starting and beginning the severing process of the predetermined severing area 22 along the two severing sections 23, 24.
  • the actuating means 25 is seen in the direction of the overall height 21 of the jacket between the both end faces 19, 20 arranged.
  • the actuating means 25 approximately in the middle between the is arranged on the two end faces 19, 20 spaced apart from one another in the direction of the overall height 21, this essentially corresponding to half the overall height 21.
  • the specification "central” refers to half of its dimension in the direction of the overall height 21 or the longitudinal axis 8.
  • the two separating sections 23, 24 are provided on both sides of the actuating means 25 and each extend in the direction of the respective end face 19, 20.
  • the two separating sections 23, 24 of the predetermined separating area 22 are aligned towards one another from the two end faces 19, 20 and thus define between them an imaginary, straight connecting line 26, which is shown in dashed lines.
  • the mutually converging orientation of the two separating sections 23, 24 is in each case related in the direction of the actuating means 25.
  • the two separating sections 23, 24 can either be aligned with one another as seen in the direction of the overall height 21 of the shell or they can also run slightly inclined with respect to the first longitudinal edge 17 in the direction of the actuating means 25 located between them. Due to this slight inclination, the severing process after the two severing sections 23, 24 have been separated towards the two end faces 19, 20 can be additionally improved.
  • the imaginary connecting line 26 is assumed to run in the middle of the predetermined separation points.
  • the actuating means 25 in turn defines a detection section 27 with a first detection section end 28 spaced apart from one another in the direction of the overall height 21 and a second detection section end 29.
  • the two detection section ends 28, 29 are thus seen in the direction of the overall height 21 of the casing in arranged at a distance 30 from each other or end there.
  • the detection section 27 of the actuating means 25 is arranged or formed outside of the overlapping area 16 .
  • the offset 31 may have a value selected from one Value range with a lower limit of 1.0mm and an upper limit of 10.0mm.
  • the value range can preferably have a lower limit of 2.0 mm and an upper limit of 6.0 mm.
  • the first separating section 23 in turn has a first end 32 facing the actuating means 25 , the second separating section 24 having a second end 33 facing the actuating means 25 .
  • the casing is designed without interruption.
  • the arrangement of the two ends 32, 33 of the separating sections 23, 24 that are spaced apart from one another in the direction of the overall height 21 with respect to the detection section 27 forming the actuating means 25 is selected such that the first detection section end 28 of the detection section 27 is the adjacent first end 32 of the first Separating section 23 overlaps on the side facing away from the second separating section 24 .
  • a first intended separating section 34 is formed in the jacket of the outer part 12 between the first capping section end 28 and the first end 32 of the first separating section 23, viewed in the circumferential direction.
  • a second predetermined separating section 35 is thus formed in the jacket of the outer part 12 analogously to the first predetermined separating section 34 between the second detection section end 29 and the second end 33 of the second separating section 24 as seen in the circumferential direction.
  • the two predetermined separation sections 34, 35 are formed by the reduced dimension of the jacket material between the respective detection section end 28 or 29 and the respective end 32 or 33.
  • the two ends 32 and 33 of the separating sections 23, 24 are arranged closer to one another than the two detection section ends 28 and 29, which are spaced apart from one another by the distance 30.
  • the two predetermined separating sections 34, 35 each form start sections for the separation of the two separating sections 23, 24.
  • Each of the two separating sections 23, 24 comprises a plurality of predetermined separating points arranged one behind the other in a row, which are mostly designed as perforations, in particular also as short cuts, in the material of the outer part 12.
  • first predetermined separation points 36 those predetermined separation points which are arranged directly adjacent to the respective detection section ends 28, 29 are referred to as first predetermined separation points 36.
  • second predetermined separation points 37 and third predetermined separation points 38 are additional predetermined separation points provided in each case in the direction of one of the two end faces 19 , 20.
  • the predetermined separation points 36, 37, 38 are aligned with respect to a center and in normal alignment to the longitudinal axis 8 plane 39 - see 1 - Formed and arranged mirror-inverted to each other. Therefore, only those predetermined separation points 36, 37, 38 located in the area of the first separation section 23 are described in more detail and are to be transferred to the second separation section 24 in an analogous manner.
  • the first predetermined separation point 36 On its side facing away from the detection section 27, the first predetermined separation point 36 has a first longitudinal course 40 running essentially in a parallel direction with respect to the imaginary connecting line 26 between the two separation sections 23, 24 or in a parallel direction with respect to one of the longitudinal edges 17, 18. However, it would also be possible to align the first longitudinal course at a slight angle in the direction of the actuating means 25 .
  • a second longitudinal course 41 is provided, which is located on the side facing the detection section 27 and is aligned so as to project in the direction of the detection section 27 . Due to the approximately parallel orientation of the first longitudinal course 40, it is designed to run in a straight line.
  • the first longitudinal course 40 and the second longitudinal course 41 together form the first predetermined separation point 36 and are formed, for example, by a stamping process and pass through the thickness of the blank 13 preferably completely to form the outer part 12.
  • the second longitudinal extent 41 of the first predetermined separation point 36 can be configured in an arcuate manner. However, it would also be possible for the second longitudinal course 41 of the first predetermined separation point 36 to be angled and rectilinear in the direction of the actuating means 25 . In any case, the second longitudinal course 41 of the first predetermined separation point 36 ends before it reaches the detection section 27.
  • the second and/or third predetermined separating points 37, 38 of the two separating sections 23, 24 located after the first predetermined separating points 36 can have an alignment running at an angle to the imaginary connecting line 26 thereto.
  • the angled alignment of the second predetermined separation points 37 and/or the third predetermined separation points 38 of the first separation section 23 and the second separation section 24 can be selected such that they are aligned towards each other on the side facing away from the actuating means 25.
  • the second predetermined separation points 37 can preferably be longer than the subsequent third predetermined separation points 38.
  • an angle 42-1, 42-2 enclosed by the second and/or third predetermined separation points 37 38 of the first separation section 23 and by the second and/or third predetermined separation points 37, 38 of the second separation section 24, starting from the actuating means 25 towards the respective end faces 19, 20 is formed differently from one another.
  • the angle 42-1 between the second predetermined separation points 37 or the angle 42-2 between the third predetermined separation points 38 corresponding to one another must always be considered.
  • the included angle 42-1, 42-2 can be designed to increase towards the respective end faces 19, 20 and thus be larger.
  • the included angle 42 - 2 between the respective third predetermined separation points 38 is always chosen to be the same, but larger than the angle 42 - 1 enclosed by the second predetermined separation points 37 .
  • the design of the actuating means 25 and its detection section 27 can be selected differently.
  • the detection section 27 is formed by a cutting line that completely penetrates the casing.
  • the cutting line here has a straight longitudinal course. Further design options for the predetermined separation area 22, in particular for its actuating means 25, are explained in more detail in the following figures.
  • the overlapping area 16 between the two end sections 14, 15 can be selected such that the predetermined separation area 22 is arranged or formed in the first end section 14 and the first end section 14 is overlapped on the inside in the overlapping area 16 and on the outside by the second end section 15.
  • the predetermined separation area 22 is arranged to run in a parallel direction with respect to the second longitudinal edge 18 of the overlapping, outer second end section 15 .
  • provision can also be made for the predetermined separation area 22 to be arranged or formed outside of the overlapping area 16 .
  • the intended separating area 22 of the blank 13 comprises the two separating sections 23 and 24 as well as the grasping section 27 located between them.
  • the actuating means 25 also comprises, in addition to the grasping section 27, an opening 43 which completely penetrates the jacket.
  • the opening 43 is on the side of the Detection section 27 and directly to the detection section 27 then arranged thereon. Furthermore, the opening 43 ends at the intersection of the detection section 27. By providing the opening, the detection of the detection section 27 can be made easier for a user.
  • the predetermined separation area 22 of the blank 13 comprises the two separation sections 23 and 24 as well as the detection section 27 located between them Figures 1 to 4
  • the cutting line for forming the detection section 27 has a curved longitudinal course.
  • the longitudinal course is preferably curved in an arc shape.
  • the detection section 27 has a convex longitudinal profile with a curvature facing away from the overlapping area 16 .
  • a type of actuating tab can thus be formed, which can make it even easier to hold and actuate for the separating process.
  • the previously in the 4 described and immediately adjacent to the line of intersection 43 are provided in the jacket to form the actuating means 25.
  • the formation of the predetermined separation sections 34, 35 and their predetermined separation points 36, 37 and 38 can be carried out analogously to what has already been described above.
  • the design and arrangement of the predetermined separation area 22 in the first end section 14 of the blank 13 can be carried out according to an exemplary embodiment already described above.
  • the predetermined separating area 22 in turn comprises the two separating sections 23 and 24 located on both sides of the actuating means 25.
  • the first end section 14 with the predetermined separation area 22 located therein is overlapped by the second end section 15 in the overlapping area 16
  • the first end section 14 is arranged on the outside in the overlapping area 16 and thus overlaps the second end section 15.
  • the predetermined separation area 22 is thus also in turn arranged or formed in the first end section 14 , the second end section 15 being arranged on the inside in the overlapping area 16 and thus overlapped.
  • a holding arrangement 44 is provided immediately adjacent to the flange 6 in order to be able to hold the outer part 12 additionally on the inner container 2, in particular to be able to hold it positively fixed thereto.
  • the portion of the holding assembly 44 is shown in detail "X" to the left below the combination packaging container 1 on an enlarged scale.
  • the collar-shaped outer part 12 has its own folded edge 45 .
  • the folded edge 45 is folded inwards in the direction of the longitudinal axis 8 or in the direction of the container jacket (4), whereby no additional disruptive edges are arranged or formed on the outside of the collar-shaped outer part 12 facing the viewer.
  • the folded edge 45 can be provided or formed over the entire circumference or almost over the entire circumference of the outer part 12 .
  • the container shell 4 has an inwardly offset wall section 46 which forms a receiving space 47 for the folded edge 45 .
  • the receiving space 47 is preferably designed to be continuous over the entire circumference, but can also be designed only in segments or sections.
  • a step surface 48 protruding onto the side facing away from the longitudinal axis 8 is provided.
  • the inward folded edge 45 is supported with its front edge.
  • the folded edge 45 together with the outer part 12 is pushed in the direction of the flange 6 until the folded edge 45 snaps completely into the receiving space 47 provided for this purpose in the region of the open end 5 of the inner container 2.
  • the fold edge 45 is preferably applied to the jacket or the wall of the sleeve-shaped outer part 12 in a continuous circumferential manner during flanging.
  • the retaining arrangement 44 between the outer part 12 and the inner container 2 could also be formed by at least one retaining lug protruding from the container jacket 4 on the side facing away from the longitudinal axis 8 and a depression or retaining opening arranged or formed in the outer part 12 .
  • the retaining lug protrudes into the recess or into the retaining opening and thus holds the outer part 12 on the inner container 2.
  • the outer part 12 has usually been additionally secured against unintentional separation with an adhesive at least at one adhesive point or point on the container jacket 4 of the inner container 2 if the support of the outer part 12 on the bottom shoulder 11 should no longer be sufficient due to excessive dimensional differences.
  • the outer part 12 is first to be separated in the intended separation area 22 formed in this, then the adhesive point is to be detached and only then can the sorted, separate disposal be carried out.
  • the additional adhesive can be provided, but is in the in the 9 described embodiment is not absolutely necessary and it can also be dispensed with entirely.
  • the outer part 12 After the removal of the goods contained in the combi-packaging container 1, mostly a foodstuff or a consumable, the outer part 12 must be detached from the inner container 2 for proper and separate disposal.
  • the material of the outer part 12 is formed by cellulose (cardboard, strong paper or the like) and that of the inner container 2 is formed by a plastic material.
  • the application of the compressive force -F- saves the search for the intended severing area 22, the grasping of the actuating means 25 and the subsequent severing process.
  • the combination packaging container 1 intended for separation is placed either with its closed end 7 or its open end 5 of the inner container 2 on a support surface formed, for example, by a solid base, and then the person applies the compressive force -F- exerted on the end facing away from the support surface towards the support surface.
  • the support surface or the solid base can be, for example, the floor, the table or a worktop.
  • the Compressive force -F- can be applied directly by the person with one or more hands or else with the foot.
  • a marking or an indication of the implementation can be provided on the bottom 3 of the inner container 2 and/or on the outer part 12, for example be attached or arranged during the separation process.
  • the marking on the floor 3 can be attached or arranged, for example, in the area of the longitudinal axis 8 and/or on the outer circumference of the floor.
  • a dedicated pressure device could also be provided, into which the combi-packaging container 1 to be separated is introduced and the pressure force -F- is then applied mechanically.
  • the intended separation area 22 it would also be possible for the intended separation area 22 to be separated in the course of waste disposal by a pressing device or the like, and for the compressive force -F- to be applied by this device. This usually occurs when the transport volume is reduced.
  • the user of the combi-packaging container 1 can thus dispense with carrying out the separating process and can send the complete combi-packaging container 1 for disposal.
  • the separation process of the predetermined separation area 22 is carried out mechanically by a press or a squeezing device during collection and/or waste disposal.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Ceramic Engineering (AREA)
  • Packages (AREA)
  • Cartons (AREA)
  • Making Paper Articles (AREA)
EP20731421.2A 2019-06-07 2020-06-03 Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters Active EP3980340B1 (de)

Priority Applications (2)

Application Number Priority Date Filing Date Title
RS20231146A RS64902B1 (sr) 2019-06-07 2020-06-03 Spoljni deo u obliku manžetne i kombinovani kontejner za pakovanje opremljen njime i postupak odvajanja kombinovanog kontejnera za pakovanje
EP23195056.9A EP4265536B1 (de) 2019-06-07 2020-06-03 Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ATA50520/2019A AT522907B1 (de) 2019-06-07 2019-06-07 Manschettenförmiges Außenteil sowie damit ausgestatteter Kombi-Verpackungsbehälter
PCT/EP2020/065278 WO2020245148A1 (de) 2019-06-07 2020-06-03 Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters

Related Child Applications (1)

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EP23195056.9A Division EP4265536B1 (de) 2019-06-07 2020-06-03 Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters

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EP3980340A1 EP3980340A1 (de) 2022-04-13
EP3980340B1 true EP3980340B1 (de) 2023-09-06
EP3980340C0 EP3980340C0 (de) 2023-09-06

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EP23195056.9A Active EP4265536B1 (de) 2019-06-07 2020-06-03 Manschettenförmiges aussenteil sowie damit ausgestatteter kombi-verpackungsbehälter und verfahren zum trennen des kombi-verpackungsbehälters

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Country Status (7)

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US (1) US11731799B2 (pl)
EP (2) EP3980340B1 (pl)
AT (1) AT522907B1 (pl)
HU (2) HUE071469T2 (pl)
PL (2) PL3980340T3 (pl)
RS (2) RS64902B1 (pl)
WO (1) WO2020245148A1 (pl)

Families Citing this family (11)

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Publication number Priority date Publication date Assignee Title
AT522907B1 (de) 2019-06-07 2021-04-15 Greiner Packaging Ag Manschettenförmiges Außenteil sowie damit ausgestatteter Kombi-Verpackungsbehälter
AT524230B1 (de) 2021-02-25 2022-04-15 Greiner Packaging Ag Manschettenförmiges Außenteil, damit ausgestatteter Kombi-Verpackungsbehälter und Verfahren zum Trennen des Kombi-Verpackungsbehälters
CA3211080A1 (en) 2021-02-25 2022-09-01 Greiner Packaging Ag Sleeve-shaped outer part, combination packaging container equipped therewith, and method for separating the combination packaging container
PL4313784T3 (pl) * 2021-03-23 2026-01-19 Mclaren Packaging Limited Półwyrób opakowaniowy, opakowanie oraz sposób wytwarzania opakowania
EP4212443A1 (en) 2022-01-18 2023-07-19 PACCOR Packaging GmbH Blank for a packaging shell of a cup packaging, cup packaging having a packaging shell, and method for separating the cup packaging and the packaging shell
AT526366B1 (de) 2022-06-08 2024-09-15 Greiner Packaging Ag Zuschnitt, sowie aus einem Zuschnitt gebildetes manschettenförmiges Außenteil zum Ummanteln eines becherförmigen Innenbehälters, sowie Kombi-Verpackungsbehälter
AT525891B1 (de) 2022-10-10 2023-09-15 Greiner Packaging Ag Außenteil und damit ausgestatteter Kombi-Verpackungsbehälter, Verfahren zur Herstellung und
AT525879B1 (de) 2022-10-10 2023-09-15 Greiner Packaging Int Gmbh Mehrweg-Kunststoffbehälter und Verfahren zur Wiederaufbereitung
DE202022107170U1 (de) * 2022-12-22 2024-03-27 Optipack Gmbh Kombi-Verpackungsbehälter
EP4393832A1 (en) 2023-01-02 2024-07-03 PACCOR Packaging GmbH Blank for a packaging shell of a cup packaging, method for producing a blank, cup packaging having a packaging shell, and method for separating the cup packaging and the packaging shell
AT526840B1 (de) 2023-09-14 2024-08-15 Greiner Packaging Ag Kombi-Verpackungsbehälter mit einem Behälter und einem Außenteil

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AT508841A1 (de) 2009-09-24 2011-04-15 Rundpack Ag Verpackungseinheit, insbesondere für nahrungsmittel
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Also Published As

Publication number Publication date
WO2020245148A1 (de) 2020-12-10
EP4265536A2 (de) 2023-10-25
RS66637B1 (sr) 2025-04-30
EP3980340A1 (de) 2022-04-13
EP4265536A3 (de) 2024-01-24
RS64902B1 (sr) 2023-12-29
PL3980340T3 (pl) 2024-03-04
PL4265536T3 (pl) 2025-07-28
US11731799B2 (en) 2023-08-22
EP3980340C0 (de) 2023-09-06
US20220227524A1 (en) 2022-07-21
HUE064317T2 (hu) 2024-03-28
AT522907B1 (de) 2021-04-15
EP4265536C0 (de) 2025-02-26
HUE071469T2 (hu) 2025-08-28
CA3142212A1 (en) 2020-12-10
AT522907A1 (de) 2021-03-15
EP4265536B1 (de) 2025-02-26

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