EP3385183A1 - Récipient pliant - Google Patents

Récipient pliant Download PDF

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Publication number
EP3385183A1
EP3385183A1 EP17000574.8A EP17000574A EP3385183A1 EP 3385183 A1 EP3385183 A1 EP 3385183A1 EP 17000574 A EP17000574 A EP 17000574A EP 3385183 A1 EP3385183 A1 EP 3385183A1
Authority
EP
European Patent Office
Prior art keywords
locking device
container
latching
actuating element
side wall
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP17000574.8A
Other languages
German (de)
English (en)
Other versions
EP3385183B1 (fr
Inventor
Kira Götz
Lisa Götz
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.)
Oberland M&V GmbH
Original Assignee
Oberland M&V GmbH
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 Oberland M&V GmbH filed Critical Oberland M&V GmbH
Priority to EP17000574.8A priority Critical patent/EP3385183B1/fr
Publication of EP3385183A1 publication Critical patent/EP3385183A1/fr
Application granted granted Critical
Publication of EP3385183B1 publication Critical patent/EP3385183B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS 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
    • B65D11/00Containers having bodies formed by interconnecting or uniting two or more rigid, or substantially rigid, components made wholly or mainly of plastics material
    • B65D11/18Containers having bodies formed by interconnecting or uniting two or more rigid, or substantially rigid, components made wholly or mainly of plastics material collapsible, i.e. with walls hinged together or detachably connected
    • B65D11/1833Containers having bodies formed by interconnecting or uniting two or more rigid, or substantially rigid, components made wholly or mainly of plastics material collapsible, i.e. with walls hinged together or detachably connected whereby all side walls are hingedly connected to the base panel

Definitions

  • the invention relates to a locking device for a container having a bottom wall and four hinged side walls, which are locked together in an upright position. Furthermore, the invention relates to a container with such a locking device.
  • Folding containers are known in which the closing and unlocking device including the operating element are provided exclusively in the area of the container corner, for example in DE 102 08 846 B1 and DE 100 41 886 B1 ,
  • a disadvantage of such systems is that both hands are needed to fold one side wall so that the user can not fold both opposite side walls at the same time.
  • a container with hinged side walls which per side wall provides a one-piece and bow-shaped trained actuating part which extends substantially the length of the side wall and which is held in recesses of vertical stiffening ribs on the outer surface of the side wall and guided for a lifting movement.
  • the actuating member is moved by means of the lifting movement parallel to the side wall, said end provided locking lugs of the side wall from a closed position in which they overlap latching hook of the respective adjacent side wall.
  • the invention has for its object to provide a locking device for a container with a bottom wall and four hinged side walls, which is constructed easily and easily and ensures reliable transfer of the locking elements in the closed position and the unlocked position, so that use in continuous operation is possible.
  • containers with such a locking device should be inexpensive to manufacture.
  • a locking device for a container with a bottom wall and four hinged side walls, which are locked together in an upright position, it is provided that two opposite first side walls have locking elements and the two further opposite second side walls have counter-locking elements, wherein in a closed position of the locking device locking elements a first side wall interact with counter-latching elements of an adjacent second side wall, for example, engage in recesses of the adjacent second side wall, wherein the locking device comprises an actuating element which is coupled to a latching element to transfer the latching element from the closed position to an unlocking position, wherein the actuating element can be actuated with a lifting movement parallel to the first side wall.
  • the actuating element and the latching element are linearly translationally movable, wherein the locking device comprises a deflection mechanism, so that the latching element in a first direction between the closed position and the unlocked position is movable, with an angle of a second direction of the lifting movement of the actuating element not equal to 0 °, preferably from 45 ° to 135 °, more preferably from 60 ° to 120 °, even more preferably from 85 ° to 95 °, especially 90 °.
  • the component which comprises the actuating element with the locking elements coupled thereto is referred to in the present description as a bolt or slider.
  • the locking device comprises at least the bolt and the counter-locking elements, as well as possibly provided guide devices of the bolt.
  • the locking device can also be used on objects other than containers, in particular when at least one first side wall with at least one second side wall in an upright position are releasably secured together.
  • the actuating element and the latching element are linearly translationally movable, wherein the lifting movement for operating the actuating element is parallel to the first side wall and perpendicularly away from the bottom wall, and wherein the latching element is movable in the direction of the adjacent side wall by the deflection mechanism ,
  • the actuating element is preferably coupled to at least two latching elements which cooperate with counter-latching elements of both adjoining second side walls in order to latch the side wall in an upright position.
  • the locking device is preferably formed symmetrically with respect to the first side wall, so that the locking elements are provided both to the left and to the right of the centrally located actuator to cooperate with the adjacent second side walls for locking and unlocking.
  • the actuating element is preferably arranged in the central region of the first side wall, for example in the vicinity, in particular below one Passage opening, which is bounded by a carrying handle for supporting the container.
  • the deflection mechanism comprises at least one spring element, for example a plastic or plastic double spring or else a corrugated plastic spring.
  • the spring element supports the latching element resiliently and biases it into the closed position.
  • the spring element supports the actuating element resiliently and biases into the closed position.
  • the spring element may be formed integrally with both the latching element and with the actuating element.
  • the spring element can interact directly or indirectly with the latching element and / or actuating element, i. directly or via a third element which is coupled to the spring element. It can be provided a spring element or a plurality of spring elements, for example, to guide the movement of the locking element and the actuating element. Manufacturing technology advantageous is a single spring element to keep the number of necessary components of the container low.
  • the spring element can on one side on the latch, z. B. on the locking element or on the actuating element and on the other hand are supported against a component of the first side wall, for example against a horizontal or vertical strut of the first side wall or against the handle.
  • the actuating element is articulated by means of at least one, preferably at least two hinges to the latching element.
  • the deflection mechanism in this embodiment comprises the two hinges and the corresponding intermediate piece between the hinges.
  • Two hinges are particularly preferably provided in order to divert the rectilinear translatory movement of the actuating element into the linear translational movement of the latching element.
  • the hinges may each comprise two legs and a pivot point, which is referred to as a hinge axis or axis of rotation, and with the actuating element or the Locking element be connected in any way, for example, cohesive, non-positive or positive fit.
  • the actuating element is formed integrally with the latching element.
  • the hinges are particularly preferably designed as film hinges.
  • a particular advantage of the film hinge is the cost-effective production.
  • the film hinge comprises a thin-walled connection formed, for example, as a taper in the material lid of the part. In order to prevent the shearing of the film hinge and premature wear of the same, the film hinge is guided so that the rotational movement is securely stored in the plane of the first side wall.
  • the film hinge may be formed by a material taper comprising wall thickness transition regions with a continuous reduction in the wall thickness of the latch and a hinge axis. Instead of the axis of rotation may also be provided a flat tapered portion, so that the smallest wall thickness of the bolt extends over a longer distance section.
  • the material taper can be designed linear or by any smooth transition, in particular also stepped.
  • the bolt is preferably made of polypropylene for reasons of wear resistance, in order to ensure a long service life, in particular for the film hinges.
  • polypropylene for reasons of wear resistance, in order to ensure a long service life, in particular for the film hinges.
  • polyamide, polyethylene or any plastic may be used which has sufficient strength and load capacity.
  • the spring element is fixed on one side in a hinge recess.
  • the hinge recess in the present specification refers to the location of the least material thickness of the film hinge.
  • the spring element can be supported, for example, against a stepped wall thickness transition region.
  • the locking element has a wedge-shaped portion which is formed such that an inclined surface of the wedge-shaped portion allows unhindered erection and locking of the first side wall, according to known door locks.
  • this is the wedge-shaped portion in the locking position of the first Side wall out and is biased in this position.
  • the inclined surface, or the bevel can also be referred to as a closure aid.
  • the wedge-shaped portion of the locking element has rounded edges in order to minimize the risk of injury.
  • the actuating element is mounted in a vertical guide, so that a horizontal displacement of the actuating element is hindered.
  • the vertical guide prevents lateral breakage of the actuating element in the manner of a forced operation.
  • the vertical guide is in the direction of the lifting movement, i. formed the intended direction of movement of the actuating element.
  • the vertical guide is preferably formed by at least one recess.
  • a vertical guide can be provided by means of stiffening ribs in the first side wall.
  • two recesses are provided, which are arranged opposite one another laterally of a carrying handle of the container.
  • the latching element is mounted in a horizontal guide in order to hinder a vertical displacement of the latching element.
  • the horizontal guide can also be formed as a recess.
  • the horizontal guide is formed by two parallel rib members.
  • a counter-latching element is designed, for example, as a wall of a latching recess.
  • the latching recess may be formed approximately as large as the latching element or its wedge-shaped portion to enclose them in the closed position.
  • the latching recess is formed as an elongated groove.
  • the counter-locking element z. B. formed by a rib, so that the locking element or its wedge-shaped portion is disposed in the closed position behind the rib.
  • the counter-latching element may alternatively also be formed as a projection which protrudes from the second side wall.
  • the counter-latching element preferably has a ramp formed by a chamfer in order to interact with the latching element to reduce friction.
  • the bevel, or inclined surface can also be referred to as a closure aid. It can be provided that both the locking element and the counter-locking element have wedge-shaped sections with chamfers or inclined surfaces in order to make the erection of the side wall as problem-free as possible.
  • the movement of the actuating element is converted by a first distance into a movement of the locking element by a second distance, wherein the second distance is less than the first distance, in particular less than three quarters, preferably between a quarter and three quarters more preferably in about half.
  • the leverage effect is exploited to the effect that an ergonomically meaningful movement with the actuating element, for example in the order of 1 to 4 cm, preferably in about 2 cm, is converted into a smaller movement of the locking element, for example in about 0.5 to 2 cm, preferably 1 cm, so that the shutter mechanism can be designed materialarm.
  • this can also be a tilting of the locking elements are prevented when operating the operating part.
  • a container with such a locking device is also provided.
  • the container may also be referred to as a folding box or as a hinged container.
  • the container can be used for any purpose, for example as a transport container. It is preferably provided that the side walls of the container are four circumferential side walls of the same height.
  • the latch is arranged on the end walls of the container, d. H. in a rectangular container bottom on the narrower side walls.
  • the container has at least one carrying handle on the first side wall, wherein the carrying handle defines a passage opening of the first side wall on the upper side.
  • the container may have only two carrying handles, which are formed on the first side walls, but also more carrying handles, for. B. four handles, wherein two are formed on the first side walls and two on the second side walls. It is preferably provided that the actuating element in the region of Carrying handle of the container is arranged so that when operating the actuator, the hand can be supported on the carrying handle.
  • the actuating element is arranged in the closed position below the passage opening of the carrying handle of the container and at least partially covers the passage opening during operation.
  • the user can hardly operate the actuator in this embodiment, since he can use the carrying handle of the container handle by means of access opening, without triggering the actuator. If the container is to be folded, the hand is stretched out beyond the access opening in the direction of the operating section.
  • the actuator is actuated in the stroke direction, i. in the direction of the access opening.
  • When operating the actuating element can be provided to sweep the passage opening completely or partially. It is preferably provided that the movement of the actuating element sweeps over the passage opening only a few centimeters, z. B. from 0.1 to 2 cm, or alternatively, that the movement of the actuating element a few centimeters, z. B. 2 to 4 cm, below the handle ends, in which cases a clamping of the fingers is ideally avoided by the user.
  • the actuating element When the actuating element is actuated, it may alternatively also be provided that it does not pass over the passage opening, but remains entirely below or above the passage opening, both in the closed position and in the unlocked position.
  • the two second side walls which have the grid recesses, are preferably U-shaped extending over two corners of the container.
  • the first side walls are U-shaped or that the side walls in the corner form an arbitrarily designed positive connection.
  • first side walls are folded in first, and that thereafter the second side walls are folded.
  • the second side walls come at least partially, in some embodiments also over the entire surface, to lie on the first side walls.
  • the presented locking device allows the side walls to be erected and locked together with a handle, whereby only the first side walls are gripped and placed and the second side walls are entrained in the movement of the first side walls.
  • the invention sets in the opening and closing latch a straight-line translational movement of the actuating element in a rectilinear translational movement of the locking element, without requiring pivot pins and accordingly suspended components.
  • the device is less prone to problems such as contamination between trunnions and components attached thereto.
  • the device according to the invention is suitable for long-term use, since it can be easily cleaned.
  • first side wall preferably the front side wall
  • a sliding movement of the two bolt ends is generated inwardly by deflecting by means of hinges, comparable to a door lock.
  • hinges comparable to a door lock.
  • the two-sided locking is opened and the first side wall can be folded or closed inwards.
  • both first side walls can be unlocked and collapsed simultaneously with both hands.
  • each provided in the region of the bolt ends a spring element, so that the bolt is in its original state in the locked state and the container is automatically locked when folding.
  • the bolt and also the counterpart at the second side walls are chamfered at their ends, so that the bolt initially pushed back against the spring force when closing the container and thereafter is closed on both sides by means of the spring action of the container at both ends.
  • FIG. 1 shows a sectional view from above through a container 2, which has a locking device 4 according to an embodiment of the invention. Shown are a first side wall 6 and parts of two second side walls 8, which are locked together in an upright position. In the latched state each include a first side wall 6 and a second side wall 8 at an angle of about 90 °.
  • the first side wall 6 has a latch 10, which is in the representation in the closed position.
  • the bolt 10 extends over the entire length of the first side wall 6 and comprises substantially five functionally different sections, wherein these are arranged symmetrically about a central axis X of the container 2.
  • an actuating element 12 In the central portion of the bolt 10 is an actuating element 12, by means of which the bolt 10 in general from Hand is operated.
  • an area with a deflecting mechanism 16 is provided on both sides, which merges into latching elements 14.
  • the deflection mechanism 16 includes in the illustrated embodiment, two hinges 18, which adjoin the actuating element 12 on the one hand and on the latching element 14 on the other hand and a deflection portion 19 between the hinges 18th
  • the locking element 14 comprises a wedge-shaped section 20 with an inclined surface 21 which is formed in the direction of the container outer side.
  • the inclined surface 21 of the wedge-shaped portion 20 cooperates with a counter-latching element 24 of the second side wall 8 such that the locking element 14 is first pressed in the direction of the central axis X and then snaps back into the recess 22 .
  • the first side wall 6 is hinged for erecting from the container interior to the outside.
  • the latching element 14 may be formed in other embodiments without sloping surface 21.
  • the latching recesses 22 of the second side walls 8 are arranged in the region of a projection 26 of the second side wall 8.
  • the second side wall 8 thus extends in a U-shape over the corner of the container 2, wherein a projection 26 each represents one of the legs of the U-shape.
  • the vertical dimensions of the counter-latching element 24 and the latching recess 22 are not derivable. If the counter-latching element 24 is formed as a projection, then it is rather compact in its vertical dimensions, z. B. in the order of the locking element 14 itself to twice as large.
  • the counter-latching element 24 may also be formed as a rib, which may extend, for example, over a part of or over the entire height of the second side wall 8. In the illustrated embodiment, the counter-latching element 24 is formed as a wall of a latching recess 22.
  • the recess 22 may be formed rather compact in their vertical dimensions, z. B. in the order of the locking element 14 to twice as large as extending as an elongated groove over a part or the entire height of the second side wall 8.
  • FIG. 2 shows one of the corners of the in FIG. 1 illustrated container 2, wherein the locking device 4 is still in an unlocked position.
  • an arrow a the direction of movement of the first side wall 6 when erecting or setting up is shown.
  • the bolt 10 is displaced in the arrow direction shown by a further arrow b in the direction of the central axis X, wherein the locking element 14 slides on the counter-latching element 24. Seen in plan view (see also FIG. 1 ), the bolt 10 is thus pushed together when setting up the first side wall 6, wherein the actuating element 12 and parts of the deflection mechanisms 16 is displaced into the plane of the drawing or out of the plane to compensate for the collapsing movement.
  • FIGS. 3 to 5 show as well FIG. 2 a detailed representation of the corner of the container 2, wherein various cross-sectional embodiments of the latching recess 22 and the counter-latching element 24 are shown by way of example.
  • FIG. 3 shows an embodiment in which the counter-latching element 24 has a ramp 28 which is formed by a bevel, in order to cooperate friction-reducing with the latching element 14.
  • the inclined surface 21 of the locking element 14 may for example be formed at the same angle as the chamfer of the ramp 28, but also different angles can be selected.
  • FIG. 4 shows an embodiment in which the latching recess 22 is formed as a form-fitting recess 30.
  • the locking element 14 fills the locking recess 22 in the closed position, at least in sectional view from space filling.
  • the form-fitting recess 30 is correspondingly designed as a wedge-shaped groove.
  • FIG. 5 shows an embodiment in which the form-fitting recess 30 is combined with the ramp 28.
  • FIG. 6 shows an embodiment of the container 2, wherein the first side wall 6 is unlocked to the outside. Accordingly, the inclined surface 21 of the wedge-shaped portion 20 of the locking element 14 is formed in the direction of the container inside and cooperates with a located on the container outer side counter-latching element 24 of the second side wall 8.
  • the latch 10 may otherwise be as related to FIG. 1 be described described. It can, for. B. be provided, the first side walls 6 or z. B. all side walls 6, 8 are hinged to the outside.
  • the second side walls 8 do not extend in a U-shaped manner into the region which would be geometrically associated with the first side wall 6.
  • those relating to the FIGS. 1 to 5 described embodiments of the invention also not limiting.
  • straight, not U-shaped second side walls 8 and inwardly folding first side walls 6 include.
  • a guide channel (not shown) for the locking element 14 or for the protruding part of the locking element 14 is provided in the region of the second side wall 8 in front of the counter-latching element 24, which is the trajectory of the component, for. B. the extended wedge-shaped portion 20 provides space when folding.
  • An alternative embodiment with recessed locking element 14 is with reference to FIG. 11 described.
  • FIG. 7 In reference to FIG. 7 are shown in side view parts of the locking device 4 according to an embodiment of the invention.
  • the locking device 4 comprises the with respect to FIG. 1 illustrated and described latch 10, which centrally has the actuator 12, then left and right side the deflection mechanism 16 with two hinges 18, here advantageously film hinges, deflecting sections 19 and subsequently with locking elements 14 which have wedge-shaped sections 20 at their ends.
  • the actuating element 12 is thus formed in one piece with the latching element 14 in the illustrated embodiment and hinged by means of two hinges 18 to the latching element 14.
  • the actuating element 12 is coupled to the latching element 14 in such a way as to move the latching element 14 out of the closed position, which is in FIG FIG. 7 is shown in an unlocking position, the in FIG. 8 is shown, wherein the actuating element 12 with a lifting movement parallel to the first side wall 6 and away from the container bottom (not shown) is actuated.
  • the actuating element 12 and the latching element 14 are linearly translationally movable.
  • the hinge 18 comprises a hinge axis 32 which is bounded on the left side and on the right side by a wall thickness transition region 34.
  • the wall thickness transition region 34 extends linearly, so that a V-shaped hinge recess 36 is formed.
  • the actuating element 12 is mounted in a vertical guide 40 which extends in the direction of the lifting movement. In this way, a horizontal displacement of the actuating element 12 is ideally prevented.
  • the vertical guide 40 comprises in the illustrated embodiment, two recesses 42 in which the actuating element 12 is mounted by means of a hinge member, for example by means of pins 44.
  • the recesses 42 are arranged in the illustrated embodiment opposite each other laterally of a through opening 38 of the first side wall 6, and how out FIG. 7 and FIG. 8 As can be seen, the actuating element 12 partially covers the passage opening 38 during operation.
  • the two end-piece locking elements 14 of the bolt 10 are mounted in horizontal guides 46, so that ideally a vertical movement of the locking elements 14 is prevented.
  • the horizontal guide 46 is formed by two rib members 48 which are provided on the upper and lower sides of the bolt 10.
  • the hinge axles 32 are alternately provided once on the upper side and once on the underside on the latch 10. As in FIG. 8 shown in the illustrated embodiment when unlocking the bolt 10, the hinge recesses open 36 of both hinges 18, so that the V forms a larger angle. Also, the reverse arrangement of the hinge axes 18 may be provided, wherein the hinge recesses 36 of both hinges 18 are tapered when unlocking the bolt.
  • a movement of the actuating element 12 is converted in the illustrated embodiment into a reduced movement of the latching element 14. That is, the actuator 12 moves by a first distance, so the locking elements 14 move by a second distance, the second distance is less than the first distance. This is determined by the dimensioning of the components.
  • FIG. 9 shows an embodiment of a bolt 10, in which the hinges 18 as in FIGS. 7 and 8 but as film hinges are configured so alternatively that they have a flat tapered portion 37 instead of a one-dimensional hinge axis 32.
  • the wall thickness transition region 34 is extremely shortened in this case and consists in principle of a step.
  • the hinge recess 36 is U-shaped.
  • FIG. 10 shows a side view of the first side wall 6 of the container 2 according to a further embodiment of the invention, wherein the bolt 10 according to the reference to FIG. 9 described embodiment is formed and is in the unlocked position. Accordingly, the locking elements 14 are retracted at the ends of the first side wall 6 and close, for example, flush with this.
  • the actuating element 12 is raised in part via the passage opening 38 of the first side wall 6.
  • the actuating element 12 is spaced in a clearance 52.
  • the actuator 12 when operating the actuator 12, the hand can be conveniently supported on the handle 50. Is the actuator 12 as shown in unlocked position, it is preferably provided that the inside width 52 is formed such that a pinching of the fingers between the actuator 12 and the handle 50 is not possible.
  • FIG. 10 illustrated embodiment also shows a spring element 54, which is part of the deflection mechanism 16.
  • the spring element 54 is exemplified as a plastic double spring and is supported on one side on an upper edge strip 56 of the container 2 from.
  • the spring element 54 is set by way of example in the hinge recess 36 of the hinge 18, which is located closer to the locking element 14.
  • the spring element 54 biases the locking element 14 in the closed position. Since the locking element 14 and the actuating element 12 are formed integrally with each other, the spring element 54 also biases the actuating element 12 in the closed position.
  • the printing direction of the spring element 54 is, however, matched with the horizontal guide 46, so that the latching element 14 is biased in the closed position.
  • FIGS. 11 and 12 show two further alternative embodiments of the spring element 54, wherein in both embodiments, the spring element 54 is formed in each case integrally with the latch 10.
  • the spring element 54 adjoins the actuating element 12.
  • the spring element 54 is designed as a simple plastic spring and is supported on the upper edge strip 56.
  • the printing direction of the spring element 54 is matched to the vertical guide 40, so that the actuating element 12 is biased in its position below the passage opening 38.
  • FIG. 11 an embodiment shown in which the locking element 14 is flush in the locking position with the body of the first side wall 6.
  • the first side wall 6 has in the region of the locking element for this purpose a side wall recess 60.
  • a trained as a projection counter-latching element 24 can pass unhindered by the side wall recess 60 when locking the side walls 6, 8 on the body of the first side wall 6.
  • the embodiment z. B. also straight, not U-shaped second side walls 8 and inwardly folding first side walls 6 include.
  • the spring element 54 adjoins the latching element 14.
  • the spring element 54 is again designed as a simple plastic spring and is supported on a vertical strut 58.
  • the pressure direction of the spring element 54 is matched to the horizontal guide 46, so that the latching element 14 is biased in the closed position.
  • FIG. 12 an embodiment shown in which the first side wall 6 has guide lugs 62 which cooperate with corresponding counterparts of the second side wall 8, for example guide grooves, to the safe Setting up and locking the side walls 6, 8 to improve.
  • the guide lugs 62 are formed such that they already cooperate when setting up the first side wall 6 with the guide grooves of the second side wall 8 before the latching element 14 strikes the counter-latching element 24.
  • guide lugs 62 are provided above and below the bolt 10.
  • first side wall 6 may comprise guide grooves, in which case the second side wall 8 has corresponding guide lugs 62.
EP17000574.8A 2017-04-05 2017-04-05 Récipient pliant Active EP3385183B1 (fr)

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EP17000574.8A EP3385183B1 (fr) 2017-04-05 2017-04-05 Récipient pliant

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EP17000574.8A EP3385183B1 (fr) 2017-04-05 2017-04-05 Récipient pliant

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EP3385183A1 true EP3385183A1 (fr) 2018-10-10
EP3385183B1 EP3385183B1 (fr) 2020-02-19

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Citations (8)

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Publication number Priority date Publication date Assignee Title
DE10041886B4 (de) 2000-08-25 2007-03-22 Ifco Systems Gmbh Transportbehälter
US20070145053A1 (en) * 2005-12-27 2007-06-28 Julian Escarpa Gil Fastening device for folding boxes
DE10137328B4 (de) 2001-07-31 2007-08-16 Schoeller Wavin Systems Services Gmbh Vorrichtung zum Öffnen und Verriegeln von klappbaren Seitenwänden von Kästen oder Behältern, insbesondere Mehrwegebehältern
DE10208846B4 (de) 2002-03-01 2007-10-31 Schoeller Wavin Systems Services Gmbh Behälter, insbesondere Mehrwegebehälter, mit klappbaren Seitenwänden
EP2128035A1 (fr) 2008-05-28 2009-12-02 IFCO Systems Austria GmbH Verrou pour récipients de transport dotés de parois latérales repliables
DE202009014633U1 (de) * 2009-10-29 2010-03-25 Robert Bosch Gmbh Zusammenklappbarer Transport- und/oder Lagerbehälter
DE202016104226U1 (de) * 2016-08-01 2016-08-16 Know How International Gmbh & Co. Kg Klappbox zur Aufnahme von Transportgut
EP2840034B1 (fr) 2013-08-21 2016-11-16 Schoeller Allibert GmbH Dispositif de verrouillage et de déverrouillage des parois latérales rabattables ou pliables d'un récipient

Patent Citations (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10041886B4 (de) 2000-08-25 2007-03-22 Ifco Systems Gmbh Transportbehälter
DE10137328B4 (de) 2001-07-31 2007-08-16 Schoeller Wavin Systems Services Gmbh Vorrichtung zum Öffnen und Verriegeln von klappbaren Seitenwänden von Kästen oder Behältern, insbesondere Mehrwegebehältern
DE10208846B4 (de) 2002-03-01 2007-10-31 Schoeller Wavin Systems Services Gmbh Behälter, insbesondere Mehrwegebehälter, mit klappbaren Seitenwänden
US20070145053A1 (en) * 2005-12-27 2007-06-28 Julian Escarpa Gil Fastening device for folding boxes
EP2128035A1 (fr) 2008-05-28 2009-12-02 IFCO Systems Austria GmbH Verrou pour récipients de transport dotés de parois latérales repliables
EP2128035B1 (fr) 2008-05-28 2012-04-25 IFCO Systems Austria GmbH Verrou pour récipients de transport dotés de parois latérales repliables
DE202009014633U1 (de) * 2009-10-29 2010-03-25 Robert Bosch Gmbh Zusammenklappbarer Transport- und/oder Lagerbehälter
EP2840034B1 (fr) 2013-08-21 2016-11-16 Schoeller Allibert GmbH Dispositif de verrouillage et de déverrouillage des parois latérales rabattables ou pliables d'un récipient
DE202016104226U1 (de) * 2016-08-01 2016-08-16 Know How International Gmbh & Co. Kg Klappbox zur Aufnahme von Transportgut

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