EP4082928A1 - Récipient empilable et emboîtable - Google Patents

Récipient empilable et emboîtable Download PDF

Info

Publication number
EP4082928A1
EP4082928A1 EP21170467.1A EP21170467A EP4082928A1 EP 4082928 A1 EP4082928 A1 EP 4082928A1 EP 21170467 A EP21170467 A EP 21170467A EP 4082928 A1 EP4082928 A1 EP 4082928A1
Authority
EP
European Patent Office
Prior art keywords
container
side wall
closure element
stackable
corner
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.)
Pending
Application number
EP21170467.1A
Other languages
German (de)
English (en)
Inventor
Erik Brinkers
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.)
Schoeller Allibert GmbH
Original Assignee
Schoeller Allibert 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 Schoeller Allibert GmbH filed Critical Schoeller Allibert GmbH
Priority to EP21170467.1A priority Critical patent/EP4082928A1/fr
Priority to PCT/EP2022/058417 priority patent/WO2022228810A1/fr
Priority to US18/279,143 priority patent/US12492040B2/en
Publication of EP4082928A1 publication Critical patent/EP4082928A1/fr
Pending legal-status Critical Current

Links

Images

Classifications

    • 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
    • B65D21/00Nestable, stackable or joinable containers; Containers of variable capacity
    • B65D21/02Containers specially shaped, or provided with fittings or attachments, to facilitate nesting, stacking, or joining together
    • B65D21/06Containers specially shaped, or provided with fittings or attachments, to facilitate nesting, stacking, or joining together with movable parts adapted to be placed in alternative positions for nesting the containers when empty and for stacking them when full

Definitions

  • the present disclosure relates to a container that is both nestable when empty and stackable when merchandise is contained within the container.
  • stackable and nestable containers are known from the prior art.
  • stack and nest containers that are designed asymmetrically and can be stacked on top of one another in one orientation and nested in one another in another orientation.
  • conical containers with stacking brackets that can be pivoted inwards and outwards, so that the containers nest within one another when the stacking brackets are pivoted outwards and can be stacked on top of one another on the stacking brackets when these are pivoted inwards.
  • a stackable and nestable transport tray is known.
  • the shell has four corner columns that protrude from a base plate.
  • the four corner columns have four openings at the bottom through which the corner columns of another shell can be inserted.
  • the two shells can be nested in one another. If the trays contain goods and are therefore to be stacked, the openings can be closed by sliding panels.
  • a tray can be stacked on the corner pillars of the lower tray.
  • Stack and nest containers have the disadvantage that they can only be nested or stacked with one another in a certain orientation of the containers, which is what their
  • the loading area is usually also asymmetrical, which makes loading the container more difficult.
  • Containers with rotary stacking brackets have the disadvantage that the stacking brackets can bear lower loads than the container walls, so that when stacking the containers attention must be paid to the total load, which acts in particular on the stacking brackets of the bottommost container. Furthermore, the stacking brackets may hinder loading if they accidentally swing inwards.
  • the shell has no side walls.
  • the corner pillars of the tray are fragile and can kink/damage and goods, especially piece goods, can fall out of the open tray or become damaged. Particularly during transport or storage, objects can penetrate between the corner columns of the tray and penetrate the inside of the tray and damage the goods in the tray or fall out.
  • the object of the disclosure is therefore to overcome the disadvantages of the prior art and to provide a container that can be stacked and nested and has the necessary stability and protects the goods inside the container.
  • the present disclosure relates to a container that can be stacked and nested, in particular a plastic container, with a base and corner columns which protrude from the base, are of conical design, are hollow and are open on the underside of the base.
  • the corner columns are designed in such a way that corner columns of another identical or compatible container for nesting the two containers from the Bottom bottom can dive into the hollow corner columns, the bottom open corner columns with at least one closure element, in particular a slide element, can be closed in order to stack the container on the corner columns of the other container.
  • a conical, double-walled side wall that projects from the floor and is open at the bottom is provided in such a way that a side wall of the other identical or compatible container can dip into the double-walled side wall from the bottom side for nesting the two containers.
  • a container has a bottom and corner pillars that are conical, hollow, and open at the bottom.
  • the corner columns protrude from the ground.
  • the container is preferably made of plastic.
  • the corner pillars are hollow to allow corner pillars of another container identical to the first container to be inserted into the corner pillars of the first container.
  • the corner columns are inserted from the openings in the underside of the floor.
  • the corner columns which are open at the bottom, can be closed by a slide element in order to stack the first container on the corner columns of the other container.
  • the slide element is pushed in such a way that it does not cover the opened corner columns.
  • the container has one or more side walls.
  • a side wall is formed between two adjacent corner pillars. The side wall narrows towards the top and is double-walled and hollow on the inside. The side wall protrudes from the floor.
  • the side wall of the further container is introduced into the hollow side wall of the first container from the bottom side.
  • the side wall that is open on the underside can be closed by a closure element.
  • the closure element is preferably a slide element.
  • the side wall that is open on the underside of the base has an opening on the underside of the base.
  • the opening can be closed by a closure element.
  • the closure element is preferably a slide element which is attached to the underside of the floor. The slide element can be pushed by a user into a position such that the side wall that is open on the underside of the floor is closed or covered. The side wall, which is open on the bottom side, is then covered when two containers are to be stacked.
  • the closure element covers the side wall that is open on the underside of the base when the closure element is pushed completely outwards, i.e. in the opposite direction to the center of the container. The position in which the locking element is pushed completely outwards is the outer position.
  • the locking element is pushed completely outwards.
  • the closure element is pushed towards the center of the container.
  • the position in which the closure element is pushed towards the center of the container is the inner position.
  • the two adjacent corner columns and the side wall arranged between them can be closed at the bottom by the same closure element.
  • two adjacent corner pillars and a side wall formed between the corner pillars form a common side wall.
  • the common side wall has a common opening on the bottom side.
  • the common opening can be closed by a common closure element.
  • Corner columns that are not adjacent are not closable by the same closure element. This means that the container can be stacked not only on the corner columns, but also on the side walls of the other container. In this way, when stacked, the loads can be absorbed not only by the corner columns, but also by the side walls.
  • the closure element is mounted displaceably on the underside of the floor and parallel thereto, in particular within a floor edge protruding from the underside of the floor.
  • the closure element is preferably mounted such that it can be displaced toward the center of the container and/or between two stops.
  • the container has a (bottom) rim which protrudes downwards beyond the bottom of the container. This means that when the container is standing on the floor, it is not the floor or the closure elements that touch the floor, but the rim.
  • the closure element is stored within the rim.
  • the closure element is slidably mounted on the underside of the floor or offset parallel to it.
  • the closure element is preferably displaceable (towards the center of the container) when the container is standing with its bottom edge on a base/surface.
  • the closure element can be actuated from the outside via a recess in the side wall, in particular can be displaced inwards, and/or can be actuated from the inside via a recess in the base, in particular can be displaced outwards.
  • the side wall and/or the base has a recess.
  • An actuating element on the closure element can be pushed inwards through this recess.
  • the actuating element penetrates into the space of the container.
  • the closure element is pushed towards the center of the container and the openings are open. If the openings are to be closed, the closure elements can be pushed outwards.
  • the actuating element protrudes into the interior of the container through a recess in the bottom of the container. From inside the container, you can Actuating element and with it the closure element are pushed outwards.
  • the closure element has a profile or a depression on its underside, which corresponds to the shape of the corner columns and/or the side walls in such a way that the corner columns and/or the side walls in the stacked state fit positively into the profile or the Engage in the deepening and do not slip sideways when containers are stacked on top of one another.
  • the closure element has a profile on its underside.
  • the profile is, for example, L-shaped.
  • the shape of the corner pillars and/or the side wall is designed in such a way that the shape matches the profile of the closure element. Since the shape of the corner columns or the side wall is incorporated into the recess, the stacked containers are secured against slipping.
  • the container has four corner pillars and two opposite, preferably long, side walls, one side wall and its two adjacent corner pillars being closable on the bottom by a first closure element and the other side wall and its two adjacent corner pillars on the bottom being closable by a second closure element .
  • the container has two side walls.
  • the side walls face each other.
  • the side walls are formed on the long side of the container.
  • the side walls are terminated at the ends by corner columns.
  • the container thus has four corner columns.
  • a combination of a side wall and two corner columns is each closed by a locking element.
  • the other side wall and its corner columns are closed by another closure element.
  • the container includes a handle in the side wall.
  • the handle is designed to make it easier for a user to pick up the container.
  • the handle does not prevent nesting of several containers.
  • the handle for example, the side wall penetrate so that the user can reach through the side wall with his hand.
  • the handle can also form an indentation in the side wall, by which the user can lift the container.
  • the side wall of the container has a handle.
  • the handle is intended for ergonomic lifting of the container.
  • the handle can be an indentation in the side wall, but also a continuous recess in the side wall.
  • the closure element has a catch by which the closure element is fixed in this position when it is pushed all the way to the center of the container and/or all the way to the outside.
  • the locking can be realized, for example, by latches or a clamp connection.
  • the lock is designed in such a way that when the closure element is pushed all the way into the center of the container, it engages and prevents the closure element from slipping or being displaced outwards again.
  • the lock also engages in the same way when the locking element is pushed completely outwards. This prevents the closure element from slipping back in from the outside in the direction of the center of the container and releasing the openings.
  • the closure element is prevented from being able to slip out of its own accord from an extreme position.
  • An extreme position is a position in which the closure element is either deflected towards the middle of the container as far as possible or pushed outwards as far as possible.
  • the closure element must be securely attached at these positions so that, for example, the openings are not released during stacking. This is ensured by the lock.
  • Each of the extreme positions has its own lock.
  • the corner pillars and/or the side wall have a stop element/or a stop/or a stacking edge that prevents the corner pillar of the other container from being able to dip completely into the corner pillar of the container, or limits the depth of the nest.
  • the stop element acts it is, for example, one or more longitudinal ribs or a column which is formed within the corner column in such a way that the further corner column rests on the stop element when it enters the corner column. This prevents the further corner pillar from being able to completely immerse itself in the corner pillar.
  • the corner pillars have an element inside.
  • the element is prepared so that another corner column, which is pushed into the corner column, rests on the element and is thereby stopped.
  • the element stops the other corner column so that the corner column cannot completely dip into the corner column.
  • both nested containers are wet, for example after cleaning, complete submersion of the corner pillars into one another can result in the side surfaces of the corner pillars resting on one another and becoming difficult to separate again. This is prevented by the stop element.
  • the actuating element of the closure element is designed to be hollow towards the outside. This means that the actuating element forms a recessed grip into which the user can reach and actuate the closure element.
  • the actuating element protrudes upwards from the closure element.
  • the actuating element is designed in such a way that in the inner position it can both be pushed outwards from the inside of the container and pulled outwards from the outside of the container.
  • the user can reach into the hollow actuator and pull the actuator outward.
  • the hollow actuator allows the user to pull the actuator outward from the exterior of the container when the actuator is in the interior position. This is advantageous because the side wall makes it difficult for the user to reach inside the container.
  • the container, the base plate and the side walls are made integrally of plastic.
  • the container is, for example, made in one piece by injection moulding.
  • the double-walled side wall is not flat but is provided with reinforcement geometries, in particular in the form of depressions and elevations or beads. These are prepared to increase the stability of the sidewall.
  • the reinforcement geometries are such that they enable nesting, in particular they are set at an angle in the vertical direction.
  • the closure element is releasably attached to the bottom of the container without tools.
  • the user can detachably mount the closure element on the bottom underside of the container using only his hands and without the use of a tool.
  • the closure element can be fixed by latching lugs or locking tongues and can be removed or exchanged again by the user by pressing them together. As a result, the closure element can be easily changed.
  • the present disclosure relates to a container that can be stacked and nested, in particular a plastic container, with a base and at least two side walls that protrude from the base and are conical and double-walled and open on the underside, so that corresponding side walls of another one are structurally identical or compatible container for nesting the two containers from the bottom side into the double-walled side walls.
  • the side walls that are open on the underside of the base can be closed with one or one closure element each, in order to be able to stack the container on the side walls of the other container.
  • the container only has side walls but no corner columns.
  • the side walls are conical, double-walled, hollow and open at the bottom. This creates an opening in the bottom of the container.
  • the side walls are designed in such a way that side walls of another container of identical construction or compatible can dip into the hollow side walls of the container from the bottom side.
  • the side walls, which are open on the underside, can be closed with a locking element.
  • the side walls of the other container cannot dip into the side walls of the first container and the closure elements of the first container rest on the side walls of the other container in order to stack the two containers on top of one another.
  • the disclosure of the container 1 is based on the Figures 1 to 3 described.
  • the substantially rectangular container 1 has a bottom 3 and four corner columns 5 protruding from the bottom 3 on.
  • the corner columns 5 are conical, hollow and open at the bottom.
  • the corner columns 5 are drawn around the respective corner or have an approximately L-shape.
  • 1 12 shows a bottom side of the container 1.
  • a web 4 extending in the longitudinal direction of the container 1 is formed centrally on the bottom side.
  • the web 4 is arranged by a grid Reinforcing ribs formed. It is also shown that the corner columns 5 which are open on the underside have openings 7 on the underside of the container 1 .
  • the underside of the floor has a floor edge 9 which, together with the web 4, forms the standing surface. This means that when the container 1 is standing on a base, the web 4 and the bottom edge 9 of the container 1 come into contact with the base.
  • Long (high) side walls 11 are formed on the long sides of the container 1 between the corner columns 5 .
  • the container 1 is open on the short sides and the bottom 3 is limited only by short (low) side edges 12 .
  • the side walls 11 and side edges 12 are conical, double-walled and open at the bottom.
  • one slide plate 17 is slidably arranged or mounted on the underside of the base on both sides of the web 4, so that each slide plate 17 can be displaced transversely to its longitudinal extent between the web 4 and the base edge 9 of the long side of the container 1. In other words, each slide plate 17 can be moved transversely to the longitudinal extension of the container 1 .
  • the slide plate 17 forms a closure element within the meaning of the claims, with which the corner columns 5 and side walls 11 that are open on the underside of the floor can be selectively closed and opened.
  • Each slide plate 17 has two openings or elongated holes 18 extending in the transverse direction, into which two latching lugs or locking tongues 20 formed on the bottom 3 of the container engage.
  • the two locking tongues 20 face each other and fix the slide plate 17 to the bottom underside of the container 1.
  • the locking tongues 20 have projections which fix the slide plate 17 in a detachable manner.
  • the displacement of the slide plate 17 is guided by the interaction of the elongated holes 18 and the locking tongues 20 .
  • the slide plates 17 also slide with their short end faces on the inside of the bottom edge 9 along the short side of the container 1 in order to prevent the slide plate 17 from jamming.
  • the locking tongues 20 are pressed together by the user.
  • the projections of the locking tongues 20 are pressed inwards and the locking tongues 20 slide through the slot 18.
  • the slide plates are detachable and can be detached by the user without tools.
  • the locking tongues 20 are also beveled so that the slide plate 17 can be simply pressed onto the locking tongues 20 during assembly. In this way, the user can assemble and release the slide plate 17 without the use of tools.
  • the fixing of the slide plate 17 on the bottom 3 of the container 1 does not necessarily have to be performed by the locking tongues 20 .
  • a projecting sliding block or guide pin formed on the base 3 engages in the elongated hole 18 .
  • the guide pins are T-shaped and thus hold the slide plates 17 on the underside of the bottom of the container 1.
  • the slide plates 17 To attach the separate or separately manufactured slide plates 17 to the bottom of the container 1, they are placed in the designated locations on the bottom and then the guide pins are inserted from below through the elongated holes 18 and connected to the bottom 3 of the container 1, for example by means of a Click connection, connected. By loosening the guide pins, the slide plates 17 can be detached from the container 1 again and, if necessary, replaced.
  • the height of the slide plates 17 is less than the web 14 and the bottom edge 9, so that when the container 1 is standing on a lower surface, the slide plates 17 are at a distance from this lower surface and are therefore freely movable or displaceable.
  • the slide plate 17 has on the underside, ie that side which faces away from the container 1, (L-shaped) indentations 19 .
  • the recesses 19 are designed in such a way that the shape of the (L-shaped) corner columns 5 of an identical container 1 on which the container 1 is stacked fit into the bottom recesses 19 of the slide plates 17 and the corner columns 5 of the lower container 1 into the Recesses 19 of the container 1 stacked above engage.
  • the recesses 19 can also - as in 1 shown - be corresponding recesses in reinforcing ribs on the underside of the slide plates 17.
  • each one has a raised edge strip 15 on the side facing the side wall 11 , which serves as a gripping or actuating element for the slide plate 17 .
  • the base 3 has recesses 13 on both long sides, through which the edge strips 15 of the slide strips 17 attached to the underside of the base such that they can be displaced reach through in order to be able to actuate the slide plates 17 on the underside of the container via the projecting edge strips 15 reaching into the interior of the container.
  • each side wall 11 has a recess 13 in the middle in the lower area or in the transition area between side wall 11 and base 3 in order to be able to slide the edge strips laterally outwards and inwards and not to block the sliding movement of the slide plates 17 .
  • the shape and size of the recess 13 corresponds to the shape and size of the respective edge strip 15.
  • edge strip 15 can be moved inwards from the outside through the recess 13 and thus the slide plate 17 can be moved towards the center of the container or towards the web 14 and vice versa from the inside outwards, around the slide plate 17 outwards or towards the bottom edge 9 to move.
  • the rim 15 closes in the outwardly pushed position flush with the side wall 11 or fills the recess 13 completely.
  • the pusher plate 17 can preferably be fixed or locked at the position close to the center of the container and at the outer position.
  • the base 3 and/or the slide plate 17 has locking elements (not shown) that interact with one another.
  • the locking elements can be designed either as clamp connections or snap-in connections. The slide plate 17 is held in the respective position so that it does not slip out of position.
  • the corner columns 5 and side walls 11 of another identical or compatible container 1 can dip into the hollow corner columns 5 and the side walls 11 from the bottom side . This nests the two containers.
  • the corner columns 5 of the other container 1 disappear completely in the hollow corner columns 5 of the first container.
  • the underside of the bottom of the first container 1 then rests on the bottom 3 of the other container 1 .
  • the side walls 11 of the other container like the corner columns 5, dip into the side walls 11 of the first container 1, which are open on the bottom side.
  • the containers 1 form handles 23. The handles 23 make it possible to lift the containers 1 comfortably, or to remove the upper container 1 from a stack of containers 1.
  • the two nested containers 1 When stored, the two nested containers 1 require only slightly more space than a single container requires. This saves storage and transport costs. It is obvious that not only two containers can be nested in one another in this way, but more than two containers can be nested.
  • the closure elements 17 By actuating the actuating elements 15 projecting inwards into the interior of the container, the closure elements 17 are pushed outwards. For this purpose, the actuating elements 15 are pushed outwards through the recesses 14 in the container base 3 . The closure elements 17 are moved with the respective actuating element 15 . As a result, the openings of the corner columns 5, which are open on the underside of the floor, and the side walls 11, which are open on the underside of the floor, are closed.
  • the closure element 17 When the closure element 17 is pushed completely outwards, it covers the corner columns 5, which are open on the underside, and the side walls 11, which are open on the underside. The underside of the base is therefore no longer open. As a result, the corner columns 5 of the other container 1 can no longer dip into the hollow corner columns 5 of the container. Rather, the corner columns 5 bear against the closure element 17 of the container. As a result, the containers 1 can be stacked on top of one another. The closure element 17 of the container 1 rests on the upper ends of the corner columns 5 of the other container 1 . The shape of the corner columns 5 of the other container fits into the shape of the depressions 19 on the closure element 17 of the first container 1.
  • the two stacked containers 1 are plugged together and secured against slipping in a direction parallel to the container bottom 3.
  • the bottom edge 9 of the bottom side protrudes beyond the container bottom 3 and the closure element 17 .
  • the bottom edge 9 therefore also encompasses the upper end of the corner columns 5. This also prevents the stacked containers 1 from slipping.
  • the side walls 11 of the container have one or more struts 21 .
  • the struts 21 are attached to the outside of the side walls 11 in the vertical direction.
  • a side wall 11 has three struts 21, one in the middle of the side wall 11 and one at each end of the side wall adjacent the corner columns 5.
  • the struts 21 are hollow internally and are designed such that the struts 21 of another side wall nest within the struts can become.
  • the struts 21 increase the stability of the side wall 11.
  • the containers 1 are preferably manufactured as one component.
  • the containers 1 are made of a plastic and are made by injection molding.
  • the container 1 can have a different number of side walls 11 depending on the use and requirements. It is thus possible for the container to have only one (short) side wall. However, the container can also have three or four side walls.
  • the container also has a bottom and at least two (opposite) side walls, but no corner columns.
  • the side walls protrude from the base are conical and double-walled and open on the underside, so that corresponding side walls of another identical or compatible container and appropriate orientation for nesting the two containers can dip into the double-walled side walls from the bottom side.
  • the side walls that are open on the underside of the base can also be closed with a slide plate each, in order to be able to stack the container on the side walls of the other container.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Stackable Containers (AREA)
EP21170467.1A 2021-04-26 2021-04-26 Récipient empilable et emboîtable Pending EP4082928A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
EP21170467.1A EP4082928A1 (fr) 2021-04-26 2021-04-26 Récipient empilable et emboîtable
PCT/EP2022/058417 WO2022228810A1 (fr) 2021-04-26 2022-03-30 Récipient empilable et emboîtable
US18/279,143 US12492040B2 (en) 2021-04-26 2022-03-30 Stackable and nestable container

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP21170467.1A EP4082928A1 (fr) 2021-04-26 2021-04-26 Récipient empilable et emboîtable

Publications (1)

Publication Number Publication Date
EP4082928A1 true EP4082928A1 (fr) 2022-11-02

Family

ID=75674719

Family Applications (1)

Application Number Title Priority Date Filing Date
EP21170467.1A Pending EP4082928A1 (fr) 2021-04-26 2021-04-26 Récipient empilable et emboîtable

Country Status (3)

Country Link
US (1) US12492040B2 (fr)
EP (1) EP4082928A1 (fr)
WO (1) WO2022228810A1 (fr)

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE842929A (nl) * 1976-06-14 1976-10-01 Stapelbare schotels
EP0655393A1 (fr) * 1993-11-29 1995-05-31 PROGE PLAST ENGINEERING S.r.l. Caisse empilable et emboitable
EP2014561B1 (fr) 2007-07-12 2011-09-14 Linpac Allibert Limited Plateau d'empilage ou d'emboîtement

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
BE842929A (nl) * 1976-06-14 1976-10-01 Stapelbare schotels
EP0655393A1 (fr) * 1993-11-29 1995-05-31 PROGE PLAST ENGINEERING S.r.l. Caisse empilable et emboitable
EP2014561B1 (fr) 2007-07-12 2011-09-14 Linpac Allibert Limited Plateau d'empilage ou d'emboîtement

Also Published As

Publication number Publication date
WO2022228810A1 (fr) 2022-11-03
US20240140646A1 (en) 2024-05-02
US12492040B2 (en) 2025-12-09

Similar Documents

Publication Publication Date Title
EP2477902B1 (fr) Caisse utilisable de manière flexible
EP2829484B1 (fr) Casier à bouteilles avec insert en treillis réglable en hauteur
EP2322443B1 (fr) Récipient de transport réglable en hauteur
EP3285974B1 (fr) Conteneur de rangement
EP2829485B1 (fr) Casier à bouteilles avec insert en treillis réglable en hauteur
DE10026149C2 (de) Stapelbarer Transportbehälter
EP3658339B1 (fr) Boîte de rangement et étagère
EP3587294B1 (fr) Récipient empilable pourvu de mécanisme de raccordement
EP3532394A1 (fr) Contenant rabattable
WO2022228810A1 (fr) Récipient empilable et emboîtable
EP0698558A2 (fr) Récipient de transport empilable
EP1733975A1 (fr) Contenant repliable
DE2714623A1 (de) Stapelbare steige
DE202004014340U1 (de) Drehstapelbehälter
DE202008008289U1 (de) Behälter
DE4402219A1 (de) Stapelbehälter
DE4213396C2 (de) Transporttablett für Behälter
WO2005097608A1 (fr) Bac de rangement
EP4514702B1 (fr) Récipient de grande capacité
EP3305677A1 (fr) Récipient réutilisable destiné à stocker et à transporter des denrées alimentaires
DE2933086A1 (de) Flaschenkasten
DE202008005632U1 (de) Teilpalette
EP3521190A1 (fr) Système de transport pourvu de palette et d'éléments formant plaque
EP3363748A1 (fr) Récipient empilable et emboitable
WO2020216716A1 (fr) Rehausse de palette

Legal Events

Date Code Title Description
PUAI Public reference made under article 153(3) epc to a published international application that has entered the european phase

Free format text: ORIGINAL CODE: 0009012

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: THE APPLICATION HAS BEEN PUBLISHED

AK Designated contracting states

Kind code of ref document: A1

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: REQUEST FOR EXAMINATION WAS MADE

17P Request for examination filed

Effective date: 20230419

RBV Designated contracting states (corrected)

Designated state(s): AL AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HR HU IE IS IT LI LT LU LV MC MK MT NL NO PL PT RO RS SE SI SK SM TR

GRAP Despatch of communication of intention to grant a patent

Free format text: ORIGINAL CODE: EPIDOSNIGR1

STAA Information on the status of an ep patent application or granted ep patent

Free format text: STATUS: GRANT OF PATENT IS INTENDED

INTG Intention to grant announced

Effective date: 20251120