Container for holding goods
The container's screw connection design simplifies assembly and reduces storage needs by using bolts and lock nuts, ensuring strong and rigid transport of heavy loads.
Patent Information
- Application Number
- EP2025186215
- Authority / Receiving Office
- EP · EP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-05
- Filing Date
- 2025-06-30
- Publication Date
- 2026-01-07
AI Technical Summary
Existing transport containers are complex to manufacture and require significant storage space due to their single-piece design, making them difficult to assemble and transport efficiently.
The container is designed with a base part and side walls connected by multiple screw connections, allowing for simplified assembly and reduced storage requirements, using bolts and lock nuts for secure attachment, and incorporating features like stop flanges and stiffening profiles for enhanced strength and rigidity.
The design enables easy assembly and reduced space requirements, allowing for final assembly at the delivery location, while maintaining high strength and rigidity for transporting heavy loads.
Smart Images

Figure IMGAF001_ABST
Abstract
Description
[0001] The invention relates to a container for receiving goods, with a container wall defining a receiving area for the goods to be transported, wherein the container wall has at least one base part and at least two side walls defining the longitudinal sides of the container.
[0002] Containers of the type described above are known in the prior art and are used, for example, as transport containers in the form of roll-off or skip containers or so-called skip containers. The known containers have a metal wall that defines a receiving area for the goods to be transported. The container wall comprises or is formed from at least one base section and at least two side walls defining the longitudinal sides of the container.
[0003] In containers known in the prior art, the side walls are typically formed as a single unit with the base, and are in particular bonded to it by welding. This gives the containers high rigidity, allowing even heavy loads – e.g., several tons – to be moved and transported easily. Due to their overall single-piece design, such containers are complex to manufacture and, moreover, require a comparatively large amount of space or storage area after completion before being transported to their final destination for subsequent use.
[0004] The invention is therefore based on the objective of providing a container for holding goods that is easier to assemble compared to known containers and can also be transported with a significantly reduced space requirement.
[0005] The invention solves the underlying problem in a container for receiving goods with the features according to claim 1. In particular, it is provided that the base part and the side walls are connected to each other by means of a plurality of screw connections.
[0006] The invention utilizes the fact that the numerous screw connections linking the side walls to the base enable simplified assembly of the container, and preferably simplified final assembly of a container composed of several components. Instead of a complex welding process for joining the side walls to the base, the side walls can now be attached to the base using very simple tools, in particular by screwing them together. Furthermore, the prefabricated components—the base and the side walls—of such a container according to the invention can be stored with significantly reduced space requirements and assembled relatively easily—e.g., immediately before delivery—by screwing the components together, so that a fully assembled container can then be prepared for shipment.If necessary, the inventive design of the container makes it possible to carry out the final assembly of the container directly at the delivery location.
[0007] According to a preferred embodiment, each screw connection consists of at least one bolt and a corresponding lock nut. The use of a bolt and lock nut represents a structurally simple way to create the screw connection that firmly joins the components of the container. Such a screw connection allows the necessary forces for attaching the side wall to the base to be reliably transmitted. In the simplest embodiment, approximately 90 screw connections are used to manufacture one container. The bolt is preferably a hexagonal or pan-head screw with a tensile strength of at least 800 N / mm² and has an external thread section with a diameter of 8 or 10 mm.The lock nut has a complementary internal thread with a diameter of either 8 or 10 mm. The lock nut can also preferably withstand a tensile strength of at least 800 N / mm². In one possible embodiment, two adjacent screw connections are spaced approximately 10 cm apart.
[0008] A further development of the container according to the invention provides that the base part is formed in one piece and has at least one container bottom with a substantially flat base. The one-piece construction of the base part gives the container according to the invention a sufficiently high basic strength, which makes it possible to screw the side walls to the base part. In the simplest embodiment, the base part is designed as a flat container bottom, along the longitudinal sides of which the side walls are arranged, with the side walls extending approximately perpendicularly from the base. In a preferred embodiment, the container bottom has several stiffening struts on its underside, extending in the transverse and longitudinal directions of the container and reinforcing the base part.
[0009] In a preferred embodiment, the base section has end walls that are integrally connected to the container bottom, and which are preferably oriented, at least partially, at an angle α between 30° and 80° to the container bottom. The integral design between the container bottom and the end walls, which are oriented at an angle α between 30° and 80° to the container bottom, further improves the basic strength of the base section. In a container specifically designed as a settling trough, the integral connection between the mutually perpendicular sections of the container ensures its strength even under a high load generated by material received in the receiving area. The end walls or end wall sections that run obliquely to the container bottom are, in particular, integrally formed with the container bottom or metallurgically bonded to it by means of a welded connection.
[0010] In an alternative or optional embodiment of the container, at least one separate end wall is connected to the base part by means of multiple screw connections, in addition to the side walls. Such a container, particularly a roll-off container, has a flat base to which at least one end wall, preferably projecting perpendicularly, is attached by means of screw connections. In this embodiment, in addition to the side walls, the end wall, which defines the longitudinal boundaries of the container's receiving area, is also connected to the base part by means of a plurality of screw connections. Preferably, each screw connection provided for attaching the end wall to the base of the container is also formed from at least one bolt and a lock nut. Preferably, the screw connections for the end wall have at least the same strength class as the screw connections for the side walls.
[0011] In a preferred embodiment of the container, at least one stop flange interacting with a side wall and / or at least one stop flange interacting with the base part is arranged on a side wall, on which several locking nuts are arranged at predetermined intervals. By means of such a stop flange, which can be arranged on the base part or a side wall, a fixed and pre-assembled mounting surface, in particular a screw plane, is formed for the respective other component, i.e., the side wall or the base part, which is to be brought into contact with the stop flange, thus further simplifying the assembly of the screwable container.Preferably, a plurality of locknuts are connected to each stop flange, which is designed as an elongated component and extends longitudinally along a predetermined section of a base part or side wall, preferably by a material bond, and in particular by welding. The locknuts are preferably arranged at predetermined intervals along the stop flange on the base part. Preferably, two adjacent locknuts from the plurality of locknuts arranged along the stop flange are spaced approximately 10 to 20 cm apart. The required rigidity of the container according to the invention is achieved through the comparatively small distance between the screw connections.
[0012] According to a preferred embodiment of the invention, the stop flange projects essentially perpendicularly along the lateral edge regions of the base part and / or side wall, which defines the receiving area, and is preferably designed as a continuous strip of material. The perpendicular arrangement of such a stop flange on the inside of the base part or side wall provides a structurally simple connection between the connecting flange and the container component to be brought into contact with it. Furthermore, by arranging the stop flange in a respective edge region of the base part or side wall, a preferably gap-free contact between the container components to be joined is possible.By designing the connecting flange as a continuous strip of material, its overall stiffness, and thus the stiffness of the connection between the base part and the attached side walls, is further improved. Preferably, the stop flange has a height of approximately 4 to 8 cm and a material thickness of approximately 3 to 8 mm, preferably 5 mm.
[0013] The stop flange has a stiffening element in a transition area between two sections running at an angle to each other, preferably in the form of a stiffening plate, e.g., a sheet metal strip, and / or a stiffening strut. This increases the stiffness of a component of the container that is equipped with such a stop flange designed according to the invention. In particular, the transport of a base part consisting of a container bottom and end walls running at an angle to the container bottom is thus simplified. Preferably, the stiffening of the stop flange is achieved by increasing the flange height extending perpendicularly from the container bottom or the side wall.
[0014] In a preferred embodiment of the container, a receptacle for a side wall is provided along each of the longitudinal sides of a base part, which preferably serves only as the container base. Preferably, the receptacle has protruding connectors that act as positioning means for the side wall. The receptacle on the base part, and in particular the protruding connectors, ensure a fixed alignment of the side wall with the base part when the components are joined, thus simplifying assembly, especially the screwing of the side wall to the base part. Preferably, according to one embodiment of the container, the receptacle is formed by means of a substantially flat and horizontally oriented contact surface for the side wall and a contact surface for the inside of the side wall, which is particularly perpendicular to the contact surface.The connectors protrude particularly vertically from the mounting surface of the holder and preferably run perpendicular to the screw connections on the container that connect the side wall to the base part, which increases the strength in the connection area between the base part and the side wall.
[0015] In a preferred embodiment, the side walls have vertically extending stiffening profiles, the lower ends of which each have plug-in receptacles for interacting with connectors arranged on a receptacle of the base part for the side walls. The stiffening profiles on the side walls give the side wall itself increased rigidity, thus counteracting twisting of the side walls during use of the container. The container, assembled by means of screw connections, therefore exhibits high strength. Preferably, in addition to the vertically extending stiffening profiles, each side wall has at least one horizontally extending stiffening profile between the side ends, which is arranged approximately at the level of the upper third of the side wall.The plug-in receptacles at the lower ends of the vertically extending stiffening profiles are preferably designed as recesses corresponding to the plug connectors of the receptacle. The plug connection formed by means of the plug-in receptacles and the plug connectors particularly counteracts movement parallel to the mounting surface of the base part.
[0016] According to a preferred embodiment of the container, the separately formed end wall is further connected by means of screw connections to the end faces of the side walls, which are attached to the base part by screw connections. The torsional rigidity of the container according to the invention is further improved by means of the end wall, which is arranged on at least one end face of the base part and connected to the side walls by screw connections. The screw connections fix the side walls of the container at at least one end in their preferably perpendicular orientation to the base part and in their parallel orientation to each other. Preferably, the screw connections by means of which the end wall is connected to the base part on one side and to the end walls of the container on the other are spaced approximately 10 to 20 cm apart.
[0017] A preferred embodiment provides that the end wall has projecting stop flanges on its inner side facing the receiving area, spaced apart from its edge surfaces, for interaction with the base part and / or the side walls. The stop flanges on the inner side of the end wall simplify the mounting of the end wall to the base part as well as to the side walls of the container. The stop flanges act as a type of spacer, allowing the end wall to be placed directly onto the base part or positioned relative to the side walls of the container. The stop flanges are preferably designed as angle profiles, which are arranged on the inner side of the end wall at a predetermined distance, for example, the wall thickness of the side walls, from the respective edge surfaces.
[0018] Preferably, the locking nuts are attached to the base and / or the end or side walls, preferably by a metallurgical bond. Preferably, the locking nuts are permanently and firmly connected to their respective areas of the container, in particular by welding, which further simplifies the final assembly of the container by means of the secure attachment of the locking nuts. Depending on whether the container is a skip or a roll-off container, the locking nuts are attached either to the base or to the stop flanges projecting vertically from it, and / or to the end wall or side walls. In one embodiment, the locking nuts are attached to the outer surfaces of the side walls.
[0019] A further development of the container according to the invention provides that a profile element is arranged along the upper surface of the end wall and / or side walls, the ends of which are screwed to correspondingly shaped ends of profile elements extending along the upper surface of the side walls and / or end wall. By means of the profile elements, which extend particularly along the upper surface of both the end wall and the side walls, stiffening of the end and side walls themselves is achieved. Furthermore, the strength and torsional rigidity of the container are also improved by the interconnected profile elements. Preferably, each of the profile elements extending along the upper surface of the end wall and side walls is a hollow profile, in particular a rectangular profile tube.
[0020] Preferably, the base part and / or the end face each have frame sections of a roll-off subframe formed on the container, which are bonded to it. In a preferred embodiment, the frame sections are manufactured as a single unit with their respective container components. The frame sections are connected to each other, particularly in the connection area between the end face and the base part, by means of bolted connections. Angle brackets are used to connect the frame sections, each of which is connected to the frame sections to be coupled via a plurality of bolted connections.
[0021] Preferably, the frame sections are formed from I-beams or double-T profiles with at least one central web and a top and bottom flange. Preferably, the central webs of such an I-beam or double-T profile are reinforced with an angle bracket from both surfaces of the central web and connected to each other on both sides of the connection area by several, in particular six, bolted connections.
[0022] According to a preferred embodiment, a reinforced mounting interface for a connectable side wall is provided at each of the lateral edges of the base part, which defines a closable opening in the container. This reinforced mounting interface enables improved structural connection, particularly of an end profile of each side wall, to the base part supporting the side walls. The ends of the side walls, which define the opening in the container, are otherwise not rigidly supported against each other or connected to the base part. Preferably, several hinge elements for pivotally mounted container doors are arranged on each end profile of the side walls. These hinge elements allow the opening opposite the end wall of the container to be closed, providing access to the container's receiving area.The reinforced mounting interface preferably has four screw connections for a permanently secure connection of the side wall to the base part.
[0023] When the container doors are in their respective closed positions, the side walls are supported against each other by means of a closure arranged on the container doors in the area of their upper ends, which fixes the container doors to each other.
[0024] According to a preferred embodiment of the container, the container is designed as a skip or a roll-off container. The skip or roll-off container configuration represents an advantageous embodiment of such a container according to the invention, which can interact with a lifting device of a transport vehicle via appropriately designed lifting elements and be used as a transport container.
[0025] The invention is described in more detail below with reference to preferred embodiments and the accompanying figures. These figures show: Fig. 1 a perspective view of a first embodiment of a container according to the invention; Fig. 2 a side view of the container according to Fig. 1 Fig. 3 shows a sectional view of the detail from Fig. 2 along the cutting plane AA in Fig. 2 Fig. 4 a perspective view of a second embodiment of a container according to the invention; Fig. 5 an end-face side view of the container according to the invention showing the end wall arranged at one end of the container; Figs. 6 and 7 enlarged views of details VI and VII from Fig. 4 .
[0026] Fig. 1The exploded view of container 1, shown here, depicts a container 1 for receiving goods, which in the embodiment shown here is designed as a settling trough. The container 1 has a receiving area 2 for receiving goods, which is defined by an upwardly open container wall 4. The container wall 4 comprises at least a base part 6 and two side walls 10, 10° arranged along the longitudinal sides 8, 8' of the container 1.
[0027] How Fig. 1 As shown, the base part 6 and the side walls 10, 10' are connected to each other by means of a plurality of screw connections 12. Each screw connection 12 has at least one screw bolt 14 and a lock nut 16. In the embodiment shown here, two adjacent screw connections 12 are spaced approximately 10 cm apart. A screw connection may optionally also have one or more washers.
[0028] The base part 6 is formed in one piece and has a container bottom 18 with a substantially flat base 20. In the embodiment shown here, the base part 6 comprises, in addition to the container bottom 18, end walls 22, 22' that are integrally connected to it. At least one section of the end walls 22, 22' extends, in particular, at an angle α between 30° and 80° to the container bottom 18, in the embodiment shown here at an angle α of approximately 60° to the container bottom 18. The side walls 22, 22' are bonded to the container bottom 18 of the container 1, which is designed as a settling trough.
[0029] Fig. 2Figure 1 shows a side view of the container 1, revealing that profile elements 24 are arranged circumferentially along the upper surfaces of the side walls 10, 10' and the end walls 22, 22', preferably being bonded to a respective upper surface of the side wall 10, 10' or end wall 22, 22'. The ends 26, 26' of the profile elements 24 are designed to correspond to each other and are screwed to an adjacent end of a profile element 24.
[0030] How further Fig. 2 Removable, a side wall 10 shown therein in the present embodiment with a container bottom 18 having a length of approximately 2 m ( Fig. 1 ) connected to the bottom of the container 18 via 21 screw connections 12.
[0031] Furthermore, how from Fig. 1 and 3As can be seen, at least one stop flange 28, which interacts with a side wall 10, 10', is provided on the base part 6, along which the locking nuts 16 of the screw connections 12 are preferably arranged at predetermined intervals from one another. The stop flange 28 projects substantially perpendicularly on the inner side of the base part 6, which defines the receiving area 2, and along its lateral edge regions, in particular, perpendicularly on the inner side.
[0032] The stop flange 28 provides direct contact with a side wall 10, 10' which can be screwed together with the base part 6. The stop flange 28 is designed as a continuous strip of material and, in the embodiment shown here, has a stiffening 30 in a transition area 29 between two sections running at an angle to each other. Lifting devices 32 for a lifting device (not shown) of a vehicle, which interacts with the container 1 designed as a drop-off trough, are arranged on each of the side walls 10.
[0033] Fig. 4 Figure 1 shows a further embodiment of a container 1' according to the invention for receiving goods, which in this case is designed as a roll-off container or container. The container 1' comprises a container wall 4' defining a receiving area 2 for the goods to be transported. The container 1' is again open at the top with its container wall 4'.
[0034] The container wall 4' has at least one base section 6' and at least two side walls 10", 10‴ that define the receiving area 2 along the longitudinal sides 8, 8' of the container 1'. In the embodiment shown, the base section 6' is designed purely as a container bottom 18', which has a flat base 20'. In addition to the side walls 10", 10‴, the container 1' includes an end wall 22" at one end face 21.
[0035] In the embodiment shown here, the side walls 10", 10‴ and the end wall 22' are connected to the base part 6', which consists only of the container bottom 18', by means of a plurality of screw connections 12. As in the embodiment already shown here, each screw connection 12 is formed from at least one screw bolt 14 and a lock nut 16. The end wall 22", which preferably runs perpendicular to the container bottom 18', is additionally connected to the end faces of the side walls 10", 10‴ of the container 1' facing it by means of the screw connections 12.
[0036] In this embodiment, the container 6' comprises only a base part 6' consisting of a container bottom 18', which has a receptacle 34 for at least the side walls 10", 10‴ and the end wall 22". The side walls 10", 10‴ and the end wall 22" form a connection area 36 with the base part 6' along their lower edges. The locking nuts 16 of the screw connections 12 connecting the side walls 10", 10‴ to the container bottom 18' are arranged, in particular in the connection area 36, along the outside of each respective side wall 10", 10‴, and are in particular bonded to it. The base part 6' has a stop flange 28' that interacts with each respective side wall 10", 10‴.
[0037] The stop flange 28' projects essentially perpendicularly from the inner side of the base part 6', which defines the receiving area 2. Each stop flange 28' has openings formed thereon for the screw bolts 14, which are to be guided through the receiving area 2 of the base part 6' in the direction of the side walls 10", 10‴, corresponding to the multiple screw connections 12.
[0038] Adjacent to each stop flange 28', the receptacle 36 on the base part 6' has several projecting connectors 38 along its longitudinal sides 8, 8' as positioning means for the side walls 10", 10‴ which can be brought into contact with the receptacle 34. Each side wall 10", 10‴ also includes several vertically extending stiffening profiles 40, at the lower ends of which plug-in receptacles (not shown in detail) are provided for interaction with the connectors 38 formed in the receptacle 34.
[0039] In Fig. 5Figure 1 shows a side view of the container 1' according to the invention on its end wall 22". As can be seen, the end wall is screwed to the container base 18' along its lower connection area 36 and, in particular, to the end faces of the adjacent side walls 10", 10‴ along its lateral connection areas 36'. Two screw connections 12, arranged immediately adjacent to each other, are spaced approximately 10 to 15 cm apart along the connection areas 36, 36'.
[0040] Furthermore, how from Fig. 4 and 5 As can be seen, frame sections 42, 42' are arranged integrally on the underside of the container base 18' and on the outside of the end wall 22'. The frame sections 42, 42' are part of a roll-off subframe 44 formed on the container 1', by means of which the container 1' is loaded, for example, onto the loading platform of a vehicle.
[0041] The frame sections 42, 42' are separated from each other in the embodiment shown here according to the dimensions of the base part 6' and the end wall 22" and are joined by means of in Fig. 4 The angle brackets 46 shown are screwed together in a torsionally rigid manner.
[0042] The front wall 22" also shows on its inner side facing the recording area 2, as Fig. 4 to remove, stop flanges 48, 48' projecting at a distance from their lower and the lateral edge areas.
[0043] On the outside of the end wall 22", as Fig. 5Figure 1 shows, in particular between two struts 62 of the frame section 42, a hook 64 for moving the container 1', in particular for lifting or setting down the container 1'. The container 1' has, in this case, a profile element 24' along the upper side of its end wall 22", the ends 26 of which are screwed to correspondingly formed ends 26' of profile elements 24' running along the upper side of the side walls 10", 10‴.
[0044] The container 1' has an opening 50 on its end face 21', which is located opposite the end face 21 and can be closed between the rear ends of the side walls 10, 10'. This opening can be closed by two container doors 56, 56' connected to the side walls 10", 10‴ by hinges 52 and an end profile 54. The container doors 56, 56' have a locking device 58 at their upper end that secures the container doors to each other.
[0045] As the Figs. 6 and 7To illustrate, a reinforced assembly interface 60 is provided at each end of the longitudinal sides 8, 8' of the container base 18', corresponding to the end face 21'. Specifically, the end profiles 54 of the side walls 10", 10‴ are connected to the assembly interfaces 60 via several screw connections 12, in particular four screw connections 12. Thus, the side walls 10", 10‴ have a reinforced structural connection to the container base 18' in the area of the opening 50 of the container 1'.
[0046] Identical or similar components are marked with the same reference symbols. Reference symbol list:
[0047] 1, 1'Container 2 Receiving area 4, 4'Container wall 6, 6'Base part 8, 8'Long side 10, 10', 10", 10'Side wall 12Screw connection 14Screw bolt 16Lock nut 18, 18'Container bottom 20, 20'Foot placement 21, 21'End side 22, 22', 22"End wall 24, 24'Profile element 26, 26'End 28, 28'Stop flange 29Transition area 30Stiffening 32Stop device 34Receiving 36, 36'Connection area 38Connector 40Stiffening profile 42, 42'Frame section 44Roll-off subframe 46Angle plate 48, 48'Stop flange 50Opening 52Hinge 54End profile 56, 56'Container door 58Lock 60Mounting interface 62Struts 64Hook αAngle
Claims
1. Container (1, 1') for receiving goods, with a container wall (4) defining a receiving area (2) for the goods to be transported, wherein the container wall (4) has at least one base part (6, 6') and at least two side walls (10, 10', 10", 10‴) defining the longitudinal sides (8, 8') of the container (1, 1'), characterized by the fact that The base part (6, 6') and side walls (10, 10', 10", 10‴) are connected to each other by means of a multitude of screw connections (12).
2. Container (1, 1') according to claim 1, characterized by the fact that Each screw connection (12) is formed from at least one screw bolt (14) and a lock nut (16).
3. Container (1, 1') according to claim 1 or 2, characterized by the fact that the base part (6, 6') is formed in one piece and has at least one container bottom (18, 18') with a substantially flat base (20, 20').
4. Container (1, 1') according to any one of claims 1 to 3, characterized by the fact thatthe base part (6) has end walls (22, 22') that are integrally connected to the bottom of the container (18), which are preferably aligned at least partially at an angle α between 30° and 80° to the bottom of the container (18).
5. Container (1, 1') according to any one of the preceding claims, characterized by the fact that with the base part (6') in addition to the side walls (10", 10‴) at least one separate end wall (22") is connected by means of several screw connections (12).
6. Container (1, 1') according to any one of the preceding claims, characterized by the fact that at least one stop flange (28, 28') cooperating with a side wall (10, 10', 10", 10''') is arranged on the base part (6, 6') and / or at least one stop flange (28, 28') cooperating with the base part (6, 6') is arranged on a side wall (10, 10', 10", 10‴) on which preferably several locking nuts (16) are arranged at predetermined intervals from each other.
7. Container (1, 1') according to claim 6, characterized by the fact thatthe stop flange (28, 28') projects substantially perpendicularly along the inner side of the base part (6, 6') and / or the side wall (10, 10', 10", 10‴) defining the receiving area (2) and is preferably formed as a continuous strip of material.
8. Container (1, 1') according to claim 6 or 7, characterized by the fact that the stop flange (28, 28') has a stiffening (30) in a transition area (29) between two sections running at an angle to each other.
9. Container (1, 1') according to any one of the preceding claims, characterized by the fact that the base part (6') has a receptacle (34) along each of its longitudinal sides (8, 8') with connectors (38) protruding from it as a positioning means for a side wall (10", 10‴) that can be brought into contact with it.
10. Container (1, 1') according to any one of the preceding claims, characterized by the fact thatthe side walls (10", 10"') have vertically extending stiffening profiles (40) whose lower ends are equipped with plug receptacles for interaction with connectors (38) arranged on a receptacle (34) of the base part (6, 6') for the side walls (10", 10"').
11. Container (1, 1') according to any one of claims 5 to 10, characterized by the fact that the end wall (22") is furthermore connected to the end faces of the side walls (10", 10‴) by means of screw connections (12).
12. Container (1, 1') according to any one of claims 5 to 11, characterized by the fact that the end wall (22") has stop flanges (48, 48') projecting on its inner side facing the receiving area (2) at a distance from its edge surfaces for interaction with the base part (6, 6') and / or the side walls (10", 10‴).
13. Container (1, 1') according to any one of the preceding claims, characterized by the fact thatthe locking nuts (16) are attached to the base part (6, 6') and / or to the side walls (10, 10', 10", 10‴) or end wall (22"), preferably by being bonded to them.
14. Container (1, 1') according to any one of claims 10 to 13, characterized by the fact that a profile element (24, 24') is arranged along the top side of the end wall (22, 22', 22") and / or side walls (10, 10', 10", 10‴), the ends (26, 26') of which are screwed to correspondingly formed ends (26, 26') of profile elements (24, 24') running along the top side of the side walls (10, 10', 10", 10‴) and / or end wall (22, 22', 22").
15. Container (1, 1') according to any one of the preceding claims, characterized by the fact that the base part (6, 6') and / or the end wall (22") each have frame sections (42, 42') of a roll-off subframe (44) to be formed on the container (1') which are connected to it in a materially bonded manner.
16. Container (1, 1') according to any one of the preceding claims, characterized by the fact thatat one end of the base part (6'), which defines a lockable opening (50) of the container (1'), a reinforced mounting interface (60) is formed for a side wall (10", 10‴) that can be coupled to it.
17. Container (1, 1') according to any one of the preceding claims, characterized by the fact that the container (1, 1') is designed as a skip or roll-off container.
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