EP3141353B1 - Dispositif adaptateur pour receptacles de dimension differente - Google Patents

Dispositif adaptateur pour receptacles de dimension differente Download PDF

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Publication number
EP3141353B1
EP3141353B1 EP16184445.1A EP16184445A EP3141353B1 EP 3141353 B1 EP3141353 B1 EP 3141353B1 EP 16184445 A EP16184445 A EP 16184445A EP 3141353 B1 EP3141353 B1 EP 3141353B1
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EP
European Patent Office
Prior art keywords
receiving body
adapter device
locking
receiving
coupling structures
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.)
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Application number
EP16184445.1A
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German (de)
English (en)
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EP3141353A1 (fr
Inventor
Wolfgang Hohl
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.)
Wuerth International AG
Adolf Wuerth GmbH and Co KG
Original Assignee
Wuerth International AG
Adolf Wuerth GmbH and Co KG
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Publication date
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Publication of EP3141353A1 publication Critical patent/EP3141353A1/fr
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Publication of EP3141353B1 publication Critical patent/EP3141353B1/fr
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H3/00Storage means or arrangements for workshops facilitating access to, or handling of, work tools or instruments
    • B25H3/02Boxes

Definitions

  • the invention relates to an adapter device, a method for attaching receiving bodies of different sizes to an adapter device and a receiving arrangement.
  • DE 39 04 053 A1 discloses a modular system having a base plate for coupling and mounting container base members of various sizes.
  • the base plate has a series of fastening clips, which are integrally formed on the base plate and regularly arranged in parallel horizontal and vertical rows and each having the same distance.
  • Different container base elements can each be attached to the fastening clips.
  • a first container base element is adapted with its floor plan or cross section to the floor plan or cross section of the fastening clip.
  • a second container base element is provided with a floor plan which covers a total of four fastening clips, that is four times as large as the floor plan of the first container base element.
  • a third container base element has a floor plan which is twice as large as that
  • US 2012/074158 A1 discloses a container having a base body and a lid.
  • a back wall of the body is configured to secure the container to a slot wall mounting plate.
  • the rear wall on a first suspension member which is inserted from below into a slot of the slot wall. When the suspension member then engages an upper lip of the slot, support against the panel occurs.
  • the container may be mounted to the panel by inserting the suspension member from an end point of the panel into the slot and sliding it to its desired end position along a length of the slot.
  • the suspension element may be L-shaped or T-shaped.
  • an adapter device for fastening receiving bodies (in particular of bodies which are designed to receive articles to be stored, in particular suitcases, is different Size, storage boxes of different sizes, etc.), the adapter device comprising a support means for supporting a fixed receiving body (or a plurality of fixed receiving bodies), first coupling structures on the support means for mounting a first receiving body of a first size by means of (simultaneous or sequential) pushing and locking means are formed on the first coupling structures, and having second coupling structures on the support means for attaching a second receiving body of a second size by means of (simultaneous or sequential) pushing and locking (with respect to the fixing of the first receiving body to the first coupling structures, alternatively or simultaneously) is formed on the second coupling structures.
  • a receiving assembly comprising an adapter device having the above-described features for attaching receiving bodies of different sizes and a first receiving body of a first size adapted to be attached to the carrier means by sliding and locking on the first coupling structures is.
  • a method for fastening receptacle bodies of different sizes to an adapter device, wherein the method pushes and locks a first receptacle body of a first size on first coupling structures on a support device of the adapter device designed to carry the first receptacle body, thereby fixing the first receiving body to the adapter device, and / or (ie, "both receiving body simultaneously” or “exclusively or, ie at any time only one of the receiving body”) a second receiving body of a second size is pushed onto second coupling structures on the carrier device and being locked to thereby fix the second receiving body to the adapter device.
  • an adapter device which is easy to handle by a user and can be brought into different connection states in an intuitive manner with differently sized receiving bodies (for example suitcases).
  • a user can bring a receiving body located in a connection state with the adapter device also in another connection state or a disconnected state again.
  • this receiving body is separated from the adapter device again, this is free for receiving another, for example differently sized receiving body.
  • This can be accomplished with a simple and intuitive slide-and-lock motion that is handled in a similar, inverse manner to disconnect.
  • different receiving bodies of different sizes can be temporarily fixed by a universal system of coupling structures. This allows a user to assemble any combinations of adapter devices and receiving bodies into a common body in a modular or modular manner.
  • the carrier device may be formed as a carrier plate. Then, the carrier device can serve as a flat and vertically compact receiving platform with a large mounting surface for supporting the or the receiving body.
  • the first coupling structures have at least one first guide rail, in particular two first guide rails parallel to one another and spaced apart from one another at a first distance, the first receiving body extending up to a first guide rail along the at least one first guide rail Locking position can be pushed.
  • the at least one first guide rail particularly advantageously but a pair of mutually parallel first guide rails, offers a user an intuitive way to mount the first receiving body with correct positioning and thus fault-robust to the adapter plate.
  • the second coupling structures may comprise at least one second guide rail, in particular two second guide rails parallel to one another and spaced apart from the first distance by a second distance, the second receiving body being slidable up to a second locking position along the at least one second guide rail is.
  • the at least one second guide rail preferably a pair of parallel second guide rails, formed in a corresponding manner to the at least one first guide rail, but at the same time takes into account the other size of the second receiving body invoice. For a user, this makes it possible to see at a glance how the at least one second guide rail is to be handled in relation to the at least one first guide rail for mounting the respective receiving body.
  • the pair of second guide rails may be arranged parallel to the pair of first guide rails and the latter arranged laterally enclosing.
  • the first coupling structures have at least one first locking body, in particular at least two locking bodies spaced along the at least one first guide rail, wherein when the first receiving body is pushed along the at least one first guide rail up to the first locking position, the at least one first locking body is attached to the first locking position is formed vertically undetachable locking the first receiving body to the adapter device.
  • the at least one first locking body may be, for example, above the at least one first guide rail are inserted over this, that corresponding coupling structures of the deferred first receiving body are arranged in the at least one first guide rail and prevented by the arranged above at least one first locking body against vertical removal.
  • the insertion of the at least one first locking body via the at least one first guide rail is preferably carried out before the insertion of the first receiving body, but may alternatively be carried out only after the insertion of the first receiving body.
  • the second coupling structures may comprise at least one second locking body, in particular two or more locking bodies spaced along the at least one second guide rail, wherein when sliding the second receiving body along the at least one second guide rail up to the second locking position, the at least one second locking body for locking the second receiving body to the adapter device vertically undetachable at the second locking position.
  • the at least one second locking body can be inserted above the at least one second guide rail such that corresponding coupling structures of the pushed-on second receiving body are arranged in the at least one second guide rail and are prevented from being removed vertically by the at least one second locking body arranged thereabove ,
  • the insertion of the at least one second locking body via the at least one second guide rail is preferably carried out before the insertion of the second receiving body, but may alternatively be carried out only after the insertion of the second receiving body.
  • the number of first latch bodies and the number of second latch bodies may be different and, for example, based thereon be selected, which weight has the respective receiving body. The higher this weight, the higher the number of first and second locking bodies can be selected.
  • the at least one first locking body and / or the at least one second locking body (in particular prior to locking or locking the respective receiving body) can be displaceable angularly (in particular perpendicularly) to a respective guide rail (in particular leaving a vertical gap open be displaceable between a bottom of the respective guide rail and the respective locking body into the respective guide rail).
  • a plurality of first and second locking bodies may also be attached to a respective common (particularly rigid) support structure for being collectively displaced by a user to further facilitate handling.
  • the first coupling structures and / or the second coupling structures may be configured such that the first receiving body or the second receiving body can be selectively stacked in a vertically displaceable manner by means of the coupling structures on the adapter device, and / or the respective receiving body and the adapter device can be stacked by means of the Sliding and locking on the first coupling structures and / or on the second coupling structures are vertically undetachably coupled to each other.
  • the respective receiving body is thus selectively stackable or couplable in combination with the adapter device.
  • a receiving space of the receiving body in the stacked or coupled state still be accessible from outside.
  • a trained as a suitcase receiving body in the stacked or coupled state can still be transferred between an open state and a closed state. Thereby, even in the coupled or stacked state, a user can gain access to the interior of the receiving body of the receiving assembly.
  • the bodies may also be vertically non-detachably intercoatable with each other, that is, connected to each other such that separation of the two bodies is not possible in a merely vertical lift-off movement.
  • a separation of the two bodies from each other is made possible in this mode only by relative displacement of the two bodies along a horizontal direction of displacement.
  • the coupled bodies are immobilized in a horizontal plane, for example by applying a fastening force acting perpendicular to a direction of displacement of the body, for example by means of a snap connection horizontally displaced coupling of the two bodies.
  • the at least one first locking body and / or the at least one second locking body may be configured such that the first receiving body or the second receiving body can be stacked so as to be vertically detachably displaceable in a vertically detachable manner by means of a respective one of the locking bodies.
  • the respective at least one locking body vertically raised above a surrounding area of protruding guide rail so (advantageously starting from the receiving body underside protruding) snap-in feet (or the like) of the recording body to be accommodated for stacking can sit on these raised protruding locking body. This allows a particularly compact design of the adapter device, since the locking body can then contribute functionally both for coupling and for stacking.
  • the adapter device may have at least one stop structure, which can be folded in and out against the carrier device, and which, after pushing on the first receiving body and / or the second receiving body, abuts the respective receiving body on the at least one stop structure in a locking position in which the respective receiving body is lockable or locked to the adapter device.
  • a stop structure has the advantage that it intuitively indicates to a user, even without eye contact (for example when mounted in a poorly lit or optically inaccessible trunk of a motor vehicle), when a receiving body to be mounted on the adapter device has reached its desired attachment position. This increases user comfort and reduces the risk of incorrect operation.
  • the retractability or retractability of such stop structures also makes it possible, when coupling several adapter devices one behind the other, to push through a receiving body itself without eye contact to a rear adapter device, without being disturbed by a stop structure.
  • the adapter device may have a bottom-side anti-slip device for protecting the adapter device from slipping on a substrate, in particular on a carpet background.
  • the device can be prevented from undesired slippage on a substrate even then when placed in a moving object, for example a trunk of a motor vehicle, on the bare ground.
  • the anti-slip device may comprise an arrangement of bottom-side spikes, which are adapted to penetrate when placing the adapter device on the ground in this.
  • a two-dimensional or planar arrangement of such spikes which can protrude as mandrels relative to a base body of the anti-slip arrangement, can ensure a very effective anti-slip protection.
  • the anti-slip device may be selectively stowed away from the carrier device or repositionable to activate the anti-slip device relative to the carrier device.
  • the adapter device may be operated in two different modes of operation. In a first operating mode, the anti-slip device can be anchored to the carrier device (for example clamped) such that a surface causing the anti-slip protection (for example equipped with spikes) of the anti-slip device is retracted or turned away from an exposed underside surface of the adapter device. Then, the anti-slip device is stowed on the support means of the adapter device without being exposed as a separate part of the danger of being lost.
  • the spikes may then face away from a substrate and face the carrier device and the anti-slip device may be clamped or otherwise secured to the carrier device.
  • the anti-slip device may be detached from or folded away from the carrier, and be projected downwardly with the non-slip surface opposite the carrier so that the spikes or other anti-slip means (e.g., a rubber surface) provide anti-slip protection against the ground can.
  • the anti-slip device can have two slipping strips arranged on the base side on the carrier device, which can be arranged at an angle to one another, in particular a V-shaped facing each other.
  • the anti-slip device in the form of a plurality of separate slip-off strips, which provide the anti-slip protection at different bottom portions of the carrier device. This ensures a particularly efficient anti-slip protection. If the elongated slip strips are angled relative to a potential Verrisonraum (for example, a direction of travel of a motor vehicle) or with this an acute angle enclosing the power transmission, which leads to an undesired slipping, particularly strongly inhibited.
  • Two or more V-shaped, X-shaped or Y-shaped anti-slip strips are able, in particular, to prevent or suppress slippage even in two mutually orthogonal potential dislocations (for example a normal direction of travel of the motor vehicle and a turning direction perpendicular thereto).
  • the first coupling structures and / or the second coupling structures may further comprise a first additional locking device for additionally displaceably locking the first receiving body when it is pushed and locked on the carrier device, and / or a second additional locking device for additionally displaceably locking the first receiving body Have second receiving body when it is pushed and locked to the support means.
  • a third connection state can hereby be defined, which additionally in the vertically undetachably coupled state of the two bodies Relative displacement of the same against each other allows (for example, by deactivation of the additional locking device) or a relative displacement of the same against each other impossible (for example by activation of the additional locking device).
  • the two additional locking devices can thus be reversibly locked together.
  • the adapter device may include adapter connection structures on opposite sides of the carrier device configured to connect the adapter device to another adapter device having corresponding adapter connection structures.
  • two or more adapter devices can be serially attached to one another to provide a larger receiving surface for receiving bodies.
  • the adapter devices can be positively coupled to each other at adjacent ends.
  • the adapter connection structures may be arranged so that the respective guide rails are aligned or form a common superordinate rail structure in the state of several adapter devices connected therewith. As a result, receiving bodies can be pushed across adapter devices between several adapter devices until they have reached a desired target position.
  • the adapter connection structures may have at least one connection projection on one side of the carrier device, which is designed for positive engagement by at least one connection intersection on an opposite other side of the carrier device.
  • the adapter connection structures may be mushroom-shaped overhangs that can be puzzle-like engaged with mushroom-shaped connection intersections.
  • the adapter device may comprise fastening structures for fastening the adapter device to a fastening body, in particular fastening holes for receiving fastening screws of a fastening body.
  • Such attachment structures may be used universally for attaching the adapter device to a horizontal, inclined or vertical wall, to an expansion device for expanding a size of a receiving surface of the adapter device, or to a mounting device for mounting the adapter plate to a seat of a motor vehicle.
  • the support means may comprise a carrying handle for supporting the adapter device by a user.
  • the carrying handle can be designed to be user-friendly and with little manufacturing effort as a mere carrying opening in the carrier device.
  • the adapter device may comprise stiffening structures, in particular of steel, which are designed to stiffen the carrier device, in particular of plastic.
  • the adapter device can be made entirely of plastic, which allows cost-effective production, for example by means of injection molding.
  • stiffening structures for example stiffening struts
  • stiffening struts made of a stronger material, for example a metallic material, can also be integrated into the plastic components of the adapter device (for example cast in) or placed thereon.
  • the receiving arrangement may comprise a second receiving body of a second size have, which is designed to be fastened to the carrier device by means of sliding and locking on the second coupling structures.
  • the second size may differ from the first size.
  • the second receiving body can be mounted on the adapter device simultaneously or alternatively to the first receiving body.
  • the first receiving body and / or the second receiving body may be a suitcase for transporting goods to be transported.
  • a case may have a body and a cover connected or connectable to the body, wherein in a closed state between the body and the lid, a receiving space for receiving transported goods may be formed inaccessible from the outside, and being accessible in an opening state of the receiving space from the outside can be.
  • a case which may be stacked on the adapter device or coupled thereto, may still be transferable between the open state and the closed state in this state. As a result, even in the coupled or stacked state, a user can gain access to the interior of this upper case of the receptacle assembly.
  • the first receiving body further coupling structures, in particular exclusively on the body of the first receiving body, for coupling with the first coupling structures and / or the second receiving body further second coupling structures, in particular exclusively on the body of the second receiving body, for coupling with the second coupling structures respectively.
  • the further first coupling structures of the first receiving body can be designed corresponding to the first coupling structures of the adapter device.
  • the further second coupling structures of the second receiving body may be formed corresponding to the second coupling structures of the adapter device. If the other coupling structures exclusively on the body of the respective, as a suitcase formed receiving body, this allows in a user-friendly way, the opening of the lid for making the receiving space without separation of receiving body and adapter device.
  • At least a part of the further first coupling structures and / or at least a part of the further second coupling structures can be used both for vertically detachably displaced stacking of the first receiving body and / or the second receiving body on the adapter device and for vertically undoubtedly coupling the first receiving body together and / or the second receiving body contribute to the adapter device.
  • a part of the further coupling structures may be formed as physical bodies, which are shaped to contribute to the formation of the respective connection state in both the vertically detachably displaced stacked state and the vertically unrelated state, and with a respective corresponding structural feature Interacting adapter device.
  • the respective receiving body is simple and compact formable and at the same time usable in very different operating conditions.
  • the further first coupling structures and / or the further second coupling structures may be formed such that, in cooperation with the first coupling structures and / or the second coupling structures, the first receiving body and / or the second receiving body on the one hand and the adapter device on the other hand vertically in the one above the other undetachably coupled state selectively against each other are displaced or by pressing the coupling structures against each other are strigieberochbar.
  • a third connection state can be defined, which in the vertical undetachably coupled state of the two bodies additionally allows a relative displacement of the same against each other (for example, by deactivation of locking structures) or a relative displacement of the same against each other impossible (for example by activation of locking structures).
  • the two bodies can thus be reversibly locked to one another in order to prevent displacement along the guide rail (s).
  • a part of the coupling structures which contribute to the anti-shift securement in the vertically undetachably coupled state may be formed and operable independently of another part of the coupling structures which contribute to vertically detachably displaced stacking as well as to vertically undoubtedly coupling together.
  • the further first coupling structures and / or the further second coupling structures with which the first receiving body and / or the second receiving body on the one hand and the adapter device on the other hand can be stacked vertically removably stackable in a stacked manner, in the form of displaceable in the stacked state underside Receiving grooves of locking feet on outer lower edge regions of the first receiving body and / or the second receiving body are formed.
  • supernatants located on the upper side of the adapter device can plunge into receiving grooves of latching feet attached on the underside of a side wall of the receiving body.
  • the latching feet are integrally formed on a side wall of the respective suitcase as a receiving body extending down or attached thereto, it is also possible, all coupling structures used for stacking only on a folding component of the suitcase (especially only on the body, not on the lid) to mount, which allows actuation of the other folding component (in particular of the lid) even in the coupling state of the coupling structures.
  • a lid can be folded down or even removed, even if the body is stacked or latched to the adapter device.
  • the multi-function locking cams can make a functional contribution at different connection states of the suitcase either for non-shiftable stacking or for detachable coupling.
  • the bodies can thus be coupled together along a rail-like construction on the adapter device so that the coupling lugs are pushed under a latch body.
  • guide rails, locking body and coupling lugs cooperate. This defines a shift direction that is intuitively recognizable to a user.
  • the locking feet may extend vertically beyond a bottom surface of the first receiving body and / or the second receiving body down, so that the first receiving body and / or the second receiving body can be placed on the resting feet on a substrate.
  • a main surface of the receiving body can thus be protected from direct contact with the ground and thus protected from dirt and damage.
  • the locking feet in this embodiment also contribute to a stand function when placing the receiving body on a pad.
  • a part of the coupling structures, with which the first receiving body and / or the second receiving body on the one hand and the adapter device on the other hand in the superposed vertically undetachably coupled state against each other are strigobe redesignbar in the form of receiving grooves of the adapter device and locking slides of the first receiving body and Be formed or the second receiving body, wherein the locking slide can be inserted into the receiving grooves.
  • Locking slide on a receiving body and receiving grooves on the adapter device may thus allow the two bodies can be additionally secured in the vertical from each other unabhebbaren state against a horizontal displacement.
  • While the coupling structures for facilitating the stacking and the coupling structures for enabling the vertically unavoidable displacement in the horizontal plane (especially exclusively) on a common side side surface (or on two opposite side surfaces) of the respective receiving body attached receiving grooves and locking slide can be attached to another, in particular front side surface of the receiving body or the adapter device.
  • the spatial separation of these coupling structures intuitively informs a user of the functional separation of the function that can be achieved with the respective coupling structures.
  • the first receiving body and / or the second receiving body can be designed to be selectively stackable or to be coupled selectively with a similar receiving body of the same or different depths.
  • two identical receiving bodies in particular suitcases
  • the adapter device can connect two identically designed, but with respect to the depth in the direction of displacement differently dimensioned receiving body with each other and with the adapter device.
  • the functionality of the receiving body can be further increased and the flexibility in the combination of different receiving body can be further improved.
  • an adapter plate adapter device for attaching differently sized receiving body is created together.
  • Such an adapter device is optionally on a larger body (in particular under Formation of an expansion device or a mounting device mounted).
  • a larger suitcase or a smaller suitcase or another receiving body is selectively mountable by sliding and locking by means of sliding locking body on the adapter device. It may also be possible to stack on the adapter device either the larger suitcase or the smaller suitcase or another receiving body by placing.
  • the locking body can be brought into position so that they can receive form-fitting stacking feet or locking feet of the respective suitcase.
  • the adapter device can be provided with fold-out stop structures against which the respective suitcase or other receiving body abuts at a predetermined end position.
  • two preferably angularly extending floor parts with spikes can be provided as anti-slip device, by which the receiving body can be slipped on a carpet (for example in a trunk) can be placed without slipping is to be feared in operation.
  • An adapter device can be used to connect different sized suitcases. A respective case can also be pushed between two successively arranged adapter devices.
  • the adapter device may be provided with a carrying handle for carrying.
  • the adapter device can be fastened to a wall. Mounting holes for securing the adapter device to a wall may be the same with which the adapter device can also be bolted to a base body (for example, an extension device or a mounting device).
  • the adapter device may be provided with steel stiffeners to increase the rigidity of the adapter device.
  • mushroom-shaped projections or other adapter connection structures may be provided on the adapter device, which may be used to engage inverse-shaped grooves or other adapter connection structures at another, similar adapter device can be set up. In this way, a plurality of adapter devices can be put together planar.
  • Such a multifunctional adapter device can be made of different materials (for example, sheet metal, aluminum, wood, etc.), but preferably of plastic. It is possible to provide a set of adapter devices with different widths and / or depths. On a single adapter device different receiving body (especially suitcases) can be taken with different width and / or depth.
  • Such an adapter device can be used for mounting on a wall, under workbenches and / or countertops, for perforated plates (then a coordinated hole pattern is advantageous), for use in shelves shelves or for a closed body (for example, sheet metal), for connection to a Tool device, for connection to a workshop trolley or for connection to another system (for example a storage box). It is possible to arrange such an adapter device on a trolley or mount.
  • Such an adapter device may also be mounted in vehicles (for example in a cargo space, a trunk, a vehicle interior using Isofix fasteners, or in combination with a tube frame for the adapter device, in particular for attachment via a safety belt).
  • the adapter device can be equipped with an integrated carrying function (for example a handle recess).
  • an adapter device a secure stacking and coupling different width suitcases or other receiving body is possible.
  • recesses may be provided for the coupling elements and / or an attachment for locking cams.
  • lashing eyelets for additional security in mobile applications (for example in a vehicle).
  • screw domes can be used for different uses of the base plate.
  • a (in particular retractable) box stop can be implemented.
  • the Securing the case on the adapter device can be realized by means of locking elements. About a puzzle principle, several adapter devices can be grown together.
  • the adapter device different attachments can be provided.
  • the provision of anti-slip spikes in particular for non-slip arrangement of the adapter device on carpet (as an alternative to the spikes can also be a rail with a rubber coating are provided to serve as protection on parquet and other sensitive documents).
  • the Gleitreibcid for the load securing can be positively increased.
  • Such spikes can be made removable and storable in the adapter device.
  • an edge protection for carriages or other receiving body can be attached to the adapter device, which advantageously also provides an integrated coupling function for a large storage box.
  • the provision of a steel reinforcement is possible, in particular for attachment of rollers and / or for stiffening and to achieve particularly high load values.
  • Locking cams for attaching mounted suitcases can be provided retractable in the adapter device. This makes it easier, for example, in a hold suitcase pushed through to a stop and thus without the need for visual contact, especially when multiple adapter devices and / or cases are stored one behind the other and coupled together. In the stacking state, the suitcases can be stored without slipping.
  • FIG. 1 shows a trained as a suitcase receiving body 10 according to an exemplary embodiment of the invention in an open state.
  • FIG. 2 and FIG. 3 show the receiving body 10 according to FIG. 1 in a closed state or closed state.
  • FIG. 4 shows a receiving body 10, as in FIG. 1 to FIG. 3 is shown, in a similar with another, designed as a suitcase receiving body 10 'coupled state.
  • FIG. 4 Thus shows an arrangement 99, the Receiving body 10 and the additional similar receiving body 10 'in a connection state shows.
  • the receiving body 10 serves to transport goods to be transported.
  • cargo can be loosely or secured or secured in the interior of the receiving body 10 and can be accommodated in particular in receptacles (not shown), which in turn are housed securely in the interior of the receiving body 10 in the closed state.
  • receptacles not shown
  • examples of such cargo are consumables (such as screws, nails, dowels, bulk or liquids) or tools (such as screwdrivers or bits), etc.
  • the receiving body 10 has a body 12 and connected to the body 12 or connectable lid 14. Reinforcing ribs 28 for mechanically reinforcing the receiving body 10 are formed on the inner sides of the body 12. Diverse coupling structures 30, 32, 34, 36, 38, 40, 44 are attached according to the embodiment shown exclusively on the body 12, but not on the lid 14. In the closed state between the body 12 and the lid 14, a receiving space for receiving transported goods from the outside is inaccessible enclosed between the body 12 and the lid 14. In the opening state of the receiving space is accessible from the outside, for example, to remove cargo from the receiving body 10 or introduce into the receiving body 10.
  • the coupling structures 30, 32, 34, 36, 38, 40, 44 are designed such that the receiving body 10 and the identical other receiving body 10 'by means of the coupling structures 30, 32, 34, 36, 38, 40, 44 (thus in identical manner also to the other receiving body 10 'are provided) optionally over each other vertically removable and horizontally Agiebegeschreibt stackable are (state I), or vertically undetachable and horizontally displaceable coupled to each other (state II). Further, the receiving body 10, 10 'vertically undetachable and horizontally immovable be coupled together (state III).
  • the coupling structures 30, 32, 34, 36, 38, 40, 44 which accomplish both the stacking (state I) and the coupling (state II, state III) of the plurality of receiving bodies 10, 10 'are exclusively by means of provisions on the respective body 12 (see locking cam 30 and grooves 36 of locking feet 34, coupling lugs 38 on the locking feet 34, a guide rail 30, 32 between the locking cams 30 and steps 32 and cooperating locking slide 40 and grooves 44 realized without the provision but for this purpose the lid 14 are met.
  • the other receiving body 10 ' is arranged vertically above the receiving body 10 and subsequently lowered onto the receiving body 10 such that the receiving grooves 36 engage the locking feet 34 of the other receiving body 10' in engagement with the locking cams 30 of the receiving body 10 devices.
  • the receiving grooves 36 on the locking feet 34 of the other receiving body 10 'and the locking cams 30 of the receiving body 10 then ensure that the other receiving body 10' at any time vertically from the receiving body 10 can be lifted off (that is, by an inverse movement for stacking movement), but is protected by the positive engagement between the grooves 36 on the locking feet 34 of the other receiving body 10 'and the locking cam 30 of the receiving body 10 from a displacement in a horizontal plane.
  • a portion of the coupling structures 30, 32, 34, 36, 38, 40, 44 contribute both to the vertically removable shift secured stacking and to the vertically undetachably coupling together.
  • the coupling structures 30, 32, 34, 36, 38, 40, 44 are formed so that the receiving body 10 and the other receiving body 10 'by means of the coupling structures 30, 32, 34, 36, 38, 40, 44 in the over one another vertically undetachably coupled state selectively against each other (state II in which coupling structures 40, 44 are not engaged with each other) or by pressing the coupling structures 30, 32, 34, 36, 38, 40, 44 against each other strigotachably coupled state selectively against each other (state II in which coupling structures 40, 44 are not engaged with each other) or by pressing the coupling structures 30, 32, 34, 36, 38, 40, 44 against each other strigieberism are (state III, in which additional coupling structures 40, 44 are engaged with each other).
  • a part of the coupling structures 30, 32, 34, 36, 38, 40, 44 (namely the coupling structures with the reference numerals 40 and 44), which in the superimposed vertically unabeatably Corpiebegeschreibt coupled together state III contributes to the displacement secure, is independent of another part (namely the coupling structures with the reference numerals 30, 32, 34 , 36, 38) of the coupling structures 30, 32, 34, 36, 38, 40, 44 are formed and operable to contribute to vertically detachably displaced stacking or vertically undetachably coupling together (state I and state II, respectively).
  • the part of the coupling structures 30, 32, 34, 36, 38, 40, 44, with which the receiving body 10 and the other receiving body 10 'stackable over one another are vertically removable displaced, is in the form of locking cams 30 at outer top edge portions of the body 12 as well formed in the form of the locking feet 34 with the locking cams 30 in the stacked state cooperating lower side grooves 36 on outer lower edge regions of the body 12.
  • the part of the coupling structures 30, 32, 34, 36, 38, 40, 44, with which the receiving body 10 and the other receiving body 10 'are mutually vertically undetachably coupled to each other, is in the form of the guide rails 30, 32 at outer top edge portions of the body 12 and in the form of cooperating with the guide rails 30, 32 in the coupled state lower-side coupling lugs 38 formed on outer lower edge regions of the body 12.
  • the locking cams 30 form part of the guide rails 30, 32 and form the coupling lugs 38 part of the locking feet 34.
  • the locking feet 34 extend vertically beyond a bottom surface of the body 12 also down (see FIG. 2 ), so that the receiving body 10 can be set off with the locking feet 34 on a substrate.
  • the part of the coupling structures 30, 32, 34, 36, 38, 40, 44, with which the receiving body 10 and the other receiving body 10 'in the superposed vertically undetachably coupled together state against each other are secured against displacement (state III), is in the form of the grooves 44 and the cooperating locking slide 40 is formed.
  • the locking slide 40 on the body 12 of the other receiving body 10 'in the receiving grooves 44 on the body 12 of the receiving body 10 can be inserted (when the other receiving body 10' is disposed above the receiving body 10, as in FIG. 4 ), or vice versa (when the receiving body 10 is placed above the other receiving body 10 ').
  • All coupling structures 30, 32, 34, 36, 38, 40, 44 are provided on side surfaces of the body 12 (see, for example FIG. 1 ).
  • the lid 14 is free from the coupling structures 30, 32, 34, 36, 38, 40, 44.
  • the receiving body 10 also has recessed grips 26 in the form of depressions on opposite side surfaces of the body 12.
  • an optional locking device 46, 48, 50, 52 may be provided for closing the lid 14 to the body 12 in the closed state.
  • a lock with a counterpart 48 of the lid 14 can be accomplished by means of a key 50 in a rotary lock 52 in a receiving element 46 of the body 12.
  • the rotary lock 52 which can be actuated by means of the removable key 50
  • Carcass 12 includes a pivot bracket that retracts into the counterpart 48 on the lid 14.
  • a handle 54 is mounted in a trough on a carrying upper side surface of the body 12 and between a folded on the side surface of the body 12 state (see FIG. 1 ) and tilted down from the side surface state tilted. A transition between these two states can be accomplished by manipulating the handle 54.
  • the handle 54 is made of a hard component 56 for stabilizing and supporting the handle 54 and a soft component 58 for comfort Touching the receiving body 10 by a user when carrying the receiving body 10 is formed.
  • the handle 54 on the body 12 can be applied to the latter and remains there in a compact position by the action of a locking cam latching the handle 54 in the retracted state.
  • a label field 75 is provided into which a marking carrier indicative of, for example, the contents of the receiving body 10 can be inserted.
  • the receiving body 10 also has the hinge 16, which connects the body 12 and the lid 14 hinged together and is adapted to be able to fold the receiving body 10 between the closed state and the open state.
  • the locking feet 34 and the hinge 16 are structurally adapted to each other and positioned so that the hinge 16 remains contact-free with respect to the ground when the receiving body 10 rests by means of the locking feet 34 on the ground.
  • a document holder 68 is attached to the in FIG. 1 not shown documents temporarily clamped and thus can be secured during transport.
  • Both the body 12 and the lid 14 are each formed by manufacturing technology simply as an injection molded part. Other components are subsequently attached to the respective injection-molded part (for example the locking slide 40 on the body 12 or the document holder 68 on the cover 14).
  • the receiving bodies 10, 10 ' are also designed to receive assortment boxes (not shown) in which, for example, tooling materials such as screws, dowels or other can be received.
  • assortment boxes (not shown) in which, for example, tooling materials such as screws, dowels or other can be received.
  • the assortment boxes are inaccessible to a user in the interior of the respective receiving body 10, 10' secured, whereas a user in the
  • Opening state of the respective receiving body 10, 10 can access the assortment boxes.
  • longitudinal struts 18 and cross struts 20 raised above a flat surface.
  • projecting frame 22 are formed, which form four receiving recesses 24 for receiving substantially inversely to the receiving recesses 24 shaped feet of assortment boxes in each section along with longitudinal struts 18 and cross struts.
  • annular recess on an inner side of the lid 14 is covered with an annular mat 64 which is circumferentially ultrasonically welded to the lid 14.
  • On the Passepartout 64 of the plastic document holder 68 is mounted by means of plastic clips 66 for clamping of documents not shown.
  • FIG. 5 shows a top and FIG. 6 shows a bottom of a plate-shaped adapter device 100 according to an exemplary embodiment of the invention.
  • the adapter device 100 for example, designed as a suitcase differently sized receiving body 10, 102 (see, for example FIG. 13 . FIG. 18 ), for securing a receiving body 352 formed as a storage box (see for example FIG. 11 ) or between two differently sized receiving bodies 10, 102 (see for example FIG. 19 ) act as an attachment producing intermediate piece.
  • the adapter device 100 has a carrier device 104 embodied as a carrier plate made of plastic for carrying a fixed receiving body 10, 102. Furthermore, the adapter device 100 includes first Coupling structures 106 to 108 on the carrier device 104, which are formed for attaching a first receiving body 10 of a first size by means of sliding and locking on the first coupling structures 106 to 108 (see, for example FIG. 13 ). Furthermore, the adapter device 100 has second coupling structures 110 to 112 on the carrier device 104, which are designed to fasten a second receiving body 102 of a second size (larger in comparison to the first size) by sliding on and locking on the second coupling structures 108 to 110 (FIG. see for example FIG. 18 ).
  • the first coupling structures 106 to 108 include two first guide rails 106 parallel to each other and spaced apart a first distance apart FIG. 13 2, the first receiving body 10 can be pushed along the first two guide rails 106 as far as a first locking position, wherein the locking feet 34 of the first receiving body 10 slide along the first guide rails 106.
  • the second coupling structures 110 to 112 have two second guide rails 110, which are parallel to one another and spaced apart from one another by a larger second distance, laterally surrounding the first guide rails 106.
  • the second receiving body 102 (which is larger in comparison to the first receiving body 10) can be pushed onto the carrier device 104 along the second guide rails 110, with the latching feet 34 of the second receiving body 102 sliding along the second guide rails 110.
  • first coupling structures 106 to 108 each include two first locking bodies 108 spaced along the respective first guide rail 106.
  • the second coupling structures 110 to 112 each include three second locking bodies 112 spaced along the respective second guide rail 110.
  • a respective receiving body 10, 102 can be placed on the adapter device 100 by vertical lowering, whereby the respective locking body 108, 112 dive into the grooves 36 on the locking feet 34 of the respective receiving body 10, 102 while a vertically detachable displacement assured state 1 (in analogy to the above state I between two similar receiving bodies 10, 10 ') occupy.
  • the respective locking bodies 108, 11 2 function in state 1 similar to the locking cams 30 of the receiving bodies 10, 10 'in state I.
  • the two pairs of first locking bodies 108 effect a vertically undetachable locking of the first receiving body 10 to the adapter device 100 (which position may be referred to as state 2 in analogy to the above state II).
  • the second receiving body 102 at the second locking position by the second locking body 112 is vertically undetachable to the adapter device 100th locked (state 2 of the second receiving body 102).
  • the locking bodies 108, 112 are all displaced into the respective associated guide rail 106, 110 projecting and locked in this position.
  • the locking bodies 108, 112 can also be completely removed from the guide rails 106 by a movement opposite to the indicated arrow direction. 110 are driven out. As in FIG. 6 and FIG.
  • respective sets of locking bodies 108 and 112 are provided on common support beams 187, 189 rigid or as an integral part thereof, so that the support beams 187, 189 between an outer locking position (by retracting the respective locking body 108, 112 in the respective Guide rails 106, 110 to bring the adapter device 100 into a lockable position) and an inner detent position (by retracting the respective latch bodies 108, 112 from the respective guide rail 106, 110 to completely clear the guide rails 106, 110).
  • the described configuration of the first coupling structures 106 to 108 and the second coupling structures 110 to 112 allows either only the first receiving body 10 or only the second receiving body 102 by means of the coupling structures 106 to 108, 110 to 112 on the adapter device 100 either in a vertical detachably displaceable stackable state (state 1) can be transferred or by means of pushing on and locking on the first coupling structures 106 to 108 or the second coupling structures 110 to 112 in a vertically undetachably coupled state (state 2) can be transferred:
  • FIG. 1 to FIG. 4 shown receiving body 10 by vertically lowering the adapter device 100 in the position of the locking body 108, 112 according to FIG. 5 is placed, get the grooves 36 at the locking feet 34 of the receiving body 10 (see FIG. 3 ) in engagement with vertical projections of the first locking body 108 of the adapter device 100, which according to FIG. 5 partially retracted in the first guide rails 106.
  • the receiving grooves 36 on the locking feet 34 of the receiving body 10 and the supernatants of the first locking body 108 of the adapter device 100 then ensure that the receiving body 10 at any time vertically from the adapter device 100 can be lifted again (that is, by an inverse movement for stacking movement), but is protected by the positive connection between the receiving grooves 36 on the locking feet 34 of the receiving body 10 and the supernatants of the first locking body 108 from a displacement in a horizontal plane (state 1).
  • the receiving body 10 may be in front of the adapter device 100 according to FIG. 5 are arranged so that the front-side coupling lugs 38 of the receiving body 10 are arranged in the first guide rails 106 between the respective front-side first locking bodies 108 and the respective rear-side first locking bodies 108 of the adapter device 100. Then, the activation of the vertically undetachably coupled state 2 is completed by the receiving body 10 is lowered completely in the horizontal plane, so that the rear coupling lugs 38 of the receiving body 10 in the first guide rails 106 immerse.
  • the thus positioned receiving body 10 is displaced along the first guide rails 106 until both the front-side coupling lugs 38 and the rear-side coupling lugs 38 are positioned below the respective first locking bodies 108.
  • this state 2 is a lifting of the receiving body 10 of the adapter device 100 due to the positive connection between the coupling lugs 38 on the one hand and the first locking bodies 108 and the first guide rails 106 on the other hand impossible.
  • separation of the receiving body 10 from the adapter device 100 is possible by horizontally pushing the receiving body 10 away from the adapter device 100, namely with an inverse sliding movement compared to that with which the vertically undetachably coupled state 2 has been activated.
  • the first coupling structures 106 to 108 further include a first additional locking device 107 in the form of receiving grooves in the support means 104 for additionally displaceably locking the first receiving body 10, when it is pushed and locked on the support means 104 and is thus in state 2. If the coupling lugs 38 of the first receiving body 10 are arranged below the projections of the first locking bodies 108, a linear displacement of the first receiving body 10 along the first guide rails 106 is still possible.
  • the second coupling structures 110 to 112 have a second additional locking device 111 in the form of receiving grooves in the carrier device 104 to the additional non-displaced locking of the second receiving body 102 when it is pushed onto the support means 104 and locked.
  • first receiving body 10 is not mounted on the adapter device 100, there is room for receiving the second, larger receiving body 102.
  • the assembly and disassembly of the larger receiving body 102 on the adapter device 100 is carried out in a similar manner as described for the first receiving body 10, instead of the first coupling structures 106 to 108, the second coupling structures 110 to 112 are used.
  • the adapter device 100 has stop structures 114 which can be folded in and out relative to the carrier device 104 and which are set up after the first receiving body 10 or the second receiving body 102 has been slid onto the carrier device 104, the respective receiving body 10, 102 the stop structures 114 abuts in a locking position in which the respective receiving body 10, 102 is locked to the adapter device 100 or capable of locking. So proposes the respective receiving body 10, 102 on the front of the stop structures 114, he is in the correct position that the locking feet 34 are located under the respective locking bodies 108, 112 and the locking slide 40 of the respective receiving body 10, 102 at the position of respective additional locking device 107, 111 are located. As a result, a fault-robust and intuitive operation of the adapter device 100 is made possible.
  • mushroom-shaped adapter connection structures 118, 120 are integrally provided.
  • the adapter connection structures 118 are mushroom-shaped projections, whereas the adapter connection structures 120 are correspondingly shaped and dimensioned mushroom-shaped undercuts or recesses.
  • Several adapter devices 100 of the in FIG. 5 and FIG. 6 shown type can be serially connected by a respective mushroom-shaped supernatant into a respective mushroom-shaped undercut is introduced positively.
  • the respective guide rails 106 and 110 of the coupled adapter devices 100 are aligned with each other, so that in a corresponding, the guide rails 106 and 110 free, sliding state of the locking body 108 and 112, a corresponding receiving body 10, 102 on several adapter devices 100 away can be pushed to a desired destination position.
  • the carrier device 104 vertically penetrating attachment structures 122 according to FIG. 5 and FIG. 6 are formed in the form of through-mounting holes for receiving fastening screws, serve to attach the adapter device 100 to a mounting body, such as on a mounting device 200 (see FIG. 9 ), an extension device 300 (see FIG. 11 ), a wall (not shown), etc.
  • a recess in the carrier 104 forms a carrying handle 124 for supporting the adapter device 100 by a user.
  • the adapter device 100 further comprises stiffening structures 126, which are designed to stiffen the carrier device 104 formed from plastic. This increases the stability of the adapter device 100.
  • a bottom anti-slip device 116 for protecting the adapter device 100 from slipping on a carpet background is in FIG. 6 in a stowed on the carrier 104 inactive state and in detail in FIG. 8 shown.
  • FIG. 8 shows a slip guard of the anti-slip device 116 with an array of spikes 118 of the adapter device 100 according to FIG. 5 and FIG. 6 , According to FIG. 6
  • the anti-slip device 116 in a deactivated state, the anti-slip device 116 is clamped to a bottom surface of the carrier 104 and thereby stowed.
  • the anti-slip device 116 includes a two-dimensional array of bottom-side spikes 118, which are adapted to penetrate when placing the adapter device 100 on the carpet surface in this.
  • the anti-slip device 116 is selectively stowed deactivated on the carrier device 104 (see FIG. 6 ) or to enable the anti-slip protection relative to the carrier device 104 repositionable.
  • the anti-slip device 116 is formed from two slidable strips arranged on the base device 104 on the base side, which in the activated state can be arranged in a V-shaped manner facing one another at an underside of the carrier device 104, which protrudes on the underside.
  • the slip strips are removed from the in FIG. 6 shown inactive and jammed on the support means 104 position out and temporarily removed from the support 104 and arranged in mutually angled strip receivers 191 at the bottom of the support means 104 so that the spikes 118 projecting on the underside on the support means 104 and thereby providing a Anti-slip protection in a carpet background (not shown) can einkrallen.
  • the Verrisonmannn are designed so that they can be positively recorded both with its narrow side of the strip holders 191 to form a connector and on the other hand can be set back vertically with its broad side of the Verstaunessn the support means 104 to form a connector.
  • FIG. 9 shows a three-dimensional view of a mounting device 250 mounted on a motor vehicle seat 202 from a mounting device 200 to be described in more detail below and an adapter device 100 mounted thereon according to an exemplary embodiment of the invention. Further shows FIG. 9 a detail 277 showing the assembly of plug-in elements 206 of the mounting device 200 to fixing structures 208 of the motor vehicle seat 202, which are connected to a body of a motor vehicle containing the motor vehicle seat 202.
  • Some of the features of the mounting device 250 according to FIG. 9 are also in another, in FIG. 10 and FIG. 12 to FIG. 15 shown mounting device 250 and there partially visible better, so that in the following description to FIG. 9 partly on FIG. 10 and FIG. 12 to FIG. 15 Reference is made.
  • the mounting device 250 shown in FIG. 1 is made up of the mounting device 200 as the mounting base and the adapter device 100 (in particular, the one shown in FIG FIG. 5 and FIG. 6 shown adapter device 100) for attaching receiving bodies 10, 102 formed on the motor vehicle seat 202.
  • the adapter device 100 is mounted to a mounting structure 210 of the mounting device 200 using four bolts in four corner regions of its support 104.
  • the bolts are passed through the mounting structures 122 of the adapter device 100 and inserted into the mounting structure 210 and screw-mounted.
  • the mounting structure 210 thus serves to mount the adapter device 100 in such a way that their receiving surface for attaching receiving bodies 10, 102 on the top remains freely accessible for a custom assembly.
  • the mounting structure 210 is as better in FIG FIG. 13 to FIG. 15 formed by vertical and hollow metal pipe pieces, wherein the threaded bolts are passed through the adapter device 100 and the metal pipe pieces and bolted there.
  • Each of the four bolts has on a surface of the bolt head a corresponding drive (for example, a Imbus drive) for engaging a drive tool (for example, an Allen key).
  • the mounting device 200 comprises a base body 204 in the form of a carriage-like metal rod construction for placing on the motor vehicle seat 202 and for holding the adapter device 100 at a distance from the motor vehicle seat 202.
  • the base body 204 is formed as a metallic rod construction of hollow bent and partially welded tubes.
  • This linkage construction includes opposing first and second linkages 212 that extend parallel to one another and extend, for example, substantially horizontally along a seat surface 214 of the motor vehicle seat 202.
  • the first linkages 212 are in FIG. 9 only partially visible, since they are located in the mounted state of the adapter device 100 below the adapter device 100.
  • an upper-side working surface of the adapter device 110 for mounting or dismounting receiving bodies 10, 102 is also kept accessible to a user in a state of the mounting device 250 mounted on the motor vehicle seat 202.
  • the linkage structure has two opposing and according to FIG.
  • the second linkage 216 is in contact with the seatback 218 tilting the fixture 250.
  • the second link 216 adjacent the seat back 218 extends as in FIG FIG. 9 shown substantially further vertically upward than the opposite other of the second linkage 216, which forms one of the backrest 218 farthest end of the base body 204.
  • the mounting device 200 contains two according to the Isofix standard (according to the standard ISO 13216, in particular in the version of 1999 or 2004 or 2006) formed plug elements 206, by means of a respective, screwed to the base body 204 and here formed of plastic guide receptacle 224th (please refer FIG. 10 ) are mounted for receiving a respective plug element 206. If a respective one of the plug elements 206 is positively inserted into a respective one of the guide receptacles 224 (which can also be done by tightening flexible connecting elements 220 described in more detail below), the plug elements 206 are in a well-defined position in which a tilt-free fixation of the mounting device 250 the vehicle seat 202 is reached. The plug elements 206 serve to anchor the mounting device 200 to the fixing structures 208 of the motor vehicle seat 202, as shown in the detail 277.
  • Isofix standard according to the standard ISO 13216, in particular in the version of 1999 or 2004 or 2006
  • the plug-in elements 206 of the mounting device 200 are designed as Isofix plug-in elements which are designed for anchoring to Isofix fixing structures 208 of the motor vehicle seat 202 rigidly connected to the motor vehicle body.
  • the plug-in elements 206 can be inserted into the respective guide receptacles 224.
  • the respective guide receptacles 224 formed as straps flexible connecting elements 220 are performed, at one end of the plug-in elements are attached.
  • the plug-in elements 206 mounted on the straps are fastened to the base body 204.
  • the plug elements 206 have latching hooks, which when inserted into the Engage as a U-shaped hook fixing structures 208 engage in this and thereby form a reliable click connection.
  • the mounting device 200 further comprises the in FIG. 10 clearly visible tensioning device 222, which is rigidly attached to the remote from the second linkage 216 of the base body 204.
  • An end of the flexible connecting elements 220 facing away from the backrest 218 can be guided by the tensioning device 222.
  • the flexible connectors 220 may be tightened by applying a tensile force to the end of the flexible connectors 220 and the tensioner 222 may be operated by a user to pinch the flexible connectors 220 after anchoring the male members 206 to the fixing structures 208 to fix the tensioning device 222 in the tensioned state.
  • FIG. 10 clearly visible tensioning device 222, which is rigidly attached to the remote from the second linkage 216 of the base body 204.
  • An end of the flexible connecting elements 220 facing away from the backrest 218 can be guided by the tensioning device 222.
  • the flexible connectors 220 may be tightened by applying a tensile force to the end of the flexible connectors 220 and the tensioner 222
  • the flexible connecting elements 220 may be formed of a first belt, at both ends of the plug elements 206 are mounted, and which is performed by a loop at one end of a second belt of the flexible connecting elements 220, wherein the opposite second end of the second Gurts is performed by the tensioning device 222.
  • the mounting device 200 may include an adjusting device configured to set a height and / or a tilt angle of the adapter device 100 mounted on the mounting device 200. This can be done at a tilted Seat 214 are still provided a horizontal working surface of the adapter device 100.
  • rollers may be attached to the mounting device 200 on the bottom side (screw-on, for example) to move the mounting device 200 in a state separated from the motor vehicle seat 202.
  • Such attachment of rollers to the mounting device 200 can be done in a similar manner as in FIG FIG. 17 for rollers 312 of an extender 300.
  • FIG. 10 shows a bottom view of a mounting device 200, similar to the mounting device 200 according to FIG. 9 is configured with mounted thereon adapter device 100th FIG. 10
  • the flexible connecting elements 220 have a first belt, which connects the two plug elements 206 together, and have a second belt with a tubular end through which the first belt is passed. An opposite end of the second belt is passed through the tensioning device 222.
  • FIG. 11 11 shows an expansion assembly 380 according to an exemplary embodiment of the invention comprising a lower-side expansion device 350, a storage box attached thereto as a receiving body 352 and an upper-side expansion device 350 mounted on the receiving body 352 on the upper side.
  • the lower-side expansion device 350 is composed of a lower-side expansion device 300 and an adapter device mounted thereon 100 according to FIG. 5 and FIG. 6 built up.
  • the upper-side expansion device 350 is composed of an upper-side expansion device 300 and a further adapter device 100 according to FIG FIG. 5 and FIG. 6 constructed and attached to the top of the receiving body 352, for example by means of screw.
  • FIG. 11 is not shown, at the coupling structures 106 to 108, 110 to 112 on the upper-side adapter device 100 at least one further receiving body 10, 102 (not shown) are mounted, for example, a suitcase.
  • Reference numerals 304, 306, 312, 314 and 317 are in FIG. 11 some components of the expansion device 300 shown or indicated. These components are referred to below FIG. 16 to FIG. 20 explained in more detail.
  • FIG. 12 shows a receiving assembly 150 from a suitcase (see FIG. 1 to FIG. 4 ) for transporting goods to be transported formed receiving body 10 and an adapter device designed for its attachment 100 (see FIG. 5 and FIG. 6 ) according to an exemplary embodiment of the invention, wherein the adapter device 100 (and thus the receiving assembly 150) in turn to the mounting device 200 according to FIG. 10 is mounted.
  • the receiving body 10 is not yet mounted on the adapter device 100.
  • the receiving body 10 may also be a larger suitcase (see receiving body 102 according to FIG. 18 or FIG. 19 ) are mounted on the adapter device 100.
  • closure means 197 By means of closure means 197, a respective one of the receiving bodies 10, 102 can be opened in a user-defined manner in order to gain access to an interior or to be locked in a locking manner.
  • the first receiving body 10 has further first coupling structures 34, 36, 38, 40 (see description to FIG. 1 to FIG. 4 ), which are provided exclusively on the body 12 of the first receiving body 10, and are positioned and dimensioned for coupling with the first coupling structures 106 to 108 of the adapter device 100.
  • the second receiving body 102 which can be mounted on the adapter device 100 as an alternative to the first receiving body 10, has further second coupling structures 34, 36, 38, 40 (see description) FIG. 1 to FIG. 4 ) exclusively on its body 12 (see FIG. 18 or FIG. 19 ) positioned and dimensioned for coupling with the second coupling structures 110-112 of the adapter device 100.
  • the further first coupling structures 34, 36, 38, 40 and the further second coupling structures 34, 36, 38, 40 are designed both for the vertically detachable displacement-assured stacking of the first receiving body 10 and the second receiving body 102 on the adapter device 100 according to state 1 as also for vertically undependable coupling of the first receiving body 10 and the second receiving body 102 to the adapter device 100 according to state 2 (without anti-shift) or state 3 (with anti-displacement) contribute.
  • FIG. 13 shows the receiving assembly 150 according to FIG. 12 in state 1, in which the receiving body 10 vertically removably displaced displaced on the adapter device 100 is arranged.
  • the vertically detachably displaceably secured stacking is achieved by lower-side receiving grooves 36 of locking feet 34 on outer lower-side edge regions of the first receiving body 10 (or the second receiving body 102) and by corresponding projections of the locking structures 108 and 112 of the adapter device 100.
  • the adapter device 100, the receiving body 10 and the mounting device 200 together form a mounting arrangement 280 according to an exemplary embodiment of the invention.
  • FIG. 14 shows the receiving assembly 150 according to FIG. 12 in an operating state in which the receiving body 10 is arranged according to state 2 vertically undetachably, but horizontally displaceable coupled to the adapter device 100.
  • the vertically undependable coupling is accomplished by underside coupling lugs 38 of locking feet 34 at outer lower edge portions of the first receiving body 10 (or the second receiving body 102) in cooperation with the locking structures 108 and 112 of the adapter device 100.
  • the further first coupling structures 34, 36, 38, 40 and the further second coupling structures 34, 36, 38, 40 are formed such that, in cooperation with the first coupling structures 106 to 108 or Second coupling structures 110 to 112 of the adapter device 100, the first receiving body 10 or the second receiving body 102 on the one hand and the adapter device 100 on the other hand in the superposed vertically undetachably coupled to each other state are selectively against each other (see state 2 according to FIG. 14 ) or by means of operating especially the coupling structures 40, 107, 111 against each other are strig.
  • FIG. 15 shows the receiving assembly 150 according to FIG.
  • the part of the coupling structures 40, 107, 111, which in the vertically undetachably coupled to each other undoubtedly state 3 contribute to the shift securing (see FIG. 15 ) is independently formed and operable from another part of the coupling structures 34, 36, 38, 106, 108, 110, 112 which are adapted for vertically detachable non-slip stacking according to state 1 (see FIG FIG. 13 ) as well as vertically undoubtedly coupling with each other according to states 2 and 3 (see FIG. 14 and FIG. 15 ).
  • FIG. 16 shows a three-dimensional view of an expansion device 350 from an expansion device 300 and an adapter plate 100 according to an exemplary embodiment of the invention.
  • FIG. 17 shows the expansion device 350 according to FIG. 16 in a bottom view.
  • FIG. 18 shows an expansion assembly 380 from the expansion device 350 according to FIG. 16 and a receiving body 102 mounted thereon (in the form of a larger suitcase relative to the suitcase forming the receiving body 10), which is fastened to the adapter device 100 by means of the second coupling structures 110 to 112.
  • FIG. 19 shows the expansion assembly 380 according to FIG. 18 with a further receiving body 10 of smaller size and with a further adapter device 100, wherein the further adapter device 100 on the receiving body 102 according to FIG. 18 attached and the further receiving body 10 is attached by means of the first coupling structures 106 to 108 on the other adapter device 100.
  • FIG. 20 Finally, a three-dimensional view of the partially disassembled expansion device 300 without adapter device 100 is shown.
  • the extension device 300 is used for spatially expanding a receiving surface of the adapter device 100, ie the active surface of the adapter device 300, on which the coupling structures 106 to 108, 110 to 112 are arranged for coupling the various receiving bodies 10, 102, thereby starting from the adapter device 100th the possibility of attachment of an even larger receiving body 352 (for example a storage box, cf. FIG. 11 ).
  • the extension device 300 has a support structure 302, which is designed to support the adapter device 100 in four peripheral corner regions of its carrier device 104 and best in FIG FIG. 17 and FIG. 20 is recognizable. As in FIG. 20 can be seen, this is provided as part of the support structure 302 four support pads 331, on which the adapter device 100 rests with physical contact.
  • the support structure 302 is configured structurally, the adapter device 100 exclusively in the area To support two opposite side edges 188 of the adapter device 100, more precisely in the four corners of the adapter device 100.
  • the support structure 302 is further configured to support the adapter device 100 exclusively by means of the support blocks 331 and thus exclusively on a lower side of the adapter device 100 and thereby completely free the upper-side receiving surface of the adapter device 100 for fastening receiving bodies 10, 102.
  • the support structure 302 is formed from support elements 308 in the form of the four slightly resiliently mounted support blocks 331 and the connecting struts 310 connecting the support elements 308.
  • the support members 308 are made of plastic, whereas the connecting struts 310 are made of metal.
  • An extension structure 304 of the expansion device 300 which is formed of plastic, is set up to widen the receiving surface of the adapter device 100 partially beyond its spatial boundary in a state of the adapter device 100 supported by the support structure 302.
  • Two U-shaped extension pieces of the extension device 300, at the two ends are each two of the support blocks 331 nestle for this purpose in the assembled state of a respective side edges 188 of the adapter device 100 and therefore put them on the side.
  • the bottom of the two U-shaped extension pieces of the expansion device 300 is equipped with reinforcing struts 324 to increase the carrying capacity of the expansion device 300.
  • the extension structure 304 is thus designed to expand the adapter device 100 exclusively in the region of the two opposite side edges 188 and in adjacent corner regions 190 of the adapter device 100 (see FIG FIG. 16 ). Furthermore, the extension structure 304 is configured such that in a state supported by the support structure 302 of the adapter device 100, the active receiving surface of the adapter device 100 is substantially flush with the active extension surface of the extension structure 304 (see FIG FIG. 16 ).
  • the extension structure 304 extends so far outward that when fastening the receiving body 352 exclusively to attachment structures 306 of the expansion device 300, the extension structure 304 extends further outwardly than the received receiving body 352.
  • the U-shaped expansion pieces also serve as impact protection for the receiving body 352nd
  • the attachment structures 306, according to FIG. 16 to FIG. 20 are formed in the expansion surface of the U-shaped extension pieces in the form of four grooves, are formed in the extension surface of the extension structure 304, and are specially adapted for fixing feet or bottom portions of a storage body 352 formed as a storage box (see FIG FIG. 11 ). It is advantageous for the carrying stability that the receiving body 352 is supported exclusively by the extension device 300, not by the adapter device 100. Similarly, when one of the receiving bodies 10, 102 is attached to the expansion device 350, the carrying load is received exclusively by the adapter device 100. This Tragelogik has been found to be even more reliable than a support of a receiving body 10, 102, 352 partly on the adapter device 100 and partly on the expansion device 300th
  • rollers 312 are screwed, which are for rolling away the extension device 300th together with adapter device 100 serve.
  • the rollers 312 are provided with locking structures 317. When a user operates the locking structures 317, the rollers 312 are prevented from moving.
  • a locking structure 314 is attached to the extension structure 304 approximately at the center of the two opposing U-shaped extension pieces, which serves to be locked to the receiving body 352 when it is received on the extension structure 304.
  • a connecting structure 316 on the support blocks 331 and on the connecting struts 310 is arranged for connecting the expansion device 300 to the adapter device 100 by screwing a threaded mounting bolt.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Purses, Travelling Bags, Baskets, Or Suitcases (AREA)

Claims (14)

  1. Dispositif adaptateur (100) pour la fixation de réceptacles (10, 102) de dimensions différentes, dans lequel le dispositif adaptateur (100) présente :
    un dispositif porteur (104) pour porter un réceptacle fixé (10, 102) ;
    des premières structures de couplage (106 à 108) au niveau du dispositif porteur (104), qui est réalisé pour la fixation d'un premier réceptacle (10) d'une première dimension par enfilage et verrouillage au niveau des premières structures de couplage (106 à 108) ;
    des deuxièmes structures de couplage (110 à 112) au niveau du dispositif porteur (104), qui est réalisé pour la fixation d'un deuxième réceptacle (102) d'une deuxième dimension par enfilage et verrouillage au niveau des deuxièmes structures de couplage (110 à 112),
    dans lequel les premières structures de couplage (106 à 108) présentent au moins un premier rail de guidage (106), dans lequel le premier réceptacle (10) peut être enfilé le long d'au moins un premier rail de guidage (106) jusqu'à une première position de verrouillage,
    caractérisé en ce que
    les premières structures de couplage (106 à 108) présentent au moins un premier corps de verrouillage (108), dans lequel lors de l'enfilage du premier réceptacle (10) le long d'au moins un premier rail de guidage (106) jusqu'à la première position de verrouillage, au moins un premier corps de verrouillage (108) est réalisé pour le verrouillage inamovible verticalement au niveau de la première position de verrouillage du premier réceptacle (10) au niveau du dispositif adaptateur (100).
  2. Dispositif adaptateur (100) selon la revendication 1, caractérisé en ce que les deuxièmes structures de couplage (110 à 112) présentent au moins un deuxième rail de guidage (110), en particulier deux deuxièmes rails de guidage (110) parallèles l'un à l'autre et espacés l'un de l'autre à une deuxième distance différente de la première distance, dans lequel le deuxième réceptacle (102) peut être enfilé le long d'au moins un deuxième rail de guidage (110) jusqu'à une deuxième position de verrouillage.
  3. Dispositif adaptateur (100) selon la revendication 2, caractérisé en ce que les deuxièmes structures de couplage (110 à 112) présente au moins un deuxième corps de verrouillage (112), en particulier deux corps de verrouillage (112) ou plus espacés le long d'au moins un deuxième rail de guidage (110), dans lequel lors de l'enfilage du deuxième réceptacle (102) le long d'au moins un deuxième rail de guidage (110) jusqu'à la deuxième position de verrouillage, au moins un deuxième corps de verrouillage (112) est réalisé pour le verrouillage inamovible verticalement au niveau de la deuxième position de verrouillage du deuxième réceptacle (102) au niveau du dispositif adaptateur (100).
  4. Dispositif adaptateur (100) selon la revendication 2 ou 3, caractérisé en ce qu'au moins un premier corps de verrouillage (108) et/ou au moins un deuxième corps de verrouillage (112), en particulier avant un verrouillage ou pour le verrouillage du réceptacle respectif (10, 102) est déplaçable angulairement, en particulier perpendiculairement, par rapport à un rail de guidage respectif (106, 110), en particulier est déplaçable dans le rail de guidage respectif (106, 110) en laissant libre une fente entre un fond du rail de guidage respectif (106, 110) et le corps de verrouillage respectif (110, 112).
  5. Dispositif adaptateur (100) selon l'une quelconque des revendications 1 à 4, caractérisé en ce que les premières structures de couplage (106 à 108) et/ou les deuxièmes structures de couplage (110 à 112) sont réalisées, que le premier réceptacle (10) et/ou le deuxième réceptacle (102) :
    est empilable de manière à être protégé contre le déplacement verticalement amovible ; ou
    peuvent être couplés les uns avec les autres de manière à être verticalement inamovibles par enfilage et verrouillage au niveau des premières structures de couplage (106 à 108) et/ou au niveau des deuxièmes structures de couplage (110 à 112)
    au moyen des structures de couplage (106 à 108, 110 à 112) sur le dispositif adaptateur (100) de manière sélective,
    dans lequel en particulier au moins un premier corps de verrouillage (108) et/ou au moins un deuxième corps de verrouillage (112) est ou sont réalisé(s), que le premier réceptacle (10) et/ou le deuxième réceptacle (102) est empilable de manière à être protégé contre le déplacement verticalement amovible au moyen de l'un respectif des corps de verrouillage (108, 112) sur le dispositif adaptateur (100).
  6. Dispositif adaptateur (100) selon l'une quelconque des revendications 1 à 5, présentant un dispositif anti-glissement côté sol (116) pour la protection du dispositif adaptateur (100) contre un glissement sur un sol, en particulier un sol en moquette.
  7. Dispositif adaptateur (100) selon la revendication 6, présentant au moins une des caractéristiques suivantes :
    caractérisé en ce que le dispositif anti-glissement (116) présente un ensemble de pointes côtés sol (118), qui sont aménagées pour pénétrer dans le dispositif adaptateur (100) lors de la pose de celui-ci sur le sol ;
    dans lequel le dispositif anti-glissement (116) peut de manière sélective être rangé désactivé au niveau du dispositif porteur (104) ou repositionné contre le dispositif porteur (104) pour l'activation de la protection anti-glissement ;
    dans lequel le dispositif anti-glissement (116) présente deux baguettes de glissement agencées côté sol au niveau du dispositif porteur (104), qui sont agencées ou peuvent être agencées angulairement l'une par rapport à l'autre, en particulier tournées l'une vers l'autre en forme de V.
  8. Dispositif adaptateur (100) selon l'une quelconque des revendications 1 à 7, présentant au moins une des caractéristiques suivantes :
    caractérisé en ce que le dispositif porteur (104) est réalisé en tant que plaque porteuse ;
    présentant au moins une structure de butée (114), en particulier rétractable et déployable par rapport au dispositif porteur (104), qui est aménagée qu'après l'enfilage du premier réceptacle (10) et/ou du deuxième réceptacle (102), le réceptacle respectif (10, 102) bute contre au moins une structure de butée (114) dans une position de verrouillage, dans laquelle le réceptacle respectif (10, 102) est verrouillable ou verrouillé au niveau du dispositif adaptateur (100) ;
    dans lequel les premières structures de couplage (106 à 108) et/ou les deuxièmes structures de couplage (110 à 112) présentent en outre un dispositif de verrouillage supplémentaire (107) pour le verrouillage protégé contre le déplacement supplémentaire du premier réceptacle (10), lorsque celui-ci est enfilé et verrouillé au niveau du dispositif porteur (104), et/ou présentent un deuxième dispositif de verrouillage supplémentaire (111) pour le verrouillage protégé contre le déplacement supplémentaire du deuxième réceptacle (102), lorsque celui-ci est enfilé et verrouillé au niveau du dispositif porteur (104) ;
    présentant des structures de liaison d'adaptateur (118, 120) au niveau de côtés opposés du dispositif porteur (104), qui sont aménagées pour la liaison du dispositif adaptateur (100) à un autre dispositif adaptateur (100), en particulier identique, qui présente des structures de liaison d'adaptateur (118, 120) correspondantes, dans lequel en particulier les structures de liaison d'adaptateur (118, 120) présente au niveau d'un côté du dispositif porteur (104) au moins un surplomb de liaison (118), qui est réalisé pour la mise en prise par complémentarité de forme par au moins une contre-dépouille de liaison (120) au niveau d'un autre côté opposé du dispositif porteur (104) ;
    présentant des structures de fixation (122) pour la fixation du dispositif adaptateur (100) à un corps de fixation (200, 300), en particulier des trous de fixation pour la réception de vis de fixation d'un corps de fixation (200, 300) ;
    dans lequel le dispositif porteur (104) présente une poignée de transport (124) pour le transport du dispositif adaptateur (100) par un utilisateur ;
    présentant des structures de renforcement (126), en particulier en acier, qui sont réalisées pour le renforcement du dispositif porteur (104), en particulier en plastique.
  9. Ensemble de réception (150), présentant :
    un dispositif adaptateur (100) selon l'une quelconque des revendications 1 à 8 pour la fixation de réceptacles (10, 102) de dimensions différentes ;
    un premier réceptacle (10) d'une première dimension, qui est réalisé pour la fixation au dispositif porteur (104) par enfilage et verrouillage au niveau des premières structures de couplage (106 à 108).
  10. Ensemble de réception (150) selon la revendication 9, présentant au moins une des caractéristiques suivantes :
    caractérisé en ce que le premier réceptacle (10) et/ou le deuxième réceptacle (102) est ou sont réalisé(s) pour pouvoir de manière sélective être empilé(s) ou couplé(s) avec un réceptacle (10', 102) similaire de profondeur identique ou différente ;
    présentant en outre un deuxième réceptacle (102) d'une deuxième dimension différente de la première dimension, qui est réalisé pour la fixation au niveau du dispositif porteur (104) par enfilage et verrouillage au niveau des deuxièmes structures de couplage (110 à 112) ;
    dans lequel le premier réceptacle (10) et/ou le deuxième réceptacle (102) est ou sont une valise pour transporter des produits transportés, dans lequel la valise présente en particulier un corps (12) et un couvercle (14) relié ou pouvant être relié au corps (12), dans lequel dans un état fermé, un espace de réception est formé entre le corps (12) et le couvercle (14) pour la réception de produits transportés inaccessible de l'extérieur, dans lequel dans un état ouvert, l'espace de réception est accessible de l'extérieur.
  11. Ensemble de réception (150) selon la revendication 9 ou 10, caractérisé en ce que le premier réceptacle (10) présente d'autres premières structures de couplage (34, 36, 38, 40), en particulier exclusivement au niveau du corps (12) du premier réceptacle (10), pour le couplage avec les premières structures de couplage (106 à 108) et/ou le deuxième réceptacle (102) présente d'autres deuxièmes structures de couplage (34, 36, 38, 40), en particulier exclusivement au niveau du corps (12) du deuxième réceptacle (102), pour le couplage avec les deuxièmes structures de couplage (110 à 112), dans lequel en particulier au moins une partie des autres premières structures de couplage (34, 36, 38, 40) et/ou au moins une partie des autres deuxièmes structures de couplage (34, 36, 38, 40) contribuent aussi bien à l'empilage protégé contre le déplacement verticalement amovible du premier réceptacle (10) et/ou du deuxième réceptacle (102) au niveau du dispositif adaptateur (100) qu'au couplage l'un avec l'autre verticalement inamovible du premier réceptacle (10) et/ou du deuxième réceptacle (102) au niveau du dispositif adaptateur (100), dans lequel en outre en particulier les autres premières structures de couplage (34, 36, 38, 40) et/ou les autres deuxièmes structures de couplage (34, 36, 38, 40) sont réalisées, qu'en coopération avec les premières structures de couplage (106 à 108) et/ou les deuxièmes structures de couplage (110 à 112), le premier réceptacle (10) et/ou le deuxième réceptacle (102) d'une part et le dispositif adaptateur (100) d'autre part à l'état couplé l'un avec l'autre inamovible verticalement l'un au-dessus de l'autre
    sont déplaçables l'un par rapport à l'autre ; ou
    peuvent être protégés contre le déplacement l'un par rapport à l'autre par actionnement des structures de couplage (40, 107, 111),
    de manière sélective,
    dans lequel encore en outre en particulier une partie des structures de couplage (40, 107, 111), qui contribuent à l'état couplé l'un avec l'autre inamovible verticalement l'un au-dessus de l'autre à la protection contre le déplacement, sont réalisées et actionnables indépendamment d'une autre partie des structures de couplage (34, 36, 38, 106, 108, 110, 112), qui contribuent à l'empilage protégé contre le déplacement amovible verticalement ainsi qu'au couplage l'un avec l'autre inamovible verticalement.
  12. Ensemble de réception (150) selon la revendication 11, présentant au moins une des caractéristiques suivantes :
    caractérisé en ce que les autres premières structures de couplage (34, 36, 38, 40) et/ou les autres deuxièmes structures de couplage (34, 36, 38, 40), avec lesquelles le premier réceptacle (10) et/ou le deuxième réceptacle (102) d'une part et le dispositif adaptateur (100) d'autre part sont empilables de manière à être protégés contre le déplacement amovible verticalement l'un au-dessus de l'autre, sont réalisées sous forme de rainures de réception (36) côté inférieur agissant en tant que protection contre le déplacement à l'état empilé de pieds d'arrêt (34) au niveau de zones d'arête côté inférieur extérieures du premier réceptacle (10) et/ou du deuxième réceptacle (102) ;
    dans lequel les autres premières structures de couplage (34, 36, 38, 40) et/ou les autres deuxièmes structures de couplage (34, 36, 38, 40), avec lesquelles le premier réceptacle (10) et/ou le deuxième réceptacle (102) d'une part et le dispositif adaptateur (100) d'autre part peuvent être couplés l'un avec l'autre inamovibles verticalement l'un au-dessus de l'autre, sont réalisées sous forme de nez de couplage (38) côté inférieur agissant à l'état couplé de pieds d'arrêt (34) au niveau de zones d'arête côté inférieur extérieures du premier réceptacle (10) et/ou du deuxième réceptacle (102) ;
    dans lequel en particulier les pieds d'arrêt (34) s'étendent verticalement au-delà d'une surface de fond du premier réceptacle (10) et/ou du deuxième réceptacle (102) vers le bas, de sorte que le premier réceptacle (10) et/ou le deuxième réceptacle (102) peut être déposé au niveau des pieds d'arrêt (34) sur un sol.
  13. Ensemble de réception (150) selon l'une quelconque des revendications 11 ou 12, caractérisé en ce qu'une partie des structures de couplage (40, 107, 111), avec lesquelles le premier réceptacle (10) et/ou le deuxième réceptacle (102) d'une part et le dispositif adaptateur (100) d'autre part peuvent être protégés contre le déplacement l'un par rapport à l'autre à l'état couplé l'un avec l'autre inamovible verticalement l'un au-dessus de l'autre, sont réalisées sous forme de rainures de réception (107, 111) du dispositif adaptateur (100) et de coulisseaux d'arrêt (40) du premier réceptacle (10) et/ou du deuxième réceptacle (102), dans lequel les coulisseaux d'arrêt (40) sont insérables dans les rainures de réception (107, 111).
  14. Procédé de fixation de réceptacles (10, 102) de dimensions différentes au niveau d'un dispositif adaptateur (100), caractérisé en ce que le procédé présente :
    l'enfilage et le verrouillage d'un premier réceptacle (10) d'une première dimension au niveau de premières structures de couplage (106 à 108) au niveau d'un dispositif porteur (104) réalisé pour porter le premier réceptacle (10) du dispositif adaptateur (100), pour fixer ainsi le premier réceptacle (10) au dispositif adaptateur (100) ; et/ou
    l'enfilage et le verrouillage d'un deuxième réceptacle (102) d'une deuxième dimension au niveau de deuxièmes structures de couplage (110 à 112) au niveau du dispositif porteur (104), pour fixer ainsi le deuxième réceptacle (102) au dispositif adaptateur (100),
    dans lequel les premières structures de couplage (106 à 108) présentent au moins un premier rail de guidage (106), dans lequel le premier réceptacle (10) peut être enfilé le long d'au moins un premier rail de guidage (106) jusqu'à une première position de verrouillage,
    dans lequel les premières structures de couplage (106 à 108) présentent au moins un premier corps de verrouillage (108), dans lequel lors de l'enfilage du premier réceptacle (10) le long d'au moins un premier rail de guidage (106) jusqu'à la première position de verrouillage, au moins un premier corps de verrouillage (108) est réalisé pour le verrouillage inamovible verticalement au niveau de la première position de verrouillage du premier réceptacle (10) au niveau du dispositif adaptateur (100).
EP16184445.1A 2015-08-17 2016-08-17 Dispositif adaptateur pour receptacles de dimension differente Active EP3141353B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102015113590.6A DE102015113590A1 (de) 2015-08-17 2015-08-17 Adaptervorrichtung für Aufnahmekörper unterschiedlicher Größe

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EP3141353A1 EP3141353A1 (fr) 2017-03-15
EP3141353B1 true EP3141353B1 (fr) 2019-08-07

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DE (1) DE102015113590A1 (fr)
DK (1) DK3141353T3 (fr)
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PT (1) PT3141353T (fr)

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CN110475496A (zh) * 2017-04-11 2019-11-19 费斯托工具有限责任公司 适配器框架、组件以及抽吸装置
DE102017117182A1 (de) * 2017-07-28 2019-01-31 Adolf Würth Gmbh & Co Kg Schubladenstruktur für Aufnahmekörper

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US3886047A (en) * 1973-11-02 1975-05-27 Billups Rothenberg Inc Culture chamber
CH646109A5 (de) * 1980-07-11 1984-11-15 Elopak Ag Zwischenlagekorb.
GB2132173A (en) * 1982-12-21 1984-07-04 Pnel Mec S R L A panel for stacking paper containers of liquid products
ES2031022A6 (es) * 1988-02-25 1992-11-16 Nylex Corp Ltd Una bandeja mejorada para apilar y/o almacenar articulos.
DE3904053A1 (de) * 1989-02-10 1990-08-23 Dillinger Juergen Dipl Finanzw Baukastensystem
US5297681A (en) * 1990-08-20 1994-03-29 Gourley Mervin D Combined can stacker/advertising device
DE19900361C2 (de) 1999-01-07 2003-04-10 Tts Tooltechnic Systems Ag Behälteranordnung
DE20104108U1 (de) 2001-03-08 2001-06-07 Ceka Elektrowerkzeuge Ag + Co. Kg, Wattwil Verriegelbar stapelbarer Koffer
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CA2735679C (fr) 2009-06-29 2016-08-23 Tts Tooltechnic Systems Ag & Co. Kg Systeme de contenants empilables a verrouillage mutuel des contenants empiles
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ES2753546T3 (es) 2020-04-13
DE102015113590A1 (de) 2017-02-23
EP3141353A1 (fr) 2017-03-15
PT3141353T (pt) 2019-11-18
DK3141353T3 (da) 2019-10-28

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