EP3702171A1 - Dispositif de transport pour classeur - Google Patents

Dispositif de transport pour classeur Download PDF

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Publication number
EP3702171A1
EP3702171A1 EP19159422.5A EP19159422A EP3702171A1 EP 3702171 A1 EP3702171 A1 EP 3702171A1 EP 19159422 A EP19159422 A EP 19159422A EP 3702171 A1 EP3702171 A1 EP 3702171A1
Authority
EP
European Patent Office
Prior art keywords
transport device
side plates
cover plate
plate
tabs
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP19159422.5A
Other languages
German (de)
English (en)
Other versions
EP3702171B1 (fr
Inventor
Harald Markon
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.)
Individual
Original Assignee
Individual
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to EP19159422.5A priority Critical patent/EP3702171B1/fr
Priority to PCT/EP2020/050675 priority patent/WO2020173611A1/fr
Publication of EP3702171A1 publication Critical patent/EP3702171A1/fr
Application granted granted Critical
Publication of EP3702171B1 publication Critical patent/EP3702171B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B42BOOKBINDING; ALBUMS; FILES; SPECIAL PRINTED MATTER
    • B42FSHEETS TEMPORARILY ATTACHED TOGETHER; FILING APPLIANCES; FILE CARDS; INDEXING
    • B42F13/00Filing appliances with means for engaging perforations or slots
    • B42F13/40Filing appliances with means for engaging perforations or slots combined or formed with other articles, e.g. punches, stands

Definitions

  • the present invention relates to a transport device for at least one file, which has a back and two wings, comprising a frame with a base plate for supporting the back of the file, a cover plate and two side plates which hold the base plate and the cover plate at a predetermined distance from one another .
  • the WO 2009/092370 shows a belt-like device with which file folders can be wrapped in order to make them easier to handle.
  • a belt device is cumbersome to attach to the file folder and, in particular, is unstable, so that the file folder itself has a certain one Must have stability in order to be parked or transported.
  • the U.S. 3,167,226 a belt-based solution for carrying books.
  • a transport device of the type mentioned at the outset which has two tabs connected to the cover plate each for holding the free end of one of the wings, wherein the tabs are each shorter than said distance as seen in the distance direction, and the tabs being pivotable relative to the side panels.
  • the transport device enables a file folder to be transported to be secured in a stable manner in the frame by the tabs.
  • the frame continues to act as a robust transport box, and the shortness of the tabs means that the file folder can be fixed in an accessible manner in the frame.
  • there is no need to open or pivot an entire side surface which means that the transport device can also be opened and closed easily with one hand, for example.
  • the file folder is visible at all times even when it is fixed in the transport device.
  • files stowed in the transport device can be found quickly, which reduces the risk of the files being misplaced or lost.
  • the tabs are preferably each shorter than half the stated distance, preferably shorter than a quarter of the stated distance. If the flaps are significantly shorter than the sides, opening the flaps and thus removing the file from the transport device is further facilitated. If the flaps are shorter than a quarter of the specified distance, the flaps can even be opened with a casual movement of the hand. In addition, the visibility of the folder in the transport device increases with the shortness of the flaps.
  • the cover plate is connected to the side plates in such a way that it is torsionally rigid about an axis normal to the side plates, the tabs being pivotable relative to the cover plate about an axis normal to the side plates.
  • This has the effect that the cover plate cannot be rotated relative to the side plates, which increases the stability of the transport device as a whole.
  • the pivotability of the tabs with respect to the cover plate results in an intuitively simple possibility for the user to move around the transport device to open and to enclose the file folder in this safe for transport.
  • the tabs are rigidly connected to the cover plate and the cover plate can be pivoted relative to the side plates about an axis normal to the side plates. This enables both tabs to be rotated relative to the side plates with a single handle, which enables a file folder to be brought into and out of the transport device in a particularly stimulating way.
  • the file folder can be stored more securely in the transport device, since the width of the file folder between the rigid flaps brings about an additional holding mechanism.
  • the transport device preferably further comprises a belt, the ends of which can be connected to one of the straps in each case and which can be guided around the base plate in order to lock the straps in relation to the side plates.
  • the belt firstly ensures that the tabs are held in their position during transport and secondly that the belt offers additional resistance to the folder slipping out of the transport device, which essentially makes it impossible for the folder to fall out of the transport device.
  • the belt also has the advantage that its fastening is easy for the user to handle, since it can be anchored in both straps, for example.
  • the belt can be wrapped around the entire transport device, i.e. around the straps, the base plate and the cover plate, be shown around. This makes it possible on the one hand that the belt does not have to be attached to the straps, but on the other hand harbors the risk that the belt can slip off the transport device.
  • the transport device has at least one catch which is designed to lock the tabs relative to the side plates.
  • the catch has the advantage that it can be opened, for example, by pressing a single button to release the tabs. In addition, it means that, unlike belts, there are no other securing elements that could possibly be lost.
  • the side plates are preferably each pivotably connected to the base plate and the cover plate, so that the frame can be collapsed.
  • the collapsibility of the frame enables the transport device to be reduced in size in a simple manner after a file has been transported. On the one hand, this facilitates the further transport of the transport device without a file folder, but it also makes it easier to sell the transport device as bulk goods, since the transport device takes up less space in the collapsed state. In contrast to the fact that the transport device can be dismantled, its collapsibility means that individual parts cannot be lost, as is often the case with kits.
  • each side panel has a hinge centrally between the base panel and the cover panel in order to fold the side panels together. Due to the improved collapsibility by means of the hinge, the transport device takes up even less space in the collapsed state. In addition, folding and assembling is even more intuitive, since the cover plate now only has to be moved in the direction of the base plate or away from it.
  • the base plate is detachably connected to one of the side plates and inextricably linked to the other side plate. This has the effect that the bottom plate can be detached from one of the side plates in order to "unfold" the transport device.
  • This firstly enables the transport device to be more easily collapsed and, on the other hand, enables the transport device to be manufactured in one piece.
  • the transport device can be manufactured as a coherent "chain” of individual plates, which enables the transport device to be manufactured particularly easily.
  • a reinforcement plate is preferably hinged to the side plate which is detachably connected to the base plate and engages under the base plate in order to support it. If the base plate is only connected to the detachably connected side plate with a simple fastening, there is a risk that the base plate will fold down if the load is too great. With the reinforcement plate this problem is resolved because the detachable connections are now provided on both side panels, so that these are less stressed. This solution also enables the transport device to be manufactured in one piece.
  • the base plate is formed from two elements that can be interlocked with one another, one of which is detachably connected to one of the side plates and non-detachably connected to the other.
  • the interlocking elements of the base plate represent a particularly simple and at the same time stable solution for the base plate.
  • the interlocking elements can be connected intuitively, but on the other hand they create a stable connection that can carry the weight of the file.
  • material is saved here.
  • a one-piece production of the transport device can be made possible.
  • each side plate is passed through a slot at the end in the cover plate and is held in the slot by means of a projection.
  • This enables the transport device to be detachable in a modular, detachable manner, which is particularly advantageous if the cover plates are manufactured separately from the side plates and the base plate. Sliding the side panels into the slots is more stable than other releasable connections because there are fewer retaining elements.
  • the base plate can furthermore be hinged to one or both side plates or can be detached from both side plates at all.
  • the tabs can be designed in different ways.
  • the straps are one-piece, flat plates, which offers a particularly stable and inexpensive variant of the straps.
  • the tabs each comprise two parts, the first part being pivotably articulated on the cover plate and the second part being pivotably articulated on the first part.
  • This enables file folders of different thicknesses or several file folders to be accommodated in the transport device, the shape of the tabs being adapted in each case to the content of the transport device.
  • the tabs are designed as rigid angle tabs. This also enables the tabs to be adapted more flexibly to the content of the transport device.
  • the protruding angle of the angle brackets can penetrate into the transport device, for example, and clamp the file folder if the file folder in the transport device is only thin. This variant is particularly advantageous when the cover plate has a smaller width than the side plates, since the angle brackets act particularly well here as clamps.
  • the transport device has on the base plate, cover plate and / or Side plate latching lugs and recesses to be stackable with another identical transport device.
  • the latching lugs and latching recess are each arranged in opposite directions on preferably opposite plates, which enables stacking with an identical transport device.
  • the stackability is particularly advantageous when the transport devices are stowed or archived over a longer period of time. In such cases, the transport devices can be stacked without slipping, which increases the safety of storage.
  • the locking lugs also have the advantage that the transport device ensures an additional distance between the file folder and the environment, as a result of which the file folder becomes soiled less quickly.
  • Locking lugs are therefore preferably located on the base plate, the cover plate and the side plates, and particularly preferably also on the tabs.
  • Fig. 1 shows a transport device 1 for at least one file 2, which has a back 3 and two wings 4.
  • files 2 or books, notebooks or other printed matter with sufficient rigidity can be stored in the transport device 1.
  • file folders 2 can be arranged in opposite directions, for example two file folders 2 with the spine 3 down and a file folder 2 in between with the spine 3 up.
  • the transport device 1 comprises a frame 5 with a base plate 6 for supporting the back 3 of the file folder 2, a cover plate 7 with handle 7 'and two side plates 8, 9.
  • the side plates 8, 9 each have a predetermined length around the base plate 6 and to hold the cover plate 7 at a predetermined distance A from one another.
  • the distance A corresponds to a usual width of a file folder between the spine 3 and the free ends of the wings 4, for example between 20 cm and 50 cm, for example 28.5 cm ⁇ 10%.
  • the length L of the base plate 6 and the cover plate 7, with which the side plates 8, 9 to one another are held, corresponds to a usual height of a file folder 2, for example between 20 cm and 60 cm, for example 32 cm + 10%.
  • the widths B of the base plate 6, cover plate 7 and the two side plates 8, 9 can, for example, each be the same size and determine the capacity of the transport device 1, ie how many files 2 can be accommodated next to one another in the transport device 1.
  • a uniform width B can be 5-30 cm.
  • the widths B of the various plates 6, 7, 8, 9 can also be different depending on the embodiment, see later with reference to FIG Figures 5a and 5b .
  • the plates 6, 7, 8, 9 can for example be made of cardboard, plastic, metal or corresponding composite materials, e.g. coated cardboard or glass or carbon fiber reinforced plastic, and e.g. have a thickness of 1 - 20 mm.
  • the transport device 1 To hold the file or files 2 in the frame 5, the transport device 1 has two tabs 10, which are each connected to the cover plate 7 on an opposite longitudinal side thereof.
  • the tabs 10 each serve to hold the free end 4 'of one of the wings 4. If there are several file folders 2 in the transport device 1, each of the tabs 10 holds the free end 4' of the two outermost file folders 2.
  • the tabs 10 are in the direction a of the distance A, ie in the direction from the cover plate 7 to the base plate 6, seen shorter than the mentioned distance A.
  • the height H of the tabs 10 seen in the distance direction a can be 90% of the mentioned distance A, for example.
  • the tabs 10, viewed in the distance direction a are each shorter than half of the mentioned distance A or shorter than a quarter of the mentioned distance A.
  • the tabs 10 can be pivoted with respect to the side panels 8, 9, here in each case about an axis N which is normal to the side panels 8, 9.
  • the tabs 10 can only be pivoted against a predetermined resistance, for example.
  • the resistance is selected here in such a way that the tabs 10 do not pivot with respect to the side plates 8, 9 when forces occur during transport, but can be opened by means of a manual force.
  • the tabs 10 can be locked with respect to the side plates 8, 9, ie in a first state the tabs 10 can be pivoted with respect to the side plates 8, 9 and locked in a second state.
  • the transport device 1 can comprise a belt 11, the ends 12 of which can be connected to one of the tabs 10 and which can be guided around the base plate 6.
  • the ends 12 of the strap 11 can for example be anchored in a slot 13 of the respective bracket 10.
  • the belt 11 can be stretchable or inextensible and have a predetermined length so that the tabs 10 are locked in relation to the side plates 8, 9.
  • the belt 11 can also have a buckle with which the belt can be tensioned. Instead of being fastened to the slots 13 of the tabs 10, the belt 11 can also be guided around the entire transport device 1 in order to lock the tabs 10 in relation to the side plates 8, 9.
  • the transport device 1 can also have a catch (not shown) by means of which the tabs 10 can be locked with respect to the side plates 8, 9.
  • a catch (not shown) by means of which the tabs 10 can be locked with respect to the side plates 8, 9.
  • a snap connection a sliding or rotatable bolt, a magnetic catch, a Velcro fastener or a hook-and-eye connection can be used as a catch.
  • the tabs 10 can be held in their position in a tamper-proof manner in order to enclose the file folder 2 in the transport device 1.
  • a buckle of the belt 11 can be locked for this purpose or a catch can only be unlocked by means of a key.
  • the transport device 1 cannot be collapsed, for example if the side plates 8, 9 are rigidly connected to the base plate 6 and the cover plate 7.
  • the transport device 1 according to FIG Fig. 2a at the connection points between the side plates 8, 9 and the base plate 6 or the cover plate 7 hinges 14, so that the side plates 8, 9 are each pivotably connected to the base plate 6 and the cover plate 7, to be precise in each case about an axis C which runs essentially parallel to the cover, base and side plates 6, 7, 8, 9.
  • each side plate 8, 9 has a hinge 15 centrally between the base plate 6 and the cover plate 7 with a pivot axis D parallel to the pivot axis C.
  • the hinges 14, 15 can be designed as mechanical joints or as weakening lines and the side panels 8, 9 can be folded in towards one another ( Figure 2c ) or allow the side panels 8, 9 to be folded out from one another.
  • the hinges 14, 15 can be self-limiting, ie they can only be pivoted through a predetermined angle. This leads to an overall more stable transport device 1, since it can no longer fold in all possible directions. The self-limiting effect can be achieved by the hinge 14, 15 or suitable devices.
  • FIG. 2a the transport device 1 is in the use position (without file folder 2).
  • the tabs 10 are pivoted away from the frame ( Figure 2b ) or into this ( Figure 2c ), so that the tabs 10 essentially rest against the side of the cover plate 7 facing the base plate 6.
  • the side plates 8, 9 are then folded together by means of their hinges 15, the side plates 8, 9 pivoting on the hinges 14 with respect to the base plate 6 and the cover plate 7.
  • Figure 2c shows the fully collapsed state of the transport device 1, in which the side plates 8, 9 are completely folded up and bear directly on the base plate 6 and on the tabs 10 or the cover plate 7.
  • the transport device 1 can easily be stowed in this state.
  • the transport device 1 can still be collapsed if the side plates 8, 9 are each pivotably connected to the base plate 6 and the cover plate 7 by the hinges 14.
  • the cover plate 7 can, for example, be pivoted to the left or to the right, ie in a direction parallel to the length L, which, however, is a greater collapsed state than in FIG Figure 2c shown results.
  • the base plate 6 can be detachably connected to one of the side plates 8, 9, for example.
  • the base plate 6 is detachably connected to the side plate 8 and non-detachably, but pivotably, with the other side plate 9.
  • the detachable connection is achieved in this case in that a reinforcement plate 16 is articulated on the side plate 8 detachably connected to the base plate 6 and engages under the base plate 6 in order to support it.
  • the reinforcement plate 16 is in turn held by the belt 11. If there is no belt 11, the reinforcement plate can also be replaced by other suitable ones Means to be connected to the bottom plate 6 or the side plate 9, for example by a releasable connection such as a Velcro fastener.
  • the transport device 1 can be manufactured in one piece, for example by punching a plastic plate or a metal sheet.
  • the punched out shape then consists e.g. from the chain side plate 8, cover plate 7, side plate 9 and base plate 6, the tabs 10 also being formed on the cover plate 7.
  • lines of weakness can be introduced into the punched-out shape in order to form the non-releasable articulated connections 14 between the individual plates 6, 7, 8, 9.
  • the reinforcement plate 16 can also be formed in one piece on the side plate 8.
  • Fig. 3 shows an embodiment in which the base plate 6 is formed from two interlocking elements 17, 18, one of which is detachably connected to one of the side plates 8, 9 and non-detachably connected to the other.
  • the interlocking elements 17, 18 can partially overlap, as shown.
  • each side plate 8, 9 is passed through an end slot 19 in cover plate 7 and held in slot 19 by means of a projection 19 '.
  • the projection 19 ' can be formed, for example, by a widened end face of the respective side plate 8, 9 or by one or more hooks attached to the end face of the side plates 8, 9.
  • the side plate 8, 9 can end flush with the cover plate 7 if the slot 19 is provided with a suitable recess. In this way, a multi-part system can be created in a simple manner, which as in Fig. 6 shown can be assembled easily, whereby a particularly cost-effective production can be achieved. If the base plate 6 or the reinforcement plate 16 is connected (detachably or non-detachably) to the respective side plate 8, 9, these can also be passed through the slot 19.
  • connection, hinges or joints 14, 15 as in Figs. 1 to 3 shown can be combined with one another as desired and are not limited to the arrangements shown.
  • the base plate 6 could also be passed through slots at the end in the side plates 8, 9 and the hinges 14 between side plates 8, 9 and cover plate 7 could be made non-detachable, for example by means of weakening lines.
  • all of the hinges 14, 15 could also be designed to be detachable.
  • Figs. 1 to 3 each show embodiments in which the cover plate 7 is connected to the side plates 8, 9 in such a way that the cover plate 7 itself is torsionally rigid about an axis N normal to the side plates 8, 9.
  • the tabs 10, on the other hand, can be pivoted relative to the cover plate 7 about the axes N normal to the side plates 8, 9. This results in a particularly stable construction of the transport device 1.
  • FIG. 4 shows Fig. 4 an embodiment in which the tabs 10 are rigidly connected to the cover plate 7 and the cover plate 7 can be pivoted relative to the side plates 8, 9 about an axis N normal to the side plates 8, 9.
  • the cover plate 7 can be pivoted here in such a way that the file folder or files 2 can be rotated in and out of the transport device 1.
  • a tab 10 is shown therein, which comprises two parts 20, 21, the first part 20 being hinged to the cover plate 7 so as to be pivotable and the second part 21 being hinged to the first part 20 such that it is pivotable about an axis E.
  • the axis E runs parallel to the axis N of the bracket 10.
  • the connection between the parts 20, 21 can be implemented, for example, by means of a line of weakness or a separate hinge.
  • the tabs 10 can furthermore the file folders 2 in a suitable manner Support manner in that the first parts 20 of the tabs 10 are raised parallel to the cover plate 7 and the second parts 21 are angled downwards in order to grip the free ends 4 'of the file or files 2. Both parts 20, 21 can be locked separately or designed with a predetermined pivot resistance.
  • the tabs 10 can also be designed as rigid angle tabs.
  • Such rigid angle brackets are particularly advantageous when the side plates 8, 9 are wider than the cover plate 7.
  • the inner legs 10 'of the angle brackets 10, hinged to the cover plate 7 and around the axes N, can be used here as an extension of the cover plate 7 ( Figure 5a ), and the outer legs 10 ′′ of the angle brackets 10 as clamps or pliers for the file folder (s) 2 ( Figure 5b ), as described below.
  • each angled bracket 10 is pivoted about its axis N in the direction of the file folder 2 so that the legs 10 ′′ of the angled tabs 10 clamp the file folder (s) 2 like pliers.
  • the transport device 1 on the side plates 8, 9 is optional Has latching lugs 22 and latching recesses 23 in order to be stackable with a further identical transport device 1.
  • the latching lugs 22 and latching recesses 23 are each arranged in opposite directions or complementarily on opposite plates 6, 7, 8, 9 of the transport device 1.
  • the latching lugs 22 and latching recesses 23 can be used to tilt the transport device 1, ie introduce it into a shelf with one of the side plates 8, 9 down, and to stack another transport device 1 on it.
  • the cover plate 7 can also have latching lugs 22 in order to engage in latching recesses 23 in the base plate 6 (or vice versa), so that two transport devices 1 can be stacked on top of one another even in the untilted state, if the handle 7 'is, for example, folded in, sunk or removed .
  • the locking lugs 22 and locking recesses 23 on the foldable side panels 8, 9 simultaneously serve to fix the side panels 8, 9 to one another when they are folded ( Figure 2c ).
  • each tab 10 can have a slot 13 for fastening the strap 11.
  • each tab 10 can also have several slots 13.
  • at least one of the side plates 8, 9 can also be provided with a slot 13 so that an additional belt 24 can be wrapped around the transport device 1, this time in the horizontal direction, see FIG Figures 4 to 5b .
  • a locking mechanism can be provided in order to make the transport device 1 lockable.
  • both straps 11, 24 can have congruent holes through which a padlock 25 can be passed.
  • the cover plate 7 ( Fig. 4 ) or the base plate 6 ( Fig. 3 ) be provided with a slot 13 for the passage of the belt 11.
  • the transport device 1 can be self-locking in the assembled state, so that only the last locking prevents the panels 6-9 or tabs 10 from moving freely.
  • the last lock can be made lockable, which is e.g. can be reached by the belt 11 or by a pin (notch) so that no unintentional access to the content occurs.
  • the frame 5 is formed by the bottom plate 6, the top plate 7 and the side plates 8, 9.
  • the cover plates are shown "above”.
  • the frame 5 could also be rotated through 90 ° (not shown) so that the bottom and cover plates 6, 7 are arranged laterally and the side plates 8, 9 are arranged above and below.
  • the handle 7 ′ is attached to the side plate 8, but the tabs 10 continue to be attached to the cover plate 7, ie “laterally” on the transport device 1.

Landscapes

  • Purses, Travelling Bags, Baskets, Or Suitcases (AREA)
EP19159422.5A 2019-02-26 2019-02-26 Dispositif de transport pour classeur Active EP3702171B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP19159422.5A EP3702171B1 (fr) 2019-02-26 2019-02-26 Dispositif de transport pour classeur
PCT/EP2020/050675 WO2020173611A1 (fr) 2019-02-26 2020-01-13 Dispositif de transport pour classeurs

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP19159422.5A EP3702171B1 (fr) 2019-02-26 2019-02-26 Dispositif de transport pour classeur

Publications (2)

Publication Number Publication Date
EP3702171A1 true EP3702171A1 (fr) 2020-09-02
EP3702171B1 EP3702171B1 (fr) 2021-02-17

Family

ID=65598537

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19159422.5A Active EP3702171B1 (fr) 2019-02-26 2019-02-26 Dispositif de transport pour classeur

Country Status (2)

Country Link
EP (1) EP3702171B1 (fr)
WO (1) WO2020173611A1 (fr)

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1296015A (fr) * 1961-05-04 1962-06-15 Porte-objet
US3167226A (en) 1961-06-22 1965-01-26 Whetstone Joe Book carrier
US5409282A (en) * 1993-11-22 1995-04-25 Bale; Jeffrey L. Containers for supporting and transporting stacked files
US20040247374A1 (en) 2003-06-06 2004-12-09 Smith Christopher M. Binding wrapper
WO2009092370A2 (fr) 2008-01-25 2009-07-30 Jochen Berns Dispositif porteur, en particulier pour classeurs
DE202018000082U1 (de) * 2018-01-08 2018-03-20 Wladimir Iskin Hülle zum Transport eines Ordners

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1296015A (fr) * 1961-05-04 1962-06-15 Porte-objet
US3167226A (en) 1961-06-22 1965-01-26 Whetstone Joe Book carrier
US5409282A (en) * 1993-11-22 1995-04-25 Bale; Jeffrey L. Containers for supporting and transporting stacked files
US20040247374A1 (en) 2003-06-06 2004-12-09 Smith Christopher M. Binding wrapper
WO2009092370A2 (fr) 2008-01-25 2009-07-30 Jochen Berns Dispositif porteur, en particulier pour classeurs
DE202018000082U1 (de) * 2018-01-08 2018-03-20 Wladimir Iskin Hülle zum Transport eines Ordners

Also Published As

Publication number Publication date
WO2020173611A1 (fr) 2020-09-03
EP3702171B1 (fr) 2021-02-17

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