WO2013060470A1 - Dispositif porteur pour un dispositif meuble, en particulier pour un meuble de séparation - Google Patents

Dispositif porteur pour un dispositif meuble, en particulier pour un meuble de séparation Download PDF

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Publication number
WO2013060470A1
WO2013060470A1 PCT/EP2012/004496 EP2012004496W WO2013060470A1 WO 2013060470 A1 WO2013060470 A1 WO 2013060470A1 EP 2012004496 W EP2012004496 W EP 2012004496W WO 2013060470 A1 WO2013060470 A1 WO 2013060470A1
Authority
WO
WIPO (PCT)
Prior art keywords
trusses
sleeves
web
connecting webs
webs
Prior art date
Application number
PCT/EP2012/004496
Other languages
German (de)
English (en)
Inventor
Alexander Lorenz
Original Assignee
Alexander Lorenz
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 Alexander Lorenz filed Critical Alexander Lorenz
Priority to GB1409058.3A priority Critical patent/GB2510532A/en
Publication of WO2013060470A1 publication Critical patent/WO2013060470A1/fr

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/19Three-dimensional framework structures
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/18Structures comprising elongated load-supporting parts, e.g. columns, girders, skeletons
    • E04B1/19Three-dimensional framework structures
    • E04B1/1903Connecting nodes specially adapted therefor

Definitions

  • Carrying device for a furniture device in particular for a
  • the invention relates to a support device for a furniture device, in particular for a room divider, wherein the furniture device comprises a plurality of polygon panels, wherein a plurality of trusses and a plurality of connecting webs are provided, wherein the trusses each have two end portions and the trusses at the end regions by means of the connecting webs with each other are connected or connectable, wherein the trusses in pairs by each one of the connecting webs are detachably connected to each other or connectable.
  • Furniture devices which are designed as room dividers or wall coverings and have a plurality of polygon fields or a polygonal structure.
  • the polygon fields can be arranged in a plane or at an angle to each other.
  • the polygon fields can be triangular, quadrangular, pentagonal or the like.
  • the wall cladding has a plurality of modules, wherein the modules are connectable to each other.
  • Each module is made of foam, with kinks are imprinted in the foam.
  • the indentations each extend from the middle of the entire module to the outer edge regions of the module.
  • the module is divided into individual triangular polygon fields, so that the module concave or convex can be folded out of the plane in the three-dimensional space.
  • the fact that the individual modules can be placed along the embossed kinks creates a three-dimensional effect.
  • T-shaped tabs are formed. These tabs serve as connecting means.
  • the tabs can each be placed parallel to each other and fixed with a clip or rubber band to each other.
  • the wall cladding consisting of the modules connected in this way can be mounted as an installation on a wall or on a ceiling.
  • CONFIRMATION COPY has no carrying device and is not self-supporting.
  • the individual foam modules are unstable.
  • Each polygon module consists of exactly one polygonal module body and a plurality of connection means, wherein the individual polygon modules or the corresponding module body can be connected to one another by the connection means.
  • Each module body forms a polygon field.
  • Each module body has a separate spring-stiff carrying device.
  • the Tragvor- direction is each formed by a spring-stiff frame.
  • the frame forms the corners and edges of the individual module bodies.
  • Several connecting means engage in each case two or three adjacent frames at the respective edge regions.
  • the connecting means are designed for the pivotable connection of the module body, wherein the connecting means are tensile transversely to the edge region.
  • a Winkelfixiermittel wherein the angular position of the frame or the polygon modules to each other by the Winkelfixier is fixable.
  • the frames have a plurality of insertion openings for fixing the angular position. Pins can be inserted into these insertion openings as angle-fixing means, so that the angular position of the two frames is fixed relative to one another.
  • This furniture device or support device is not yet optimally formed. Even if the individual polygon modules of the furniture device are each formed by a single support device, there is a risk that the connected by the connecting means to a network polygon modules are each arranged with little play to each other. It is possible that two juxtaposed polygon modules or polygon fields do not lie exactly in one surface, but are shifted transversely a little relative to one another.
  • a carrying device for a furniture device namely for a shelf is known.
  • the shelf consists of vertical uprights, which are made of metal tubes. Each of these stands is supported in an e-bene on the front and on the back of the shelf and is connected at the top and bottom by connecting rods.
  • the connection Poles and stands form corresponding trusses.
  • There are connecting webs or connecting means are provided, wherein the connecting means comprises a sleeve, wherein the sleeve comprises the stator and is displaceable upwardly and downwardly on this.
  • tabs are fixed on opposite sides, with which the connecting rods are connected at corresponding end regions by means of screws or rivets.
  • the stands and tie rods thereby define vertical and horizontal polygon fields.
  • the angular position of the traverses is essentially pretend.
  • the furniture device has several polygon fields. There are several trusses and several connecting bridges provided.
  • the trusses each have two end regions and the trusses are detachably connected or connectable to one another at the end regions by means of the connecting webs.
  • the connecting webs are formed here in the form of octagonal connecting means.
  • Each connecting means has 26 side surfaces, each with an opening.
  • the trusses have a protected, resilient end region.
  • the slot bifurcates the end portions in pairs inwardly deflectable plug jaws, which plug jaws can be inserted into the opening of the connecting means.
  • the trusses can thus form in three mutually perpendicular planes and diagonally thereto a truss of polygonal fields, the truss in turn can be closed by plane covers.
  • the polygon fields and thus covers can be arranged in the mutually perpendicular planes and the associated diagonal planes.
  • the angular position of the polygon fields to one another is essentially predetermined.
  • connection Dungsmittel have a hexagonal cube or lattice structure, wherein the edge regions of the lattice structure form connecting webs and are connectable to an end portion of the trusses.
  • the end region of the traverses in this case has a C-shaped retaining clip, wherein this retaining clip can be clipped onto the edges of the lattice structure of the connecting means.
  • the angular position of the polygon fields can be selected by pivoting the traverses around the gripped connecting webs.
  • the grid structure is in each case arranged around the virtual or imaginary vertices of the polygon fields. Due to the finite extent of the lattice structure, the trusses do not directly attack the corner points, but off-center.
  • the support device has its own weight, whereby the trusses transmits shear or tensile forces to the hexagonal lattice structures of the connecting means.
  • the off-center force introduction into the connecting webs leads to a torque, wherein the torque can tilt the grid-shaped connecting means.
  • the traverses belonging to a vertex no longer all point to the same, imaginary vertex of the associated polygon fields. That means the individual polygon fields with the corresponding trusses are offset by the occurring tilting moments a little in relation to the imaginary, associated corner across each other. These tilting moments can occur at each connecting web. As a result, the entire support device on a game.
  • the generic support device has the disadvantage that, even when covers are arranged on the polygon fields, the connecting webs project beyond the plane of the polygonal fields so that the connecting webs project visibly beyond the plane of the covers.
  • the appearance of the furniture device is therefore not optimal.
  • the invention is therefore based on the object, a support device for a furniture device, in particular a room divider or a wall covering, with several polygonal fields in such a way and further, so that bulging open spaces can be formed in space and an offset of the polygon fields belonging to a vertex is avoided.
  • the connecting web has exactly two openings for connection with trusses, wherein each of the adjacent trusses passes through one of the two openings, wherein the two openings are formed as sleeves and the connecting web has a web, wherein the two sleeves are connected to one another via the web, wherein at least two connecting webs, namely at least two sleeves, are arranged or can be arranged on the end region, wherein the two sleeves connected to one another via the web are aligned with a common, virtual corner point.
  • the connecting webs extend between the adjacent end regions of two adjacent trusses, in particular in the plane of the two adjacent trusses.
  • the connecting webs lie in the plane of the polygon fields.
  • the plane of the polygon fields is defined by the adjacent trusses belonging to the respective polygon field.
  • the connecting web has exactly two openings, namely in the form of sleeves, wherein each of the trusses with one of the end portions through the opening or sleeves is pluggable.
  • the connecting webs are attached to the end area with one sleeve each.
  • the covers cover the polygon panels, with the covers covering the tie bars.
  • the connecting webs can therefore be covered by covers, whereby the appearance of the furniture device is improved.
  • the adjacent polygon fields each share a traverse. This has the advantage that a shift between the adjacent polygon fields is avoided.
  • the stability of the furniture device is increased.
  • the connecting web is formed as a separate, in particular one-piece component, wherein the connecting web is in each case connectable to exactly two adjacent trusses.
  • the end region has vzw. a stop, so that the sleeve is arranged in an end position on the stop.
  • Another, outer sleeve of another connecting web can now be pushed or plugged onto this end region, so that the two sleeves - the inner sleeve and the outer sleeve - are arranged axially next to one another at the end region.
  • the Traverse has vzw. a thread and a screw on.
  • the end region has the stop for an inner sleeve of a first connecting web.
  • An outer sleeve of a second connecting web or of a further connecting web is arranged or can be arranged axially next to the inner sleeve.
  • the screw is screwed into the internal thread in the assembled state, so that the screw presses the two sleeves against the stop.
  • the connecting web is preferably designed such that the connecting web has an outer sleeve and an inner sleeve, the inner sleeve can be arranged on the abutment of one of the end regions and the outer sleeve can be arranged next to a further inner sleeve.
  • the outer sleeve is located closer to the vertex and the inner sleeve further away from the vertex.
  • the outer and the inner sleeve are arranged axially offset.
  • the connecting webs may be connected to the trusses in particular via a screw, clamp, plug connection and / or positive connection.
  • the connecting webs are in their angular position relative to the trusses, d. H. fixed in its pivotal position about the longitudinal direction of the trusses and / or fixable.
  • the angular position of the connecting webs is changeable and fixable.
  • the connecting webs are pivotally mounted on the trusses during assembly and then fixable with a locking mechanism in the pivot position.
  • the connecting webs may each be formed by two partial webs, wherein the one part web is connected to the one cross member and the other part web to the other cross member.
  • the Traverse are preferably assigned a total of four partial webs.
  • two partial webs may be arranged per end region on a crossbeam. This partial web is connectable during assembly of the support device with an adjacent partial web of an adjacent crossmember. The traverses are thus connected in pairs.
  • the connecting bar is detachably connectable to the crossbar. Since adjacent polygon fields each share a single traverse, the stability between the polygon fields is improved.
  • FIG. 1 is a schematic, perspective view of a furniture device, namely a room divider, with a carrying device according to the invention
  • FIG. 2 shows a schematic, perspective view of a further furniture device, namely a further room divider, with the carrying device according to the invention
  • Fig. 3 is a schematic, perspective view of a part
  • FIG. 4 shows a schematic, perspective detail view of the furniture device with a carrying device
  • FIG. 5 shows a schematic perspective view of the carrying device of the furniture device from FIG. 3, FIG.
  • Fig. 6 is a schematic, perspective view of a part of
  • FIG. 7 shows a schematic, perspective view of further parts of the carrying device, namely several traverses at least partially shown with an end region,
  • FIG. 8 is a schematic, perspective detailed representation of a further support device with the trusses of FIG. 7 and further connecting webs,
  • FIG. 9 is a schematic, perspective view of the connecting webs of Fig. 8, 10 is a schematic, perspective view of another support device,
  • FIG. 11 is a schematic, perspective detailed representation of a plurality of interconnected connecting webs of the support device of FIG. 13,
  • FIG. 12 is a schematic, perspective view of a boxförmi ge furniture device
  • FIG. 13 is a schematic, perspective view of a cellular furniture device
  • Supporting device namely five trusses connected by connecting webs, wherein the trusses are aligned on a common corner point
  • Carrying device namely five, connected by connecting webs trusses, wherein the trusses are aligned on a common corner point, and
  • 16 is a schematic, perspective view of a part of
  • Carrying device namely, five, connected by connecting webs trusses, wherein the trusses are aligned on a common corner point.
  • FIGS. 3 to 7 a first support device 1 is clearly visible.
  • the first carrying device 1 is part of a furniture device 2.
  • the furniture device 2 is formed in Fig. 1 as a room divider 3.
  • the room divider 3 in Fig. 1 is formed dome-shaped and can either hang on a ceiling, not shown, or on the bottom of the surface, not shown. stand with. Due to the dome shape, the space is divided into an interior space inside or below the room divider 3 and into an outside space outside the room divider 3.
  • the furniture device 2 is also formed in Fig. 2 as a room divider 4.
  • the room divider 4 serves as a partition 4a.
  • the partition 4a serves as a screen and thus to divide the room.
  • the partition 4a also serves for acoustic shielding.
  • the partition 4a can also serve as a wall cladding.
  • the furniture device 2 may be formed as a wall covering.
  • the furniture device 2 is designed as a room divider 32 in the form of a box 32a.
  • the box 32a has a circumferential jacket 34.
  • the jacket 34 has substantially four contiguous walls 35, 36, 37, 38.
  • the jacket 34 or at least one of the walls 35, 36, 37, 38 has a door opening, not shown, for entering the box 32a.
  • a work station may be constructed with a chair and table (not shown) or the like.
  • the furniture device 2 is designed as a cell-like room divider 33 or can be used in the manner of a cell 33a.
  • the room divider 33 has a jacket 39, which is open to one side, and a roof 40.
  • the roof 40 and the jacket 39 are connected or hang together.
  • the coat 39 is on the ground.
  • the jacket 39 has a standing height.
  • the jacket 39 may have a height of more than 1.8 m.
  • a user can enter the cell 33a through the side opening 41 and is then shielded sixfold, fore and aft.
  • the cell 33a can be used for telephoning. In the cell 33a either a stationary telephone can be installed (not shown) or the user uses his mobile phone, a smartphone, a tablet PC or the like.
  • the furniture devices 2 have a polygonal structure.
  • the furniture devices 2 have in particular a plurality of adjacent polygon fields 5.
  • the polygon fields 5 each have a triangular shape.
  • the polygon fields 5 may have a quadrilateral shape, in particular special have a square shape, a pentagonal shape or a hexagonal shape.
  • the polygon fields 5 have a plurality of edges 6.
  • the polygon panels 5 each have at least one cover 5a, wherein the cover 5a is connected to the support device 1.
  • the covers 5a are preferably detachably connected to the support device 1 and / or connectable.
  • the polygon fields 5 of the furniture device 2 are formed substantially congruent.
  • the polygon fields 5 are formed at the same angle.
  • the one of the polygon fields 5 associated edges 6 are preferably arranged at right angles.
  • the polygon fields 5 are formed on the same side. Ie. the edges 6 of the polygon fields 5 have substantially the same length.
  • polygon fields 5 with two or more different edge lengths are also conceivable.
  • the furniture device 2 is essentially formed by a network of contiguous polygon fields 5, wherein this network can be either flat or at least partially curved into or out of the room.
  • Such a furniture device 2 can generally serve as a design object for covering a wall (not shown) or, for example, parting off a part of the space, as shown in FIGS. 1, 2, 12, 13. For example, in a large office (not shown) by means of such a furniture device 2 individual cabins are divided. Further areas of use of such a furniture device 2 can be found in exhibition construction and the like.
  • the furniture device 2 has a plurality of polygonal fields 5, which are in each case connected at their edges 6, a very large range of shapes can be combined with such a furniture device 2 and displayed.
  • the polygon fields 5 can each be arranged at an angle to each other, so that the polygon structure is at least partially concave and / or convex in the three-dimensional space.
  • the edges 6 of each one of the polygon fields 5 are substantially in one plane. Adjacent polygon fields 5 can be arranged in different planes.
  • trusses 7 There are several trusses 7 and a plurality of connecting webs 8 are provided, wherein the trusses 7 each have two end portions 9 and the trusses 7 are detachably connected to each other at the end regions 9 by means of the connecting webs 8 or connectable.
  • the traverses 7 form the edges 6 of the polygon fields 5.
  • the adjacent polygon fields 5 each share a traverse 7. This has the advantage that a shift between the adjacent polygon fields 5 is avoided.
  • the stability of the furniture device 2 is increased.
  • the connecting webs 8 are detachably connected to the two trusses 7, in particular the two end regions 9 connectable.
  • the trusses 7 are designed in particular identical.
  • the trusses 7 extend in a straight line between the end regions 9.
  • the connecting webs 8 are designed in a particularly identical manner.
  • the connecting webs 8 extend between adjacent end regions 9 of each two adjacent trusses 7.
  • the connecting webs 8 form the unspecified, in particular blunt corners of the polygon fields 5.
  • the connecting webs 8 are each assigned to exactly one polygon field 5.
  • the connecting web 8 is formed as a separate component (not designated in more detail) and forms a structural unit.
  • the connecting web 8 is in each case releasably connectable to the two adjacent trusses 7.
  • the connecting web 8 has two openings 10, namely two sleeves 11, 12.
  • the connecting web 8 also has a web 13.
  • the web 13 connects the two sleeves 11, 12.
  • the sleeves 11, 12 are fixed to the web 13 or integrally formed on the web 13. Die St
  • the openings 10 extend in particular in the longitudinal direction of the traverses 7.
  • the openings 10 or the sleeves 11, 12 are each angled toward each other. orderly.
  • the sleeves 11, 12 are arranged inclined by substantially 60 ° to each other.
  • the angles are to be adapted accordingly so that the angle of the sleeves 11, 12 or the angle between the openings 10 corresponds in each case to the internal angle of an equilateral quadrilateral, pentagon, hexagon, heptagon or the like.
  • the respective openings 10 belonging to one of the connecting webs 8 have a different distance to the imaginary point of intersection - the corner point (P) (compare FIGS. 14, 15 and 16) of two adjacent crossbeams 7, so that on each of the end regions 9 several, in particular two, openings 10 are arranged or can be arranged.
  • the sleeves 11, 12 of two connecting webs 8 are spaced apart, in particular adjacent to one of the end regions 9 of the traverse 7 can be arranged.
  • the web 13 is shaped such that in each case an inner sleeve 11 and an outer sleeve 12 can be arranged on one of the end regions 9.
  • the sleeves 11, 12 have in particular a cylindrical mecanicumiangs simulation, wherein vorzusgweise the end portion 9 has a suitable diameter, so that the sleeves 11, 12 are guided on the end portion 9.
  • the length of the sleeves 11, 12 may be so dimensioned that the sleeves 11, 12 are arranged adjacent to each other.
  • the length of the two sleeves 11, 12 is vzw. equal.
  • 9 two sleeves 11, 12 can be arranged on each end region.
  • connection 7 it can be clearly seen that the traverse 7 is here formed by a tube 14 with an internal thread or a bar with an internal thread and by a screw 15.
  • the screw 15 is screwed into the not shown inner thread of the tube 14.
  • a head 16 of the screw means 15 in this case has a hexagon socket, so that the two of the Screwing 15 gripped sleeves 11, 12 against an end face of the tube
  • the 14 can be pressed. This end face forms a stop for the inner sleeve 11.
  • the end region 9, 26 has the stop for the inner sleeve 11.
  • the outer sleeve 12 of a further connecting web 8, 18, 25 is arranged or can be arranged axially next to the inner sleeve. If the screwdriver
  • the diameter of the head 16 corresponds substantially to the outer diameter of the sleeves 11, 12.
  • the diameter of the head 16 substantially corresponds to the outer diameter of the tube fourteenth
  • the web 13 is formed so cranked, so that the offset to each other arranged sleeves 11, 12 respectively tangentially into the curved longitudinal sides, in particular the top and bottom of the web 13 pass.
  • FIG. 8 and 9 another support device 17 is shown.
  • the support device 17 has the trusses 7 shown in FIG. 7 with the corresponding end regions 9.
  • the end regions 9 are in turn formed by the screw means 15, wherein the screw means 15 are screwed into a tube 14 as part of the traverse 7.
  • the carrying device 17 in turn has a plurality of connecting webs 18.
  • the connecting webs 18 are of identical construction.
  • the connecting webs 18 each extend between the adjacent end regions 9 two adjacent trusses 7.
  • the connecting webs 18 are detachably connected to the two trusses 7, in particular the two end regions 9 connectable.
  • the connecting web 18 has two openings 10, namely two sleeves 11, 12, as already shown in Fig. 6. In contrast to the embodiment shown in FIG.
  • the connecting web 18 has a web 19 extending substantially beyond the end face of the front sleeve 12.
  • the juxtaposed heads 16 are substantially adjacent to the inner sides 20 formed by the web 19.
  • the web 19 has an opening 21, in particular a bore, wherein starting from the opening 21, a slot 22 extends to the end face of the inner sleeve 11.
  • the arrangement of the sleeves 11, 12 corresponds to the arrangement as shown in Fig. 6. Reference is made to the description with respect to FIG. 6 for this purpose.
  • the cover 5a is connected to the support device 1 with at least one connection means (not shown).
  • the cover 5 may be connected to the supporting device 1 via a pin engaging in the opening 21 or a magnet fixed in the opening 21.
  • the covers 5a are connected or connectable by means of the connecting means, in particular with the connecting webs 8, 18 or 25.
  • the covers 5a essentially have the size of the polygonal fields 5 delimited by the cross members 7 and the connecting webs 8, 18, 25.
  • the trusses 7 form the edges of the polygon fields 5 and are at least partially covered by the covers 5a.
  • the connecting webs 8, 18, 25 are also preferably at least partially covered by the covers 5a.
  • FIG. 10 and 11 show a support device 23, wherein a connecting web 25 consisting of two connected partial webs 27, 28 is formed.
  • the partial webs 27, 28 are formed on corresponding sleeves 30, 31.
  • the trusses 7 in Fig. 10 correspond to the embodiment of the trusses 7 shown in Fig. 7 by tightening the screw means 15, the angular position of the partial webs 27, 28 can be fixed to the traverse 7.
  • the screw 15 serve here as a locking mechanism.
  • the connecting webs 25 are pivotally attached to the Travers 7 can be arranged and fixed with the locking mechanism in the desired pivot position at the end regions 9.
  • the partial webs 27, 28 are connected to each other.
  • the adjacent partial webs 27, 28 are in particular connected by a screw connection 29 or by a rivet connection or the like.
  • the two partial webs 27, 28 are arranged overlapping, each of the partial webs 27, 28 having an opening, wherein the two are arranged in alignment with each other, so that the screw 29 or the like can pass through the two superimposed openings.
  • the support device 1 may have corners, wherein five trusses 7 are connected to each other via five connecting webs 8.
  • the support device 1 may have corners, wherein six trusses 7 are connected to each other via six connecting webs 8.
  • the support device 1 may have corners, wherein seven trusses 7 are connected to each other via seven connecting webs 8.
  • vertex P This point forms an imaginary or virtual vertex P of the adjacent polygon fields 14. An offset or play of the trusses 7 relative to the vertex P is avoided.
  • All trusses 7 that belong to this corner are aligned to a common virtual vertex P.
  • the extending in the longitudinal direction of the trusses 7, virtual (rotary) axes A always intersect at the vertex P, regardless of which angular position occupy the corner P associated connection webs 8.
  • the connecting webs 8 extend between the adjacent end regions 9 of two adjacent trusses 7, in particular in the plane of the two adjacent trusses 7.
  • the connecting webs 8 lie in the plane of the polygon fields 5.
  • the plane of the polygon fields 5 is defined by the adjacent trusses 7 belonging to the respective polygonal field 5.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Combinations Of Kitchen Furniture (AREA)
  • Furniture Connections (AREA)
  • Assembled Shelves (AREA)

Abstract

L'invention concerne un dispositif de support (1, 17, 23) pour un dispositif meuble (2), en particulier pour un meuble de séparation (3, 4, 32, 33), le dispositif meuble (2) comprenant plusieurs domaines polygonaux (5). Selon l'invention, ledit dispositif porteur comporte plusieurs traverses (7) et plusieurs ponts de liaison (8, 18, 25). Les traverses (7) possèdent chacune deux extrémités (9, 26) et les traverses (7) sont ou peuvent être reliées entre elles de manière amovible par leurs extrémités (9, 26) à l'aide des ponts de liaison (8, 18, 25). Les traverses (7) sont ou peuvent être reliées ensemble de manière amovible, deux à deux, par l'un des ponts de liaison (8, 18, 25). Il est possible de former des surfaces libres courbes dans l'espace et on évite un décalage entre les domaines polygonaux (5) appartenant à un coin (P) du fait que le pont de liaison (8, 18, 25) possède exactement deux ouvertures (10), chacune des traverses adjacentes (7) traversant l'une des deux ouvertures (10), les deux ouvertures (10) prenant la forme de douilles (11, 12), et le pont de liaison (8, 18, 25) possédant une branche (13), les deux douilles (11, 12) étant reliées ensemble par la branche (13), une extrémité (9, 26) portant ou pouvant porter au moins deux ponts de liaison (8, 18), à savoir au moins deux douilles (11, 12), les deux douilles (11, 12) reliées entre elles par la branche (13) étant orientées en direction d'un coin virtuel commun (P).
PCT/EP2012/004496 2011-10-28 2012-10-26 Dispositif porteur pour un dispositif meuble, en particulier pour un meuble de séparation WO2013060470A1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
GB1409058.3A GB2510532A (en) 2011-10-28 2012-10-26 Supporting device for a furniture device, in particular for a partition

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE201110117184 DE102011117184A1 (de) 2011-10-28 2011-10-28 Tragvorrichtung für eine Möbelvorrichtung, insbesondere für einen Raumteiler
DE102011117184.7 2011-10-28

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Publication Number Publication Date
WO2013060470A1 true WO2013060470A1 (fr) 2013-05-02

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PCT/EP2012/004496 WO2013060470A1 (fr) 2011-10-28 2012-10-26 Dispositif porteur pour un dispositif meuble, en particulier pour un meuble de séparation

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DE (1) DE102011117184A1 (fr)
GB (1) GB2510532A (fr)
WO (1) WO2013060470A1 (fr)

Families Citing this family (3)

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Publication number Priority date Publication date Assignee Title
ITMI20131496A1 (it) * 2013-09-10 2015-03-11 Univ Pisa Struttura reticolare
IT201800002745A1 (it) * 2018-02-16 2019-08-16 Univ Pisa Nodo strutturale per il collegamento di elementi di involucro edilizio, e struttura reticolare comprendente detto nodo
ES2946465A1 (es) * 2022-01-17 2023-07-19 Univ Del Pais Vasco / Euskal Herriko Unibertsitatea Nudo de conexion para conectar barras de soporte de una estructura modular

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FR2256994A1 (en) * 1974-01-07 1975-08-01 Aubert J Collapsible metal framework with universal joints - has bars joined at ends by ring-shaped swivel portions
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WO2010001359A1 (fr) 2008-07-04 2010-01-07 Kvadrat A/S Système modulaire pour séparation ou revêtement
DE202011004882U1 (de) 2011-04-05 2011-07-05 Lorenz, Alexander, 50933 Polygonmodul zur Herstellung einer Möbelvorrichtung sowie Möbelvorrichtung mit mehreren Polygonmodulen

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US5056291A (en) 1989-10-19 1991-10-15 Skilland Engineering, Ltd. Modular system for space frame structures
DE4402708A1 (de) * 1994-01-29 1995-08-03 F & T Form & Technik Element zum Aufbau von Knotenstücken für Flächen- und Raumtragwerke
US5430989A (en) * 1994-03-01 1995-07-11 Jones; Richard H. Construction system
WO2010001359A1 (fr) 2008-07-04 2010-01-07 Kvadrat A/S Système modulaire pour séparation ou revêtement
DE202011004882U1 (de) 2011-04-05 2011-07-05 Lorenz, Alexander, 50933 Polygonmodul zur Herstellung einer Möbelvorrichtung sowie Möbelvorrichtung mit mehreren Polygonmodulen

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