EP2392749A2 - Profilé de retenue et ensemble doté d'un profilé de retenue - Google Patents

Profilé de retenue et ensemble doté d'un profilé de retenue Download PDF

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Publication number
EP2392749A2
EP2392749A2 EP11168479A EP11168479A EP2392749A2 EP 2392749 A2 EP2392749 A2 EP 2392749A2 EP 11168479 A EP11168479 A EP 11168479A EP 11168479 A EP11168479 A EP 11168479A EP 2392749 A2 EP2392749 A2 EP 2392749A2
Authority
EP
European Patent Office
Prior art keywords
profile
recess
recesses
holding
cladding
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.)
Withdrawn
Application number
EP11168479A
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German (de)
English (en)
Other versions
EP2392749A3 (fr
Inventor
Felix Cadonau
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
Publication of EP2392749A2 publication Critical patent/EP2392749A2/fr
Publication of EP2392749A3 publication Critical patent/EP2392749A3/fr
Withdrawn legal-status Critical Current

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/0801Separate fastening elements
    • E04F13/0803Separate fastening elements with load-supporting elongated furring elements between wall and covering elements
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F15/00Flooring
    • E04F15/02Flooring or floor layers composed of a number of similar elements
    • E04F15/024Sectional false floors, e.g. computer floors
    • E04F15/02447Supporting structures
    • E04F15/02458Framework supporting the panels
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F15/00Flooring
    • E04F15/02Flooring or floor layers composed of a number of similar elements
    • E04F15/024Sectional false floors, e.g. computer floors
    • E04F15/02447Supporting structures
    • E04F15/02464Height adjustable elements for supporting the panels or a panel-supporting framework
    • E04F15/0247Screw jacks
    • E04F15/02476Screw jacks height-adjustable from the upper side of the floor

Definitions

  • the invention relates to an elongate retaining profile according to the preamble of claim 1, a set for adjusting a profile rail according to the preamble of claim 8, and a set for producing a covering according to claim 12.
  • the wooden slats are arranged like a lamella on the façade to be clad, the result is a visually appealing and loosened surface.
  • the lamella trim also has a soundproofing effect and is well ventilated.
  • the lamella cladding can also serve to protect mineral insulation material, since this mostly soft material is mechanically protected and well ventilated by the lamellae lining.
  • the slats are defined by orthogonal to selbigen oriented wood profile strips on the facade. On the supporting wooden profile strips a plurality of cutouts is provided, in which the slats are inserted with their long sides.
  • the inclination of the slats relative to the façade wall is determined by the angle which surround the cutouts with the longitudinal edges of the supporting wood profiles.
  • the lamellae are fixed to the profile strips by adhesives such as glue and / or holding means, for example screws or nails.
  • This assembly step takes a relatively long time and the use of additional materials.
  • the existing teeth between the cutouts easily break, since they are arranged in the fiber direction of the profile strips.
  • At the transitions between the slats to the moldings easily collects water, which can lead to the destruction of the woods, for example, by frostbite, because the water can drain only insufficiently on the relatively large contact surfaces between the slats and the moldings.
  • an elongated holder In the GB 2 099 475 is described an elongated holder.
  • the bracket is used to disguise a suspended panel ceiling with U-shaped profiles.
  • the holder can be suspended in one of the support rails of the panel ceiling with a plurality of gripping tabs.
  • On the side flanks bracket are a plurality of punched-out recesses provided, which have the same distances from each other.
  • the recesses have at their opposite side edges Einrastr used, which open in the direction of the bottom of the recess in undercuts.
  • the above-mentioned U-shaped profiles have on their flanks projections which can be latched into the undercuts.
  • the U-shaped profile is hooked for locking with the holder on the facing Einrastr Sn two adjacent recesses by the projections snap into the undercuts.
  • the Einrastr S have an acute angle to each other.
  • the Einrastr S a recess take a mutually expanded position.
  • the U-shaped profiles are easy and latch-free in the holder to lock.
  • this orientation of the Einrastr S makes it impossible fixed inclusion of cladding elements directly in the recesses. This is because the cladding elements would always be received by the inclined position of Einrastr selected in the respective recess only shaky and not form-fitting.
  • the object of the invention is to propose a retaining profile on which cladding elements can be attached quickly and inexpensively, without the use of additional adhesives or holding means backlash. Furthermore, it is the aim to show a holding profile to which the cladding elements are permanently and weather resistant fastened. Yet another goal is to provide a retaining profile that has substantially no areas where water could accumulate.
  • the invention relates to an elongate retaining profile in particular for a floor, facade or ceiling paneling, a room divider or the like.
  • the retaining profile comprises a plurality of longitudinally arranged and spaced-apart recesses, in which a plurality of cladding elements is receivable.
  • a constriction is provided on at least one side. Webs are formed between the recesses.
  • a web and an adjacent recess have a common side.
  • the task is at the holding profile achieved in that the sides of the recesses are oriented substantially parallel to each other.
  • the constriction can be considered as an elevation on one side edge.
  • the constriction cuts into the cladding element.
  • the cladding element also has substantially parallel sides, it is in the areas of the recess, which is free of the constriction, in a form-fitting manner on the recess.
  • a cladding element is therefore durable and free of additional holding means in the elongated retaining profile fixed without play. A shaky recording of a cladding element in the retaining profile is therefore reliably avoided.
  • the cladding elements are used to install a floor, a clearance-free attachment of importance, since the soil is naturally constantly loaded by kicks.
  • the constriction is formed as a preferably serrated elevation, whereby an undercut is defined in the direction of the bottom of the recess.
  • the shape of the undercut is preferably formed such that the undercut can cut into the cladding element and the cladding element is held permanently in the recess.
  • a rounded projection is formed on the side in the direction of the opening of the recess above the elevation. If the cladding element is inserted into the recess, the material is precompressed or preformed by the rounded projection before the undercut cuts into the cladding element. Particularly in the case of fibrous materials such as wood, this preforming is advantageous, since fraying in the area around the undercut is largely avoided.
  • the survey may be adapted in shape and size to the material used of the cladding element.
  • the retaining profile is made of metal.
  • a metal retaining profile has the advantage that the undercuts can cut deeply into a cladding element.
  • a cladding element is permanently held in a metal retaining profile. If the holding profiles are made of metal, then the recesses with the undercuts can be produced rapidly by punching or laser or water jet cutting.
  • the holding profile in cross-section has the shape of a U, L or T-profile.
  • These profile shapes are common in the construction sector and therefore have low production costs.
  • these profile shapes are well suited for the retaining profile according to the invention, since they all have a flange for attachment to a substrate.
  • the webs on which the recesses are provided relatively small wall thicknesses. An accumulation of water at the transition from the holding profile to a cladding element is therefore largely avoided.
  • the holding profile is made of plastic.
  • hard and tough plastics for the holding profile are well suited, since they are inexpensive, for example by extrusion or injection molding, can be produced.
  • the holding action of the undercuts is very good in such a material combination, since the latter are not damaged by the cladding elements.
  • the undercut has the shape of a sawtooth.
  • the tooth back is preferably oriented in the direction of the opening of the recess, whereas the tooth face is oriented in the direction of the base of the recess.
  • This shape has the advantage that the undercut acts like a barb.
  • a trim element when inserted into the recess, can overcome the restriction relatively easily, since it is guided along the tooth back. The insertion can be done for example with the aid of a hammer and a pad.
  • the sawtooth cuts with its tooth face into the lining element.
  • wood slats as cladding elements, these are only more to pull out of the recess with destruction, by wood fibers must be torn. Consequently, given by the inventive retaining profile a reliable connection to a connecting element.
  • the upper value of the tooth height is 15%, preferably 13% and more preferably 11% of the clear width of the receptacle and the lower value of the tooth height 5%, preferably 7% and particularly preferably 9% of the inside diameter Recording is.
  • the tooth height is designed depending on the weight, the type and the hardness of a cladding element. The wider the The clear width of the recess is, the heavier is usually the holding element to be held. Accordingly, the tooth height preferably increases with increasing light width.
  • the tooth height is also dependent on the number of teeth. If, for example, both sides are equipped with a plurality of saw teeth, their height can correspondingly be lower than if only one tooth is present.
  • the sides of the recesses with the longitudinal sides of the holding profile form an angle whose upper value is 90 °, preferably 80 ° and particularly preferably 70 °.
  • the lower value of this is 5 °, preferably 15 ° and particularly preferably 35 °.
  • the angle must also be selected depending on the respective insolation, if the cladding is a façade cladding.
  • the retaining profile is a U-profile.
  • the recesses are provided, with each two recesses are preferably in alignment with the legs.
  • a cladding element is therefore always held by two recesses of a U-profile simultaneously. If the holding profile represents a conclusion of a cladding, so can be dispensed with the outermost recesses. It would also be possible for the ends of a plurality of first cladding elements to be accommodated on one side of the U-profile and for the ends of a plurality of second cladding elements to be accommodated on the other side of the U-profile. In this case, it is not mandatory that opposite recesses are aligned. These can also be offset from each other, which leads to a loosened appearance of a panel.
  • a U-profile has the additional advantages that rainwater can drain off quickly and along the U-profile bulbs and electrical wiring are easily attachable or receivable.
  • At least one undercut is preferably formed on each of the two sides of a recess with preference.
  • a plurality of undercuts can be arranged one behind the other on at least one side of the recess. Due to the plurality of undercuts a groove structure is formed on the side. Due to the large number of design options concerning the undercuts, these can adapted to the material properties of a cladding element to be fastened.
  • a further aspect of the invention relates to a set for adjusting a profile rail on a substantially flat base with a profile rail and an adjusting device according to the preamble of claim 8.
  • the engagement means are arranged at the first end of the spindle and the external thread is provided on a bracket, which can be locked with the first page.
  • the spindle is always accessible with a tool for transmitting a torque from the side of the trim elements in the assembled state, even if the other Beeiche the spindle, such as the second end or the center of the spindle are covered by the assembly. A simple adjustment of the position of the fully assembled rail as a final step is therefore possible.
  • the clip allows a recording of the spindle in the retaining profile with play, whereby the rail is still movable in the mounted state.
  • a displacement between the set and the substrate is advantageous to avoid stresses that are based on expansions of the wood in the set.
  • the adjusting device is intended primarily to set up with the help of the rails laid floors in a horizontal position. It is also conceivable ceiling or wall coverings or room divider, which are constructed with the kit to adjust.
  • the clip is formed in a U-shape, which is latched in a rectangular insertion opening on the first side, wherein the legs of the clip are dimensioned at the transition to the bottom of the clip such that the clip is displaceable in the insertion opening. Due to these design features, the clip can be latched in the insertion opening and remains displaceable relative to the profile rail. At the transition of the legs to the ground free spaces may be provided which define the extent of the displacement of the clip. In doing so, a mediocre measure has to be taken in order, on the one hand, to maintain sufficient mobility and, on the other hand, not to unnecessarily weaken the brackets.
  • first bearing surfaces are formed at the bottom of the clip, which are displaceable along two second bearing surfaces, which are formed on the insertion opening.
  • the first and second contact surfaces are dimensioned such that the clip is also in its end positions, if it is displaced maximally in the insertion opening, can not pass through the insertion opening.
  • Suitable are all shapes of bearing surfaces, which avoid slipping into the clip in the rail and do not affect the necessary displacement of the clip.
  • the engagement means are realized in the form of a hexagon socket, which is provided on the front side at the first end of the spindle.
  • the spindle can therefore be turned with an Allen key. Since such a key is narrow, it can be easily passed between the joints of the cladding elements to interact with the hexagon socket can.
  • the support is a stand.
  • the foot distributes the weight of the construction to the ground. If the foot is held freely rotatable at the second end of the spindle, it does not have to be rotated when the spindle is rotated. This allows a very easy turning of the spindle.
  • Another aspect of the invention relates to a set for producing a covering, in particular a floor covering, cladding, ceiling trim, room divider or the like.
  • the set includes at least two retaining profiles according to one of claims 1 to 10 and a plurality of lining elements having a thickness substantially corresponding to the clear width of a recess and an optional adjusting device described above.
  • the set according to the invention makes it possible to construct a panel quickly, without additional retaining means for the play-free fastening of the panel elements to the retaining profiles and with low tooling requirements.
  • the set is preferably used to produce visually appealing patio floors or facade cladding.
  • the cladding protects the façade behind it, for example, a thermal insulation, in addition to mechanical influences and the weather and allows an exposure of the facade.
  • the cladding is back-ventilated and rainwater can drain off the cladding quickly.
  • the façade cladding that can be produced from the set is therefore durable and also guarantees a long service life of the façade behind it.
  • an adjustment is advantageous to adjust the cladding, for example, exactly in the vertical. If a terrace floor is set up with the set, then this is particularly easy to manufacture. The Adjusting to set up the floor horizontally is very easy and can easily be done by laymen. Such a terrace floor has a great deal of flexibility, since cover profiles in all sorts of materials and shapes can interact with the retaining profiles. Depending on the load, cover profiles with lower thicknesses can also be used to save material costs. If a free-standing covering, for example a privacy screen, is produced with the set, it is understood that the adjustment device is not necessary.
  • the center axes of two opposing webs and the spindle are substantially in one plane. This ensures that the spindle is accessible through the expansion joint of adjacent cladding elements with a tool key.
  • the cladding elements have a cross-section in the form of one or more T, in particular a double T's, with at least one holding element for receiving in the recess and a cover element for at least partially covering the webs adjacent to the recess. It is also conceivable, of course, a series of more than two times T's. This reduces the number of joints between the cladding elements.
  • the cladding elements are made of a material which is softer than the material of the holding profile. Consequently, the undercuts of the retaining profiles are not damaged by the insertion of the slats and keep the slats reliable.
  • an elongated retaining profile is shown, which preferably has the shape of a U-profile 11.
  • the U-profile may preferably be made of metal or plastic.
  • the middle part 13 of the U-profile has a plurality of through holes 15.
  • holding means which can be passed through the through holes 15, the U-profile on a facade, wall, ceiling, floor o. ⁇ . Attachable.
  • On the opposite legs 17 of the U-section 11 a plurality of recesses 19 is provided on the opposite legs 17 of the U-section 11 . Between the recesses 19 17 webs 22 are formed on the legs.
  • the FIGS. 4 and 5 show that in each case two recesses 19 on the legs 17 are aligned opposite. In the holding profile according to the FIGS. 1 to 3 the recesses 19 are inclined.
  • This retaining profile is provided for receiving cladding elements in the form of wooden slats, which are oriented in the retaining profile obliquely to the longitudinal axis.
  • the retaining profile is therefore very well suited in particular for the cladding of vertical surfaces, such as building walls.
  • the holding profile 11 has a holding extension 18, then it can be anchored in the ground, in particular cast in concrete. Such a holding profile 11 is therefore suitable for building a free standing visual or sound insulation.
  • FIG. 1 respectively.
  • FIG. 3 the inclination of the recesses 19 is best seen.
  • the inclination of the recesses 19 is approximately 70 degrees relative to the central part 15, although other inclinations are conceivable as long as a recording of the wood slats is possible. Due to the inclination of the wood slats relative to the U-section 11 creates a visually appealing facade cladding, which protects, for example, an underlying facade mechanically and against the weather.
  • FIG. 8 shows a completely constructed terrace floor 20. Further shows FIG. 8 in that the recesses 19 serve to receive cladding elements in the form of cover profiles 21 made of wood. It is understood that the slats or cover profiles 21 may also be made of other materials, such as plastics or metals.
  • the cover profiles 21 are held on one of its two longitudinal edges of at least two U-profiles 11. The respective cover profile 21 is preferably held in two aligned recesses 19 of a U-profile 11.
  • FIG. 3 shows that 19 sawteeth 23 are formed on the two sides of the recesses.
  • the back 25 of a sawtooth 23 is oriented in the direction of the opening of the recess, whereas the breast 27 of the sawtooth is oriented in the direction of the bottom 29 of the recess.
  • the clear width of a recess 19 essentially corresponds to the thickness of the wooden lamellae or cover profiles 21, wherein the clear width in the area in which the saw teeth 23 are formed on the recess 19 is narrowed.
  • a wood slat or a cover profile 21 are not only held under adhesion by the saw teeth 23 in the recess 19, but are also positively positioned from the sides of the recess.
  • the holder in the holding section 11 is therefore completely free of play and therefore permanently.
  • a rounded projection 31 can be formed on the sides of a recess 19. This projection serves to pre-compress the wooden lamella or the cover profile 21 during insertion into the recess in the area of the sawtooth 23. As a result, the material is not injured by the sharp sawtooth 23 and chipping is largely prevented.
  • the height of the teeth depends on the required holding force and is preferably in a range of 0.5 mm to 10 mm.
  • the orientation of the saw teeth 23 allows a wooden lamella to be held in a recess 19 without the aid of further holding means such as screws, nails or adhesives.
  • the resistance of the sawtooth 23 for the wooden lamella 21 can be overcome by a short application of force, for example a blow with a hammer.
  • tool receiving openings 33 can also be provided on the legs 17.
  • a tool can be hung with drawbars, which pulls the wooden slat or the cover profile 21 into the recess by applying a torque.
  • the panels or terrace floors 20 are prefabricated and delivered already pressed together.
  • a sawtooth therefore acts as a barb, through which the wooden lamella 21 is reliably held in the recess 19 in a secured manner and against an extract. Due to the fact that the wooden lamella or the cover profile 21 rests on these over the entire length of the sides, the attachment is also free of play or wobble.
  • a sawtooth 23 are arranged on each of the two sides of the recess 19.
  • a plurality of saw teeth can also be formed on each side of the recess.
  • the tooth height can be varüert.
  • a plurality of teeth arranged one behind the other can therefore form a groove structure along the length of one side.
  • the wooden lamellae can be moistened with water after installation. Moistening leads to a swelling of the wood and the saw teeth penetrate even deeper into the wood slats.
  • a panel or a terrace floor 20 can be done very quickly.
  • a plurality of U-profiles at a distance according to the static requirements on a flat surface, such as facade, wall, masonry, ceiling, floor or Like.
  • a wooden lamella or a cover profile 21 is preferably held by at least two U-profiles 11, it must be ensured that the recesses 19 of two adjacent U-profiles 11, in which a wooden lamella is received, are aligned with one another.
  • long wooden lamellae or cover profiles 21 can also be held by three or more U-profiles. After fixing the U-profiles, the wooden lamellae 21 are to be inserted into the recesses.
  • the panel 20 may also be used as a room divider. For this purpose, it is conceivable that two visible sides are made by two cladding elements are connected to each other at two opposite middle parts 13 with each other.
  • the open design of the U-profile 11 allows water to drain quickly. Since the contact surfaces between the sides of the recesses 19 and the wooden blades 21 are small, no water can accumulate even at these locations. The panel 20 is therefore permanently protected against water damage.
  • the open design of the U-profiles 19 also allows the panel 20 to be easily illuminated from behind. This is due to the fact that the U-profiles 11 provide sufficient mounting or mounting options for cable material and lighting.
  • FIG. 5 a holding profile 19 is shown, which is provided for receiving cover profiles 21, whereby a floor covering, in particular a terrace floor 20, can be produced quickly.
  • the holding profile 19 off FIG. 5 can with cover profiles 21 of the FIGS. 6 and 7 interact.
  • the cover profiles 21 are designed as T or double T profile.
  • the cover profiles have a cover element 35 and a holding element 37.
  • the holding element 37 serves to receive in the recess 19 as described above.
  • the Cover elements 35 are formed, which project beyond the holding elements 37 on both sides and can cover the webs 22 with the exception of the expansion gap 39.
  • Frame members 41 serve to cover the front and long sides of the cover profiles 21.
  • FIG. 7a, 7b, 7c an embodiment with inclined cover elements 35 is shown.
  • the expansion gap 39 is almost invisible in this embodiment.
  • FIG. 9 is a first and second end piece 43,45 shown, which allow the determination of the frame members on the longitudinal and end sides of the cover profiles 21.
  • the first end piece is pushed into the holding profiles 11 on the front side.
  • the frame member 41 can then be hooked by means of hooks in hooking openings 47, so that on the frame member 41 on the visible side no fastening means can be seen.
  • the second end piece is preferably fixed to the end faces of two adjacent cover profiles 21. This is achieved by saw teeth 23. Also on the second end Einhakö Anlagenen 47 are provided.
  • the adjusting device 49 comprises a spindle 51 with a continuous external thread. At the first end of the spindle, a hexagon socket 53 is provided for transmitting torque to the end face. At the second end of the spindle 51, a stand 55 is freely rotatably mounted on the spindle.
  • the spindle 51 is held on the retaining profile 11 with a bracket 57, in which an external thread is provided. The external thread cooperates with the internal thread of the spindle 51.
  • the bracket 57 is locked in a rectangular insertion opening 59.
  • the central axes 61 of two opposite webs 22 and the axis of the spindle 51 lie substantially on one level.
  • the stand 55 does not rotate with the freely rotatable connection with the spindle 51 during the rotation of the spindle.
  • a particularly smooth turning of the spindle 51 is possible.
  • a plurality of adjusting devices 49 is provided on the holding profiles 11 in order to reliably support the terrace floor 20 on the ground. The alignment of the terrace floor 20 against the ground is therefore particularly simple and can be carried out quickly by non-specialists.
  • FIG. 11 shows a section of a bottom view of the retaining profile 11.
  • the bracket 57 has two legs 62a, 62b, which are interconnected by a bottom 63. At the transition from the legs 62a, 62b to the bottom 63 free spaces 65 are provided. Subsequent to the free spaces 65, two first bearing surfaces 67 are formed on the bottom 63. These first bearing surfaces 67 cooperate with two second bearing surfaces 69 on the insertion opening 59.
  • the bracket 63 is therefore slidably engaged with the insertion opening 59 along the arrow 71 and, because of the first and second bearing surfaces 67, 69, does not snap out of the insertion opening 59 even in its end positions.
  • the displaceability of the bracket 63 relative to the retaining profile 11 allows the finished deck floor 20 even after installation can still move slightly and no tensions can be built by the natural extent of the wood.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Finishing Walls (AREA)
  • Floor Finish (AREA)
EP11168479A 2010-06-02 2011-06-01 Profilé de retenue et ensemble doté d'un profilé de retenue Withdrawn EP2392749A3 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CH00872/10A CH703298A1 (de) 2010-06-02 2010-06-02 Halteprofil.

Publications (2)

Publication Number Publication Date
EP2392749A2 true EP2392749A2 (fr) 2011-12-07
EP2392749A3 EP2392749A3 (fr) 2012-04-18

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EP11168479A Withdrawn EP2392749A3 (fr) 2010-06-02 2011-06-01 Profilé de retenue et ensemble doté d'un profilé de retenue

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CH (1) CH703298A1 (fr)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR2997113A1 (fr) * 2012-10-23 2014-04-25 Neoclin Dispositif pour bardage a claire-voie pour toutes structures porteuses et son procede de montage
DE102014101547A1 (de) 2013-02-07 2014-08-07 Felix Cadonau Halteprofil
EP2653616A3 (fr) * 2012-04-20 2017-05-03 Peter Kasmanhuber Elément structurel pour des constructions paysagères dans le domaine de la jardinerie
DE102021123904A1 (de) 2021-09-15 2023-03-16 Bruno Heister Lamelle aus einem Werkstoffverbund, Kopfstütze, Möbel und Verfahren zur Herstellung einer Lamelle

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2099475A (en) 1981-05-28 1982-12-08 Donn Inc Suspended ceiling bracket

Family Cites Families (7)

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Publication number Priority date Publication date Assignee Title
FR1376447A (fr) * 1963-12-12 1964-10-23 Profilé pour le revêtement de surfaces telles que cloisons et plafonds ainsi que les panneaux de revêtement obtenus à l'aide desdits profilés
NL166089C (nl) * 1968-12-18 1981-06-15 Hunter Douglas Ind Bv Roosterwand- of roosterplafondconstructie.
DE8129931U1 (de) * 1981-10-14 1982-03-11 Mamsero AG, 9490 Vaduz Bausatz zum herstellen von laerm- und sichtschutzwaenden aus vorgefertigten bauteilen
GB9300478D0 (en) * 1993-01-07 1993-03-03 Hunter Douglas Ind Bv A panel system and a panelling member therefor
DE20120006U1 (de) * 2001-12-11 2003-04-17 Boeh Tobias Tragesystem für Doppelböden
DE20309902U1 (de) * 2003-06-26 2003-09-25 Arnold Ag Aus Stäben gebildete Verkleidung von Decken, Wänden o.dgl. Bauwerkteilen
GB0521846D0 (en) * 2005-10-27 2005-12-07 Sig Plc Batten

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2099475A (en) 1981-05-28 1982-12-08 Donn Inc Suspended ceiling bracket

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP2653616A3 (fr) * 2012-04-20 2017-05-03 Peter Kasmanhuber Elément structurel pour des constructions paysagères dans le domaine de la jardinerie
FR2997113A1 (fr) * 2012-10-23 2014-04-25 Neoclin Dispositif pour bardage a claire-voie pour toutes structures porteuses et son procede de montage
DE102014101547A1 (de) 2013-02-07 2014-08-07 Felix Cadonau Halteprofil
DE102021123904A1 (de) 2021-09-15 2023-03-16 Bruno Heister Lamelle aus einem Werkstoffverbund, Kopfstütze, Möbel und Verfahren zur Herstellung einer Lamelle

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EP2392749A3 (fr) 2012-04-18
CH703298A1 (de) 2011-12-15

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