EP1698736B1 - Façade et méthode de construction de façade - Google Patents

Façade et méthode de construction de façade Download PDF

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Publication number
EP1698736B1
EP1698736B1 EP06003860A EP06003860A EP1698736B1 EP 1698736 B1 EP1698736 B1 EP 1698736B1 EP 06003860 A EP06003860 A EP 06003860A EP 06003860 A EP06003860 A EP 06003860A EP 1698736 B1 EP1698736 B1 EP 1698736B1
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EP
European Patent Office
Prior art keywords
profile
fastening
groove
fastening profile
carrying
Prior art date
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Active
Application number
EP06003860A
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German (de)
English (en)
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EP1698736A2 (fr
EP1698736A3 (fr
Inventor
Rainer Vögele
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Raico Bautechnik GmbH
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Raico Bautechnik GmbH
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Publication of EP1698736A2 publication Critical patent/EP1698736A2/fr
Publication of EP1698736A3 publication Critical patent/EP1698736A3/fr
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/88Curtain walls
    • E04B2/96Curtain walls comprising panels attached to the structure through mullions or transoms
    • E04B2/967Details of the cross-section of the mullions or transoms

Definitions

  • the invention relates to a facade and a method for producing a facade, consisting of vertically and / or horizontally extending support profiles, wherein the support profile carries a fastening profile, which holds the facade elements.
  • the facade is usually made of horizontally extending support profiles, the bars, for example, between vertically arranged support profiles, such as posts or columns, are arranged. These horizontal or vertical support profiles carry a fastening profile, which hold the facade elements.
  • facade elements for example, insulating glass panes or metal plates or other Fassaden hypochllieri can be used.
  • the invention is insofar not limited to the fact that the facade consists of vertically and horizontally extending support profiles. Arrangements are also known in which, for example, only vertically or only horizontally extending support profiles are used. In order to give the architectural design sufficient scope, the support profiles can also be arranged to extend at an angle to the vertical or horizontal.
  • the known facade construction comprises a support structure of a first material and a glass-holding structure of a second material.
  • the glass-retaining structure can be attached directly to the support structure without further fastening means in such a way that there is a form-fitting connection between the glass-holding structure and the support structure.
  • a traction, in particular a frictional connection, which is achieved by a material deformation is not disclosed in this document.
  • the invention of a facade proposes a facade consisting of preferably vertically and / or horizontally extending support profiles, wherein the support section carries a mounting profile, which holds the facade elements, wherein the support profile at least one longitudinally extending groove, in which at least partially a fastening profile part stands, wherein the groove in the support profile in the connected state undercuts, wherein the fastening profile with the support profile by a material deformation is positively and non-positively connected, which is characterized in that the material deformation is inelastic and the material of the fastening profile part in the connected state fills the undercuts in the groove in the support profile.
  • the invention achieved by this proposal that it depends on the type of material of the supporting profile or the. Befest Trentsprofiles does not arrive. Since the support profile and the fastening profile are not connected to one another by a (hot) welding, it is possible according to the invention to connect in principle any materials with each other. Of course, the invention can also be used in material equality of support and mounting profile.
  • the introduction of a longitudinal groove in the support profile is easily possible with appropriate processing machines in high quality and high performance.
  • the groove can be introduced with high precision in the support profile and thus also the attachment to the support profile are mounted exactly to minimize dimensional tolerances as possible.
  • a fastening profile part is provided which is configured in any desired manner.
  • the fastening profile part is, for example, integrally connected to the fastening profile or manufactured in one piece with this, or as an initially separate part with the Attachment profile connectable so as to form the einêt in the groove mounting profile part.
  • the fastening profile part is inserted into the groove so that it is sufficient. It then takes place, for example, a mechanical connection step, which leads by inelastic deformation of the material of the support profile and / or the fastening profile part to a positive and non-positive connection of the fastening profile part and the supporting profile.
  • a mechanical processing step for example, the impressing of a correspondingly high force in the groove or Nutrand Scheme of the support profile is considered, which then the groove is deformed such that the mounting profile part is held positively and non-positively.
  • the fastening profile part is compressed at least in the region of the groove, so that the material of the fastening profile presses against the groove wall and so a positive and non-positive connection is created.
  • any materials according to the invention can be connected to each other. It is thus possible, for example, to optimize the material of the supporting profile, for example with respect to its static design, but to optimize the material of the fastening profile, for example with regard to its static property and also its heat-insulating properties. Since a secure, reliable, high holding forces transmitting connection between the fastening profile and the support profile is provided by the invention, a stable, variable ausgestaltbare, with respect to its thermal insulation properties optimizable inventive facade is provided.
  • Another advantage of the invention is in particular that with respect to the design of the facade, in particular the connection region of the fastening profile to the support section by the invention considerable design options are opened. Thus it is possible to combine corresponding special profiles with each other according to the invention.
  • the groove is incorporated in the support profile before a final corrosion protection process step.
  • Such corrosion protection is cleverly applied in the workshop and not at the construction site. This ensures that the support profile has an intact surface, whereby a high corrosion resistance is ensured.
  • the force-locking compound increasing means for example, with corresponding coatings of the groove (for example, fine-grained sand, etc.) to increase the microroughness or roughness accordingly and thereby produce a positive connection on the microscopic scale.
  • the material of this coating is possibly also deformed when connecting the two parts together.
  • a coating or layer which increases the roughness is preferably arranged at least only on the groove walls.
  • the groove walls are oriented generally parallel to the effective direction of the holding force. Measures to better bond the groove walls with the corresponding ones Areas of the fastening profile part ultimately increase the holding force.
  • such means may also be provided on the groove bottom, in particular if, for example, a corresponding, outstanding spring or the like are provided on the groove bottom.
  • the corrosion protection treatment is provided both on the groove walls as well as on the groove bottom to form a possible flat, closed protective skin, in cooperation with the rest of the anti-corrosion treatment of the supporting profile.
  • the fastening profile part is connected to the support profile by a press fit, cold forming, cold forging or cold-press welding.
  • the exemplary manufacturing method of a facade according to the invention comprises, as a first step, the incorporation of a groove in the supporting profile.
  • the engaging in the groove mounting profile part is optionally stamped at its lower end, in such a way to produce the best possible positive and non-positive connection.
  • a dovetail or the like is worked on by the stamping process on the protruding profile part. But there are a lot of variants for this.
  • the fastening profile is set in the groove, wherein the support profile and the fastening profile are not yet mechanically connected to one another.
  • the fastening profile is guided and held to avoid misalignment.
  • the mechanical joining of the fastening profile part takes place in the groove of the supporting profile.
  • the aforementioned processing steps fall under the generic term "forming", under which the targeted change in the shape or the surface of a workpiece is understood.
  • forming under which the targeted change in the shape or the surface of a workpiece is understood.
  • This inelastic deformation in which the material remains in the deformed state after processing, is different from an elastic, resilient deformation, as is well known in the construction of facades for inserting fastening profiles, staples and the like in recesses.
  • a pressure forming is used, wherein the flow behavior of metal is used, which sets when, for example, the area adjacent to the groove of the support profile is acted upon by appropriate means with force.
  • the fastening profile part is connected with the support profile by a press fit, the fit between the fastening profile part and the support profile is chosen so that a press fit results.
  • the material of the fastening profile part and / or the groove wall may possibly also - depending on the force - come into flux, which also creates a material deformation.
  • cold forming, cold forging or cold-press welding the fastening profile part is adjusted with a certain play in the groove. By the forming process of this game is eliminated by the material of the support profile is pressed against the mounting profile part. It comes ultimately by this forming, forging or welding process, which preferably takes place without the action of heat, to the concerns of the first spaced apart adjusting groove walls on the side walls of the fastening profile part.
  • the fastening profile part now has a corresponding embossing, for example in such a way that the lower region is wider than the upper region, then a positive locking will also result on a macroscopic scale and a stable connection between the two components will result.
  • the fastening profile part in the lower, in the groove region is wider than in the upper region in the groove.
  • a dovetail-shaped connection is formed, as shown for example in the figures.
  • the configuration of the fastening profile part does not have to be symmetrical in itself, it also includes quite unbalanced embodiments of the fastening profile part to the invention.
  • the groove in the support profile has undercuts, which fills the material of the fastening profile part.
  • a groove with initially perpendicular or flat groove walls is incorporated into the supporting profile. After the fastening profile part is inserted, the joining process takes place, which leads to a change in the groove shape. This results, for example, that in the connected state then the groove has corresponding undercuts, since the groove wall rests in this area on the protruding fastening profile part.
  • Such a configuration results, for example, when the fastening profile part has a longitudinal lateral groove or side groove in the region which projects into the groove.
  • This, for example, rail-like training (this can also be one-sided or symmetrical, two-sided on both side walls be the protruding mounting profile part) causes an undercut results in the lower region of the groove in the connected state.
  • the lateral groove also causes the fastening profile part to be wider in the lower region (ie adjacent to the groove bottom) in the groove than in the region where the groove is located. This also results in a simple manner, a macroscopically positive and therefore non-positive bond.
  • the joining process takes place, for example, in that at least one notch running parallel to the groove is rolled or rolled into the carrier profile.
  • This notch ultimately causes a plasticization of the support profile material, so that it flows, for example, in the embossed contour of the fastening profile part.
  • there is also a certain amount of residue in the supporting profile which can be exploited especially for thermal insulation.
  • the connection area of the fastening profile on the support profile in the insulation of the facade according to the invention is of great importance.
  • the overall thermal insulation properties are precisely determined by the heat-conducting properties in the region of the fastening profile, since a connection from the outside to the inside is to be provided here because of the fastening structure.
  • the notch parallel to the groove of the supporting profile allowed it, in this area, where the notch embossed to arrange additional insulation material, just to improve the thermal insulation or to prevent the heat flow here.
  • a fastening profile part is in the groove.
  • the fastening profile has only partially fastening profile parts which protrude into the groove.
  • interruptions are provided on the fastening profile, through which the fastening profile is not in contact with the support profile.
  • a possible heat flow between the fastening profile and the supporting profile in the solid body is also eliminated at the same time.
  • the mounting profile only partially equip with mounting profile parts that are in the groove, therefore, increases the thermal insulation properties of the facade of the invention.
  • the resulting gap can be equipped, for example, with thermal insulation material.
  • the fastening profile is thereby equipped, for example, at regular intervals in a corresponding manner with the individual fastening profile parts or a manufacturing process initially, for example, strip-like trained mounting profile part is afterwards removed from the mounting profile again, for example, milled or otherwise separated.
  • a significant advantage of the invention is that the design of the supporting profile and also the configuration of the fastening profile, both with respect to the respective cross-section as well as the materials used is arbitrary.
  • a box or double T-beam profile can be used for the support profile.
  • the fastening profile is very variable. According to the invention it is provided that this is formed, for example, as a receiving channel profile, in which a screw channel strip can be inserted or inserted. Alternatively, it is provided to form the fastening profile as a U-shaped screw channel or equip the mounting profile as a hollow profile.
  • the fastening profile as a section C-like profile can be hung in the fastening means for the facade elements.
  • the C-shaped profile serves, for example, as a guide of corresponding slot stones, which have a threaded hole and thus constitute a fastener.
  • the support profile has two or more parallel grooves and the fastening profile has a plurality of different fastening profile parts, each of which at least partially engage in the grooves.
  • fastening profile part On the fastening profile.
  • a plurality of fastening profile parts preferably symmetrically, are arranged on the fastening profile. Such an arrangement is particularly favorable for a uniform distribution of force.
  • the groove is then optionally on both sides ever a notch.
  • the fastening profile is T-shaped in section, wherein the web of the T rests on the support profile and in particular has the fastening profile parts in its edge regions.
  • the stem of the T then forms, for example, the receiving body for receiving the fastening means of the facade elements.
  • This can be for example a hollow body or else a screw channel.
  • the mounting profile is equipped with connection areas for a seal.
  • connection areas for a seal For sealing the facade elements to the building inside several seals are provided. These seals are suitably fixed to the support structure. If now resorted to a commercial support profile, so provisions must be made that the seal is arranged safely and reliably.
  • the fastening profile which is designed as a special special profile for the facade, already has corresponding connection areas, preferably strip-like connection areas, which can interact with the seal in a suitable manner.
  • connection areas preferably strip-like connection areas
  • a corresponding groove or recess is provided in the seal into which a terminal block of the fastening profile snapping or clamping engages and so, in particular during assembly of the facade allows secure guidance and holding the seal.
  • connection areas are arranged at a T-shaped fastening profile on the outer region of the web, which cooperates favorably with the seal known as "hat seal” in a special way. Because of this, the seal is kept very wide and therefore stable.
  • the T-type fastening profile is stable due to its cross-sectional training.
  • a significant advantage of the invention is in particular that the support profile and the fastening profile consist of different materials.
  • the support profile is provided to form the support profile as metal, in particular aluminum or steel profile.
  • the fastening profile is formed according to the invention, for example as a metal, in particular as aluminum or steel profile. It is also possible to form this as a plastic profile. It is possible that the various properties can be used appropriately optimized; For example, it is possible to attach a fastening profile made of aluminum according to the invention on a support profile made of steel.
  • the fastening profile since it is made of aluminum, for example, can be produced very variably in an extrusion or extrusion process.
  • thermosets especially glass fiber reinforced plastic or carbon fiber reinforced plastic is preferably used.
  • These thermosets are characterized by poor thermal conductivity, but with high mechanical stability.
  • the invention provides that the support profile in the region of the groove has a material thickness which is higher than the groove depth.
  • the material thickness here is at least 150% of the groove depth.
  • the object of the invention is also achieved by a method for producing a facade, consisting at least of support and fastening profiles which are connected to each other.
  • a support profile is produced, which is provided at least with a longitudinal groove. This support profile may be rolled or manufactured in an extrusion process.
  • a fastening profile is set in the groove of the supporting profile. In this case, the fastening profile has one or more fastening profile parts which project into the groove.
  • groove and fastening profile part are formed on fit, so that both parts are joined together by press fit.
  • a force can be impressed on the fastening profile part, which compresses this at least in the region of the groove and thus causes an inelastic material deformation, that the fastening profile part is positively and non-positively connected to the support profile.
  • the fastening profile part is set in the groove and then the groove edges over the entire length or sections deformed so that the material of the support profile is pressed against the fastening profile part.
  • a roller in particular a roller which is conical in cross-section, is provided.
  • the fastening profile is guided or held during the fastening process, so that it is precisely fixed in its position in order to perform an exact assembly with small dimensional tolerances.
  • Fig. 1 a first variant of the structure according to the invention is shown.
  • the illustrations are reduced to the essential points, the remaining elements that are necessary for the adjustment of a facade according to the invention, such as seals or facade elements, etc., are omitted for clarity.
  • the structure results, for example Fig. 1 ,
  • the support profile 1, which is designed for example as a T or double T-beam, has on its side facing the outer sides of the facades a groove 10.
  • the mounting profile part 3 is like a foot.
  • the fastening profile part 3 is part of the fastening profile 2, which orentiert outward (with respect to the facade) is.
  • Left and right next to the mounting profile 2 are the facade elements, which are then held by a pressure bar.
  • the pressing bar is usually fastened with appropriate fasteners such as screws on the mounting profile 2. Between the support section 1 and the facade elements, as well as between the facade elements and the pressing bar not shown seals are provided.
  • the fastening profile part 3 shown in the figures is dovetail-shaped in the connected state with the supporting profile 1.
  • the resulting groove 10 is still dovetailed, this configuration has been achieved for example due to the embossing process or has been achieved, for example, in the incorporation of the groove with a suitably equipped cutter.
  • the invention is not limited to a groove 10, which is U-shaped, that is equipped with straight, oriented at right angles to the outside groove walls, but may be formed arbitrarily.
  • the structure according to the invention can be designed very variably.
  • different variants are shown in the figures.
  • the fastening profile 2 which carries the fastening profile part 3 centrally on its underside, designed as a receiving channel profile 29.
  • the receiving channel profile 29 is formed for example of steel as a rolled or rolled profile and opened on its outwardly oriented side. It has a non-edged upper edge 200, which avoids falling out of the inserted screw channel 28.
  • the fferkankalological 28 is made for example of aluminum, the receiving channel profile 29 made of sheet steel.
  • the flanging of the edge 200 is also designed so as to allow an axial fixation of the screw 28. This is achieved for example by an appropriate fit.
  • the arrangement of the screw channel 28 leads to a sectionally U-shaped screw, in which, for example, fastening screws can be screwed.
  • the advantage of a screw channel is that a longitudinal opening 26 is available for the optional introduction of the fastening means.
  • the inside of the U-shaped profile is provided with a ribbing or toothing 25 to improve the interaction with the threads of the screw yet.
  • This ribbing 25 is also after the variants Fig. 3 and Fig. 5 provided in a similar way.
  • Fig. 2 is a side view, for example, the variant after Fig. 1 , shown.
  • the fastening profile 2 is connected via its fastening profile parts 3, 3 'with the support profile 1. These are in the groove 10 a.
  • the fastening profile part 3 is not arranged continuously on the fastening profile 2, but divided in sections. Therefore, there is a recess or interruption 30 between the two fastening profile parts 3, 3 '. In this region, therefore, a gap is formed between the fastening profile 2 and the supporting profile 1. Since there is no contact of the supporting profile 1 to the fastening profile 2, in this area, a heat transfer through the respective solids, on the contact surfaces prevented. The arrangement of the recess 30 thus leads to a considerable improvement in the thermal insulation properties of the facade constructed according to the invention.
  • the in Fig. 3 shown structure is with the after Fig. 1 identical in many areas.
  • the attachment profile 2 is here, however, designed slightly differently.
  • This screw channel profile 27 is U-shaped in section and has on its central axis, below projecting, the protruding into the groove 10 mounting profile part. 3
  • the structure of the fastening profile shown here is symmetrical to its central axis and also in the groove 10 ein Hopkins Fastening profile part 3 is symmetrical, designed in particular dovetail-shaped.
  • This variant also has an opening 26 provided over the entire length of the fastening profile 2, which permits the screwing in of fastening screws for the pressing strips or other elements, for example for holding facade elements, at any point.
  • the ribbing 25 facilitates and improves the tightening of the fastening screws.
  • FIG. 4 shown example of the invention proposes as a fastening profile 2, a hollow section 23 before.
  • the hollow profile 23 is formed on the inside by the approach area for the fastening profile part 3. It also has two parallel side walls, which are connected by the web portion 201.
  • Such a profile can be produced for example from aluminum but also from thermosets or other plastics.
  • the web portion 201 is pierced to install a fastener. It is also possible to longitudinally insert a corresponding profile into the cavity 202, which then interacts with an element that engages from outside through a hole.
  • FIGS. 5 and 6 show solutions in which the support section 1 has two parallel grooves 10 and the fastening profile 2 has two mutually spaced mounting profile parts 3, 31, 32.
  • This in Fig. 5 embodiment shown shows a section T-like 24 fastening profile.
  • This T 24 consists of a voltage applied to the support section 1 web 21 and a right-angled protruding stem 22nd
  • the stem 22 is similar in construction as the screw channel 27 after Fig. 3 , It is formed on average as a U-profile and also serves as a screw. It is therefore equipped with a ribbing 25 and a longitudinal opening 26.
  • the stem 22 is integrally connected to the web 21.
  • the structure is essentially symmetrical to the central axis.
  • the broadening of the profile 2 through the web 21 is used to arrange the fastening profile parts 31, 32 respectively at the outer edge of the web 21.
  • the invention makes it possible to construct optionally formed as corresponding special profiles fastening profiles 2 available as commercial goods supporting profiles 1.
  • profile is formed for example as a strand-press profile.
  • the invention can also be used in the same way for fastening profiles 2 produced in a rolling or rolling process, as described, for example, in US Pat Fig. 6 is shown.
  • the attachment profile 2 is after Fig. 6 formed from a steel sheet and prepared in a corresponding rolling or rolling process.
  • Such profiles can be produced, for example, by swaging in any way.
  • the design is realized here as a screw channel 27, that is, it results in an externally accessible opening 26th
  • Fig. 6 shown profile is symmetrical, in section T-like arranged with the edge region of the web 21, downwardly projecting first and second fastening profile parts 31, 32 which engage in corresponding grooves 10 of the support profile 1.
  • the fastening profile parts 31, 32 are obtained by folding or rolling / rolling.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Finishing Walls (AREA)
  • Load-Bearing And Curtain Walls (AREA)
  • Automatic Assembly (AREA)
  • Manufacturing Of Tubular Articles Or Embedded Moulded Articles (AREA)
  • Joining Of Building Structures In Genera (AREA)

Claims (11)

  1. Façade consistant de préférence en des profilés de support verticaux et/ou horizontaux, ledit profilé de support (1) comportant un profilé de fixation (2) maintenant les éléments de façade et au moins une gorge (10) orientée dans le sens de la longueur du profilé (1) au niveau de laquelle et au moins en certains endroits peut être introduit un pied de fixation (3), la gorge possédant alors des crans tandis que le pied de fixation (3) est immobilisé dans le profilé de support (1) à l'aide d'une déformation de la matière permettant une fixation sans jeu et sans déperdition de pour la transmission des forces, caractérisée en ce qu'il s'agit d'une déformation inélastique de la matière et en ce que, lors de la fixation, le matériau du pied de fixation (3) comble les évidements des crans existant dans la gorge (10) du profilé de support (1).
  2. Façade selon la revendication 1, caractérisée en ce que le profilé de fixation (2) est configuré comme un profilé à canal extérieur (29) permettant de recevoir ou d'y ficher un profilé à canal pour vis (28) et/ou en ce que le profilé de fixation (2) est configuré comme un profilé à canal pour vis (27) ayant en particulier la forme d'un U.
  3. Façade selon une ou les deux revendications précédentes, caractérisé en ce que le pied de fixation (3) est lié au profilé de support (1) par une fixation à serrage, par un procédé de déformation à froid, de forge à froid ou de soudage à froid par pression et/ou en ce que, à l'état fixé, l'extrémité inférieure du pied de fixation (3) introduite dans la gorge (10) s'élargit à l'intérieur de la gorge vers le bas.
  4. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que, à l'état fixé, la gorge (10) située dans le profilé de support (1) possède des crans (11) comblés par le matériau du pied de fixation (3) et/ou en ce qu'il existe au moins une encoche parallèle à la gorge (10) et située dans le profilé de support (1).
  5. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que la partie du pied de fixation (3) introduite dans la gorge (10) possède à sa face latérale une rainure ou une gorge latérale laquelle est, à l'état fixé, comblée par le matériau du profilé de support (1) et/ou en ce que le profilé de fixation (2) ne comporte qu'à certains endroits des pieds de fixation (3, 3') qui peuvent être introduits dans la gorge (10) et/ou en ce que les pieds (3,3') sont espacés afin de créer entre eux un creux ou un espace (30).
  6. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que, à l'état fixé, la section de la gorge (10) possède une forme de queue d'hirondelle et/ou en ce que les faces latérales ou le fond de la gorge comportent un revêtement anti-corrosion et/ou en ce qu'au moins les faces latérales de la gorge possèdent un revêtement augmentant la rugosité.
  7. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que le profilé de fixation (2) est configuré comme un profilé creux (23) et/ou en ce que la section du profilé de fixation (2) possède une forme de C et/ou en ce que le profilé de fixation (2) est fabriqué par extrusion ou par pliage.
  8. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que le profilé de support (1) comporte deux ou plus de deux gorges (10) parallèles et en ce le profilé de fixation (2) comporte plusieurs pieds de fixation différents (31, 32), qui sont chacun et au moins à certains endroits introduits dans les gorges (10).
  9. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que le pied de fixation (3) est situé symétriquement par rapport au profilé de fixation (2) et/ou en ce que les différents pieds de fixation (31, 32) sont situés symétriquement par rapport au profilé de fixation (2) et/ou en ce que la section du profilé de fixation (2) possède une forme de T (24) et/ou en ce que le profilé de fixation (2) comporte des zones de connexion (4), en particulier des zones de connexion sous forme de languette (40) pour un joint d'étanchéité.
  10. Façade selon une ou plusieurs des revendications précédentes, caractérisée en ce que le profilé de fixation (2) et le profilé de support (1) sont constitués d'un matériau identique ou de matériaux différents et/ou en ce que le profilé de support (1) est un profilé en métal et en particulier en aluminium ou en acier et/ou en ce que le profilé de fixation (2) est soit un profilé en métal et en particulier en aluminium ou en acier, soit un profilé en plastique et/ou en ce que le profilé de fixation (2) est fabriqué en duroplaste, en matière plastique renforcée de fibres de verre ou de carbone.
  11. Procédé de fabrication d'un profilé de façade, comportant un profilé de support et un profilé de fixation, destiné à réaliser une façade selon une ou plusieurs des revendications précédentes, caractérisé par le déroulement des étapes suivantes:
    1. Ajustement du profilé de fixation à l'intérieur d'une gorge du profilé de support.
    2. Montage du profilé de fixation sur le profilé de support par un procédé de déformation.
EP06003860A 2005-02-25 2006-02-25 Façade et méthode de construction de façade Active EP1698736B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE202005003254U DE202005003254U1 (de) 2005-02-25 2005-02-25 Fassade

Publications (3)

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EP1698736A2 EP1698736A2 (fr) 2006-09-06
EP1698736A3 EP1698736A3 (fr) 2007-06-06
EP1698736B1 true EP1698736B1 (fr) 2009-04-08

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP06003860A Active EP1698736B1 (fr) 2005-02-25 2006-02-25 Façade et méthode de construction de façade

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EP (1) EP1698736B1 (fr)
AT (1) ATE428033T1 (fr)
DE (2) DE202005003254U1 (fr)
DK (1) DK1698736T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102006054717A1 (de) * 2006-11-21 2008-05-29 Wuppermann Staba Gmbh Fassadenprofil

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CA1208872A (fr) * 1984-09-24 1986-08-05 Francois X. Laroche Joints de panneaux pour le batiment
US5245808A (en) * 1989-12-01 1993-09-21 Kawneer Company, Inc. Retainer and weatherseal for structurally bonded glazing
EP0652335A1 (fr) * 1993-11-04 1995-05-10 Geilinger AG Construction de façade
DE9411552U1 (de) 1994-07-16 1994-11-10 Raico Bautechnik Gmbh Fassade
DE19622759A1 (de) * 1995-12-14 1997-06-19 Niemeier Ralf Metallprofil
DE10128748B4 (de) * 2001-06-13 2006-08-17 Schulz, Harald, Dr.-Ing. Fassadenkonstruktion

Also Published As

Publication number Publication date
DE502006003355D1 (de) 2009-05-20
DE202005003254U1 (de) 2006-07-06
EP1698736A2 (fr) 2006-09-06
DK1698736T3 (da) 2009-06-15
ATE428033T1 (de) 2009-04-15
EP1698736A3 (fr) 2007-06-06

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