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EP3653826B1 - Moyen de fixation permettant de fixer des cadres pour fenêtres, portes, portails ou façades, procédé et agencement - Google Patents

Moyen de fixation permettant de fixer des cadres pour fenêtres, portes, portails ou façades, procédé et agencement Download PDF

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Publication number
EP3653826B1
EP3653826B1 EP19204773.6A EP19204773A EP3653826B1 EP 3653826 B1 EP3653826 B1 EP 3653826B1 EP 19204773 A EP19204773 A EP 19204773A EP 3653826 B1 EP3653826 B1 EP 3653826B1
Authority
EP
European Patent Office
Prior art keywords
frame
opening
fastening
connecting element
retaining plate
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.)
Active
Application number
EP19204773.6A
Other languages
German (de)
English (en)
Other versions
EP3653826A1 (fr
Inventor
Dr. Jürgen Küenzlen
Jörg Fleu
Franz Voß
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wuerth International AG
Adolf Wuerth GmbH and Co KG
Original Assignee
Wuerth International AG
Adolf Wuerth GmbH and Co KG
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 Wuerth International AG, Adolf Wuerth GmbH and Co KG filed Critical Wuerth International AG
Publication of EP3653826A1 publication Critical patent/EP3653826A1/fr
Application granted granted Critical
Publication of EP3653826B1 publication Critical patent/EP3653826B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B1/00Border constructions of openings in walls, floors, or ceilings; Frames to be rigidly mounted in such openings
    • E06B1/56Fastening frames to the border of openings or to similar contiguous frames
    • E06B1/60Fastening frames to the border of openings or to similar contiguous frames by mechanical means, e.g. anchoring means
    • E06B1/6015Anchoring means

Definitions

  • the invention relates to an arrangement with a fastening means for fastening frames for windows, doors, gates or facades, in particular for frames made of aluminum profiles, to structures, the fastening means being a retaining plate, a connecting element, in particular a threaded bolt, for fastening to an edge of a Has opening of the structure.
  • the retaining plate has at least one through opening for receiving the connecting element.
  • the invention also relates to a method for assembling a frame.
  • German Offenlegungsschrift DE 10 2016 213 293 A1 shows a fitting for attaching window and door frames with a profile rail for contact with an edge of a window or door opening, the profile rail being provided for holding an adjustment element which is to be arranged perpendicular to the profile rail and which engages with the window or door frame, as well as a Holding piece that is received in the profile rail.
  • the general building inspectorate approval with approval number Z-14.4-728 of Adolf Würth GmbH & Co. KG describes the subject of approval, the fall-proof window element fastening.
  • the fall-proof window element fastening consists of a window installation rail W-ABZ, a connecting element that can be fastened to it in a force-transmitting manner, and a retaining plate that can be connected to the connecting element.
  • the anti-fall window element fastening is suitable to be fastened to the edge of an opening in a building with the window installation rail W-ABZ and to be connected directly to a steel core of a frame for windows with the retaining plate.
  • the fastening means has a slot nut which is inserted into an undercut groove in the frame.
  • a threaded bolt is attached to the sliding block.
  • an angle fitting is attached to the frame, which is then attached to an outer wall of the building.
  • the fitting is angled twice by 45 ° for this purpose, so that it can be attached on the one hand to a side surface of the frame and on the other hand to the outer wall of the building arranged perpendicular to the side surface of the frame.
  • a frame for windows and a structure with an opening is known.
  • the fastening means has a slot nut which is provided with a threaded bolt and which is received in an undercut groove in the frame.
  • a fitting, which is connected to an outside of a building wall, is fastened to the frame by means of the threaded bolt.
  • the fitting is angled twice by 45 ° for this purpose.
  • the invention is based on the object of enabling a flexible, quickly assembled and flexibly usable arrangement with a fastening means on frames for windows, doors, gates or facades.
  • a fastening means for fastening frames for windows, doors, gates or facades, in particular for frames made of aluminum profiles, on structures, with a retaining plate for fastening to the frame and a connecting element, in particular a threaded bolt, for fastening to an edge an opening of the structure is provided, the retaining plate having at least one through opening for receiving the connecting element, and an anchoring element for providing a fastening base for the retaining plate and / or for the connecting element on the frame, in particular in an undercut groove of the aluminum profile of the frame is.
  • a fastening means which has a retaining plate, a connecting element and an anchoring element.
  • the retaining plate is designed together with the anchoring element for attachment to the frame.
  • the retaining plate has at least one through opening for receiving the connecting element.
  • the connecting element in particular a threaded bolt, is provided for fastening to an edge of an opening in a building, it being possible for this fastening to take place indirectly via an additional fitting.
  • the anchoring element is for providing a Mounting base for the retaining plate and / or for the connecting element provided on the frame.
  • the connecting element is designed to engage in an undercut groove in the aluminum profile of the frame.
  • the anchoring element engages at least in one undercut, but usually in two undercuts, the undercut groove.
  • the retaining plate is preferably made of a dimensionally stable material and is so large that it does not protrude beyond the surface of the frame in which the undercut groove is arranged.
  • Each passage opening of the holding plate can be designed with or without an internal thread.
  • the through opening which could also be referred to as a through hole, in particular a through thread, is provided for receiving the connecting element in sections, that is to say for fastening the connecting element.
  • the connecting element is thus designed to be connectable to the retaining plate.
  • the connecting element can be any type of structural element that is suitable for connecting two components to one another and withstanding a load in bending, in tension and in compression.
  • the connecting element is particularly advantageously designed as a threaded bolt.
  • the threaded bolt can be connected to the retaining plate via the through opening.
  • the at least one through opening can have an internal thread for this purpose.
  • the retaining plate with the connecting element can be connected to the anchoring element.
  • the anchoring element provides a mounting base.
  • a mounting base is a material or component in a groove that is used to anchor other components.
  • the fastening base can be a material that engages behind an undercut groove in its at least one undercut. Additional components, such as retaining plates and connecting elements, can be connected to a groove in a profile or a frame via the fastening base.
  • the holding plate can be releasably connected to the anchoring element by means of the connecting element and thus releasably connected to the fastening base. Such a releasable connection can be implemented, for example, by screws.
  • the anchoring element is designed as a slot nut for insertion into an, in particular undercut, groove of a frame.
  • the sliding block is inherently a dimensionally stable component.
  • the slot nut is designed so that it can be introduced into a groove, in particular into an undercut groove of the frame.
  • the slot nut can be pushed into the end of the groove or inserted into the groove from the opening and then into engagement with one or two Be brought undercuts of the groove.
  • the slot nut as an anchoring element can be inserted at the desired position in the undercut groove of a frame or moved in the undercut groove and thereby positioned.
  • the shape of the slot nut allows a form-fitting engagement in the undercut groove and thus the provision of a secure mounting base.
  • a secure mounting base is an anchoring element that ensures a secure connection between the frame and the retaining plate.
  • the slot nut can be designed so that it can be inserted from a corner of the frame for windows, doors, gates or facades into the face of the undercut groove of the frame for windows, doors, gates or facades.
  • This embodiment of the sliding block is particularly useful when the groove is so narrow that a sliding block cannot be inserted into the groove through the opening of the groove.
  • the sliding block is designed so that it can be inserted into the undercut groove of the frame by tilting over its longitudinal side and can be rotated back in the undercut groove so that the sliding block is partially in the at least one undercut of the groove of the frame engages.
  • the dimensions of the slot nut are particularly advantageous so that it is less high than the undercut groove of the frame is wide at its narrowest point, so that the slot nut can be inserted into the opening of the groove and then rotated in the groove about its longitudinal axis .
  • the sliding block is rounded at its longitudinal edges.
  • the slot nut can have chamfers at least along its long sides which are adapted to the undercut groove in such a way that the slot nut optimally engages behind the undercuts of the groove and creates a form-fitting connection.
  • the sliding block has at least one through hole for receiving the connecting element.
  • the through-hole can advantageously be designed in such a way that it receives the connecting element in sections.
  • the through hole can be smooth on the inside and only guide the connecting element.
  • the through hole can alternatively have an internal thread. Then the connecting element is guided from the through opening of the holding plate, which in this case has no internal thread. This ensures that the connecting element is fastened to the sliding block.
  • the sliding block has at least one first through hole for a fastening element for connecting to the retaining plate and / or at least one further through hole, in particular a threaded hole, for a fastening element for fixing the sliding block in the groove of the frame.
  • a fastening element can advantageously be a screw, a rivet, a threaded pin with a nut, a pin with a split pin or the like.
  • the slot nut can be fixed in the groove, for example, by means of grub screws. These brace the slot nut in the undercut groove. Bracing of the sliding block in the undercut groove can also be ensured solely by connecting the sliding block as an anchoring element to the retaining plate.
  • the anchoring element is designed as a solidifiable material and engages in the at least one undercut of the groove of the frame, in particular positively and / or cohesively, in particular adhesively, in order to provide a mounting base.
  • the solidifiable material advantageously completely fills the at least one undercut of the undercut groove when viewed in the cross section of the groove. That is, the solidifiable material engages positively and / or cohesively in the at least one undercut of the undercut groove.
  • a method for attaching a fastening means to a frame for windows, doors, gates or facades the fastening means having a retaining plate for fastening to the frame and a connecting element, in particular a threaded bolt, for fastening to an edge of an opening in a building, with the steps of positioning an anchoring element in an undercut groove of the frame, and connecting the anchoring element to the retaining plate.
  • the retaining plate is advantageously connected to the connecting means, in particular a threaded bolt, by screwing the connecting means into the retaining plate.
  • Flexible positioning of the anchoring element in the undercut groove of the frame is possible. The flexible positioning enables a particularly stable window and door installation. In connection with the window and door assembly, care must be taken to ensure that the resulting forces, such as bending stress, tensile stress and Pressure load, on the window or door and thus on the fastening means are optimally distributed.
  • the anchoring element is designed as a slot nut and is introduced into this undercut groove by tilting its longitudinal side parallel to the longitudinal axis of the undercut groove of the frame and the at least one undercut in sections by turning the slot nut back in the undercut groove engages behind the groove of the frame.
  • the slot nut can also be inserted as an anchoring element along its longitudinal side from one end of the frame into the undercut groove of the frame.
  • the slot nut can also be provided with a microencapsulated adhesive.
  • Microencapsulated adhesive can also be attached to the threads of fastening elements.
  • the microencapsulated adhesive can be provided in order to achieve increased stability and security.
  • the anchoring element in the form of solidifiable material is introduced into the undercut groove of the frame and solidified there in engagement with the undercut groove, in particular in a form-fitting and / or cohesive manner, in particular adhesively, in order to provide a mounting base.
  • the solidifiable material can advantageously be introduced during the production of the frame for windows, doors, gates or facades, in particular the aluminum profile. Furthermore, the solidifiable material can be introduced directly during the assembly of the frame for windows, doors, gates or facades at an edge of an opening in a building. In order to avoid that the solidifiable material penetrates too far into the profile of the frame for windows, doors, gates or facades, the step of introducing can be preceded by inserting a sealing strip into the undercut groove. The sealing strip prevents the solidifiable material from penetrating too deeply into the profile through the groove. A material that solidifies quickly is particularly advantageous.
  • Two-component adhesive can advantageously be used.
  • the two-component adhesive can be, for example, microencapsulated adhesive.
  • the material properties of the solidifiable material are also relevant.
  • a material that allows connection to a fastening element is particularly advantageous.
  • the connection to a fastening element can in particular take place by screwing a screw into the solidified material in the groove.
  • the material should not be too brittle or too porous so that it is not destroyed by screwing in a screw.
  • the retaining plate is connected to the anchoring element by means of at least one fastening element.
  • a detachable connection of the retaining plate to the anchoring element by means of a fastening element is particularly advantageous.
  • a fastening element can be a screw.
  • a method for assembling a frame for windows, doors, gates or facades on an edge of an opening of a building, in particular in masonry is provided, with the steps of attaching a fastener according to the invention to the frame, attaching a fitting to the edge the opening of the building, inserting the frame into the opening of the building, and connecting the fastening means to the fitting via a connecting element of the fastening means.
  • a rail for example, which can receive the connecting element of the fastening means in sections, can be provided as the fitting.
  • This rail is attached, for example, to the edge of the opening in the structure, in particular to the reveal of the opening.
  • Fittings are advantageously attached wherever a connection and thus a fixation of the frame for windows, doors, gates or facades in the opening of the building is desired. It is advantageous to attach a fastening means at least on each side of the frame and thus a fitting on each side of the opening. This ensures that the frame for windows, doors, gates or facades is adequately fastened on each side.
  • an arrangement is provided with a fastening means, with a frame for windows, doors, gates or facades, an edge of an opening in a building, in particular in masonry, and a fitting, the fastening means with the anchoring element in the undercut groove of the frame is fixed and the fastening means is connected to the fitting via the connecting element with the edge of the opening of the structure.
  • the fastening means lie flat on the surface of the frame in which the undercut groove of the frame is embedded.
  • the connecting means in particular a threaded bolt, can then be arranged at right angles to the surface.
  • the lanyard can then advantageously connect the frame for windows, doors, gates or facades with the edge of the opening of the structure.
  • the connecting means is connected to the fitting, which in turn is fixed to the edge of the opening.
  • the frame for windows, doors, gates or facades is thus fixed in the opening of the building.
  • Fig. 1 shows a fastening means 10 according to the invention according to a first embodiment that is in engagement with an undercut groove 52 of a frame 50 for windows, doors, gates or facades.
  • the fastening means 10 has a retaining plate 12, a connecting element 14 in the form of a threaded bolt and an anchoring element 16 in the form of a slot nut.
  • the connecting element 14 is connected to the holding plate 12 and the holding plate 12 is in turn fastened to the anchoring element 16.
  • the anchoring element 16 engages in two undercuts 54 of the undercut groove 52.
  • the connecting element 14 is provided for connection to a fitting which is attached to the edge of an opening in a building.
  • Fig. 2 shows an anchoring element 16 from Fig. 1 , which is designed as a sliding block 18.
  • the sliding block 18 is designed to be inserted into the undercut groove 52 and can engage behind the two undercuts 54 there.
  • two chamfers 20 are formed on the sliding block 18, which run on an upper side of the sliding block and along the longitudinal side on its right and left side.
  • the sliding block 18 also has a through hole 22 for receiving the connecting element 14, in particular the threaded bolt.
  • the receptacle of the connecting element 14 represents a guide and thus promotes stability, in particular during a bending movement.
  • the sliding block 18 also has further through bores 24 and 26, the through bores 26 being provided with an internal thread in order to clamp the sliding block 18 in the undercut groove 52 by means of fastening elements, in particular grub screws, and thereby fix it.
  • the through bores 24 are provided for connecting the retaining plate 12 to the anchoring element 16, in this case to the sliding block 18, by means of fastening elements, in particular screws, see also Fig. 1 .
  • FIG. 12 shows a top view of the fastener 12 of FIG Fig. 1 with the sliding block 18 as anchoring element 16 in engagement with the undercut groove 52 of the frame 50 for windows, doors, gates or facades.
  • the retaining plate 12 and the connecting element 14 connected to it are also shown.
  • the holding plate 12 is fastened to the frame 50 by means of two self-tapping self-tapping screws which engage in the through bores 24 of the slot nut 18.
  • Fig. 4 shows a view of the section plane AA from Fig. 3 .
  • the fastening means 10 with the retaining plate 12, the connecting element 14 and the sliding block 18 can be seen, the fastening means 10 being connected to the frame 50.
  • the sliding block 18 engages in the undercut groove 52 of the frame 50.
  • the sliding block 18 is also fixed in the undercut groove 52.
  • the fixation is ensured here by means of grub screws which are inserted into the through openings 26 and brace the sliding block 18 with respect to the undercut groove 52 in the vertical direction.
  • the connection of the retaining plate 12 to the sliding block 18 is carried out in the present case by fastening elements in the form of two screws.
  • the sliding block 18 with the through hole 22 provides a guide for the connecting element 14, the connecting element 14 being screwed into the holding plate 12 in the form of a threaded bolt.
  • Fig. 5 shows a side view of the fastening means 10 with the sliding block 18 as anchoring element 16 in engagement with the undercut groove 52 of the frame 50 for windows, doors, gates or facades.
  • the connecting element 14 and the retaining plate 12 are also shown.
  • Fig. 6 shows a side view of a fastening means 80 according to a further embodiment of the invention with a solidifiable material 28 as an anchoring element in engagement with the undercut groove 52 of the frame 50 for windows, doors, gates or facades.
  • the fastener 80 of the Fig. 6 differs from the fastener 10 of the Figs. 1 to 5 only by the solidified material 28 instead of the sliding block 18.
  • Components of the fastening means 80 that are identical to the fastening means 10 are therefore denoted by the same reference numerals. That in the state of Fig. 6 already solidified, for example hardened material 28 is introduced into the groove 52 in the flowable or pasty state and solidifies there.
  • a sealing strip 30 is also provided so that the solidifiable material does not penetrate too deeply into the frame 50 when it is introduced.
  • the sealing strip 30 delimits the space in which the solidifiable material 28 can spread.
  • the solidifiable material 28 engages behind the undercut groove 52 and thereby provides a connecting element.
  • the connecting element 14 and the retaining plate 12 can also be seen.
  • the connection of the holding plate 12 to the solidifiable material 28 is realized by means of fastening elements, here especially screws 82.
  • Fig. 7 shows a fitting 60 for attachment to an edge 70 of an opening of a building for mounting a frame 50 for windows, doors, gates or facades, see also Fig. 8 .
  • the fitting 60 has a rail 62, in particular a W-ABZ window mounting rail from Adolf Würth GmbH & Co. KG.
  • a fastening option for the connecting element 14, here specifically for a threaded bolt, is provided on the rail 62.
  • the retaining plate 12 is also shown, which is connected to the connecting element 14, in this case the threaded bolt, via a through opening with an internal thread.
  • the fitting 60 can in turn be fastened to an edge 70 of an opening in a building by means of fastening elements, in particular screws and dowels.
  • Fig. 8 shows an arrangement 80 with an edge 70 of an opening in a building, two fastening means 10 according to the invention and a frame 50 for windows, doors, gates or facades.
  • the fittings 60 are attached with the rails 62 to the edge 70 of the opening of the structure, in particular the masonry, for example by means of dowels and screws.
  • the fastening means 10 are connected to the frame 50 for windows, doors, gates or facades, as described above.
  • the connection is realized by holding plates 12 and anchoring elements 16.
  • the frame is connected to the rails 62 by the connecting elements 14 of the fastening means 10.
  • the connecting elements 14 are designed as threaded bolts and are connected to the rails 62 via nuts.
  • the fitting 60 For the assembly of a frame 50 for windows, doors, gates or facades, it is advantageous to attach the fitting 60 to an edge 70 of an opening in a building.
  • the fitting 60 can be attached to the edge 70 in such a way that the part of the rail 62 on which the connecting element 14 is attached protrudes beyond the masonry 90 and into the area of an insulation 92, see Fig. 8 right.
  • the fitting 60 can also be attached to the edge 70 in such a way that the part of the rail 62 on which the connecting element 14 is attached is not intended to protrude beyond the masonry, please refer Fig. 8 Left.
  • the fastening means 10 To assemble a frame 50 for windows, doors, gates or facades, the fastening means 10 must first be connected to the frame 50.
  • the anchoring element 16 is to be arranged and positioned in the undercut groove 52 of the frame 50. A position is appropriate with regard to the position of the fitting 60, with which the frame 50 is then ultimately to be connected.
  • the sliding block 18 can be introduced into the undercut groove 52 by pushing the sliding block 18 into one end of the frame 50 or by tilting the sliding block 18 over its long side and thus insert it into the undercut groove 52 the narrow side of the sliding block 18. If the sliding block 18 is in the undercut groove 52, the tilting must be reversed in order to reach behind the undercuts 54 of the undercut groove 52, see Fig. 5 .
  • the anchoring element 16 can be designed as a solidifiable material 28.
  • the solidifiable material 28 is to be introduced into the groove 52 during the manufacture of the frame 50 in a liquid or pasty state or also during the assembly of the frame 50 on the edge 70 of the opening in the masonry.
  • the solidifiable material 28 fills the undercut groove 52 in the solidified state in cross section, see FIG Fig. 6 , viewed completely or at least so far that it engages behind the undercuts 54.
  • the retaining plate 12 is connected to the anchoring element 16 via the screws 82.
  • the connecting element 14 is connected to the retaining plate.
  • the frame 50 is connected via the fastening means 10 to the fitting 60 and thus to the edge 70 of the opening in the masonry.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)

Claims (7)

  1. Ensemble pourvu d'un cadre (50), destiné à des fenêtres, des portes, des portails ou des façades, sur un bord (70) d'une ouverture dans un bâtiment, notamment dans la maçonnerie (90), d'une ferrure (60) et d'un moyen de fixation (10) pour la fixation du cadre (50) destiné à des fenêtres, des portes, des portails ou des façades, notamment d'un cadre (50) en profilés d'aluminium sur le bâtiment, comprenant :
    - une tôle de maintien (12) destinée à être fixée sur le cadre (50),
    - un élément d'assemblage (14), notamment un boulon fileté, destiné à être fixé sur le bord (70) de l'ouverture dans le bâtiment,
    la tôle de maintien (12) :
    - comportant au moins un orifice de passage, destiné à recevoir l'élément d'assemblage (14), l'élément d'assemblage (14) étant fixé dans l'orifice de passage,
    un élément d'ancrage (16) étant prévu pour mettre à disposition un support de fixation pour la tôle de maintien (12) sur le cadre (50), notamment dans une rainure (52) contre-dépouillée du profilé d'aluminium du cadre (50), le moyen de fixation (10) étant fixé avec l'élément d'ancrage (16) dans une rainure (52) contre-dépouillée du cadre (50) et le moyen de fixation (10) étant assemblé au moyen de la ferrure (60) par l'intermédiaire de l'élément d'assemblage (14) avec le bord (70) de l'ouverture dans le bâtiment.
  2. Ensemble selon la revendication 1, caractérisé en ce que l'élément d'ancrage (16) est conçu sous la forme d'un coulisseau (18), destiné à être inséré dans une rainure (52), notamment contre-dépouillée d'un cadre (50) .
  3. Ensemble selon la revendication 2, caractérisé en ce que le coulisseau (18) est conçu de telle sorte, que par basculement par-dessus son côté longitudinal, il soit insérable dans la rainure (52) contre-dépouillée du cadre (50) et soit susceptible d'être retourné en arrière dans la rainure (52) contre-dépouillée, de sorte que le coulisseau (18) s'engage par endroits dans l'au moins une contre-dépouille (54) de la rainure (52) du cadre (50).
  4. Ensemble selon la revendication 2 ou 3, caractérisé en ce que le coulisseau (18) comporte au moins un alésage traversant (22), destiné à recevoir l'élément d'assemblage (14).
  5. Ensemble selon la revendication 2, 3 ou 4, caractérisé en ce que le coulisseau (18) comporte au moins un premier alésage traversant (24) pour un élément de fixation, destiné à être assemblé avec la tôle de maintien (12) et/ou au moins un alésage traversant (26) supplémentaire, notamment un taraudage pour un élément de fixation, destiné à fixer le coulisseau (18) dans la rainure (52) du cadre (50).
  6. Ensemble selon la revendication 1, caractérisé en ce que l'élément d'ancrage (16) est conçu sous la forme d'une matière (28) durcissable et s'engage dans l'au moins une contre-dépouille (54) de la rainure (52) du cadre (50), notamment par complémentarité de forme et/ou par matière, pour mettre à disposition un support de fixation.
  7. Procédé, destiné à monter un cadre (50), destiné à des fenêtres, des portes, des portails ou des façades, sur un bord (70) d'une ouverture dans un bâtiment, notamment dans la maçonnerie (90), comportant les étapes consistant à :
    - monter un moyen de fixation (10) sur le cadre (50) pour la fixation du cadre (50) destiné à des fenêtres, des portes, des portails ou des façades, notamment pour des cadres (50) en profilés d'aluminium sur le bâtiment, comprenant :
    - une tôle de maintien (12), destinée à être fixée sur le cadre (50),
    - un élément d'assemblage (14), notamment un boulon fileté, destiné à être fixé sur le bord (70) de l'ouverture dans le bâtiment,
    la tôle de maintien (12) :
    - comportant au moins un orifice de passage, destiné à recevoir l'élément d'assemblage (14), l'élément d'assemblage (14) étant fixé dans l'orifice de passage,
    un élément d'ancrage (16) étant prévu pour mettre à disposition un support de fixation pour la tôle de maintien (12) sur le cadre (50), notamment dans une rainure (52) contre-dépouillée du profilé d'aluminium du cadre (50),
    - monter une ferrure (60) sur le bord (70) de l'ouverture dans le bâtiment,
    - insérer le cadre (50) dans l'ouverture dans le bâtiment et
    - assembler le moyen de fixation (10) avec la ferrure (60) par l'intermédiaire de l'élément d'assemblage (14) du moyen de fixation (10).
EP19204773.6A 2018-11-15 2019-10-23 Moyen de fixation permettant de fixer des cadres pour fenêtres, portes, portails ou façades, procédé et agencement Active EP3653826B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102018219511.0A DE102018219511A1 (de) 2018-11-15 2018-11-15 Befestigungsmittel für die Befestigung von Rahmen für Fenster, Türen, Pforten oder Fassaden, Verfahren und Anordnung

Publications (2)

Publication Number Publication Date
EP3653826A1 EP3653826A1 (fr) 2020-05-20
EP3653826B1 true EP3653826B1 (fr) 2021-03-31

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EP19204773.6A Active EP3653826B1 (fr) 2018-11-15 2019-10-23 Moyen de fixation permettant de fixer des cadres pour fenêtres, portes, portails ou façades, procédé et agencement

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EP (1) EP3653826B1 (fr)
DE (1) DE102018219511A1 (fr)
ES (1) ES2869455T3 (fr)

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ATE76468T1 (de) * 1988-09-22 1992-06-15 Bitra Ag Unterbaukonstruktion fuer hinterlueftete fassadenplatten.
FR2692012A1 (fr) * 1992-06-03 1993-12-10 Guyot Jacquand Ets Patte de fixation d'un élément rapporté à son support.
DE29705785U1 (de) * 1997-04-02 1997-05-22 Kockler, Rita, 66763 Dillingen Vorrichtung zur Befestigung von Fenster- oder Türrahmen am Mauerwerk
DE20019594U1 (de) * 2000-11-18 2002-03-28 Niemann, Hans Dieter, 50169 Kerpen Justiervorrichtung eines Rahmens
FR2857401B1 (fr) * 2003-07-08 2005-08-26 Ixia Fixation Entretoise pour patte d'ancrage
FR2892444A1 (fr) * 2005-10-26 2007-04-27 Schitter Gabrielle Dispositif de fixation pour huisserie ou analogue
DE202009010497U1 (de) * 2009-08-03 2010-12-16 Chempe Gmbh & Co. Kg Winkel zur Befestigung eines Bauelementes
FR3049301B1 (fr) * 2016-03-25 2022-06-03 Lapeyre Systeme de clameau et dispositif de fixation d'un dormant de menuiserie
DE102016213293A1 (de) 2016-07-20 2018-01-25 Adolf Würth GmbH & Co. KG Beschlag, Beschlagsatz und Verfahren zum Befestigen von Fenster- und Türrahmen

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ES2869455T3 (es) 2021-10-25
DE102018219511A1 (de) 2020-05-20

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