EP2829680B1 - Profil destiné au montage d'un rebord de fenêtre et kit de montage à isolation thermique de celui-ci - Google Patents

Profil destiné au montage d'un rebord de fenêtre et kit de montage à isolation thermique de celui-ci Download PDF

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Publication number
EP2829680B1
EP2829680B1 EP14002550.3A EP14002550A EP2829680B1 EP 2829680 B1 EP2829680 B1 EP 2829680B1 EP 14002550 A EP14002550 A EP 14002550A EP 2829680 B1 EP2829680 B1 EP 2829680B1
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Prior art keywords
limb
profile
window
leg
bearing means
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EP14002550.3A
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German (de)
English (en)
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EP2829680A1 (fr
Inventor
Dirk Gießler
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Individual
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Individual
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    • 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
    • E06B1/70Sills; Thresholds

Definitions

  • the invention relates to an on-board profile for mounting a window sill, in particular an exterior window sill, according to the preamble of claim 1.
  • the invention also relates to a kit for thermally insulated installation of a sill in a provided for a window wall opening of a building, the kit a left and a right Having on-board profile of the type mentioned.
  • the angle profile has an L-shaped cross-section with a first and a second leg arranged at right angles thereto, which is welded to a longitudinal edge of the first leg.
  • the first leg is wider than the second leg and is mounted for mounting the sill on an inclined surface of a Dämmkeils, which is arranged at the bottom of a wall breakthrough for a window that the inclined surface from the window to the building outside drops.
  • the insulating wedge consists of a heat-insulating material and is intended to thermally insulate an aluminum window sill to be mounted on the insulating wedge against the building wall.
  • the second leg is arranged so that it faces the masonry of the soffit, which is arranged on the side of the wall breakthrough on which the connection profile is mounted on the Dämmkeil.
  • the on-board profile At its front end facing the window sill, the on-board profile has an end wall which is screwed onto the window sill during assembly of the on-board profile.
  • the end wall is arranged at right angles to the plane of the second leg.
  • the end wall is integrally connected to the second leg and welded to the front end of the first leg.
  • the first leg has on its upper side a plurality of web-shaped supports which run parallel to one another and parallel to the second leg.
  • the supports are designed as projections which project upwards relative to a laterally adjacent surface region of the first leg. Having adjacent supports side walls facing each other, in each of which a parallel to the longitudinal axis of the board profile groove is inserted.
  • a rubber sealing lip is used, which projects beyond the supports normal to the plane defined by the first leg.
  • a channel is formed under the windowsill, can drain through the rainwater, which, for example, in the occurrence of driving rain on the soffit under the sill, to the remote from the window sill front end of the board profile.
  • the board profile is installed so that it protrudes with its front end over the outer surface of the building wall.
  • the supernatant measure is chosen so that rainwater and / or contaminants therein, such as dust, pollen or the like, which flow off via the on-board profile, do not come into contact with the building wall.
  • the on-board profiles made of aluminum are usually delivered to the construction site by the supplier in a predetermined length. Then they are mounted there by mechanics on the window sill.
  • the on-board profiles are shorter or longer than the length required to achieve a correct projection size.
  • the front end of the board profile does not or not far enough beyond the outer surface of the building wall, so that over the board profile drain rainwater can come into contact with the building wall and there pollution, such as dark streaks cause.
  • an on-board profile which has an angle made of hard PVC angle profile having a first and a second leg, which are connected to each other in an L-shape.
  • the first leg is narrower than the second leg and is mounted for mounting the sill on an inclined surface of a Dämmkeils, which is arranged at the bottom of a wall opening for a window that the inclined surface from the window to Outside of the building falls off.
  • the insulating wedge consists of a heat-insulating material and is intended to thermally insulate a windowsill to be mounted on the insulating wedge against the building wall.
  • the second leg is arranged so that it faces a window sill.
  • the first leg on its upper side on two web-shaped supports, which are parallel to each other and parallel to the second leg.
  • the supports are configured as projections which project upwards in relation to a surface region of the first leg located between them.
  • an insert is arranged, which has several parallel to each other and parallel to the second leg sealing lips made of a second plastic softer than the first plastic When the sill rests on the supports, the sealing lip comes at the bottom of the Windowsill to the plant.
  • DE 20 2006 002 740 U1 DE 20 2010 011 329 U1 and EP 2 967 712 A1 are also generic extrusions known, are integrally formed on the sealing lips by coextrusion.
  • this makes it possible to tailor the on-board profile on a construction site with a knife, pliers, edging shears, saw or the like to the required length.
  • This allows the fitter, who may be a painter or a plasterer, for example, the length of the profile on-site to the respective Adjust the dimension of the wall breakthrough.
  • This ensures that the on-board profile is always mounted with the correct projection to the outer surface of the building wall or a heat insulation applied thereto. Since the board profile is made of plastic, it allows a heat bridge-free installation of the windowsill.
  • the on-board profile is preferably adhesively attached to the soffit, to the window sash and / or to an insulating wedge located below the on-board profile.
  • thermal bridges as can occur, for example, when bolted to the window sill board profiles can be avoided.
  • the window sill can be inserted between the on-board profiles. It can be slid on the supports.
  • the on-board profile according to the invention is preferably designed as an extrusion profile. It can be produced inexpensively by coextrusion, ie by bringing together different plastic melts, SK adhesives and then extruding the merged melts through a profiled nozzle.
  • the first plastic is a thermosetting plastic and the second plastic is a thermoplastic elastomer. Due to the thermosetting plastic, a stable support of the sill is made possible, for example, on a Dämmkeil.
  • the thermoplastic elastomer allows a good seal of the board profile against the underside of the windowsill.
  • the sealing lip is spaced from the second leg.
  • a channel is then formed between the sealing lip and the second leg, can be removed through the rainwater, which flows, for example, in driving rain on the soffit and passes under the windowsill, to the front edge of the windowsill.
  • the sealing lip is web or strip-shaped and extends in a plane which is inclined relative to a plane defined by the second leg vertical plane. If the sill is inserted into the on-board profile, the sealing lip can then tilt in a defined direction to the side. It is pressed elastically to the underside of the windowsill. Due to its web or strip-like design For example, the sealing lip can be coextruded together with the angle profile.
  • the at least one support web-shaped or strip-shaped and extends parallel to the second leg.
  • the support then allows a uniform, linear support of the sill.
  • it can be molded directly to this during the extrusion of the angle profile.
  • the support has at least one side wall facing the second leg and / or facing away from the second leg, which has at least one projection, wherein an end wall is arranged at a front end of the angle profile, which in a normal to the spanned by the second leg Level extends, and wherein the end wall has at least one of the support facing, projecting connecting element, which is positively connected to the at least one projection.
  • the support is designed in a normal to a plane defined by the first leg first plane and normal to the second leg spanned vertical plane cross-sectional plane is substantially L- or T-shaped, with an integrally formed on the first leg first leg portion and a transverse arranged thereon, the projection forming the second leg portion, by a along the first leg extending clearance or along the first leg extending groove of the latter is spaced.
  • the angle profile may have at least two spaced apart transversely to the longitudinal extent of the first leg bearing, which are facing each other with their projections, wherein the end wall has at least one lug-shaped connecting element which engages under the two supernatants of Auflagerpass. The end wall is then even better connected to the angle profile.
  • the angle section at least two web or strip-shaped supports, which are parallel to the second leg and arranged at different distances to this, wherein between these supports at least two sealing lips are arranged, which are also parallel to the second leg run and are arranged at different distances to this. Due to the multiple existing sealing lip, the on-board profile can be better sealed against the windowsill. Between the web-shaped supports, the sealing lips are protected against mechanical damage.
  • the second limb has a predetermined bending line arranged parallel to the first limb and spaced therefrom and the free edge of the second limb, along which a free edge region of the second limb relative to a partial region arranged between the desired bending line and the first limb of the second leg is bendable to the first leg, preferably by about 90 °.
  • the angle profile can then be converted by pivoting the free edge region of the second leg to the desired bending line in a simple manner in a profile with C-shaped or U-shaped cross-section.
  • the sill can then be used with one of the soffit of the masonry facing side edge region between the first leg and the angled free edge of the second leg.
  • the free edge of the second leg is preferably narrower than the first leg.
  • the above-mentioned object is achieved in that the kit a left and a right side profile according to one of claims 1 to 10, the sill and an attachable under this Dämmkeil that the board profiles are designed such that the sill is installed between them, when the second leg of the board profiles the masonry of the window reveal and the first leg facing the Dämmkeil in that the kit has a left and a right reveal plate made of a heat-insulating material, and that the reveal plates each have at least one finished, possibly paintable or surface-coatable surface.
  • the kit has a window with a window sill, on the left and / or right edge outside a first widening profile is arranged, and / or if at the bottom of the window sill below a second widening profile is arranged.
  • the at least one broadening profile is then arranged after the installation of the window between this and the building wall in the wall opening in a straight extension of the reveal panel or in a straight extension of the insulating wedge and / or the windowsill.
  • the kit has at least two connection profiles, which are at least partially configured as U-profiles, which are attachable to an in use position the frame facing edge region of the reveal plates and / or the Dämmkeils, wherein the connection profiles two by a U-cross bar with each other have connected U-legs, and wherein the U-transverse web is coated on its side facing away from the U-legs back with a seal extending along the connection profile.
  • the connection profiles allow a tight connection of the soffit plates to the window sill.
  • the reveal plates can be mounted faster to the building.
  • a sealing tape or a bond can be provided.
  • a kit for the thermally insulated installation of a sill 1 in a wall opening on which a window 2 is arranged has a left side profile 3 and a right side profile, which receive the sill 1 between them.
  • Each on-board profile 3 has in each case an angle section with a first leg 4 and a second leg 5, which is arranged approximately perpendicular to the plane spanned by the first leg 4 in a plane spanned normal to the longitudinal axis of the first leg 4.
  • the left side profile 3 is designed in mirror image to the right side profile.
  • the first leg 4 lies with its underside flat against a slope 6 of a Dämmkeils 7 ( Fig. 2 ), which is arranged at the lower end of the wall opening and extends in the horizontal direction parallel to the plane defined by the wall opening or the window 2 plane.
  • the Dämmkeil 7 lies with its underside on the wall breakthrough delimiting masonry and an externally applied to the masonry thermal insulation layer on the plane in which extends the top of the Dämmkeils 7, has a predetermined by the wedge angle ⁇ of the insulating wedge 7 gradient from the Window 2 to the front edge of the Dämmkeils 7 drops out.
  • the wedge angle ⁇ or the gradient is preferably at least 5 °.
  • the insulating wedge At its edge having the lower wall thickness, the insulating wedge has a groove into which a first insertion profile 8 engages. If necessary, the male profile 8 may be secured in the groove with adhesive or adhesive tapes.
  • a first tissue flap 9 is fixed, which at an angle of about 90 ° from the plane which faces away from the slope 6 Underside of the insulating wedge 7 is clamped, projects downwards.
  • the Dämmkeils 7 in the wall opening of the first tissue flap 9 is plastered in a non-illustrated in the drawing mortar layer, which is applied after installation of the thermal barrier coating on the masonry outside of the thermal barrier coating.
  • each board profile 3 is in the installed state, each with its back facing an associated reveal of the masonry, namely the second leg 5 of the left profile 3 of the left soffit and the second leg 5 of the right profile of the right soffit.
  • the on-board profiles 3 are preferably fixed with the aid of adhesive on the insulating wedge 7, on the reveal of the masonry and / or the window sill during assembly.
  • the first leg 4 on its upper side more, each formed as a projection supports 10, 11 for the sill 1 on the supports 10, 11 are web or strip-shaped and parallel to the second leg 5.
  • the supports 10, 11 each in a plane which is inclined relative to the plane defined by the second leg 5 plane.
  • the supports 10, 11 each have an approximately parallel to the plane defined by the first leg plane arranged support surface for the sill 1
  • the supports 10, 11 are arranged at different distances from the second leg 5 and spaced laterally from each other by gaps. In each case two supports 10, 11 are assigned in pairs to each other and inclined to each other with their free edges. In this case, a first support 10 is inclined relative to the plane defined by the second leg 5 plane to the right and a second support 11 relative to this plane to the left.
  • first leg 4 At the top of the first leg 4, moreover, a plurality of sealing lips 12 are arranged, which protrude beyond the supports 10, 11 normal to the plane defined by the first leg 4 (FIG. Fig. 3 ).
  • the legs 4, 5 and the supports 10, 11 are made of a thermosetting plastic and the sealing lip of a thermoplastic material, which is softer than the thermosetting plastic Both plastics are integrally connected. This can be achieved be that the on-board profile 3 is produced as an extrusion profile and the two plastics are integrally connected by merging of different plastic melts and subsequent extrusion through a profile nozzle.
  • sealing lips 12 are each laterally spaced from the second leg 5 and from each other.
  • the sealing lips 12 are arranged in a free space located between the bearing pairs and spaced from each other by interspaces and from the supports 10, 11 of these bearing pairs.
  • the sealing lips 12 are each web-shaped or strip-shaped and extend in a plane which is inclined relative to the plane defined by the second leg 4 plane. As in Fig. 4 can be seen, deform the sealing lips 12 under load with the windowsill 1 and then elastically on the underside of the sill 1 on. It can clearly be seen that the sealing lips 12 are arranged with their free ends in the amount of the bearing surfaces of the supports 10, 11, when the sill 1 flat on the supports 10, 11 rests.
  • an end wall 1 3 is arranged, which extends in a plane which is normal to the plane defined by the second leg 5 plane.
  • the plane in which the end wall 13 extends encloses, with the plane spanned by the first leg, an angle which is greater than 90 ° about the wedge angle ⁇ of the insulating wedge.
  • the end wall 13 has at its lower edge adjacent to the first leg 4 two lug-shaped connecting elements 14, which extend parallel to each other and to the plane defined by the first leg 4 plane.
  • the connecting elements 14 engage in a form-fitting manner between the paired supports 10, 11.
  • the supports 10, 11 each overlap with an overhang caused by the lateral inclination of the supports 10, 11, an edge region of the connecting element 14.
  • the end wall 13 is positioned on the front side of the angle profile, that the connecting elements 14 facing the between the pairwise facing supports 10, 11 spaces. Thereafter, the end wall 13 and the end face of the angle profile are moved toward each other until the end wall 1 3 comes to rest on the end face of the angle profile.
  • the connecting elements 14 are then held in a form-fitting manner between supports 10, 11 and the first leg 4 of the board profile.
  • the second leg 5 a plurality of parallel to the first leg 4 arranged, spaced therefrom and the free edge 15 of the second leg 5 predetermined bending lines 16, which are each formed by a notch.
  • the predetermined bending lines 16 of the free edge 15 of the second leg 5 is in each case relative to a arranged between the predetermined bending line 16 and the first leg 4 portion of the second leg 5 on the first leg 4 is bent to.
  • the on-board profile 3 at angled second leg 5 has an approximately C-shaped cross section, wherein the first leg 4 is wider than the angled edge 15 and with its second leg 5 facing away from the edge laterally beyond the edge 15.
  • the vertical distance between the plane in which the support surfaces for the supports 10, 11 are arranged, and the edge 15 corresponds to the thickness of the sill 1 or is slightly larger than this, so that the sill 1 in the assembly between the first leg. 4 and the edge 15 can be inserted.
  • the kit also has a left and a right Fertiglaibung 17 with a reveal plate 18 made of a heat-insulating foam on their facing away in the mounting position of the soffit of the masonry front reveal the soffit panels 18 each have a finished surface 19. This need not be edited after installation.
  • the surface 19 has a rough structure and can be coated and / or painted with a top coat adhering thereto if necessary.
  • the reveal plate 18 At its front edge facing away from the window sill, has a groove 20 into which a second insertion profile 21 engages. If necessary, the second male profile 21 may be secured with adhesive in the groove 20.
  • insulating wedge 7 laterally adjoins the reveal plate 18 and that during installation on a groove located between Dämmkeil 7 and reveal plate 18 a sealing track 22 is applied, which seals the reveal plate 18 against the Dämmkeil 7.
  • a second tissue flap 23 is fixed, which protrudes at an angle of about 90 ° from the spanned by the reveal plate 18 level.
  • the second tissue flap 23 is plastered into the mortar layer, which is applied to the exterior of the thermal insulation layer after assembly of the thermal barrier coating on the masonry and overlapped with the surface fabric of the facade insulation.
  • the kit also has a window 2 with a window stock 24, on the left and / or right edge outside a first widening profile 25 (FIG. Fig. 12 ) is arranged. This ensures that outside of the widening profile 25 of the required for the installation of the reveal plate 18 Baurum is present.
  • a second widening profile 26 is provided, the outer surface of which is covered by the insulating wedge.
  • the kit also has three connection profiles 27, which are configured in sections as U-profiles, which are attachable to a in use position the window frame 24 facing edge region of the reveal plates 18 or the window frame 24 facing edge region of the insulating wedge 7.
  • the connection profiles 27 each have two interconnected by a U-cross bar 28 U-legs 29, between which the windowstock 24 facing edge region of the reveal plate 18 and the Dämmkeils 7 can be introduced.
  • the U-transverse web is coated on its rear side facing away from the U-legs and on its front side in each case with a seal 30, 31 which extends in the longitudinal direction of the connecting profile 27 without interruption.
  • a cover leg 32 is arranged, which is arranged in the plane defined by the U-crossbar plane or substantially parallel thereto. As in Fig. 14 it is recognizable Covering the cover leg 32 in the assembled position, the outer edge of the window stock 24th
  • Fig. 15 It can be seen that after installation of the on-board profiles 3, the window sill 1 can be inserted between the on-board profiles 3.
  • the installation of the system ensures the tight connection of the facade insulation or plaster system already during the construction phase. Ingress of water into the insulation or plaster system, the masonry, the timber stand construction or the multi-shell masonry is prevented before any window sill 1 is installed.
  • the sill 1 can be easily replaced, repaired or changed at any time.

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  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
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Claims (12)

  1. Profilé de bord (3) pour le montage d'un rebord de fenêtre (1), en particulier d'un rebord de fenêtre extérieur, le profilé de bord (3) présentant un profilé coudé avec une première branche (4) et une deuxième branche (5) pouvant être montée sur la maçonnerie d'une baie, la première branche (4) présentant, au niveau de son côté supérieur, au moins un appui (10, 11) réalisé sous forme de saillie pour le rebord de fenêtre (1) et au moins une lèvre d'étanchéité (12) s'étendant au niveau du côté supérieur de la première branche (4) le long de celle-ci, laquelle lèvre d'étanchéité dépasse perpendiculairement au plan tendu par la première branche (4) au-delà de l'au moins un appui (10, 11), l'appui (10, 11) présentant au moins une paroi latérale tournée vers la deuxième branche (5) et/ou opposée à la deuxième branche (5), qui présente au moins un dépassement, et une paroi de terminaison (13) étant disposée au niveau d'une extrémité frontale du profilé coudé, laquelle s'étend dans un plan perpendiculaire au tendu par la deuxième branche (5), caractérisé en ce que les branches (4, 5) se composent d'un premier plastique et la lèvre d'étanchéité (12) se compose d'un deuxième plastique qui est plus souple que le premier plastique, en ce que le premier plastique est connecté d'une seule pièce au deuxième plastique et en ce que la paroi de terminaison (13) présente au moins un élément de connexion saillant (14), tourné vers l'appui (10, 11), lequel peut être connecté par engagement par correspondance de formes à l'au moins un dépassement.
  2. Profilé de bord (3) selon la revendication 1, caractérisé en ce que le premier plastique est un plastique duroplastique et le deuxième plastique est un élastomère thermoplastique.
  3. Profilé de bord (3) selon la revendication 1 ou 2, caractérisé en ce que la lèvre d'étanchéité (12) est espacée de la deuxième branche (5).
  4. Profilé de bord (3) selon l'une quelconque des revendications 1 à 3, caractérisé en ce que la lèvre d'étanchéité (12) est réalisée en forme de nervure ou de bande et s'étend dans un plan qui est incliné par rapport à un plan vertical tendu par la deuxième branche (5).
  5. Profilé de bord (3) selon l'une quelconque des revendications 1 à 4, caractérisé en ce que l'au moins un appui (10, 11) est réalisé en forme de nervure ou en forme de bande et s'étend parallèlement à la deuxième branche (5).
  6. Profilé de bord (3) selon la revendication 5, caractérisé en ce que l'appui (10, 11) est configuré dans un plan en section transversale disposé perpendiculairement à un premier plan tendu par la première branche (4) et perpendiculairement à un plan vertical tendu par la deuxième branche (5) essentiellement en forme de L ou T avec une première partie de branche façonnée sur la première branche (4) et une deuxième partie de branche disposée transversalement par rapport à celle-ci, formant le dépassement, qui est espacée de celle-ci par un espace libre s'étendant le long de la première branche (4) ou par une nervure s'étendant le long de la première branche (4).
  7. Profilé de bord (3) selon la revendication 5 ou 6, caractérisé en ce que le profilé coudé présente au moins deux appuis (10, 11) espacés l'un de l'autre transversalement à l'étendue longitudinale de la première branche (4), lesquels sont tournés l'un vers l'autre avec leurs dépassements, et en ce que la paroi de terminaison (13) présente au moins un élément de connexion en forme de patte (14) qui vient en prise par le dessous avec les deux dépassements de la paire d'appuis.
  8. Profilé de bord (3) selon l'une quelconque des revendications 4 à 7, caractérisé en ce que le profilé coudé présente au moins deux appuis (10, 11) réalisés en forme de nervure ou de bande, lesquels s'étendent parallèlement à la deuxième branche (5) et sont disposés à des distances différentes de celle-ci, en ce qu'entre ces appuis (10, 11) sont disposées au moins deux lèvres d'étanchéité (12) qui s'étendent également parallèlement à la deuxième branche (5) et sont disposées à des distances différentes de celle-ci.
  9. Profilé de bord (3) selon l'une quelconque des revendications 1 à 8, caractérisé en ce que la deuxième branche (5) présente une ligne de flexion de consigne (16) disposée parallèlement à la première branche (4), espacée de celle-ci et du bord libre de la deuxième branche (5), le long de laquelle une région de bord libre (15) de la deuxième branche (5) peut être coudée vers la première branche (4) par rapport à une région partielle de la deuxième branche (5) disposée entre la ligne de flexion de consigne (16) et la première branche (4).
  10. Kit de montage pour l'installation isolée thermiquement d'une bordure de fenêtre (1) dans un orifice de paroi d'un bâtiment prévu pour une fenêtre (2), le kit de montage présentant un profilé de bord gauche et un profilé de bord droit (3) selon l'une quelconque des revendications 1 à 10, la bordure de fenêtre (1) et une cale d'isolation (7) pouvant être montée en dessous de celle-ci, les profilés de bord (3) étant configurés de telle sorte que la bordure de fenêtre (1) puisse être installée entre eux lorsque les deuxièmes branches (5) des profilés de bord sont tournées vers la maçonnerie de la baie de fenêtre et que les premières branches (4) sont tournées vers la cale d'isolation (7), le kit de montage présentant une plaque de baie gauche et une plaque de baie droite (18) en matériau isolant thermiquement, et les plaques de baie (18) présentant à chaque fois au moins une surface finie (19), éventuellement pouvant être peinte ou revêtue d'un enduit extérieur.
  11. Kit de montage selon la revendication 10, caractérisé en ce que le kit de montage présente une fenêtre (2) avec un châssis de fenêtre (24) sur le bord gauche et/ou droit duquel est disposé, du côté extérieur, un premier profilé d'élargissement (25), et/ou en ce qu'au niveau du bord inférieur du châssis de fenêtre (24), est disposé, du côté inférieur, un deuxième profilé d'élargissement (26).
  12. Kit de montage selon la revendication 11, caractérisé en ce que le kit de montage présente au moins deux profilés de raccordement (27) qui sont configurés au moins en partie sous forme de profilés en U, qui peuvent être enfichés sur une région de bord des plaques de baie (18) et/ou de la cale d'isolation (7) tournée dans la position d'utilisation vers le châssis de fenêtre (24), les profilés de raccordement (27) ayant deux branches en U (29) connectées l'une à l'autre par une nervure transversale en U (28), et la nervure transversale en U (28) étant revêtue au niveau de son côté arrière opposé aux branches en U (29) avec un joint d'étanchéité (30, 31) s'étendant le long du profilé de raccordement (27).
EP14002550.3A 2013-07-25 2014-07-23 Profil destiné au montage d'un rebord de fenêtre et kit de montage à isolation thermique de celui-ci Active EP2829680B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102013012374.7A DE102013012374B4 (de) 2013-07-25 2013-07-25 Bordprofil zur Montage einer Fensterbank und Bausatz zum wärmegedämmten Einbau einer solchen

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EP2829680A1 EP2829680A1 (fr) 2015-01-28
EP2829680B1 true EP2829680B1 (fr) 2016-11-30

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EP (1) EP2829680B1 (fr)
DE (1) DE102013012374B4 (fr)

Cited By (1)

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