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EP3643867B1 - Dormant pour portes et fenêtres avec composants supplementaires - Google Patents

Dormant pour portes et fenêtres avec composants supplementaires Download PDF

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Publication number
EP3643867B1
EP3643867B1 EP19205255.3A EP19205255A EP3643867B1 EP 3643867 B1 EP3643867 B1 EP 3643867B1 EP 19205255 A EP19205255 A EP 19205255A EP 3643867 B1 EP3643867 B1 EP 3643867B1
Authority
EP
European Patent Office
Prior art keywords
hollow
web
profile
chamber
outer frame
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
EP19205255.3A
Other languages
German (de)
English (en)
Other versions
EP3643867A1 (fr
Inventor
Philipp Kalverkamp
Ulrich Drees
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.)
Veka AG
Original Assignee
Veka AG
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 Veka AG filed Critical Veka AG
Priority to PL19205255T priority Critical patent/PL3643867T3/pl
Publication of EP3643867A1 publication Critical patent/EP3643867A1/fr
Application granted granted Critical
Publication of EP3643867B1 publication Critical patent/EP3643867B1/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
    • E06B3/00Window sashes, door leaves, or like elements for closing wall or like openings; Layout of fixed or moving closures, e.g. windows in wall or like openings; Features of rigidly-mounted outer frames relating to the mounting of wing frames
    • E06B3/04Wing frames not characterised by the manner of movement
    • E06B3/06Single frames
    • E06B3/08Constructions depending on the use of specified materials
    • E06B3/20Constructions depending on the use of specified materials of plastics
    • E06B3/22Hollow frames
    • E06B3/221Hollow frames with the frame member having local reinforcements in some parts of its cross-section or with a filled cavity
    • E06B3/222Hollow frames with the frame member having local reinforcements in some parts of its cross-section or with a filled cavity with internal prefabricated reinforcing section members inserted after manufacturing of the hollow frame
    • 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
    • E06B7/00Special arrangements or measures in connection with doors or windows
    • E06B7/16Sealing arrangements on wings or parts co-operating with the wings
    • E06B7/22Sealing arrangements on wings or parts co-operating with the wings by means of elastic edgings, e.g. elastic rubber tubes; by means of resilient edgings, e.g. felt or plush strips, resilient metal strips
    • E06B7/23Plastic, sponge rubber, or like strips or tubes
    • E06B7/2305Plastic, sponge rubber, or like strips or tubes with an integrally formed part for fixing the edging
    • E06B7/2307Plastic, sponge rubber, or like strips or tubes with an integrally formed part for fixing the edging with a single sealing-line or -plane between the wing and the part co-operating with the wing
    • E06B7/231Plastic, sponge rubber, or like strips or tubes with an integrally formed part for fixing the edging with a single sealing-line or -plane between the wing and the part co-operating with the wing with a solid sealing part

Definitions

  • the invention relates to a frame for doors and windows with additional components, with the features of the preamble of claim 1.
  • Windows with manual operation by means of a handle are part of everyday life.
  • Conventional windows consist of a frame and a casement.
  • the term "frame” refers to the frame that is firmly connected to the outer wall. In this frame there are then one or more casement frames which can be opened.
  • windows fulfill a wide range of tasks for people and buildings. They are a design element of the house and their primary function is to connect the indoor and outdoor space, allow the highest possible incidence of light and create a healthy and comfortable living environment. For a high level of comfort of use, window opening types are also of great importance. Window opening types are determined according to the opening method. A distinction is made between fixed-glazed windows, side-hung windows, tilt windows, turn-tilt windows and sliding windows.
  • the windows In order to enable the motorization of window sashes, the installation of sensors for the control function and the motorization of roller shutters and sun protection products, the windows must be provided with their own power supply and integration into the control system during installation. In the areas of sun protection and sensor control, there are also radio-based solutions for easy retrofitting.
  • a motor-driven tilt and turn window is known in which a drive motor for actuating coupling fittings of a tilt and turn window is provided within the window frame. If required, the window sash is moved into the ventilation or open position as well as into the closed position by means of a driven adjusting gear.
  • the housing of the drive unit is fully integrated in the frame profile. The actuators must therefore be installed in the profiles of the window before the window is manufactured.
  • This concealed installation of the drives and the drive housing has the disadvantage that in the event of a defect in the drives, dismantling is no longer easily possible. In such a case, either only the entire window can be exchanged, or the relevant component has to be removed, in which case the frame must also be dismantled and the individual frame legs dismantled.
  • the object of the invention is thus to improve a frame profile of the type mentioned at the beginning in such a way that additional elements can still be installed while maintaining the intact steel reinforcement.
  • Essential to the invention is the change made to the arrangement of the cavities in the profile cross-section compared to conventional frame profiles.
  • the decisive measure is the hollow chamber, which is used to accommodate the metallic reinforcement profile and thus to stabilize the plastic window frame, moved to the outside that a freely configurable cross-sectional area is created on the inside of the window frame.
  • the size of the hollow chamber with the internal steel reinforcement remains completely unchanged in terms of its dimensions.
  • new space is gained on the inside of the window frame, which has to fulfill several functions and is structurally designed according to its use. These functions include providing a glazing bead groove in the inner wall area to allow for fixed glazing with the frame profile to maintain according to the invention.
  • a cross-sectional section that extends completely over the vertical height of the cross-section and is closed on all sides, which serves for thermal insulation.
  • the strike plates must be mounted on the frame by means of screws, with screws arranged outside the glazing bead groove.
  • each hollow chamber gap extends between the bottom web and the cover center web. Due to the vertical extension, each hollow chamber gap can be opened individually by milling from the cover center web without damaging the adjacent hollow chamber walls or the inner wall.
  • At least one hollow chamber gap has a further horizontal transverse web between the bottom web and the cover center web in order to form an abutment for screws to be introduced from above.
  • At least one hollow-chamber gap arranged laterally next to the glazing bead groove is provided with several additional transverse webs which form a screw channel for the strike plate to be attached to the top.
  • These additional bars provide material for the fastening elements for stable anchoring and allow flexible positioning of the screws, depending on the different types of strike plate.
  • cams that are extruded on can also be provided which, with their material-reinforcing effect, offer the screws additional material in order to cut and / or jam there.
  • the possible receiving area in the frame profile is exactly below a fitting receiving groove on the outside of the sash profile, the so-called Euro groove, is arranged.
  • another cavity below the drive unit will serve as a conduit.
  • This channel can extend over all four frame spars of a window, is completely continuous and enables the laying of cables or other accessories, while recesses are only made selectively in the frame profile for drive units and the like. Access to the conduit is from a selectively created receiving space. In the course of the conduit, no material has to be removed from the cross section.
  • Figure 1 shows a sash frame system in cross section with a frame profile 100 according to the invention, as it is shown in the assembly.
  • the sash frame system consists of a sash profile 200 and the frame profile 100, each of which is designed as a hollow-chamber plastic profile. Both profiles each have a metallic reinforcement profile 53, 203 in at least one of their hollow chambers 52, 202.
  • the sash is movably connected to the frame. Between the sash profile 200 and the frame profile 100, three sealing planes are formed, each of which is formed by sealing strands extruded onto it.
  • the overall depth corresponding to the cross-sectional width of the frame profile 100 is preferably 82 mm, but can also be used for other overall depths, so that it can be integrated into existing sash systems.
  • the cross-sectional width of the profile system is preferably selected so that the gap width in the outer sash contact area for an outer window frame seal 17 is approximately 3 mm to 5 mm and in the inner sash contact area for an inner window frame seal 18 it is approximately 6 mm to 10 mm.
  • Such gap widths which are larger in comparison to conventional frame profiles, allow pressure-sensitive sensor strips to be integrated into the seals 17, 18, or they can be used instead in order to be able to automatically cancel a motorized closing movement of the sash if foreign bodies or limbs are between the frame profile 100 and the sash profile 200 are jammed.
  • the profile is delimited in the middle area 50 upwards by a cover center web 51 and downwards by a bottom web 54.
  • a vertical web with a receiving groove for a central seal 56 adjoins the left edge of the cover center web 51.
  • the hollow chamber 52 and the reinforcement profile 53 are arranged centered under the central seal 56.
  • the metallic reinforcement profile 53 is used to mechanically stabilize the frame profile 100, which is made of plastic such as, in particular, hard PVC.
  • the hollow chamber with the reinforcement profile is preferably positioned closer to the interior, the inventive position of the hollow chamber 52 is centered under the central seal 56 and thus outside of the web area 30 and the receiving area 40. With this new spatial arrangement the area between the large hollow chamber 52 and the inner wall area 21 has become significantly larger than with conventional frame profiles.
  • a glazing bead groove 27 is formed between the inner wall 21 and the cover center web 51, which makes it possible to use the frame profile 100 for fixed glazing and other fillings.
  • the glazing bead groove 27 often serves as a receiving groove for fittings such as striking plates.
  • the web area 30 is laterally connected directly to the inner wall 21 and has three hollow chamber walls 32, 33, 34 arranged parallel to it, so that between the inner wall 21 and the hollow chamber 52, which is delimited by the hollow chamber wall 34, three vertical hollow chamber gaps 31.1, 31.2 , 31.3 are formed.
  • Parts of the hollow chamber gaps 31.1. 31.2, 31.3 can be removed without impairing the stability of the frame profile 100.
  • the inner wall 21 is connected to the first hollow chamber wall 22 by at least one connecting web 26, forming at least two hollow chambers 25.1, 25.2, with at least one further hollow chamber 25.3 being formed between the first and second hollow chamber walls 32, 33.
  • the outer wall 11 and inner wall 21 have a wall thickness of, for example, 2.8 mm and thus form the thickest and most dimensionally stable wall webs.
  • the cover center web 51 and the bottom web 53 have a wall thickness of 2.5 mm.
  • the outer and inner walls 11, 21 are arranged parallel to one another. Covering means and bottom webs 51, 53 are also largely parallel to one another.
  • the cover center web 53 is at the transition and forms a drainage groove 16. In two places there are grooves for a frame seal 17 and a center seal 56.
  • a glazing bead receiving groove 27 which, in the embodiment shown, is used at the same time to position and fasten a strike plate.
  • the frame profile 100 is framed by the circumferential, outwardly delimiting webs, namely an outer wall 10, a cover center web 51, an inner wall 21 and a bottom web 54, so that a closed profile jacket is formed.
  • each of the four hollow chambers 35.1, ..., 35.4 has a ratio of chamber width to chamber height of 2: 1.
  • the lower web 36.4 and the bottom web 54 form a somewhat higher hollow chamber 35.5 between them.
  • the hollow chamber 25.2 has the same height.
  • FIG. 3 shows the frame profile 100 according to the invention with a representation of the fastening of a strike plate 60 on the frame profile 100.
  • a fastening element 37 pierces the cover center web 51 and the webs 36.1 ... 36.4 and is firmly anchored in them.
  • the webs 36.1 ... 36.4 in the left hollow chamber column 31.2 thus fulfill a double function: on the one hand, they connect the hollow chamber walls 33, 34 to one another, and on the other hand, the webs 36.1 ... 36.4 in the left hollow chamber column 31.2 of the central area 30 form a screw channel for fastening the Striking plate 60.
  • the frame profile 100 offers the possibility of accommodating additional elements in cross-section.
  • Figure 4 shows a possible milling area 44 in the cross-section of the frame profile 100. Due to the inventive laying of the large hollow chamber 52 with an inserted reinforcement profile 53 To the outside down to below the central seal 56, the inner wall area 20 and the web area 30 thus offer enough removable cross-sectional area to form a receiving area 40 without, however, having to touch the hollow chamber 52 with the metallic reinforcement profile 53.
  • the frame profile 100 can be machined from the inner side of the cover center web 51 along the milling area 44, so that a recess is created which serves as a receiving area 40 for additional elements.
  • An outer part 51.1 of the cover center web 51 and the vertical, outer hollow chamber wall 34 are completely retained with their respective wall thicknesses.
  • the milling tool is moved along the outer hollow chamber wall 34 and the inner milling edge 44.1 in the horizontal plane by cutting, to a depth of the upper web 36.4.
  • the depth of the milling can vary, because each web 36.1, ... 36.4 can optionally offer an additional storage area for additional elements that can be used.
  • the milling area 44 can be designed symmetrically or asymmetrically in relation to its cross section.
  • the webs below in the receiving area 40 do not necessarily have to serve as a support surface, since z. B. rest a drive motor or other additional parts by means of fastening straps on the cover center web 51 and can be screwed tightly there.
  • Figure 5 shows the completely milled frame profile 100 with the receiving area 40.
  • the receiving area 40 is rectangular in cross section in the embodiment shown, still open at the top and partially open to the bottom web 54.
  • the original hollow chamber 25.3 is due to the removal of the cover center web 51 and the two upper sections of the hollow chamber walls 32, 33 open and has thus become a groove 42.
  • the lower boundaries of the receiving area 40 are formed by the connecting webs 36.4 and 26 and close the remaining hollow chambers below them 35.5 and 25.2. Between the two hollow chambers 35.5 and 25.2, the receiving area 40 has the groove 42, which functions as a conduit.
  • the hollow chamber 25.3 in the middle hollow chamber gap offers generous space for cabling or bus systems. In particular, excess cable lengths or other lines can be accommodated in the existing installation space.
  • the length of the processing area corresponds to the length of the additional component that is to be integrated in the outer frame.
  • Figure 6 shows the receiving area 40 with an inserted drive unit 43.
  • the maximum width of the receiving area 40 is approximately 1/4 to 1/2 of the cross-sectional width of the frame profile 100, which extends between the hollow chamber wall 34 and the inner wall 21.
  • An electrical line 45 runs in the line duct 42.
  • Figure 7 is a perspective view of the frame profile 100 with the receiving area 40 and with an attached strike plate 60 with borehole 61 for fastening with a screw 61 in the web area 30.
  • This figure shows that the insertion of a drive unit 43 into the receiving area 40 can be accomplished in an uncomplicated manner.
  • the replacement of a drive unit is also easy to handle.
  • the accommodation of cables in the conduit 42 is easy to carry out, which is advantageous both during initial assembly and in the event of repairs, since this area is easily accessible even when the frame profile 100 is installed.
  • Figure 8 shows a perspective view of the frame profile 100 with inserted drive unit 43 and fastening tabs 46.
  • the drive unit 43 is inserted from above into the receiving area 40 and is screwed to the fastening tabs 46 with screws and is held above it on the cover center web 51.
  • Figure 9 shows a further embodiment of a frame profile 100 ', which is only in one detail in the area of the left cavity gap 31.1, which forms the screw channel, differs from the embodiment described above.
  • the third transverse web 36, '3, counted from above, has cams 38 extruded on both sides in order to guide and anchor a screw 61 in the screw channel (see FIG Fig. 3 ) to improve.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Door And Window Frames Mounted To Openings (AREA)
  • Wing Frames And Configurations (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)

Claims (7)

  1. Profilé de cadre dormant (100 ; 100') pour portes et fenêtres munies de composants supplémentaires (43), dont la section transversale comporte au moins :
    - une zone de paroi extérieure (10) munie d'une paroi extérieure (11) ;
    - une zone centrale (50) munie d'au moins une chambre creuse (52), dans laquelle un profilé de renforcement métallique (53) est insérable ;
    - une zone de paroi intérieure (20) munie d'une paroi intérieure (21) ;
    - une entretoise de fond (54) sur le côté inférieur et une entretoise de moyen de recouvrement (51) sur le côté supérieur,
    - une zone d'entretoise (30) étant intercalée entre la zone centrale (50) et la zone de paroi intérieure (20), qui comprend au moins deux chambres creuses (25.1, 25.2, 25.3, 35.1,..., 35.4) agencées dans des fentes de chambre creuse verticales (31.1, 31.2, 31.3) entre une entretoise latérale (34) délimitant la chambre creuse (52) et la paroi intérieure (21), qui sont séparées les unes des autres par au moins une entretoise de séparation verticale (32, 33), et
    - une rainure de baguette en verre (27) étant formée au niveau de la transition entre la paroi intérieure (21) et l'entretoise de moyen de recouvrement (51), en dessous de laquelle au moins une fente de chambre creuse (31.1) est agencée, et au moins une fente de chambre creuse supplémentaire (31.2, 31.3) étant formée latéralement à côté de la rainure de baguette en verre (27) et
    - le profilé de renforcement métallique (53) étant agencé en dehors des fentes de chambre creuse (31.1, 31.2, 31.3),
    caractérisé en ce que
    - au moins une fente de chambre creuse (31.3) est formée sans entretoise transversale agencée entre l'entretoise de fond (54) et l'entretoise de moyen de recouvrement (51), et
    - par élimination de l'entretoise de moyen de recouvrement (51) au-dessus des fentes de chambre creuse (31.1, 31.2, 31.3) et éventuellement par élimination d'une entretoise de séparation verticale (32, 33) entre les fentes de chambre de creuse (31.1, 31.2, 31.3), au moins une zone de réception (40) pour un composant supplémentaire (43) pour la porte ou la fenêtre est formée,
    - la zone de réception (40) étant délimitée vers le bas dans au moins une fente de chambre creuse (31.1, 31.2) par une entretoise transversale (35.4, 36.4) agencée à distance de l'entretoise de fond (54), et
    - en ce que la partie inférieure de la fente de chambre creuse (31.3) est attenante à celle-ci par le bas sans entretoise transversale en tant que canal de conduction (42) après l'élimination des entretoises dans la zone de réception (40).
  2. Profilé de cadre dormant (100 ; 100') selon la revendication 1, caractérisé en ce qu'au moins une fente de chambre creuse (31.1, 31.2) comprend, pour la formation d'un canal de vis, au moins deux entretoises transversales horizontales (36.1,..., 36.4) et/ou au moins une entretoise transversale (36.3') renforcée par des cames coextrudées (38').
  3. Profilé de cadre dormant (100 ; 100') selon la revendication 2, caractérisé en ce qu'une troisième fente de chambre creuse (31.3) est agencée entre la fente de chambre creuse (31.1) sous la rainure de baguette en verre et la fente de chambre creuse (31.2) configurée en tant que canal de vis.
  4. Profilé de cadre dormant (100 ; 100') selon l'une quelconque des revendications précédentes, caractérisé en ce que la largeur de section transversale maximale de la zone de réception (40) est de 1/4 à 1/2 de la largeur de section transversale du profilé de cadre dormant (100 ; 100').
  5. Profilé de cadre dormant (100 ; 100') selon l'une quelconque des revendications précédentes, caractérisé en ce que le profilé de renforcement (53) est agencé dans la direction horizontale approximativement au milieu en dessous du joint d'étanchéité central (56).
  6. Profilé de cadre dormant (100 ; 100') selon l'une quelconque des revendications précédentes, caractérisé en ce que le profilé de renforcement (53) est relié par l'intermédiaire d'au moins un élément de fixation (37) avec le cadre dormant.
  7. Fenêtre munie d'un battant, qui est formé par un profilé de battant (200), qui comprend au niveau de sa périphérie extérieure une rainure de réception de ferrure (201), et munie d'un cadre dormant, qui est formé par un profilé de cadre dormant (100 ; 100') selon l'une quelconque des revendications précédentes, caractérisée en ce que la zone de réception (40) du profilé de cadre dormant (100 ; 100') est agencée en dessous de la rainure de réception de ferrure (201) du profilé de battant (200).
EP19205255.3A 2018-10-25 2019-10-25 Dormant pour portes et fenêtres avec composants supplementaires Active EP3643867B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL19205255T PL3643867T3 (pl) 2018-10-25 2019-10-25 Ościeżnica do drzwi i okien z dodatkowymi elementami

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102018126659.6A DE102018126659B4 (de) 2018-10-25 2018-10-25 Blendrahmenprofil für Türen und Fenster mit Zusatzkomponenten

Publications (2)

Publication Number Publication Date
EP3643867A1 EP3643867A1 (fr) 2020-04-29
EP3643867B1 true EP3643867B1 (fr) 2021-07-07

Family

ID=68344662

Family Applications (1)

Application Number Title Priority Date Filing Date
EP19205255.3A Active EP3643867B1 (fr) 2018-10-25 2019-10-25 Dormant pour portes et fenêtres avec composants supplementaires

Country Status (3)

Country Link
EP (1) EP3643867B1 (fr)
DE (1) DE102018126659B4 (fr)
PL (1) PL3643867T3 (fr)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE9301598U1 (de) 1993-02-05 1994-06-01 Niemann, Hans Dieter, 50169 Kerpen Rahmen für Fenster, Türen o.dgl., insbesondere Kunststoffrahmen
DE9414631U1 (de) 1993-11-09 1994-11-03 Rekord - Fenster + Türen GmbH & Co KG, 25578 Dägeling Kunststoff-Hohlprofil
DK176088B1 (da) 1996-04-17 2006-05-22 Vkr Holding As Motorbetjent dreje-kipvindue
DE19944350A1 (de) * 1999-09-16 2001-03-22 Huels Troisdorf Blendrahmenprofil für Fenster für zweischalige Mauerwerke
DE20100617U1 (de) * 2001-01-12 2001-03-08 Schüco International KG, 33609 Bielefeld Rahmenprofilanordnung
DE102008017325A1 (de) * 2008-03-31 2009-10-08 Franjo Kovac Blendrahmen, Fensterflügel und Fenstervorrichtung des Siebenkammertyps mit ausgezeichneter Verwindungssteifigkeit und hoher Wärme- und Schalldämmung
DE202012104990U1 (de) 2012-12-20 2014-04-01 Rehau Ag + Co Tür, insbesondere Kunststofftür, mit einem Verstärkungselement sowie Verstärkungselement hierfür

Also Published As

Publication number Publication date
DE102018126659A1 (de) 2020-04-30
PL3643867T3 (pl) 2021-12-27
DE102018126659B4 (de) 2021-10-14
EP3643867A1 (fr) 2020-04-29

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