EP3854975A1 - Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante - Google Patents

Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante Download PDF

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Publication number
EP3854975A1
EP3854975A1 EP20153433.6A EP20153433A EP3854975A1 EP 3854975 A1 EP3854975 A1 EP 3854975A1 EP 20153433 A EP20153433 A EP 20153433A EP 3854975 A1 EP3854975 A1 EP 3854975A1
Authority
EP
European Patent Office
Prior art keywords
surrounding frame
sill
building
reveal
foam
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.)
Granted
Application number
EP20153433.6A
Other languages
German (de)
English (en)
Other versions
EP3854975B1 (fr
Inventor
Stefan Berbner
Jürgen Waßermann
Dirk Gießler
Rainer Allwißner
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.)
Emv Ag
Taglieber Holzbau GmbH
DAW SE
Original Assignee
Emv Ag
Taglieber Holzbau GmbH
DAW SE
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 Emv Ag, Taglieber Holzbau GmbH, DAW SE filed Critical Emv Ag
Priority to EP20153433.6A priority Critical patent/EP3854975B1/fr
Publication of EP3854975A1 publication Critical patent/EP3854975A1/fr
Application granted granted Critical
Publication of EP3854975B1 publication Critical patent/EP3854975B1/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
    • E06B1/02Base frames, i.e. template frames for openings in walls or the like, provided with means for securing a further rigidly-mounted frame; Special adaptations of frames to be fixed therein
    • 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
    • E06B1/702Window sills

Definitions

  • the present invention relates to a prefabricated surrounding frame for a building opening.
  • the invention also relates to a building facade containing at least one surrounding frame according to the invention.
  • the invention also relates to a building containing at least one surrounding frame according to the invention.
  • the invention also relates to a thermal insulation composite system containing at least one surrounding frame according to the invention.
  • the invention relates to the use of the surrounding frame according to the invention for the production of window or door openings.
  • a prefabricated wall element in which a window frame connected to a window frame is concreted as permanent formwork with a formwork surface forming the reveal of a window opening is.
  • the window frame only has to extend over part of the width of the reveal and the formwork surface of the permanent formwork is otherwise formed by the window frame and / or a part connected to the window frame. In this way, the possibility of using wall construction elements, such as those used in the basement area, should be increased.
  • the EP 2 905 412 B1 discloses a complete window module manufactured using an insulating material for installation in a building opening in such a way that it completely surrounds the building opening.
  • the insulating material has to have a recess in which a ventilation module has to be at least partially integrated. In this way, the installation or retrofitting of ventilation systems should be simplified even further.
  • the DE 10 2012 002 600 A1 discloses a soffit profile for fastening window, door or gate frames in the masonry, the soffit profile having to be a rectangular, acute-angled, trapezoidal, oval or rounded edges having molded body which can be fastened within a masonry.
  • the reveal profile has a freely accessible fastening side, an opposite rear that can be built into a masonry and two buildable side parts located within the masonry and an buildable top and bottom side located within the masonry.
  • the reveal profile has to have at least one air chamber on the side to which a window frame, door frame or door frame can be attached. This is intended to provide a fastening device for window, gate and door frames that does not impair the insulation of these window, gate or door frames and is also resistant to bending.
  • the solutions known from the prior art often represent individual solutions for special applications and still leave something to be desired.
  • the present invention was therefore based on the object of being able to reliably and easily close building openings for doors and windows in such a way that the penetration of moisture can be effectively prevented in the long term and that thermal bridges are avoided.
  • the present invention was also based on the object of enabling quick and reliable installation of doors and windows in building openings without having to rely on special tools and specially qualified personnel.
  • the surrounding frame according to the invention also comprises at least one fabric connection profile, preferably plaster connection profile, particularly preferably a circumferential or almost circumferential fabric connection or plaster connection profile.
  • the fabric connection or plaster connection profile is in particular connected to a fabric reinforcement, in particular in the form of a diagonal reinforcement.
  • the surrounding frame according to the invention can be equipped with at least one fabric drip edge profile, in particular a so-called drip nose.
  • This fabric drip edge profile is at least in an expedient embodiment Mounted in parts on the sloping wedge or the sill mounting unit.
  • This fabric drip edge profile is also advantageously provided with fabric reinforcement, in particular in the form of diagonal reinforcement.
  • the fabric connection profile or fabric drip edge profile and / or the window sill sliding bearing can be formed, for example, from a plastic material, in particular from PVC, or from a metal component, in particular comprising or consisting of aluminum. Preferably, those made of PVC are used for the components mentioned.
  • the fabric drip edge profile and / or the window sill sliding bearing can be an integral part of the sloping wedge or the sill receiving unit.
  • those embodiments of the surrounding frame according to the invention have also proven to be particularly suitable which have at least one window sill sliding bearing, in particular in the form of a so-called sill guide.
  • at least one window sill sliding bearing in particular in the form of a so-called sill guide.
  • sill guide in this case, use is preferably made of two window sill sliding bearings or sill guides arranged opposite one another, designed and set up to accommodate a window sill or sill.
  • the surrounding frame according to the invention can furthermore also have a window sill or sill which is set up and designed so that it can be, in particular reversibly, stored and, if necessary, fastened in the sill guides.
  • the first soffit or the soffit surface of the first soffit and / or the second soffit or the soffit surface of the second soffit and / or the lintel or lintel surface can in particular be both smooth and structured.
  • a structured surface is achieved, for example, by using a paint containing a grain or a coarse-grained filler material, or by applying a layer of plaster.
  • the plaster layer can be, for example, a concealed plaster and a finishing plaster. If a concealed layer is used, it has often proven to be useful to provide a fabric reinforcement, in particular in the form of a diagonal reinforcement.
  • Such prefabricated enclosing frames according to the invention enable particularly straightforward and convenient installation, in which a receiving unit, set up and designed for receiving at least one shading device, in particular in the area of the lintel, is provided. If such a receiving unit is already available, it has often proven to be expedient to immediately insert the shading device into the Insert recording unit.
  • Suitable shading devices can be selected from the group consisting of roller shutters, blinds, textile screens and fly screens.
  • the enclosure frame in particularly expedient embodiments already contains a guide rail or guide groove for the shading device in the first reveal and / or, preferably and, a guide rail or guide groove for the shading device in the second reveal.
  • the respective guide rail or guide groove extends into the first lateral delimitation element and / or that the respective guide rail or guide groove extends into the second lateral delimitation element.
  • At least one stepped rebate or groove is provided on the inside of the frame body.
  • Panel materials can be inserted into this rebate or groove from the inside of a building. These panel materials can preferably be selected from the group consisting of plasterboard, gypsum fiber, calcium silicate and fiber cement drywall panels.
  • first and second reveals as well as the lintel in particular in each case present in the form of a plate, can comprise or in particular consist of an insulating material.
  • first and / or second reveal it is particularly preferred to use reveal panels made of cork, EPS, XPS, mineral wool, in particular rock wool, soft wood fiber material, phenolic resin foam, rigid polyurethane foam, rigid polyisocyanurate foam or rigid polyethylene terephthalate (PET) foam (preferably recyclable PET - Rigid foams) consist of or include these materials.
  • closed-cell rigid foams in particular closed-cell PET rigid foams, are used, in particular those rigid foams or closed-cell rigid foams which are sorted or recyclable.
  • the first lateral delimiting element, the second lateral delimiting element, the upper delimiting element and the lower delimiting element regularly form the frame body. Adjacent elements are therefore preferably firmly connected to one another, so that the frame body preferably forms a rigid, in particular markedly stable or self-supporting, structural unit.
  • the first lateral delimiting element, the second lateral delimiting element, the upper delimiting element and / or, preferably and, the lower delimiting element is a solid wood panel, a chipboard, in particular an OSB panel (also known as “coarse chipboard") or called "Oriented Strand Board "), comprise or consist of a wood fiber board, a composite material board, in particular a cement-bonded chipboard, or a plastic board, in particular a fiber-reinforced plastic board.
  • the first lateral delimitation element, the second lateral delimitation element, the upper delimitation element and the lower delimitation element are each made from an OSB panel.
  • the expediently encircling collar element of the surrounding frame according to the invention can be manufactured both in one piece and from several individual components. In many cases it has proven to be sufficient to manufacture the collar element from individual components, for example from two lateral structural units and an upper and a lower structural unit.
  • the longitudinal extension of the lateral structural units of the collar element can, for example, essentially correspond to the longitudinal extension of the lateral delimiting elements of the frame body.
  • the longitudinal extension of the upper and lower structural units of the collar element can also essentially correspond to the upper or lower delimiting element of the frame body.
  • the assembly stop can come to rest on support struts of a wooden construction wall and thus enable simple alignment, namely up to the stop on the support strut or a suitable abutment.
  • the circumferential collar element or the structural units forming the collar element preferably comprise a thermal insulation material or particularly preferably consist of it.
  • Cork, EPS, XPS, mineral wool, in particular rock wool, soft wood fiber material, phenolic resin foam, rigid polyurethane foam, rigid polyisocyanurate foam or rigid polyethylene terephthalate foam are generally preferred for the circumferential collar element or the structural units forming the collar element.
  • closed-cell rigid foams are used, in particular those rigid foams or closed-cell rigid foams that are sorted or recyclable.
  • a thermal insulation material is also preferably selected for the sloping wedge or the sill receiving unit.
  • This can in particular be selected from the group consisting of cork, EPS, XPS, mineral wool, in particular rock wool, soft wood fiber material, phenolic resin foam, rigid polyurethane foam, rigid polyisocyanurate foam and rigid polyethylene terephthalate foam.
  • closed-cell rigid foams are also used here, in particular those rigid foams or closed-cell rigid foams which are single-type or recyclable. In this way, too, with the aid of the surrounding frame according to the invention, pronounced thermal insulation is ensured for the building opening to be closed with the surrounding frame.
  • the waterproof layer that comes to rest on the sloping wedge or the sill receiving unit is preferably a layer made of a flexurally elastic plastic material, for example in the form of an EPDM film. Rubber sheets can also be used for this purpose.
  • the watertight layer can be obtained by means of a watertight paint on the surface of the sloping wedge or the sill receiving unit.
  • the sloping wedge or the sill receiving unit c) with the watertight layer d) are present as a composite or as a unit.
  • the sloping wedge or the sill receiving unit c) can already be equipped with a watertight surface.
  • features c) and d) are also present in the case of a sloping wedge or a sill receiving unit c) which, as such, is equipped to be watertight and thus inevitably also has a watertight surface or a watertight layer on its surface or in the area close to the surface.
  • the waterproof layer in particular film, extends into the area between the first lateral delimiting element and the rear reveal surface of the first reveal and / or, preferably and, into the area extends between the second lateral delimitation element and the rear reveal surface of the second reveal, for example in the range of 5 to 20 cm. In many cases one has Such an extension in the range of 10 to 15 cm has proven to be particularly suitable in order to achieve a tight surrounding frame according to the invention.
  • the surrounding frame according to the invention is integrated, in particular flush, into a thermal insulation composite system for an outer facade of a building.
  • a particularly reliable, i.e. thermal bridge-free, integration into the thermal insulation composite systems present on the building facade is achieved.
  • the support area for a profile frame is preferably formed by a statically load-bearing support strip.
  • this is preferably formed from an insulating material or comprises at least one such insulating material.
  • Particularly preferred insulating materials for the support area are selected from the group consisting of phenolic resin foam, rigid polyurethane foam, rigid polyisocyanurate foam and rigid polyethylene terephthalate foam.
  • closed-cell rigid foams are also used for this purpose, in particular those rigid foams or closed-cell rigid foams which are single-type or recyclable.
  • a building facade containing at least one surrounding frame according to the invention Suitable building facades according to the invention can be, for example, a rear-ventilated facade and / or a plastered facade.
  • the object on which the invention is based is achieved by a building containing at least one surrounding frame according to the invention and / or at least one building facade according to the invention.
  • Suitable buildings according to the invention can be based on solid construction, timber construction or steel construction.
  • the building according to the invention is preferably a wooden building.
  • thermal insulation composite system for the insulation of external facades containing at least one surrounding frame according to the invention.
  • Figure 1 shows an embodiment of a prefabricated surrounding frame (1) according to the invention in the form of a window frame for a building opening with an inside (10) and an outside (12).
  • the circumferential frame body (13) is formed by a first lateral plate-shaped delimiting element (2), an opposing second lateral delimiting element (4), an upper plate-shaped delimiting element (6) and an opposing lower plate-shaped delimiting element (8) on which the sloping wedge (14 ) is on top (not shown).
  • the first reveal (34) with a reveal surface rests against the first lateral plate-shaped delimiting element (2).
  • the guide rail or guide groove (44) for a shading device is embedded in the reveal surface. The shading device itself is not shown here for reasons of clarity.
  • the surrounding frame (1) further comprises in the in Figure 1 embodiment variant shown a circumferential collar element (26). This is formed from two side units and an upper and a lower unit. These structural units forming the collar element (26) rest against the outwardly facing edges of the boundary elements (2, 4, 6, 8) of the surrounding frame body (13) via assembly stops (29) (not shown; see Figure 3 ).
  • the embodiment has a surrounding frame (1) according to the invention according to Figure 1 via fabric connection profiles (30), which connect to the side reveals (34, 36) and the lintel (38) and are equipped with fabric sheets.
  • fabric connection profiles (30) which connect to the side reveals (34, 36) and the lintel (38) and are equipped with fabric sheets.
  • fabric drip edge profile (31) which is also equipped with a fabric web.
  • window sill sliding bearing In the transition from the first reveal (34) to the sloping wedge (14) or to the watertight layer (24) there is a window sill sliding bearing (32), designed and set up to accommodate a window sill.
  • a window sill sliding bearing (32) corresponding to this is present in the transition from the second reveal (36) to the sloping wedge (14) or to the watertight layer (24).
  • FIG. 2 The cross-sectional view of the Figure 2
  • the sloping wedge (14) and the watertight layer (24) lying thereon are removed from the surrounding frame (1) according to the invention.
  • the gradient wedge (14) rests on the lower plate-shaped delimiting element (8).
  • the support area (28) or support component for a window frame adjoining the rear side (18) of the sloping wedge (14) is shown.
  • Figure 2 also shows the guide rail or guide groove (44) in the first reveal (34) as well as the window sill sliding bearing (32), the fabric connection profile (30) with the fabric web on it and the fabric drip edge profile (31), also with the fabric web on it.
  • the first lateral plate-shaped delimiting element (2) adjoins the first reveal (34).
  • the waterproof layer (24) extends laterally between the first reveal (34) and the first lateral plate-shaped delimiting element (2) in the direction of the upper plate-shaped delimiting element (6).
  • This extension generally has a length of 10 cm to 20 cm and contributes to a further increase in tightness.
  • the guide rail or guide groove (44) opens into the receiving unit (40) for the shading device (42) (not shown).
  • the upper plate-shaped delimiting element (6) of the frame body is located above this receiving unit (40).
  • Figure 3 shows a sectional view along the transverse extension of the surrounding frame (1) according to the invention.
  • the gradient wedge (14) (not shown) is covered with the waterproof layer (24). Facing the outside is the fabric drip edge profile (31).
  • the first lateral plate-shaped delimiting element (2) and the opposite, second lateral delimiting element (4) of the frame body (13) are each equipped with a stepped rabbet (46) designed and set up to accommodate plate materials.
  • Figure 3 the two lateral structural units of the collar element (26).
  • the sectional view shown along the transverse extent of the surrounding frame (1) according to the invention also shows assembly stops (29).
  • the present invention was based on the surprising finding that with the prefabricated enclosing frames according to the invention, building openings intended for windows and doors can be properly and reliably closed in just a few operations, with basic craftsmanship being sufficient for this.
  • the adapted prefabricated surrounding frame helps to effectively prevent thermal bridges and the ingress of moisture.
  • the entire workflow can also be designed particularly effectively in that already in the case of the prefabricated surrounding frame according to the invention, circumferential or almost circumferential fabric connection profiles are provided on the outside. This enables particularly simple and quick plastering into a plastered facade.
  • the circumferential collar element has the advantage that the surrounding frame according to the invention can be inserted into a building opening in a particularly simple and precise manner.
  • the circumferential collar element itself comprises or consists of an insulating material
  • a uniform fitting into or a virtually seamless transition to the insulation of a building facade is possible in terms of insulation.
  • frequent weak points for thermal bridges such as occur, for example, in roller shutter boxes, can reliably be avoided with the surrounding frames according to the invention.
  • a quality check for weak points in terms of insulation for example by means of infrared technology, can be carried out before the actual installation in a building facade.
  • assembly is quicker and easier than with conventional solutions, and it has been shown that significantly fewer work steps are required at the assembly site and processing errors can be significantly reduced.
  • Window and door connections can be manufactured very precisely with the surrounding frames according to the invention.
  • the stepped rebate or groove which is present on the inside of the surrounding frame according to the invention and into which, for example, panel materials can engage, also contributes to particularly quick assembly. Since the desired shading devices can already be provided with the surrounding frame according to the invention, further work steps are not necessary at the construction site. In addition to the remaining plastering and painting work, it is often only necessary to insert the window sill or sill into the device that can be provided for this in the surrounding frame according to the invention.
  • the surrounding frame according to the invention represents a thermal bridge-optimized connection to building openings, which can be achieved with a reduced number of tools compared to conventional systems with a reduced number of tools Time to assemble.
  • Another particular advantage of the surrounding frame according to the invention is that its use is not limited to building facades made of wood, but can also be used in solid and steel building facades.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • Door And Window Frames Mounted To Openings (AREA)
EP20153433.6A 2020-01-23 2020-01-23 Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante Active EP3854975B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP20153433.6A EP3854975B1 (fr) 2020-01-23 2020-01-23 Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP20153433.6A EP3854975B1 (fr) 2020-01-23 2020-01-23 Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante

Publications (2)

Publication Number Publication Date
EP3854975A1 true EP3854975A1 (fr) 2021-07-28
EP3854975B1 EP3854975B1 (fr) 2022-12-21

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EP20153433.6A Active EP3854975B1 (fr) 2020-01-23 2020-01-23 Huisserie enveloppante préfabriquée pour une ouverture de bâtiment, système composite d'isolation thermique, façade de bâtiment et bâtiment, comportant l'huisserie enveloppante et utilisation de l'huisserie enveloppante

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4198241A1 (fr) 2021-12-15 2023-06-21 Daw Se Agencement de retenue et cadre de fenêtre

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19951901A1 (de) * 1999-10-28 2001-05-03 Bernd Beck Bauelement
GB2410286A (en) * 2004-01-20 2005-07-27 Barry Charles Bishop Two part window or door frame
EP2161402A1 (fr) 2008-09-05 2010-03-10 Südtirol Fenster S.r.l. Encadrement de porte ou fenêtre préfabriqué avec une bordure isolante
US20100251643A1 (en) * 2009-05-21 2010-10-07 John Leonard Rosende Monolithic Fenestration Construction Member and Wall and Fenestration Assembly Using the Same
US10400501B1 (en) * 2016-05-16 2019-09-03 Build Smart IP, LLC Window assembly and pre-fabricated wall panel

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19951901A1 (de) * 1999-10-28 2001-05-03 Bernd Beck Bauelement
GB2410286A (en) * 2004-01-20 2005-07-27 Barry Charles Bishop Two part window or door frame
EP2161402A1 (fr) 2008-09-05 2010-03-10 Südtirol Fenster S.r.l. Encadrement de porte ou fenêtre préfabriqué avec une bordure isolante
EP2333219A1 (fr) 2008-09-05 2011-06-15 Südtirol Fenster S.r.l. Encadrement de porte ou fenêtre préfabriqué avec une bordure isolante
US20100251643A1 (en) * 2009-05-21 2010-10-07 John Leonard Rosende Monolithic Fenestration Construction Member and Wall and Fenestration Assembly Using the Same
US10400501B1 (en) * 2016-05-16 2019-09-03 Build Smart IP, LLC Window assembly and pre-fabricated wall panel

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP4198241A1 (fr) 2021-12-15 2023-06-21 Daw Se Agencement de retenue et cadre de fenêtre

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