EP3350400A1 - Profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades - Google Patents

Profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades

Info

Publication number
EP3350400A1
EP3350400A1 EP16787575.6A EP16787575A EP3350400A1 EP 3350400 A1 EP3350400 A1 EP 3350400A1 EP 16787575 A EP16787575 A EP 16787575A EP 3350400 A1 EP3350400 A1 EP 3350400A1
Authority
EP
European Patent Office
Prior art keywords
profile
angle iron
windows
doors
facades
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
EP16787575.6A
Other languages
German (de)
English (en)
Other versions
EP3350400B1 (fr
Inventor
Artur BORUSZEWSKI
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.)
Ergo Plus Polska
Original Assignee
Ergo Plus Polska
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 Ergo Plus Polska filed Critical Ergo Plus Polska
Priority to PL16787575T priority Critical patent/PL3350400T3/pl
Publication of EP3350400A1 publication Critical patent/EP3350400A1/fr
Application granted granted Critical
Publication of EP3350400B1 publication Critical patent/EP3350400B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

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
    • E06B1/003Cavity wall closers; Fastening door or window frames in cavity walls
    • 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 subject matter of the invention is the profile for the fastening and thermal insulation system of windows, doors and facades, preferably placed in the area of insulation of structures, multi-family buildings, single-family buildings, as well as public buildings, livestock buildings and farm buildings.
  • the profile is developed for the installation of windows, doors and facades, both made of PVC, as well as aluminum and timber, irrespective of their dimensions.
  • the presented invention solves the problem of elimination of thermal bridges at the contact area of the window and the wall.
  • the method involves placing the thermal insulation element at the horizontal contact area of the window and the wall, which is also the external windowsill.
  • the thermal insulation element is made of the thermal insulation material in the form of a narrow board having a trapezoidal shape in its cross section. On the surface of the thermal insulation material is placed a thin layer of the plastic mass with a grid.
  • the element for embedding aluminum windows with the thermal separator is the monolithic molding made of the wall and the walls with edges juxtaposed at right angles, wherein the relationships between the width of the wall to the wall in different sizes are expressed by the following ratios: 1.6 to 1.19 to 1 and 2.3 to 1, most preferably 1.9 to 1.
  • the wall has mounting through holes, and the window with the element is fixed to the window hole by the screw element.
  • the angular element of the thermal insulation housing comprises the base and the side wall made of the thermal insulation board, in which between two stiffening linings is placed the layer of the thermal insulation material.
  • the base and the side wall are interconnected, forming the edge of the angular bend at the connection point.
  • the angular element has on the one side of the opposite face edges the longitudinal sealing protrusions, and on the other side, the longitudinal sealing seat.
  • the presented reinforcing steel profile for windows and doors made of PVC profiles, constituting the upper and side steel element, separated by the roiled thermal pad, is characterized in that the upper element comprises the bend forming the protrusion and the seat created between the inflection point of the bend and the single inflection point of the bend, in which it has embedded by one end the thermal pad placed by the second end in the seat of the side element, formed between the double inflection point of the bend and the single inflection point of the bed, wherein the vertical arm of the side element has a bent.
  • the aim of the invention it to develop a profile for the fastening and thermal insulation system of windows, doors and facades, which will facilitate and allow the installation of windows, doors and elements of the facade to the face of the wall, made of any material.
  • the invention aims to strengthen the profile itself, making it possible to limit the structural elements in the building.
  • the essence of the profile for the fastening and thermal insulation system of windows, doors and facades is that its main structural element is the angle iron with the cross section reminiscent of the shape of the letter "I”, made of any material, with longitudinal inflection points made along the edges of both arms, which are bent towards the interior of the angle iron, preferably at an angle of 900, wherein the angle iron is filled with the filling compound.
  • the angle iron is made of steel or steel sheet or other alloy, or of the glass fiber composite or the carbon fiber composite.
  • the filling compound is made of the synthetic foam, or the carbon fiber composite.
  • the brace that expands the arms of the angle iron.
  • the brace is substantially comprised by the longitudinal flat bar, in which holes or bumps can be made, or the brace is comprised by small boards arranged respectively along the length of the angle iron.
  • the brace forms an acute angle - with the arm of the angle iron, which it adheres to and with longitudinal inflection points going out from this arm - which angle is typically 45°.
  • the brace is the bisector of the angle defined by the arm of the angle iron and the longitudinal inflection point.
  • the profile with the angle iron, longitudinal inflection points, filling compound and optionally the brace is the structural element with the cross section of an preferably isosceles right triangle.
  • the profile is supplemented by an additional mass, preferably the filling compound, giving various shapes to the profile, which result in its various sections.
  • the developed profile has holes, made in the course of the production of the profile or during its installation.
  • the profile is fixed to the face of the wall using fasteners, pins or screws.
  • fixing anchors are provided with one or more swivels
  • fixing anchors are made of several sliding elements, allowing the displacement and extension of fixing anchors.
  • swivels are in the form of hinges.
  • the solution enables easy and extremely fast, and at the same time very solid and stable fixing the various elements of facades, windows and doors to the building wall face.
  • the solution can reduce the number of structural elements in the building, because the fixing profile can be a separate structural element, which, compared to earlier solutions, carries much greater load values. This is possible thanks to a specific stress distribution, acting in the profile, after suspending on it the elements of the facade, such as windows or doors.
  • the developed profile for the fastening and thermal insulation system of windows, doors and facades allows you to achieve maximum strength with a minimal amount of material used for this profile.
  • the developed solution facilitates the installation of windows and doors out of the hole in the wall, allowing for easier carrying the thermal insulation layer directly to the window or door, and consequently eliminating any thermal bridges that can occur when connecting to the face of the wall, doors or other facade elements.
  • Fig. 1 - presents a schematic cross section through the wall of the building, using the profile for the fastening and thermal insulation system of windows, doors and facades
  • Fig. 2 - presents an axonometric sectional view of a particular form of the profile and the wall section
  • Fig. 3 - presents another, special form of the profile in an axonometric view, with the element ornamenting the facade of the building
  • Fig. 4 - presents a schematic cross section through the wall of the building, using the profile in which fixing anchors are additionally used
  • Fig. 5 - presents an axonometric sectional view of a particular form of the profile with fixing anchors
  • Fig. 6, Fig. 7, Fig. 8, Fig. 9, Fig. 10, Fig. 11 and Fig. 12 - present different designs of fixing the profile to the wail, using fixing anchors equipped with a various number of differently localized swivels and sliding elements.
  • an essential structural element of the profile for the fastening and thermal insulation system of windows, doors and facades is the angle iron 1, made of any material, such as sheet (steel or other alloy), glass fiber composite or carbon fiber composite, preferably of steel with a cross section resembling the shape of the letter "L", whereas the composites will improve the insulation factor of the profile.
  • the angle iron 1 "I” has longitudinal inflection points 2, arranged along the edge of its both arms, which are bent towards the interior of the angle iron 1, at an angle of 90°.
  • the angle iron 1 toL" is filled with the filling compound 3, preferably the synthetic foam, or the carbon fiber composite.
  • the filling compound 3 expands and stiffens the arms of the angle iron 1, thereby preventing buckling the arms of the angle iron 1.
  • the angle iron 1 toL is not deformed under transferred loads, resulting from the suspension of the elements of the facade of the building on it.
  • the filling compound 3 is also the thermal insulation layer and the sealing layer, protecting against negative atmospheric conditions, such as wind.
  • the filling compound 3 carries loads, while the additionally used brace 4 improves the strength of the profile structure.
  • the brace 4 may substantially comprise the longitudinal flat bar, whereas it is possible to make holes or protrusions in it; possibly, the brace 4 may consist of small boards arranged respectively along the length of the angle iron 1 "I". Possibly made 4 holes and gaps in the brace facilitate the installation of the angle iron 1 "I” and reduce its weight, while the protrusions made in the brace 4 improve its properties, such as strength and stiffness.
  • the aforementioned brace 4 always creates an acute angle - from the arm of the angle iron 1 to which it is adjacent, as well as with longitudinal inflection points 2 going out of this arm - which angle is typically 45 °.
  • the brace 4 constitutes then the bisector of the angle, defined by the arm of the angle iron 4 and the longitudinal inflection point 2.
  • the profile with such an angle iron 1, longitudinal inflection points 2, filling compound 3 and optionally with the brace 4 of the fastening and thermal insulation system of windows, doors and facades - is a structural element with the cross section of possibly isosceles right triangle, with a very high lifting force.
  • the described loads are carried by the filling compound 3, which carries from 500 kg to 1200 kg per 100 cm 2 .
  • loads are carried by the filling compound 3 and the brace 4, so that we can sum up the aforementioned load strength of the filling compound 3 and in addition the compressive strength of the brace 4, which is from 0 to 100 kg per 1 linear meter.
  • the strength of the profile for the fastening and thermal insulation system of windows, doors and facades reaches up to 2.5 tons per 1 linear meter.
  • the developed profile may be supplemented by the compound, such as the filling compound 3, which can be formed in different ways, giving various shapes to the profile, which result from its various cross sections.
  • the profile shaped this way may be at the same time used as a decorative element of the building facade, as shown in Figure 3.
  • the shape of the triangle formed by the angle iron 1, and possibly, additionally by the brace 4, which are complemented by the filling compound 3 - is much less susceptible to deformations of previously known angle irons, than the structure itself,
  • the profile is placed on the face of the wall, at a height depending on the design of the building and the need to install other elements on it. Fixing the profile to the wall face, and installing other elements of the facade, is possible with holes 5, made earlier in the course of the production of the profile, or during its installation.
  • the installation may be also performed in a different way, with the use of fixing anchors 6, connected directly to the profile, optionally supporting the profile, and then connected also to the building wall.
  • Fixing anchors 6 may be equipped with one or more swivels 8. They can also be made of several sliding elements 9, enabling the separation, and thus, the elongation of fixing anchors 6.
  • swivels 8 which may take the form of hinges, improves the strength of fixing anchors 6, since the fixing anchor 6 equipped with swivels 8, is affected only by shear forces, but not by moments or transverse forces. In this way, the profile lacks line stresses, but is only influenced by point stresses. The presence of swivels 8 also facilitates transport and installation of the profile.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Mechanical Engineering (AREA)
  • Special Wing (AREA)
  • Wing Frames And Configurations (AREA)

Abstract

L'invention concerne un profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades; un élément essentiel de celui-ci étant un fer d'angle (1), en un matériau quelconque, de préférence en acier, dont la section transversale ressemble à la lettre " L ", qui comporte des points d'inflexion longitudinaux (2) disposés le long des bords de ses deux bras, qui sont courbés vers l'intérieur du fer d'angle (1), de préférence à un angle de 90 °. Le fer d'angle (1) "L" est rempli d'un composé de remplissage (3). En outre, grâce au laminage des bords du fer d'angle (1) et à la présence de points d'inflexion longitudinaux (2) du fer d'angle (1) formé de cette manière, il est possible de placer l'entretoise (4) entre eux, laquelle dilate les bras du fer d'angle (1). L'entretoise (4) peut être sensiblement la barre plate longitudinale, et elle peut présenter des trous ou des saillies; éventuellement, l'entretoise (4) peut être constituée de petits panneaux disposés respectivement le long de la longueur du fer d'angle (1) "L". L'entretoise susmentionnée (4) forme toujours un angle aigu, avec le bras du fer d'angle (1) auquel elle est adjacente, et avec des points d'inflexion longitudinaux (2) sortant de ce bras, lequel angle est normalement de 45 °. L'entretoise (4) est ensuite la bissectrice de l'angle défini par le bras du fer d'angle (1) et du point d'inflexion longitudinal (2) . Dans la solution basique, le profil est fixé à la face de paroi au moyen d'éléments de fixation, des broches ou des vis (7). La vis (7) passant à travers le bras horizontal du fer d'angle (1) fixe le cadre de la fenêtre, de la porte porte ou d'autres éléments de façade au fer d'angle (1) "L". L'installation peut être également effectuée avec l'utilisation d'ancrages de fixation (6), directement connectés au profil et supportant relativement le profil, puis être également reliée à la paroi du bâtiment. Des ancrages de fixation (6) peuvent comprendre un ou plusieurs pivots (8). Ils peuvent également être constitués de plusieurs éléments coulissants (9), permettant la séparation, et ainsi l'allongement des ancrages de fixation (6). L'utilisation de pivots (8), qui peuvent avoir la forme de charnières, est améliorée par la résistance des ancrages de fixation (6).
EP16787575.6A 2015-09-17 2016-09-16 Profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades Active EP3350400B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL16787575T PL3350400T3 (pl) 2015-09-17 2016-09-16 Profil systemu mocowania i izolacji termicznej okien, fasad i drzwi

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
PL414055A PL235307B1 (pl) 2015-09-17 2015-09-17 Profil systemu mocowania i izolacji termicznej okien, fasad i drzwi
PCT/PL2016/000104 WO2017048144A1 (fr) 2015-09-17 2016-09-16 Profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades

Publications (2)

Publication Number Publication Date
EP3350400A1 true EP3350400A1 (fr) 2018-07-25
EP3350400B1 EP3350400B1 (fr) 2021-05-26

Family

ID=57206340

Family Applications (1)

Application Number Title Priority Date Filing Date
EP16787575.6A Active EP3350400B1 (fr) 2015-09-17 2016-09-16 Profilé pour un système de fixation et d'isolation thermique de fenêtres, portes et façades

Country Status (4)

Country Link
EP (1) EP3350400B1 (fr)
CA (1) CA3014418A1 (fr)
PL (2) PL235307B1 (fr)
WO (1) WO2017048144A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109610990A (zh) * 2018-10-23 2019-04-12 智达信自动化设备有限公司 有紧急抗爆结构的门禁结构
NL2027712B1 (nl) * 2021-03-05 2022-09-23 Costa Profielen B V Stelkozijnsysteem

Family Cites Families (13)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
PL166986B1 (pl) 1992-06-19 1995-07-31 Przed Budowlane Z Udzialem Zag Sposób wykonania styków okna ze ścianą i termoizolacyjny element do stosowania tego sposobu
GB2295185B (en) * 1994-11-16 1999-04-21 Abbott Joinery Ltd Frame elements
GB2296734A (en) * 1994-12-23 1996-07-10 Premier Profiles Ltd Mounting closures in apertures in cavity walls
PL101801U1 (en) 1994-12-27 1996-07-08 Zaklady Elementow Wyposazenia Element for mounting aluminium frame windows with thermal barrier
GB2297991A (en) * 1995-02-14 1996-08-21 Marshall C & C Ltd Frame assembly
EP0945577B2 (fr) * 1998-03-23 2010-03-24 SFS intec Holding AG Utilisation d'une barre profilée pour soutenir des encadrements pour portes ou fenêtres
GB2403960B (en) * 2003-07-16 2005-07-27 Thermabate Ltd Apparatus for thermally insulating a window
DE102004038246B4 (de) * 2004-08-05 2011-08-18 Westermann, Josef, 49439 Vorrichtung zur Montage eines Fensterelementes o. dgl. Baugruppen
PL63688Y1 (pl) 2005-07-21 2008-04-30 Vts Hq Sp Z Oo Element k atowy obudowy termoizolacyjnej PL PL
GB2446218A (en) * 2007-02-01 2008-08-06 Polypipe Tdi Ltd Cavity closer
PL66594Y1 (pl) 2011-04-05 2013-06-28 Landsberg Tomasz Landsberg Profil stalowy wzmacniajacy okna i drzwi z wkladka termiczna
DE202012002491U1 (de) * 2012-03-13 2013-06-17 Tremco Illbruck Produktion Gmbh Mauerrandstreifen, Fensterumrandung und Wandaufbau mit Mauerrandstreifen
DE202013000683U1 (de) * 2013-01-23 2014-04-24 Bosig Gmbh Konsole zur Vorwandmontage eines Fensterrahmens

Also Published As

Publication number Publication date
WO2017048144A1 (fr) 2017-03-23
EP3350400B1 (fr) 2021-05-26
CA3014418A1 (fr) 2017-03-23
PL414055A1 (pl) 2017-03-27
PL235307B1 (pl) 2020-06-29
PL3350400T3 (pl) 2022-01-10

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