EP3140482B1 - Anpassbare fensterbank - Google Patents

Anpassbare fensterbank Download PDF

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Publication number
EP3140482B1
EP3140482B1 EP16725446.5A EP16725446A EP3140482B1 EP 3140482 B1 EP3140482 B1 EP 3140482B1 EP 16725446 A EP16725446 A EP 16725446A EP 3140482 B1 EP3140482 B1 EP 3140482B1
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EP
European Patent Office
Prior art keywords
window sill
substructure
cover plate
window
assembly
Prior art date
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Not-in-force
Application number
EP16725446.5A
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English (en)
French (fr)
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EP3140482A1 (de
Inventor
Jean-Pierre Mayeres
Ernst Genten
Julien DEMONTY
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NMC SA
Original Assignee
NMC SA
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Publication of EP3140482A1 publication Critical patent/EP3140482A1/de
Application granted granted Critical
Publication of EP3140482B1 publication Critical patent/EP3140482B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E06B1/702Window sills
    • 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
    • E06B2001/707Thresholds with special provision for insulation

Definitions

  • the invention relates to an adjustable window sill assembly comprising an window sill substructure and a window sill cover plate.
  • the invention further relates to the use of said assembly for preparing a door step or parts thereof.
  • the prior art includes a variety of sill assemblies which have been designed to be installed as window sills.
  • adjustable multi-part window sills has been developed that can be adjusted at the time of fitting to the respective window reveal.
  • the adjustable window sills of prior art mostly have an elongated unitary body with an adjustable covering cap.
  • the EP 1 788 182 B1 teaches a window reveal part made from two parts that can be adjusted to form the basic structure of a window sill including inner window sill, window support frame and outer window sill.
  • This window reveal part has to be complemented with several further elements in order to obtain the final window sill.
  • only the inner window can be adjusted in its depth, and thereby the depth of the outer window sill is restricted to a predefined dimension.
  • the French patent FR 1 574 678 discloses an outer window sill made from two elements, whereby the two elements are lying one on another likes roof tiles. This window sill can be adjusted only in a limited way to the different depths of the window reveal. Furthermore, the window sill of said patent has poor insulation properties.
  • the German utility design DE 20 2011 100 460 U1 relates to a window sill substructure with one segment made from isolating hard foam which should be used in combination with a conventional non-isolating window sill cover.
  • the DE 20 2011 100460 U1 thereby discloses all the features of the preamble of claim 1.
  • the UK patent application GB 2500924 A relates to a sill insulation system and discloses a window sill cover plate (200, Fig.3 ) consisting of a body of expanded polystyrol (EPS; 203) and a resin coating (205). This cover plate is placed on an existing window sill made of concrete (ES, Fig. 4).
  • the objective of the present invention thus is to provide an adjustable window sill which overcomes at least one of the above mentioned disadvantages.
  • the invention provides an adjustable window sill substructure comprising a wedge shaped first portion associated with the window reveal and a cuboid second support portion for the window frame, wherein the first portion and the second portion have a common basis, and wherein the adjustable window sill structure is an insulating structure comprising at least one segment made from rigid insulation material and at least one segment made from water resistant hard construction material.
  • the window sill substructure of the invention has several advantages over the prior art equivalents.
  • the window sill substructure of the invention can be adjusted in three ways: At first the substructure can be cut lengthwise at the wedge shaped portion in order to adapt it to different depth of the window reveal. Secondly, the substructure can be cut laterally in order to adapt it to the different length of the respective window sill. Thirdly, also the cuboid second support portion can be cut at its back side in order to be adapted to a window sill use or even a door step use. As such it has an enormous flexibility of application.
  • the overall weight of the window sill substructure is considerably reduced, so that it can be easily transported and installed.
  • the window sill substructure Due to the segment made from rigid insulation material the window sill substructure has good insulation property.
  • the skilled person can refer to a broad spectrum of foamed insulation materials, which can be selected on the specific requirements on site.
  • the adjustability for the window reveal depth is given by the wedge shaped first portion which can be cut lengthwise in order to accommodate for the required dimensions of the window sill. Hence, the prefabricated window sill substructures can be easily adjusted on the site of construction.
  • the window sill substructure is based on known building materials, it can be easily produced in a cost efficient manner.
  • the at least one segment which is made from rigid insulation material and the at least one segment which is made from water resistant hard construction material are connected by a permanent and form-locking connection.
  • rigid insulation material is defined in the context of the invention as a single-piece solid insulation material. Thus it is clearly distinct from loose-fill insulation materials such as perlite or cellulose and from the single-piece but highly compressive insulation materials such as the rock or slag wool.
  • the window sill substructure consists of one segment which is made from rigid insulation material and of one segment which is made from water resistant hard construction material.
  • this permanent and form-locking connection is performed by using a bonding agent such as an adhesive.
  • a bonding agent such as an adhesive
  • the optimal bonding agent is selected based on the distinct building materials of the two segments. For example, when using polystyrol in combination with concrete, a poly vinyl acetate glue might be used.
  • connection between the rigid insulation material and the hard construction material is given without any further bonding agent but using the adhesive properties of the rigid insulation material and/or the hard construction material.
  • connection is performed directly by the production process of the substructure.
  • the flowable concrete as hard construction material can be poured onto the porous insulation material and will also penetrate into the porous insulation material.
  • the concrete and the porous insulation material being preferably extruded or expanded polystyrol (XPS or EPS) will exhibit a firm connection.
  • the adjustable window sill substructure is characterized in that at least the common basis of the first and the second portion and the backside of the second portion are made of a rigid insulation material, and furthermore at least the front side of the second portion is made of a water resistant hard construction material. Due to the fact that the common basis of the first and second portion is made from rigid insulation material, this insulating segment constitutes a continuous insulation strip that insulates the interior of the house from the exterior eliminating any thermal bridge effect.
  • the cuboid second support portion for the window frame is build by the insulating foam (located at the back side of the substructure) and the hard construction material (located at the front side of the cuboid support function)
  • the upper surface of the wedge shaped first portion and its base form an angle of between 2.8° and 9°, preferably of between 3° and 7° and most preferably of 5.7°. Due to this angle, the water properly drains off the overlying cover plate to protect the window sill.
  • the adjustable window sill substructure has one or more lengthwise grooves within the common basis of the first and second portion.
  • These grooves can fulfill two functions: At first they can retain any bonding agent which is used for joining the substructure to the underground, being preferably the bottom side of the window reveal. Secondly, the grooves can serve as orientation (or even as a predetermined breaking point) when cutting the substructure to the desired depth.
  • the water resistant hard construction material covers the front side and possesses in its upper part a protruding nose or extension, which preferably is located in the upper front edge.
  • Said nose or extension towers above the window sill cover plate and thereby prevents water penetrating between the cover plate and the substructure. Furthermore, it protects the window frame against water on the cover plate being blown by the wind towards the window.
  • the first portion and the second portion of the adjustable window sill substructure are made of a rigid insulation material with only a C-shaped structure of the water resistant hard construction material covering the front side and the anterior upper side of the first portion and the interconnecting corner of the first and the second portion.
  • This specific embodiment is useful for a combination with a window sill cover plate lying on the substructure and which is then reaching up to said C-shaped structure.
  • the upper part of the C-shaped structure is given by the above described nose or extension towering over the cover plate.
  • said C-shaped structure as made from the hard construction material comprises a feet-like enlargement. This increases the stability of the overall construction, since the load of the window, which sits on top of said C-shaped structure is shared on a bigger surface.
  • the C-shaped structure comprises a backside which at least in its lower part is inclined rearwards. This reduces the formation of entrapped air when casting the C-shaped structure with a flowable construction material such as concrete.
  • the C-shaped structure comprises both, the feet-like enlargement and the backside being inclined rearwards.
  • the hard construction material is confined to only those parts of the substructure that are oriented outwardly. Thereby the insulation properties are maximized, and the more costly hard construction material minimized with out loosing durability and weather-resistance.
  • the window sill substructure can be combined with various window sill cover plates of the prior art.
  • This plate can be made from e.g. plastics, wood, stone or concrete.
  • a multilayer cover plate could be used, which is preferably a cover plate with a water resistant hard layer as upper layer and an insulation layer as lower layer.
  • window sill substructure is combined with the window sill cover plate of the invention as described in the following.
  • the invention provides an adjustable window sill cover plate comprising a plate shaped portion and an angular portion, wherein the adjustable window sill structure is an insulating structure comprising at least one segment made from rigid insulation material and at least one segment made from water resistant hard construction material.
  • window sill cover plate of the invention can be adjusted in two ways: At first the cover plate can be cut lengthwise in order to adapt it to different depth of the window reveal. Furthermore, the cover plate can be cut in cross to adapt it to the different length of the respective window sill. As such it has an enormous flexibility of application.
  • the overall weight of the window sill cover plate is considerably reduced, so that it can be easily transported and installed.
  • the insulating cover plate is configured as an adjustable cover plate. Due to a lengthwise cut, it can be adjusted to the required depth of the outer window sill.
  • the window sill cover plate consists of one segment which is made from rigid insulation material and of one segment which is made from water resistant hard construction material.
  • the at least one segment made from rigid insulation material and the at least one segment made from water resistant hard construction material are preferably connected by a permanent and form-locking connection.
  • this permanent and form-locking connection is performed by using a bonding agent such as an adhesive.
  • a bonding agent such as an adhesive
  • the optimal bonding agent is selected based on the distinct building materials of the two segments. For example, when using polystyrol foam in combination with concrete, a poly vinyl acetate glue might be used.
  • connection can also be performed without any adhesive agent.
  • connection can also be performed without any adhesive agent.
  • the respective embodiments as taught for the window sill substructure also apply here.
  • the adjustable window sill cover plate is configured in a way that the at least the bottom side of the plate shaped portion is made of a rigid insulation material, and the at least the upper side of the plate shaped portion and the front side of the angular portion are made of a water resistant hard construction material.
  • the window sill combines durability and weather-resistance based on the construction of the outer surface and insulating properties based on the foamed bottom segment.
  • the angular portion of the window sill which is made from water resistant hard construction material has a rear cavity also filled with the rigid insulation material. This has the advantage of further reducing the weight of the cover plate without loosing the required firmness of the cover plate.
  • the rear cavity is filled in one or more segments with the hard construction material giving rise to a massive angular portion, with the remaining cavity being filled with the rigid insulation material.
  • the hard construction material such as concrete.
  • the adjustable window sill cover plate has one or more lengthwise grooves within the bottom side of the plate shaped portion.
  • These grooves can fulfill two functions: At first they can retain any bonding agent which is used for joining the cover plate to the underground or an substructure, being preferably the window sill substructure of the invention. Secondly, the grooves can serve as orientation (or even as a predetermined breaking point) when cutting the cover plate to the desired depth.
  • the grooves are rectangular or trapezoid.
  • the grooves preferably have a depth of between 3 and 10 mm and a width of between 5 and 20 mm, and more preferably a depth of 5 mm and a width of 12 mm. Grooves of these dimensions are particularly suited for retaining the bonding agent and for an easy positioning during the installation.
  • the bottom side of the angular portion of the cover plate comprises a drip nozzle, preferably formed by a lengthwise groove in the bottom side. This drip nozzle prevents the water which is draining off the window sill cover plate from running down the facade.
  • the adjustable window sill cover plate has a drip nozzle with a distance between the drip nozzle and the back side of the angular portion being at least 30 mm, and a depth of the drip nozzle being at least 15 mm. These minimum distances ensure the proper function of the drip nozzle.
  • the cover plate further comprises on or two coverings on one or both lateral sides, respectively. These coverings can cover one or both lateral sides of the underlying substructure and thereby provides an improved protection of the substructure.
  • the rigid insulation material as used therefore is selected from the group consisting of expanded or extruded polystyrol hard foam (EPS or XPS), polyurethane foam, polymethacrylimide (PMI) foam, polyethylene foam, polyethylene terephthalate (PET) foam, polyisocyanurate, (PIC) foam, urea-formaldehyde foam, fiber glass and foam glass.
  • EPS or XPS expanded or extruded polystyrol hard foam
  • PMI polymethacrylimide
  • PET polyethylene terephthalate
  • PIC polyisocyanurate
  • urea-formaldehyde foam fiber glass and foam glass.
  • the rigid insulation material of the substructure and/or the cover plate should have a compression strength measured according the standard ASTM D 1621 of at least 150 kPa, preferably at least 200 kPa and more preferably at least 300 kPa.
  • the EPS insulation material should have a density of more than 24 kg/m 3 , preferably of more than 30 kg/m 3 and more preferably of more than 40 kg/m 3 .
  • water resistant hard construction material as used for both structures of the invention is selected from the group consisting of nature stone, brick, concrete, terrazzo, wood and metal.
  • the window sill substructure and the window sill cover plate consists of EPS or XPS as rigid insulation material and of concrete as hard construction material.
  • the invention provides an adjustable window sill assembly which comprises the window sill substructure according to the invention and the window sill cover plate according to the invention.
  • the angle between the plate shaped portion and the bottom site of the angular part of the window sill cover plate is equal to the angle formed by the wedge shaped portion of the window sill substructure and its base.
  • the angular part is oriented perpendicular to the window sill base with proper arrangement of the drip nozzle.
  • the window sill substructure and the window sill cover plate when forming the window sill assembly, lie on one another in a displaceable manner.
  • the components can be easily readjusted or substituted.
  • the displacement capability of the substructure and the cover plate is preferably continuously, which means that these two parts can be arranged in any position in the width direction of extension to one another so that the window sill assembly can be adjusted optimally.
  • the substructure and the cover plate can be arranged, for example, only in a certain number of predefined positions to each other. This can be done by means of a locking of the two parts to one another. Thereby, a predefined arrangement is given wherein the two parts are preferably aligned parallel to one another. It is also possible to use a kind of toothed surfaces for the locking of the two parts.
  • a plurality of predefined positions of the parts to one another is possible.
  • the teeth are preferably situated in a region of overlap of the substructure and the cover plate.
  • the window sill substructure and the window sill cover plate are installed and lie on one another in a way, that the outside surfaces of the window sill assembly consists of the water resistant hard construction material.
  • the sill assembly is construed by the window sill substructure and the window sill cover plate which are adjusted to a length to accommodate the depth of the window reveal.
  • the adjustable sill assembly is composed of the window sill substructure and the window sill cover plate being adjusted to a length so that the wedge shaped portion of the window sill substructure and the plate shaped portion of the window sill cover plate have the same length.
  • the final window sill assembly is step-resistant. As such it complies with the regulation on fire protection.
  • the preferable length of the window sill substructure and the complementary cover plate is 1.5 m. These parts can then cut in cross in order to comply with the dimensions of the window reveal. A substructure with said length has a weight of less than 30 kg and can be therefore easily transported and mounted.
  • the substructure exhibits at the upper front side of its cuboid portion a nose or extension which helps to protect the window frame from water.
  • this nose has an inclined side.
  • the distance between the upper side of said nose or extension and the surface of the underlying cover plate should be at least 15 mm. This distance together with the inclined face allows the easily filling of the gap between substructure and cover plate with a sealing agent, as normally injected via a cartridge gun.
  • the adjustable sill assembly is an assembly for an outer window sill.
  • the invention pertains to the use of the window sill substructure according to the invention as a door step substructure and/or the window sill cover according of the invention as a door step cover, and/or the use of the window sill assembly of the invention as a door step assembly.
  • the wedge shaped first portion of the substructure When used for preparing the door step the wedge shaped first portion of the substructure is associated with the door reveal and the cuboid second support portion of the substructure supports the door frame.
  • the window sill assembly further comprises one or two elements covering one or both of the lateral surfaces of the window sill assembly. This is recommended for the cases where the insulating segments of the window sill assembly are not completely covered by the window reveal.
  • These element(s) could be made of any construction material such as e.g. wood, plastics, metal, stone or concrete.
  • window sill substructure and/or the window sill cover are produced by a casting process. This enables the cost-efficient production of these parts as "yard goods" which can be cut into the desired length.
  • the Figure 1 shows a window sill substructure according to the invention 10 comprising an wedge shaped first portion 20 and an cuboid second support portion 30. These portions are made from a rigid insulation material 40 whereby only a C-shaped structure at the front side of the cuboid portion is made from a hard construction material 50.
  • the first and the second portion possess a common base for putting the substructure on the ground surface of the window reveal.
  • the common base comprises several lengthwise grooves which retain the adhesive during installation and furthermore function as a mark that facilitates the precise cutting of the substructure.
  • the angle of the wedge shaped portion dictates the final angle of the window sill, being preferably 2.8° or 5.7°.
  • the C-shaped structure exhibits a nose or extension 80 protecting the assembly and the window frame from water.
  • the window frame will sit on the upper part of the cuboid portion with partially or completely sitting on the C-shaped portion.
  • said C-shaped portion can accommodate the load.
  • the C-shaped portion possesses an enlarged feet 60.
  • Fig. 2 shows a window sill cover plate 100 according to the invention comprising a plate shaped portion 110 and an angular portion 120.
  • the upper layer of the cover plate and the outermost part of the angular portion are made from the hard construction material 50, being preferably concrete.
  • the lower layer of the plate shaped portion and the cavity of the angular portion are made from the rigid insulation material 40.
  • the angle between the plate shaped portion and the base of the angular portion equals the angle of the wedge shaped portion of the window sill substructure.
  • the angular portion has a horizontal lower end with optimal positioning of the drip nozzle 140.
  • the drip nozzle is formed by a lengthwise groove in the bottom side of the angular portion.
  • the bottom side of the plate shaped portion comprise several regularly arranged lengthwise grooves 90 exhibiting the same functions as described for the grooves of the substructure (see description of Fig. 1 above).
  • the grooves of the substructure and the grooves of the cover plate possess the same intervals so that they function as marks that allow an identical shortening of these two parts.
  • Fig. 3 shows a window sill assembly 150 according the invention consisting of the window sill substructure 10 and the window sill cover plate 100.
  • the cover plate lies on the substructure whereby the front end of the wedge shaped portion of the substructure reaches up to the angular portion of the cover plate and the plate shaped portion of the cover plate reaches up to the C-shaped structure of the substructure.
  • the window sill assembly possesses optimal insulation properties and maximal solidity.
  • the angular portion 120 is configured to yield an overhang thereby further protecting the window reveal and the inside of the window sill assembly from weather influences.

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  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Claims (17)

  1. Verstellbare Fensterbankanordnung (150) aus einer Fensterbankunterkonstruktion (10) und einer Fensterbankabdeckplatte (100) bestehend, wobei die Fensterbankunterkonstruktion (10) einen mit der Fensterlaibung verbundenen keilförmigen ersten Abschnitt (20) und einen quaderförmigen zweiten Stützabschnitt (30) für den Fensterrahmen umfasst, worin der erste Abschnitt und der zweite Abschnitt eine gemeinsame Basis haben und worin die verstellbare Fensterbankkonstruktion eine isolierende Struktur ist, die mindestens ein Segment aus starrem Isolationsmaterial (40) und mindestens ein Segment aus wasserfestem harten Baumaterial (50) umfasst,
    dadurch gekennzeichnet, dass
    die Fensterbankabdeckplatte (100) einen plattenförmigen Abschnitt (110) und einen Winkelabschnitt (120) umfasst, worin die verstellbare Fensterbankkonstruktion eine isolierende Struktur ist, die mindestens ein Segment aus starrem Isolationsmaterial (40) und mindestens ein Segment aus wasserfestem harten Baumaterial (50) umfasst.
  2. Verstellbare Fensterbankanordnung (150) nach Anspruch 1, dadurch gekennzeichnet, dass bei der Fensterbankunterkonstruktion (10) das mindestens eine Segment aus starrem Isolationsmaterial (40) und das mindestens eine Segment aus wasserfestem harten Baumaterial (50) durch eine dauerhafte und formschlüssige Verbindung verbunden sind.
  3. Verstellbare Fensterbankanordnung (150) nach Anspruch 1 oder 2, dadurch gekennzeichnet, dass bei der Fensterbankunterkonstruktion (10) mindestens die gemeinsame Basis des ersten und des zweiten Abschnitts und die Rückseite des zweiten Abschnitts aus einem starren Isolationsmaterial (40) gebildet sind und worin mindestens die Vorderseite des zweiten Abschnitts aus einem wasserfesten harten Baumaterial (50) gebildet ist.
  4. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüchen, dadurch gekennzeichnet, dass bei der Fensterbankunterkonstruktion (10) die gemeinsame Basis des ersten und zweiten Abschnitts eine oder mehrere Längsnuten (90) aufweist.
  5. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankunterkonstruktion (10) der erste Abschnitt und der zweite Abschnitt aus einem starren Isolationsmaterial (40) mit nur einer C-förmigen Struktur aus dem wasserfesten harten Baumaterial (50) gebildet sind, das die Vorderseite und die vordere Oberseite des ersten Abschnitts und die Verbindungsecke des ersten und des zweiten Abschnitts bedeckt.
  6. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, wobei die Fensterbankabdeckplatte (100) einen plattenförmigen Abschnitt (110) und einen Winkelabschnitt (120) umfasst, worin die verstellbare Fensterbankkonstruktion eine isolierende Struktur ist, die mindestens ein Segment aus starrem Isolationsmaterial (40) und mindestens ein Segment aus wasserfestem harten Baumaterial (50) umfasst.
  7. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankabdeckplatte (100) das mindestens eine Segment aus starrem Isolationsmaterial (40) und das mindestens eine Segment aus wasserfestem harten Baumaterial (50) durch eine dauerhafte und formschlüssige Verbindung verbunden sind.
  8. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankabdeckplatte (100) mindestens die Unterseite des plattenförmigen Abschnitts (110) aus einem starren Isolationsmaterial (40) gebildet ist und mindestens die Oberseite des plattenförmigen Abschnitts (110) und die Vorderseite des Winkelabschnitts (120) aus einem wasserfesten harten Baumaterial (50) gebildet sind.
  9. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankabdeckplatte (100) der Winkelabschnitt (120) aus wasserfestem harten Baumaterial (50) einen hinteren Hohlraum (130) aufweist, der ebenfalls mit starrem Isolationsmaterial (40) gefüllt ist.
  10. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankabdeckplatte (100) die Unterseite des plattenförmigen Abschnitts (110) eine oder mehrere Längsnuten (90) aufweist.
  11. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass bei der Fensterbankabdeckplatte (100) die Unterseite des Winkelabschnitts (120) eine Tropfdüse (140), die vorzugsweise durch eine Längsnut in der Unterseite gebildet ist, umfasst.
  12. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das starre Isolationsmaterial ausgewählt ist aus der Gruppe bestehend aus expandiertem oder extrudiertem Polystyrol-Hartschaum (EPS oder XPS), Polyurethanschaum, Polymethacrylimid(PMI)-Schaum, Polyethylenschaum, Polyethylenterephthalat(PET)-Schaum, Polyisocyanurat(PIC)-Schaum, Harnstoff-Formaldehyd-Schaum, Glasfaser, Mineralwolle und Schaumglas.
  13. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass das wasserfeste harte Baumaterial ausgewählt ist aus der Gruppe bestehend aus Naturstein, Ziegel, Beton, Terrazzo, Holz und Metall.
  14. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass der Winkel zwischen dem plattenförmigen Abschnitt (110) und der Unterseite des Winkelabschnitts (120) der Fensterbankabdeckplatte (100) gleich dem durch den keilförmigen Abschnitt (20) der Fensterbankunterkonstruktion (10) und ihrer Basis gebildeten Winkel ist.
  15. Verstellbare Fensterbankanordnung (150) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass die Fensterbankunterkonstruktion (10) und die Fensterbankabdeckplatte (100) auf eine Länge derart eingestellt sind, dass der keilförmige Abschnitt (20) der Fensterbankunterkonstruktion (10) und der plattenförmige Abschnitt (110) der Fensterbankabdeckplatte (100) die gleiche Länge haben.
  16. Bausatz zum Aufbau einer äußeren Fensterbank bestehend aus mindestens einer Fensterbankunterkonstruktion (10) nach einem der vorhergehenden Ansprüche, dadurch gekennzeichnet, dass er des Weiteren umfasst:
    (a) mindestens eine Fensterbankabdeckplatte (100) nach einem der vorhergehenden Ansprüche;
    (b) optional ein Klebemittel zur Verbindung der Fensterbankunterkonstruktion (10) und der Fensterbankabdeckplatte (100).
  17. Verwendung der Fensterbankanordnung (150) nach irgendeinem der Ansprüche 1 bis 15 als Türschwellenanordnung, dadurch gekennzeichnet, dass bei der Unterkonstruktion (10) der keilförmige erste Abschnitt (20) mit der Türlaibung verbunden ist und einen quaderförmigen zweiten Stützabschnitt für den Türrahmen aufweist.
EP16725446.5A 2015-05-18 2016-05-18 Anpassbare fensterbank Not-in-force EP3140482B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
EP15167977.6A EP3095945B1 (de) 2015-05-18 2015-05-18 Anpassbare fensterbank
PCT/EP2016/061120 WO2016184901A1 (en) 2015-05-18 2016-05-18 Adjustable window sill

Publications (2)

Publication Number Publication Date
EP3140482A1 EP3140482A1 (de) 2017-03-15
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EP16725446.5A Not-in-force EP3140482B1 (de) 2015-05-18 2016-05-18 Anpassbare fensterbank

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FR3077837B1 (fr) * 2018-02-15 2020-02-21 Robert Thebault Appui pour chassis dormant, notamment de fenetre ou de porte
EP3647524A1 (de) * 2018-10-29 2020-05-06 Ge & Co Ag Fensterbank oder türschwelle sowie system mit einer fensterbank
US11174673B2 (en) 2019-05-24 2021-11-16 Nana Wall Systems, Inc. Threshold sill with removable barrier insert
IT202100025823A1 (it) * 2021-10-08 2023-04-08 Consulting Hub S R L Elemento di coibentazione di davanzali
IT202200005327A1 (it) * 2022-03-18 2023-09-18 Paolo Ugolini "Copri davanzali, architravi, soglie o altri elementi, per costruzioni civili o industriali, realizzati in prodotti lapidei, quarziti o altri materiali e coibentati con materiale isolante di varia natura e genere"

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FR1574678A (de) 1967-11-13 1969-07-18
DE102006052288A1 (de) 2005-11-17 2007-05-24 Tremco Illbruck Produktion Gmbh Fensterlaibungsteil, insbesondere Fensterbankteil
DE202011100460U1 (de) * 2011-05-10 2012-08-13 Tremco Illbruck Produktion Gmbh Wandaufbau mit Fensterbankformteil
GB2500924A (en) * 2012-04-05 2013-10-09 Eco Oversill Ltd A sill insulation member

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EP3095945B1 (de) 2018-07-11
EP3140482A1 (de) 2017-03-15
EP3095945A1 (de) 2016-11-23
WO2016184901A1 (en) 2016-11-24

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