EP3176357A1 - Élément de logement pour un dispositif d'ombrage et procédé de fixation d'un tel élément sur la surface extérieure d'un bâtiment - Google Patents
Élément de logement pour un dispositif d'ombrage et procédé de fixation d'un tel élément sur la surface extérieure d'un bâtiment Download PDFInfo
- Publication number
- EP3176357A1 EP3176357A1 EP16199639.2A EP16199639A EP3176357A1 EP 3176357 A1 EP3176357 A1 EP 3176357A1 EP 16199639 A EP16199639 A EP 16199639A EP 3176357 A1 EP3176357 A1 EP 3176357A1
- Authority
- EP
- European Patent Office
- Prior art keywords
- wall
- receiving element
- leg
- building
- receiving space
- 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
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B9/00—Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
- E06B9/24—Screens or other constructions affording protection against light, especially against sunshine; Similar screens for privacy or appearance; Slat blinds
- E06B9/26—Lamellar or like blinds, e.g. venetian blinds
- E06B9/28—Lamellar or like blinds, e.g. venetian blinds with horizontal lamellae, e.g. non-liftable
- E06B9/30—Lamellar or like blinds, e.g. venetian blinds with horizontal lamellae, e.g. non-liftable liftable
- E06B9/32—Operating, guiding, or securing devices therefor
- E06B9/323—Structure or support of upper box
-
- E—FIXED CONSTRUCTIONS
- E06—DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
- E06B—FIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
- E06B9/00—Screening or protective devices for wall or similar openings, with or without operating or securing mechanisms; Closures of similar construction
- E06B9/02—Shutters, movable grilles, or other safety closing devices, e.g. against burglary
- E06B9/08—Roll-type closures
- E06B9/11—Roller shutters
- E06B9/17—Parts or details of roller shutters, e.g. suspension devices, shutter boxes, wicket doors, ventilation openings
- E06B9/17007—Shutter boxes; Details or component parts thereof
Definitions
- the invention relates to a receiving element for a shading device, in particular for a sunscreen, which receiving element is designed as a molded body that it can be integrated into an attachable to the outside of a building insulation layer, wherein the molded body in its mounting position extending in the horizontal direction base part and an outer wall connected in an L-shape and projecting downwards from the base part such that the base part and the outer wall bound a downwardly open receiving space extending along the base part, which is able to accommodate at least a part of the shading device, the base part an insulating body and has a built-in stiffening, which extends in such a manner at the upper edge of the receiving space in the longitudinal direction of the Aufhahmeraums that the shading device can be fastened to the stiffener, wherein the stiffening a has embedded in the insulating body first leg and a recessed into the insulating body second leg, which are arranged parallel to each other and are connected to each other at its lower end by an adjacent to the receiving space crosspiece U-shaped
- Such a receiving element for a blind is off EP 2 149 666 A2 and DE 20 2014 008 384 U1 known. It has two mutually parallel insulation boards, between which an insulating body is arranged with a rectangular cross section, which connects the insulation boards U-shaped together. Between the insulation boards below the insulation body a downwardly open receiving space is formed for at least a portion of the blind.
- Dämmstoff esp a designed as a U-profile stiffener is integrated on the underside, which runs in the horizontal direction parallel to the insulation boards.
- the U-profile has two equal length, arranged parallel to the insulation panels leg parts, which are interconnected by a U-cross bar.
- the Leg parts engage such in the bottom of the insulating body recessed slots that the bottom of the U-crossbar flush with the underside of the insulating body.
- the blind is fixed by means of building screws.
- the end DE 20 2014 008 384 U1 known receiving element also has a fall protection, which has a steel cable through which the stiffener is connected to an anchoring part which is anchored in a concrete pavement. The fall protection should prevent a crash of the base part in case of fire.
- receiving elements for a Venetian blind which have a molded body made of insulating material, which has an approximately cuboidal, extending in the horizontal direction base part and an outer and an inner wall.
- the outer wall is arranged parallel to the inner wall and is connected by the base part approximately U-shaped with the inner wall.
- a receiving space for the blind is formed, which is bounded at the top by the base part and has on its underside a slot-shaped opening for the passage of the slats of the blind.
- the receiving space is dimensioned so that the drive unit and all slats of the blind can be accommodated in the receiving space when the blind is in a contracted state.
- stiffeners are provided in the base part above the Aufhahmeraums, of which a first stiffening bounded the upper edge of the Aufhahmeraums and a second stiffening above the first stiffener is arranged and spaced from this vertically.
- the stiffeners are configured as flat or web-shaped metal plates, which are arranged in mutually parallel horizontal planes.
- the blind is attached to the first stiffener and this is suspended on a plurality of, in the longitudinal direction of the receiving space spaced vertical stiffening bolt on the second stiffener.
- the second stiffener is connected to a plurality of mounting brackets, which are arranged offset in the longitudinal direction of the Aufhahmeraums relative to the stiffening bolts and are dowelled to an outer wall of a building. Thickness of the receiving element corresponds to the thickness of conventional ETICS insulation boards, so that the receiving element can be integrated flush into a ETICS layer.
- the receiving element makes it possible, despite the relatively low strength of the insulation layer and wide and heavier shading completely in a WDVS insulation layer to integrate and still anchor it crash-proof on the building.
- the disadvantage here however, that the mounting of the receiving element on the outside of a building is relatively laborious and time-consuming, especially because several mounting angles must be dowelled both at the building as well as screwed to the second bracing. Unfavorable is also that the production of the receiving element is laborious and expensive.
- U1 known receiving element two stiffeners are provided on the underside of the base part, which are formed by stacked metal plates.
- the upper metal plate is integrally connected to a first cladding panel, which covers the receiving space the inner surface of the outer wall over the entire surface.
- the first cladding plate has a U-shaped bend, which is hooked to the lower edge region of the outer wall.
- the upper metal plate is extended by means of a 90 ° upwardly angled connecting portion to the top of the receiving element and there hooked by means of a Verhakungsablves with an insulating material layer of the inner wall.
- the lower metal plate is integrally connected to a second cladding panel, which covers the receiving space of the inner surface facing the inner wall over the entire surface. At its lower edge, the second cladding plate hooked to the lower edge of the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für the Dämmmaterial für .
- the receiving element Since the entire receiving space is lined with metal, although the receiving element allows a rigid construction.
- the extended to the building side insulation layer metal lining allows a stable support of the weight of the shading device on the Dämmmaterial für, but has the disadvantage that the Metalaushleidung forms heat bridges to the building, which bridge the vacuum insulation panel.
- the anchoring of the insulating material layer on the building is difficult because in the area of the vacuum insulation panel no dowels may be introduced into the insulating material layer.
- the receiving element allows easy and secure mounting on the outside of a building wall.
- the receiving element is first positioned on a designated mounting surface of the building wall with adhesive mortar, adhesive foam or the like, then introduce above the second leg through the receiving element through a horizontal bore in the mounting surface or the building wall, that the bore the protrusion region of the first Leg preferably interspersed with distance to the edges.
- an ETICS anchor or the like anchoring element is introduced into the bore to anchor the receiving element and the stiffener integrated therein to the building.
- at least one other ETICS anchor can be introduced through the supernatant area into the building in a corresponding manner with a lateral distance from the ETICS anchor, for example at a distance of 30 centimeters.
- the receiving element can therefore be fixed to the building like a commercial thermal insulation board.
- the shading device can be attached to the stiffener crash-proof in the receiving space.
- the first leg and / or the second leg are preferably glued to the insulating body of the base part. This allows a mechanically stable, flat connection between the stiffener and the insulating body. Since only the first leg is pierced during assembly of the receiving element on the building, the adhesive bond of the second leg is not weakened by the drilling process.
- the receiving element can be introduced into the insulating body of the base part at the locations where the two legs of the stiffener to be, and then the legs can be inserted into the grooves and glued to the insulation.
- the legs arranged on both sides of the U-crosspiece serving as a mounting surface for the shading device enable a firm anchoring of the stiffening in the insulating body.
- the two arranged on both sides of the crosspiece legs are preferably integrally connected to the U-crosspiece. The stiffener can then be produced inexpensively as a bending stamped part.
- the ETICS anchor preferably has a core of a flame-retardant and preferably non-combustible material, in particular a metal core, which passes through the protrusion region of the first leg and extends into the section of the bore located in the building.
- a shading device fastened to the stiffening such as, for example, is provided.
- a blind, a Venetian blind, an awning or a roller shutter crash-proof connected to the building.
- the stiffener is preferably made of a flame-retardant and preferably non-flammable material, in particular of metal and preferably of aluminum.
- the stiffener may also consist of a composite material.
- the insulating body may comprise a rigid foam, in particular polyurethane foam, phenolic rigid foam and / or extruded polystyrene rigid foam.
- the insulating body may also have a mineral material, such as rock wool or glass wool.
- the insulating material may contain an airgel, wood fibers and / or a vacuum. Combinations are possible.
- the supernatant region of the first leg projects beyond the second leg by at least 1 cm, in particular by at least 1.5 cm, optionally by at least 2 cm and preferably by at least 2.5 cm. This allows compact dimensions of the stiffener. Nevertheless, the receiving element can be safely mounted on the building.
- first leg of the stiffener is further spaced from the outer wall of the receiving element than the second leg.
- the first leg is then arranged closer to the building than the second leg after assembly of the receiving element on the outside of the building, so that over the first leg acting on the ETICS dowel weight force of the shading only a correspondingly low bending moment exerts on the EIFS dowel ,
- the first leg has a perforation at least in its projection region and / or has local material weakenings which are distributed over the surface in which the projection region extends.
- the protrusion area can be easily pierced with a stone or concrete drill, without the risk that the drill slips sideways on the supernatant. It is even possible to use a percussion drill or hammer drill, with which the supernatant can be penetrated at the perforation or the material weakenings, without the risk that the adhesive bond between the first leg and the insulating body is weakened so that the first leg detaches from the insulating body.
- the perforation can have perforation holes, which have a larger dimension in the plane defined by the first leg surface in the longitudinal direction of the receiving space than in the vertical direction. This results in the supernatant region in the vertical direction, a greater thermal resistance.
- stiffening in a transverse to its longitudinal plane spanned vertical plane has a smaller horizontal width than the receiving space and is spaced from the outer wall. This allows a material-saving and thus cost-effective design of the stiffener.
- the shaped body has a parallel to the outer wall arranged, from the base part downwardly projecting, preferably spaced from the stiffener inner wall, wherein the receiving space between the outer wall and the inner wall is arranged.
- a receiving element can in particular be attached to a mounting surface, which is arranged on the outside of a building exterior wall and / or on an outer end face of a building ceiling, wherein the mounting surface is thermally insulated by the inner wall of the receiving element.
- the material of the inner wall can have a higher thermal insulation than the insulating material of the thicker compared to the inner wall base part.
- the outer and the inner wall can protrude the same or different far down from the base part.
- the outer wall may extend further down than the inner wall. This configuration can be used, for example, in a building in which the building wall at the lower end of the inner wall of the receiving element has a shoulder or projection.
- the insulating body is preferably arranged between the inner wall and the outer wall such that the inner wall and the outer wall cover the Dämmstoff emotions. This allows a flat connection between the inner wall or outer wall and the insulating body of the base part and thus a mechanically stable construction of the receiving element.
- the inner wall and the outer wall are preferably glued to the base part.
- the outer wall projects beyond the upper end of the base part facing away from the receiving space.
- the supernatant of the outer wall can then partially cover a arranged above the receiving element receiving element insulation element in the housing mounted on the receiving element, which allows an even better anchoring of the receiving element in a thermal insulation material ETICS layer.
- the above the Receiving element located insulation board can then have in the region of the supernatant of the outer wall on its front a matching to the supernatant notch. As a result, a flat separation surface is avoided between the receiving element and the insulation board row located above it, could occur at the wider receiving elements cracks.
- the notch can be introduced at an insulation board made of rigid foam or Styrofoam using a hot wire on the site in the insulation board.
- the height by which the outer wall projects beyond the base part preferably corresponds approximately to half the height of the insulating material plate (s) located above the receiving element, for example 30 cm.
- the inner wall of the receiving element and / or the outer wall of the receiving element is formed by a sandwich plate having a foam core, at least on its surface facing away from the receiving space, on its the receiving space facing surface, and at its in the mounting position to bottom-facing surface with a preferably a glass fiber fleece having, mineral plaster base layer are coated, which is glued over an intumescent adhesive layer over its entire surface with the foam core. While retaining its geometric shape, such a receiving element can withstand a fire for a prolonged period without the foam core enveloped by the glass fiber fleece dripping off.
- a Putzan gleichprofil is arranged, which is connected to a the receiving space facing away from the outer surface of the outer wall covering tissue flaps.
- the receiving space facing away from the outer surface of the outer wall of the receiving element can be plastered together with the adjoining insulating panels of the thermal insulation system, wherein the fabric flap connected to the outer wall is plastered into the plaster. If necessary, the plaster can be removed after application to the outer wall of the receiving element on the plaster connection profile.
- At least one marking for a position for introducing a bore extending normal to the plane defined by the outer wall into the receiving element is provided at the outer surface of the outer wall facing away from the receiving space, which is arranged above the second leg. passes through the supernatant and serves to insert a ETICS anchor.
- the marker may include a circle concentric with a desired position of the bore, a cross, or a horizontal line having solid lines or breaks.
- the receiving element may have at least one cable channel for a power supply to the shading device current and / or control cable, that the cable channel adjacent to the receiving space first Jardinhanalötician with a side facing in an assembly position an adjacent insulating element side surface connecting the top, and / or the building facing rear surface located second cable channel opening, and that at least one of the Kabeikanalö Stammen is closed with a directly pierceable with the cable or a screwdriver or similar hand tool air-tight membrane.
- the receiving element has a plurality of these cable channels, the cable duct openings are arranged at different locations, so that, depending on the local conditions at the installation site, the power and / or control cable at different locations through the insulating material of the receiving element into the receiving space can be performed.
- a receiving element is provided according to one of claims 1 to 11 and positioned on a mounting surface of the building, that the base part in the horizontal direction extends, the outer wall connected to the base part projecting downwardly from the base part and the receiving space for the shading between the outer wall and the mounting surface or the straight extension is arranged that transversely to the plane in which the outer wall extends through the receiving element therethrough at least one ETICS dowel or similar rod-shaped anchoring element is introduced into the building and anchored thereto, that the ETICS anchor or the anchoring element is arranged above the second leg and passes through the protrusion region of the first leg.
- the supernatant region transverse to the plane defined by the outer wall passing through the plane passing through the second leg bore is introduced through the receiving element into the building, wherein in this hole of the WDVD dowel or the rod-shaped anchoring element is used and anchored to the building.
- the drill is preferably positioned on the mark provided on the outer surface of the outer wall of the receiving element facing away from the receiving space.
- the insulating body, the outer wall and possibly the inner wall can have any type of insulating material, for example EPS (expanded polystyrene), XPS (extruded polystyrene rigid foam), PU (polyurethanes), mineral wool, RESOL (phenolic resin). Hard foam) and / or wood fiber etc.
- EPS expanded polystyrene
- XPS extruded polystyrene rigid foam
- PU polyurethanes
- mineral wool RESOL (phenolic resin).
- RESOL phenolic resin
- FIG. 1 An in Fig. 1 as a whole designated 1, designed as external blind apron receiving element for a blind 2 is designed as a molded body which is flush mounted in an attachable to the outside of a building 3 ETICS insulating layer 4 can be integrated.
- the thickness of the receiving element 1 corresponds to the thickness of adjacent insulating panels 5 of the EIFS Dämmstoft slaughter 2.
- the receiving element 1 and the insulating panels 5 are mounted on a building exterior wall, that they are aligned in a straight extension to each other.
- the receiving element 1 has an approximately cuboidal base part, which is arranged with its longitudinal axis horizontal and parallel to the building outer wall, when the receiving element 1 is mounted on the building 3.
- the base part has an insulating body 6 made of a thermally insulating material, for example a rigid foam or mineral wool.
- the receiving element 1 further has an outer wall 7, which is connected in an L-shaped manner with the insulating body 6 and is spaced parallel from the outer wall of the building when the receiving element 1 is mounted on the building 3.
- the base part and the outer wall 7 define a downwardly open receiving space for the shade 2 extending along the base part Fig. 2 can be seen, the receiving space 8 is dimensioned so that a drive unit 9 and all louvers 10 of the blind 2 can be accommodated in the receiving space 8 when the shutter 2 is in a contracted state.
- the outer wall 7 is formed as a sandwich plate, which has a foam core, which are coated on its the insulating body 6 facing inner surface, on its outer surface and at its mounting position downwardly facing surface with a glass fiber fleece having mineral plaster base layer.
- the plaster base layer is glued over an intumescent adhesive layer over its entire surface with the foam core.
- the outer wall 7 covers the outer surface of the Dämmstoff emotionss 6 facing away from the building 3 in the assembly position. At the covering point, the outer wall 7 is glued flat with the insulating body 6.
- the receiving space 8 may be open at the lateral end faces of the receiving element 1, as shown in FIG Fig. 1 can be seen, or the receiving element 1 has side walls 11, which limit the receiving space 8 laterally ( Fig. 2 and 3 ).
- the side walls 11 are glued in each case with their front end face with the building 3 facing the inner surface of the outer wall 7 and with its upper edge region with the underside of the base part.
- the side walls 11 are formed as a sandwich plate having a foam core, which is coated on its the receiving space 8 facing inner surface and on its underside with a glass fiber fleece having, mineral plaster base layer. It is the Putzmie silk glued over an intumescent adhesive layer over the entire surface with the foam core.
- a stiffener 12 is integrated, which is designed as a U-profile with a first leg 13, a parallel arranged second leg 14 and a crosspiece 15, the lower end of the first leg 13th connects to the lower end of the second leg 14.
- the first leg 13 is further spaced from the outer wall 7 of the receiving element 1 as the second leg 14th
- the legs 13, 14 are arranged parallel to the plane defined by the outer wall 7 plane in slots provided in the insulating body 6 of the base part.
- the cross-sectional dimensions of the slots correspond approximately to the cross-sectional dimensions of the legs 13, 14 and the legs 13, 14 are adhesively bonded flat with the walls of the slots.
- the stiffener 12 extends over the entire length of the receiving space eighth
- the crossbar 15 directly adjoins the receiving space 8 and serves as a mounting bar for attaching the drive unit 9 of the blind 2.
- the blind for example by means of self-tapping screws, which are bolted to the crossbar 1 5 passing holes are attached.
- the transverse web 15 is so embedded in the underside surface of the insulating body 6 of the base part, that the underside of the crosspiece 15 facing the receiving space 8 lies in the plane defined by the underside surface of the insulating body 6.
- another shading device such as an awning, be installed in the receiving space 8.
- the stiffening 12 in a transverse to its longitudinal extent spanned the plane in Fig. 3 corresponding vertical plane has a smaller horizontal width than the receiving space 8.
- the stiffener 12 is spaced from both the outer wall 7 and the diametrically opposite rear side surface of the Dämmstoff emotionss 6.
- the first leg 13 in the vertical direction has a larger dimension than the second leg 14. It is clear recognizable that the first leg 13 projects with a protrusion region 16 on the second leg 14.
- the protrusion dimension a, by which the first leg 13 projects beyond the second leg 14, is approximately 15 to 30 mm.
- the supernatant can be easily pierced on a construction site with a stone or concrete drills, the supernatant region has a perforation with a plurality of in several rows and columns juxtaposed perforation 17 on. As in Fig. 4 and 5 can be seen, the perforation holes 17 are offset from each other adjacent stacked rows of holes to each other gap.
- the outer wall 7 on its side facing away from the insulating body 6 outer surface a plurality of markings 18, which are each arranged at the level of the supernatant region 16 of the first leg 13 and spaced apart in the longitudinal extension direction of the receiving space 8.
- the markings 18 are each formed by a print which is applied to the plaster base layer of the outer wall 7.
- the markings 18 are circles whose centers lie in a plane which is spanned by the longitudinal center axis of the projection region 16 and the normal to the plane of extent of the outer wall 7.
- the centers of the markings 18 are arranged in a fixed grid, which may be, for example, 30 cm, on a common straight line.
- a PutzanInstitutprofil 19 is arranged, which is connected to a fabric flap 20 which in the assembled position on the the receiving space 8 facing away from outer surface of the outer wall 7 is arranged.
- the tissue flap 19 is plastered into a thin layer of mortar, which is applied to the outer wall 7 and the insulation panels 5 after installation of the receiving element 1 on the building 3.
- the plaster connection profile 19 is configured as a plug-in profile, which is glued into a slot recessed into the outside wall 7 on the underside.
- the receiving element 1 is so on to an outer wall Positioning of the building 3 located above a window mounting surface, that the base part extends in the horizontal direction, which projects with the base part connected to the outer wall 7 downwardly from the base part and the receiving space 8 for the blind 2 between the outer wall 7 and a frame part 21 of the Window is arranged. Thereafter, transversely to the plane in which the outer wall 7 extends through the receiving element 1 through several holes introduced into the building 2, which extend above the second leg 14 and the supernatant region 16 at a distance to enforce its upper edge.
- a driller driven by a drill or a hammer drill is positioned in each case at the corresponding mark 18 of the outer wall 7 and driven horizontally into the building wall.
- the diameter of the drill is chosen to match a WDVS dowel 22 to be inserted into the bore.
- an ETICS anchor 22 is introduced into the bore and anchored to the building 3 in such a way that a plate located at the free end of the ETICS anchor 22 comes to rest on the outside of the outer wall 7 facing away from the building 2.
- the ETICS anchor 22 has a metal core encased in plastic, which penetrates the supernatant region and extends to the anchoring point on the building 3.
- the stiffener 12 is crash-proof connected to the building. This is even the case when in the building once a fire should occur, which softens the insulating body 6 of the base part and / or the insulation panels 5.
- the receiving element 1 may also have an inner wall 24, is arranged parallel to the outer wall 7 and protrudes from the base part or the Dämmstoff emotions 6 downwards.
- the receiving space 8 is provided for the blind 2 between the outer wall 7 and the inner wall 24.
- the inner wall 24 is in the assembled position on the outside of a wall of the building 3 and this thermally insulated.
- the inner wall 24 is formed as a sandwich plate having a foam core, which are coated on its the insulating body 6 facing inner surface, at its the building 3 facing back surface and at its mounting position downwardly facing surface with a glass fiber fleece having mineral plaster base layer.
- the plaster base layer is glued over an intumescent adhesive layer over its entire surface with the foam core.
- the receiving space 8 may be open at the lateral end faces of the receiving element 1, as shown in FIG Fig. 7 can be seen, or the receiving element 1 has side walls 11, which limit the receiving space 8 laterally ( Fig. 8 and 9 ).
- the side walls 11 are glued in each case with their front end face with the building 3 facing inner surface of the outer wall 7, with its rear end face with the building 3 facing away from the inner surface of the inner wall 24 and with its upper edge region with the underside of the base part.
- the side walls 11 are formed as a sandwich plate, which has a foam core, which is coated at least on its inner surface facing the receiving space 8 and on its underside with a mineral fiber carrier layer having a glass fiber fleece.
- the plaster base layer is glued over an intumescent adhesive layer over its entire surface with the foam core.
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- Engineering & Computer Science (AREA)
- Structural Engineering (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Building Environments (AREA)
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE102015015604.7A DE102015015604B4 (de) | 2015-12-02 | 2015-12-02 | Aufnahmeelement für eine Beschattungseinrichtung und Verfahren zum Befestigen eines solchen an der Außenseite eines Gebäudes |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP3176357A1 true EP3176357A1 (fr) | 2017-06-07 |
| EP3176357B1 EP3176357B1 (fr) | 2018-03-07 |
Family
ID=57354237
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP16199639.2A Active EP3176357B1 (fr) | 2015-12-02 | 2016-11-18 | Élément de logement pour un dispositif d'ombrage et procédé de fixation d'un tel élément sur la surface extérieure d'un bâtiment |
Country Status (2)
| Country | Link |
|---|---|
| EP (1) | EP3176357B1 (fr) |
| DE (1) | DE102015015604B4 (fr) |
Cited By (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| AT526254B1 (de) * | 2023-02-13 | 2024-01-15 | Mueller Verwaltungs Gmbh | Aufnahmeelement für eine Beschattungseinrichtung |
Families Citing this family (1)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202023105913U1 (de) | 2023-10-13 | 2024-10-18 | D&M Kg | Behangsystem mit einem gedämmten Kastenelement |
Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202004006657U1 (de) | 2004-04-27 | 2005-09-08 | Knauf Marmorit Gmbh | Vorrichtung zur Aufnahme einer Verschattungseinrichtung einer Gebäudefassade |
| EP2072748A2 (fr) | 2007-12-19 | 2009-06-24 | Josef Mang GmbH & Co. KG | Elément de réception pour un système d'ombrage |
| EP2149666A2 (fr) | 2008-07-29 | 2010-02-03 | Müller, Andrea | Dispositif pour l'intégration d'un élément de protection extérieur destiné au recouvrement ou la libération au cas par cas d'une ouverture de mur |
| DE202014008384U1 (de) | 2014-10-22 | 2014-12-04 | Dirk Gießler | Behangeinrichtung |
-
2015
- 2015-12-02 DE DE102015015604.7A patent/DE102015015604B4/de not_active Expired - Fee Related
-
2016
- 2016-11-18 EP EP16199639.2A patent/EP3176357B1/fr active Active
Patent Citations (4)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| DE202004006657U1 (de) | 2004-04-27 | 2005-09-08 | Knauf Marmorit Gmbh | Vorrichtung zur Aufnahme einer Verschattungseinrichtung einer Gebäudefassade |
| EP2072748A2 (fr) | 2007-12-19 | 2009-06-24 | Josef Mang GmbH & Co. KG | Elément de réception pour un système d'ombrage |
| EP2149666A2 (fr) | 2008-07-29 | 2010-02-03 | Müller, Andrea | Dispositif pour l'intégration d'un élément de protection extérieur destiné au recouvrement ou la libération au cas par cas d'une ouverture de mur |
| DE202014008384U1 (de) | 2014-10-22 | 2014-12-04 | Dirk Gießler | Behangeinrichtung |
Cited By (2)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| AT526254B1 (de) * | 2023-02-13 | 2024-01-15 | Mueller Verwaltungs Gmbh | Aufnahmeelement für eine Beschattungseinrichtung |
| AT526254A4 (de) * | 2023-02-13 | 2024-01-15 | Mueller Verwaltungs Gmbh | Aufnahmeelement für eine Beschattungseinrichtung |
Also Published As
| Publication number | Publication date |
|---|---|
| DE102015015604A1 (de) | 2017-06-08 |
| DE102015015604B4 (de) | 2019-03-21 |
| EP3176357B1 (fr) | 2018-03-07 |
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