EP2647779B1 - Support d'angle pour une infrastructure de façade - Google Patents

Support d'angle pour une infrastructure de façade Download PDF

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Publication number
EP2647779B1
EP2647779B1 EP20120163263 EP12163263A EP2647779B1 EP 2647779 B1 EP2647779 B1 EP 2647779B1 EP 20120163263 EP20120163263 EP 20120163263 EP 12163263 A EP12163263 A EP 12163263A EP 2647779 B1 EP2647779 B1 EP 2647779B1
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EP
European Patent Office
Prior art keywords
leg
retaining bracket
bracket
retaining
substructure
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP20120163263
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German (de)
English (en)
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EP2647779A1 (fr
Inventor
Dirk Franz
Patrick Ziegler-Herboldt
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.)
Sto SE and Co KGaA
Original Assignee
Sto SE and Co KGaA
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 Sto SE and Co KGaA filed Critical Sto SE and Co KGaA
Priority to EP20120163263 priority Critical patent/EP2647779B1/fr
Publication of EP2647779A1 publication Critical patent/EP2647779A1/fr
Application granted granted Critical
Publication of EP2647779B1 publication Critical patent/EP2647779B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/07Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
    • E04F13/08Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
    • E04F13/0801Separate fastening elements
    • E04F13/0803Separate fastening elements with load-supporting elongated furring elements between wall and covering elements
    • E04F13/0805Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and the wall
    • E04F13/0808Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and the wall adjustable in several directions one of which is perpendicular to the wall
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B9/00Ceilings; Construction of ceilings, e.g. false ceilings; Ceiling construction with regard to insulation
    • E04B9/18Means for suspending the supporting construction

Definitions

  • the invention relates to a bracket for a facade substructure for attaching at least one substantially plate-shaped facade element to an on-site substrate with the features of the preamble of claim 1. Furthermore, the invention relates to a facade substructure with such a bracket.
  • brackets or facade constructions are for example from the EP-A-2108757 or the DE-A-102009030635 known.
  • Façade substructures of the abovementioned type enable the formation of curtain-type, ventilated facades, wherein façades in the present case are understood to mean not only vertical but also inclined wall surfaces and horizontal ceiling surfaces. Façades form the exterior termination of components that separate an interior from an exterior space. Consequently, high demands are placed on such components in terms of thermal protection. This is usually taken into account that a single or multi-layer thermal barrier coating is applied to the outside of the supporting structure of the component, which is subsequently plastered or - in the case of a curtain, ventilated facade - clad with facade elements.
  • a multi-part substructure is for example from the utility model DE 298 14 855 U1 known. It comprises an anchoring bracket for attachment to a building wall and an anchoring part which can be connected thereto and which is fastened or fastened to the back of wallcovering panels. Both the anchoring console and the anchor member each have at least one perpendicular to the building wall-oriented leg, which can be brought into contact with the respective other leg and screwed thereto.
  • an insulator is inserted before screwing between the leg of the anchor member and the leg of the anchoring console, which is intended to prevent heat transfer from the anchored to the building wall anchoring console on the plate-side anchor member.
  • the insulator consists of a material having a poor thermal conductivity, preferably of Polyvinyl chloride, polyurethane or silicate, and is further preferably disc-shaped or plate-shaped.
  • the present invention has the object to provide a bracket for a facade substructure, which allows on the one hand the formation of a passivhaustau réelle facade substructure and on the other hand is able to absorb high loads. Furthermore, a Passivhaustaugliche facade substructure should be specified.
  • the proposed bracket for a facade substructure for attaching at least one substantially plate-shaped facade element to an on-site base comprises a first leg for attachment to the on-site substrate and a first leg substantially perpendicularly arranged second leg for receiving a retaining profile of the facade system.
  • the second leg has a total area in which at least one recess is provided, wherein the area ratio of the one or more recesses is at least 10%, preferably at least 25%, more preferably at least 40% of the total area of the second leg.
  • the heat-conducting Reduced cross-section of the second leg is reduced substantially to the cross section of webs, which limit the recess or the recesses. If only one, in particular rectangular recess is provided in the total area of the second leg, this is preferably limited by four webs, which at the same time form the two longitudinal edges and the two side edges. In addition, two or more recesses may be provided, which are separated by longitudinal and / or transverse webs.
  • a recess by webs contributes to the dimensional stability of the bracket and is therefore to be preferred.
  • a recess is limited only on three sides by a web and thus extends to a longitudinal or side edge.
  • the bracket is a stamped / bent part. It is also proposed that at least one recess in the total area of the second leg is a punched-out.
  • a support angle is particularly simple and inexpensive to produce from a sheet metal material.
  • a flat part is first punched out of the sheet material, which corresponds to the development of the bracket.
  • the at least one recess is likewise produced in this punching process.
  • the flat part is bent to produce the angular shape of the bracket.
  • the use of a sheet material also allows the production of a variety of flat parts in one step. In addition, the production can be completely automated.
  • At least one edge region of the first leg and / or the second leg is reinforced by folding.
  • the edge region can be folded or folded over one or more times, so that the material lies at least twice in the region of the fold.
  • Particularly advantageous is a reinforcement by folding in the area of a proves Edge, in particular longitudinal edge, of the second leg, since this is weakened by the at least one recess or punched-out.
  • the second leg has at least one spring tongue for receiving a holding profile.
  • About the at least one spring tongue is a clamping connection of the holding profile with the bracket effected, which allows subsequent alignment of the clamped recorded holding profile.
  • two spring tongues are provided on the second leg, which are arranged in parallel and allow a clamping at two points connection of the holding profile with the bracket.
  • About the clamping connection at two points a pre-alignment of the holding profile is effected. This facilitates the assembly of the substructure.
  • the spring tongue is integrally formed by using a punching / bending process with the bracket.
  • a punching / bending process with the bracket.
  • the spring tongue is formed with or provided for forming the spring tongue material is released.
  • the released material is then formed into a spring tongue.
  • the shaping of the spring tongue by bending always causes a gain of the second leg of the bracket, since in the bending region of the cross section is doubled and / or stiffened by the formation of a raised edge.
  • the spring tongue is arranged substantially parallel to the second leg. If the spring tongue has been produced in one piece with the holding bracket by means of stamping and bending, this means that the material for forming the spring tongue has preferably once been folded over. In parallel alignment with the second leg of the bracket, the spring tongue - unlike an arrangement transverse to the second leg - easier technicallybiegen, so that the subsequent alignment of a spring clip over the clamping profile connected holding profile is simplified. Alternatively or additionally, it is proposed that the spring tongue forms an insertion bevel at its free end. This measure also facilitates the assembly of the substructure, since the insertion of the retaining profile between the spring tongue and the second leg is simplified. For preferably, the spring tongue is biased in the direction of the second leg to allow a clamping connection of the holding profile with the bracket. In contact with the insertion can then be pressed or bent over the retaining profile, the spring tongue.
  • the first leg and / or the second leg has or possess at least one recess for receiving a fastening means.
  • the attachment means which is preferably a screw
  • the first leg of the bracket with the on-site substrate preferably the supporting structure of a building exterior wall or ceiling
  • the second leg connected to a holding profile.
  • at least one recess for receiving a fastening means is formed as a slot, as such allows a subsequent alignment of the bracket or the retaining profile without moving the recess for receiving the fastener.
  • the assembly of the substructure can be further simplified.
  • the slot thus allows the formation of a floating point.
  • To form a fixed point may be provided as an alternative or in addition to at least one slot a round hole. Whether the training of sliding and / or fixed points is required can be found in the respective object statics.
  • a plurality of differently shaped recesses for receiving fastening means are provided at least in the region of the first leg, so that - depending on the existing on-site background - the use of different fastening means is possible.
  • on-site substrates whether concrete, wood or steel, it is therefore only a holding bracket vorzuhalten.
  • the attachment of the bracket to the on-site ground is also preferred to make in such a way that the recorded on the bracket loads are safely introduced into the load-bearing construction of the building wall or ceiling.
  • bracket made of metal, in particular of galvanized steel, stainless steel or aluminum, is made. Because these materials prove to be resistant to moisture and are therefore particularly suitable for outdoor use. Furthermore, these materials are available as a sheet material from which punching / bending parts can be produced in a simple manner.
  • a stainless steel sheet is used to produce a holding angle according to the invention.
  • Stainless steel is corrosion resistant and has a lower thermal conductivity than, for example, aluminum. As a result, the formation of a thermal bridge is further counteracted.
  • a bracket made of stainless steel has a higher strength compared to a bracket made of aluminum. A bracket made of stainless steel can therefore accommodate greater loads, so that the projection or the distance between the on-site background and the facade element can be further increased.
  • the bracket according to the invention is made of a sheet material having a thickness s between 0.5 mm and 2.5 mm, preferably between 1.0 mm and 2.0 mm.
  • a distance of 40 cm can be bridged by means of the bracket.
  • protrusions can be achieved up to about 60 cm, when the facade substructure of the attachment of relatively light facade elements is used.
  • the projection should be at least 25 cm, preferably at least 30 cm.
  • the further proposed facade substructure for attaching at least one substantially plate-shaped facade element to an on-site substrate comprises at least one bracket according to the invention and at least one connectable to the bracket holding profile. Bracket and retaining profile together form a passive passive house suitable Substructure made.
  • the Passivhaustaugzier the facade substructure is due in particular to the use of a bracket according to the invention. Because this allows the realization of insulation thicknesses, which take into account the significantly increased demands on the thermal insulation in passive houses.
  • the bracket according to the invention is not only able to bridge large distances between the on-site ground or the supporting structure and the curtain wall curtain element, but has due to the at least one recess in its second leg a reduced heat-conducting cross-section. This reduces the heat flow through the substructure.
  • the proposed facade substructure can be easily installed, regardless of the existing on-site background.
  • the retaining profile of the proposed facade substructure for connection to the bracket and for receiving a substantially plate-shaped facade element L-shaped or T-shaped. It thus has at least one parallel to the second leg of the bracket alignable leg, so that they can be brought into contact with each other and connected.
  • An at least temporary connection preferably takes place via at least one spring tongue formed on the second leg of the holding bracket, which enables a clamping connection of the holding profile with the holding angle.
  • the clamping connection via the spring tongue allows alignment of the holding profile before it is finally attached via a fastening means, such as a screw or a rivet, on the bracket.
  • the facade substructure may further comprise an insulator. This is preferably inserted between the retaining profile and the bracket of the facade substructure.
  • the insulator consists of a poorly heat-conducting material and is preferably between the Placed contact surfaces of the holding profile and the bracket.
  • the first leg 1 serves to attach the bracket 10 to an on-site substrate 11 (see Fig. 7 ) and has three each formed as a slot recesses 8 for receiving suitable fastening means, such as a screw 9, on.
  • the first leg 1 has a width B, which in the present case is 4 cm, and a height H, which in the present case is 13.35 cm.
  • the perpendicular to the first leg 1 arranged second leg 2 has the same height H as the first leg 1 and a projection A, which in the present case is 33 cm.
  • the total area of the second leg 2 is therefore 440.55 cm 2 .
  • the recesses 3 thus extend over a total area of 196 cm 2 .
  • the area share of Recesses 3 is thus at least 40% of the total area of the second leg. 2
  • the large-area recesses 3 have the consequence that the supporting cross-section of the bracket 10 is weakened because on all sides of the recesses 3 only material remains in web width.
  • the edge regions 4 in the region of the longitudinal edges of the second leg 2 are therefore made reinforced by folding over. That is, in the edge regions 4, the material, in this case a stainless steel sheet, is double.
  • a thin stainless steel sheet can be used from the starting material. In areas where reinforcement is needed, the material is simply duplicated. This allows a sparing use of the material.
  • the thickness s of the presently used stainless steel sheet is 1.5 mm, so that by folding strengths are achieved, which amount to at least 3 mm.
  • the folding over of the edge regions 4 of the second leg 2 has also been used in the present case to form spring tongues 5.
  • the spring tongues 5 serve to receive a support profile 12 (see Fig. 7 ).
  • the spring tongues 5 form at their free ends in each case an insertion bevel 6 (see Fig. 2 ).
  • the distance between the spring tongues 5 to the second leg 2 is selected such that the spring tongues 5 (not shown) bear under bias on the inserted retaining profile 12 and a clamping force holding the retaining section 12 in abutment with the second leg 2 of the bracket 10.
  • the second leg 2 of the bracket 2 therefore has recesses 7, 8, which serve to receive fastening means, in particular screws 9 (see Fig. 1 ). Of the recesses 7, 8, some are designed as round holes 7 and some as slots 8.
  • the use of elongated holes for fastening a retaining profile 12 with the bracket 10 has the advantage that thermally induced changes in length of the retaining profile 12 can be added and compensated in the region of the slot attachment.
  • FIG. 4-6 An alternative embodiment of a holding bracket 10 according to the invention is the Fig. 4-6 refer to. This is different from the one of Fig. 1-3 essentially in that the bracket 10 has a lower height H. The height H is now only 6.7 cm.
  • the second leg 2 further has two rectangular recesses 3 of dimensions a 1 xb and a 2 xb, wherein only the dimension b has been changed. The dimension b is now 1 cm, which is due to the lower height H of the bracket 10.
  • the recesses 3 thus extend over a total area of 24.5 cm 2 .
  • the surface portion of the recesses 3 is thus at least 10% of the total area of the second leg 2, which in the present case is 221.1 cm 2 .
  • the recesses 3 lead to a reduction of the heat-conducting cross section of the bracket 10, so that the heat flow through the bracket 10 is reduced.
  • the large projection of the bracket 10 of 33 cm allows the formation of about 30-35 cm thick thermal barrier coatings.
  • the bracket 10 in conjunction with a retaining profile 12 forms a passive house suitable facade substructure.
  • the reinforced edge portions 4 of the bracket 10 for sufficient load capacity, so that even heavy facade elements, such as glass or natural stone slabs, over a Façade substructure according to the invention can be attached to an on-site support.
  • a facade substructure according to the invention comprising at least one holding angle 10 and a holding profile 12 is exemplary in the Fig. 7 shown.
  • the on-site substrate 11 in the present case forms a solid exterior building wall, to which the bracket 10 of the facade substructure is attached.
  • the first leg 1 of the bracket 10 is thereby indirectly on a possible unevenness compensating intermediate layer on the on-site substrate 11, so that the height H of the bracket 10 is available in the main load direction.
  • the height H is interrupted by the recesses 3, so that only a reduced cross-section for load transfer remains. Due to the reinforced edge portions 4, however, this is sufficiently dimensioned.
  • the reinforced edge portions 4 of the second leg 2 form at the same time on their side facing away from the base 11 ends spring tongues 5, which serve to receive a support section 12 and an insulator 13, which is placed in the region of the receptacle to the support section 12.
  • the insulator 13 is not absolutely necessary for the formation of a passive house-compatible facade substructure, but is of advantage since a thermal separation of the retaining profile 12 from the mounting bracket 10 is effected via this.
  • the holding profile 12 itself may be made of a poorly heat-conducting material, so that in this case an insulator 13 would be superfluous.
  • the invention is not on the in the Fig. 1-7 illustrated embodiments, but also includes modifications. These may relate in particular to the specific design, number and arrangement of the recess / recesses 3 of the second leg 2 of the bracket 10 and the specific design, number and arrangement of the spring tongue / spring tongues 5. Furthermore, the dimensions of the bracket should be selected according to the requirements.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Finishing Walls (AREA)

Claims (11)

  1. Équerre de maintien (10) pour une sous-construction de façade, destinée à fixer au moins un élément de façade essentiellement en forme de plaque sur une structure de base côté construction (11), comprenant une première branche (1) pour la fixation à la structure de base côté construction (11) et une deuxième branche (2) agencée essentiellement verticalement par rapport à la première branche (1), pour la réception d'un profilé de maintien (12) de la sous-construction de façade, dans laquelle la deuxième branche (2) présente une superficie totale dans laquelle est prévue au moins un évidement (3), et dans laquelle la part de superficie de l'évidement (3) ou de la pluralité d'évidements (3) représente au moins 10% de la superficie totale de la deuxième branche (2),
    caractérisée en ce qu'au moins une région de bord (4) de la première branche (1) et/ou de la deuxième branche (2) est renforcé par repliage, le matériau étant ainsi au moins doublé dans l'au moins une région de bord (4).
  2. Équerre de maintien selon la revendication 1,
    caractérisée en ce que la part de superficie de l'évidement (3) ou de la pluralité d'évidements (3) représente au moins 25%, et de préférence au moins 40% de la superficie totale de la deuxième branche (2).
  3. Équerre de maintien selon la revendication 1 ou 2,
    caractérisée en ce que l'équerre de maintien (10) est une pièce découpée et pliée et/ou en ce qu'au moins un évidement (3) est une découpe.
  4. Équerre de maintien selon l'une des revendications précédentes,
    caractérisée en ce que la deuxième branche (2) possède au moins une langue élastique (5) pour la réception d'un profilé de maintien (12).
  5. Équerre de maintien selon la revendication 4,
    caractérisée en ce que la langue élastique (5) est conçue d'un seul tenant avec l'équerre de maintien (10).
  6. Équerre de maintien selon l'une des revendications précédentes,
    caractérisée en ce que la langue élastique (5) est agencée essentiellement parallèlement à la deuxième branche (2) et/ou forme un chanfrein d'insertion (6) à son extrémité libre.
  7. Équerre de maintien selon l'une des revendications précédentes,
    caractérisée en ce que la première branche (1) et/ou la deuxième branche (2) comporte ou comportent au moins un évidement (7, 8) pour la réception d'un moyen de fixation, en particulier une vis (9), dans laquelle au moins un évidement (8) est de préférence conçu comme un trou oblong.
  8. Équerre de maintien selon l'une des revendications précédentes,
    caractérisée en ce que l'équerre de maintien (10) est fabriquée en métal, en particulier en acier galvanisé, en acier inoxydable ou en aluminium, le métal étant de préférence présent sous la forme d'une tôle métallique et présentant une épaisseur (s) entre 0,5 mm et 2,5 mm, et de préférence entre 1,0 mm et 2,0 mm.
  9. Sous-construction de façade pour la fixation d'au moins un élément de façade essentiellement en forme de plaque sur une structure de base côté construction (11), comprenant au moins une équerre de maintien (10) selon l'une des revendications précédentes et au moins un profilé de maintien (12) apte à être relié à l'équerre de maintien (10).
  10. Sous-construction de façade selon la revendication 9, caractérisée en ce que le profilé de maintien (12) est conçu en forme de L ou de T, pour être relié à l'équerre de maintien (10) et pour recevoir un élément de façade essentiellement en forme de plaque.
  11. Sous-construction de façade selon la revendication 9 ou 10,
    caractérisée en ce que la sous-construction de façade comprend en outre un isolateur (13) susceptible d'être inséré entre le profilé de maintien (12) et l'équerre de maintien (10) pour réaliser une séparation thermique.
EP20120163263 2012-04-05 2012-04-05 Support d'angle pour une infrastructure de façade Active EP2647779B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP20120163263 EP2647779B1 (fr) 2012-04-05 2012-04-05 Support d'angle pour une infrastructure de façade

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP20120163263 EP2647779B1 (fr) 2012-04-05 2012-04-05 Support d'angle pour une infrastructure de façade

Publications (2)

Publication Number Publication Date
EP2647779A1 EP2647779A1 (fr) 2013-10-09
EP2647779B1 true EP2647779B1 (fr) 2015-01-28

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Application Number Title Priority Date Filing Date
EP20120163263 Active EP2647779B1 (fr) 2012-04-05 2012-04-05 Support d'angle pour une infrastructure de façade

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102014003675B4 (de) 2014-03-14 2016-06-09 Klaus Peter Abel Fassadenbefestigungssystem
DE102017102536A1 (de) 2017-02-09 2018-08-09 Pro-File GmbH Halterung zur Befestigung einer Verkleidung an einer Gebäudewand oder -decke
WO2023147614A1 (fr) 2022-02-02 2023-08-10 Arnold Peter Système d'installation et de fixation de panneaux ou de disques sur une surface sous-jacente

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE7822761U1 (de) * 1978-07-29 1978-11-23 Heise, Wolfgang, 3300 Braunschweig Wandstuetze fuer fassadenunterkonstruktionen
DE29703013U1 (de) * 1997-02-20 1997-04-03 BWM Dübel- u. Montagetechnik GmbH, 70771 Leinfelden-Echterdingen Wandhalter für Tragvorrichtungen von Wand- oder Deckenverkleidungen
DE29814855U1 (de) 1998-08-19 1998-12-17 BWM Dübel + Montagetechnik GmbH, 70771 Leinfelden-Echterdingen Halterung für Tragvorrichtungen von Wand- oder Deckenverkleidungen
DE102004025759A1 (de) * 2004-05-26 2005-12-22 Claus Bamberger Aufsteckkappe zur thermischen Entkopplung von Fassadenunterkonstruktionen
AT506588B1 (de) * 2008-04-07 2009-10-15 Erwin Ing Steiner Montagewinkel für fassadenelemente und verfahren zu dessen herstellung
EP2194208A1 (fr) * 2008-12-04 2010-06-09 Mage Ag Support mural pour plaques de façades
DE102009030635B4 (de) * 2009-06-25 2014-01-09 Sto Ag Haltewinkel für ein Fassadensystem
EP2365157B1 (fr) * 2010-03-12 2013-02-13 Reinwarth Patentverwaltung GbR Dispositif de connexion destiné au raccordement d'un mur avec un élément de façade ou avec un support d'élément de façade
EP2385185A1 (fr) * 2010-05-06 2011-11-09 Reinwarth Patentverwaltung GbR Support d'élément de façade et procédé de fabrication d'un support d'élément de façade

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