EP2770134B1 - Système de profilé pour une façade de bâtiment - Google Patents

Système de profilé pour une façade de bâtiment Download PDF

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Publication number
EP2770134B1
EP2770134B1 EP13156552.5A EP13156552A EP2770134B1 EP 2770134 B1 EP2770134 B1 EP 2770134B1 EP 13156552 A EP13156552 A EP 13156552A EP 2770134 B1 EP2770134 B1 EP 2770134B1
Authority
EP
European Patent Office
Prior art keywords
profile strip
strip
shank
base
profile
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.)
Not-in-force
Application number
EP13156552.5A
Other languages
German (de)
English (en)
Other versions
EP2770134A1 (fr
Inventor
Joachim Böhler
Ulrich Fehrenbach
Klaus Allmann
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 EP13156552.5A priority Critical patent/EP2770134B1/fr
Publication of EP2770134A1 publication Critical patent/EP2770134A1/fr
Application granted granted Critical
Publication of EP2770134B1 publication Critical patent/EP2770134B1/fr
Not-in-force 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
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F13/068Edge-protecting borders combined with mesh material or the like to allow plaster to bond therewith
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F2013/065Edge-protecting borders for lower edges of outer insulation layers
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04FFINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
    • E04F13/00Coverings or linings, e.g. for walls or ceilings
    • E04F13/02Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
    • E04F13/04Bases for plaster
    • E04F13/06Edge-protecting borders
    • E04F2013/066Edge-protecting borders for expansion joints between two plaster layers

Definitions

  • the invention relates to a profile system with the features of the preamble of claim 1.
  • a profile system comprises a base profile strip and at least one connection profile strip connected or connectable to the base profile strip for connecting a façade plane of a building facade.
  • base profiles or base profiles are known, which form the lower end of thermal insulation systems.
  • a base profile is for example from the utility model DE 81 25 432 U1 out. It has a first leg for attachment to a building wall and a substantially perpendicular thereto extending second leg for supporting the thermal insulation panels. At the projecting end of the second leg, a retaining flange is formed.
  • base profiles are known as edge-side termination for external thermal insulation systems on external building walls, which are connected to another profile or connectable.
  • a base profile is for example from the published patent application DE 10 2004 013 074 A1 out.
  • the further profile is designed as a slip-on profile and connected to a reinforcing fabric, which is embedded in a applied to the thermal insulation panels of the thermal insulation composite plaster layer. This way, a fixed Connection of the attachment profile made with the plaster layer of the thermal insulation composite system.
  • the connection of the attachment profile with the base profile is not rigid in contrast, but allows a relative movement of the attachment profile relative to the base profile to compensate for different thermal expansions. This is to tensions in the plaster layer and associated cracking can be prevented.
  • a system according to the preamble of claim 1 is disclosed in EP 2148021 A2 disclosed.
  • base profiles of the aforementioned type are usually mounted in the base area of a building facade.
  • the attachment of the base profile takes place at a certain distance from the ground level in order to protect the above the base profile mounted heat insulation system from moisture, especially water spray.
  • the base area below the base profile is often also insulated, but this special insulation boards are used, which are insensitive to moisture. Both above and below the base profile, the insulation boards can be finally provided with a single or multi-layer plaster layer.
  • the base area of a building façade is usually designed to spring back. This means that the façade levels above and below the base profile offset from each other.
  • the offset may be constructive due, for example, due to a change in the underlying wall and / or ceiling construction, as is the case regularly in prefabricated houses. Because in prefabricated house timber frame walls are usually placed on a floor slab or ceiling made of concrete, the lower frame wood may already have a projection to the front edge of the floor slab or ceiling.
  • façade level misalignment always occurs when two façade structures of different thicknesses meet.
  • Such a façade level offset regularly poses major challenges to the contractors, as it provides both a visually appealing transition and a secure connection of the various façade levels to train.
  • the currently available for this purpose profiles, in particular base profiles, are able to solve this detail unsatisfactory.
  • the present invention is therefore an object of the invention to provide a profile system for a building facade that allows the connection of two mutually offset facade levels in a visually appealing and safe way.
  • the proposed profile system comprises a base profile strip with at least one first leg for attachment to a wall construction and a second leg, which extends substantially perpendicular to the first leg and end has a web or flange for receiving a connection profile strip.
  • the base profile strip is connected or connectable via connection means to a further connection profile strip, wherein the connection means allow a displacement of the further connection profile strip in a plane parallel to the second leg of the base profile strip to compensate for a facade plane offset.
  • connection profile strip with two connection profile strips allows the connection of a first facade level, which comes to rest on this side of the base profile strip, as well as a further facade level beyond the base profile strip.
  • at least one connection profile strip can be connected to the base profile strip in such a way that it can be displaced in a plane parallel to the second leg of the base profile strip, an arbitrary offset between the two facade levels can be achieved via a corresponding displacement of the connection profile strip be compensated. If the offset due to structural tolerances over its length is not constant, but varies, this can also be adapted to the position of the connection profile strip.
  • the displaceability of the connection profile strip thus also allows the compensation of building tolerances. Balancing is done on site at the construction site so that the greatest possible flexibility is guaranteed. At the same time on the proposed profile system formed between the two facade levels joint, which is usually constructive, closed in a secure and visually appealing manner.
  • a modified base profile strip is required. This differs from conventional base profile strips in particular in that it has connection means for connection to the further connection profile strip.
  • the connecting means allow a relative movement of the connected further connection profile strip with respect to the base profile strip.
  • a plug-in and / or clamping connection with the further connection profile strip is produced or produced.
  • a plug-in and / or clamped connection has the advantage that on the one hand causes a mounting of the connection profile strip, on the other hand enables a stepless displacement of the connection profile strip relative to the base profile strip. As a result, the position of the connection profile strip on site can be adapted exactly to the respective conditions.
  • the connecting means comprise at least one web, preferably a clamping web, or at least one tab, preferably a clamping tab, which is arranged substantially parallel to the second leg of the base profile strip and forms a receptacle with the second leg.
  • the web or the tab is arranged on the side of the second leg of the base profile strip on which the facade plane to be connected comes to rest.
  • the web or the tab is formed shorter than the second leg of the base profile strip.
  • the web or tab may extend over one-third or one-half the length of the second leg.
  • the connection profile strip connected thereto is intended in particular to serve for the connection of a recessed facade level, for example a facade level forming a base area. Accordingly deep, the further connection profile strip must be inserted into the recess formed between the second leg of the base profile strip and the web or the tab.
  • the web or the tab may for example be connected at one end to the first leg of the base profile strip, which thus limits the receptacle formed between the second leg and the web or the tab.
  • an insertion be formed on the web or on the tab.
  • the connected to the base profile strip or connectable further connection profile strip comprises according to a preferred embodiment of the invention, a first leg and a Veryckenden substantially perpendicular to the first leg second leg.
  • the further connection profile strip is preferably L-shaped.
  • the first leg serves to connect the further connection profile strip to the base profile strip and is preferably inserted into the receptacle formed between the second leg and the web or the tongue of the base profile strip.
  • the thickness of the first leg is preferably matched to the recording that the desired plug and / or clamp connection is effected when inserting the leg into the receptacle.
  • the perpendicular to the first leg extending second leg of the connection profile strip is used to connect a further, preferably recessed facade level.
  • This may be, for example, the base area of a building facade.
  • the second leg is preferably in front of an insulating layer of the facade or the base to lie and can then be plastered with.
  • the second leg of the further connection profile strip openings are particularly evident when the second leg is to be embedded in an adhesive or plaster layer, in particular in a reinforcing layer, the facade to be connected.
  • the openings fill with adhesive or plaster, so that an intimate toothing is effected, which in particular counteracts a shearing of the second leg from the ground.
  • the second leg of the further connection profile strip has a plastering edge.
  • the plaster edge ensures a clean finish of a single or multi-layer applied plaster layer.
  • the plaster layer can be deducted, so that it has a constant thickness.
  • the second leg of the further connection profile strip can be connected to a reinforcing fabric strip.
  • the reinforcing fabric strip is preferably embedded in a reinforcing layer of a multi-layered plaster layer of the facade plane to be connected.
  • the reinforcing fabric of the reinforcing layer is brought into coincidence with the Arm michsgewebstMail and then plastered.
  • One on this Made way connection counteracts the formation of cracks in extreme temperature fluctuations.
  • the further connection profile strip has a web which extends at least in sections parallel to the first leg.
  • the web can be attached to the first or second leg of the connection profile strip or connect to the plastering edge. Due to the predominantly parallel alignment with the second leg of the base profile strip, this is largely covered by the web, so that the web protects the base profile strip from dirt when the second leg of the terminal block is plastered.
  • the web is separable over a predetermined breaking point. After applying the plaster layer this can then be removed.
  • the further connection profile strip may also have a web which is attached at an angle between 90 ° and 180 ° to the first leg and preferably forms a shadow gap with a spaced apart thereto arranged plastering edge.
  • the shadow gap forms a visually appealing detail.
  • the recorded over the web or flange of the base profile strip or receivable connection profile strip preferably has a fold or a clamping web for non-positive and / or positive connection with the base profile strip.
  • the non-positive and / or positive connection ensures a secure mounting of the connection profile strip. It can be made in a simple manner by attaching the connection profile strip on the web or flange of the base profile.
  • the connection profile strip thus connected to the base profiled strip serves to connect a façade plane which preferably protrudes in front of the other façade plane.
  • the facade level can be formed by a thermal insulation composite system, the heat insulation plates are placed on the second leg of the base profile strip and held over the web or flange for receiving the connection profile strip.
  • connection profile strip is then preferably plastered into the final single or multi-layer plaster layer to be applied.
  • connection profile strip openings which fill with plastering when plastering, so that an intimate toothing is achieved, which counteracts a shearing of the connection profile strip from the ground.
  • connection profile strip received or receivable via the web or flange of the base profile strip has a plastering edge.
  • the plastering edge ensures a clean finish of the applied single or multi-layer plaster layer.
  • the plaster layer can be removed via the plastering edge so that it has a constant thickness.
  • connection profile strip received or receivable via the web or flange of the base profile strip can be connected to a reinforcement fabric strip.
  • This is preferably embedded in a reinforcing layer of a applied multilayer plaster layer.
  • the reinforcing fabric of the reinforcing layer is brought into overlap with the reinforcing fabric strip of the connection profiled strip and subsequently plastered.
  • the overlapping reinforcing fabrics counteract cracks in the plaster layer, which can be caused by the fact that the different materials expand or contract to different degrees with temperature fluctuations. In particular, it is prevented that cracks form between the plaster layer and the connection profile strip.
  • this advantageously has holes, in particular slots, for receiving fasteners. Slotted holes simplify the assembly of the Base profiled strip, as its final position is variable during assembly. Furthermore, both long holes and round holes can be provided to fix the base profile strip in a certain position final. In particular screws can be used as fastening means, which are anchored in the wall construction.
  • At least one surface of the base profile strip and / or at least one connection profile strip has a profiling, in particular corrugation, extending over at least a partial area.
  • profiling in particular corrugation, extending over at least a partial area.
  • Such profiling in turn causes a toothing of the surface with an applied thereto adhesive or plaster, so that the adhesive bond between the bar and the mass is improved.
  • the base profile strip and / or at least one connection profile strip is wholly or partly made of metal, in particular of aluminum or an aluminum alloy, or of plastic or are.
  • metal especially aluminum
  • metal has the advantage that the strip made therefrom has a particularly low weight and therefore is easy to handle.
  • aluminum is insensitive to moisture.
  • metallic materials such as galvanized steel or stainless steel.
  • plastic has the advantage that the formation of thermal bridges is counteracted because plastic has a significantly lower thermal conductivity than metal.
  • the proposed profile system which allows the connection of two mutually offset façade levels, is not only suitable as a lower termination of a thermal insulation composite system, which is followed by a base area, but can be used wherever it is necessary to bridge a façade level offset.
  • Such an offset can, for example, also be formed within a facade, in particular a composite thermal insulation system, and run horizontally or vertically. That is, the staggered ones Façade levels both above and next to each other can be.
  • a marginal completion of the first and second facade level is effected.
  • FIGS. 1a and 1b show the basic component of a profile system according to the invention.
  • This is a base profile strip 1.
  • the length b of the second leg 1.2 between the first leg 1.1 and the flange 1.3 is presently 79 mm.
  • the base profile strip 1 with a connection profile strip 3 see Fig. 3b and 4b ) connectable.
  • the baseboard has 1 further connection means 4 for connection to a further connection profile strip 5 (see Fig. 2b and following).
  • the connecting means 4 comprise a web 6, which in the present case is designed as a clamping web and together with the second leg 1.2 of Base profile strip 1 forms a receptacle 8. From the Fig. 1a and 1b is not apparent whether the web 6 extends over the entire length of the base profile strip 1 or only over a partial area. Both can be the case. In the illustrated embodiment, however, the web 6 extends over the entire length of the base profile strip 1.
  • a plurality of tabs 7 are provided instead of the web 6, which also with the second leg 1.2 of the base profile strip 1 one Take up admission 8.
  • the web 6 For insertion of the connection profile strip 5 in the receptacle 8, the web 6 has an insertion bevel 9, which in the present case is formed by an angled end of the web 6.
  • the insertion bevel 9 facilitates the insertion of the connection profile strip 5. Since the web 6 is designed as a clamping web, opening of the receptacle 8 can furthermore be effected via the insertion bevel 9 in order to receive the connection profile strip 5.
  • Base profile 1 is made of aluminum.
  • the Fig. 2a and 2b show the base profile 1 of the Fig. 1a and 1b with an L-shaped connection profile strip 5.
  • the second leg 5.2 serves to connect a facade plane A (see Fig. 2a ).
  • the connection profile strip 5 is made of plastic.
  • the base profile strip 1 can also be connected to a further connection profile strip 3.
  • a first preferred embodiment is in the Fig. 3a and 3b shown.
  • the further connection profile strip 3 serves to connect a facade level B (see Fig. 3a ) projecting in front of the facade level A.
  • connection profile 3 of the Fig. 3a and 3b has a fold 15 over which the strip 3 can be plugged onto the flange 1.3 of the base profile strip 1.
  • the bar 3 is pushed from above onto the flange 1.3.
  • a plastering edge 11 is provided on the connection profile strip 3, which allows a clean completion of a applied plaster layer.
  • the outwardly facing surface including the plastering edge 11 is also provided with a profiling 18 in the form of a corrugation.
  • the profiling 18 is intended to improve the plaster adhesion to the connection profile strip 3.
  • the connection profile strip 3 is made of plastic.
  • connection profile strip 3 is the Fig. 4a and 4b refer to.
  • this strip 3 has a clamping web 16, via which a positive and non-positive connection of the connection profile strip 3 to the base profile strip 1 is produced or produced.
  • the connection profile strip 3 is pushed onto the flange 1.3 of the base profiled strip 1 from below. Via an additional web 19, the connection profile strip 3 is supported on the flange 1.3.
  • the height h of the connection profile strip 3 in the present case is 31 mm.
  • connection profile strip 3 is made of plastic.
  • connection profile strip 3 is further connected to a reinforcing fabric strip 12.
  • the reinforcing fabric strip 12 is embedded in a still applied plaster layer, in particular reinforcing layer, and prevents in this way a tearing of the plaster layer of the connection profile strip.
  • connection profile strip 5 perforations 10, a profiling 18 in the form of corrugation and / or Arm istsgewebest Shape 12 have to improve the adhesive bond between the connection profile strip 5 and a still applied plaster layer.
  • a corresponding embodiment is in the Fig. 6a and 6b shown.
  • the Fig. 6a and 6b also show a first leg 1.1 of the base profile strip 1 with holes 17, which serve to receive fasteners. A part of the holes 17 are formed as slots.
  • connection profile strip 5 can also have a plastering edge 11.
  • Fig. 7a to 10b correspond to.
  • Fig. 7a to 10b has the connection profile strip 5 beyond a web 5.3.
  • Fig. 7a to 9b serves the bridge 5.3 the protection of the base profile strip 1 from contamination during the plastering of the connection profile strip 5.
  • the web 5.3 is removed by canceling.
  • the web 5.3 is attached in each case via a predetermined breaking point 13 to the connection profile strip 5.
  • the web 5.3 can be attached behind the plastering edge 11 of the connection profile strip 5 (see Fig. 7a to 8b ) or to the plastering edge 11 (see Fig. 9a and 9b ).
  • the angled end of the web 5.3 facilitates gripping to separate the web 5.3 on the predetermined breaking point 13 of the terminal profile strip 5.
  • the web 5.3 but also directly, ie without breaking point 13, be attached to the terminal block 5.
  • the plastering edge 11 is arranged at a distance from the web 5.3 so that a shadow gap 14 remains between the plastering edge 11 and the web 5.3.
  • the shadow gap 14 causes the façade plane A of the second leg 1.2 of the base profile strip 1 optically dissolves. This impression is supported by the fact that the web 5.3 is angled.

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

Claims (13)

  1. Système de profilés pour une façade de bâtiment comprenant un profilé de base (1) avec au moins une première branche (1.1) pour fixer sur une construction murale (2) et une deuxième branche (1.2), qui s'étend pour l'essentiel perpendiculairement à la première branche (1.1) et possède à l'extrémité une âme ou bride (1.3) pour recevoir un profilé de raccordement (3), le profilé de base (1) sur des moyens de liaison (4) étant ou pouvant être relié à un autre profilé de raccordement (5) ou les moyens de liaison (4) comprenant au moins une âme (6) ou au moins une attache (7), qui est disposée pour l'essentiel parallèlement à la deuxième branche (1.2) du profilé de base (1) et constitue avec la deuxième branche (1.2) un logement (8) de telle manière que les moyens de liaison permettent un déplacement de l'autre profilé de raccordement (5) dans un plan parallèlement à la deuxième branche (1.2) du profilé de base (1),
    caractérisé en ce que l'âme (6) ou l'attache (7) est constituée plus courte que la deuxième branche (1.2) du profilé de base (1) pour compenser un déport de plan de façade par un déplacement du profilé de raccordement (5).
  2. Système de profilés selon la revendication 1,
    caractérisé en ce qu'un raccord emboîtable et/ou de serrage est établi ou peut être établi avec l' autre profilé de raccordement (5) par les moyens de liaison (4) du profilé de base (1).
  3. Système de profilés selon la revendication 1 ou 2, caractérisé en ce que l'âme (6) est une âme de serrage ou l'attache (7) est une attache de serrage.
  4. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce qu'un plan incliné d'introduction (9) est constitué sur l'âme (6) ou sur l'attache (7).
  5. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que l'autre profilé de raccordement (5) comprend une première branche (5.1) pour raccordement au profilé de base (1), en particulier pour l'introduction dans le logement (8) et une deuxième branche (5.2) s'étendant pour l'essentiel perpendiculairement à la première branche (5.1).
  6. Système de profilés selon la revendication 5,
    caractérisé en ce que la deuxième branche (5.2) de l'autre profilé de raccordement (5) comporte des évidements (10) et/ou possède un bord d'enduction (11) et/ou est reliée à une bande de treillis d'armature (12).
  7. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que l'autre profilé de raccordement (5) possède une âme (5.3) qui passe au moins par section parallèlement à la première branche (5.1) et/ou peut être séparée par un point de rupture théorique (13).
  8. Système de profilés selon l'une quelconque des revendications 1 à 7,
    caractérisé en ce que l'autre profilé de raccordement (5) possède une âme (5.3') qui est fixée à la première branche (5.1) dans un angle (α) entre 90° et 180° et constitue un joint creux (14) de préférence avec un bord d'enduction (11) disposé à distance à cet effet.
  9. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que le profilé de raccordement (3) logé ou pouvant être logé sur l'âme ou l'attache (1.3) du profilé de base (1) possède un pli (15) ou une âme de serrage (16) pour raccordement par conformité de force et/ou de forme au profilé de base (1).
  10. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que le profilé de raccordement (3) logé ou pouvant être logé sur l'âme ou l'attache (1.3) du profilé de base (1) possède des évidements (10) et/ou possède un bord d'enduction (11) et/ou est relié à une bande de treillis d'armature (12).
  11. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que la première branche (1.1) du profilé de base (1) possède des trous (17), en particulier des trous oblongs destinés à recevoir des moyens de fixation.
  12. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce qu'au moins une surface du profilé de base (1) et/ou au moins d'un profilé de raccordement (3, 5) possède un profilage (18), en particulier des cannelures, s'étendant au moins sur une zone partielle.
  13. Système de profilés selon l'une quelconque des revendications précédentes,
    caractérisé en ce que le profilé de base (1) et/ou au moins un profilé de raccordement (3, 5), est ou sont fabriqués entièrement ou partiellement en métal, en particulier en aluminium ou un alliage d'aluminium, ou en matière plastique.
EP13156552.5A 2013-02-25 2013-02-25 Système de profilé pour une façade de bâtiment Not-in-force EP2770134B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP13156552.5A EP2770134B1 (fr) 2013-02-25 2013-02-25 Système de profilé pour une façade de bâtiment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP13156552.5A EP2770134B1 (fr) 2013-02-25 2013-02-25 Système de profilé pour une façade de bâtiment

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Publication Number Publication Date
EP2770134A1 EP2770134A1 (fr) 2014-08-27
EP2770134B1 true EP2770134B1 (fr) 2016-09-14

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Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102015003308A1 (de) * 2015-03-13 2016-09-15 Daw Se Abschlussleiste und Verfahren zum Montieren einer Abschlussleiste
DE102015117391A1 (de) * 2015-10-13 2017-04-13 Protektorwerk Florenz Maisch Gmbh & Co Kg Profilleiste
DE102017008981A1 (de) * 2017-09-26 2019-03-28 Karl-Oskar Erley Dämmplatte

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE8125432U1 (de) 1981-09-01 1982-02-25 Protektorwerk Florenz Maisch Gmbh & Co Kg, 7560 Gaggenau Sockelprofil fuer den unteren abschluss von an bauwerkswaenden anbringbaren waermedaemmplatten
US6298609B1 (en) * 1998-04-14 2001-10-09 Vinyl Corp. Construction system with panel support accessory
DE102004013074B4 (de) 2004-03-11 2006-10-12 Deutsche Amphibolin-Werke Von Robert Murjahn Stiftung & Co Kg Randseitiger Abschluss für Wärmedämmverbundsysteme an Gebäudeaußenwänden
DE202007013007U1 (de) * 2007-09-17 2007-12-20 Jörder, Andrea Sockelschiene für die äußere Wärmedämmschicht bei einer Gebäudewand
DE102008034051A1 (de) * 2008-07-22 2010-02-04 Vws-Befestigungstechnik Gmbh Profilsystem zur Beschichtung von Putzträgerplatten oder dergleichen

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