EP1857606B1 - Structure d'isolation thermique à un mur de bâtiment avec une baguette pour plâtre - Google Patents

Structure d'isolation thermique à un mur de bâtiment avec une baguette pour plâtre Download PDF

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Publication number
EP1857606B1
EP1857606B1 EP07009933.8A EP07009933A EP1857606B1 EP 1857606 B1 EP1857606 B1 EP 1857606B1 EP 07009933 A EP07009933 A EP 07009933A EP 1857606 B1 EP1857606 B1 EP 1857606B1
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EP
European Patent Office
Prior art keywords
heat insulation
leg
structure according
insulation structure
thermal insulation
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.)
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Application number
EP07009933.8A
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German (de)
English (en)
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EP1857606B8 (fr
EP1857606A2 (fr
EP1857606A3 (fr
Inventor
August Braun
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BRAUN, AUGUST
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Individual
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Priority claimed from DE200610023625 external-priority patent/DE102006023625A1/de
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Publication of EP1857606B1 publication Critical patent/EP1857606B1/fr
Publication of EP1857606B8 publication Critical patent/EP1857606B8/fr
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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
    • 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
    • E04F21/00Implements for finishing work on buildings
    • 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

Definitions

  • a thermal insulation structure with the features that are in the preceding paragraph before the words "characterized” is from the DE 101 10 592 A1 known.
  • the insertion region is a continuous Anputzelfnabwinklung in the longitudinal direction, which is inserted into a present in the thermal insulation groove.
  • base rail made of sheet metal.
  • the base rail was angular in cross-section and was attached with its narrower leg on the wall of the house. The wider leg was used to support the underside of the insulation.
  • base rails which are bent at the outer end again upwards and there include the outside of the insulation for a lower edge region.
  • the known base rails represent a mechanically sound solution for the lower heat insulation completion, but form a cold bridge from the outside of the insulation to the house wall.
  • the invention has for its object to provide a way to design the lower end of the thermal insulation of a building, which is less expensive and has significantly reduced cold bridge effect or virtually no cold bridge effect.
  • the conventional, metallic socket rail is dispensed with. If you even provide mechanical supports for the underside of the insulation (and it does not leave in the anyway required attachment of the lower row of thermal insulation elements on the building wall), then you can work with a number of wall mounted, protruding from this holder , which are positioned for example at a mutual distance of 40 to 70 cm.
  • the holders can be made of metal or plastic. Even in the case of metal holders, thermal bridging is only a small fraction compared to a longitudinally continuous socket rail.
  • the thermal insulation is usually made of plate-like thermal insulation elements, in particular made of foamed polystyrene or fiber material, which has been made dimensionally stable by a binder.
  • the insertion area provided according to the invention serves, on the one hand, to fix the cleaning strip in its height-wise positioning during installation. Because of the "plugging into the material of the insulation inside” results on the other hand, a resistance against unintentional moving away of the first leg and thus the cleaning strip from the outside of the insulation after insertion.
  • a fixing mechanism is preferably additionally provided on the first leg (see below) and that in most cases the setting mechanism plays the role of the fixation mechanism only in the phase after the initial attachment of the cleaning strip to the thermal insulation single fixing mechanism.
  • the Cleaning strip in a later phase by means of applied plaster intensively connected to the thermal insulation.
  • the "plugging into the material of the thermal insulation into it" has the advantage that you do not have to create an insertion path in the thermal insulation beforehand.
  • the insertion region is in the form of a series of individual insertion projections. This facilitates insertion and increases resistance to re-extraction. The latter resistance can be further increased in the invention that it equips the Einsteckvorsprünge (not necessarily all of them) with barb-like function.
  • the first leg is configured to define its mounting position in relation to the underside of the thermal insulation. This is preferably a determination against solution movement of the cleaning strip in the direction of the outside of the thermal insulation away (ie a release movement in the plane of the bottom of the insulation), because indeed release movement of the cleaning strip is positively excluded from top to bottom by the insertion.
  • a simple, first way to fix the first leg is an adhesive tape on its top. There are adhesives that give good foamed polystyrene adhesion.
  • attaching the cleaning strip to the insulation is then best done so that the plaster strip applies while from below with the first leg against the underside of the insulation and then pushes the cleaning strip with the second leg to the outside of the insulation, until the insertion is brought into the insertion position, but z.
  • a further preferred possibility is that the first leg is tightly inserted into a gap between a holder supporting the thermal insulation from below (eg a holder from the row of holders referred to earlier) and the underside of the thermal insulation.
  • a holder supporting the thermal insulation from below eg a holder from the row of holders referred to earlier
  • the underside of the thermal insulation eg a holder from the row of holders referred to earlier
  • you can even provide for a positive component of the definition by z. B. equips the underside of the first leg with running in the longitudinal direction of the cleaning strip grooves and provides on the holder an upwardly projecting projection which fits into one of these grooves, which is located in the appropriate position. It is sufficient if this projection of the holder in question only slightly protrudes upwards, z. B. 0.3 to 0.7 mm.
  • a further preferred possibility is that the first leg is tightly inserted into a gap between the underside of the thermal insulation and the top of a further thermal insulation of the building, which adjoins the first-mentioned thermal insulation below.
  • a further thermal insulation of the building which adjoins the first-mentioned thermal insulation below.
  • This further thermal insulation is called perimeter insulation and is generally much thinner than the thermal insulation of the actual building wall.
  • the perimeter insulation is typically used to insulate the exterior of the basement walls of the building, with the perimeter insulation extending typically 15 to 40 cm above the level of the top of the earth.
  • a Arm michsgewebeabêt is attached to the first leg and / or the second leg of the cleaning strip.
  • the Arm michsgewebeabites is, typically with putty, attached to the underside or the outside of the thermal insulation, where in many cases further reinforcing fabric overlapping connects and attached to the relevant side of the thermal insulation by putty. Later, the Arm michsgewebeabêt or the subsequent reinforcing fabric are plastered over.
  • the Arm michsgewebeabêt or reinforcing fabric improve the adhesion of the plaster to the insulation and ensure a permanent crack-free maintenance of the plaster.
  • An Arm michsgewebeabêt on the first leg is only useful if it is to be applied plaster on the underside of the insulation. This is not always the case, especially if the first leg completely covers the entire thickness difference between the building wall thermal insulation and the perimeter insulation.
  • the first leg at a distance from the apex of the cleaning strip on a lower, longitudinal projection which can be used as a plaster boundary. This allows a more convenient plaster application in this area, as if one would apply plaster to the area of the top of the cleaning strip.
  • a water nose is provided in the region of the apex of the cleaning strip.
  • the water nose water which runs down the plaster on the outside of the heat insulation, a piece further down than the bottom of the first leg and there drained from a relatively narrow longitudinal edge of the cleaning strip. In this way, with the running water transported dirt no longer reaches adjacent building areas, especially the lower limit of thermal insulation.
  • the water nose can be made of transparent plastic, so that it is optically less conspicuous - since it is typically not covered with plaster on the outside.
  • the transparent Wassernasen Scheme can be prepared in particular by co-extrusion with the rest of the cleaning strip. But it is also possible to produce the transparent water nose as a separate part and to attach to the rest of the cleaning strip, in particular by welding or non-positive connection or positive connection, the latter preferably in the form of a snap connection.
  • the cleaning strip is preferably designed such that in the finished state of the building, the second leg is substantially embedded in plaster.
  • Fig. 1 is a cleaning strip 2 drawn, which - very roughly has an angular cross-sectional shape with in addition to be described below insertion region.
  • the cleaning strip 2 has as its essential components a first leg 4 (which is normally substantially horizontal when installed), a second leg 6 (which is normally substantially vertical when installed), an insertion area 8 parallel to the first one Leg 4 extends and projects in the same direction as the first leg 4 of the second leg 6, a projecting as a water nose 10 down the projection in the region of the apex, where the first leg 4 and the second leg 6 converge, and one with the help of Welding strands 11 reinforcing fabric portion 12 attached to the second leg 6.
  • the Arm istsgewebeabêt 12 typically consists of a grid-like arrangement of plastic-clad glass fiber strands.
  • the second leg has openings 14 for the passage of putty and / or plaster.
  • Fig. 2 illustrates this situation when the cleaning bar 2 of Fig. 1 is attached to a thermal insulation 16 of a building in the region of the transition between the underside 18 of the thermal insulation 16 and the outer side 20 of the thermal insulation 16.
  • a building wall 22 z. B. masonry or concrete.
  • the heat insulation 16 is attached, typically constructed of plate-shaped thermal insulation elements, in particular made of foamed polystyrene or made of binder with dimensionally stable fiber material.
  • the insulation 16 penetrating, poorly heat conductive stud provided.
  • the perimeter insulation 26 typically ends up 15 to 40 cm above the level of the soil surface on the building; it typically extends downwards for the entire height of the basement wall of the building.
  • a horizontally extending gap 30 typically has a vertically measured dimension of a maximum of 1 mm.
  • the cleaning strip 2 from the left in Fig. 2 attached.
  • the cleaning strip 2 is inserted with the free end 32 of its first leg 4 starting in the gap 30 between the Perimeterdämmung 26 and the insulation 16 and then approximated in the horizontal direction with its second leg 6 more and more outside 20 of the insulation 16.
  • a horizontally extending Einstecknut 34 is incorporated into the outer side 20 of the insulation 16, z. B. by a simple hand tool that works like a small saw and maintains a constant distance between the bottom 18 and the Einstecknut 34.
  • the Einstecknut 34 has a vertically measured width, typically 1 mm, which is less than the material thickness of the Einsteck Schemes 8 so that it sits after insertion into the Einstecknut 34 with bias therein.
  • Fig. 1 was also a connecting pin 40 with a central, circumferential collar 42 can be seen.
  • the cleaning strip 2 is supplied in a length of typically 1 to 2.5 m.
  • a pin 40 is inserted in the manner illustrated in order to align the two adjacent cleaning strip lengths in alignment with each other.
  • the insertion area 8 in the in Fig. 1 drawn training can be given a material thickness of typically just below 1 mm in an unprepared thermal insulation element simply push. However, such a pushing-in is made easier if the insertion area 8 is more strongly dissolved into individual insertion projections 44, for example as in FIG 3 and 4 shown.
  • the drawn tapering of the Einsteckvorsprünge 44 at the front end is favorable for easier insertion.
  • toothing 46 on the lateral flanks of the plug-in projections 44 provides a certain tooth engagement against re-moving out of the cleaning strip 4.
  • Fig. 3 drawn toothing 46 on the lateral flanks of the plug-in projections 44 provides a certain tooth engagement against re-moving out of the cleaning strip 4.
  • the shaping of the insertion projections 44 can not naturally take place during an extrusion process.
  • This training is generated either by a punch-like process or by a Ausschneidvorgang with a rotating tool.
  • Fig. 5 an embodiment is shown in which the thermal insulation 16, in addition to the adhesive 24, supported by along the wall 22 spaced-apart holder 50 from below.
  • the drawn holder is - at right angles to the plane of the drawing Fig. 5 measured - only z. B. 5 to 30 mm wide and is made of metal or - because of lower thermal conductivity - made of plastic.
  • the drawn holder 50 is less long than the thermal insulation 16 is thick.
  • the free end of the holder 50 has a small projection 52 which z. B. 0.3 to 0.7 mm above the remainder of the top of the holder 50 protrudes.
  • FIG. 5 shows the situation after attachment of the holder 50 to the building wall 22 and after attachment of the lowermost row of thermal insulation elements is in Fig. 6 the later state after attachment of the cleaning strip 2 drawn.
  • the cleaning strip 2 is formed as through the Fig. 1 to 4 illustrated, however, with the difference that the first leg 4 has on its underside a series of spaced grooves 54 which extend in the longitudinal direction of the cleaning strip 2.
  • the first leg 4 of the cleaning strip 2 between the holder 50 and the bottom 18 of the insulation 16 is inserted so far that the projection 52 of the holder 50 just snaps into a groove 54, thereby a positive fixing of the cleaning bar 2 against re-extraction reached.
  • this form-fitting definition does not withstand greater forces (which on the other hand is advantageous for a comfortable insertion of the first leg 4), but is completely sufficient for the desired effects here.
  • Fig. 7 has the cleaning strip 2 at the bottom of the first leg 4 a along the cleaning strip 2 extending, downwardly projecting projection 56, which is at a distance from the apex of the cleaning strip 2, where the first leg 4 and the second leg 6 converge.
  • a reinforcement fabric portion 58 is attached to the first leg 4.
  • Such a trained cleaning strip 2 is advantageous if there is no perimeter insulation 26 below the thermal insulation 16.
  • the area between the projection 56 and the house wall 22 can be plastered optimally. It is emphasized that one can also work with Arm michsgewebeabêt 58 but without projection 56; In this case, it is just plastered to the apex area of the cleaning strip 2, as well as in Fig. 2 drawn for the second leg 6.
  • Preferred materials for the cleaning strip 2 with its first leg 4, its second leg 6, its insertion region 8 and the water nose 10 are polyvinyl chloride (PVC), polystyrene (PS) and polypropylene (PP). If the water nose 10 is made of transparent plastic, in particular polycarbonate (PC), polymethyl methacrylate (PMMA) and transparent PVC are considered.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)

Claims (14)

  1. Structure d'isolation thermique contre la zone terminale inférieure d'une isolation thermique (16) appliquée sur le côté externe d'un mur de bâtiment (22), présentant :
    une isolation thermique (16) ;
    et une baguette pour crépi (2) appliquée contre l'isolation thermique (16) dans la zone de la transition entre son côté inférieur (18) et son côté externe (20), qui présente une première branche (4) qui chevauche au moins une partie du côté inférieur (18) de l'isolation thermique (16) et une deuxième branche (6) qui chevauche une partie du côté externe (20) de l'isolation thermique (16) ;
    dans laquelle la baguette pour crépi (2) présente une zone d'enfichage (8) qui fait saillie à partir du côté de la deuxième branche (6), tourné vers l'isolation thermique (16) ;
    caractérisée en ce que
    la zone d'enfichage (8) présente une série de saillies d'enfichage individuelles (44) qui sont enfichées à partir du côté externe de l'isolation thermique (16) à l'intérieur de la matière de l'isolation thermique (16).
  2. Structure d'isolation thermique selon la revendication 1, caractérisée en ce que les saillies d'enfichage (44) sont munies d'une fonction analogue à celle d'une barbe.
  3. Structure d'isolation thermique selon la revendication 1 ou 2, caractérisée en ce que, entre la première branche (4) et le côté inférieur (18) de l'isolation thermique (16), on prévoit des moyens actifs qui fixent la position d'application de la première branche (4) par rapport au côté inférieur (18) de l'isolation thermique (16).
  4. Structure d'isolation thermique selon la revendication 3, caractérisée en ce que, entre le côté supérieur de la première branche (4) et le côté inférieur (18) de l'isolation thermique (16), on prévoit un ruban adhésif.
  5. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 4, caractérisée en ce que, entre la deuxième branche (6) et le côté externe (20) de l'isolation thermique (16), on prévoit un ruban adhésif.
  6. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 5, caractérisée en ce que la première branche (4) vient s'enficher en ajustage serré dans une fente (30) entre un support (50) supportant l'isolation thermique (16) à partir du bas et le côté inférieur de l'isolation thermique (16).
  7. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 6, caractérisée en ce que, à titre de support pour le côté inférieur de l'isolation thermique (16), on prévoit une série de supports (50) fixés au mur (22) du bâtiment, qui font saillie par rapport au mur en question.
  8. Structure d'isolation thermique selon la revendication 7, caractérisée en ce que les supports (50) sont constitués d'une matière synthétique.
  9. Structure d'isolation thermique selon les revendications 6 et 7, ou selon les revendications 6 et 7 et 8, caractérisée en ce que le support (50) mentionné à la revendication 6 représente un support (50) faisant partie de la série de supports (50) mentionnée à la revendication 7.
  10. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 9, caractérisée en ce que la première branche (4) vient s'enficher en ajustage serré dans une fente (30) entre le côté inférieur (18) de l'isolation thermique (16) et le côté supérieur (28) d'une isolation thermique supplémentaire (26) du bâtiment (22) qui se raccorde par le bas à l'isolation thermique (16) mentionnée en premier lieu.
  11. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 10, caractérisée en ce qu'une partie sous la forme d'un treillis d'armure (58) est fixé à la première branche (4) et/ou à la deuxième branche (6).
  12. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 11, caractérisée en ce que la première branche (4) présente, à distance du sommet de la baguette pour crépi (2), une saillie inférieure (56) s'étendant en direction longitudinale, qui peut être utilisée à titre de délimitation du crépi.
  13. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 12, caractérisée en ce que, dans la zone du sommet de la baguette pour crépi (2), on prévoit une goutte-d'eau (10), de préférence constituée d'une matière synthétique transparente.
  14. Structure d'isolation thermique selon l'une quelconque des revendications 1 à 13, caractérisée en ce que, à l'état achevé du bâtiment (22), la seconde branche (6) est essentiellement incorporée dans le crépi.
EP07009933.8A 2006-05-19 2007-05-18 Structure d'isolation thermique à un mur de bâtiment avec une baguette pour plâtre Active EP1857606B8 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE200610023625 DE102006023625A1 (de) 2006-05-19 2006-05-19 Putzleiste zur Anbringung am unteren Ende einer Gebäude-Wärmedämmung

Publications (4)

Publication Number Publication Date
EP1857606A2 EP1857606A2 (fr) 2007-11-21
EP1857606A3 EP1857606A3 (fr) 2011-06-15
EP1857606B1 true EP1857606B1 (fr) 2017-09-27
EP1857606B8 EP1857606B8 (fr) 2017-11-01

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DE (1) DE102006062701A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109057223A (zh) * 2018-08-06 2018-12-21 上海林音实业发展有限公司 一种挂板结构及其挂设工艺
EP3744922A1 (fr) 2019-04-11 2020-12-02 K-Uni Kunststoffproduktions- und Handels-GmbH Baguette pour plâtre avec larmier transparent

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Publication number Priority date Publication date Assignee Title
DE102007048311B4 (de) * 2007-10-09 2022-08-11 August Braun Anputzleiste für den Übergang zwischen einem Fensterrahmen oder Türrahmen und einer Wärmedämmung
CZ305691B6 (cs) 2009-06-25 2016-02-10 Mateiciuc A.S. Ukončovací sada zateplovacího systému a způsob její aplikace
CN101858133B (zh) * 2010-06-29 2011-11-16 易科美德(天津)环保建材有限公司 插接式低碳保温节能板的墙体连接件
FR3022275B1 (fr) * 2014-06-12 2018-11-09 Dani Alu Rail pour la pose d’isolant sur une facade exterieure de batiment
DE102015110391A1 (de) * 2015-06-29 2016-12-29 August Braun Kunststoff-Putzleiste sowie Dämmabschluss-Kunststoff-Sockelleiste
DE102015213173A1 (de) * 2015-07-14 2017-01-19 Ejot Baubefestigungen Gmbh Klaue zur Lasteinleitung in die Wärmedämmung eines Gebäudes
CN111608365A (zh) * 2020-05-23 2020-09-01 金华市海日家居用品有限公司 一种室内墙面装修板材的安装方法

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DE29607346U1 (de) * 1996-04-23 1996-07-11 Jörder, Rolf, 68753 Waghäusel Anschlußprofil zwischen Fensterrahmen und Mauerwerksputz im Bereich einer Fensterlaibung
DE20102849U1 (de) * 2001-02-21 2002-07-04 MARMORIT GmbH, 79283 Bollschweil Dämmung für eine Gebäudewand
AT6818U1 (de) * 2003-05-15 2004-04-26 Kassmannhubr Peter Sockelprofilleiste für dämmplatten einer gebäudedämmung
DE20319109U1 (de) * 2003-12-10 2005-05-12 Knauf Marmorit Gmbh Dämmung für eine Gebäudewand

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109057223A (zh) * 2018-08-06 2018-12-21 上海林音实业发展有限公司 一种挂板结构及其挂设工艺
EP3744922A1 (fr) 2019-04-11 2020-12-02 K-Uni Kunststoffproduktions- und Handels-GmbH Baguette pour plâtre avec larmier transparent

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EP1857606B8 (fr) 2017-11-01
EP1857606A2 (fr) 2007-11-21
DE102006062701A1 (de) 2007-12-13
EP1857606A3 (fr) 2011-06-15

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