EP1918469B1 - Système de raccordement d'isolation thermique - Google Patents

Système de raccordement d'isolation thermique Download PDF

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Publication number
EP1918469B1
EP1918469B1 EP07020665A EP07020665A EP1918469B1 EP 1918469 B1 EP1918469 B1 EP 1918469B1 EP 07020665 A EP07020665 A EP 07020665A EP 07020665 A EP07020665 A EP 07020665A EP 1918469 B1 EP1918469 B1 EP 1918469B1
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EP
European Patent Office
Prior art keywords
heat insulation
insulation system
composite heat
locking element
groove
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
EP07020665A
Other languages
German (de)
English (en)
Other versions
EP1918469A3 (fr
EP1918469A2 (fr
Inventor
Martin Horvath
Wolfgang Dr. Wimmer
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.)
Saint Gobain Weber Terranova GmbH
Original Assignee
Saint Gobain Weber Terranova GmbH
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 Saint Gobain Weber Terranova GmbH filed Critical Saint Gobain Weber Terranova GmbH
Publication of EP1918469A2 publication Critical patent/EP1918469A2/fr
Publication of EP1918469A3 publication Critical patent/EP1918469A3/fr
Application granted granted Critical
Publication of EP1918469B1 publication Critical patent/EP1918469B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • E04B1/762Exterior insulation of exterior walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/62Insulation or other protection; Elements or use of specified material therefor
    • E04B1/74Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
    • E04B1/76Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls specifically with respect to heat only
    • E04B1/78Heat insulating elements
    • E04B1/80Heat insulating elements slab-shaped

Definitions

  • the invention relates to a thermal insulation composite system, in particular a thermal insulation composite system with mineral fiber insulation board according to the preamble of patent claim 1, and a method for training the same according to the preamble of claim 26.
  • Thermal insulation systems with rigid foam insulation boards or mineral fiber insulation boards with horizontal or vertical fibers are usually glued on the building wall and possibly additionally pegged.
  • thermal insulation systems for example for passive houses, are designed with very thick insulation boards.
  • open joints between the insulation boards are created by tilting, if they are not aligned exactly plane-parallel.
  • joints between the insulation boards can reduce the thermal insulation.
  • the joints must be additionally sealed or it must be provided a joint-free training by careful alignment of the insulation boards. This creates high additional workload.
  • Object of the present invention is to provide a thermal insulation composite system that is easy and safe to lay in the field of building corners and is inexpensive.
  • the object of the invention is achieved by a thermal insulation composite system according to claim 1.
  • the object is also achieved by a method according to claim 26.
  • thermal insulation composite system combines functional advantages with technological advantages. Due to the virtually seamless design of the thermal insulation composite system, for example, thermal bridges are avoided, which can be formed by introduced in joints adhesive or mortar or by floor extensions in the case of tilting the insulation boards. The introduction of the locking elements saves compared to the grouting working time, increases the processing safety and is also executable by less qualified personnel quality.
  • Another advantage is that the grooves introduced into the insulation boards facilitate the handling of the large-sized insulation boards on the construction site, for example, by the grooves are used as gripping surfaces.
  • the locking element is formed in a form-fitting manner in cross section to the overlapping space.
  • the locking element extends in its longitudinal extent over the entire longitudinal extension of the receiving space. Still further advantageously, it can be provided that the locking element extends in its longitudinal extent over the longitudinal extent or over the height extent of a plurality of insulating panels or at least exceeds the longitudinal extension or the vertical extent of an insulating panel. In this way, adjacent insulation boards can be as it were interlocked with each other.
  • the groove is rectangular in cross-section.
  • the groove is rounded in cross section, preferably semi-circular.
  • the cross section of the locking element may be formed corresponding thereto. But it can also be provided to form the locking element with a deviating from the cross section of the groove cross-section. For example, it may be provided to provide the surfaces of the locking element which run parallel to the joining direction with teeth which are directed so that they rest on joining and on opposite sides Erect stress and wed in the groove.
  • the groove in the front side extends longitudinally in a vertical plane or in a horizontal plane.
  • the groove may extend over the entire longitudinal extent or the entire width extent of the end face.
  • the groove is formed in the lateral vertical end face.
  • the groove may also be formed in the lower or upper horizontal end face.
  • the groove is formed as a circumferential groove of the insulation board.
  • the grooves forming the receiving space each have the same cross section.
  • the grooves forming the receiving space each have the same longitudinal extension.
  • the locking element is designed as an elongate body, preferably as a rod, longitudinal profile or the like.
  • the locking element may also be referred to as a so-called false spring, as provided in a special embodiment of the tongue and groove connection.
  • the locking element is designed as a plate-shaped body.
  • the locking element is designed as a cut-to-length body.
  • the receiving spaces of a plurality of arranged in a horizontal row insulation panels or more vertically stacked insulation panels form a composite receiving space and extending the locking element or a plurality of successively arranged locking elements over the entire longitudinal extension of the composite receiving space or extend.
  • the length of the bolt elements is dimensioned so that the receiving space is completely filled.
  • the vertical bar elements i. the locking elements, which are arranged in the receiving spaces formed by the grooves of the lateral end faces, are arranged as a continuous strand, then it can be provided to cut off the horizontally extending locking elements in each case to the clear distance between two adjacent strands.
  • it can be provided to cut off the vertically extending locking elements in each case on the clear distance between two horizontally extending strands, wherein the horizontally extending locking elements are arranged as a continuous strand.
  • the locking elements can also be provided to form the locking elements in two lengths, wherein the first length of the width or the height of the insulating board corresponds and the second length corresponds to the height or the width of the insulating board minus the groove depth.
  • angularly formed insulation boards are arranged with circumferential groove, wherein the angle between the two legs of the insulation board corresponds to the angle of the building corner.
  • the angle between the two legs of the insulation board is 90 °.
  • Such an L-shaped insulation board can be used both for thermal insulation of outside corners and inside corners.
  • each of the insulating panels has a circumferential groove which is introduced into the end faces. If such an insulation board is cut to length, then at least one end face of the cut insulation board no longer has a groove or it has a groove which is reduced in depth. If the introduction of the groove is preferably provided during the plate production, can be further provided to produce half and quarter plates or plates in a different denomination and provided with circumferential groove to cover on the site without rework almost any lengths can.
  • the cutting to length of the insulating board can also be provided for the plate height, for example, to be able to adapt the last row of insulating boards to the dimensions of the building wall.
  • the insulation board has a plate format of about 1000 mm x 500 mm. But it can also be provided smaller or larger plate dimensions, without departing from the inventive principle.
  • the insulation board has a thickness ⁇ 150 mm.
  • the insulation board is designed as a rigid foam insulation board.
  • the rigid foam may preferably be polystyrene rigid foam. It can also be provided other foamed plastics, such as Poyurethan or phenolic resin. But it can also be provided to form the insulation board of inorganic insulating material, such as mineral fibers or organic insulation material, such as sisal, hemp, straw or cork. It may be provided if necessary, the introduced into the insulation board grooves by a binder form stable.
  • the locking element is formed of the same material as the insulating board.
  • the locking element is formed of a different material than the insulation board.
  • the locking element has a lower thermal conductivity than the insulating board.
  • the locking element is designed as a rigid foam element.
  • other insulating materials may be provided, as described above for the insulation board.
  • Fig. 1 shows an insulation board 1 of the thermal insulation composite system outside of in FIG. 3 illustrated Eck reference invention.
  • the insulation board 1 is formed as a rectangular flat body and has in the illustrated embodiment, a front dimension of 1000 mm x 500 mm, and a plate thickness of 300 mm. It may preferably be formed as rigid foam insulation board.
  • the rigid foam may preferably be made of Polystyrene foam. But it may also be an insulation board made of mineral fibers or other insulating material.
  • the insulation board 1 has at each of its end faces a groove 2, which is rectangular in cross-section, so that the grooves 2 form a circumferential groove.
  • the insulation boards 1 are, as in Fig. 2 shown arranged in horizontal rows butt-to-joint on a building wall 5, ie they are arranged without forming a joint.
  • the opposing grooves overlap mutually facing end faces and form in their overlap space a receiving space for a locking element 4.
  • the cross section of the locking element 4 is dimensioned so that it completely fills the overlap space of the two adjacent grooves 2.
  • the overlap space thus forms a complementary to the locking element 4 formed receiving space in which the locking element 4 is received positively.
  • the positive connection formed by the locking element 4 could also be referred to as tongue and groove connection, wherein the locking element 4 can be referred to as a "false spring".
  • the locking element 4 can be arranged on all faces of the insulation board 1 and thereby connect the insulation board 1 with both horizontally adjacent and with vertically adjacent further insulation boards form fit.
  • the locking element 4 may be formed from the same insulating material as the insulation board 1, so for example made of rigid foam or mineral fiber insulation. But it can also be provided for a different insulating material to the insulating board 1, preferably an insulating material whose thermal insulation is higher than the thermal insulation of the board insulation material. In this way, thermal bridges are avoided particularly well, which can reduce the insulating effect of the thermal insulation composite system at least locally.
  • a composite thermal insulation system 10 is shown, in which the insulation panels 1 are arranged on a building wall 5.
  • the building wall 5 is the outer wall of a building, the outer plaster already has plaster damage.
  • the consequently uneven building wall is characterized by an in Fig. 2 Not shown adhesive layer leveled so that the insulation boards 1 form an insulating layer with a flat surface.
  • dowels may be provided for fastening the insulation boards, which in particular improve the adhesive strength of the insulation boards under exceptional load, for example in vacuum formation on the board surface by storm.
  • thermal insulation composite system 10 results from the fact that the insulation panels 1 in horizontal rows, beginning at the bottom row, are fixed on the building wall 5.
  • the inserted between a series adjacent insulation boards vertical locking elements are used to secure the vertically aligned alignment with the next up and down following rows, with the inserted into the upper horizontal groove of said row horizontal locking elements the alignment of the insulating panels of a row and the Secure the front-facing alignment of the insulation boards in the next row up and down.
  • Fig. 3 now shows the inventive construction of a right-angled corner 6 in the thermal insulation composite system 10. It is an external corner.
  • an adhesive layer 7 is applied, which fixes the insulation board 1 and an insulation board 1' on the building wall 5 and 5 '.
  • the front side 1 s of the building wall 5 mounted on the insulating panel 1 is aligned with the outside of the building wall 5 'applied adhesive layer 7, so that the building wall 5' facing the back front side of the insulation board 1 'in a plane with the end face of the insulation board 1 and the outside of the adhesive layer 7 extends, wherein the end face of the insulating board 1 is aligned with the front side front side of the insulating board 1.
  • a groove 2o is introduced, which is arranged in the end face of the insulating board 1 formed groove 2 opposite and in cross section the same as the groove 2 is formed.
  • the overlapping space formed by the two grooves 2, 2o forms a receiving space in which the vertically extending locking element 4 is inserted in a form-fitting manner.
  • the introduced into the back plate surface groove 2o can be introduced either on site or during the insulation board production.

Landscapes

  • Physics & Mathematics (AREA)
  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Acoustics & Sound (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • Other Investigation Or Analysis Of Materials By Electrical Means (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)
  • Load-Bearing And Curtain Walls (AREA)

Claims (26)

  1. Système de raccordement d'isolation thermique (10) avec des panneaux isolants (1, 1') de préférence parallélépipédiques, disposés sur une paroi de bâtiment (5, 5') en rangées horizontales agencées verticalement les unes au-dessus des autres, qui sont contigus respectivement les uns aux autres sur des faces avant latérales verticales et/ou horizontales et sont fixés par une surface frontale côté arrière tournée vers la paroi de bâtiment (5, 5') à l'aide de colle et/ou de cheville sur la paroi de bâtiment (5, 5'),
    des panneaux isolants contigus (1, 1') d'une rangée et/ou des panneaux isolants contigus se trouvant verticalement les uns au-dessus des autres présentant sur des côtés avant tournés les uns vers les autres respectivement une rainure (2) et les rainures (2) étant réalisées de sorte qu'elles recouvrent des côtés avant tournés les uns vers les autres et forment dans leur espace de recouvrement une zone de réception, dans laquelle est disposé un élément de verrouillage (4), dont la section transversale est réalisée de manière complémentaire à la zone de réception,
    caractérisé en ce
    que dans ou sur des coins de bâtiment (6) sont disposés en angle un premier et un second panneaux isolants, la section de bord côté arrière ou côté avant de la surface frontale du premier panneau isolant (1') étant en engagement avec le côté avant contigu du second panneau isolant (1) par le biais d'un élément de verrouillage (4) tandis que la section de bord concernée de la surface frontale du premier panneau isolant (1') présente une rainure (20) complémentaire à la rainure (2) contiguë du second panneau isolant (1) et l'élément de verrouillage (4) s'engage positivement dans la zone de recouvrement formée par les deux rainures (2, 20).
  2. Système de raccordement d'isolation thermique selon la revendication 1,
    caractérisé en ce
    que la section transversale de l'élément de verrouillage (4) est réalisée positivement par rapport à l'espace de recouvrement.
  3. Système de raccordement d'isolation thermique selon la revendication 1 ou 2,
    caractérisé en ce
    que l'élément de verrouillage (4) dans son extension longitudinale s'étend sur toute l'extension longitudinale de l'espace de réception.
  4. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la section transversale de la rainure (2, 2o) est réalisée de manière rectangulaire.
  5. Système de raccordement d'isolation thermique selon l'une quelconque des revendications 1 à 4,
    caractérisé en ce
    que la section transversale de la rainure (2r) est réalisée de manière arrondie, de préférence demi-ronde.
  6. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la rainure (2) dans le côté avant s'étend en longueur dans un plan vertical ou dans un plan horizontal.
  7. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la rainure (2) s'étend sur toute l'extension longitudinale ou toute l'extension de largeur du côté avant.
  8. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la rainure (2) est réalisée dans le côté avant vertical latéral.
  9. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la rainure (2) est réalisée dans le côté avant horizontal inférieur ou supérieur.
  10. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que la rainure (2) est réalisée comme une rainure faisant le tour du panneau isolant.
  11. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que les rainures (2, 2r, 2o) formant l'espace de réception présentent chacune une section transversale identique.
  12. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que les rainures (2, 2r, 2o) formant l'espace de réception ont chacune une extension longitudinale identique.
  13. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que l'élément de verrouillage (4, 4') est réalisé comme un corps oblong, de préférence comme une tige, un profilé longitudinal ou similaires.
  14. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que l'élément de verrouillage (4) est réalisé comme un corps en forme de plaque.
  15. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que l'élément de verrouillage (4) est réalisé comme un corps pouvant être coupé à longueur.
  16. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que les espaces de réception de plusieurs panneaux isolants (1, 1') disposés dans une rangée horizontale ou de plusieurs panneaux isolants (1, 1') disposés verticalement les uns au-dessus des autres forment un espace de réception composé et l'élément de verrouillage (4) ou plusieurs éléments de verrouillage (4) disposés les uns derrière les autres s'étendent sur toute l'extension longitudinale de l'espace de réception composé.
  17. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que des panneaux isolants réalisés en angle avec une rainure rotative sont disposés dans ou sur des coins de bâtiment (6), l'angle entre les deux côtés de panneau isolant correspondant à l'angle du coin de bâtiment (6).
  18. Système de raccordement d'isolation thermique selon la revendication 17,
    caractérisé en ce
    que l'angle entre les deux côtés de panneau isolant s'élève à 90°.
  19. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que le panneau isolant (1, 1') présente un format de panneau d'environ 1 000 mm x 500 mm.
  20. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que le panneau isolant (1, 1') présente une épaisseur de 150 mm.
  21. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que le panneau isolant (1, 1') est réalisé comme un panneau isolant en mousse de polyuréthane dure.
  22. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que l'élément de verrouillage (4) est réalisé dans le même matériau que le panneau isolant (1, 1').
  23. Système de raccordement d'isolation thermique selon l'une quelconque des revendications 1 à 21,
    caractérisé en ce
    que l'élément de verrouillage (4) est réalisé dans un autre matériau que le panneau isolant (1, 1').
  24. Système de raccordement d'isolation thermique selon la revendication 23,
    caractérisé en ce
    que l'élément de verrouillage (4) présente une conductibilité thermique plus faible que le panneau isolant (1, 1').
  25. Système de raccordement d'isolation thermique selon l'une quelconque des revendications précédentes,
    caractérisé en ce
    que l'élément de verrouillage (4) est réalisé comme un élément en mousse de polyuréthane dure.
  26. Procédé de réalisation d'un système de raccordement d'isolation thermique (10) avec des panneaux isolants (1, 1') en forme de plaque disposés sur une paroi de bâtiment (5, 5') en rangées horizontales avec une surface frontale rectangulaire, qui sont fixés à l'aide de colle et/ou de cheville sur la paroi de bâtiment (5, 5'), étant prévu que
    sur les côtés avant latéraux de panneaux isolants contigus (1, 1') et sur le côté avant supérieur de panneaux isolants (1, 1') soient enfichés des éléments de verrouillage (4) dans des rainures (2) réalisées dans ces côtés avant,
    une première rangée de panneaux isolants (1, 1') assemblés bout à bout soit collée et/ou chevillée à la paroi de bâtiment (5, 5'),
    caractérisé en ce
    que sur la première rangée de panneaux isolants (1 1') est disposée une seconde rangée de panneaux isolants (1, 1') bout à bout sur la paroi de bâtiment (5, 5') de telle manière que les éléments de verrouillage (4) disposés dans des rainures (2) sur le côté avant supérieur des panneaux isolants (1, 1') de la première rangée s'engagent dans les rainures (2) sur le côté avant inférieur des panneaux isolants (1, 1') de la seconde rangée, les panneaux isolants (1, 1') étant collés et/ou chevillés à la paroi de bâtiment (5, 5') ; et
    pour le recouvrement d'un coin de bâtiment (6, 6') de préférence rectangulaire sont disposés en angle un premier panneau isolant (1') et un second panneau isolant (1'), la section de bord côté arrière de la surface frontale du premier panneau isolant (1') étant amenée en engagement avec le côté avant latéral contigu du second panneau isolant (1) par le biais d'un élément de verrouillage (4), tandis que la section de bord concernée de la surface frontale du premier panneau isolant présente une rainure (20) complémentaire à la rainure contiguë (2) du second panneau isolant (1) et l'élément de verrouillage (4) est introduit positivement dans les zones de recouvrement formées par les deux rainures (2, 20).
EP07020665A 2006-10-24 2007-10-23 Système de raccordement d'isolation thermique Not-in-force EP1918469B1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102006050046A DE102006050046A1 (de) 2006-10-24 2006-10-24 Wärmedämmverbundsystem

Publications (3)

Publication Number Publication Date
EP1918469A2 EP1918469A2 (fr) 2008-05-07
EP1918469A3 EP1918469A3 (fr) 2008-09-10
EP1918469B1 true EP1918469B1 (fr) 2010-12-01

Family

ID=38943300

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07020665A Not-in-force EP1918469B1 (fr) 2006-10-24 2007-10-23 Système de raccordement d'isolation thermique

Country Status (3)

Country Link
EP (1) EP1918469B1 (fr)
AT (1) ATE490374T1 (fr)
DE (2) DE102006050046A1 (fr)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN102505777B (zh) * 2011-10-16 2016-01-06 张宗楼 大型水平孔复合夹心保温墙板保温体系
DE102017108138A1 (de) * 2017-04-16 2018-10-18 Wilhelm Brohlburg Kunststoff- und Kaschierwerke GmbH & Co. KG Gefälle-Isolierplatte

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1223256A (en) * 1967-04-26 1971-02-24 Electro Chem Eng Improvements relating to electroplating
DE7811987U1 (de) * 1978-04-20 1978-08-10 Vki-Rheinhold & Mahla Ag, 6800 Mannheim Bauplatte, insbesondere daemmplatte
DE8523833U1 (de) * 1985-08-20 1985-10-31 Lehr, Helmut, 7152 Aspach Vorrichtung zum Isolieren einer durch Außenwandflächen gebildeten Ecke
DE20221262U1 (de) * 2001-08-23 2005-09-15 Rockwool Mineralwolle In einem hinterlüfteten Wärmedämmverbundsystem verwendbare Dämmplatte
DE20114262U1 (de) * 2001-08-29 2001-10-31 Schmidt, Peter, 39326 Meitzendorf Profilierte Dämmplatte
DE202006004169U1 (de) * 2006-03-14 2006-08-17 Vaku-Isotherm Gmbh Wärmedämmsystem mit Vakuumisolationspaneelen in Sandwichbauweise

Also Published As

Publication number Publication date
DE102006050046A1 (de) 2008-05-08
EP1918469A3 (fr) 2008-09-10
ATE490374T1 (de) 2010-12-15
DE502007005825D1 (de) 2011-01-13
EP1918469A2 (fr) 2008-05-07

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