EP1878840B1 - Elément pour l'isolation thermique entre deux parties coulées en béton d'un bâtiment - Google Patents

Elément pour l'isolation thermique entre deux parties coulées en béton d'un bâtiment Download PDF

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Publication number
EP1878840B1
EP1878840B1 EP07011242A EP07011242A EP1878840B1 EP 1878840 B1 EP1878840 B1 EP 1878840B1 EP 07011242 A EP07011242 A EP 07011242A EP 07011242 A EP07011242 A EP 07011242A EP 1878840 B1 EP1878840 B1 EP 1878840B1
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EP
European Patent Office
Prior art keywords
connecting elements
insulating member
transverse force
structural
structural element
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Active
Application number
EP07011242A
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German (de)
English (en)
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EP1878840A2 (fr
EP1878840A3 (fr
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.)
Schoeck Bauteile GmbH
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Schoeck Bauteile GmbH
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Application filed by Schoeck Bauteile GmbH filed Critical Schoeck Bauteile GmbH
Priority to PL07011242T priority Critical patent/PL1878840T3/pl
Publication of EP1878840A2 publication Critical patent/EP1878840A2/fr
Publication of EP1878840A3 publication Critical patent/EP1878840A3/fr
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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
    • E04B1/003Balconies; Decks
    • E04B1/0038Anchoring devices specially adapted therefor with means for preventing cold bridging

Definitions

  • the invention relates to a device for thermal insulation between two components to be concreted according to the preamble of claim 1.
  • the components of this type are used, for example, to connect two wall elements, so for example a cantilevered balcony with a false ceiling of a building.
  • this component it is possible to eliminate the usually occurring thermal bridges. The forces occurring are transmitted through the integrated reinforcing elements through the insulating body to the other component.
  • the reinforcing elements do not transmit horizontal shear forces but only corresponding tensile, compression and vertical shear forces. For this reason, the reinforcing elements extend almost exactly perpendicular to the longitudinal plane of the insulating body.
  • the reinforcing elements are usually set with a parallel to the insulating body extending distributor rod by welding in the desired position, so that the reinforcing elements remain relatively or within the insulator not only during transport, but also on the construction site according to their orientation.
  • a disadvantage of this arrangement is that the complete component must already be prefabricated. This requires in addition to setting the dimensions of the insulator and the manufacturer's assembly and dimensioning of the reinforcing elements. Due to the very different requirements in different buildings, this is associated with a significant manufacturing and storage costs.
  • the insulating body in the EP 0 831 183 B1 formed divided, with transverse force rods - can be fixed by means of a built-in module in the insulating - because of the omission of welded distribution bars.
  • the parting plane is arranged so that these recesses traversed for the built-in modules and that accordingly the built-in modules can be inserted and fixed in a lsolierMechhtag in the corresponding recess.
  • a major disadvantage of such a device is that the respective insulator halves must still be glued together after the insertion of the module. This significantly increases the assembly time of the entire component, because first the adhesive has to be applied consuming to the corresponding contact surfaces. After that, the adhesive has to cure for a longer time before the entire component can be further processed or delivered to the construction site.
  • the present invention seeks to improve the component for thermal insulation in terms of its mountability.
  • the built-in module comprises connecting elements and can be fixed by these connecting elements to the partial bodies of the insulating body and the partial body on the installation module and its connecting elements are fixed to each other.
  • a downwardly extending from the mounting module lower connecting element provides for a connection with the lower part of the body and in a corresponding manner on the top of the module upwardly extending connecting element for connection to the upper body part.
  • each partial body can be plugged onto the installation module and its connecting element and thus indirectly fixed to the respective other partial body. Bonding is just as little necessary as waiting times for the curing of the adhesive; Rather, the component mounted in this way can be further transported or further processed without any waiting time.
  • the built-in module surrounds the transverse force rod in its oblique course through the insulating body. By fixing the transverse force rod by the installation module prevents the transverse force rod is rotated with its angled course within the insulator.
  • the connecting element is rod-shaped or tubular. This simplifies the insertion of the connecting elements into the insulating body, for which the insulating body expediently has recesses which are adapted to the dimensions of the connecting elements and can accommodate them for insertion and fixing of the mounting element.
  • the connecting elements advantageously have barb-like projections which catch them on the partial body acted upon by them. It is best, of course, if the barbs are arranged so inclined relative to the connecting elements, that they favor the insertion of the connecting element in the respective body part, but prevent its withdrawal.
  • the recess has a region with an enlarged cross section, which is arranged in particular in the region of the upper side of the upper part body and the underside of the lower part body.
  • the barb-like projections in this area spread so far out that they have a larger cross section than the recess in the area of smaller cross section; and so the last barb-like projections which extend into the region of the recess with increased cross-section, the fasteners set particularly well due to a permanent and large-scale positive engagement.
  • the connecting element extends in the vertical direction, in particular in the middle region of the insulating body between the two components. This results in the advantage according to the invention that the structure can be kept relatively simple and that the guide within the insulating can be made quite easily.
  • FIG. 1 an inventive element 1 for thermal insulation is shown in a schematic side view.
  • the component 1 serves to be arranged between two components A, B, which are usually produced after the positioning of the component 1 on the construction site made of concrete.
  • the component 1 has reinforcing elements 2, namely transverse force rods 2, which, starting from the (in FIG. 1 Right) component B obliquely from top to bottom passing through an insulating body of the device 1 and project there in the lower part in the component A.
  • the transverse force rods 2 are surrounded in a region 2 a of their oblique course within the component 1 of a built-in module 4, which is for ensures that the contact area of the transverse force rod 2 on the component 1 is increased.
  • the installation module 4 consists of a plastic material which has a greater hardness than the insulating body.
  • An integral part of the component 1 is the insulating body 3 made of a foamed insulating material.
  • This insulator 3 is according to the embodiment FIG. 1 divided into an upper portion 3a and a lower portion 3b, wherein the dividing line between the two sections 3a, 3b extends horizontally to allow its insertion into the insulating body 3 and thus into the device 1.
  • connecting elements 5 are provided, which extends from the installation module 4 in the vertical direction - in the case of a connecting element 5a - upwards through the insulating body 3a and a recess or bore 6a provided in this up to a region of the recess with enlarged cross section 6c.
  • the connecting element 5a is fixed by barbs on barb-like projections 5c on the part body 3a.
  • a lower connecting element 5b which extends through a lower recess 6b or bore, which is provided in the lower part body 3b, to a region of enlarged cross-section 6d and barb-like projections 5d fixed to the lower part body 3b by latching.
  • connecting element 5 a, 5 b ensures mutual fixing of transverse force rod 2 and insulator 3 a, 3 b, the two part body 3 a, 3 b are fixed captive. Accordingly, transverse force rod 2, installation module 4, connecting element 5a and connecting element 5b form a skeleton crossing and stiffening the component 1, which supports and fixes the non-supporting or hardly supporting part bodies 3a, 3b.
  • FIG. 2 shows in perspective the aforementioned skeleton of the component 1 with the built-in module 4 and illustrates due to the perspective view of the Structure of the connecting elements 5a, 5b, which are integrally formed on the mounting module (which, of course, could also be attached to the mounting module or connected in any other way):
  • Two lateral, vertically extending legs 16a, 16b are interconnected via a common base 16c Block shape connected, wherein on the two legs 16a, 16b, said barb-like projections 5c are arranged.
  • the uppermost of the projections is important in the case of the upper connecting element 5a, since it is located in the region outside the recess 6a, namely in a region of the recess with an enlarged cross section, that is to say in the region 6c already mentioned above.
  • the barb-like projections have a cross-section larger than the recess 6a, and thus these barb-like projections hold the connecting member in positive engagement with the upper part body 3a of the insulating body 3. The same applies to the lower part body and the lower connecting member.
  • the present invention has the advantage of allowing an assembly of a multi-part thermal insulation element by simple means, the assembly of a built-in module for fixing the shear bars and determines by connecting this module to two sub-bodies of the insulator and so this determines at the same time.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Building Environments (AREA)
  • On-Site Construction Work That Accompanies The Preparation And Application Of Concrete (AREA)
  • Joining Of Building Structures In Genera (AREA)

Claims (12)

  1. Élément de construction pour l'isolation thermique entre deux parties d'une construction à bétonner, notamment entre un bâtiment et une partie extérieure en saillie, constitué d'un corps isolant (3, 3a, 3b) à poser entre les deux parties de construction, avec des éléments d'armature intégrés sous la forme au moins de barres de force transversale (2) qui s'étendent à travers le corps isolant transversalement à l'étendue longitudinale de ce dernier et qui peuvent être respectivement raccordées aux deux parties de construction, sachant que les barres de force transversale sont coudées de telle sorte que, en partant d'une partie de construction (B), elles s'étendent en oblique de haut en bas à travers le corps isolant puis, dans la région inférieure du corps isolant - laquelle correspond à la zone de pression dans l'état installé -, dépassent en direction de l'autre partie de construction (A), sachant que sont prévus des modules d'insertion (4) qui immobilisent respectivement au moins une barre de force transversale (2) dans son allure oblique à l'intérieur du corps isolant, sachant que le corps isolant (3) est, en vue de l'insertion des modules d'insertion (4) équipés de la barre de force transversale au moins unique, divisé en au moins deux corps partiels (3a, 3b) disposés en superposition,
    caractérisé en ce que le module d'insertion (4) présente des éléments de liaison (5a, 5b) et peut être fixé via ces éléments de liaison sur les corps partiels (3a, 3b) du corps isolant, et en ce que les corps partiels peuvent être fixés l'un à l'autre par l'intermédiaire du module d'insertion et de ses éléments de liaison.
  2. Élément de construction selon la revendication 1, caractérisé en ce que le plan de séparation (3c) entre les corps partiels (3a, 3b) traverse des évidements du corps isolant qui sont essentiellement adaptés à la forme extérieure des modules d'insertion (4), et en ce que les modules d'insertion peuvent être insérés transversalement à la direction de développement des barres de force transversale (2) dans l'évidement du corps partiel au moins unique (3a, 3b) et y être immobilisés, et en ce que le matériau des modules d'insertion et/ou des éléments de liaison (5a, 5b) est plus dur que le matériau du corps isolant (3a, 3b).
  3. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les éléments de liaison (5a, 5b) sont réalisés essentiellement en forme de barres ou de tubes.
  4. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les corps partiels (3a, 3b) présentent des évidements (6a, 6b) pour l'emboîtement des éléments de liaison (5a, 5b).
  5. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les éléments de liaison (5a, 5b) peuvent être fixés sur ou dans les corps partiels (3a, 3b) au moyen d'un assemblage par emboîtement, notamment au moyen d'un assemblage par crantage.
  6. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les éléments de liaison (5a, 5b) présentent des saillies (5c, 5d) du genre barbillons, par l'intermédiaire desquelles les éléments de liaison peuvent être fixés en engagement positif sur ou dans les corps partiels (3a, 3b).
  7. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les éléments de liaison (5a, 5b) s'étendent en direction verticale notamment dans la région médiane entre les deux parties de construction (A, B), et/ou présentent un axe médian s'étendant en direction verticale.
  8. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les éléments de liaison (5a, 5b) et le module d'insertion (4) sont réalisés en matière plastique.
  9. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que les barres de force transversale (2) sont réalisées profilées et notamment nervurées au moins dans la région entourée par le module d'insertion (4).
  10. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que le module d'insertion (4) est réalisé profilé et notamment nervuré dans la région sollicitant la barre de force transversale (2).
  11. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que le module d'insertion (4) entoure l'élément d'armature (2) qui lui est associé dans toute son étendue à travers le corps isolant (3, 3a, 3b).
  12. Élément de construction selon au moins une des revendications précédentes, caractérisé en ce que le module d'insertion peut être en outre équipé d'un élément de pression, et en ce que le module d'insertion immobilise l'un par rapport à l'autre la barre de force transversale et l'élément de pression.
EP07011242A 2006-07-13 2007-06-08 Elément pour l'isolation thermique entre deux parties coulées en béton d'un bâtiment Active EP1878840B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL07011242T PL1878840T3 (pl) 2006-07-13 2007-06-08 Element budowlany do izolacji cieplnej między dwoma przeznaczonymi do betonowania elementami budowlanymi

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102006032437A DE102006032437B3 (de) 2006-07-13 2006-07-13 Bauelement zur Wärmedämmung

Publications (3)

Publication Number Publication Date
EP1878840A2 EP1878840A2 (fr) 2008-01-16
EP1878840A3 EP1878840A3 (fr) 2008-06-04
EP1878840B1 true EP1878840B1 (fr) 2008-12-24

Family

ID=38267567

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07011242A Active EP1878840B1 (fr) 2006-07-13 2007-06-08 Elément pour l'isolation thermique entre deux parties coulées en béton d'un bâtiment

Country Status (4)

Country Link
EP (1) EP1878840B1 (fr)
AT (1) ATE418652T1 (fr)
DE (2) DE102006032437B3 (fr)
PL (1) PL1878840T3 (fr)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102010034514A1 (de) 2010-08-16 2012-03-15 Gerhard Horstmann Modularer Dämmkörper

Family Cites Families (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19638538A1 (de) * 1996-09-20 1998-03-26 Schoeck Bauteile Gmbh Bauelement zur Wärmedämmung

Also Published As

Publication number Publication date
EP1878840A2 (fr) 2008-01-16
PL1878840T3 (pl) 2009-06-30
DE102006032437B3 (de) 2007-10-11
DE502007000323D1 (de) 2009-02-05
ATE418652T1 (de) 2009-01-15
EP1878840A3 (fr) 2008-06-04

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