EP2526235B1 - Facade insulation - Google Patents
Facade insulation Download PDFInfo
- Publication number
- EP2526235B1 EP2526235B1 EP11701935.6A EP11701935A EP2526235B1 EP 2526235 B1 EP2526235 B1 EP 2526235B1 EP 11701935 A EP11701935 A EP 11701935A EP 2526235 B1 EP2526235 B1 EP 2526235B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- thermal insulation
- wall
- façade
- insulation
- thermal
- 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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Links
- 238000009413 insulation Methods 0.000 title claims description 145
- 125000006850 spacer group Chemical group 0.000 claims description 32
- 239000011796 hollow space material Substances 0.000 claims 2
- 239000011178 precast concrete Substances 0.000 description 4
- 239000000725 suspension Substances 0.000 description 4
- 239000011449 brick Substances 0.000 description 3
- 238000010276 construction Methods 0.000 description 3
- 238000009434 installation Methods 0.000 description 3
- 238000005452 bending Methods 0.000 description 2
- 239000013590 bulk material Substances 0.000 description 2
- 238000006073 displacement reaction Methods 0.000 description 2
- 238000004519 manufacturing process Methods 0.000 description 2
- 239000011505 plaster Substances 0.000 description 2
- 239000004743 Polypropylene Substances 0.000 description 1
- 238000010521 absorption reaction Methods 0.000 description 1
- XAGFODPZIPBFFR-UHFFFAOYSA-N aluminium Chemical compound [Al] XAGFODPZIPBFFR-UHFFFAOYSA-N 0.000 description 1
- 229910052782 aluminium Inorganic materials 0.000 description 1
- 230000015572 biosynthetic process Effects 0.000 description 1
- 239000011248 coating agent Substances 0.000 description 1
- 238000000576 coating method Methods 0.000 description 1
- 239000002131 composite material Substances 0.000 description 1
- 150000001875 compounds Chemical class 0.000 description 1
- 210000003746 feather Anatomy 0.000 description 1
- 238000010438 heat treatment Methods 0.000 description 1
- 239000012774 insulation material Substances 0.000 description 1
- 239000000463 material Substances 0.000 description 1
- 239000002557 mineral fiber Substances 0.000 description 1
- -1 polypropylene Polymers 0.000 description 1
- 229920001155 polypropylene Polymers 0.000 description 1
- 230000002787 reinforcement Effects 0.000 description 1
Images
Classifications
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F13/00—Coverings or linings, e.g. for walls or ceilings
- E04F13/07—Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
- E04F13/08—Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor composed of a plurality of similar covering or lining elements
- E04F13/0801—Separate fastening elements
- E04F13/0803—Separate fastening elements with load-supporting elongated furring elements between wall and covering elements
- E04F13/0805—Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and the wall
- E04F13/0807—Separate fastening elements with load-supporting elongated furring elements between wall and covering elements with additional fastening elements between furring elements and the wall adjustable perpendicular to the wall
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B1/00—Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
- E04B1/62—Insulation or other protection; Elements or use of specified material therefor
- E04B1/74—Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
- E04B1/76—Heat, 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
- E04B1/762—Exterior insulation of exterior walls
- E04B1/7629—Details of the mechanical connection of the insulation to the wall
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F13/00—Coverings or linings, e.g. for walls or ceilings
- E04F13/02—Coverings or linings, e.g. for walls or ceilings of plastic materials hardening after applying, e.g. plaster
- E04F13/04—Bases for plaster
- E04F13/045—Means for fastening plaster-bases to a supporting structure
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B1/00—Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
- E04B1/62—Insulation or other protection; Elements or use of specified material therefor
- E04B1/74—Heat, sound or noise insulation, absorption, or reflection; Other building methods affording favourable thermal or acoustical conditions, e.g. accumulating of heat within walls
- E04B1/76—Heat, 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
- E04B1/762—Exterior insulation of exterior walls
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/02—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls built-up from layers of building elements
- E04B2/04—Walls having neither cavities between, nor in, the solid elements
- E04B2/06—Walls having neither cavities between, nor in, the solid elements using elements having specially-designed means for stabilising the position
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04B—GENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
- E04B2/00—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
- E04B2/02—Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls built-up from layers of building elements
- E04B2/14—Walls having cavities in, but not between, the elements, i.e. each cavity being enclosed by at least four sides forming part of one single element
- E04B2/16—Walls having cavities in, but not between, the elements, i.e. each cavity being enclosed by at least four sides forming part of one single element using elements having specially-designed means for stabilising the position
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F13/00—Coverings or linings, e.g. for walls or ceilings
- E04F13/07—Coverings or linings, e.g. for walls or ceilings composed of covering or lining elements; Sub-structures therefor; Fastening means therefor
Definitions
- the invention relates to a facade insulation according to the preamble of claim 1 and a Fassadendämmungssystem according to claim 15.
- thermal insulation panels are expected to be plastered directly with a net-reinforced plaster, which requires a high density on its outside.
- Thermal insulation panels are glued and dowelled as standard to building exterior walls. For attachment of thermal insulation panels with increased weight a corresponding increased number of dowels is necessary to reliably secure the thermal insulation panels. This type of attachment is therefore costly.
- the DE 9413214 discloses a device for fixing thermal insulation panels to a building exterior wall.
- the device relates to a retaining rail in the form of an angle profile.
- a first leg of the angle profile serves to fix the mounting rail on the building exterior wall.
- the second leg which is at right angles to the first leg, terminates in a holding web, which extends approximately parallel to the first leg.
- a height-adjustable clinker clamp is shown.
- the interception comprises an anchor web, which is movably connected at one end via a joint with a support angle.
- At the other end of the anchor bridge is connected in height adjustable with a compound anchor and held by the composite anchor in a supporting wall.
- the support bracket is supported by means of an adjustable support screw on the support wall.
- the curtain brick or brick wall which is held by the clinker support in front of the support wall and spaced therefrom, has a high weight.
- the clinker support must therefore be dimensioned accordingly massive to wear the curtain wall can.
- the clinker or brick wall is connected by wire or anchor anchors to the support wall.
- the articulated connection between the support bracket and anchor ridge is relatively expensive to manufacture. Also, it is not disclosed how, in contrast to a curtain wall, relatively light thermal insulation panels could be held by the clinker support.
- the DE 32 13 899 discloses a device for suspending precast concrete elements at a certain distance from body shell.
- a hanging anchor is hooked on one side in a suspension shoe, which is integrated into the body shell.
- the suspended anchor is vertically slidably received in an anchor rail.
- the anchor rail is cast in the precast concrete part.
- a stud bolt which is screwed into a threaded sleeve welded to the anchor rail, serves to displace the suspension tie anchor along the anchor rail.
- This suspension is well suited for the mounting of very heavy parts such as precast concrete parts. For thermal insulation boards, however, this suspension is unsuitable because the anchor rail is held inadequate in a thermal insulation board and tends to tear.
- a wall holding profile set for mounting a substructure for ventilated facade panels known.
- a vertically oriented facade holder In front of a wall, a vertically oriented facade holder is arranged, which extends transversely to the longitudinal extension of the facade panels.
- the vertically oriented facade holder is spaced from the wall by a spacer.
- the fixed point is a first wall holding profile, which connects the spacer with the wall.
- As a floating point is a second wall holding profile with oblong holes, which is also connected to the spacer and is arranged above the first wall holding profile. To prevent lateral displacement to the right or left of the facade holder is additionally supported by means of brackets from the wall.
- a horizontal facade support is not provided in the wall profile set, so the facade panels must be held with additional fasteners such as rivets or screws on the facade holder.
- a horizontal supporting bracket is always necessary for the rapid installation of thermal insulation panels. For the attachment of thermal insulation boards to walls of this holder profile set is therefore not usable.
- Object of the present invention is therefore to propose a facade insulation, which takes into account the increased demands on exterior thermal insulation and allows the cost-effective and rapid attachment of thermal insulation panels.
- the object is achieved in a facade insulation according to the preamble of claim 1, characterized in that a plurality of second thermal insulation panels carried by the support rail and spaced from the outer wall of a building, whereby between the inside of the second heat insulation board and the outer wall, a cavity is formed, in in which the plurality of first thermal insulation panels is received.
- the facade insulation according to the invention has the advantage that first and second thermal insulation panels with different wall thicknesses and densities on the outer wall can be arranged very simply and, accordingly, quickly.
- the facade insulation can therefore be flexibly adapted to the respective insulation requirements by selecting appropriate first and second thermal insulation panels.
- thermal insulation panels with great strength and increased weight can be reliably held on a building exterior wall.
- the different strengths of the thermal insulation boards can be accommodated by different length spacers become.
- the drawbars prevent bending of the spacers due to the weight of the insulation boards. It would also be conceivable that, instead of the drawbar, pressure clamps are used which are arranged below the mounting rail.
- the cavity serves for additional thermal insulation.
- the cavity expediently the first inner thermal insulation board is added. It would also be conceivable, however, for the cavity to be filled with heat-insulating bulk material. In this case, the cavity is closed at its lowest point, so that the bulk material can not leave the cavity.
- the thermal insulation panel has a density whose upper value is 190 kg / m3, preferably 170 and more preferably 150 kg / m3 and whose lower value is 100 kg / m3, preferably 110 kg / m3 and particularly preferably 120 kg / m3 and the outer wall facing away and the inner thermal insulation board has a density whose upper value is 90 kg / m3, preferably 70 and more preferably 65 kg / m3 and whose lower value is 20 kg / m3, preferably 30 kg / m3 and especially preferably 55 kg / m3. Due to the different densities of the two layers very good insulation values at relatively low weights and thicknesses of the thermal insulation panels can be achieved.
- the first inner thermal insulation panel has a greater thickness than the second thermal insulation panel, wherein the thickness of the first thermal insulation panel preferably has at least 1.5 times the thickness of the second thermal insulation panel. Due to the selected parameters of the density and the strength of the first and second thermal insulation panels, the inventive facade insulation can be optimally adapted to the required thermal insulation requirements.
- the first thermal insulation panel is supported by the at least one spacer. Accordingly, no additional fixation is required for mounting the first thermal insulation panel, since the spacer is present in any case in order to space the second thermal insulation panel from the outer wall. In the Installation of the facade insulation is therefore the first thermal insulation board to put only on the spacer, without further fasteners would be necessary.
- the support rail has a web which faces the outer wall and is fixed to first ends of the spacers.
- the spacers can be fixed by the open construction without any effort on the web.
- retaining extensions are provided on both sides of the web, on which the thermal insulation panels are held in a form-fitting manner.
- the holding extensions are inexpensive to produce by profiling and ensure a secure fit of the thermal insulation panels.
- a holding extension is formed only on one side of the web. This is particularly useful for the mounting rails, which are located at the top or at the bottom of the outer wall. Since the weight of the thermal insulation panel is transferred from the first layer to the mounting rail, no shear forces act within the second layer. The second layer can therefore be made very light, as already described above.
- grooves are provided on each heat-insulating board along its circumference, which grooves serve to receive the retaining extensions of the mounting rails.
- a plurality of passage openings is provided on the web at regular intervals. The. Tension levers are therefore very easy to position in the vertical joints of adjacent thermal insulation panels.
- the clamping yokes are arranged in the vertical joints between two adjacent thermal insulation panels.
- the thermal insulation panels are thus quickly assembled and do not need to be adapted to the clamping yokes, since the brackets are arranged in the parting lines, which are present anyway.
- the spacers are fixed at the second ends with at least one fastening element on the outer wall.
- the fastening element may, for example, be an angle at which a single spacer is fixed, or an angle rail is used on which a plurality of spacers is fixed.
- elongated holes are provided on the spacers at a short distance from their second ends, in the web of the mounting rail or on the fastening element, which extend normal to the outer wall.
- the elongated holes make it possible for the mounting rail fixed to the spacer to be displaceable in the direction of the outer wall or away from the outer wall.
- the holding extensions can therefore be adjusted exactly below the grooves.
- the at least one drawbar has a first and second end
- the first end of the drawbar is designed as a hook and the second end as a mounting ring and at the web of at least one support rail of the hook in each of the through holes can be hung.
- the drawbar can therefore be easily and quickly attached to the mounting rail.
- the mounting ring serves to fix the drawbar to the outer wall.
- a facade insulation system advantageously comprises a thermal insulation panel of high density, in which the thermal insulation panel is formed at least in two opposite side surfaces and preferably in all four sides a groove, an inner thermal insulation panel, which is arranged between an outer wall of a building and the thermal insulation panel is, and a mounting kit for mounting the thermal insulation panels on an outer wall of a building with at least two rails to be arranged in grooves, at least one spacer per support rail and at least two tie bars for hanging the lower support rail on the outer wall.
- FIGS. 1 and 2 show a facade insulation according to the invention, which is designated overall by the reference numeral 11.
- a single thermal insulation board 13 preferably has a standard dimension of 600 x 1000 mm, although any other insulation board dimension is equally possible.
- an inner heat-insulating panel 17 is arranged in the cavity, which is provided between the heat-insulating plate 13 and an outer wall 19 of a building.
- the inner thermal insulation panel 17 preferably has the same standard dimensions as the thermal insulation panel 13 and terminates flush with it.
- the density of the inner thermal insulation panel 17 is preferably 60 kg / m3, whereas the density of the thermal insulation panel 13 preferably has 120 kg / m3.
- the insulation boards are preferably made of mineral fibers, but other insulation materials can also be used.
- the combination of thermal insulation panels of different densities enables improved thermal insulation with low weight.
- the lighter inner thermal insulation panel 17 faces the outer wall 19 of a building, the denser thermal insulation panel 13 is spaced from the outer wall 19. This allows a total of low volume weight with a correspondingly high insulation performance at the same time pressure-resistant, providable with a net-reinforced exterior plaster surface.
- the thermal insulation board 13 is provided with a voltage applied to the support rail 23 Deutschenfräsung 24. As a result, a complete coverage of the mounting rail 23 can be achieved by the thermal insulation panel 13.
- the attachment of a reinforcement and / or a final coating is thus substantially simplified.
- the support rail 23 preferably has the shape of a T-profile and is made of polypropylene, rigid PVC, aluminum or other suitable material.
- the T-profile 23 has a web 25 directed toward the outer wall and two holding extensions 27a, 27b extending on both sides of the web 25, parallel to the surface of the insulating layer.
- the retaining projections 27a, 27b are positively received in the grooves 21.
- the mounting rail 23 is fixed horizontally to the outer wall 19. So that the holding projections 27a, 27b are aligned with the groove 21, the support rail 23 by means at least two spacers 29 spaced from the outer wall 19.
- the spacer 29 preferably has the shape of a flat bar 29. On its side facing the mounting rail, it is connected to it, for example, with a screw connection.
- a slot 31 is provided on the flat bar 29, which extends in the longitudinal direction of the rod 29.
- the flat bar 29 is fixed to an angle element 33.
- the angle member 33 may be designed to define a single flat bar 29 having a width which is slightly wider than the flat bar 29. It is also possible that the angle element 33 is designed as an angle rail on which a plurality of flat bars is fixed. The angle element 33 is in turn fixed to the outer wall 19, for example with dowel screws or nail dowels.
- the distance of the retaining extensions 27a, 27b from the outer wall 19 must correspond to the distance of the groove 21 from the outer wall, since otherwise the heat-insulating panel 13 can not be pushed onto the mounting rail 23.
- flat bars 29 with different lengths can be used. The fine adjustment is achieved in that the flat bar 23 is displaceable along the slot 31 relative to the angle element 33. It is also conceivable that the slot 31 is provided on the angle element 33 and on the flat bar 29, only a circular passage opening is provided.
- the support rail is additionally held by at least two clamping yoke 35 on the outer wall.
- the clamping yokes 35 are received in the joints 30 of two adjacent thermal insulation panels.
- elongate through holes 37 are provided at regular intervals on the web 25.
- the first end of the drawbar 35 is formed as a hook 39.
- the drawbar 35 can be easily and quickly attached to the mounting rail 23, since only the hook needs to be guided through one of the through holes 37.
- the second end of the drawbar is designed as a mounting ring 41. This serves to fix the drawbar 35 on the outer wall 19, for example with dowel screws.
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
- Physics & Mathematics (AREA)
- Acoustics & Sound (AREA)
- Electromagnetism (AREA)
- Building Environments (AREA)
- Finishing Walls (AREA)
Description
Die Erfindung betrifft eine Fassadendämmung gemäss Oberbegriff des Anspruchs 1 und ein Fassadendämmungssystem gemäss Anspruch 15.The invention relates to a facade insulation according to the preamble of claim 1 and a Fassadendämmungssystem according to claim 15.
Aus Energiespargründen ist die Bauindustrie angehalten, die Wärmedämmplatten für die Gebäudeisolierung immer stärker auszuführen. Zudem wird von den Wärmedämmplatten erwartet, dass sie direkt mit einem netzarmierten Verputz verputzt werden können, was an ihrer Aussenseite eine hohe Dichte verlangt. Allerdings sind dieser Entwicklung Grenzen gesetzt, da das Gewicht solcher Wärmedämmplatten zunimmt. Dies wirkt sich in der Folge auf die Kosten der Wärmedämmplatten und den Befestigungsaufwand aus. Daher besteht die der ersten Anforderung entgegengesetzte Anforderung, Wärmedämmplatten möglichst leicht auszubilden. Wärmedämmplatten werden standardmässig an Gebäudeaussenwänden geklebt und gedübelt. Zur Befestigung von Wärmedämmplatten mit erhöhtem Gewicht ist eine dementsprechende erhöhte Anzahl von Dübeln notwendig, um die Wärmedämmplatten zuverlässig zu befestigen. Diese Art der Befestigung ist daher kostenintensiv.For energy saving reasons, the construction industry is required to carry out the thermal insulation panels for building insulation more and more. In addition, the thermal insulation panels are expected to be plastered directly with a net-reinforced plaster, which requires a high density on its outside. However, this development limits, as the weight of such thermal insulation panels increases. This has the consequence on the cost of the thermal insulation panels and the mounting effort. Therefore, there is the opposite requirement of the first requirement, heat insulation boards as easy to train. Thermal insulation panels are glued and dowelled as standard to building exterior walls. For attachment of thermal insulation panels with increased weight a corresponding increased number of dowels is necessary to reliably secure the thermal insulation panels. This type of attachment is therefore costly.
Die
In der
Die
Aus der
Aufgabe der vorliegenden Erfindung ist es daher, eine Fassadendämmung vorzuschlagen, welche den gesteigerten Anforderungen an Aussenwärmedämmungen Rechnung trägt und die kostengünstige und rasche Befestigung von Wärmdämmplatten ermöglicht.Object of the present invention is therefore to propose a facade insulation, which takes into account the increased demands on exterior thermal insulation and allows the cost-effective and rapid attachment of thermal insulation panels.
Erfindungsgemäss wird die Aufgabe bei einer Fassadendämmung gemäss Oberbegriff des Anspruchs 1 dadurch gelöst, dass eine Mehrzahl von zweiten Wärmedämmplatten von der Tragschiene getragen und von der Aussenwand eines Gebäudes beabstandet ist, wodurch zwischen der Innenseite der zweiten Wärmedämmplatte und der Aussenwand ein Hohlraum gebildet ist, in dem die Mehrzahl von ersten Wärmedämmplatten aufgenommen ist.According to the invention the object is achieved in a facade insulation according to the preamble of claim 1, characterized in that a plurality of second thermal insulation panels carried by the support rail and spaced from the outer wall of a building, whereby between the inside of the second heat insulation board and the outer wall, a cavity is formed, in in which the plurality of first thermal insulation panels is received.
Die erfindungsgemässe Fassadendämmung hat den Vorteil, dass erste und zweite Wärmedämmplatten mit verschiedenen Wandstärken und Dichten an der Aussenwand sehr einfach und dementsprechend rasch anordenbar sind. Die Fassadendämmung lässt sich demnach flexibel an die jeweiligen Isolationsanforderungen durch Auswahl entsprechender erster und zweiter Wärmedämmplatten anpassen. Auch können Wärmedämmplatten mit grosser Stärke und erhöhtem Gewicht zuverlässig an einer Gebäudeaussenwand gehalten werden. Den verschiedenen Stärken der Wärmedämmplatten kann dabei durch verschieden lange Distanzhalter Rechnung getragen werden. Die Zugbügel verhindern ein Durchbiegen der Distanzhalter in Folge des Gewichts der Dämmplatten. Denkbar wäre es auch, dass anstatt der Zugbügel Druckbügel zur Anwendung kommen, welche unterhalb der Tragschiene angeordnet sind.The facade insulation according to the invention has the advantage that first and second thermal insulation panels with different wall thicknesses and densities on the outer wall can be arranged very simply and, accordingly, quickly. The facade insulation can therefore be flexibly adapted to the respective insulation requirements by selecting appropriate first and second thermal insulation panels. Also, thermal insulation panels with great strength and increased weight can be reliably held on a building exterior wall. The different strengths of the thermal insulation boards can be accommodated by different length spacers become. The drawbars prevent bending of the spacers due to the weight of the insulation boards. It would also be conceivable that, instead of the drawbar, pressure clamps are used which are arranged below the mounting rail.
Der Hohlraum dient der zusätzlichen Wärmedämmung. In dem Hohlraum ist zweckmässigerweise die erste innere Wärmedämmplatte aufgenommen. Denkbar wäre es aber auch, dass der Hohlraum mit wärmedämmendem Schüttgut aufgefüllt ist. In diesem Fall ist der Hohlraum an seiner tiefsten Stelle verschlossen, damit das Schüttgut den Hohlraum nicht verlassen kann. Durch die Kombination von Wärmedämmplatten mit verschiedenen Dichten und Stärken kommt eine optimierte Wärmedämmung zur Anwendung, welche eine geringe Wärmeleitfähigkeit bei relativ geringem Gewicht besitzt.The cavity serves for additional thermal insulation. In the cavity expediently the first inner thermal insulation board is added. It would also be conceivable, however, for the cavity to be filled with heat-insulating bulk material. In this case, the cavity is closed at its lowest point, so that the bulk material can not leave the cavity. By combining thermal insulation panels with different densities and thicknesses, optimized thermal insulation is used which has a low thermal conductivity and a relatively low weight.
Als vorteilhaft erweist es sich, wenn die Wärmedämmplatte eine Dichte hat, deren oberer Wert 190 kg/m3, bevorzugt 170 und besonders bevorzugt 150 kg/m3 beträgt und deren unterer Wert 100 kg/m3, bevorzugt 110 kg/m3 und besonders bevorzugt 120 kg/m3 beträgt und der Aussenwand abgewandt ist und die innere Wärmedämmplatte eine Dichte hat, deren oberer Wert 90 kg/m3, bevorzugt 70 und besonders bevorzugt 65 kg/m3 beträgt und deren unterer Wert 20 kg/m3, bevorzugt 30 kg/m3 und besonders bevorzugt 55 kg/m3 beträgt. Durch die unterschiedlichen Dichten der beiden Schichten sind sehr gute Dämmwerte bei verhältnismässig geringen Gewichten und Stärken der Wärmedämmplatten erzielbar.It proves to be advantageous if the thermal insulation panel has a density whose upper value is 190 kg / m3, preferably 170 and more preferably 150 kg / m3 and whose lower value is 100 kg / m3, preferably 110 kg / m3 and particularly preferably 120 kg / m3 and the outer wall facing away and the inner thermal insulation board has a density whose upper value is 90 kg / m3, preferably 70 and more preferably 65 kg / m3 and whose lower value is 20 kg / m3, preferably 30 kg / m3 and especially preferably 55 kg / m3. Due to the different densities of the two layers very good insulation values at relatively low weights and thicknesses of the thermal insulation panels can be achieved.
In einem bevorzugten Ausführungsbeispiel weist die erste innere Wärmedämmplatte eine grössere Stärke als die zweite Wärmedämmplatte auf, wobei die Stärke der ersten Wärmedämmplatte vorzugsweise mindestens die 1,5 fache Stärke der zweiten Wärmedämmplatte besitzt. Durch die gewählten Parameter der Dichte und der Stärke der ersten und zweiten Wärmedämmplatten, kann die erfindungsgemässe Fassadendämmung optimal an die geforderten Wärmedämmungsanforderungen angepasst werden.In a preferred embodiment, the first inner thermal insulation panel has a greater thickness than the second thermal insulation panel, wherein the thickness of the first thermal insulation panel preferably has at least 1.5 times the thickness of the second thermal insulation panel. Due to the selected parameters of the density and the strength of the first and second thermal insulation panels, the inventive facade insulation can be optimally adapted to the required thermal insulation requirements.
Als vorteilhaft erweist es sich, wenn die erste Wärmedämmplatte von dem wenigstens einen Distanzhalter getragen ist. Zur Halterung der ersten Wärmedämmplatte bedarf es demnach keiner zusätzlichen Fixierung, da der Distanzhalter ohnedies vorhanden ist, um die zweite Wärmedämmplatte von der Aussenwand zu beabstanden. Bei der Montage der Fassadendämmung ist die erste Wärmedämmplatte daher lediglich auf den Distanzhalter zu stellen, ohne dass weitere Befestigungsmittel notwendig wären.It proves to be advantageous if the first thermal insulation panel is supported by the at least one spacer. Accordingly, no additional fixation is required for mounting the first thermal insulation panel, since the spacer is present in any case in order to space the second thermal insulation panel from the outer wall. In the Installation of the facade insulation is therefore the first thermal insulation board to put only on the spacer, without further fasteners would be necessary.
Zweckmässigerweise besitzt die Tragschiene einen Steg, der der Aussenwand zugewandt ist und an ersten Enden der Distanzhalter festgelegt ist. Die Distanzhalter lassen sich durch die offene Konstruktion ohne Aufwand an dem Steg befestigen.Conveniently, the support rail has a web which faces the outer wall and is fixed to first ends of the spacers. The spacers can be fixed by the open construction without any effort on the web.
Als vorteilhaft erweist es sich, wenn zu beiden Seiten des Stegs Haltefortsätze vorgesehen sind, an welchen die Wärmedämmplatten formschlüssig gehalten sind. Die Haltefortsätze sind durch Profilherstellung kostengünstig zu produzieren und gewährleisten einen sicheren Halt der Wärmedämmplatten. Denkbar wäre es auch, dass ein Haltefortsatz nur an einer Seite des Stegs ausgebildet ist. Dies ist insbesondere für die Tragschienen sinnvoll, welche sich zuoberst bzw. zuunterst an der Aussenwand befinden. Da das Gewicht der Wärmedämmplatte von der ersten Schicht auf die Tragschiene übertragen ist, wirken innerhalb der zweiten Schicht keine Scherkräfte. Die zweite Schicht kann daher, wie weiter oben bereits beschrieben, sehr leicht ausgeführt sein.It proves to be advantageous if retaining extensions are provided on both sides of the web, on which the thermal insulation panels are held in a form-fitting manner. The holding extensions are inexpensive to produce by profiling and ensure a secure fit of the thermal insulation panels. It would also be conceivable that a holding extension is formed only on one side of the web. This is particularly useful for the mounting rails, which are located at the top or at the bottom of the outer wall. Since the weight of the thermal insulation panel is transferred from the first layer to the mounting rail, no shear forces act within the second layer. The second layer can therefore be made very light, as already described above.
In einer besonders bevorzugten Ausführungsform sind an jeder Wärmedämmplatte entlang ihres Umfangs Nuten vorgesehen, welche der Aufnahme der Haltefortsätze der Tragschienen dient. Dadurch dass die Wärmedämmplatten im montierten Zustand auch in vertikaler Richtung Nuten aufweisen, sind benachbarte Wärmedämmplatten rundum zueinander ausgerichtet. Dies führt zu einer vollflächigen planen Oberfläche der Fassadendämmung, welche sich ohne Aufwand verputzen lässt.In a particularly preferred embodiment, grooves are provided on each heat-insulating board along its circumference, which grooves serve to receive the retaining extensions of the mounting rails. As a result of the fact that the thermal insulation panels also have grooves in the vertical direction in the mounted state, adjacent thermal insulation panels are aligned all around one another. This leads to a full-surface plan surface of the facade insulation, which can be plastered without effort.
In einer weiteren bevorzugten Ausführungsform ist an dem Steg in regelmässigen Abständen eine Mehrzahl von Durchgangsöffnungen vorgesehen. Die. Zugbügel sind demnach sehr einfach in den vertikalen Trennfugen benachbarter Wärmedämmplatten zu positionieren.In a further preferred embodiment, a plurality of passage openings is provided on the web at regular intervals. The. Tension levers are therefore very easy to position in the vertical joints of adjacent thermal insulation panels.
Zur raschen Festlegung der Zugbügel an der Tragschiene, sind diese mit ihren ersten Enden an der Tragschiene eingehängt.For rapid determination of the clamping yoke on the support rail, these are hung with their first ends to the support rail.
Mit Vorteil sind die Zugbügel in den vertikalen Trennfugen zwischen zweier benachbarten Wärmedämmplatten angeordnet. Die Wärmedämmplatten sind dadurch rasch montierbar und müssen nicht an die Zugbügel angepasst werden, da die Bügel in den Trennfugen angeordnet sind, welche ohnedies vorhanden sind.Advantageously, the clamping yokes are arranged in the vertical joints between two adjacent thermal insulation panels. The thermal insulation panels are thus quickly assembled and do not need to be adapted to the clamping yokes, since the brackets are arranged in the parting lines, which are present anyway.
Damit Distanzhalter verschiedener Längen einsetzbar sind, sind die Distanzhalter an zweiten Enden mit mindestens einem Befestigungselement an der Aussenwand festgelegt. Bei dem Befestigungselement kann es sich beispielsweise um einen Winkel handeln, an dem ein einzelner Distanzhalter festgelegt ist, oder es ist eine Winkelschiene verwendet, an der eine Mehrzahl von Distanzhaltern festgelegt ist.So that spacers of different lengths can be used, the spacers are fixed at the second ends with at least one fastening element on the outer wall. The fastening element may, for example, be an angle at which a single spacer is fixed, or an angle rail is used on which a plurality of spacers is fixed.
In einer weiteren besonders bevorzugten Ausführungsform sind an den Distanzhaltern in kurzem Abstand zu ihren zweiten Enden, im Steg der Tragschiene oder an dem Befestigungselement Langlöcher vorgesehen sind, welche sich normal zur Aussenwand erstrecken. Die Langlöcher ermöglichen es, dass die an dem Distanzhalter festgelegte Tragschiene in Richtung der Aussenwand oder von der Aussenwand weg verschieblich ist. Die Haltefortsätze können daher genau unter die Nuten justiert werden.In a further particularly preferred embodiment, elongated holes are provided on the spacers at a short distance from their second ends, in the web of the mounting rail or on the fastening element, which extend normal to the outer wall. The elongated holes make it possible for the mounting rail fixed to the spacer to be displaceable in the direction of the outer wall or away from the outer wall. The holding extensions can therefore be adjusted exactly below the grooves.
Als zweckmässig hat es sich erwiesen, wenn der mindestens eine Zugbügel ein erstes und zweiten Ende hat, das erste Ende des Zugbügels als ein Haken und das zweite Ende als ein Montagering ausgebildet ist und am Steg der mindestens einen Tragschiene der Haken jeweils in eine der Durchgangsöffnungen einhängbar ist. Der Zugbügel kann daher einfach und rasch an der Tragschiene angebracht werden. Der Montagering dient der Festlegung des Zugbügels an der Aussenwand.It has proved to be expedient if the at least one drawbar has a first and second end, the first end of the drawbar is designed as a hook and the second end as a mounting ring and at the web of at least one support rail of the hook in each of the through holes can be hung. The drawbar can therefore be easily and quickly attached to the mounting rail. The mounting ring serves to fix the drawbar to the outer wall.
Gemäss einem weiteren Aspekt der Erfindung besteht ein Fassadendämmungssystem mit Vorteil aus einer Wärmedämmplatte hoher Dichte, in welcher Wärmedämmplatte wenigstens in zwei gegenüberliegenden Seitenflächen und vorzugsweise in allen vier Seiten eine Nut ausgebildet ist, einer inneren Wärmedämmplatte, welche zwischen einer Aussenwand eines Gebäudes und der Wärmedämmplatte angeordnet ist, und einem Montagekit zur Halterung der Wärmedämmplatten an einer Aussenwand eines Gebäudes mit mindestens zwei in denn Nuten anzuordnenden Tragschienen, mindestens einem Distanzhalter pro Tragschiene und mindestens zwei Zugbügeln zum Aufhängen der unteren Tragschiene an der Aussenwand.According to a further aspect of the invention, a facade insulation system advantageously comprises a thermal insulation panel of high density, in which the thermal insulation panel is formed at least in two opposite side surfaces and preferably in all four sides a groove, an inner thermal insulation panel, which is arranged between an outer wall of a building and the thermal insulation panel is, and a mounting kit for mounting the thermal insulation panels on an outer wall of a building with at least two rails to be arranged in grooves, at least one spacer per support rail and at least two tie bars for hanging the lower support rail on the outer wall.
Nachfolgend wird die Erfindung unter Bezugnahme auf die Figuren in schematischer Darstellung näher im Detail beschrieben. Es zeigt:
- Figur 1:
- Eine Seitenansicht einer erfindungsgemässen Fassadendämmung und
- Figur 2:
- eine perspektivische Ansicht der Fassadendämmung aus
Figur 1 .
- FIG. 1:
- A side view of an inventive facade insulation and
- FIG. 2:
- a perspective view of the facade insulation
FIG. 1 ,
Die
Die Tragschiene 23 besitzt bevorzugt die Form eines T-Profils und ist aus Polypropylen, Hart-PVC, Aluminium oder einem anderen geeigneten Werkstoff hergestellt. Das T-Profil 23 besitzt einen zur Aussenwand hin gerichteten Steg 25 und zwei sich zu beiden Seiten des Stegs 25 sich parallel zur Oberfläche der Dämmschicht erstreckende Haltefortsätze 27a,27b. Die Haltefortsätze 27a,27b sind formschlüssig in den Nuten 21 aufgenommen. Die Tragschiene 23 ist horizontal an der Aussenwand 19 festgelegt. Damit die Haltefortsätze 27a,27b mit der Nut 21 fluchten, ist die Tragschiene 23 mittels mindestens zweier Distanzhalter 29 von der Aussenwand 19 beabstandet. Der Distanzhalter 29 besitzt bevorzugt die Form eines Flachstabs 29. An seiner der Tragschiene zugewandten Seite ist er mit dieser, beispielsweise mit einer Schraubverbindung, verbunden. An seiner der Aussenwand 19 zugewandten Seite ist an dem Flachstab 29 ein Langloch 31 vorgesehen, welches sich in Längsrichtung des Stabs 29 erstreckt. Mittels einer weiteren Verbindung, beispielsweise ebenfalls einer Schraubverbindung, ist der Flachstab 29 an einem Winkelelement 33 festgelegt. Das Winkelelement 33 kann zur Festlegung von einem einzelnen Flachstab 29 mit einer Breite ausgeführt sein, welche geringfügig breiter als der Flachstab 29 ist. Ebenso ist es möglich, dass das Winkelelement 33 als eine Winkelschiene ausgeführt ist, an der eine Mehrzahl von Flachstäben festgelegt ist. Das Winkelelement 33 ist seinerseits, beispielsweise mit Dübelschrauben oder Nageldübeln, an der Aussenwand 19 festgelegt.The
Der Abstand der Haltefortsätze 27a,27b von der Aussenwand 19 muss dem Abstand der Nut 21 von der Aussenwand entsprechen, da ansonsten die Wärmedämmplatte 13 nicht auf die Tragschiene 23 aufgeschoben werden kann. Um den vorgegebenen Abstand der Nut 21 genau einhalten zu können, sind Flachstäbe 29 mit unterschiedlichen Längen verwendbar. Die Feinjustierung wird dadurch erreicht, dass der Flachstab 23 entlang des Langlochs 31 relativ zum Winkelelement 33 verschiebbar ist. Denkbar ist es auch, dass das Langloch 31 an dem Winkelelement 33 vorgesehen ist und an dem Flachstab 29 lediglich eine kreisrunde Durchgangsöffnung vorgesehen ist.The distance of the retaining
Damit ein Verbiegen der Flachstäbe 29 aufgrund des Gewichts der Wärmedämmplatten 11 verhindert ist, ist die Tragschiene durch mindestens zwei Zugbügel 35 zusätzlich an der Aussenwand gehalten. Die Zugbügel 35 sind in den Trennfugen 30 zweier benachbarter Wärmedämmplatten aufgenommen. Zum flexiblen Anbringen der Zugbügel 35 sind am Steg 25 längliche Durchgangsöffnungen 37 in gleichmässigen Abständen vorgesehen. Das erste Ende des Zugbügels 35 ist als ein Haken 39 ausgebildet. Der Zugbügel 35 kann einfach und rasch an der Tragschiene 23 angebracht werden, da lediglich der Haken durch eine der Durchgangsöffnungen 37 geführt zu werden braucht. Das zweite Ende des Zugbügels ist als ein Montagering 41 ausgebildet. Dieser dient der Festlegung des Zugbügels 35 an der Aussenwand 19, beispielsweise mit Dübelschrauben. Durch diese Form der Befestigung der Wärmedämmplatten 13 wirken praktisch keine Scherkräfte innerhalb der Wärmedämmplatten. Die innere Wärmedämmplatte 17 kann deshalb, wie bereits beschrieben, in einer sehr leichten Qualität ausgeführt sein, da auf diese keine Belastungen aufgrund der Wandbefestigung wirken.Thus, bending of the
Das Anbringen der Wärmedämmplatten 13 und der inneren Wärmedämmplatten 17 an der Aussenwand wird folgendermassen durchgeführt:
- Am unteren Rand der Aussenwand 19 werden die
Winkelelemente oder Winkelschienen 33 mittels Dübelschrauben festgelegt. Dann werden dieFlachstäbe 29, deren Länge mit der Stärke der verwendeten Wärmedämmplatten korreliert, anden Winkelelementen 33 angeschraubt. DieAnzahl der Winkelelemente 33 bzw.der Flachstäbe 29 ist so bemessen, dass das 13,17 zuverlässig getragen wird. AnGewicht der Dämmplatten den Flachstäben 29 werden mehrere Tragschienen 23 hintereinander festgelegt, so dass sich diese über die gesamte Länge der zu dämmenden Aussenwand 19 erstrecken.Die Tragschienen 23 der untersten Reihe kann auch L- anstatt T-förmig sein, da nur der Haltefortsatz 27a derHalterung von Dämmplatten 13 dient. Von einer Seite der Aussenwand 19 ausgehend wird die innere Wärmedämmplatte 17 auf darunterliegenden Flachstäben 29 angeordnet und dieWärmedämmplatte 13mit der Nut 21 aufden oberen Haltefortsatz 27a aufgeschoben. Im Anschluss daran wirdein erster Zugbügel 35 ineine längliche Durchgangsöffnung 37mit dem Haken 39parallel zur Tragschiene 23 eingeführt. Dabeiist diejenige Durchgangsöffnung 37 zu wählen, dieder Seitenwand 43 der Wärmedämmplatte am nächsten liegt. Dann wird der Zugbügel um 90 Grad um seine Längsachse verdreht und der Montagering an die Aussenwand geführt. In dieser Positionist der Zugbügel 35 ander Tragschiene 23 festgelegt und liegt an der ihm zugewandten Seitenwand 43 der Wärmedämmplatte an.Der Zugbügel 35 wird durch eine Dübelschraube ander Aussenwand 19 befestigt. Optional kann nun indie vertikale Nut 21eine Feder 28 eingeschoben werden.Die Feder 28 entspricht in ihrer Länge etwa der Höhe derWärmedämmplatte 13. Durch die Verwendung der zusätzlichen Feder 28 sind dieWärmedämmplatten 13 auch an ihren vertikalen Trennfugen plan zueinander ausgerichtet. Nachdem die Breite der zu dämmenden Aussenwand 19 mit einer erstenReihe von Wärmedämmplatten 13 abgedeckt ist, wird in der beschrieben Weise eine zweite Reihe an der Aussenwand befestigt.Die Haltefortsätze 27b der zweiten Trägerschienenreihe greifen dabei indie oberen Nuten 21 der darunterliegenden ersten Wärmedämmplattenreihe. Es werden so viele Reihen von Wärmedämmplatten befestigt, bis die gesamte Fläche der Aussenwand 19 isoliert ist.Die vertikalen Trennfugen 30 zweier benachbarter Reihen von Wärmedämmplatten sind zueinander versetzt angeordnet. Durch den Reihenaufbau ist sichergestellt, dass die Haltekonstruktion einer Reihe ausschliesslich das Gewicht der Wärmedämmplatten einer Reihe zu tragen hat.
- At the bottom of the
outer wall 19, the angle elements or angle rails 33 are fixed by means of dowel screws. Then theflat bars 29, the length of which correlates with the thickness of the thermal insulation panels used, are screwed to theangle elements 33. The number ofangle elements 33 and theflat bars 29 is dimensioned so that the weight of the 13,17 is reliably worn. At the flat bars 29 a plurality of mountinginsulation boards rails 23 are set one behind the other, so that they extend over the entire length of theouter wall 19 to be insulated. The support rails 23 of the bottom row may also be L instead of T-shaped, since only the holdingextension 27a of the holder ofinsulation boards 13 is used. Starting from one side of theouter wall 19, the inner heat-insulatingpanel 17 is arranged on underlyingflat bars 29 and the heat-insulatingpanel 13 with thegroove 21 is pushed onto theupper holding extension 27a. Following this, afirst drawbar 35 is inserted into anelongated passage opening 37 with thehook 39 parallel to thesupport rail 23. In this case, thepassage opening 37 is to be selected, which is theside wall 43 of the thermal insulation board closest. Then the clamping yoke is rotated by 90 degrees about its longitudinal axis and the mounting ring is guided to the outer wall. In this position, the clampingyoke 35 is fixed to thesupport rail 23 and abuts against theside wall 43 facing it of the thermal insulation board. The clampingyoke 35 is fastened by a dowel screw on theouter wall 19. Optionally, aspring 28 can now be inserted into thevertical groove 21. The length of thespring 28 corresponds approximately to the height of thethermal insulation panel 13. By using theadditional spring 28, thethermal insulation panels 13 are also aligned flush with one another at their vertical joints. After the width of theouter wall 19 to be insulated is covered with a first row ofthermal insulation panels 13, a second row is fastened to the outer wall in the manner described. The holdingextensions 27b of the second carrier rail row engage in theupper grooves 21 of the underlying first row of thermal insulation boards. There are so many rows of thermal insulation panels attached until the entire surface of theouter wall 19 is isolated. Thevertical joints 30 of two adjacent rows of thermal insulation panels are offset from one another. The series construction ensures that the support structure of a row has to carry exclusively the weight of the thermal insulation panels of a row.
Zusammenfassend kann folgendes festgehalten werden:
- Bei der erfindungsgemässen Fassadendämmung 11
sind Wärmedämmplatten 13 und innere Wärmedämmplatten 17 aneiner Aussenwand 19 eines Gebäudes befestigt. 13,17 besitzen verschiedene Dichten und Stärken. An der der Aussenwand 19 abgewandten Wärmedämmplatte 13 mit hoher Dichte ist an deren Seitenflächen eine umlaufendeDie beiden Wärmedämmplatten Nut 21 vorgesehen. ZurBefestigung der Wärmedämmplatten 13 sind zumindest inden horizontalen Nuten 21ein oberer Haltefortsatz 27a einerTragschiene 23, welcher unterhalb der Wärmedämmplatte 13 angeordnet ist undein unterer Haltefortsatz 27b einer weiteren Tragschiene 23, welcher oberhalb der Wärmeplatte 13 angeordnet ist, aufgenommen.Die Tragschienen 23 sind durch Distanzhalter 29 in Form von Flachstäbenvon der Aussenwand 19 beabstandet.Die Distanzhalter 29 sind ihrerseits mittels Winkelelementen ander Aussenwand 19 festegelegt. Damit sich die 27a,27b genau in der Ebene der horizontalenHaltefortsätze Nut 21 befinden, werden Distanzhalter mit entsprechenden Längen verwendet. Die Feinjustierung erfolgt durch die Verschiebung der Distanzhalter 29entlang von Langlöchern 31 zur Aussenwand oder von der Aussenwand weg.Die Langlöcher 31 können entweder anden Winkelelementen 33 oder anden Distanzhaltern 29 vorgesehen sein. Zur Vermeidung der Durchbiegung der Distanzhalter 29 ist dieTragschiene 23 zusätzlich durch Zugbügel 35 gehalten, die in den vertikalen Fugen zwischen zwei benachbarten Wärmedämmplatten angeordnet sind.
- In the
facade insulation 11 according to the invention,thermal insulation panels 13 and innerthermal insulation panels 17 are fastened to anouter wall 19 of a building. The two 13,17 have different densities and strengths. At thethermal insulation panels outer wall 19 facing away from thethermal insulation panel 13 with high density, acircumferential groove 21 is provided at the side surfaces. To secure thethermal insulation panels 13, at least in thehorizontal grooves 21, anupper holding extension 27a of a mountingrail 23, which is arranged below thethermal insulation panel 13 and alower retaining extension 27b of a further mountingrail 23, which is arranged above theheating plate 13, added. The support rails 23 are spaced from theouter wall 19 byspacers 29 in the form of flat bars. Thespacers 29 are in turn fixed by means of angle elements on theouter wall 19. Thus, the holding 27a, 27b are located exactly in the plane of theprojections horizontal groove 21, spacers are used with corresponding lengths. The fine adjustment takes place by the displacement of thespacers 29 alongoblong holes 31 to the outer wall or away from the outer wall. Theelongated holes 31 can be provided either on theangle elements 33 or on thespacers 29. To avoid the deflection of thespacers 29, thesupport rail 23 is additionally held by clampingyoke 35, which are arranged in the vertical joints between two adjacent thermal insulation panels.
- 1111
- Fassadendämmunginsulation
- 1313
- Wärmedämmplatte höherer DichteThermal insulation panel of higher density
- 1717
- Innere Dämmplatte niedrigerer DichteInner insulation board of lower density
- 1919
- Aussenwand eines GebäudesExterior wall of a building
- 2121
- Nutgroove
- 2323
- Tragschienerail
- 2424
- Hinterschneidungundercut
- 2525
- Steg der Tragschiene 23Web of the mounting rail 23rd
- 27a,27b27a, 27b
- Haltefortsätze der Tragschiene 23Holding extensions of the mounting rail 23rd
- 2828
- Federfeather
- 2929
- Distanzhalter in Form eines FlachstabsSpacer in the form of a flat bar
- 3030
- Trennfugeparting line
- 3131
- LanglochLong hole
- 3333
- Befestigungselement, WinkelelementFastening element, angle element
- 3535
- ZugbügelBail
- 3737
- Durchgangsöffnung für Zugbügelbefestigung an der TragschieneThrough opening for clamping yoke attachment to the mounting rail
- 3939
- Haken am Zugbügel zur Befestigung an der TragschieneHook on the clamping yoke for attachment to the mounting rail
- 4141
- Montagering des ZugbügelsMounting ring of the drawbar
- 4343
- Seitenwand der WärmedämmplatteSide wall of the thermal insulation board
Claims (15)
- Façade insulation (11) with- at least one supporting rail (23) that is placed on an outer wall (19) of a building,- at least one longer clamping yoke (35) and- at least one shorter spacer (29) that holds the supporting rail (23) on the outer wall (19) and- a multitude of first thermal insulating panels (17) that is placed in front of the outer wall (18),characterized in that a multitude of second thermal insulating panels (13) is carried by the supporting rail (23) and spaced from the outer wall (19) of a building so that a hollow space is formed between the inner side of the multitude of second thermal insulating panels (13) and the outer wall (19), hollow space in which the multitude of first thermal insulating panels (17) is received.
- Façade insulation (11) according to claim 1, characterized in that the second thermal insulating panel (13) has a density, the upper value of which is 190 kg/m3, preferably 170 kg/m3 and more particularly preferably 150 kg/m3 and the lower value of which is 100 kg/m3, preferably 110 kg/m3 and more preferably 120 kg/m3.
- Façade insulation (11) according to one of the claims 1 to 2, characterized in that the first inner thermal insulation panel (17) has a density, the upper value of which is 90 kg/m3, preferably 70 kg/m3 and more particularly preferably 65 kg/m3 and the lower value of which is 20 kg/m3, preferably 30 kg/m3 and more preferably 55 kg/m3.
- Façade insulation (11) according to one of the claims 1 to 3, characterized in that the first inner thermal insulation panel (17) has a bigger thickness than the second thermal insulation panel (13), whereby the thickness of the first thermal insulation panel is preferably at least 1,5 times the thickness of the second thermal insulation panel (13).
- Façade insulation (11) according to one of the claims 1 to 4, characterized in that the first thermal insulation panel (17) is carried by the at least one spacer (29).
- Façade insulation (11) according to one of the claims 1 to 5, characterized in that the supporting rail (23) has a web (25) that is turned to the outer wall (19) and that is fixed with this web at first ends of the spacers (29).
- Façade insulation (11) according to claim 6, characterized in that holding extensions (27a, 27b), to which the thermal insulating panels (13) are positively held, are provided on both sides of the web (25).
- Façade insulation (11) according to one of the claims 1 to 7, characterized in that grooves (21) that serve for receiving the holding extensions (27a, 27b) are provided on each of the second thermal insulation panels (13) along the circumference thereof.
- Façade insulation (11) according to one of the claims 6 to 8, characterized in that a multitude of through openings (37) is provided on the web (25) at regular intervals.
- Façade insulation (11) according to one of the claims 1 to 9, characterized in that the clamping yokes (35) are hung on the supporting rail (23) with their first ends.
- Façade insulation (11) according to one of the claims 1 to 10, characterized in that the clamping yokes (35) are placed in the vertical separating joints (30) between two adjacent thermal insulation panels (13, 17).
- Façade insulation (11) according to one of the claims 1 to 11, characterized in that the spacers (29) are fixed on the outer wall (19) at second ends with at least one fixing element (33).
- Façade insulation (11) according to one of the claims 1 to 12, characterized in that oblong holes (31) that extend normally to the outer wall (19) are provided on the spacers (29) at a short distance from their second ends or on the fixing element (33).
- Façade insulation (11) according to one of the claims 9 to 13, characterized in that- the at least one clamping yoke (35) has a first and a second end,- the first end of the clamping yoke (35) is configured as a hook (39) and the second end as a mounting ring (41) and- the hook (39) can be hung on the web (25) of the at least one supporting rail (23) respectively in one of the through holes (37).
- Façade insulating system with- one thermal insulation panel (13) and- a mounting kit that is appropriate for maintaining the thermal insulation panel (13) on an outer wall (19) of a building,characterized in- that the thermal insulation panel (13) has a high density,- that a groove (21) is configured in the thermal insulation panel (13) at least in two opposed side faces- that the mounting kit contains at least two supporting rails (23) to be placed in the grooves, at least one spacer (29) per supporting rail and at least two clamping yokes (35) to hung the lower supporting rail on the outer wall (19) and- that the façade insulating system has an inner thermal insulation panel (17) that is placed between the outer wall (17) of the building and the thermal insulation panel (13).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CH00061/10A CH702578A1 (en) | 2010-01-18 | 2010-01-18 | Insulation. |
PCT/CH2011/000004 WO2011085507A1 (en) | 2010-01-18 | 2011-01-18 | Facade insulation |
Publications (3)
Publication Number | Publication Date |
---|---|
EP2526235A1 EP2526235A1 (en) | 2012-11-28 |
EP2526235B1 true EP2526235B1 (en) | 2016-03-09 |
EP2526235B8 EP2526235B8 (en) | 2016-05-11 |
Family
ID=41719264
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP11701935.6A Active EP2526235B8 (en) | 2010-01-18 | 2011-01-18 | Facade insulation |
Country Status (10)
Country | Link |
---|---|
US (1) | US8898984B2 (en) |
EP (1) | EP2526235B8 (en) |
JP (1) | JP5813009B2 (en) |
CN (1) | CN102812188A (en) |
CA (1) | CA2786790A1 (en) |
CH (1) | CH702578A1 (en) |
EA (1) | EA022554B1 (en) |
HU (1) | HUE029219T2 (en) |
PL (1) | PL2526235T3 (en) |
WO (1) | WO2011085507A1 (en) |
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US8910441B1 (en) * | 2013-06-18 | 2014-12-16 | Kenneth Hunter | Cladding attachment system to enable an exterior continuous insulation barrier |
CN104295116A (en) * | 2013-07-19 | 2015-01-21 | 张培霞 | Heat-preservation and energy-saving house building method |
DE202013011565U1 (en) * | 2013-12-23 | 2014-02-07 | Gutex Holzfaserplattenwerk H. Henselmann Gmbh + Co. Kg | cladding system |
CH709574B1 (en) * | 2014-04-30 | 2017-05-31 | Flumroc Ag | Facade construction. |
US9453344B2 (en) * | 2014-05-01 | 2016-09-27 | David R. Hall | Modular insulated facade |
US9574341B2 (en) * | 2014-09-09 | 2017-02-21 | Romeo Ilarian Ciuperca | Insulated reinforced foam sheathing, reinforced elastomeric vapor permeable air barrier foam panel and method of making and using same |
US9689162B2 (en) * | 2014-11-10 | 2017-06-27 | Quik-Therm Insulation Solutions Inc. | Insulating wall assembly with framing member supports partially embedded within rigid insulation panels |
US10202774B2 (en) | 2015-04-17 | 2019-02-12 | B R Testing Limited | Fitting external insulation systems to buildings |
CA2929259A1 (en) | 2015-05-08 | 2016-11-08 | Nicholas Martel | Insulative building panels |
EP3219869B1 (en) * | 2016-03-14 | 2019-04-24 | Stofix Oy | Fastener and wall element of building |
EP3470598A1 (en) * | 2017-10-10 | 2019-04-17 | SFS Intec Holding AG | Facade fixing system and method for fitting same |
RU184426U9 (en) * | 2017-12-28 | 2018-11-22 | Федеральное государственное автономное образовательное учреждение высшего образования "Крымский федеральный университет имени В.И. Вернадского" | WALL INSULATION CONSTRUCTION |
CA2991824A1 (en) * | 2018-01-16 | 2019-07-16 | Anthony V. Leaning | Exterior thermal-bridge-free insulated wall system for buildings |
AT520564B1 (en) * | 2018-03-28 | 2019-05-15 | Hubert Reich | Facade system for the formation of a thermal insulation composite façade |
WO2018146662A2 (en) * | 2018-04-13 | 2018-08-16 | Business Performance Advisors, Sa. | Reflective thermal panel |
US11686088B2 (en) | 2020-07-30 | 2023-06-27 | Tremco Cpg Inc. | Mounted panel systems and methods |
CN112575917B (en) * | 2020-12-15 | 2022-04-19 | 北京建筑材料科学研究总院有限公司 | A kind of self-insulation peripheral retaining wall and construction method thereof |
CN114033048A (en) * | 2021-12-11 | 2022-02-11 | 中亿建业集团有限公司 | Assembly type building based on BIM and construction method thereof |
FI131059B1 (en) * | 2022-05-09 | 2024-08-22 | Rautaruukki Oyj | Wall structure |
NO20220700A1 (en) * | 2022-06-17 | 2023-12-18 | Ogs Seed As | Procedure for re-insulating an existing wall |
ES2981808A1 (en) * | 2024-05-21 | 2024-10-10 | Instalteck Int 2013 S L | Industrialized ventilated facade system for buildings (Machine-translation by Google Translate, not legally binding) |
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-
2010
- 2010-01-18 CH CH00061/10A patent/CH702578A1/en not_active Application Discontinuation
-
2011
- 2011-01-18 EP EP11701935.6A patent/EP2526235B8/en active Active
- 2011-01-18 JP JP2012549222A patent/JP5813009B2/en not_active Expired - Fee Related
- 2011-01-18 HU HUE11701935A patent/HUE029219T2/en unknown
- 2011-01-18 EA EA201290665A patent/EA022554B1/en not_active IP Right Cessation
- 2011-01-18 CN CN2011800070916A patent/CN102812188A/en active Pending
- 2011-01-18 PL PL11701935.6T patent/PL2526235T3/en unknown
- 2011-01-18 CA CA2786790A patent/CA2786790A1/en not_active Abandoned
- 2011-01-18 WO PCT/CH2011/000004 patent/WO2011085507A1/en active Application Filing
-
2012
- 2012-07-17 US US13/551,108 patent/US8898984B2/en not_active Expired - Fee Related
Also Published As
Publication number | Publication date |
---|---|
EP2526235A1 (en) | 2012-11-28 |
CH702578A1 (en) | 2011-07-29 |
CA2786790A1 (en) | 2011-07-21 |
US8898984B2 (en) | 2014-12-02 |
JP5813009B2 (en) | 2015-11-17 |
US20120279156A1 (en) | 2012-11-08 |
CN102812188A (en) | 2012-12-05 |
JP2013517397A (en) | 2013-05-16 |
EA201290665A1 (en) | 2013-01-30 |
HUE029219T2 (en) | 2017-02-28 |
PL2526235T3 (en) | 2016-09-30 |
EA022554B1 (en) | 2016-01-29 |
EP2526235B8 (en) | 2016-05-11 |
WO2011085507A1 (en) | 2011-07-21 |
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