Abstract:
The present invention concerns an insulating roof support assembly for a roof structure comprising a plurality roof elongated rafters spaced apart in a predetermined distance with insulation boards therebetween, wherein elongated mineral wool fibre insulation elements are provided on the top of each of the elongated roof rafters and elongated wooden elements on top of said insulation elements with at least one impermeable membrane between at least two neighbouring insulation elements sandwiched between the wooden elements and the insulation elements.
Abstract:
The invention relates to a composite structural member with thermal and/or sound insulation characteristics for a building, comprising an insulating board shaped as web part and at least one protective element whereby the web part has two opposing abutting faces and two main surfaces being arranged rectangular to the abutting faces, whereby the board is made of mineral fibres and a binder and whereby the at least one protective element is substantially U-shaped in cross section, having two legs erecting parallel to each other and being connected to the web part, whereby abutting faces of at least one web parts are covered by protective elements, which in combination with said web part take up loads parallel and/or rectangular to the main surfaces of the web part and which are not in direct contact to each other.
Abstract:
The present invention concerns a columns assembly for an insulating wall of a building structure, said column having a side surfaces adapted to receive and retain insulation panels of the insulating wall, said column assembly comprising an inner spacer element made of mineral wool fibers, a central element made of mineral wool fibers, an outer spacer element made of mineral wool fibers, wherein the spacer elements are assembled with first and second intermediate profiles between the spacer elements, and wherein the density of the mineral wool in the central element is higher than the density in the inner and outer spacer elements. The invention also concerns an insulating wall assembly of a building structure with such a column assembly and a method of constructing such insulating wall.
Abstract:
The invention relates to a window mounting system comprising: a building facade having an interior face and an exterior face and comprising a window opening; and a window mounting collar formed from rigid thermal insulating material, the mounting collar having at least one inside face, at least one outside face, a first open end and a second open end; wherein the window mounting collar is affixed to the exterior face of the building facade so as to surround the window opening and extend outwards from the exterior face of the facade, such that the first end of the mounting collar is proximal to the building facade and the second end of the mounting collar is distal from the building facade; wherein the system further comprises a window frame arranged in the mounting collar such that the window frame is separated from the plane of the exterior face of the building facade by at least 10 mm.
Abstract:
The present invention concerns a partition wall for a building structure comprising a plurality of building units separated by such partition wall to provide acoustic insulation therebetween, said partition wall comprising: a plurality of column assemblies, such as at least two, substantially vertically mounted in a generally horizontally oriented base profile, each column assembly comprising a central element made of mineral wool fibres and at least a first spacer elements made of mineral wool fibres and extending from said central section towards the first side with a first intermediate profile provided between the central element and the first spacer elements and a second intermediate profile provided on the side of the central element facing the second side of the wall, a second spacer elements made of mineral wool fibres and extending towards the second side of the partition wall; and wherein the density of the mineral wool in the central element is higher than the density of the first and second spacer elements, one or more insulation sections fitted between two adjacent column assemblies, wherein each insulation section comprises an inner mineral wool fibre panel provided in a close fit between the central elements of said adjacent column assemblies; first and second mineral wool fibre panels provided in a close fit between the first and second spacer elements, respectively, of said adjacent column assemblies, and wherein the densities of said first and second mineral wool fibre panels are substantially the same and lower than the density of the inner mineral wool panel; and an first external wall cover abutting the first mineral wool fibre panel and secured to the first spacer elements of the adjacent column assemblies, and a second external wall cover abutting the second mineral wool fibre panel and secured to the second spacer elements of the adjacent column assemblies.
Abstract:
The present invention concerns an insulating roof support assembly for a roof structure comprising a plurality roof elongated rafters spaced apart in a predetermined distance with insulation boards therebetween, wherein elongated mineral wool fiber insulation elements are provided on the top of each of the elongated roof rafters and elongated wooden elements on top of said insulation elements with at least one impermeable membrane between at least two neighbouring insulation elements sandwiched between the wooden elements and the insulation elements.
Abstract:
The present invention concerns a columns assembly for an insulating wall of a building structure, said column having a side surfaces adapted to receive and retain insulation panels of the insulating wall, said column assembly comprising an inner spacer element made of mineral wool fibres, a central element made of mineral wool fibres, an outer spacer element made of mineral wool fibres, wherein the spacer elements are assembled with first and second intermediate profiles between the spacer elements, and wherein the density of the mineral wool in the central element is higher than the density in the inner and outer spacer elements. The invention also concerns an insulating wall assembly of a building structure with such a column assembly and a method of constructing such insulating wall.
Abstract:
A partition wall for a building structure having a plurality of building units separated by such partition wall to provide acoustic insulation therebetween. The partition wall has a plurality of column assemblies, such as at least two, substantially vertically mounted in a generally horizontally oriented base profile.
Abstract:
The invention relates to a window mounting system comprising: a building facade having an interior face and an exterior face and comprising a window opening; and a window mounting collar formed from rigid thermal insulating material, the mounting collar having at least one inside face, at least one outside face, a first open end and a second open end; wherein the window mounting collar is affixed to the exterior face of the building facade so as to surround the window opening and extend outwards from the exterior face of the facade, such that the first end of the mounting collar is proximal to the building facade and the second end of the mounting collar is distal from the building facade; wherein the system further comprises a window frame arranged in the mounting collar such that the window frame is separated from the plane of the exterior face of the building facade by at least 10 mm.
Abstract:
This invention relates to an improved insulation system for covering a facade of a building consisting of at least one insulation element, at least one mechanical fastener, which fastener fixes the insulation element to the facade of the building, whereby the insulation element has at least a first and a second layer, the first layer being directed to the facade having a bulk density being lower than the bulk density of the second layer, whereby at least one layer is made of mineral fibers, especially stone wool fibers and a binding agent and whereby the fastener has a shaft erecting through the insulation element into the building and a plug-plate being arranged on or in the outer surface of the insulation element.To achieve an insulation system which has very good insulation characteristics, which can be produced for low costs and which can be fixed to the facade of a building without causing high labor costs the shaft if the fastener partly erects into the first layer of the insulation element in a direction parallel to the surface of the facade.