Composite insulating and cladding panel
09957714 ยท 2018-05-01
Assignee
Inventors
Cpc classification
E04C2/38
FIXED CONSTRUCTIONS
E04F13/12
FIXED CONSTRUCTIONS
E04C2/296
FIXED CONSTRUCTIONS
E04F13/0803
FIXED CONSTRUCTIONS
E04C2/284
FIXED CONSTRUCTIONS
E04C2/34
FIXED CONSTRUCTIONS
International classification
E04C2/284
FIXED CONSTRUCTIONS
E04B2/72
FIXED CONSTRUCTIONS
E04C2/34
FIXED CONSTRUCTIONS
E04C2/38
FIXED CONSTRUCTIONS
E04C2/292
FIXED CONSTRUCTIONS
E04C2/296
FIXED CONSTRUCTIONS
E04F13/08
FIXED CONSTRUCTIONS
Abstract
A composite insulating and cladding panel has a backing sheet, a plurality of cladding parts, and a support grid between the backing sheet and the cladding parts. The cladding parts are mounted to the support grid and a body of insulating material such as insulating foam. The cladding parts are spaced-apart to provide gaps. The cladding parts may have any desired surface finish. The cladding parts provide a finished faade. The panel incorporates a support grid that transfers load directly to a building structural framework. The panels also have interengagable features that facilitate joining between a plurality of panels to form a finished faade.
Claims
1. A composite insulating and cladding panel comprising: a backing sheet; a plurality of cladding parts forming an external faade for an exterior of a building, each cladding part including an exterior face and an inturned flange; a support grid positioned between the backing sheet and the cladding parts such that the backing sheet defines a surface of the panel that abuts a building support structural framework, the support grid transfers load directly to the building structural framework, the support grid includes a frame including a plurality of frame adapter elements, each frame with a peripheral surface to receive each of a like number of the plurality of cladding parts, the inturned flange of each of the plurality of cladding parts engages a like one of the plurality of frame adapter elements of the support grid frame to fit each of the plurality of cladding parts with the support grid, the plurality of cladding parts define an exterior face of the panel and gaps are formed between adjacent cladding parts of the plurality of cladding parts; and a body of insulating material between the backing sheet, the support grid and the cladding parts.
2. A panel as claimed in claim 1 wherein the support grid comprises: a male adaptor edge element having a male projecting part extending along one edge of the panel; and a female adaptor edge element having a female recess part extending along an opposite edge of the panel.
3. A panel as claimed in claim 2 wherein the support grid comprises a plurality of mullion elements extending between the female adaptor edge element and the male adaptor edge element.
4. A panel as claimed in claim 3 comprising a plurality of connectors extending between the mullion elements.
5. A panel as claimed in claim 1 wherein each cladding part is generally rectilinear tray shape having the inturned edges.
6. A panel as claimed in claim 5 wherein the edges comprise rounded corner portions.
7. A cladding system comprising a plurality of panels as claimed in claim 1.
8. A building comprising a plurality of panels as claimed in claim 1.
9. A composite insulating and cladding panel comprising: a backing sheet; a plurality of cladding parts, each cladding part including an exterior face and an inturned flange; a support grid positioned between the backing sheet and the cladding parts such that the backing sheet defines a surface of the panel that abuts a building structural framework, the support grid includes a frame including a plurality of frame adapter elements, each frame with a peripheral surface to receive each of a like number of the plurality of cladding parts, the inturned flange of each of the plurality of cladding parts engages a like one of the plurality of frame adapter elements of the support grid frame to fit each of the plurality of cladding parts with the support grid, the plurality of cladding parts define an exterior face of the panel exposed to environmental elements, the support grid transfers load directly to the building structural framework; the cladding parts are spaced-apart to define gaps between adjacent cladding parts and the support grid is adjacent the gaps and is exposed to the environmental elements to maintain weatherproofing of the panel; and a body of insulating material between the backing sheet, the support grid and the cladding parts.
10. A composite insulating and cladding panel for a building comprising a building support structural framework, the panel comprising: a backing sheet for forming an interior face of the panel which faces to the interior of the building; a plurality of cladding parts defining an exterior face of the panel the cladding parts facing to the exterior of the building and forming an external faade for the exterior of the building, each cladding part including an exterior face and an inturned flange; a support grid positioned between the backing sheet and the cladding parts, the support grid for transferring load directly to the building structural framework, the support grid transfers load directly to the building structural framework, the support grid includes a frame including a plurality of frame adapter elements, each frame with a peripheral surface to receive each of a like number of the plurality of cladding parts, the frame projects from the support grid, the inturned flange of each of the plurality of cladding parts engages a like one of the plurality of frame adapter elements of the support grid frame to fit each of the plurality of cladding parts with the support grid; and a body of insulating material between the backing sheet, the support grid and the cladding parts.
11. A panel as claimed in claim 10 wherein the support grid comprises: a male adaptor edge element having a male projecting part extending along one edge of the panel; and a female adaptor edge element having a female recess part extending along an opposite edge of the panel.
12. A panel as claimed in claim 11 wherein the support grid comprises a plurality of mullion elements extending between the female adaptor edge element and the male adaptor edge element.
13. A panel as claimed in claim 12 comprising a plurality of connectors extending between the mullion elements.
14. A panel as claimed in claim 10 wherein each cladding part is generally rectilinear tray shape having the inturned edges.
15. A cladding system comprising a plurality of panels as claimed in claim 10.
16. A building comprising a plurality of panels as claimed in claim 10.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will be more clearly understood from the following description of an embodiment thereof, given by way of example only, with reference to the accompanying drawings, in which:
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DETAILED DESCRIPTION
(26) Referring to the drawings there is illustrated a composite insulating and cladding panel 1 comprising a backing sheet 10, a plurality of cladding parts 2, and a support grid between the backing sheet 10 and the cladding parts 2. The cladding parts 2 are mounted to the support grid, and a body of insulating material 5 is provided between the backing sheet 10, the support grid and the cladding parts 2. The insulating body is in this case an insulating foam 4. The foam may, for example be of polyisocyanurate foam or a phenolic foam. In use, the composite cladding and insulating panels 1 are mounted to building framework elements 100 as illustrated in
(27) The panel 1 comprises a plurality cladding parts 2 which in this case are spaced-apart to provide aesthetically pleasing gaps 3 therebetween. One cladding part 2 which has rounded corners is illustrated in
(28) The cladding parts 2 may be of metallic material such as aluminium with rounded corners. They may have any suitable finish such as zinc, copper or stainless steel. They may have an anodized finish, be pre-painted or post-painted or post powder coated. They may for example range from 300 mm300 mm to 3860 mm1200 mm. They may have an inturned flange that fits to a frame of frame elements 60, for example as a tolerance fit. Any flange may have a depth that may be about 24 mm.
(29) In the arrangement shown in
(30) One important aspect of the invention is the integral support grid. The integral support grid comprises a number of grid elements examples of which are shown individually in
(31) Referring to
(32) Referring to
(33) It will be appreciated that in a panel that is to be fixed in a different orientation, for example in a vertical orientation the male and female adapter edge elements may extend along the sides of the panel.
(34) A mullion element 40 of the support grid is illustrated in
(35) An element in the form of a T-piece 50 for interconnecting adjacent mullion elements 40 in a support grid is illustrated in
(36) A frame adaptor element 60 that is used to frame the individual cladding parts is illustrated in
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(38) The frame adapter element 60, the male adaptor edge element 20 and the female adapter edge element 30 and the mullions 40 are desirably each formed as continuous profiles, for example by extrusion, that can be cut to a desired length. Once the size and orientation of the panel, and the size, shape, and orientation of the cladding parts are known the composite panel can be assembled. This allows complete versatility in the formation of the panel design.
(39) The panel end extrusion element 80 is illustrated in
(40) A frame assembly 601 for an individual cladding part 2 is illustrated in
(41) A number of frame assemblies 601 are then interconnected as illustrated in
(42) The mullions elements 40 are interconnected as illustrated in
(43) Male and female adaptor elements 20, 30 are attached as illustrated in
(44) The male adaptor element 20 of one panel is engagable with the female adaptor element 30 of an adjacent panel to build up a faade using a plurality of the panels. The joint is shown in detail in
(45) With reference to
(46) Also in
(47) A composite insulating and cladding panel of the invention may be manufactured by first manufacturing a support grid, then attaching the cladding parts to the grid, applying a backing sheet and finally injecting liquid foam reactants to fill the spaces between the backing sheet, the support grid, and the cladding parts to form a composite insulating and cladding panel filled with an insulation foam. In some cases an alternative insulating material such as a mineral wool may be used.
(48) In one case a mitre saw is first used to cut the rails (profiles) to a required size. The frame adapter elements 60 are then attached together, for example by crimping, to form the shape of the tray of the cladding parts 2 that they fit into. A number of such frames are then joined together longitudinally and/or transversely using mullion elements 40 where necessary. The grid may be, for example a 42 grid. The male and female adaptor elements 20, 30 are then attached in the desired configuration to the frame adapter elements 60, as described above, and adjacent mullions 40 are attached to each other using the tee-pieces 50. The mullions may be attached to the male and female adapter elements 20,30 by screws. The end piece 80 is then positioned and fixed to the adapter elements 20, 30 again using screws. The grid frame is now complete and the cladding parts are installed. A backing tray 10 is applied and liquid foam reactants are injected to fill the spaces between the backing sheet 10, cladding parts 2, and the support grid.
(49) Various aspects described with reference to one embodiment may be utilised, as appropriate, with another embodiment.
(50) Many variations on the embodiments described will be readily apparent. Accordingly the invention is not limited to the embodiments hereinbefore described which may be varied in detail.