EP3034712A1 - Halterung für dämmplatte unter dachpfannen - Google Patents

Halterung für dämmplatte unter dachpfannen Download PDF

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Publication number
EP3034712A1
EP3034712A1 EP15200220.0A EP15200220A EP3034712A1 EP 3034712 A1 EP3034712 A1 EP 3034712A1 EP 15200220 A EP15200220 A EP 15200220A EP 3034712 A1 EP3034712 A1 EP 3034712A1
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EP
European Patent Office
Prior art keywords
support
face
downstream
hollow
upstream
Prior art date
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Granted
Application number
EP15200220.0A
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English (en)
French (fr)
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EP3034712B1 (de
Inventor
Ange François CARLOTTI
Frédéric GUIDONI
Jean-Louis GUERRY
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Corstyrene
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Corstyrene
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Publication date
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Publication of EP3034712A1 publication Critical patent/EP3034712A1/de
Application granted granted Critical
Publication of EP3034712B1 publication Critical patent/EP3034712B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B7/00Roofs; Roof construction with regard to insulation
    • E04B7/20Roofs consisting of self-supporting slabs, e.g. able to be loaded
    • E04B7/22Roofs consisting of self-supporting slabs, e.g. able to be loaded the slabs having insulating properties, e.g. laminated with layers of insulating material
    • E04B7/225Roofs consisting of self-supporting slabs, e.g. able to be loaded the slabs having insulating properties, e.g. laminated with layers of insulating material the slabs having non-structural supports for roofing materials
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D12/00Non-structural supports for roofing materials, e.g. battens, boards
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04DROOF COVERINGS; SKY-LIGHTS; GUTTERS; ROOF-WORKING TOOLS
    • E04D13/00Special arrangements or devices in connection with roof coverings; Protection against birds; Roof drainage ; Sky-lights
    • E04D13/16Insulating devices or arrangements in so far as the roof covering is concerned, e.g. characterised by the material or composition of the roof insulating material or its integration in the roof structure
    • E04D13/1606Insulation of the roof covering characterised by its integration in the roof structure
    • E04D13/1612Insulation of the roof covering characterised by its integration in the roof structure the roof structure comprising a supporting framework of roof purlins or rafters
    • E04D13/1618Insulation of the roof covering characterised by its integration in the roof structure the roof structure comprising a supporting framework of roof purlins or rafters with means for fixing the insulating material between the roof covering and the upper surface of the roof purlins or rafters

Definitions

  • the invention is placed in the field of the realization of roofs, specifically the insulation of roofs.
  • the invention relates to an insulating support for receiving a sub-tile plate and may also have a decorative face.
  • Under-tile plates are building elements generally placed between the roof and the roof structure. They can be rigid or flexible. When rigid, they can be used directly as a roof element. However, in the majority of cases, the sub-tile plates support a roof covering such as tiles, especially channel tiles.
  • the role of the underlay tiles is to collect and remove the water present under the roof covering due to infiltration due to weather or other or due to condensation to protect the insulation.
  • the sub-tile plates may be flat or consist of a plurality of depressions (cx) and ridges (C) so as to describe a regular and repetitive sinusoid pattern.
  • the under-tile plates are arranged on the roof overlapping to ensure watertightness.
  • the lateral overlap corresponds to a half-sinusoid and the longitudinal overlap takes place about twenty centimeters.
  • the corrugated under-tile plates can be used in particular to support hollow tiles called channel tiles. These tiles can be arranged on the plates so as to form a succession of alternating rows of current tiles placed on the hollows (cx) of the plate and roof tiles placed on the crests (C) of the plate (cover 2 tiles ).
  • the sub-tile plates allow an alternative in the tile layout by saving the number of tiles per m 2 . Indeed, it is possible to remove the current tiles placed in the hollows (cx) of the plate, the waterproofness of the roof being ensured then only by the sub-tile plates and not by the tiles themselves (cover 1 tile ).
  • the sub-tile plates can be placed on battens themselves arranged on the frame.
  • current standards impose insulation between the roof and the interior of the building carrying the roof.
  • many insulation means are known but in general they require delicate and time consuming poses.
  • the invention aims at simplifying the laying of roof tile channel comprising a sub-tile plate by providing an insulating support for the realization of building cover, intended to receive on its upper face a plate under-tiles, said support comprising an outer layer of insulation and optionally on the underside of said insulation layer a decorative panel.
  • Side faces here means the two faces present on each side of the major longitudinal axis of said support according to the invention, and "upstream face” and “downstream face” the faces present on each side of the transverse axis of said support .
  • upper face is meant here the face of said support according to the invention which will be during the positioning of said support oriented towards the outside of the work to be covered and by the underside of the face of said support according to the invention which will be at during the positioning of said support oriented towards the interior of the structure to be covered.
  • plural in the present text means that said upper face may comprise between 1 and 10 peaks.
  • the presence of a slope (p) in the upper face has the consequence that the upstream and downstream faces are of different heights either over their entire surface or only at the bottom of the hollows (h) .
  • the height (h) of the upstream face or the height (h) between the lower face and the bottom of the hollows (h, Figure 3 ) on the upstream face may be less than the height of the downstream face or between the lower face and the bottom of the depressions (h, Figure 3 ) on the downstream face.
  • Upstream and downstream being defined by reference to the laying direction of said support relative to the slope of the roof to be covered, it is understood that said slope (p) is the upper surface of said support, or at least the bottom of said hollow carried by said upper face is against the slope of the roof to achieve. This is a preferred form of the invention.
  • the presence of a slope (p) in the upper face, at least at the bottom of said recesses borne by said upper face, has the consequence that said support has a direction defined by said slope. (p) and that during its installation said support will have to be positioned in a particular way which will want that the slope (p) of the upper face or the slope (p) of the bottom of the hollows is at the opposite slope of the slope of the coverage in progress.
  • the height (h) of the upstream face or the height (h) between the lower face and the bottom of the hollows (h, Figure 3 ) on the upstream face may be greater than the height of the downstream face or between the face lower and the bottom of the hollows (h, Figure 3 ) on the downstream face.
  • Upstream and downstream being defined by reference to the laying direction of said support relative to the slope of the roof to be covered, it is understood that said slope (p) is the upper surface of said support, or at least the bottom of said hollow carried by said upper face is in the direction of the slope of the roof to achieve.
  • the invention has among others the following advantages: laying and fixing the sub-tile plate and the insulating support according to the invention in a single operation, said insulating support according to the invention is light and easy to handle, it is unique that a cover is made to 1 tile or 2 tiles, the geometric characteristics of said support according to the invention imposes a direction of installation which facilitates it, said support also allows to use only a fixation for the Under-tile plate / insulating support.
  • said insulating support may be of any known material to allow thermal insulation and / or sound if it is compatible with the function of the invention.
  • said insulating material may be chosen from hemp, particularly in the form of brick, wood fiber in rigid form, such as, for example, fibragglo, expanded cork, or based on polymers or polymer foams. such as, for example, urea-formaldehyde foam, phenolic foam, polyvinyl chloride foam, polyurethane foam, extruded polystyrene, expanded polystyrene, whether or not graphitized, polyisocyanurate.
  • the insulator is extruded polystyrene or expanded polystyrene, preferably polystyrene graphite.
  • the lower and upper faces of said support may have a length of between 0.50 m and 4.00 m, preferably between 0.80 m and 3.50 m, very preferably between 0 , 90 m and 2.00 m.
  • the lower and upper faces of said support may have a width of between 0.50 m and 2.50 m, preferably between 0.80 m and 2.00 m, very preferably between 0, 90 m and 1.20 m.
  • the upstream and downstream faces of said support may have an overall height of between 0.10 m and 0.30 m, preferably between 0.15 m and 0.27 m. .
  • upstream and downstream faces of said support will have an identical width between them and identical to the width of said lower and upper faces.
  • said upstream and downstream faces may have different overall heights.
  • the upstream and downstream faces may have identical heights, and that only the height (h ), on the downstream and upstream faces, between the bottom of a hollow and the lower face may be different.
  • said slope (p) may be between 0.1% and 1.0%, preferably between 0.2% and 0.80%, very preferably between 0.3 and 0%. , 5%.
  • the support according to the invention may further comprise on its upper face, at the junction with the downstream face, over its entire width or just to the right of the recesses (cx), one or more recess (s). ) (E) of rectangular shape and constant depth, said depth being able to correspond to the height difference (y) of the downstream face and the upstream face or the difference in height of the only zones (Z) of the upstream and downstream faces to the right of the hollows (cx).
  • said recess may have a constant depth of between 1 and 15 mm, preferably between 5 and 10 mm.
  • said slope is intended to allow an "automatic" overlap of 2 plates under-tiles, laid on 2 contiguous supports.
  • said sub-tile plates may protrude from said support both on the upstream side and on the downstream side.
  • the sub-tile plate placed on the downstream support will come to rest by its upstream portion which protrudes from the downstream support on the recess formed in the upstream support, the sub-tile plate placed on the upstream support coming to rest by its downstream part. which protrudes from the upstream support on the downstream sub-tile plate, thus providing an automatic overlap of the two sub-tile plates ensuring the tightness of the roof.
  • said upper face may comprise as many ridges (C) as the lower face of the sub-tile plates that it is intended to receive itself will comprise ridges (C).
  • said upper face of said support according to the invention may comprise 4 or 5 peaks (C).
  • Said ridges (C) may be of various lengths ranging from a few centimeters in length to a size identical to the length of said support.
  • said peaks (C) may have a length identical to the length of said support.
  • said peaks (C) may be at equal distances from each other and thus delimit recesses (cx) of the same width.
  • the distance between the vertex of 2 contiguous peaks (C) may be identical to the distance between 2 midpoints of 2 adjacent hollows (cx).
  • the ridges (C) may delimit between them n-1, n or n + 1 hollow.
  • a ridge may be arranged along one of the edges of said support of the invention, the other edge of said support being able to receive a recess, the set of peaks (C) thus delimiting a number n of hollow (cx) equal to the number of peaks (C).
  • a half-crest may be positioned along each of the two lateral edges of said support of the invention.
  • said support can count n recesses (cx), n-1 peaks (C) complete and 2 half-peaks.
  • a half-hollow may be positioned along each of the two lateral edges of said support of the invention.
  • said support can count n peaks (C), n-1 hollow (cx) and 2 half-half-hollow.
  • Said hollows (cx) and crests (C) are intended to allow, during the realization of the roof, an easy and immediate positioning of the sub-tile plate to rest on said support according to the invention.
  • the height between the vertex of a peak (C) and the bottom of a hollow (cx) present on said support according to the invention may be less than the height between the peak of a peak ( ⁇ or ⁇ ) and the bottom of a hollow ( ⁇ or ⁇ ) present on said sub-tile plate.
  • the height between the apex of a peak (C) and the bottom of a hollow (cx) present on said support according to the invention may be greater than the height between the vertex a peak ( ⁇ or ⁇ ) and the bottom of a hollow ( ⁇ or ⁇ ) present on said sub-tile plate.
  • the height between the apex of a peak (C) and the bottom of a hollow (cx) present on said support according to the invention may be equal to the height between the peak of a ridge ( ⁇ or ⁇ ) and the bottom of a hollow ( ⁇ or ⁇ ) present on said sub-tile plate.
  • the sub-tile plates will come to bear on the support according to the invention by contacting the top of the ridges present at the underside of said sub-tile plate ( ⁇ or ⁇ ) and the bottom of the recesses (cx) of said support according to the invention and by contacting the top of the crests (C) present at the upper face of said support according to the invention and the bottom of the depressions present at the lower face. of the sub-tile plate ( ⁇ or ⁇ ).
  • said height between the top of a peak (C) and the bottom of a hollow (cx) may be equal to 0, said upper surface of said support according to the invention then being plane . Said upper surface thus representing alone a choice ridge or a hollow.
  • said height between the apex of a peak (C) and the bottom of a hollow (cx) present on said support according to the invention may be between 5 and 80 mm, preferably between 10 and 60 mm, very preferably between 15 and 35 mm.
  • the plate under-tiles can present on one of its faces ridges (C) of rounded shape of large radius (large ridges ( ⁇ ) on the figure 1 ) and on its other side ridges (C) of rounded shape of small radius (small ridges ( ⁇ ) on the figure 1 ).
  • This difference in ridge radius can allow for the same plate under tiles and according to the orientation in which it is positioned, to achieve roof tiles channel 1 or 2 tiles.
  • the plate under-tiles can be positioned on the support according to the invention with its large peaks ( ⁇ ) oriented upward which can allow to juxtapose side by side 2 rows of tiles (roof tiles) oriented open faces down (back up) resting on 2 large ridges ( ⁇ , Figure 1 ) of said sub-tile plate, facing upwards, parallel and contiguous, without positioning between them a row of tiles facing upwards (current tiles), the waterproofing of the roof then being ensured by the sub-tile itself.
  • the plate under-tiles can be positioned on the support according to the invention with the small peaks ( ⁇ ) directed upwards which will allow, to reinforce the waterproofness of the roof , to position a row of tiles (current tiles) oriented face upwards and therefore back down in support in the bottom of the hollow ( ⁇ on the figure 1 ) of said sub-tile plate and juxtapose side by side 2 rows of tiles (roof tiles) oriented open faces downward (upward back) bearing on the 2 small peaks ( ⁇ ) facing upwards, parallel and contiguous, and flanking said hollow ( ⁇ ) carrying said roof tiles.
  • the sub-tiles plate rests on a support according to the invention, the upper face could be smooth.
  • the upper face of said support according to the invention intended to receive said sub-tile plate, to comprise hollow spaces.
  • said support according to the invention may comprise on its upper face recesses (cx) in the form of gutters (G), parallel and running along the entire length of the major axis of said support.
  • These recesses (cx) may have the purpose of receiving a sub-tile plate resting on the peaks ( ⁇ , ⁇ ) of its lower face.
  • said recesses may have a cross-sectional profile in the form of an arc of radius at least equal to the radius of the large peaks ( ⁇ ) of said sub-tile plate, preferably equal to the radius of the large peaks ( ⁇ ) of said plate under -tuiles (PsT).
  • the hollows (cx) may have a sectional profile in an arc of a radius of radius at least equal to radius of the small peaks ( ⁇ ) of said sub-tile plate, preferably equal to the radius of the small peaks ( ⁇ ) of said sub-tile plate (PsT).
  • the sub-tile plates (PsT) can easily be positioned in the recesses (cx) of said support according to the invention thus facilitating for the installer their positioning and that the face of said plate under -tuiles in contact with said upper face of said support according to the invention has large ridges ( ⁇ ) or small ridges ( ⁇ ).
  • said support according to the invention exists in two distinct forms a shape with recesses (cx) of a diameter at least equal to the diameter of the small peaks ( ⁇ ) of the sub-tile plate and a forms with hollows (cx) of a diameter at least equal to the diameter of the large peaks ( ⁇ ) of the sub-tile plate.
  • said zone of contact between the sub-tile plate and said support, on said support is of a form able to receive indifferently in support of either small ridges ( ⁇ ) or large ridges ( ⁇ ) of a sub-tile plate.
  • small ridges
  • large ridges
  • said upper face of said support according to the invention may comprise troughs (cx) in the form of gutters (G), said trough may have a profile in several arcs of circles nested within each other .
  • said upper face of said support according to the invention may comprise troughs (cx) in the form of gutters (G), oriented along the major longitudinal axis of said support, which may have an arcuate profile. circle and may further comprise a second channel (G2) oriented along the same major longitudinal axis of said support and positioned in the bottom of said first gutter (G1).
  • said gutter (G) may have a profile formed of 2 arcs of different radii (G1, G2) nested one inside the other, their 2 centers (O and o) can be positioned on the axis of symmetry of gutters G1 and G2.
  • the gutter G1 (gutter receiving large ridges ( ⁇ )) can be formed of two arcs of circles of radii (R) identical and center (O) unique said two arcs of circles can be separated by a second gutter G2 (gutter receiving the small peaks ( ⁇ )) itself being able to be formed by an arc of a circle of radius (r) and single center (o) single, G2 can be positioned symmetrically along the major axis of G1.
  • the gutter G1 (gutter receiving the large ridges ( ⁇ )) can be formed of two arcs of circles of identical radii (R) but different centers (O1 and O2), said 2 arcs of a circle being separable by the second gutter G2 (gutter receiving the small peaks ( ⁇ )) itself which can be formed by an arc of a circle of radius (r) and single center (o) single, G2 can be positioned symmetrically along the major axis of G1.
  • the gutter G1 (gutter receiving the large ridges ( ⁇ )) can be formed of two arcs of circles of identical radii (R) but different centers (O1 and O2), said two arcs of circle being separable by the second gutter G2 (gutter receiving small ridges ( ⁇ )) itself which can be formed by two arcs of circles of rays (r) identical but different centers (o1 and o2), G2 can be positioned symmetrically according to the large axis of G1.
  • the gutter G1 (gutter receiving the large ridges ( ⁇ )) can be formed of two arcs of circles of radii (R) identical and center (O) unique said 2 arcs of circles can be separated by a second gutter G2 (gutter receiving small ridges ( ⁇ )) itself which can be formed by two arcs of circles of identical radii (r) but of different centers (o1 and o2), G2 being positionable symmetrically along the major axis of G1.
  • said gutter rays G1 and G2 may be substantially equal to or even equal to the rays of large ( ⁇ ) or small crests respectively ( ⁇ ) of the sub-tile plate which will come to bear on said gutters.
  • the radius of said first gutter (G1) may be between 30 and 80 mm, preferably between 60 and 70 mm.
  • the radius of said second gutter (G2) that it is a single center arc or two arcs of different centers may be between 20 and 60 mm, preferably between 40 and 50 mm.
  • said support may further comprise on its lateral faces and / or on its upstream and downstream faces, means capable of cooperating with each other in order to ensure a good positioning and a good fit.
  • a support relative to the support directly positioned next junction means.
  • said joining means can be any means known to those skilled in the art, for example a protuberance protruding from one of the lateral faces of said support and able to be positioned in an indentation present on the contiguous lateral face of the device. support itself contiguous, said notch being generally of the same shape, but hollow, that said bead.
  • a bead / notch couple a bead in the form of a half-cylinder which can couple with a half-cylinder of the same diameter or of a slightly greater diameter made in recess on the other face, a parallelepiped-shaped bead that can mate with a parallelepiped of the same dimension or slightly larger dimensions hollowed on the other side, a triangular profile bead that can mate with a triangular-shaped imprint of same dimension or slightly larger dimensions made hollow on the other side.
  • said connecting means can be one or more, identical or different, on the same face, both along the length and the height of said face, and can be of length equal to the length of said face or shorter. It is also understood that the same face may comprise at the same time male and female parts of said junction means in the form of protrusion and recessed.
  • said support may further comprise on at least one of its lateral faces and / or downstream and / or upstream, advantageously on all its lateral faces and downstream and upstream of the male or female elements of a junction means able to cooperate together 2 supports according to the invention contiguous.
  • said support may further comprise at least one reinforcement to ensure its rigidity.
  • Said reinforcement can be of any shape and in any material compatible with its function. It can be arranged both laterally and longitudinally with respect to said support. It can be single or multiple.
  • said support will comprise at least two reinforcements positioned longitudinally parallel to one another at the level of the underside of said support, said reinforcement possibly being, for example, a U-shaped profile rail and stainless steel.
  • said reinforcement can be positioned on at least one of the faces of said support, or embedded in its mass.
  • said reinforcement may be embedded in the mass of said support.
  • said insulating support may further comprise attached to its underside a decorative element.
  • Any binding method known to those skilled in the art can be used according to the invention for bonding said decorative element to said insulating support according to the invention.
  • the decorative element will be bonded to said lower face of said insulating support.
  • decoration element means any means for giving the underside of said support according to the invention, a pleasant aspect to look.
  • said decorative element may be one or more sheet (s) of paper, plastic, one or more plate (s) of wood, iron, plaster, plastic, resin, etc.
  • a particularly preferred embodiment of the invention is an insulating support according to the invention comprising on its underside a gypsum board advantageously bonded.
  • the above description describes a sub-tile plate support intended to make it easier to position the insulation and the sub-tile plate during the production of a roof.
  • This description shows that the invention relates to an asymmetrical support in its form since although of generally rectangular parallelepiped shape, it nonetheless has a slope, at least a slope in the bottom of the gutters present on its upper face.
  • This slope implies during the laying a particular direction of installation of said support which as we have seen previously, wants that in the longitudinal direction two contiguous supports are contiguous to each other by their downstream and upstream faces, the downstream support presenting to the upstream support its upstream face, it being understood that said upstream face is that of which at least the depth of the gutters is greater than said depth of the gutters of the downstream face of said upstream support.
  • the invention also relates to a roofing method comprising the use of a sub-tile plate support according to the invention.
  • the invention also relates to a roof comprising at least one support according to the invention.
  • said support it is possible during the manufacture of said support according to the invention to provide on the upper surface of said support different markings particularly markings intended to facilitate the work of the installer. Said markings may be cutting guides or indications of the direction of installation of said support.
  • FIG. 1 represents the profile of a sub-tile plate having 5 small ridges ( ⁇ ) and 5 large ridges ( ⁇ ) and in fact 5 large depressions (P) and 5 small recesses ( ⁇ ) delimited with respect to said peaks.
  • junction means (38) in the form of two beads of parallel semi-cylindrical shape and on the other side face, 2 parallel notches (37) of semi-cylindrical shape constituting the female part of a junction means , intended to ensure a good positioning and a good fit of a support (30) relative to the support (30) contiguous.
  • C large ridges
  • cx hollow
  • FIG. 1 A the particular shape of the trough (cx) shaped gutter, showing that said hollow is generally composed of a first profile thus forming the first gutter (G1) and a second profile thus forming a second gutter ( G2) positioned in the bottom of said first gutter (G1).
  • the Figures 3A1 to 3A4 represent the different possible embodiments of the gutters present on said support.
  • the hollow (cx) is formed of a first gutter (G1) itself formed of two arcs of circles of rays (R) identical and center (O) unique said two arcs of circles being separated by a second gutter (G2) itself formed by an arc of a single radius (r) and center (o) single, G2 being positioned symmetrically along the major axis of G1.
  • the hollow (cx) is formed of a first gutter (G1) formed of two circular arcs of identical radii (R) but different centers (O1 and O2), said two arcs being separated by the second gutter (G2) herself formed by an arc of a circle with a single radius (r) and a single center (o), G2 being positioned symmetrically along the major axis of G1.
  • the hollow (cx) is formed of a first gutter (G1) formed of two arcs of circles of identical radii (R) but different centers (O1 and O2), said two arcs being separated by the second gutter (G2) itself formed by two arcs of circles of rays (r) identical but different centers (o1 and o2), G2 being positioned symmetrically along the major axis of G1.
  • the hollow (cx) is formed of a first gutter (G1) itself formed of two arcs of circles of radii (R) identical and center (O) unique said two arcs of circles being separated by a second gutter (G2) itself formed by two arcs of circles of rays (r) identical but different centers (o1 and o2), G2 being positioned symmetrically along the major axis of G1.
  • FIG 4 represents a side sectional view of said support according to the invention (40), said section passing through the bottom of a gutter G2.
  • the upper face (41), the lower face (42), the downstream face (45) and the upstream face (44) are noted and in (49) a decorative element in the form of a plate covering the whole of the lower surface of said support according to the invention.
  • FIG. 5 which represents a frontal sectional view of a roof 1 tile (A) or 2 tiles (B)
  • PsT subtile plate
  • the sub-tile plate (PsT) is supported on said support of the invention (50) in the bottom of a second channel (G2) positioned in the bottom of a first gutter of the upper face (51) via the apex of its small ridges ( ⁇ ), said bottom being in an arc of a radius identical to the arcuate profile of the small ridge ( ⁇ ) of the sub-tile plate (PsT).
  • the sub-tile plate (PsT) bears on said support of the invention (50) on the lateral edges of a first gutter (G1) of the upper face (51) by the intermediate of the lateral edges of its large ridges ( ⁇ ), said lateral edges of said first gutter (G1) being formed of 2 arcs of a radius almost identical to the semicircular profile of the large ridge ( ⁇ ) of the Under-tile plate (PsT).

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Physics & Mathematics (AREA)
  • Electromagnetism (AREA)
  • Finishing Walls (AREA)
EP15200220.0A 2014-12-17 2015-12-15 Halterung für dämmplatte unter dachpfannen Active EP3034712B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1462603A FR3030597B1 (fr) 2014-12-17 2014-12-17 Support de plaque sous-tuile isolant

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EP3034712A1 true EP3034712A1 (de) 2016-06-22
EP3034712B1 EP3034712B1 (de) 2020-02-05

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP3348733A1 (de) * 2017-01-16 2018-07-18 Jose Francisco Carro Castro Isolierender träger für keramische dachziegeln

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FR2316404A1 (fr) * 1975-06-30 1977-01-28 Siplast Soc Nouvelle Couverture en tuiles creuses
CH608852A5 (en) * 1977-02-18 1979-01-31 Baupres Ag Roof covering for buildings
DE8515177U1 (de) * 1985-05-23 1985-07-11 Bauersachs, Bernhard, 4234 Alpen Dachpfannenelement

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Publication number Priority date Publication date Assignee Title
FR2396138A1 (fr) * 1977-06-29 1979-01-26 Lacanaud Pierre Panneau rigide, prefabricable, composite, et fonctionnel pour la construction
FR2809129B1 (fr) * 2000-05-17 2002-07-12 Soprema Procede de refection et/ou d'isolation de toitures ou couvertures etagees et dispositifs obtenus par ledit procede
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FR3030597B1 (fr) 2019-05-24
FR3030597A1 (fr) 2016-06-24

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