EP1663670B1 - Formelement, herstellung davon und installationsverfahren dafür - Google Patents

Formelement, herstellung davon und installationsverfahren dafür Download PDF

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Publication number
EP1663670B1
EP1663670B1 EP04787301A EP04787301A EP1663670B1 EP 1663670 B1 EP1663670 B1 EP 1663670B1 EP 04787301 A EP04787301 A EP 04787301A EP 04787301 A EP04787301 A EP 04787301A EP 1663670 B1 EP1663670 B1 EP 1663670B1
Authority
EP
European Patent Office
Prior art keywords
coating
network
core
support
coatings
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.)
Not-in-force
Application number
EP04787301A
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English (en)
French (fr)
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EP1663670A2 (de
Inventor
Christian Gerard-Pigeaud
Stéphanie DUPIN
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Saint Gobain Weber SA
Original Assignee
Saint Gobain Weber SA
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Filing date
Publication date
Application filed by Saint Gobain Weber SA filed Critical Saint Gobain Weber SA
Publication of EP1663670A2 publication Critical patent/EP1663670A2/de
Application granted granted Critical
Publication of EP1663670B1 publication Critical patent/EP1663670B1/de
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B44DECORATIVE ARTS
    • B44CPRODUCING DECORATIVE EFFECTS; MOSAICS; TARSIA WORK; PAPERHANGING
    • B44C5/00Processes for producing special ornamental bodies
    • B44C5/04Ornamental plaques, e.g. decorative panels, decorative veneers

Definitions

  • the present invention relates to a surface covering element, in particular in the field of architecture, as well as its manufacturing process and method of laying.
  • This element is called 'modenature element'.
  • This element used in the field of construction, in particular the Building, is mainly an element of ornamentation or decoration (more rarely it may have one or more technical functions), intended, normally, to be attached to a surface (or support ), such as a wall or facade surface of a building, to give it a particular profile, including an architectural style, for example to form reliefs such as horizontal bands, frames, skirting boards, etc.
  • a surface or support
  • this element is of elongate or linear shape, advantageously constant profile (we can also speak of molding) and is then more specifically called 'profilement of modénature'.
  • the present invention has sought to develop a new type of modenature element for the new or renovation market, light and secure, more convenient to handle, easier and ready to install, can if necessary be put in place. by an individual.
  • the molding element according to the invention comprising at least one core provided with at least one coating and comprising at least one interwoven son network trapped in the thickness of at least a portion of the core and / or coating and protruding from at least one edge of the element.
  • the network has at least one dimension (width and / or length) greater than the corresponding dimension on the side where it is trapped (the network being thereby imprisoned only partly).
  • the length of the side where it is trapped may be the same or different from that of said side and preferably being at least close (generally identical) or even greater than that of said side. Also preferably, it exceeds by at least two edges, on both sides of the side where it is, in particular it exceeds, in the width direction, the lengths of the element.
  • the network preferably exceeds a few centimeters, in particular at least 4 cm, preferably at least 8 cm, and generally approximately ten centimeters or more, to allow including the marouflage of its free edges, good adhesion to the support and the possible covering by other elements, for example in a thermal insulation process from the outside.
  • the network therefore has a portion (usually the central portion) trapped in at least a portion of the coating and at least one or two free edges.
  • the free edge or edges may optionally be folded, for example on the side intended to remain in view, to protect it during the transport of the element and / or not to hinder the bonding of the side intended to be in contact with the the support.
  • At least one interwoven son network is trapped in the thickness of at least a portion of the core and / or the coating.
  • This network is formed of son arranged along at least two directions (preferably in two perpendicular directions) and advantageously interconnected; it may be for example a grid, possibly a fabric, a mat, or even several sets of son (or fibers) superimposed, etc.
  • this network has meshes of 1 to 8 mm (preferably 3 to 7 mm) side and advantageously it is a grid or canvas (for example a grid of the type used in thermal insulation by outside).
  • the son forming the network may be son of an organic material and / or an inorganic material, such as polypropylene son, glass, carbon, aramid, mixed son, etc.. and are advantageously reinforcing son, such as glass son.
  • these are alkali-resistant yarns of the cement by their composition and / or by their treatment or coating (for example AR glass fibers - alkali-resistant - and / or fibers of more conventional glass E treated with a suitable size and / or impregnating composition, etc.).
  • the network may be welded to the core or be imprisoned in the core, for example by heating the network and then embedding in the core (the clogging cladding if necessary the hollows (or grooves) caused and thus hanging better on the soul).
  • the network is rather imprisoned (or marouflaged) in at least a portion of the coating, generally close to the core.
  • the assembly thus obtained has strength characteristics compatible with its use, in particular a tensile strength of tensile strength (tearing of the network) generally greater than 0.08 N / mm 2 .
  • the network is advantageously on the side intended to be in contact with the support. Preferably close to both the core and the support, it participates in maintaining the element on said support, especially during the drying of the adhesive coating.
  • the presence of the previously described network offers numerous advantages in combination with the other constituents of the modeling element according to the invention.
  • it allows a direct application of the element on a support such as a facade and ensures the durability of the assembly after gluing by coatings such as facade coatings, with durability and aging at least comparable to those of a facade plaster, as explained later.
  • the element according to the invention is in the form of a profile.
  • the core is advantageously made of light material (s), in particular having a density of between 9 and 300 kg / m 3 and preferably between 25 and 40 kg / m 3 (especially in the case where the Expanded polystyrene is used), this material (s) being furthermore advantageously chosen from among those whose characteristics (such as resistance to compression, traction, flexion, shear, temperature, etc.) specific use on the facade, for example expanded polystyrene (in particular according to standard NF 56-201 and / or used in thermal insulation from the outside), and / or expanded polyurethane, etc.
  • light material s
  • this material (s) being furthermore advantageously chosen from among those whose characteristics (such as resistance to compression, traction, flexion, shear, temperature, etc.) specific use on the facade, for example expanded polystyrene (in particular according to standard NF 56-201 and / or used in thermal insulation from the outside), and / or expanded polyurethane, etc.
  • the soul can be realized in different ways known according to (s) material (x) constituting it.
  • the core can be obtained by cutting from prefabricated blocks obtained in known manner, in particular by expansion and agglomeration of beads (for example polystyrene), and / or by expansion and molding. in a suitable mold, etc.
  • the core is preferably solid, and when the element according to the invention is a profile, is itself generally in the form of a profile. Depending on the material used, this soul can be easily cut to the desired profile and length.
  • the core is provided with a coating (more particularly an outer coating) in at least a portion of at least one side (or at least one side), preferably at least one intended to be in contact with the support for receiving the element, and preferably on the whole of said side as well as on at least a part, and preferably all, of the side (or the face or faces) intended to remain in view once posed the element according to the invention.
  • This coating may be made in one or more layers, identical or different, the number and / or the thickness and / or the type of layers may also vary depending on the location.
  • this coating is made in several layers, in particular of different characteristics, on the side intended to remain in view.
  • the core is coated with at least one layer (in one or more passes according to the desired thickness) of a first coating on all of its faces intended either to be in contact with the support or to remain in sight, this first coating advantageously having a composition such that the shell that it forms around the core has good properties of resistance to cracking and flexibility, for example a so-called 'fiber' coating (including fibers) , a second coating (in one or more passes according to the desired thickness), easy to smooth and in particular as finishing coating (usually without fibers), coming to cover the first on the face or faces intended to remain in view so to offer a more pleasant aesthetic and if necessary to be more suitable for receiving additional decoration type painting.
  • each layer may vary, in particular from one face to another, this thickness being most often between 0 and 5 mm, the total thickness of the coating in each coated side preferably being between 0 and 15 mm. .
  • the thickness of the coating the side intended to be in contact with the support is between 0.5 and 5 mm, and more particularly between 1 and 4 mm.
  • the face intended to be in contact with the support may be coated with a layer 1 to 4 mm thick of a first fiber-reinforced coating and the face or faces intended to remain in view may be coated. a layer with a thickness of 1 to 4 mm of the same first coating or possibly another fiber coating, followed by a layer of 0 to 3 mm of a second coating serving as finishing coating.
  • the coating (s) used may advantageously be chosen from the coatings commonly used to coat the facades or in thermal insulation from the outside, in particular from organic coatings, preferably those which can be applied at thicknesses up to 5. mm, easy to work with, easy to smooth and / or with good resistance to cracking.
  • these coatings are formed of an organic binder (consisting for example of an aqueous dispersion based on synthetic resin (s) chosen (s) in particular from acrylic resins, acrylic styrene, vinyl-acrylate, versatate, etc.) and mineral fillers, chosen for example from those used in organic paints or coatings, such as calcium carbonate, siliceous fillers, etc.
  • fibers in the case of fiber coatings, for example polypropylene, polyamide, polyacrylonitrile, glass, etc. fibers. and / or one or more specific adjuvants such as those used in painting, for example rheological additives, biocides, dispersants, debulants, etc. and / or pigments, especially those used in painting, etc.
  • Air-dried or chemical organic or organomineral paints, thick plastic coatings, semi-thick coatings based on acrylic resin, vinyl acrylate, versatate, siloxane etc. can also be used instead of at least one coatings mentioned above, on at least a portion, and preferably all, of the side (or the face or faces) intended to remain in view once the element according to the invention.
  • the coating can be made by any method to obtain the desired thickness for each layer, each layer being optionally dried before deposition of the next, especially in the case of superimposed layers; for example, each layer deposit can be made in one or several passes by pulling (or smoothing) the chosen coating on the core using a template of the desired profile or by spraying the coating on the core or in a suitable mold before insertion of the core, etc.
  • the coating thus obtained allows in particular to provide a smoother and stronger surface and having a better aesthetic than the soul and being more suitable for receiving additional decorations such as paint, lacquer, varnish, etc.
  • the coating produced may be left bare, may be colored in the mass (due to the presence of pigments in the surface coating), or may be further coated with one or more layers, for example organic or organic paint.
  • mineral or a semi-thick coating of the same kind for example based on acrylic, silicone, siloxane, etc.
  • the coating can also be structured (with particular surface effects), for example by striation, stamping, shoeing, creating ribs, etc. especially at the level of the surface coating or finish.
  • the element according to the invention may also comprise other inserted components, in particular in the core and / or the coating or at the junction of the two and / or on the network, in particular may comprise at least one film or tight layer (For example polyvinyl chloride, polyurethane, acrylic, etc.), for example of the order of 0.5 to 2 mm thick, to prevent the penetration of water into the molding element.
  • film or tight layer for example polyvinyl chloride, polyurethane, acrylic, etc.
  • the film or tight layer exceeds the element, for example at least a few centimeters on either side of the lengths of the element.
  • the element according to the invention can have various sizes. Preferably its thickness (or height) is between 10 and 150 mm, its length, excluding free edges of the network (that is to say that simply the coated core), does not exceed 2.50 m, and its width, excluding free edges of the network, is between 20 and 200 mm.
  • the side of the element intended to be in contact with the support is adapted to the contours of the surface on which it must be placed; in general and advantageously, it is plane or approximately plane, the side to remain in view being usually in relief.
  • the element can also be slightly curved or curved (especially during its application), its characteristics of flexibility to absorb large curvatures (for example of the order of 1 cm or more arrow) without causing breakage, delamination or crack.
  • the element according to the invention can have different shapes depending on the desired aesthetic effect, but also if necessary depending on the juxtapositions with other parts or coverings of the support, such as facade coatings, plates of insulation or reinforcing grids, in particular in thermal insulation from the outside, and / or depending on the flow of runoff (slope effects), etc.
  • the element according to the invention has many advantages; in particular, it is suitable for the new home and renovation market and can be integrated in any external thermal insulation process (lack of thermal bridge in particular); it is ready to install and easy to use; light (generally between 0.1 and 50 kg / m 2 and advantageously having less than 20 kg / m 2 ), it does not constitute a significant overload on a building and meets the safety standards in force in this field; it has in particular a durability and aging at least comparable to those of a plaster, in particular does not present any degradation or cracking at the end of the aging cycles described by the EOTA guide in thermal insulation from the outside (guide European technical approval for external thermal insulation systems by coating) and / or at the end of artificial aging tests for external coatings according to standard NF T 30-049 and / or NF P 84-402; it offers a great freedom of creation, can be associated with many coatings, has an improved contact surface by the presence of the integrated network thus allowing a better mechanical strength on the support as well as a consolidation of the connection
  • the present invention also relates to a method of manufacturing the molding element in which at least a portion of a core of at least one covering is covered, and in which a portion of at least one network of wires intersecting is introduced into at least a portion of the core and / or the coating.
  • the introduction of the network can be done in different ways, for example by heating and then incrustation in the core, possibly by application to the core before deposition of the coating, or preferably by introduction (marouflage) in at least a part of the coating before complete solidification thereof, for example in at least a portion of a first layer (or pass) of coating, followed optionally by the application (or superposition) of a new layer (or pass) of the coating on the first layer (or passes) generally solidified.
  • the core may be formed for example by molding and / or cutting from expanded blocks, the coating may be applied using a template or by projection, etc., and a cutting operation may be performed on the core before coating and / or the element obtained, for example to adapt its length as needed.
  • constituents may also be inserted, for example in the core during its formation, and / or between the core and the coating and / or in the coating and / or on the network (for example a sealing film , fastening elements, etc.), the weight of these elements preferably being limited (for example less than 6 kg / m 2 ) and / or other operations can be performed on the element such as the application of painting, surface structuring, slight bending, etc.
  • the present invention also relates to the assembly or ready-to-use kit comprising the element according to the invention or optionally comprising its constituents to be combined according to the preceding method, as well as a structure or a support, such as a facade of building, provided with the element according to the invention.
  • the element according to the invention can be conditioned with the folded network for example on the side intended to remain visible, the network possibly being held in place by a removable means such as one or more adhesive strips and / or one or more elastic bracelets, etc.
  • the package comprising the element with its possible fasteners may be a plastic bag or a cardboard case, etc., and this set may be provided where appropriate with at least one print and / or label and / or notice.
  • the element may also be coupled in a kit to at least one or more suitable coatings for mounting on a support such as a facade.
  • the present invention also relates to a method of laying the element on a surface or support, for example on a facade or a wall (new or old building, already coated or not, etc.), in which said surface is etched and / or the side of the element to be in contact with the surface, the element is applied to said surface and then coated or free parts of the network of intertwined son.
  • the element according to the invention being particularly light, it does not generally require mechanical fixing. However, it is not excluded to use temporary fixings (eg nails through the network), dowels, wedges (eg under the element), etc. in particular to prevent slippage of the element during its bonding.
  • temporary fixings eg nails through the network
  • dowels e.g under the element
  • wedges e.g under the element
  • the surface or support to receive the profile is generally clean (cleaned), healthy (not particularly likely to fragment or crumble), dusted and dry. It is preferably flat or slightly curved.
  • the support may have been previously treated (for example pickled, prepared, washed, provided with renformis, caulked, etc.) and / or provided with one or more layers of coating (s) (especially methods of heat insulation from the outside), for example to equalize the surface and make it able to receive the element according to the invention, to seal cracks, waterproof the support and / or participate in the insulation of the support, etc.
  • the location of the element is usually marked on the surface (by pencil drawing, marking with metal tips, especially at angles, etc.).
  • the element is, if necessary, cut to the desired dimension, for example using a fine-toothed saw and a miter box or a grasshopper or a square, etc.
  • the surface to receive the element and / or the side of the element to be in contact with the surface is then glued (e), for example in the second case by depositing a bead of mortar (or coating) appropriate to the center of said side and optionally by distributing said flange on said side, for example using a comb, preferably avoiding the edges so as not to overflow the free edges of the network.
  • the adhesive (or mortar or coating) used for bonding can be chosen from among different types of mortars traditionally used in the building, depending where appropriate on the substrate (cement, lime-cement, concrete, masonry, paste - or tiles). glass, porcelain stoneware, polystyrene, wood, fiber cement, plaster, organic or inorganic coating, etc.) intended to receive the element according to the invention and its purpose (simple decoration, thermal insulation from the outside, etc.); the mortar may in particular be chosen from adhesive mortars (or coatings), mortars (or coatings) for thermal insulation from the outside, etc. (such as those marketed by the company Weber and Broutin France). it is preferably an organic coating (the use of a hydraulic coating is however not excluded in the case for example of a carrier of the same nature), this coating may also be optionally a coatings of the element according to the invention.
  • the element is then applied to the intended surface (provided with coating (s) or not), pressing if necessary to crush the bonding mortar, and before drying thereof.
  • the element is held in place temporarily using for example one or more metal tips (especially under the profile and / or in the fabric) generally until the complete drying of the glue.
  • independent reinforcing armatures such as grids
  • these may be applied (glued, embedded, fitted, trapped) in a first layer plaster, still fresh, deposited on the laying surface, before bonding the elements according to the invention to the fresh or dry coating and, where appropriate, superimposed by the networks of said elements, and / or may, after gluing the elements according to the invention, be applied in the still fresh coating used to coat the free edges of the networks belonging to the elements and come and superimpose said networks.
  • each new layer is preferably deposited after drying of the previous one.
  • each element may be glued, for example with a thin layer of the mortar used in bonding and / or the first coating used to coat the soul of the element.
  • the elements are then pressed against each other in position on the laying surface, the overlying bonding mortar being, if necessary, wiped in order to have a clean seal.
  • one or more additional mortars or mortars (identical (s) or different (s) of the preceding plasters or mortars), such as the bonding mortar and / or one or more decorative or thermal insulation mortars, one or more hydraulic or other organic coating coatings (eg with lime or cement). are then applied to the free edges of the networks.
  • the coating or mortar can usually be cleaned for example with water before drying.
  • a primer making it possible to standardize the surface or favoring the subsequent attachment of finishes, in particular organic finishes such as paints (the primer being, for example, in this case diluted paint) may also be applied after bonding of the molding element, in particular on at least a part of the side of the element intended to remain in view.
  • a seal for example a bead of acrylic mastic, may be added to the junction, in particular upper and possibly the lower junction (or lateral) of each element with the support to prevent any penetration of water between the facade plaster and the element according to the invention, preferably before application of a final layer (eg paint) on the element.
  • this seal can be deposited between two applications of layers; for example, a first layer, for example adhesive mortar, may be deposited on the networks and, after drying of this layer, the seal may be deposited before any application of a primer and coating with one or more coatings (and / or or paints) finishing on all or part of the element.
  • the elements according to the invention may then undergo other treatments, for example may be provided with one or more layers of coating (s), for example paint (s), semi-thick coating (s), lacquer (s) ), varnish (preferably resistant to aging outdoors), etc.
  • coating for example paint (s), semi-thick coating (s), lacquer (s) ), varnish (preferably resistant to aging outdoors), etc.
  • the elements 1 shown are profiles (asymmetrical in the figures but may equally well be symmetrical), for example of the order of 1.20 m in length and respectively of the order of 60 mm in height for the first element and 30 mm for the second element, having a core 2 such as an expanded polystyrene core of density for example of the order of 25 to 35 kg / m 3 , coated with a first layer of a fiber coating 3 selected by for example, among the fiber-reinforced coatings marketed by the company Weber and Broutin France, the thickness of this layer on the side a intended to be in contact with the support being for example of the order of 1.5 mm and the thickness of this layer on the side b intended to remain in view being for example of the order of 3 mm (layer deposited for example in one or two passes).
  • a core 2 such as an expanded polystyrene core of density for example of the order of 25 to 35 kg / m 3
  • a first layer of a fiber coating 3 selected by for example, among the fiber-
  • This latter side also has an additional layer of a finishing coating 4 chosen for example from the fine coatings marketed by the company Weber and Broutin France, of a variable thickness, for example of the order of 2 - 3 mm.
  • a glass grid 5 (scale not respected especially on Figures 2 and 3 ), having, for example, 4 ⁇ 4 mm meshes and formed of yarns of which at least a part are alkali-resistant and / or coated with an alkali-resistant composition, is trapped in the coating (near the outer edge of the coating).
  • the edges 7 of the profile may be straight or rounded or inclined (for example to promote flow).
  • the present profiles have a durability and aging at least comparable to those of a facade plaster, in particular do not show any degradation or cracking at the end of aging cycles described by the guide EOTA used for thermal insulation processes externally with plaster, and at the end of artificial aging tests for outdoor coatings according to standards NF T 30-049 and NF T 84-402.
  • the elements according to the invention can be used in particular in the decoration of facades (new or renovation market).

Claims (10)

  1. Fassadenprofilelement (1), das wenigstens einen mit wenigstens einer Beschichtung (3, 4) versehenen Kern (2) umfasst, dadurch gekennzeichnet, dass es wenigstens ein Netz aus sich kreuzenden Fäden (5) aufweist, das in die Dicke wenigstens eines Teils des Kerns und/oder der Beschichtung (3) eingebettet ist, wobei das Netz über wenigstens einen Rand (7) des Elements hinausragt.
  2. Element (1) nach Anspruch 1, dadurch gekennzeichnet, dass sich das Netz auf der Seite des Elements befindet, welche dazu bestimmt ist, mit einem Träger, der das Element aufnehmen soll, in Kontakt zu sein.
  3. Element (1) nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass das Netz (5) in Richtung der Breite über die Längen des Elements hinausragt.
  4. Element nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass die Fäden (5) gegenüber den Zementalkalien widerstandsfähig sind.
  5. Element nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass es wenigstens eine(n) über das Element hinausragende(n) dichte(n) Film oder Schicht aufweist.
  6. Element (1) nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass das Element in Form eines Profils (1) vorliegt.
  7. Verfahren zur Herstellung eines Fassadenprofilelements (1), wobei wenigstens ein Teil eines Kerns (2) mit wenigstens einer Beschichtung (3, 4) überzogen wird und wobei ein Teil wenigstens eines Netzes aus sich kreuzenden Fäden (5) in wenigstens einen Teil des Kerns und/oder der Beschichtung (3) eingebracht wird und man dabei das Netz über wenigstens einen Rand (7) des Elements hinausragen lässt.
  8. Gebrauchsfertige(r) Anordnung oder Satz, dadurch gekennzeichnet, dass sie (er) wenigstens ein Fassadenprofilelement (1, 2), und/oder dessen zusammenzusetzende Bestandteile (3, 4, 5), nach einem der Ansprüche 1 bis 6 umfasst.
  9. Struktur oder Träger, wie eine Fassade eines Gebäudes, dadurch gekennzeichnet, dass sie mit dem Fassadenprofilelement (1) nach einem der Ansprüche 1 bis 6 versehen ist.
  10. Verfahren zum Anbringen eines Fassadenprofilelements (1) nach einem der Ansprüche 1 bis 6 an einer Fläche, zum Beispiel an einer Fassade, wobei die Fläche und/oder die Seite des Elements, die mit der Fläche in Kontakt sein soll, mit Leim bestrichen wird, das Element auf die Fläche aufgebracht wird, anschließend der oder die freien Teile des Netzes aus sich kreuzenden Fäden (5) überzogen werden.
EP04787301A 2003-09-03 2004-09-02 Formelement, herstellung davon und installationsverfahren dafür Not-in-force EP1663670B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR0310413A FR2859131B1 (fr) 2003-09-03 2003-09-03 Element de modenature, fabrication et methode de pose
PCT/FR2004/002246 WO2005023560A2 (fr) 2003-09-03 2004-09-02 Element de modenature, fabrication et methode de pose

Publications (2)

Publication Number Publication Date
EP1663670A2 EP1663670A2 (de) 2006-06-07
EP1663670B1 true EP1663670B1 (de) 2012-08-22

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EP04787301A Not-in-force EP1663670B1 (de) 2003-09-03 2004-09-02 Formelement, herstellung davon und installationsverfahren dafür

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EP (1) EP1663670B1 (de)
FR (1) FR2859131B1 (de)
WO (1) WO2005023560A2 (de)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR3035901B1 (fr) * 2015-05-04 2017-06-02 Materis Paints Element de modenature pour systeme d'isolation thermique des facades par l'exterieur, son procede de fabrication, systeme d'isolation et son procede de realisation

Family Cites Families (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1146353A (fr) * 1956-03-30 1957-11-12 Pierre, marbre, granit reconstitués destinés à la fabrication de plaques et panneaux décoratifs utilisés dans l'industrie du bâtiment
DE2061193C3 (de) * 1970-12-11 1975-02-27 Flachglas Ag Delog-Detag, 8510 Fuerth Verfahren zum fortlaufenden Herstellen von mit einer Dekoroberfläche versehenen Verkleidungsplatten
CA2247267A1 (en) * 1991-11-07 1998-07-16 Safas Corporation Method for producing laminated articles
JPH09262934A (ja) * 1995-09-20 1997-10-07 Dainippon Printing Co Ltd リコート用化粧シート及びリコート用化粧材
TW455538B (en) * 1996-09-04 2001-09-21 Sumitomo Bakelite Co Flame-retardant or incombustible decorative laminated sheet

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Publication number Publication date
WO2005023560A3 (fr) 2005-06-09
WO2005023560A2 (fr) 2005-03-17
FR2859131B1 (fr) 2006-07-28
FR2859131A1 (fr) 2005-03-04
EP1663670A2 (de) 2006-06-07

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