EP3224426B1 - Moyen d'assemblage verrouillable et procédé de son utilisation - Google Patents
Moyen d'assemblage verrouillable et procédé de son utilisation Download PDFInfo
- Publication number
- EP3224426B1 EP3224426B1 EP15801405.0A EP15801405A EP3224426B1 EP 3224426 B1 EP3224426 B1 EP 3224426B1 EP 15801405 A EP15801405 A EP 15801405A EP 3224426 B1 EP3224426 B1 EP 3224426B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- connecting means
- base element
- region
- profile
- locking
- 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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Classifications
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
- E04F15/02044—Separate elements for fastening to an underlayer
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
- E04F15/02177—Floor elements for use at a specific location
- E04F15/02183—Floor elements for use at a specific location for outdoor use, e.g. in decks, patios, terraces, verandas or the like
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04F—FINISHING WORK ON BUILDINGS, e.g. STAIRS, FLOORS
- E04F15/00—Flooring
- E04F15/02—Flooring or floor layers composed of a number of similar elements
- E04F15/02044—Separate elements for fastening to an underlayer
- E04F2015/0205—Separate elements for fastening to an underlayer with load-supporting elongated furring elements between the flooring elements and the underlayer
- E04F2015/02066—Separate elements for fastening to an underlayer with load-supporting elongated furring elements between the flooring elements and the underlayer with additional fastening elements between furring elements and flooring elements
- E04F2015/02077—Separate elements for fastening to an underlayer with load-supporting elongated furring elements between the flooring elements and the underlayer with additional fastening elements between furring elements and flooring elements the additional fastening elements located in-between two adjacent flooring elements
- E04F2015/02094—Engaging side grooves running along the whole length of the flooring elements
Definitions
- the present invention relates to a lockable connecting means for connecting at least one first element to a base element while rotating through a defined angle.
- the invention further relates to a method for connecting planks or boards to a support profile using the connecting means according to the invention.
- Connection means for connecting two elements are numerous known from the prior art. This also applies to connecting means that are used to connect boards or planks to a profile beam.
- EP 2 096 232 A1 a connecting means having a holding part, a spacing part and a hollow shaft.
- an additional fastening element such as a screw is required to fasten the plank or screed to a profile beam.
- the attachment of live elements is cumbersome and prone to errors, since not only the connecting means but also the plank or screed must be held in the desired position until the screw has made the connection. To loosen the connection, the screw must first be removed again.
- the WO 2011/149371 relates to a connecting means for fastening profiles, in which the connecting means first enters into a rotational connection with a carrier profile and is then connected in a second step to an applied profile.
- the disadvantage here is that two work steps are required for fastening, and that the fastening in the second step requires considerable effort (hammering, see Figure 4 ) is to be accomplished.
- the EP 2 664 731 A1 relates to a connecting means for fastening planks to a support profile.
- the connecting means has a cylindrical head, which projects beyond the circular cross section of the central region on all sides.
- the connecting means must first be inserted into the support profile and brought up to the plank with the application of force, which means a more complex assembly. moreover single, medium-sized planks cannot be easily removed or replaced after assembly.
- the US 2014/096469 A1 relates to a connecting means with two projecting connecting parts (s. Figures 2 and 3 ) of complex plate-shaped structure, which protrude above the central area and, due to their rectangular configuration, cannot be loosened again by rotation after installation between two planks.
- the WO 2011/149371 A1 relates to a connecting means with projecting connecting parts in the upper and lower region, which are separated from one another by a central shaft (see FIG. 9).
- the rectangular design of the connecting parts means that the connecting element cannot be loosened again by rotation after installation between two planks.
- the US 2004/101673 A1 relates to a connecting element for fastening planks to a base.
- the connecting element requires an additional fastener such as a nail or a screw for fastening, which means a more complex assembly.
- the object of the invention is therefore to improve a generic connecting means in such a way that simple dismantling of already fastened elements is possible by simply pulling these elements upwards after unlocking the connecting elements.
- the connecting means according to the invention combines several decisive advantages over the fastening devices known from the prior art.
- the attachment is achieved by a simple turning process, which can be carried out without additional elements using simple tools (and in one version even by hand).
- the sophisticated locking means ensures that no incorrect or inadequate fastening results, since it makes it difficult or even impossible to overtighten the connecting means. It offers the user a clear sign that he has created an optimal fastening and is therefore to be regarded as a safety feature that should not be underestimated.
- the two elements to be connected are connected to each other during the turning process.
- they are only moved towards one another during the turning process until they are in firm contact in a preferred manner.
- elements that are different or deformed can also be connected to one another in a rotationally locking manner.
- a person can also carry out the attachment alone, or without further aids such as a screw clamp, since the two elements can be positioned relative to one another with one hand and the connecting means is rotated with the second hand (or a turning tool held thereby).
- the attachment Since the attachment is done only by rotating the connecting means, it is a reversible attachment that can be quickly and easily removed again.
- the connecting means according to the invention is therefore particularly suitable for systems which are associated with frequent conversions, e.g. for stand construction or for organization systems.
- connection means can be specifically adapted to the fastening requirements due to its concrete design. In this way, more than two elements can be connected or the strength of the fastening can be varied.
- the connecting means is compatible with conventional carrier profiles or elements to be fastened so that they can be used again.
- the lanyard can be made from a variety of materials to meet different needs.
- connection according to the invention is a reversible connection, insofar as it represents a rotational locking without additional fastening means.
- the connecting means is provided with such a locking means.
- the base element has such a locking means.
- both the connecting means and the base element have a locking means.
- the locking means when the connecting means rotates through the defined angle, the locking means is associated with the connecting means snapping into the base element. This is ensured by the fact that only at When the defined angle is reached, the connecting means enters into a positive connection with the base element.
- the engagement ensures that the connecting means not only complicates or prevents rotation beyond the defined angle, but also hinders or prevents it from turning back.
- the snap-in gives the user a clear signal that the optimal angle of rotation and thus the optimal fastening has been obtained.
- the base element can be designed with a locking means.
- This can be a lock, designed for example as a hook, which engages in a corresponding counterpart in the connecting means and prevents further rotation beyond the defined angle.
- the lower and the upper region are separated in the connecting means by a central region which can preferably be inserted into the depression of the base element and which is preferably in contact with the side walls of the depression in its lower section.
- a more stable attachment can be obtained by means of a central region designed in this way, since the connecting means has a stable position in the base element even without a rotational connection due to the contact with the sides of the depression.
- the central area can also have a locking means and thus contribute to secure attachment to the base element.
- the central region of the connecting means makes positive contact with the base element.
- At least the lower section of the central region is designed such that, after rotation by the defined angle, it projects beyond the recess of the base element and thereby makes positive contact with the base element from above. This creates a clamping effect that presses the connecting element against the base element.
- the connecting means is supported in its horizontal position by the central region lying on both sides.
- the entire section of the middle region (also referred to as the transverse side) projecting beyond the recess is flush with the sides of the upper region. This results in a less complex connecting means, which through the enlarged side surface represents a better entrainment profile.
- the length of the long side (i.e. the side transverse to the recess) of the central region can also be expediently varied in length, thereby defining the distance between the first elements.
- the length of the central region is configured such that it holds the first element at a defined distance from the base element during the rotational connection. This is made possible by the separate fixed connections from the connecting means to the base element on the one hand and from the connecting means to the first element on the other.
- the length of the central region is configured such that the at least one first element is in contact with the base element after a rotational connection and is preferably pressed against the base element. This creates a firm bond between these three elements.
- the central region has a circular cross section. Insofar as it is in contact with the first element with this central region, it does not displace these elements when the connecting means rotates. As a result, a first element can be removed or exchanged without the adjacent elements having to be moved. For example, in the case of a surface laid out with the first elements, a centrally located first element can be exchanged without problems. Especially with larger areas, such as terraces or roofs, this means a considerable time advantage.
- the middle region is expediently shaped as a straight circular cylinder.
- the connecting means has maximum stability in this area.
- the central region is of circular cross section in its upper portion and of rectangular cross section in its lower portion.
- This lower portion is preferably bevelled on two opposite edges.
- the lower portion of the central area preferably engages in the base element and, together with the projecting connecting parts of the lower area, contributes to anchoring the connecting means in the base element.
- the base element has a corresponding two-part depression, which has vertical side walls in an upper region (these are in contact with the lower portion of the central region) and has lateral recesses in its lower region (these are in contact with the projecting connecting parts of the lower region) Area in contact).
- the width of the upper region is equal to or smaller than the circular cross section of the central region. This means that its width does not exceed the middle area (see here Figure 5 , Representation top right).
- This has the advantage that when the connecting means is aligned, in which it does not engage with the projecting connecting parts in the first element, it lies flush with the adjacent first elements and these elements can simply be pulled out upwards.
- the lower region of the connecting means with the projecting connecting parts is designed as a trapezoidal prism with a rectangular base.
- the trapezoidal prism is preferably oriented such that the base is wider and the prism tapers upwards.
- the form-fitting engagement of a trapezoid prism designed in this way in a correspondingly complementarily shaped support profile ensures particularly secure fastening, since the connecting means forms a kind of spigot in the profile and prevents it from slipping out upwards.
- two opposite edges are rounded or beveled in the trapezoidal prism, so that the corresponding upward-pointing edges are preferably rounded or beveled in the same way. This facilitates rotation of the connecting means in the complementarily shaped recesses in the carrier profile. In a special embodiment, all four edges are rounded or beveled.
- the at least one projecting connecting part of the upper region has a chamfered surface, ie a surface that is chamfered upwards or downwards.
- This surface is preferably beveled upwards.
- the beveled surface is to be understood as the surface on the underside, ie oriented towards the base element.
- the projecting connecting part can have only one beveled surface, so that, for example, in connection with a straight surface on the top side, a trapezoidal shape results overall (see FIG. Figure 1 ).
- both the top surface and the bottom surface can be beveled, so that the projecting connecting part forms a V-profile in the case of two bevelled surfaces.
- This surface which is bevelled upwards, proves to be particularly advantageous in the closure according to the invention by rotation, since it can intervene without problems in the case of a first element which has a complementarily configured recess and can press this first element onto the carrier profile in the course of the rotation.
- This embodiment is therefore contrary to that in FIG WO 2011/149371 Disclosed lanyard, in which the downwardly tapered recesses just prevent screwing into the support profile.
- the clamping effect which is caused by the combination of the downward force, must be exerted by considerable force beveled area is achieved with the box-shaped recess of the plank to be overcome.
- the surface which is bevelled upwards is particularly advantageous in the case of first elements which are not exactly shaped.
- the bevelled surface allows an intervention in the corresponding recess in the plank even in the event of poor contact with the support profile, and the entire upper connecting part is then in only by the rotation the corresponding recess in the screed is screwed in and the screed is pressed against the support profile by the positive contact.
- N projecting connecting parts are formed in the upper region of the connecting means, where N can be 1, 2, 3, 4, 5, 6, 7, 8, 9 or 10.
- N is preferably 1, 2, 3 or 4, particularly preferably N is 1, 2 or 3 and particularly preferably N is 2.
- the N projecting connecting parts of the upper region are positioned at an angle of 360 / N degrees to one another.
- the connecting element represents the connection of exactly one first element to the base element, however, the connection of 2 or more elements is preferred, these being preferably 2, 3, 4, 5, 6, 7, 8 , 9, or 10 first elements can act.
- the number of projecting connecting parts (designated N in the preceding description) expediently corresponds to the number of first elements which are connected here. If two first elements are to be connected to the base element, the connecting means expediently has two projecting connecting parts in the upper region. Accordingly, there are three projecting connecting parts in the case of three first elements.
- the connecting parts of the upper region engage in a recess in the first element, this recess being located within the side surface of the first element.
- This can be achieved, for example, by means of a groove designed within the side surface.
- this cutout can also be located on the top of the element, so that this is, for example, a notch or a recessed edge.
- the upper edge of the first element itself can be regarded as a recess.
- the connecting means presses on the first element from above and thus establishes a connection to the base element even without an established recess on the side.
- a recess of the at least one first element is not only to be understood as a recess within this element, but also a recess on the upper side of the first element or the upper edge itself are to be regarded as recesses in the sense of the invention.
- the size of the connecting means can vary according to the first elements and basic elements to be connected.
- the connecting means preferably has a height of 10 to 50 mm, particularly preferably 15 to 30 mm and in particular 20 to 25 mm.
- the width of the connecting means given by the outer dimensions of the projecting connecting parts in the upper region, is between 10 and 50 mm, preferably between 20 and 40 mm and particularly preferably about 30 mm.
- the narrow side of the lower region which suitably corresponds to the width of the depression of the base element, is preferably between 7.5 and 30 mm, particularly preferably between 10 and 20 mm and in particular approximately 15 mm.
- the lower inner angles of the oblique trapezoidal surfaces are between 100 and 140 °, preferably between 110 and 130 ° and particularly preferably between 115 and 125 °.
- the at least one first element is selected from the group comprising a container, plate, bar, board, plank or board.
- the at least one element is preferably a board or a plank.
- first element these are identical in one embodiment, so that, for example, two planks, two containers, two strips or two boards can be connected to a base element.
- these first elements can also be different, any combination of the aforementioned (and further) first elements being possible here.
- a container and a bar can thus be connected to the base element by the connecting element.
- the at least one first element has a recess into which the connecting parts of the upper region of the connecting means engage.
- This recess is preferably of a complementary shape, so that the projecting connecting part in the connected state is form-fitting to this.
- the recess is wider than is necessary for the connecting element. It can extend over a wide range of the first element, which is at least 10%, preferably at least 25% and particularly preferably comprises at least 50% of the corresponding side of the first element.
- the recess extends over the entire length of the corresponding side of the first element; in this embodiment, it can also be referred to as a groove.
- a plank, screed, plank or strip as cover elements can have a recess on at least one, but preferably on both sides, which extends over the entire length of the plank, plank, plank or strip.
- This element can thus be flexibly positioned on the base element (preferably a profile carrier), since the entire length is available for the connection with the connecting means according to the invention. Both side surfaces are expediently provided with cutouts. A whole area can be laid out with the planks, planks, planks or strips using the connecting means, two cover elements each being connected to the base element by at least one connecting means.
- the connecting means can be used in particular to create planking in the area of sun roofs, terraces, bathrooms, bathing areas or around swimming pools.
- the connecting means according to the invention is particularly advantageous in the case of first elements with a laterally extending recess.
- the rotational connection results in a connecting means with a defined thickness in the central area, which then specifies the distance between the first elements.
- the first elements can be laid very precisely by being arranged parallel to one another at a defined distance by the connecting means.
- the person skilled in the art hereby has the possibility of controlling the distance of the first elements to be installed by simply changing the geometry of the central region. Since this central region is not directly involved in the connection of the at least one first element to the base element, it can, without having to change the base element or the first element, provide a large number of connection means which allow the desired distance to be simply achieved and adjust reproducible.
- the orientation from the first elements to the one or more basic elements can also be determined.
- the defined angle is less than 360 ° and is preferably less than or equal to 180 ° and particularly preferably less than or equal to 90 °.
- the at least one first element which is preferably a plank or screed, is perpendicular to the base element, which is preferably a profile carrier or a profile strip.
- the at least one first element is at an angle of 45 ° to the base element, which is preferably a profile carrier or a profile strip.
- the design of the recess of the at least one first element over a wide area of the first element also has the advantage that this element can be fastened to the base element with the aid of several connecting means.
- a plank can be connected as a cover element to several base elements, preferably in the form of professional supports.
- the recess has a triangular cross section and is preferably designed as an equilateral triangle.
- the shape with a triangular cross section allows positive contact with the upwardly sloping surface of the projecting connecting part in the upper region of the connecting means at least for one side.
- the connecting means in the upper region is designed in such a way that it does not completely fill the recess here and so, for example, there is space for a locking means such as a screw.
- the connecting means can have a trapezoidal cross section. A shape with an upper horizontal base and two upwardly sloping side surfaces is preferred here. (S. Figure 1 ).
- At least a first element with a triangular groove is combined with a triangular projecting Connecting part in the upper area of the connecting means, since this creates a positive connection on both sides.
- the base element is designed as a profile carrier and particularly preferably as a profile strip.
- This profile strip is preferably a C-profile with webs pointing inwards or with a trapezoidal recess.
- Trapezoidal recess which can also be referred to as a dovetail groove, is particularly preferred here.
- a complementary trapezoidal shape of the connecting means in the lower area it allows a particularly firm connection of the first element with the base element.
- the connecting means can expediently be produced from any material which the person skilled in the art uses for connecting means.
- the connecting means can accordingly consist of plastic, metal, wood or a wood composite, plastic being preferred. Plastics not only have a high level of corrosion resistance or chemical resistance, but they also show a certain flexibility that makes it easier to screw the connecting means into the base element.
- the connecting means consists of a plastic which is selected from the group comprising polyethylene, polyamide, polypropylene, polyester, PET, polymethyl methacrylate (PMMA), polyurethane, polyvinyl chloride, hardened epoxy resins and polystyrene.
- a plastic which is selected from the group comprising polyethylene, polyamide, polypropylene, polyester, PET, polymethyl methacrylate (PMMA), polyurethane, polyvinyl chloride, hardened epoxy resins and polystyrene.
- Polyamide is particularly preferred as the plastic.
- the fastener consists of a fiber-reinforced plastic, the fibers preferably being selected from the group consisting of basalt fibers, boron fibers, glass fibers, ceramic fibers, silica fibers, steel fibers, aramid fibers, Carbon fibers, polyester fibers, nylon fibers, polyethylene fibers and plexiglass fibers.
- glass fibers are particularly preferred, a glass fiber-reinforced polyamide or a fiber-reinforced epoxy resin being particularly preferred.
- the connecting means is made of a transparent plastic, so that it does not appear optically, especially when there are larger distances between the first elements, and gives the connection a uniform appearance.
- the connecting means according to the invention can also be constructed from different materials. It is preferred here that the individual areas consist of a different material.
- the lower and middle area can be made of plastic and the upper area can be made of metal. All materials mentioned above can be used as materials.
- the connecting means has a bore which runs from top to bottom and which is preferably continuous.
- this hole can be used to insert an additional fastening element such as a screw, a nail, a bolt or a rivet in order to further tighten the connection strengthen.
- the connecting means expediently has a driving profile in the upper region, which is selected from the group consisting of slot, cross recess, hex, hexagonal indentation or head, inner torx or outer torx, Phillips screw profile, Pozidriv, Torq Set, Mortorq, Tri- Wing, and Robertson screw profile, the driving profile is preferably formed in the bore.
- a driving profile formed in the bore has the advantage of easy accessibility. This allows the connecting means to be released even when installed.
- the driving tool can intervene through the gaps between the planks and detach the connection by simple rotation. This has the decisive advantage that the terrace planks do not have to be covered from the side in order to replace a defective plank in the middle, but instead a centrally positioned plank can be replaced.
- the upper area with its rectangular profile itself provides the entrainment profile so that it can be rotated with an appropriate tool, such as pliers, an open-end wrench or an adjustable open-end wrench (French or English).
- an appropriate tool such as pliers, an open-end wrench or an adjustable open-end wrench (French or English).
- the invention provides a method for connecting at least one board or a plank to a support profile, which is characterized in that the connecting means is inserted into the recess of the base element and in contact with the at least one first element by the defined angle is rotated until it locks, so that the at least one first element is connected to the base element.
- first elements are created in the method, the connecting means being positioned between the two first elements, and connecting the first two elements to the base element by rotation through the defined angle until locking.
- the method can also be carried out with three, four, five, six, seven, eight, nine, ten or even more first elements, the connecting means then coming to lie at the points of intersection of these first elements.
- the connecting means in the method has two oppositely positioned projecting connecting parts in the upper region and the defined angle up to the locking is 90 °.
- the invention also relates to the use of the connecting element according to the invention for use in a method as described above.
- a recess of the at least one first element is not only to be understood as a recess within this element, but also one Recess on the top of the first element or the upper edge itself are to be regarded as recesses in the sense of the invention.
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Claims (15)
- Moyen de connexion (1) pour connecter au moins un premier élément (7) avec un élément de base (8), comprenant- un corps qui peut être inséré, avec sa partie inférieure (4), dans un creux dans ledit élément de base (8) et présente deux éléments de liaison saillants (5), positionnés inversement, dans sa partie inférieure (4),- dont les parties inférieure (4) et supérieure (2) sont séparées par une partie centrale (3), ladite partie centrale (3) ayant une section circulaire,- et ledit moyen de connexion (1) est conçu pour connecter ledit élément de base (8) avec ledit au moins un premier élément (7) par rotation d'un angle défini,- dans lequel ladite partie supérieure (2) présente deux éléments de liaison saillants (6), positionnés inversement,- dans lequel les éléments de liaison saillants (5) de ladite partie inférieure (4), par la rotation, s'engagent par engagement positif dans des évidements latéraux (9) dans le creux dudit élément de base (8), et au moins un élément de liaison (6) de la partie supérieure (2) s'engage dans un évidement (10), de préférence formé complémentairement, dans ledit au moins un premier élément (7),- dans lequel ledit moyen de connexion est équipé d'un moyen d'arrêt pour compliquer ou prévenir une rotation du moyen de connexion au-delà de l'angle défini,caractérisé en ce que
lesdits éléments de liaison saillants (6) de la partie supérieure (2) sont formés sous la forme de prisme trapézoïdal et arrangés perpendiculairement auxdits deux éléments de liaison saillants (5) de la partie inférieure (4), ladite partie supérieure (2) présentant une largeur qui est identique ou inférieure à celle de la section circulaire de ladite partie centrale (3). - Moyen de connexion selon la revendication 1, caractérisé en ce que ladite partie centrale (3) peut être insérée dans le creux dans l'élément de base (8), de préférence la section inférieure de ladite partie centrale (3) étant en contact avec les parois latérales dudit creux.
- Moyen de connexion selon la revendication 1 ou 2, caractérisé en ce que ladite partie inférieure (4) avec les éléments de liaison saillants (5) est formée comme prisme trapézoïdal avec une base rectangulaire, de préférence ayant deux bords opposés qui sont arrondis.
- Moyen de connexion selon l'une quelconque des revendications précédentes, caractérisé en ce qu'au moins un élément de liaison saillant (6) de la partie supérieure (2) présente une surface oblique (13), de préférence étant oblique vers le haut.
- Moyen de connexion selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit moyen de connexion est en plastique, métal, bois ou un composite de bois.
- Moyen de connexion selon la revendication 5, caractérisé en ce qu'il est en un plastique choisi dans le groupe consistant en polyéthylène, polyamide, polypropylène, polyester, PET, poly(méthacrylate de méthyle) (PMMA), polyuréthane, poly(chlorure de vinyle), résine époxy durcie, et polystyrène.
- Moyen de connexion selon la revendication 6, caractérisé en ce que ledit plastique est un plastique renforcé de fibres, de préférence une polyamide renforcée de fibres de verre, ou une résine époxy renforcée de fibres.
- Moyen de connexion selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit moyen de connexion présente un perçage (14) allant d'en haut vers le bas, de préférence étant traversant.
- Moyen de connexion selon l'une quelconque des revendications précédentes, caractérisé en ce que ledit moyen de connexion présente dans la partie supérieure une empreinte de tête de vis choisie dans le groupe consistant en fendue, cruciforme, Allen, hexagonale creuse ou tête hexagonale, Torx intérieur ou Torx extérieur, Phillips, Pozidriv, Torq Set, Mortorq, Tri-Wing et Robertson, de préférence ladite empreinte de tête de vis étant formée dans le perçage.
- Procédé pour connecter au moins un premier élément (7) avec un élément de base (8) formé comme profil de support, caractérisé en ce que ledit moyen de connexion (1) selon l'une quelconque des revendications 1 à 9 est introduit dans le creux de l'élément de base (8) et, après engagement dudit au moins un premier élément (7), est tourné d'un angle défini jusqu'à l'arrêt, de manière que ledit au moins un premier élément soit connecté avec ledit élément de base.
- Procédé selon la revendication 10, caractérisé en ce que ledit moyen d'arrêt est accompagné de l'enclenchement du moyen de connexion dans l'élément de base lorsque le moyen de connexion est tourné d'un angle défini.
- Procédé selon la revendication 10 ou 11, caractérisé en ce que ledit au moins un premier élément est choisi dans le groupe consistant en récipient, plaque, tasseau, panneau, planche ou lame, de préférence un panneau ou une planche.
- Procédé selon les revendications 10 à 12, caractérisé en ce que ledit élément de base est une barre profilée, de préférence un profil en C avec des branches dirigées vers l'intérieur ou avec un évidement trapézoïdal.
- Procédé selon les revendications 10 à 13, caractérisé en ce que ledit angle défini jusqu'à l'arrêt vaut 90 degrés.
- Utilisation d'un moyen de connexion (1) selon l'une quelconque des revendications 1 à 9 pour connecter au moins un premier élément (7) avec un élément de base (8), de préférence par un procédé selon les revendications 10 à 14.
Applications Claiming Priority (3)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
BE2014/5087A BE1022940B1 (de) | 2014-11-26 | 2014-11-26 | Arretierbares Verbindungsmittel |
DE102015203274 | 2015-02-24 | ||
PCT/EP2015/077754 WO2016083497A1 (fr) | 2014-11-26 | 2015-11-26 | Moyen d'assemblage verrouillable |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3224426A1 EP3224426A1 (fr) | 2017-10-04 |
EP3224426B1 true EP3224426B1 (fr) | 2020-01-08 |
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EP15801405.0A Active EP3224426B1 (fr) | 2014-11-26 | 2015-11-26 | Moyen d'assemblage verrouillable et procédé de son utilisation |
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EP (1) | EP3224426B1 (fr) |
WO (1) | WO2016083497A1 (fr) |
Families Citing this family (6)
Publication number | Priority date | Publication date | Assignee | Title |
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FR3054253B1 (fr) * | 2016-07-21 | 2018-07-20 | Arch Du Bois | Systeme de maintien peripherique pour terrasse a dalles. |
JP6465512B2 (ja) * | 2017-05-29 | 2019-02-06 | 積水ハウス株式会社 | パネル固定金具、床構造、床施工方法 |
PT3714117T (pt) * | 2017-11-21 | 2022-03-02 | I Deck S R L | Grampo para ligação de painéis numa estrutura de revestimento de superfície e processo de fabrico |
BE1026964B1 (nl) * | 2019-01-10 | 2020-08-13 | Solidor Bvba | Vernieuwd draagsysteem voor vloerdelen |
GB2581209B (en) * | 2019-02-11 | 2023-06-07 | Ryno Ltd | Support system |
EP4108848B1 (fr) * | 2021-06-24 | 2023-07-26 | Proline Systems GmbH | Sous-structure de sol de terrasse doté d'un sous-châssis porteur pour revêtements de sol |
Family Cites Families (4)
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US20030101673A1 (en) * | 1999-01-15 | 2003-06-05 | Kroy Building Products, Inc. | Deck system with deck clip |
PT105137A (pt) * | 2010-05-27 | 2011-11-28 | Iht Lda | Acessório para fixação de perfis e sistema de fixação de perfis utilizando o referido acessório |
FR2990713B1 (fr) * | 2012-05-15 | 2014-06-06 | Westrading | Procede et dispositif de fixation d'une lame de parement a chant rainure a un profile support, et ensemble forme d'au moins un dispositif de fixation du type precite |
US9580914B2 (en) * | 2012-10-09 | 2017-02-28 | Craig Warren Richard FOUNTAIN | Fastening means |
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2015
- 2015-11-26 WO PCT/EP2015/077754 patent/WO2016083497A1/fr active Application Filing
- 2015-11-26 EP EP15801405.0A patent/EP3224426B1/fr active Active
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EP3224426A1 (fr) | 2017-10-04 |
WO2016083497A1 (fr) | 2016-06-02 |
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