COVERING COMPRISING COVER PLATES CLAMPED TO PROFILES
20170044776 ยท 2017-02-16
Inventors
Cpc classification
E04F15/02452
FIXED CONSTRUCTIONS
E04B9/24
FIXED CONSTRUCTIONS
E04F15/02183
FIXED CONSTRUCTIONS
E04F2015/02094
FIXED CONSTRUCTIONS
E04F15/02044
FIXED CONSTRUCTIONS
International classification
Abstract
Covering that has a structure formed by multiple covering plates fixed by means of fasteners to longitudinal profiles each of which has a groove, the fasteners being located in the areas between the plates and the profiles of the guides, being simultaneously located within the cavities of the guide of the profiles and in a corresponding lodging of the plate, formed by a groove located in the side or lateral portion of the plate, fixing each fastener two contiguous plates and a profile, the fastener having dimensions that allow it to be turned in two positions when it is introduced in said guide, the fastener having at the same time an asymmetrical arrangement, in such a way that one of the rotation positions, that corresponds with the assembly position, the fastener enters in dimensional interference with the mentioned guide.
Claims
1. A covering comprising: covering plates, fasteners and longitudinal profiles, wherein: each profile is provided with a guide which is configured to cooperate with respective fasteners, the guide comprises a groove that gives access to a cavity of greater dimensions, in cross section, than the groove, a lateral edge of each plate is provided with a second groove, each fastener is configured to cooperate with the second groove to clamp the plate to the profile, characterized in each fastener has dimensions which permit a rotation between a first position and a second position when the fastener is lodged within said guide, and each fastener comprises a first shape in a first crosscut and a second shape in a second crosscut, while the second shape of the fastener enters in dimensional interference with said guide in the second position and the first shape of the fastener is in the first position displaceable along the profile.
2. The covering, according to claim 1, wherein the first crosscut is essentially perpendicular to the second crosscut.
3. The covering according to claim 1, wherein the fastener is made of an injection moulded polymer of PA (nylon), POM, PC, PP, PET or PE.
4. The covering, according to claim 1, wherein: each fastener comprises a head, a first neck adjacent to the head former, and a second neck adjacent to the first neck and a base adjacent to the second neck, and the second neck and the base being aimed at being introduced, are disposed within the groove and the cavity, respectively, of said guide.
5. The covering, according to claim 4, wherein a maximum width of the base in the first crosscut is essentially the same or smaller than a width of the groove, allowing the base to be introduced into the cavity through the groove.
6. The covering, according to claim 4, wherein a width of the second neck in the first crosscut is essentially the same as a width of the groove, and each fastener is configured to be guided by cooperating guiding surfaces of the second neck and the groove, respectively.
7. The covering, according to claim 6, wherein the width of the second neck in the first crosscut is in the range of about 90% to about 100% of the width of the groove.
8. The covering, according to claim 4, wherein said dimensional interference comprises cooperating between a first surface of the cavity and a second surface of the base.
9. The covering, according to claim 8, wherein said first surface of the cavity is adjacent to the groove.
10. The covering, according to claim 4, wherein said dimensional interference comprises cooperating between a third surface of the groove and a fourth surface of the second neck.
11. The covering, according to claim 10, wherein said third surface of the groove is adjacent to the cavity.
12. The covering, according to claim 4, wherein a thickness of material of the profile at the groove is greater than the distance between the first neck and the base in order to obtain said dimensional interference.
13. The covering, according to claim 1, wherein said dimensional interference is obtained between the fastener and opposite lateral walls of the guide.
14. The covering, according to claim 1, wherein adjacent plates present an arrangement of protrusions and recesses conjugated to each other.
15. The covering, according to claim 1, wherein a gap is provided between two adjacent plates in an assembled position.
16. The covering according to claim 3, wherein the fastener is reinforced by glass fibre, Kevlar fibre, carbon fibre, talk or chalk.
Description
[0022] For better understanding, drawings are attached by way of explanatory but not limitative example, of an embodiment of the present invention.
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[0037]
[0038] Each of the fasteners 3 are placed simultaneously within guides 11, 11, located on the edges or unseen sides of the plates 1, 1 and inside guides 21 of the profiles 2 (the arrangement of the guide 21 within profile 2 can be seen in
[0039] Each plate 1, 1, has respective guides 11, 11, each one arranged on one side or edge 19, 19, running longitudinally along the plate.
[0040] The guides 11, 11, show a hollow or cavity. The fastener can enter into the guides 11, 11 by pressing, or without it.
[0041] The guides 21 of the profiles 2 run lengthwise along the profiles, being perpendicular to the guides 11 of the plates 1. Also, the guides 21 of the profiles 2 show a hollow or a cavity 212 which is, in cross section, larger than the groove 211 through which access is gained into the cavity.
[0042] At the intersection or crossover points between the guides 11 of the plates 1 and the guides 21 of the profiles 2, fasteners 3 are inserted into the corresponding cavities of the crossing guides 11, 11, 21, fixing the plates 1 to the structure they hide.
[0043]
[0044] After the second neck 33, the fastener has a foot or base 34 of bigger dimensions than the one of the second neck 33. The function of the foot or base 34 is to be placed in the cavity 212 of the guide 21 of the elongated profile 2, with rotational capacity within it.
[0045] The fastener is complemented with a through hole 35 in order to possibly put a screw (not in principle necessary) and a groove 36 to split the head 31 into two portions. The non-use of the screw is, however, advantageous, because it allows for faster installation. Furthermore, once installed, the fastener without screw has some capacity to absorb movements, which may be beneficial in the case of expansion of the covering materials. The groove 36 allows a somewhat independent behaviour of each of the head portions 31 inserted into the guides 11, 11 or side grooves, enabling greater absorption of deformations due to expansion/contraction of materials.
[0046]
[0047] This produces a dimensional interference between the fastener 3 and the guide 21. In the case as shown, the dimensional interference causes a tight fit between the space between the first collar 32 and the base 34 of the fastener, and the wall 213 which defines the separation between the groove 211 and the cavity 212 of the guide 21 of the elongated profile 2. This leads to the locking of the fastener in its place. At the same time, the head enters into the guide of the plate already placed. It may also be desirable, or necessary, to finish entering the fastener 3 into the guide or groove of the plate by means of light blows with a hammer or mallet. After fixing the fastener, the consecutive plate may be positioned in place, making the free part of the head 31 to enter into the corresponding guide 11 of the plate which is being introduced. The fastener 3 is preferentially made of any suitable material, preferably a thermoplastic. The profiles 2 will be made preferably out of a thermoplastic material. The plates 1 can be made of any suitable material.
[0048]
[0049] The present invention is applicable both to horizontal surfaces (ceilings, flooring) or to vertical surfaces (walls).
[0050] The present invention is valid for plates made out of any kind of material.
[0051] The dimensions of the fasteners can be variable, in special the ones in the head 31 in relation, for instance, to the dimensions of the guides 11, 11. For example, the shape of the head 31 could be substantially squared, or of another type. The shape of the lateral sides or edges 19, 19 could have no conjugated protrusions and recesses, or no separation could be provided between plates in its upper part 1 y 1.
[0052]
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[0054] In this case, the interference is produced by a dimensional tolerance. Interference could also be obtained by means of conjugated shapes. It is also possible to combine different types of dimensional interference simultaneously.
[0055]
[0056] Multiple variations of the examples shown are possible, as well as the possibility to combine the various elements that have been shown in the preferred embodiments. For example, as a non limitative example, the foot 34 of the fastener in
[0057] While the present invention has been described relating to several examples of preferred embodiments, these should not be considered limitative of the invention, which will be defined by the broader interpretation of the following claims.