RESISTANT MODULAR HOLLOWED-OUT PLATE FOR MANUFACTURING SLABS
20200332528 ยท 2020-10-22
Inventors
Cpc classification
B32B3/266
PERFORMING OPERATIONS; TRANSPORTING
E04C2/521
FIXED CONSTRUCTIONS
B32B21/13
PERFORMING OPERATIONS; TRANSPORTING
B32B21/02
PERFORMING OPERATIONS; TRANSPORTING
B32B13/04
PERFORMING OPERATIONS; TRANSPORTING
E04C2/50
FIXED CONSTRUCTIONS
B32B27/00
PERFORMING OPERATIONS; TRANSPORTING
E04B1/167
FIXED CONSTRUCTIONS
E04B5/48
FIXED CONSTRUCTIONS
B32B7/12
PERFORMING OPERATIONS; TRANSPORTING
B32B13/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
E04C2/34
FIXED CONSTRUCTIONS
E04B1/16
FIXED CONSTRUCTIONS
Abstract
The invention relates to plate that comprises an upper strip (1), a lower strip (2), both of which are flat, and a multidirectionally folded, curved or undulate intermediate structure (3) arranged between the upper strip (1) and the lower strip (2), and which is joined to the upper (1) and lower (2) strips at contact zones or connection points (4) and (5), intermittently located and distributed, such that it defines at least two chambers, channels or hollow spaces, interstitial (6) and (7) and continuous, which extend throughout the plate in at least two different directions. This way, a lightweight plate is obtained that is structurally, acoustically and thermally resistant, easy to systematically manufacture or mount and can be efficiently used as an integral system for constructing slabs and similar, since the inner holes can also be used as integrated accessible channels for installations.
Claims
1. A resistant modular hollowed-out plate for manufacturing slabs, which comprises: a flat upper strip; a flat lower strip; a multidirectionally folded, curved or undulate intermediate structure arranged between the upper strip and the lower strip, and which is joined to the upper and lower strips at contact zones or connection points and, intermittently located and distributed, such that it defines al least two chambers, channels or hollowed-out spaces (6) and (7), interstitial and continuous, which extend throughout the plate in at least two different directions wherein; the intermediate structure comprises joining modules; the upper strip and or lower strip have perforations; the joining modules of the intermediate structure are joined to the upper and lower strips by one or a combination of joining means, consisting of metal plates of connectors, angular profiles, screws, male-female coupling and joining by means of adhesives.
2. (canceled)
3. The resistant modular hollowed-out plate according to claim 1, wherein the upper strip and/or lower strip have linear reinforcements contained on the surface thereof or longitudinally attached to the same.
4. (canceled)
5. The resistant modular hollowed-out plate according to claim 2 wherein the intermediate structure is made from individual modules, consisting of truncated pyramids with a polygonal base.
6. The resistant modular hollowed-out plate according to claim 3, wherein the truncated pyramids are made up of a series of flat pieces that are joined to one another, in addition to being joined to the upper strip and to the lower strip.
7. The resistant modular hollowed-out plate according to claim 3, wherein for the fastening of the truncated pyramids on the upper and lower strips, pieces with a geometry coinciding with the ends of the truncated pyramids are used.
8. The resistant modular hollowed-out plate according to claim 3, wherein the individual modules are distributed according to a matrix arrangement.
9. The resistant modular hollowed-out plate according to claim 3, wherein the individual modules are distributed according to a matrix arrangement, in duplicate and against each other.
10. The resistant modular hollowed-out plate according to claim 5, wherein the upper and lower strips have reinforcement slats and fastened to said strips, or projections or perforations, regularly distributed and separated, serving as a means for male-female fastening to the individual modules.
11. The resistant modular hollowed-out plate according to claim 1, wherein the intermediate structure is a strip with a continuous folded, undulate or curved form, in several directions, which defines peaks and troughs that make up the connection points or zones and of said undulate strip with the flat upper and lower strips.
12. The resistant modular hollowed-out plate according to claim 9, wherein the folded, undulate or curved strip making up the intermediate structure is made based on the joined individual modules, distributed according to a matrix distribution.
Description
EXPLANATION OF THE FIGURES
[0024] As a complement to the description being made, and for the purpose of helping to make the characteristics of the invention more readily understandable, in accordance with a preferred example of practical embodiment thereof, said description is accompanied by a set of drawings constituting an integral part thereof which, by way of illustration and not limitation, represent the following:
[0025]
[0026]
[0027] In
[0028]
[0029] In
[0030]
PREFERRED EMBODIMENT OF THE INVENTION
[0031] With reference to the figures, different aspects of the modular hollowed-out plate object of the invention are explained in detail below, and a preferred embodiment of the same is described.
[0032]
[0036]
[0037] In other possible embodiments of the plate, the flat upper (1) and lower (2) strips could include perforations (10) and (11), respectively, as shown in
[0038] In the case that the upper (1) and lower (2) strips respectively include perforations like (10) and (11) of
[0039]
[0043] For possible embodiments of the plate, such as the ones represented in
[0044] In relation to the foregoing, it must also be considered that for some possible embodiments of the plate, such as those represented in
[0045] The joints between the upper contact zones of the intermediate structure (4) and the flat upper strip (1), and between the lower contact zones of the intermediate structure (5) and the flat lower strip (2), can be made by means of known mechanisms, which in some possible embodiments could consist of metal plates or connectors, angular profiles, screws, male-female coupling, joining by means of adhesives, etc.
[0046] If the plate is used as an integral system of slabs for buildings, the wide continuous interstitial spaces (6) and (7) defined on the inside thereof function as integrated hollowed-out chambers, permanently accessible for the placement of installations and channels, and even for the distribution of heat and cold to adjacent inhabited spaces, eliminating the need to build additional chambers, spaces or channels, as is currently the case with slabs that are used in the state of the art.
[0047] In one possible embodiment of the plate for the use thereof as an integral system of slabs for buildings, in which the continuous channels (6) and (7) are efficiently used, the flat outer strips (1) and (2) are arranged separated from one another at such a distance that the total thickness of the plate is no greater than the actual thickness of a typical slab in the state of the art (including in this last actual thickness not only the edge of the resistant slab, but also the thickness occupied by the installations or conduits that must be arranged attached to said resistant slab). In such case, it has been proven by means of models and simulations that a lightweight plate with the characteristics described, given that the total thickness thereof collaborates in the main structural function, can support spans of typical building dimensions resting directly on pillars, without the need to be supported by beams in any direction, supporting the weight of the overloads established by the corresponding regulations, as represented in
[0048] The typical construction process of an integral system of slabs for buildings (13), based on the plate object of the invention, is schematically represented in
[0049] In some possible embodiments of the plate, which could be manufactured from a very small number of types of simple pieces, the multidirectionally folded, curved or undulate intermediate structure (3) is obtained by joining repeated modules. In more simple possible embodiments, for the uses previously described, said modules have the shape of truncated pyramids, or pyramid trunks, hollowed-out and trimmed, or repeated groups of the same, such as those represented in
[0050] In the complete assembly of the plate, the faces (15) of the truncated pyramids (14) go from the flat lower strip (2) to the flat upper strip (1), said faces remaining flat and connected to the flat outer strips, and to each other in the case of being manufactured using flat pieces, by any of the known means, without having to necessarily coincide with those represented in
[0051] For possible embodiments of the plate wherein the intermediate structure (3) consists of joining modules in the shape of truncated pyramids (14), one may use pieces (16) with a geometry that coincides with the ends of the trunks of the pyramids in order to facilitate the anchoring of said modules to the flat outer strips (1) and (2) in the corresponding connection zones or points (4) and (5). If the modules in the shape of truncated pyramids (14) are produced by joining the flat pieces that correspond to the faces (15) thereof, the pieces (16) arranged on the ends of the trunks of the pyramids also serve to facilitate the connection of said flat pieces, according to the representation in
[0052] For possible embodiments of the plate based on modules in the shape of truncated pyramids (14), the intermediate structure (3) is formed by joining said individual modules, repeatedly arranged according to a matrix in accordance with the specific geometry thereof, able to facilitate the connection thereof by means of the pieces (16) described, as represented in (17), in one of the two alternative possibilities shown in
[0053]
[0054] It can be seen how linear elements, pieces or reinforcing slats (8) can be attached to the flat upper strip (1), in this case oriented in two transverse directions, and regularly separated from each other, which can also serve as a means for fastening by fitting or male-female coupling of the modules of the intermediate structure (3), which in the case shown are truncated pyramids (14).
[0055] The same considerations can be made with respect to the lower strip (2), in other words, reinforcement linear elements, pieces or slats (9) can also serve for coupling the lower ends of the trunks of the pyramids on said lower strip.
[0056] Another possible similar embodiment form of the fastening of the individual modules would consist of, on the lower face of the upper flat strip (1) and on the upper face of the lower flat strip (2), making a series of projections, veins or perforations of the geometry coinciding with the ends of the trunks of the pyramid, in the corresponding connection zones or points (4) and (5), similar to that which is represented in
[0057] The preferred embodiment of the plate in
[0058] Having thus adequately described the nature of the present invention, as well as how to put it into practice, it must be noted that, within its essential nature, the invention may be carried out according to other embodiments differing in detail from that set out by way of example, which the protection sought would equally cover, provided that the fundamental principle thereof is not altered, changed or modified.