REINFORCED PEDESTAL AND RETICULAR STRUCTURE THAT SUPPORTS SUPERPOSED SURFACES AND CONSTRUCTION METHOD THEREOF
20220349188 · 2022-11-03
Assignee
Inventors
Cpc classification
International classification
Abstract
Reinforced pedestal (A) to support raised surfaces or overlying on fixed surfaces, comprising: an internal part (1), made up of a truncated conical tubular body (2); and at its wide end a base (7) is provided; and a reinforced external tubular part (9) that houses the internal part (1), made up of a truncated conical tubular body (10), in whose center it has a longitudinally truncated conical gap to house the truncated conical body (2) of the internal part (1).
Grid structure to support overlapping surfaces, comprising: at least two reinforced pedestals (A) placed apart and parallel to each other, at a sufficient distance to support an overlapping surface; and at least two guide crossheads (13) useful for guiding the placement of the pieces (14) that are going to shape to the overlying surface.
Method for building the grid structure, comprising: at least, two modules (B) and/or (C) that form the reinforced pedestals (A); assembling the pieces (1 and 9) of a module with the pieces (1 and 9) of other modules; and to include at least two guide crossheads (13) useful in placing the pieces (14) that are going to conform to the overlying surface on a fixed surface.
Claims
1. A reinforced pedestal (A) to support raised surfaces or overlying on fixed surfaces, comprising: i) an internal part (1), made up of a truncated conical tubular body (2), which in turn comprises externally and longitudinally, at least, one rib (3) to give it greater resistance to weight; and at the wide or lower end of the tubular body a base (7) is provided; and ii) an external tubular part (9) that houses the internal part (1), made up of: a truncated conical tubular body (10) opened at both ends, which in its center has; a truncated conical gap to house the truncated conical body (2) of the internal part (1), said truncated conical gap is delimited by at least two internal radial walls (11) that originate, diametrically opposite each other, from the inner wall of the tubular body (10) and are pulled towards the central longitudinal axis of said tubular body (10), so the width of the radial inner walls (11) is that which allows leaving a gap with the shape and dimensions enough for the truncated tubular body (2) to be completely housed; a ring (12) supported by the free edges of the internal radial walls (11) located towards the center of the narrow or upper end of the truncated conical body (10), also delimits the truncated conical space; at least two longitudinal slits (15) diametrically opposite each other are provided on the external walls of the truncated conical tubular body (10); and some edges (16) are strategically provided on the lower internal edge of the external walls of the body (10) to ensure internally and perpendicularly regarding the external walls, the base (7) of the part (1), so that said edges (16) are pulled towards the interior of the tubular body (10), in such a way that they secure the base (7), giving firmness to the reinforced pedestal (A).
2. The pedestal of the previous claim, wherein the internal part (1) comprising at its narrow or upper end, a perforated cavity (4), to house a fastening element (5) that holds a screw (6).
3. The pedestal of claim 1, wherein the base (7) of the internal part (1), comprises at least one perforation (8) to introduce any fastening means to fix said part (1) to a fixed surface.
4. The pedestal of the preceding claim, wherein the fastening means is any compatible with the perforation (8).
5. The pedestal, as claimed in claim 1, wherein the base (7) of the internal part (1) also comprises at least one horizontal edges (22, 25) on one of its sides (7).
6. The pedestal according to claim 1, wherein the position of the ring (12) is that which allows a sufficient upper gap to be left where a guide crosshead (13) can be inserted.
7. The pedestal according to claim 1, wherein the ring (12) comprises in its lower part a perforated cavity (4′) equal to the perforated cavity (4) of the tubular body (2), where these cavities (4 and 4′) form an enclosure to house the fastening means (5) that holds a screw (6).
8. The pedestal of the previous claim, wherein the fastening means (5) of screws (6) is a nut.
9. The pedestal of claim 1, wherein the external tubular part (9) has at its wide or lower end of the tubular body (10), at least one inlet (23) on the lower edge of at least one of the sides of the tubular body (10) so that the horizontal edge (22, 25) of the base (7) is perfectly housed in said inlet (23).
10. A grid structure to support overlying surfaces on a fixed surface, that comprising: i) at least two reinforced pedestals (A), in accordance with the preceding vindications, placed apart and parallel to each other, at a sufficient distance to support an overlapping surface (14); and ii) at least two guide crossheads (13) useful to guide the placement of the pieces (14) that are going to shape to the overlying surface on a fixed surface, where said guide crossheads (13) have a pivot (13′) to be inserted into the upper space of the ring (12), passing through its lower cavity (4′) to the perforated cavity (4) of the part (1).
11. The structure of the preceding claim, that further comprising at least one connector that joins in a linear plane the external reinforced tubular part (9) of a reinforced pedestal (A) with the internal reinforced part (1) of another reinforced pedestal (A).
12. The structure of the preceding claim, wherein the connector is a longitudinal connector (17), where one of its ends is attached to the horizontal edge (22) of the base (7) of the internal part (1) and the other end is attached to the lower edge of the non-entry side (23) of the external wall of the tubular body (10).
13. The structure of claim 11, wherein the connector is a first transverse connector (24) that joins the two internal parts (1) of two contiguous reinforced pedestals (A), by means of second linear edges (25) located on the sides adjacent to the sides where the first linear edges (22) of the base (7) are.
14. The structure according to claim 11, wherein the connector is a second transverse connector (26) that joins the two external pieces (9) of two contiguous reinforced pedestals (A), by means of their lower edges of their sides that do not have inlets (23).
15. The structure according to claims 10 to 14, in which it also comprises at least one detachment mechanism (18) to easily separate the pieces (1 and 9) of the connector that joins them.
16. The structure according to the previous claim, wherein the detachment mechanism (18) is placed at the junction points between the connectors (17, 24 and 26) and the edges (22, 25) of the base (7) of the internal parts (1), and/or the lower edge of the external wall of the tubular body (10) of the external parts (9).
17. The structure according to claims 15 and 16, wherein the detachment mechanism (18) is a slit, and/or a weakening.
18. The structure according to claims 10 and 11, in which it also comprises at least one holding element (19) for objects in the connector that joins the parts (1) and (9).
19. The structure of the preceding claim, wherein the fastening element (19) is selected from the following group: rings, rings, and staples.
20. A method for building the grid structure, in accordance with claims 10 to 20, comprising: i) provides at least two modules (B) and/or (C) that form reinforced pedestals (A), where each module comprises: at least one internal part (1) with at least one horizontal edge (22,25) on at least one of the sides of its base (7); an external tubular piece (9) that has at its wide or lower end of the tubular body (10), at least one inlet (23) in the lower edge of at least one of the sides of the tubular body (10) so that the horizontal edges (22, 25) of the base (7) are perfectly housed in said entrance (23); and at least one connector joins the internal part (1) with the external tubular part (9) in a horizontal plane; ii) assemble the pieces (1 and 9) of a module with the pieces (1 and 9) of other modules to assemble the reinforced pedestals (A); where the internal part is inserted into the truncated conical space of the external part (9), until the base (7) is secured by the edges (16) of said part (9), and the horizontal edges (22, 25) they are coupled to their respective inlet (23) of such external tubular part; iii) repeat the previous step until assembling all required modules (B) and/or (C) forming the required pedestals (A); iv) assembling parts (1, 9) independently of those parts (1, 9) that were not assembled, to complete the grid structure; and v) include at least two guide crossheads (13) useful in placing the pieces (14) that are going to conform to the overlying surface on a fixed surface.
21. The method of the preceding claim, wherein the connector that joins the parts (1 and 9) is a longitudinal connector (17), where one of its ends joins the horizontal projection (22) of the base (7) of the internal part (1) and the other end is attached to the lower edge of the side that does not have an entrance (23) of the external wall of the tubular body (10).
22. The method of claim 20, wherein the connector that joins the parts (1 and 9), is a first transverse connector (24) that joins the two internal parts (1) of two contiguous reinforced pedestals (A), by means of second linear edges (25) located on the sides adjacent to the sides where the first linear edges (22) are.
23. The method according to claim 20, wherein the connector that joins the parts (1 and 9) is a second transverse connector (26) that joins the two external parts (9) of two contiguous reinforced pedestals (A), throughout the lower edges of its sides that do not have entrances (23).
24. The method according to claims 20 to 23, in which it further comprises applying at least one detachment mechanism (18) to easily separate the pieces (1 and 9) from the connectors (17, 24 and 26).
25. The method according to the preceding claim, wherein the detachment mechanism (18) is applied at the junction points between the connectors (17, 24 and 26) and the edges (22, 25) of the base (7) of the internal parts (1), and/or the lower edge of the external wall of the tubular body (10) of the external parts (9).
26. The one according to claims 24 and 25, wherein the applied detachment mechanism (18) is a slit and/or a weakening.
27. The method according to claim 20, in which provides at least one holding element (19) for objects in the connector that joins the parts (1) and (9).
28. The method of the preceding claim, wherein the fastening element (19) is selected from the following group: rings, rings, and staples.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
Reinforced Pedestal (A)
[0029] At first instance, the present invention has for purpose a reinforced pedestal (A) to support raised surfaces or overlying on fixed surfaces; where the gap that remains between the raised or overlying surface and the fixed surface, ducts, conduits, cables, pipes, hoses, etc., are housed for services or other purposes. Raised or overlapping surfaces can be what are commonly called: “false floors”, “false walls”, “false ceilings”, to name a few examples.
[0030] According to
[0031] With the truncated conical shape of the internal part (1) it is possible to obtain a resistance to weight; and by adding the external ribs (3) it is possible to further increase the resistance to weight of said internal part (1).
[0032] Said improved pedestal (A) also comprises an external tubular part (9) that houses the internal part (1); where one of the embodiments of the external tubular part (9) is made up of a truncated conical tubular body (10) opened at both ends, in whose center has a longitudinally truncated conical space to house the truncated conical body (2) of the internal part (1), see
[0033] In the external walls of the truncated conical tubular body (10) of the external tubular part (9), there are at least two longitudinal groves provided (15) diametrically opposite each other, which are thrown towards the interior of the tubular body (10). going longitudinally along the inner wall of said tubular body (10); such longitudinal grooves (15) serve as reinforcements to give more weight resistance to the external walls of the tubular body (10), because as the height of the walls of the tubular body (10) increases, the resistance decreases.
[0034] Furthermore, in order to internally secure said base (7) to the external walls of the tubular body (10), on the internal lower edge of the external walls, some edges (16) are strategically provided that are thrown towards the interior of the tubular body (10), in such manner that the base (7) is perpendicular in relation to the external walls, fixed by said edges (16), and thus the entire internal tubular part (1) is also firm inside the tubular part (9), see
[0035] Just as the internal part (1), the external tubular part (9), by having a truncated conical shape, acquires a level of resistance to weight and when the grooves (15) are added, the resistance to weight increases.
[0036] The way to integrate the improved pedestal (A), to support raised or overlying surfaces, according to the present invention, is to insert the truncated conical tubular body (2), of the internal part (1), through the lower part of the external tubular part (9), being housed in the truncated conical space of said external tubular part (9), and pressing the base (7) of said internal part (1) until the edges (16) trap the base (7), see
[0037] In this manner we obtain a pedestal or reinforced support (A) to support and/or hold elevated or overlying surfaces on a fixed surface, which can support a weight of 5 to 10 tons/m2, thanks to the truncated conical shapes and added reinforcements the components.
Grid Structure
[0038] One more instrument of the present invention is a grid structure to support overlying surfaces on a fixed surface, where said grid structure comprises: [0039] i) at least two reinforced pedestals (A), such as the pedestals described above, which are placed apart and parallel to each other, at a sufficient distance to support an overlapping surface (14); and [0040] ii) at least two guide crossheads (13) useful to guide the placement of the pieces (14) that are going to shape the overlying surface on a fixed surface, where said guide crossheads (13) have a pivot (13′) to be inserted into the upper space of the ring (12), passing through its lower cavity (4′) to the perforated cavity (4) of the piece (1).
[0041] One modality of the grid structure of the present invention is that it also comprises at least one connector that joins in a linear plane the external reinforced tubular part (9) of a reinforced pedestal (A) with the internal reinforced part (1) of another reinforced pedestal (A). Said connector can be a longitudinal connector (17), where one of its ends is attached to a horizontal projection (22) of the base (7) of the internal part (1) and the other end is attached to the lower edge of the side that does not have an inlet (23) on the external wall of the tubular body (10). Another modality is when the connector is a first transverse connector (24) that joins the two internal parts (1) of two contiguous reinforced pedestals (A), by means of second linear edges (25) located on the sides adjacent to the sides where the first linear edges (22) of the base (7) are. The connector can also be a second transverse connector (26) that joins the two external pieces (9) of two contiguous reinforced pedestals (A), by means of their lower edges of their sides that do not have inlets (23).
[0042] Another modality of the structure according to this invention is when it also comprises at least one detachment mechanism (18) to easily separate the pieces (1 and 9) of the connector that joins them; where the detachment mechanism (18) is preferred to be placed at the junction points between the connectors (17, 24 and 26) and the edges (22, 25) of the base (7) of the internal parts (1), and/or the lower edge of the external wall of the tubular body (10) of the external parts (9). An example of the detachment mechanism (18) is a slit, and/or a weakening, or any other mechanism that allows the pieces (1, 9) to be easily detachable.
[0043] Another variant that the aforementioned structure may have, is that it may also comprises at least one fastening element (19) adhered to the connector that joins the parts (1) and (9); where the fastening element (19) is selected from the following group: rings, rings, and staples, to quote a few examples.
[0044] In order to assemble faster and efficiently the grid structure proposed by the present invention, it is proposed to manufacture the modules (B and C) forming the reinforced pedestals (A); Therefore, these modules (B and C) and all their variants that can be built are subjects of the present invention. Furthermore, a description of some embodiments of said pedestal-forming modules (B, C) is made, by way of illustrative and non-limiting examples.
[0045]
[0046] Therefore, it is obvious that said simple module (B) can be made more complex by adding more internal parts (1) and external tubular parts (9), in a quadrangular, rectangular or other arrangement. Therefore, an embodiment of a complex module (C) forming pedestals (A), is as illustrated in
[0047] It is worth mentioning that, in this embodiment, it is obvious to an expert in the art that the longitudinal and transverse connectors (17, 24 and 26) can have a different arrangement, such as being crossed, including the parts (1 and 9) They could have a different distribution, as long as a perfect coupling between simple (B) and/or complex (C) modules can be carried out.
[0048] Therefore, the grid structure of the present invention can also be built with, at least, two modules (B and/or C) that form the aforementioned reinforced pedestals (A), to support raised surfaces or overlying on fixed surfaces; where the pieces (1 and 9) of a simple module (B) and/or complex module (C), are assembled with the pieces (1 and 9) of other simple modules (B) and/or complex modules (C), see
[0049] In
[0050] To fix the pieces (14) that will give rise to the raised surface, any fastening element can be used, such as screws (6), which are inserted into the plates and pass through the ring (12) of a tubular piece (9) and the upper perforation of the truncated conical tubular body (2) of an internal part (1), and to fix it a washer (5) is provided in the cavity formed by the cavities (4 and 4′) of the tubular truncated body (2). If the part (14) is hard or very resistant, previously drilling can be done for the introduction of the screw (6).
[0051] The grid structure of the present invention also has the advantage that it can be disassembled, so it can be assembled and disassembled easily and, in less time, raised or overlapping surfaces, which gives it more advantages compared to other false surface supports, which are fixed and complicated to build.
Construction Method of the Grid Structure
[0052] Therefore, another subject of the present invention is a method for building the grid structure, in accordance with the present invention, where said method comprises the following steps: [0053] i) provide at least two modules (B) and/or (C) that form reinforced pedestals (A), where each module comprises: at least one internal part (1) with at least one horizontal edge (22 , 25) on at least one of the sides of its base (7); an external tubular piece (9) that has at its wide or lower end of the tubular body (10), at least one inlet (23) in the lower edge of at least one of the sides of the tubular body (10) so that the horizontal edge (22, 25) of the base (7) is perfectly housed in said entrance (23); and at least one connector joins the internal part (1) with the external tubular part (9) in a horizontal plane; [0054] ii) assemble the pieces (1 and 9) of a module with the pieces (1 and 9) of other modules to assemble the reinforced pedestals (A); where the internal part is inserted into the truncated conical gap of the external part (9), until the base (7) is secured by the edges (16) of said part (9), and the horizontal edges (22, 25) are coupled to their respective inlet (23) of said external tubular part (9); [0055] iii) repeat the previous step until all the required modules (B) and/or (C) are assembled forming the pedestals (A); and [0056] iv) assembling parts (1, 9) independently in those parts (1, 9) that were not assembled, to finish the grid structure.