SPATIAL STRUCTURE
20180023284 ยท 2018-01-25
Inventors
Cpc classification
E04B1/1906
FIXED CONSTRUCTIONS
E04B2001/196
FIXED CONSTRUCTIONS
E04B2001/1966
FIXED CONSTRUCTIONS
International classification
Abstract
A spatial structure that enables the assembly and disassembly of architectural elements quickly and easily, ensuring the necessary structural robustness and which basically comprises a node (1) with a plurality of sockets (2), a bar (3) intended for insertion at either of the two ends thereof in said sockets (2), a perforated screw (5) whose inner surface (6) allows the insertion of the end of the bar (3) and whose outer surface is coupled to the sockets (2), and a portion of flexible washer (8) suitable for insertion into the socket (2) of the node (1) and closing by compression as a result of the thrust exerted by the perforated screw (5) to adopt the shape of a substantially closed washer such that said bar (3) is locked inside the perforated screw (5), preventing the disassembly of the structure but not the rotation of the bar (3) inside the socket (2).
Claims
1. A spatial structure comprising at least: one node (1) with a plurality of sockets (2), wherein each socket has coupling means (7), one bar (3) which is to be inserted at either of the two ends thereof into the sockets (2) of the nodes (1) and wherein said ends each comprise at least one retaining element (4), one perforated screw (5) whose inner surface (6) allows the insertion of the end of the bar (3) and whose outer surface has coupling means (7) formed by a male threaded portion complementary to a similar female thread that forms the coupling means (7) of the sockets (2) and a portion of flexible washer (8 8) that covers a circular arc of circumference suitable for insertion into the socket (2) of the node (1) and being closed by means of compression as a result of the thrust of the perforated screw (5) in order to adopt the shape of a substantially closed washer which cooperates with the retaining element (4) of the end of the bar (3), such that said bar (3) is locked inside the perforated screw (5), thus preventing disassembly of the assembly but not the rotation of the bar (3) within the socket (2); where in order to close the portion of flexible washer (8) by compression as a result of a thrust by means of a perforated screw (5), the perforated screw (5) has an inclined plane (14) with an angle intended for coupling at an inclined plane (14) with the same angle a as the portion of flexible washer (8), characterized in that the portion of flexible washer (8) comprises: a thin strip (10) that corresponds to the outer diameter thereof, and on the inner diameter of said strip (10), a plurality of teeth (11) greater in thickness than the strip (10), which project inwards and wherein said teeth (11) alternate with empty areas where only the strip (10) is found, forming a portion of ring gear; and in that the retaining element (4) of the bar (3) for retaining the portion of flexible washer (8) is formed by a perimeter step.
2. (canceled)
3. The spatial structure according to claim 2, characterized in that the bars (3) comprise: a first section, which corresponds to the free end thereof, having an outer diameter such that it enables them to pass through the inside of the perforated screw (5); a second section, further away from the free end, which is smaller in diameter than the first section, forming the perimeter step that constitutes the retaining element (4) of the portion of flexible washer (8), and a third conical section reaching up to the maximum outer diameter of the central area of the bar (1), wherein said second section, having a constant diameter, extends over a greater length than twice the width of the portion of flexible washer (8).
4. (canceled)
5. The spatial structure according to claim 1, characterized in that the inclined planes (14) of the perforated screw (5) and the inclined sections (14) of the portion of flexible washer (8) are comprised between 30 and 45.
6. The spatial structure according to claim 1, characterized in that the portion of flexible washer (8) has a double inclined section (14), one on each side, such that it does not matter how the operator positions it within the socket (2) of the node (1).
7. The spatial structure according to claim 1, characterized in that it comprises two portions of flexible washer (8) joined together by their inner faces by a joint system (16) such that the same has inclined sections (14) on both sides.
8. The spatial structure according to claim 1, characterized in that the portion of flexible washer (8,8) covers a circular arc with a circumference of 313.
9. The spatial structure according to claim 1, characterized in that the node (1) has a through hole (12) that defines its vertical orientation and in that the poles in which the through hole (12) is located have a flattened configuration forming flat faces having a plurality of holes (13) distributed at equal angles around the through hole (12).
10. The spatial structure according to claim 1, characterized in that the perforated screw (5) has grooves (9) distributed at equal angles which are suitable for coupling therein a part or tool for the assembly and/or disassembly.
11. The spatial structure according to claim 7, characterized in that the holes (13) and the grooves (9) are distributed at equal angles every 45, such that they are complementary to each other.
Description
DESCRIPTION OF THE DRAWINGS
[0028] To complete the present description, and for the purpose of aiding in a better understanding of the characteristics of the invention, the present specification is accompanied by a set of drawings as an integral part thereof, which by way of illustration and not limitation, represent the following:
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
PREFERRED EMBODIMENT OF THE INVENTION
[0037] According to the figures, in which a preferred embodiment of the invention is shown, the spatial structure of the present invention comprises: [0038] A node (1) with a plurality of sockets (2) on the surface thereof, wherein each socket has coupling means (7), [0039] a bar (3) which is to be inserted at either of the two ends thereof into the sockets (2) of the nodes (1) and wherein said ends each comprise at least one retaining element (4), [0040] a perforated screw (5) whose inner surface (6) allows the insertion of the end of the bar (3) and whose outer surface has complementary coupling means (7) to the coupling means (7) of the sockets (2); [0041] a portion of flexible washer (8) suitable for insertion into the socket (2) of the node (1) and being closed by means of compression as a result of the thrust of the perforated screw (5) in order to adopt the shape of a substantially closed washer which cooperates with the retaining element (4) of the end of the bar (3) such that said bar (3) is locked inside the perforated screw (5), thus preventing disassembly of the assembly but not the rotation of the bar (3) within the socket (2).
[0042] Wherein the portion of flexible washer (8) comprises two elements: [0043] a thin strip (10) that corresponds to the outer diameter thereof, which is responsible for providing the washer with the greatest possible resilience; and [0044] on the inner diameter of said strip, a plurality of teeth (11) greater in thickness than the strip, which project inwards such that said teeth (11) alternate with empty areas where only the strip (10) is found, forming a portion of ring gear.
[0045] Furthermore, as may be seen in the figures, especially in
[0046] The purpose of this bushing to be able to provide support and fixing for the outer pieces of the modular structure such as fixing the fastening and safety elements, or securing the entire structure to a support point (ground or vertical surface). Furthermore, when said through hole (12) does not serve as a support for any outer piece of the modular structure, the through hole (12) can be covered up with a plug, a countersunk screw or any other similar element.
[0047] Moreover, according to the preferred embodiment of the invention shown in said figures, the poles of the node (1) in which the through hole (12) is located have a flattened configuration, which further facilitates the positioning within the space of the node (1), by defining its vertical orientation, and therefore facilitates the mounting of the final structure.
[0048] Furthermore, as can be seen in
[0049] Moreover, the bar (3), shown in
[0050] In addition, each end of the bar (3) has a retaining element (4) for retaining the portion of the flexible washer (8). Specifically, according to a possible embodiment of the invention shown in
[0051] In this way, the bars (3) will have, in the first section that corresponds to the free end thereof, an outer diameter which will enable them to pass tightly yet freely through the inside the perforated screw (5), to then, in a second section further away from the free end, decrease said diameter in order to form the step that constitutes the retaining element (4) of the portion of the flexible washer (8). This second section having a constant diameter extends over a length greater than twice the width of the portion of flexible washer (8) to then increase again progressively forming a third conical section until it reaches the maximum outer diameter of the central area of the bar (1).
[0052] As regards the perforated screw (5), and according to a preferred embodiment shown in
[0053]
[0054] In its lower part, as can be seen in
[0055] Furthermore,
[0056] The perforated screw (5) also has a series of grooves (9) suitable for coupling therein a tightening part or tool so that the operator can both secure the assembly and disassemble it. Furthermore, said grooves (9), are preferably circular and distributed at equal 45 angles such that they are complementary to the holes (13) in the flattened areas of the node (1), thus multiplying the number of support points and orientations in which outer parts can be arranged, thus making its orientation in space unimportant.
[0057] As regards the angle a of inclination of both the inclined planes (14) of the perforated screw (5) and the inclined sections (14) of the portion of flexible washer (8), according to the preferred embodiment, these are preferably comprised between 30 and 45, since the makeup of said portion of flexible washer (8) shows remarkable flexibility, higher angles of attack will not be required such as in the prior state of the art wherein said angle was 45.
[0058] This, as well as having the clear advantage that less effort will be have to be exerted when mounting the assembly, becomes one of the main advantages of the invention, which is made possible due to the design of the portion of flexible washer (8) which is proposed herein.
[0059] Specifically, the significant improvements made in the flexibility of the portion of flexible washer (8) as a result of its new design, allow the angle a of inclination of the inclined sections (14) of the portion of flexible washer (8) to be decreased to, as previously stated, to between 30 and 45. This has two major advantages: [0060] Maximizing the surface of the teeth (11) responsible for supporting the stress, thus allowing the assembly to bear greater mechanical loads, or [0061] Enabling an alternative embodiment (not shown in the figures) of the portion of flexible washer (8) with a double inclined section (14), one on each side, such that it does not matter how the operator positions it inside the socket (2) of the node (1). This is possible because, having said inclined sections (14) with a maximum angle a of inclination of 45, there is enough space within the thickness of the portion of the washer (8) for two such sections, without having to oversize the same.
[0062] According to another possible alternative embodiment as shown in
[0063] Although it can be easily deduced that the set of the two portions of flexible washer (8,8) double the thickness of a single portion, this embodiment also has the advantage of providing increased joint strength, which will allow stronger bars (3) or bars (3) with an increased cross-section to be incorporated.
[0064] However, as previously noted, since the second section of the end of the bars (3) has a constant diameter longer than twice the width of said portion of flexible washer (8), said section will therefore be sufficient to ensure the coupling and release of the bar (3) and the node (1).
[0065] Finally, it should be noted that, as can be seen in