MODULAR PARTITION AND FABRICATION THEREOF
20210079649 ยท 2021-03-18
Inventors
Cpc classification
E04C2/38
FIXED CONSTRUCTIONS
E04B2001/6195
FIXED CONSTRUCTIONS
E04B2/7407
FIXED CONSTRUCTIONS
E04C2/526
FIXED CONSTRUCTIONS
E04B2/7405
FIXED CONSTRUCTIONS
International classification
Abstract
A modular device adapted for subdividing room space, the modular device comprising: a panel comprising a corrugated portion positioned between a first planar surface and a second planar surface of the panel, wherein the peaks of the corrugated portion are in engagement with the first planar surface, wherein the troughs of the corrugated portion are in engagement with the second planar surface; the first planar surface and the second planar surface each having a first end and a second end; wherein the first and second ends of the first planar surface are respectively opposite relatively to the first and second ends of the second planar surface; the second planar surface is parallel to the first planar surface; wherein the corrugations are is parallel to the vertical axis of the panel; a concave female portion positioned along the vertical axis in the panel, wherein the concave female portion is formed from at least: the first end of the first planar surface, the first end of the second planar surface, and a curved portion from the corrugated portion; a convex male portion positioned along the vertical axis of the panel, wherein the convex male portion is positioned outside of the second end of the first planar surface and the second end of the second planar surface; wherein to extend the length of the panel, the convex male portion of a first panel is adapted to engage with the concave female portion of a second panel.
Claims
1. A modular device adapted for subdividing room space, the modular device comprising: a panel comprising a corrugated portion positioned between a first planar surface and a second planar surface of the panel, wherein the peaks of the corrugated portion are in engagement with the first planar surface, wherein the troughs of the corrugated portion are in engagement with the second planar surface; the first planar surface and the second planar surface each having a first end and a second end; wherein the first and second ends of the first planar surface are respectively opposite relatively to the first and second ends of the second planar surface; the second planar surface is parallel to the first planar surface; wherein the corrugations are is parallel to the vertical axis of the panel; a concave female portion positioned along the vertical axis in the panel, wherein the concave female portion is formed from at least: the first end of the first planar surface, the first end of the second planar surface, and a curved portion from the corrugated portion; a convex male portion positioned along the vertical axis of the panel, wherein the convex male portion is positioned outside of the second end of the first planar surface and the second end of the second planar surface; wherein to extend the length of the panel, the convex male portion of a first panel is adapted to engage with the concave female portion of a second panel.
2. The modular device according to claim 1, further comprising a male cap, wherein the male cap is adapted to cover the female portion of the last panel.
3. The modular device according to claim 2, further comprising a corner portion, wherein the corner portion comprises a female corner cap and an adjacent male part; wherein the female corner cap is adapted to engage with the male portion of the front panel, wherein the adjacent male part is adapted to engage with the female portion of the next panel; and wherein the adjacent male part is extended outwardly from an outer surface of the female cap at an angle relative to the longitudinal axis of the length of the panel.
4. The modular device according to claim 3, wherein the angle is 90 relative to the longitudinal axis of the length of the panel.
5. The modular device according to claim 1, further comprising an elongated base plate adapted for attaching to a base of the panel, wherein the length of the elongated base plate is shorter than the length of the base of the panel.
6. The modular device according to claim 5, wherein the elongated base plate having a first end and a second end, wherein the first end of the base plate is adapted to engage with a first end of the base of the panel, wherein the female portion of the panel is outside the first end of the base plate.
7. The modular device according to claim 6, wherein the second end of the base plate is adapted to engage with a second end of the base of the panel, wherein the male portion of the panel is outside the second end of the base plate.
8. The modular device according to claim 5, wherein the base plate comprises a plurality of legs extending perpendicularly away from the longitudinal axis of the base plate, wherein each leg of the plurality of legs has a floor securing means.
9. The modular device according to claim 1, wherein the panel is constructed from at least one polymer selected from the group of: acrylonitrile butadiene styrene, polyethylene, polycarbonate, polyamide, high impact polystyrene, and polypropylene.
10. The modular device according to claim 1, wherein the female portion further comprises a securing means positioned in the female portion.
11. The modular device according to claim 1, further comprising an elongate U bracket along the longitudinal axis of the panel, wherein a base of the U bracket is mountable to the ceiling of room space, and wherein the arms of the U bracket are adapted to secure with the top of the panel.
12. The modular device according to claim 1, wherein the panel is formed from at least one selected from the group of: extrusion, and injection moulding.
13. The modular device according to claim 1, further comprising a panel reinforcement positioned between the first planar surface and the second planar surface, wherein the panel reinforcement is polyurethane foam.
14. The modular device according to claim 1, wherein a sinusoidal wavelength to amplitude ratio of the corrugation is in the range of: 1:1 to 3:1.
15. The modular device according to claim 14, wherein the sinusoidal wavelength to amplitude ratio of the corrugation is 2:1.
16. The modular device according to claim 1, wherein the height of the panel is in the range of: 1 metre to 3 metres, the length of the panel is in the range of: 1 metre to 4 metres, and the thickness of the panel is in the range of: 20 millimetres to 80 millimetres.
17. The modular device according to claim 16, wherein the height of the panel is 1 metre, the length of the panel is 2.4 metres, and the thickness of the panel is 50 millimetres.
Description
BRIEF DESCRIPTION OF THE FIGURES
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DESCRIPTION OF THE INVENTION
[0058] Preferred embodiments of the invention will now be described with reference to the accompanying drawings and non-limiting examples. It should be noted in the following description that like or the same reference numerals in different embodiments denote the same or similar features.
[0059] In an embodiment of the present invention, as illustrated in
[0060] A female portion 28 may be positioned along the vertical axis in the panel 12. The first planar surface 16 and the second planar surface 18 may each have a certain thickness. The first planar surface 16 may comprise an outer planar surface and an inner planar surface, and the second planar surface 18 may comprise an outer planar surface and an inner planar surface. The female portion 28 may be formed from at least: the first end of the first inner planar surface 35, the first end of the second inner planar surface 37, and a curved portion 30 from the corrugated portion 14. The female portion 28 may have a concave profile.
[0061] A male portion 32 may be positioned along the vertical axis of the panel 12, wherein the male portion 32 may be positioned outside of the second end of the first planar surface 26 and the second end of the second planar surface 27. The male portion 32 may have a convex profile outside of the second ends of the first planar and second planar surfaces. For extending the length of the panel 12, the convex male portion 32 of a first panel 12 may be adapted to engage with the concave female portion 28 of a second panel 12. The first side of the male portion 34 may be engaged with a first side of the female portion 35, and a second side of the male portion 36 may be engaged with a second side of the female portion 37. Engagement of the convex male portion 32 and the concave female portion 32 may be such that the outer surface of the first planar surface of the second panel may be flush with the outer surface of the first planar surface of the first panel. Similarly, the outer surface of the second planar surface of the second panel may be flush with the outer surface of the second planar surface of the first panel. It may be preferred that the outer surface of the first planar surface 16 and the outer surface of the second planar surface 18 may be smooth. As illustrated in
[0062] As illustrated in
[0063] As illustrated in
[0064] Similar to the female cap 61 of the female corner cap 60, there may a terminal female cap 80 as illustrated in
[0065] As shown in
[0066] As shown in
[0067] The panel may be constructed from at least one polymer selected from the group of: acrylonitrile butadiene styrene, polyethylene, polycarbonate, polyamide, high impact polystyrene, and polypropylene. The panel may be formed from at least one selected from the group of: extrusion, and injection moulding.
[0068] In another embodiment of the present invention, the module device 10 may further comprise an elongate U bracket along the longitudinal axis of the panel 12 (not shown). The base of the U bracket may be mountable to the ceiling of room space, and wherein the arms of the U bracket may be adapted to secure with the top portion of the panel 42. The top portion of the panel 42 may be secured by sliding the top portion to the U bracket.
[0069] In another embodiment of the present invention, the corrugation of the corrugated portion 14 may have a sinusoidal wavelength to amplitude ratio in the range of: 1:1 to 3:1. Preferably, the sinusoidal wavelength to amplitude ratio of about 2:1.
[0070] In another embodiment of the present invention, the height of the panel 12 may be in the range of: 1 metre to 3 metres, the length of the panel 12 may be in the range of: 1 metre to 4 metres, and the thickness of the panel may be in the range of: 20 millimetres to 80 millimetres. Preferably, the height of the panel 12 may be 1 metre, the length of the panel 12 is 2.4 metres, and the thickness of the panel is 50 millimetres.
[0071] When additional panels are engaging with the parts, the connection between the male and female portions may be glued for extra reinforcement. Once the glue is dried, it may be appreciated that the dried glue may not be level with the surface of the panel 12. The dried glue may be sanded such that the glued panels are level. The advantage of this modular device may be that it is significantly easier and cheaper to erect compared to conventional non-structural walls, which may be of gyprock and timber supports.
[0072] In further embodiments, the empty void space 40 between the corrugations of the panel may be backfilled with a non-structural filler agent such as expandable styrene foam. The non-structural filler may include materials that are flame retardant, fire retardant and/or noise absorbing.
[0073] Although the invention has been described with reference to specific examples, it will be appreciated by those skilled in the art that the invention may be embodied in many other forms, in keeping with the broad principles and the spirit of the invention described herein.
[0074] The present invention and the described preferred embodiments specifically include at least one feature that is industrial applicable.