FRACTAL STRUCTURE SYSTEM
20230088896 · 2023-03-23
Inventors
Cpc classification
E04C3/36
FIXED CONSTRUCTIONS
E04B2001/5881
FIXED CONSTRUCTIONS
E04B2001/2472
FIXED CONSTRUCTIONS
International classification
Abstract
A fractal structure system provides building components with different sizes, which a building component with the next smaller size can insert into or attach to a building component with the next larger size. Each building component has a plurality of channel walls radiating outwardly, and the plurality of channel walls forms a plurality of channels. Each building component further comprises an internal center bore, and the internal center bore includes a plurality of internal center bore corners aligning to said plurality of second channel walls. Different sizes of building components have the same cross sectional profile, which a fractal structure or pattern can be implemented with the different sizes of building components.
Claims
1. A fractal structure system, comprising: a first component with a plurality of first channel walls radiating outwardly and a first internal center bore, wherein said plurality of first channel walls forms a plurality of first channels, and said first internal center bore includes a plurality of first internal center bore corners aligning to said plurality of first channel walls; a second component with a plurality of second channel walls radiating outwardly, wherein said plurality of second channel walls forms a plurality of second channels; wherein said second component is configured to insert into said first internal center bore by aligning said plurality of second channel walls to said plurality of said first internal center bore corners; and wherein said second component is configured to attach to said first component by inserting two adjacent second channel walls into one of said first channels.
2. The fractal structure system as recited in claim 1, wherein said each of said plurality of first channel walls and each of said plurality of second channel walls have two external lips.
3. The fractal structure system as recited in claim 2, wherein each of said external lips of said second channel walls has a notch/chamfer.
4. The fractal structure system as recited in claim 3, wherein each of said first internal center bore corners is concave, and both notch/chamferes of each second channel wall align to opening concave edges of one of said first internal center bore corners when said second component inserts into said first internal center bore.
5. The fractal structure system as recited in claim 2, wherein each of said external lips of said first channel walls and said second channel walls has a notch/chamfer.
6. The fractal structure system as recited in claim 5, wherein two adjacent chamfers of two adjacent external lips, which forms one of said first channels, abut respectively to two channel floors of two neighboring second channels from one of said second channels formed by said two adjacent second channel walls when said second component attaches to said first component by inserting said two adjacent second channel walls into said one of said first channels.
7. The fractal structure system as recited in claim 5, wherein two adjacent external lips, which forms one of said first channels, abut respectively to said two adjacent second channel walls when said second component attaches to said first component by inserting said two adjacent second channel walls into said one of said first channels.
8. The fractal structure system as recited in claim 5, wherein two adjacent external lips, which forms said one of said first channels, have a clearance tolerance with two neighboring second channels from one of said second channels formed by said two adjacent second channel walls when said second component attaches to said first component by inserting said two adjacent second channel walls into said one of said first channels.
9. The fractal structure system as recited in claim 5, wherein two adjacent first channel walls, which forms one of said first channels, abut respectively to two neighboring second channel walls from said two adjacent second channel walls when said second component attaches to said first component by inserting said two adjacent second channel walls into said one of said first channels.
10. The fractal structure system as recited in claim 9, wherein two adjacent first channel walls, which forms one of said first channels, abut respectively to two notch/chamferes of said two neighboring second channel walls when said second component attaches to said first component by inserting said two adjacent second channel walls into said one of said first channels.
11. The fractal structure system as recited in claim 1, wherein said first component is made of metal.
12. The fractal structure system as recited in claim 11, wherein said metal is aluminum.
13. The fractal structure system as recited in claim 1, wherein each of said plurality of first channel walls and each of said plurality of second channel walls are T-slot walls.
14. The fractal structure system as recited in claim 1, wherein said first component has a first cross sectional profile, said second component has a second cross sectional profile, and said second cross sectional profile is proportionally smaller than said first cross sectional profile.
15. The fractal structure system as recited in claim 14, a linear measuring ratio between said second profile and said first profile is 0.5.
16. The fractal structure system as recited in claim 1, further comprising: a third component with a plurality of third channel walls radiating outwardly, wherein said plurality of third channel walls forms a plurality of third channels; wherein said second component further comprises a second internal center bore, and said second internal center bore includes a plurality of second internal center bore corners aligning to said plurality of second channel walls; wherein said third component is configured to insert into said second internal center bore by aligning said plurality of third channel walls to said plurality of said second internal center bore corners; and wherein said third component is configured to attach to said second component by inserting two adjacent third channel walls into one of said second channels.
17. The fractal structure system as recited in claim 16, wherein said first component has a first diameter, said second component has a second diameter, said third component has a third diameter, a first ratio is between said first diameter and said second diameter, and said first ratio is also between said second diameter and said third diameter; or wherein each of said first channel walls has a first height, each of said second channel walls has a second height, each of said third channel wall has a third height, a second ratio is between said first height and said second height, and said second ratio is also between said second height and said third height; or wherein each of said first channel walls has a first external lip with a first length, each of said second channel walls has a second external lip with a second length, each of said third channel wall has a third external lip with a third length, a third ratio is between said first length and said second length, and said third ratio is also between said second length and said third length.
18. The fractal structure system as recited in claim 1, wherein said first component is an extrusion.
19. The fractal structure system as recited in claim 1, wherein said first component further comprises a plurality of through holes or non-through holes in each of said plurality first channels.
20. The fractal structure system as recited in claim 19, wherein at least one of said plurality of through holes or non-through holes is threaded or countersink.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0034] It should be noted that the drawing figures may be in simplified form and might not be to precise scale. In reference to the disclosure herein, for purposes of convenience and clarity only, directional terms such as top, bottom, left, right, up, down, over, above, below, beneath, rear, front, distal, and proximal are used with respect to the accompanying drawings. Such directional terms should not be construed to limit the scope of the embodiment in any manner.
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DETAILED DESCRIPTION OF THE EMBODIMENTS
[0050] The different aspects of the various embodiments can now be better understood by turning to the following detailed description of the embodiments, which are presented as illustrated examples of the embodiments as defined in the claims. It is expressly understood that the embodiments as defined by the claims may be broader than the illustrated embodiments described below.
[0051] The inventor provides a novel modular structuring system capable of building a fractal pattern for any conceivable structure that requires the use of some kind of underlying framing or truss.
[0052] In a general implementation, a system of the same cross-sectional profile but in varied dimensions. Such system can be an aluminum extrusions system of varied dimensions capable of being connected to each other using unique “T” slot channels. However, the current invention is not limited to aluminum. The current system can also be implemented with different suitable material. The current invention is also not limited to extrusion. The current system's component can also be implemented with different suitable shape. The current invention is also not limited to the “T” slot channels. The current system can also be implemented with different suitable connecting shape or channels, such as the “J” channels.
[0053] As shown in
[0054] In other embodiments, any of the center bores can have any shape, i.e., circular, squarish, etc. The shape of the center bore does not need to correspond with the general outer profile shape of the aluminum extrusion that is being received within. For example, a large extrusion may have a circular center bore so long as a medium extrusion may be received within it.
[0055] Referring now to
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[0058] In other embodiments, any of the center bores can have any shape, i.e., circular, squarish, etc. The shape of the center bore does not need to correspond with the general profile of the aluminum extrusion that is being received within. For example, a large extrusion may have a circular center bore so long as a medium extrusion may be received within it. In some other embodiments, the center bore allows a smaller extrusion to freely rotate within it.
[0059] As shown in
[0060] Further,
[0061] Referring now to
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[0068] The external lips of a T-track can have a 45-degree chamfer (see
[0069] The same concept may be used in aluminum extrusions that are 4-sided (see
[0070] While all of the embodiments shown in the figures and discussed above may suggest that all dimensions (large, medium, small) of the aluminum extrusions have the same exact cross-sectional shape, there can be other embodiments where the large, medium, and small extrusions may have similar but not exact cross-sectional shapes. It should be appreciated by one of ordinary skill in the art that so long the key features (e.g., interrelations between T-tracks and adjacent T-slots, interrelations between external profile and the center bore within which it is received) are implemented then all dimensions (large, medium, small) may not necessarily need to have the same exact cross-sectional shape.
[0071] The contemplated novel design can allow space-saving during transport or storage. Further, this design can allow a working relationship between aluminum extrusions of different dimensions. For example, a user may now install accessories originally meant for the smaller dimensioned extrusion on a larger dimensioned extrusions by simply mounting the smaller extrusion onto the side of a larger extrusion. In a way, the smaller extrusions can become the accessories of bigger extrusions. Moreover, smaller dimensioned extrusion may telescopically extend from the center bore of a larger dimensioned extrusion thereby becoming an extended structure to the larger dimensioned extrusion. Conversely, when the telescopically extended portion is not in use, it can telescopically retrieve back into the center bore of the larger dimensioned extrusion.
[0072] Depending on the intended uses, any of the contemplated parts in this disclosure can be made of a suitable material to withstand temperature extremes and chemical extremes, such materials include natural and synthetic polymers, various metals and metal alloys, naturally occurring materials, ceramic materials, and all reasonable combinations thereof.
[0073] Many alterations and modifications may be made by those having ordinary skill in the art without departing from the spirit and scope of the disclosed embodiments. Therefore, it must be understood that the illustrated embodiments have been set forth only for the purposes of example and that it should not be taken as limiting the embodiments as defined by the following claims. For example, notwithstanding the fact that the elements of a claim are set forth below in a certain combination, it must be expressly understood that the embodiment includes other combinations of fewer, more or different elements, which are disclosed herein even when not initially claimed in such combinations.
[0074] The definitions of the words or elements of the following claims therefore include not only the combination of elements which are literally set forth but also all equivalent structure, material or acts for performing substantially the same function in substantially the same way to obtain substantially the same result. In this sense it is therefore contemplated that an equivalent substitution of two or more elements may be made for any one of the elements in the claims below or that a single element may be substituted for two or more elements in a claim. Although elements may be described above as acting in certain combinations and even initially claimed as such, it is to be expressly understood that one or more elements from a claimed combination can in some cases be excised from the combination and that the claimed combination may be directed to a subcombination or variation of a subcombination.