COMPONENT BASED SYSTEM FOR ASSEMBLING FLEXIBLE GEOMETRIC STRUCTURES
20210196012 · 2021-07-01
Inventors
Cpc classification
International classification
Abstract
An assembly structured to form a customizable, variably configured geometric structure, which includes a plurality of hubs each having an interior chamber and a plurality of housings. Each housing includes an open-ended interior channel communicating with the interior chamber of a common hub. A each of a plurality of elastic links are retained within and extend outwardly from a different one of said interior channels. At least one elastic link may be disposed in interconnecting relation between two attached ones of the plurality of hubs and a predetermined number of a plurality of attached hubs may be interconnected to one another to define a closed, continuously configured array of hubs. A plurality of the closed, continuously configured array of hubs may be disposed in interconnected relation to one another to define one of a possible plurality of the customizable, variably configured geometric structures.
Claims
1. An assembly structured to assume a customizable variably configured geometric structure, said assembly comprising: a plurality of elastically and flexibly interconnected hubs disposed in an initial orientation, a majority of said plurality of hubs including a central chamber and a plurality of housings fixedly interconnected to one another at correspondingly disposed proximal ends thereof, each of said plurality of housings including a different one of a plurality of interior channels; each of said plurality of interior channels having open inner end and an open outer end, said open inner ends of each of said plurality of interior channels disposed in communicating relation with and at least partially encompassing said interior chamber of a common one of said majority of hubs, a plurality of elastic links each retained within a different one of said plurality of interior channels and at least partially disposed within said interior chamber of a common one of said majority of hubs; and at least one of said elastic links of one of said majority of hubs retained within said interior channel of another interconnected one of said majority of hubs.
2. The assembly as recited in claim 1 wherein each of said plurality of elastic links further includes an inherent bias operative to return said plurality of hubs from an elastically expanded and flexibly deformed orientation to said initial orientation.
3. The assembly as recited in claim 1 wherein each of said elastic links of a common one of said majority of hubs includes one end retained within said interior chamber of said common hub.
4. The assembly as recited in claim 3 further comprising a connector structure disposed within said interior channel of each of said majority of hubs thereof, each of said elastic links of a common one of said majority of hubs attached in retaining relation to a corresponding one of said connector structures.
5. The assembly as recited in claim 4 wherein said connector structure is removably disposed within said interior chamber in removable, retaining engagement with said elastic links of a common one of said majority of hubs.
6. The assembly as recited in claim 1 wherein said plurality of housings of a common one of said majority of hubs extend radially outward from a central portion of said common hub in spaced relation to one another.
7. The assembly as recited in claim 6 wherein said plurality of housings of said common one of said majority of hubs are disposed in substantially equally spaced relation to one another.
8. The assembly as recited in claim 6 wherein said plurality of housings on said common one of said majority of hubs extend radially outward from said interior channel said common hub in equally angular spaced relation to one another.
9. The assembly as recited in claim 1 wherein each of said elastic links includes a flexible spring member variably deformable and inherently biased into said initial orientation.
10. The assembly as recited in claim 1 further comprising a predetermined number of said majority of hubs disposed in interconnected relation to one another in a closed, continuous array.
11. The assembly as recited in claim 10 wherein said predetermined number of hubs in each of said majority of hubs is determinative of each of a plurality of configurations of said closed, continuous array of hubs.
12. The assembly as recited in claim 10 further comprising a flexible, multi-hub component geometric structure comprising a plurality of said closed, continuous arrays of hubs disposed in interconnected relation to one another.
13. An assembly structured to assume a customizable variably configured geometric structure, said assembly comprising: An assembly disposed to maintain a plurality of interconnected hub arrays by forming an elastically expanded orientation or a flexibly deformed orientation upon the application of force thereto, said assembly comprising: a plurality of hub arrays interconnected in an initial orientation, each of said plurality of hub arrays disposed to form one of a plurality of geometric configurations independent of a configuration of adjacent ones of said plurality of hub arrays; each of said plurality of hub arrays comprising a closed, continuous configuration defined by a plurality of elastically and flexibly interconnected hubs; each of said plurality of hubs including a plurality of housings, each of said plurality of housings including a different one of a plurality of interior channels; each of said interior channels having an open inner end and an open outer end; each of said plurality of hubs further including an interior chamber disposed in communicating relation with each of said open inner ends of corresponding ones of said plurality of interior channels; a plurality of elastic links each retained within a different one of said interior channels and including one end extending outwardly into said interior chamber, a connector disposed within said interior chamber in interconnecting, retaining attachment to said one ends of said plurality of elastic links, and each of said plurality of hubs interconnected through one of said plurality of elastic links disposed in said interior channel of another interconnected one of said plurality of hubs. each of said elastic links removably retained within said hub via a single connector structure disposed through said at least one aperture and through each of said loop configurations within said hub.
14. The assembly as recited in claim 13, wherein said geometric configuration includes a different connection angle between interconnected hubs than that formed by said at least three housings of each of said plurality of interconnected hubs.
15. The assembly as recited in claim 13, wherein each of said loop configurations disposed within each of said plurality of interconnected hubs is disposed in an overlying configuration for the insertion of said single connector structure therethrough.
16. The assembly as recited in claim 13 each of said plurality of hubs further including at least one aperture disposed therethrough in communicating relation with said interior chamber.
17. The assembly as recited in claim 16 wherein said connector is disposed through said at least one aperture into said interior chamber in said interconnecting, retaining attachment to said one ends of said plurality of elastic links.
18. The assembly as recited in claim 17 wherein each of said plurality of elastic links includes a loop configuration disposed on each opposite end thereof, said loop configuration on said one end of said plurality of elastic links disposed in engaging relation to said connector.
19. The assembly as recited in claim 13 wherein each of said plurality of elastic links further includes an inherent bias operative to return said plurality of hubs from an elastically expanded and flexibly deformed orientation to said initial orientation.
20. The assembly as recited in claim 13 The assembly as recited in claim 1 wherein said plurality of housings of a common one of said majority of hubs extend radially outward from a central portion of said common hub in spaced relation to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016] For a fuller understanding of the nature of the present invention, reference should be had to the following detailed description taken in connection with the accompanying drawings in which:
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[0026] Like reference numerals refer to like parts throughout the several views of the drawings.
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
[0027] As represented in the accompanying Figures, the present invention is directed to an assembly and/or system structured to form any one of a possible plurality of customizable, variably configured geometric structures 200 capable of defining a variety of different objects, devices and/or goods such as, but not limited to, jewelry pieces or other different fields of art. The customizable, variably configured geometric structure 200 comprises a plurality of interconnected hub components 10 cooperatively structured with and interconnected by a plurality of elastic links 16.
[0028] More specifically, at least one but more practically a plurality or majority of the hub components or “hubs” 10 each include an interior chamber 40 and a plurality of housings 12. The housings 12 may vary in number and extend radially outward from interconnected inner or proximal ends 12, at least partially defining a base or body 11, of a common hub 10 in spaced relation to one another, as clearly represented in at least
[0029] Further, each of the housings 12 include an open interior channel 15 communicating with the oppositely disposed open ends 17 and 17′. As indicated, an open inner end 17′ of each of the plurality of interior channels 15 of the housings 12 of a common hub 10 is disposed in direct communicating relation with the interior chamber 40 thereof. As described in greater detail hereinafter, a connector structure 20 may be disposed on each of the plurality of hubs 10, at least partially within the interior chamber 40. More specifically, the connector structure 20 may be removably inserted into the interior chamber 40 by passing through an access opening or aperture 14. In addition, a plurality of elastic links 16 are associated with each of the plurality of hubs 10. Further, the plurality of elastic links 16 for a given hub 10 are equal in number to the number of housings 12 and are operatively and at least partially movable within the interior channels 15 of that hub 10. Further, each of the plurality of elastic links 16 includes opposite ends 16′, as represented in at least
[0030] Additional structural and operative features of one or more preferred embodiments of the assembly of the present invention may also include a removable disposition of the connector structure 20 within the interior chamber 40, such as by being removably disposed within the access opening or aperture 14. Therefore, each of the corresponding elastic links 16 connected to the removable connector structure 20 may be “removably retained” within individual ones of the interior channels 15. This removable retention further facilitates the structure and cooperative use of the plurality of hubs 10 as well as their interconnection to one another, as set forth in greater detail hereinafter. Also, the provision of attachment members 18 on or integrated with each of the opposite ends 16′ of each of the plurality of elastic links 16 allows either end 16′ and corresponding ones of the attachment members 18 of the elastic links 16 to be disposed in a retained relation within any of the interior channels 15 of any of the plurality of housings 12 of any of the plurality of cooperatively structured hubs 10.
[0031] The plurality of elastic links 16 may be utilized in the form of generally elongated spring members such as, but not limited to, coil springs. Regardless of their specific form, the elastic links/spring members 16 are structured to be both elastic and flexible and include an inherent bias. Such inherent bias facilitates the tendency of the elastic link/spring member 16 to return from an elastically expanded or flexibly deformed orientation, when force or tension is applied thereto, back into an original or initial orientation, when the applied force or tension is reduced or removed. Such an original or initial orientation is represented in at least
[0032] As will also be explained in greater detail hereinafter, a predetermined number of the plurality of hubs 10 may be disposed in interconnected relation to one another to define a closed, continuously configured array 100 of hubs 10 as clearly represented in
[0033] In addition and as represented in
[0034] It will be further noted that the versatile structural and operational features of each of the plurality of hubs 10 and each of the plurality of elastic links 16 significantly facilitate the interconnection of the plurality of hubs 10 to one another to form the closed, continuously configured array 100 of hubs 10. Similarly, the plurality of elastic links 16 are used to define the interconnection of the plurality of hubs 10 of each hub array 100. Further, one or more of the elastic links, as at 16″ in
[0035] Now turning to
[0036] Since many modifications, variations and changes in detail can be made to the described preferred embodiment of the invention, it is intended that all matters in the foregoing description and shown in the accompanying drawings be interpreted as illustrative and not in a limiting sense. Thus, the scope of the invention should be determined by the appended claims and their legal equivalents.