The present invention relates to an assembly. More particularly, the present invention relates to a hub assembly for use in collapsible structures.
Foldable tents have widely been used by the military for thousands of years. Due to the ease of usage, foldable tents are well-received by military troops. Generally, there are different types of hub used by foldable tents. One type of hub is such that the ends of the supporting poles are laminated and shaped round headedly (“laminated ends”). There is a tiny hole formed within the centre of the laminated ends and hollow-elastic pins (“pins”) are inserted thereinto. When the supporting poles are unfolded or retracted, they then use the pins as a centre of rotation. However, it is unavoidable that when the tents are unfolded, the tents will tend to rotate slightly in a direction between the vertical and the axis of the pins. Under such a situation, there is a possibility that the laminated ends might be bent. There is yet another type of hub similar to the one described above with the pins being removed and replaced with a ring with an opening at one end. In the first type of hub, every supporting pole is accompanied by a pin whereas in the second type of hub, several supporting poles are capped with the ring. Assembly of such a structure is troublesome especially due to the limited space provided thereby during maintenance of the tent makes it difficult to perform work thereon. Furthermore, to replace one supporting pole, the tent has to be pulled apart in order to make the necessary replacement. This poses considerable difficulty due to the large sizes of tents.
These two types of hub share a common disadvantage in that both the laminated ends and the main body of the supporting poles are connected using pins. Moreover, the pins of neighbouring supporting poles face each other. This will then affect the retracting of the supporting poles because during retracting, the heads of the pins are in contact with each other thereby hindering with the folding of the tents. In addition, wear-and-tear happens easily when the pins are in frequently contact with each other during retracting of the supporting poles.
Hence, in order to address the foregoing disadvantages of the two types of hubs as described above, the current invention uses a simpler hub assembly for solving the problem.
There is provided a hub assembly for use in collapsible structures comprising a hub body having a centre opening and a plurality of slots extending from the centre opening to a periphery of the hub body, a cover disposable in the centre opening, a plurality of flexible members having a plurality of first portions and a plurality of second portions, the first portions being disposed in the slots and a plurality of poles coupled to the second portions of the flexible members by a plurality of hinges, wherein the flexible members are operable to move about a plurality of interface points between the first portions and the second portions to rotate each of the poles having a constant rotating centre between a close position and an open position. The cover further includes a screw to fit into the hub body and the centre opening further includes a depression to allow a plurality of swaged clips on the flexible members to sit on it. Each of the flexible members includes two swaged clips, one disposed in the first portion and the other in the second portion. The first portions of the flexible members are positionally fixed relative to the slots when the poles are rotated between the close position and the open position. The first swaged clips of the flexible members are seated in the depression of the hub body and the second swaged clips of the flexible members are nested in the hinges which are coupled to the poles. The flexible members are operable to deform at the interface points. The interface points are located at a plurality of outlets of the hinges, wherein the outlets are curved to maintain a constant length of the flexible members when the poles are rotated so as to ensure rotation of each of the poles about the constant rotating centre. Each hinge includes a cylinder which inserts into a tube and the hinge and tube are held in place by a pin. Each pin on the poles is arranged such that its pin head faces outward to avoid abrasion of the poles when the poles are rotated between the close position and the open position. The poles can be rotated to a maximum of 90 degrees and are in a maximum of 8. In a preferred embodiment, the cover is circular and the hub body is circular or anise in shape and the flexible members are wire ropes or other flexible tapes.
The present invention will be readily understood by the following detailed description in conjunction with the accompanying drawings. To facilitate this description, like reference numerals designate like structural elements.
A hub assembly for use in collapsible structures is provided. In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present invention. It will be understood, however, to one skilled in the art, that the present invention may be practiced without some or all of these specific details.
Foldable tents for military applications typically comprise tent frame structures and skins made from nylon fabric. The tent structures are formed by connecting poles to a hub assembly in a particular manner.
As shown in
The construction of the hub assembly is simple and takes lesser time to fix up. During wear-and-tear, the parts, i.e. poles or flexible members may also be removed and replaced easily.
Other embodiments of the invention will be apparent to those skilled in the art from consideration of the specification and practice of the invention. Furthermore, certain terminology has been used for the purposes of descriptive clarity, and not to limit the present invention. The embodiments and preferred features described above should be considered exemplary, with the invention being defined by the appended claims.
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Number | Date | Country | |
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20100095994 A1 | Apr 2010 | US |