Versatile three-dimensional fort building kit
12029997 ยท 2024-07-09
Assignee
Inventors
Cpc classification
A63H33/008
HUMAN NECESSITIES
International classification
Abstract
A 3D fort building kit is a device that can create a variety of structures and shapes. In other words, the device has improved materials and designs with better qualities, that enables kids to build complex 3D structures. To accomplish this, the device includes panels, connectors and utility features that help kids to construct and assemble a structure of their choice in many designs. Further, structures may be constructed in many creative designs by allowing the panels to be connected vertically, horizontally, and at any angle. Furthermore, the constructed structures can be disassembled and constructed again to build other designs safely by kids. Additionally, the device is simple, durable, and light weight enough for young kids to build stable and versatile structures of their choice.
Claims
1. A building kit comprising: a plurality of fort panels; a plurality of circular connectors; the plurality of fort panels comprising a plurality of main square-shaped panels, a plurality of ancillary square-shaped panels, a plurality of small-sized rectangular-shaped panels, a plurality of intermediately-sized rectangular-shaped panels, a plurality of large-sized rectangular-shaped panels, a plurality of triangular-shaped panels, and a plurality of pentagonal-shaped panels; each of the plurality of fort panels comprising a panel body and a plurality of slots; the plurality of fort panels being a physically separate set of components than the plurality of circular connectors; the plurality of circular connectors being made of a sturdy high density foam material; the plurality of slots being perimetrically distributed around the panel body; each of the plurality of slots laterally traversing into the panel body; a selected group of fort panels from the plurality of fort panels being arranged into a fort configuration; an arbitrary panel and an adjacent panel being hingedly attached to each other by at least one corresponding circular connector from the plurality of circular connectors, wherein the at least one corresponding circular connector is attached into at least one first desired slot from the plurality of slots for the arbitrary panel, and wherein the corresponding circular connector is attached into at least one second desired slot from the plurality of slots for the adjacent panel, and wherein the arbitrary panel and the adjacent panel are any panel pair from the selected group of fort panels; a panel surface area for each of the plurality of main square-shaped panels being larger than a panel surface area for each of the plurality of ancillary square-shaped panels, each of the plurality of small-sized rectangular-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, each of the plurality of triangular-shaped panels, and each of the plurality of pentagonal-shaped panels; a panel surface area for each of the plurality of main square-shaped panels being dimensionally configured to build larger structures within the fort configuration; and a panel surface area for each of the plurality of ancillary square-shaped panels, each of the plurality of small-sized rectangular-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, each of the plurality of triangular-shaped panels, and each of the plurality of pentagonal-shaped panels being dimensionally configured to build interstitial structures amongst the larger structures within the fort configuration.
2. The building kit as claimed in claim 1 comprising: the at least one corresponding circular connector being positioned perpendicular to the arbitrary panel and the adjacent panel.
3. The building kit as claimed in claim 1 comprising: the arbitrary panel being positioned at an acute angle with the adjacent panel.
4. The building kit as claimed in claim 1 comprising: the arbitrary panel being positioned at an obtuse angle with the adjacent panel.
5. The building kit as claimed in claim 1 comprising: the arbitrary panel being positioned at a right angle with the adjacent panel.
6. The building kit as claimed in claim 1 comprising: the arbitrary panel being positioned at a straight angle with the adjacent panel.
7. The building kit as claimed in claim 1 comprising: each of the plurality of main square-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, and each of the plurality of pentagonal-shaped panels each comprising a plurality of apertures; the plurality of apertures being perimetrically distributed about the panel body for each of the plurality of plurality of main square-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, and each of the plurality of pentagonal-shaped panels; each of the plurality of apertures laterally traversing into the panel body for each of the plurality of plurality of main square-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, and each of the plurality of pentagonal-shaped panels; and the plurality of apertures being interspersed amongst the plurality of slots for each of the plurality of plurality of main square-shaped panels, each of the plurality of intermediately-sized rectangular-shaped panels, each of the plurality of large-sized rectangular-shaped panels, and each of the plurality of pentagonal-shaped panels.
8. The building kit as claimed in claim 7, wherein each of the plurality of apertures is a semicircular cutout.
9. The building kit as claimed in claim 1 comprising: each of plurality of main square-shaped panels comprising a plurality of holes; the plurality of holes being distributed across the panel body for each of plurality of main square-shaped panels; and each of the plurality of holes traversing normal through the panel body for each of plurality of main square-shaped panels.
10. The building kit as claimed in claim 1 comprising: the panel body comprising a plurality of polygonal sides; the plurality of polygonal sides being perimetrically positioned around the panel body; the plurality of slots being numerically equal to the plurality of polygonal sides for each of the plurality of small-sized rectangular-shaped panels, each of the plurality of ancillary square-shaped panels, each of the plurality of triangular-shaped panels; and each of the plurality of slots being positioned at a midpoint along a corresponding polygonal side from the plurality of polygonal sides for each of the plurality of small-sized rectangular-shaped panels, each of the plurality of ancillary square-shaped panels, and each of the plurality of triangular-shaped panels.
11. The building kit as described in claim 1, wherein a plurality of vertices for the panel body being chamfered.
12. The building kit as described in claim 1, wherein each of the plurality of slots is a rectangular notch.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAIL DESCRIPTIONS OF THE INVENTION
(13) All illustrations of the drawings are for the purpose of describing selected versions of the present invention and are not intended to limit the scope of the present invention.
(14) In reference to
(15) The following description is in reference to
(16) In the preferred embodiment, the plurality of panels 1 have a thickness of 0.2 inches, and the at least one connector 2 has a thickness of 0.4 inches, although any desired dimensions may be used. When in use or when the at least one connector 2 is being part a structure, the at least one connector 2 is positioned normal to the plurality of panels 1.
(17) As seen in
(18) In order to allow kids playing inside the structure to peek outside, and parents to see inside of the structure to ensure the kids are safe, a plurality of apertures 4 are provided. Preferably, an arbitrary plurality of apertures 4a is perimetrically distributed around each of the plurality of panels 1, wherein the arbitrary plurality of apertures 4a is from the plurality of apertures 4. As seen in
(19) According to a preferred embodiment, the present invention comprises a plurality of holes 5. As seen in
(20) As seen in
(21) In reference to
(22) In reference to
(23) In reference to
(24) As seen in
(25) In order to efficiently assemble the components of the present invention into various structures, the present invention comprises a method. According to the preferred method, assembly of the building kit comprises the following steps. Firstly, a plurality of panels 1 and a plurality of connectors 2 are provided, wherein a plurality of slots 3 normally traverses through perimetrical edges of each of the plurality of panels 1 (step A). To start the process of building, a first set of connectors 2a is inserted into a first set of slots 3c of a first panel 1c wherein the first set of connectors 2a is from the plurality of connectors 2, the first set of slots 3c is from the plurality of slots 3 and the first panel 1c is from the plurality of panels 1 (step B). Subsequently, a second panel 1d is placed adjacent the first panel 1c, wherein a second set of slots 3d of the second panel 1d is aligned to the first set of slots 3c, and wherein the second panel 1d is from the plurality of panels 1, and the second set of slots 3d is from the plurality of slots 3 (step C). For example, each edge of the panel creates an option to use all slots for panel-to-panel connections. Utilizing the present invention, the user can build a door which is capable of dynamic movements. The user would place two to four connectors along the edge of a panel that the user wants to use as the door and connecting to one of the structure panels and the friction fit will hold the panels together even while swinging the door panel open and closed. Following placement and alignment of the panels, the first set of connectors 2a is engaged into the second set of slots 3d thereby connecting the first panel 1c to the second panel 1d (step D). Depending on the desired shaped of the structure, the angle between the first panel 1c and the second panel 1d may be adjusted (step E). Further, steps (A) to step (E) are repeated to integrate each of the plurality of panels and the plurality of connectors into a structure.
(26) Thus, the present invention is a simple and light weight fort building kit, that is engaging, safe and versatile.
(27) Although the invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention.