The present invention relates to an origami sheet for making a regular hexahedron box, an origami money box, and an origami packaging box.
A number of ideas have been proposed such that, by folding leaflets or educational pamphlets and making regular hexahedron boxes, such as money boxes or packaging boxes, children can enjoy contact with educational information and recycle the sheet.
However, such conventional origami for making regular hexahedron boxes usually requires a separate tool or an adhesive. There is also a problem in that regular hexahedron boxes, which have been made, are not firm enough to maintain themselves for a comparatively long period of time. Such difficulty in the assembly process and the structural vulnerability make it hard to efficiently load enough contents in the sheet condition, seriously degrading the information conveying function, and failure to maintain the shape as a durable structure, after assembly, makes it difficult to fully exhibit the desired PR function.
Therefore, an aspect of the present invention is to provide an origami sheet for making a regular hexahedron box, an origami money box, and an origami packaging box, which can be easily fabricated without any separate adhesive or tool, and which has a maximized information conveying function.
Another aspect of the present invention is to provide an origami sheet for making a regular hexahedron box, an origami money box, and an origami packaging box, which can make the regular hexahedron box firm and maintain the shape, thereby performing a durable PR function.
In accordance with an aspect of the present invention, there is provided an origami sheet for making a regular hexahedron box, including: first to fourth main outer wall sections connected successively along a longitudinal central area to be foldable with regard to one another; and first to fourth wing sections connected to both longitudinal sides of the first to fourth main outer wall sections to be foldable, respectively, wherein the first and second wing sections and the third and fourth wing sections are connected to be foldable with regard to each other, and the second and third wing sections abut each other with interposed incision lines.
Preferably, the first to fourth main outer wall sections successively form a bottom surface, a rear surface, an upper surface, and a front surface of a regular hexahedron box in an assembled state; the first and third wing sections overlap each other, in an assembled state, and form a side surface of the regular hexahedron box; and the second and fourth wing sections are folded diagonally, in an assembled state, and form a reinforcement wall that overlaps with one of the rear surface, the front surface, and the side surface.
In addition, the origami sheet preferably further includes a reinforcement extension that extends along a longitudinal direction from the longitudinal edges of the first wing sections and the first main outer wall section, because firmness in the assembled state can be enhanced; and the reinforcement extension more preferably has an extension length corresponding to an integer multiple of the length of the first main outer wall section, because the assembly process is facilitated.
In addition, the incision lines are preferably cutouts having predetermined widths, because no separate cutting-out process is required.
In accordance with another aspect of the present invention, there are provided an origami money box and an origami packaging box, which are made by folding the above-described origami sheet for making a regular hexahedron box.
According to the present invention described above, the origami sheet for making a regular hexahedron box, the origami money box, and the origami packaging box enable the user to easily fabricate a regular hexahedron box in an insertion type, without using any separate adhesive or tool, such that enough contents can be loaded in the sheet, and the assembled regular hexahedron box can maintain the assembled state firmly for a long period of time.
Hereinafter, embodiments of the present invention will be described with reference to the accompanying drawings.
The main outer wall portion 110 is delimited successively into first to fourth main outer wall sections 111, 112, 113, and 114, and have folding lines interposed therebetween such that adjacent sections can be folded with regard to each other. First to fourth wing sections 120, 130, 140, and 150 are arranged on both sides of respective main outer wall sections 111, 112, 113, and 114. Respective wing sections 120, 130, 140, and 150 are connected, with interposed folding lines, so as to be foldable with regard to the corresponding main outer wall sections 111, 112, 113, and 114.
Folding lines are provided between the first wing sections 120 and the second wing sections 130, which then can be folded with regard to each other; likewise, folding lines are provided between the third wing sections 140 and the fourth wing sections 150, which then can be folded with regard to each other. However, the second wing sections 130 and the third wing sections 140 abut each other with incision lines 160 interposed therebetween, and are separated along the incision lines 160. The incision lines 160 are preferably cutouts having predetermined widths, as illustrated, such that interference can be reduced during folding processes. However, the incision lines 160 may be simple incisions or may be provided as incision line marks such that the user can incise the same with scissors, a knife, etc.; in some cases, the incision lines 160 may be bored sewing markings, which can be easily incised as needed.
Referring to
The first wing sections 120 and the third wing sections 140 overlap each other in the assembled state and form the side surface 450 of the regular hexahedron box 400. The first wing sections 120, in the assembled state, are overlapped and folded on themselves along inner folding lines 191 that extend diagonally from vertices, at which the longitudinal end of the sheet 100 meets the folding lines with the first outer wall sections 111.
The second wing sections 130 are overlapped and folded on themselves along inner folding lines 192 that extend diagonally from vertices, which meet the first outer wall section 111, and overlap with the first wing sections 120 or the second main outer wall section 112, thereby forming a reinforcement wall. The fourth wing sections 150 are overlapped and folded on themselves along inner bending lines 193 that extend diagonally from vertices, which meet the third main outer wall section 113, and overlap with the third sing section 140 or the fourth main outer wall section 114, thereby forming a reinforcement wall.
The first reinforcement extension 270 includes a first front reinforcement section 271, which is connected to the first outer wall section 211 in the longitudinal direction, and which can be folded with regard thereto, and first wing reinforcement sections 272, which are connected to both transverse sides of the front reinforcement section 271 to be foldable. The first front reinforcement section 271 and the first wing reinforcement section 272 play the role of reinforcing the front surface 420 and the side surface 450 of the regular hexahedron box 400, respectively.
The second reinforcement extension 280 is an additional longitudinal extension that can be folded with regard to the first reinforcement extension 270, and includes a second front reinforcement section 281, which abuts the first front reinforcement section 271, and second wing reinforcement sections 282, which are connected to both transverse sides of the second front reinforcement section 271 to be foldable. The second front reinforcement section 281 overlaps with the first front reinforcement section 271, and the second wing reinforcement sections 282 overlap with the first wing reinforcement sections 272, thereby reinforcing the front surface 420 and the side surface 450 of the regular hexahedron box 400. In this case, the second wing reinforcement sections 282 overlap with the wing reinforcement sections 272 while being folded so as to overlap themselves or unfolded.
The reinforcement extensions 270 and 280 are for the purpose of reinforcing the assembled regular hexahedron box, and can be employed optionally; therefore, it is possible to apply only one reinforcement extension 270 or to add a third reinforcement extension, if necessary. Furthermore, the length of extension of the reinforcement extension 270 may be smaller than the length of one side of the unit section.
A rectangular origami sheet 200 for making a regular hexahedron box is first prepared; the second wing reinforcement sections 282 are folded inwards along the diagonal lines 294, as illustrated in
Number | Date | Country | Kind |
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10-2013-0132657 | Nov 2013 | KR | national |
Filing Document | Filing Date | Country | Kind |
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PCT/KR2014/010465 | 11/3/2014 | WO | 00 |