ASSEMBLY UNIT FOR TOY ASSEMBLY BLOCK
20200346128 ยท 2020-11-05
Inventors
- Seok Lee (Seoul, KR)
- Taikjin Lee (Seoul, KR)
- Jeong Hun Shin (Daegu, KR)
- Won Kyo JEONG (Daegu, KR)
- Sun Ho KIM (Seoul, KR)
- Hyunsoo CHUNG (Seoul, KR)
- Hyunduk KIM (Cheonan-si, KR)
- Yong-Joon PARK (Seongnam-si, KR)
- Deokha WOO (Seoul, KR)
Cpc classification
A63H33/067
HUMAN NECESSITIES
A63H33/086
HUMAN NECESSITIES
International classification
Abstract
An assembly unit includes side plate having first coupling member on first side, second coupling member on second side, and third coupling member on each of third and fourth sides, top plate including fourth coupling member and top stud, and bottom plate including fifth coupling member and bottom stud. The first coupling member is engaged with the second coupling member of neighboring side plate. The fourth coupling member is engaged with the third coupling member. The fifth coupling member is engaged with the third coupling member. The first coupling member includes protrusion. The second coupling member includes groove. The protrusion is fitted into the groove of the neighboring side plate. The third coupling member includes thread. Each of the fourth and fifth coupling members includes thread. The fourth and fifth coupling members are engaged with the third coupling member in a screwed manner using the threads.
Claims
1. An assembly unit for a toy assembly block, the assembly unit comprising: a side plate having a plate shape and including a first coupling member on a first side, a second coupling member on a second side, and a third coupling member on each of a third side and a fourth side; a top plate having a plate shape and including a fourth coupling member on each side and a top stud on a top surface; and a bottom plate having a plate shape and including a fifth coupling member on each side and a bottom stud on a bottom surface, wherein the first coupling member of the side plate is configured to be engaged with the second coupling member of a neighboring side plate of a same type as the side plate, the fourth coupling member of the top plate is configured to be engaged with the third coupling member of the side plate, the fifth coupling member of the bottom plate is configured to be engaged with the third coupling member of the side plate, the first coupling member includes a protrusion, the second coupling member includes a groove, when the first coupling member of the side plate is engaged with the second coupling member of the neighboring side plate, the protrusion of the side plate is fitted into the groove of the neighboring side plate, the third coupling member includes a thread, each of the fourth coupling member and the fifth coupling member includes a thread corresponding to the thread of the third coupling member, and the fourth coupling member and the fifth coupling member are configured to be engaged with the third coupling member in a screwed manner using the threads.
2. The assembly unit according to claim 1, further comprising an internal protrusion inside the top stud.
3. An assembly unit for a toy assembly block, the assembly unit comprising: a side plate having a plate shape and including a first coupling member on a first side, a second coupling member on a second side, and a third coupling member on each of a third side and a fourth side; a top plate having a plate shape and including a fourth coupling member on each side and a top stud on a top surface; and a bottom plate having a plate shape and including a fifth coupling member on each side and a bottom stud on a bottom surface, wherein the first coupling member of the side plate is configured to be engaged with the second coupling member of a neighboring side plate of a same type as the side plate, the fourth coupling member of the top plate is configured to be engaged with the third coupling member of the side plate, the fifth coupling member of the bottom plate is configured to be engaged with the third coupling member of the side plate, the third coupling member includes a thread, each of the fourth coupling member and the fifth coupling member includes a thread corresponding to the thread of the third coupling member, and the fourth coupling member and the fifth coupling member are configured to be engaged with the third coupling member in a screwed manner using the threads.
4. The assembly unit according to claim 3, wherein the first coupling member includes a protrusion, the second coupling member includes a groove, and when the first coupling member of the side plate is engaged with the second coupling member of the neighboring side plate, the protrusion of the side plate is fitted into the groove of the neighboring side plate.
5. The assembly unit according to claim 3, wherein the third coupling member includes a pillar extending from the side plate and a hook formed at an end of the pillar, each of the fourth coupling member and the fifth coupling member includes a hole, when the fourth coupling member of the top plate is engaged with the third coupling member of the side plate, the hook of the third coupling member is inserted into the hole of the fourth coupling member, and when the fifth coupling member of the bottom plate is engaged with the third coupling member of the side plate, the hook of the third coupling member is inserted into the hole of the fifth coupling member.
6. The assembly unit according to claim 3, wherein each of the fourth coupling member and the fifth coupling member includes a protrusion, the third coupling member includes a rail structure to guide the protrusion, and the fourth coupling member and the fifth coupling member are configured to be engaged with the third coupling member by sliding the protrusion through the rail structure.
7. The assembly unit according to claim 3, further comprising an internal protrusion inside the top stud.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015]
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BEST MODE(S) FOR CARRYING OUT THE INVENTION
[0029] Exemplary embodiments of the present disclosure are described in detail below with reference to the accompanying drawings. In the following descriptions, like reference numerals designate like elements although the elements are shown in different drawings. Further, detailed descriptions of known functions and configurations incorporated herein are omitted for the purpose of clarity and for brevity.
[0030]
[0031] As shown in
[0032] The first coupling member 121 of one side plate 120 is engaged with the second coupling member 122 of a neighboring side plate 120 to couple two side plates 120. When four side plates 120 are coupled to form four sides of a hexahedron, the fourth coupling member 111 of the top plate 110 is engaged with the third coupling member 123 on the top side of the side plate 120 and the fifth coupling member 131 of the bottom plate 130 is engaged with the third coupling member 123 on the bottom side of the side plate 120 to complete the hexahedron.
[0033] Although a hexahedron including the top plate 110, the bottom plate 130, and four side plates 120 are described in
[0034] The assembly unit 100 can be assembled and disassembled as appropriate to form blocks of different sizes and different shapes depending on the structure to be built.
[0035] The side plates 120 are coupled with each other to form sides of a polyhedron or a cylindrical shape. Although the side plate 120 is shown in the drawings as a solid plate, in some embodiments of the present invention, the side plate 120 is a side frame such that a functional unit can be fitted into the side frame to exhibit various functions on the side plate 120.
[0036] The top plate 110 defines the top surface of the assembly unit 100 when a polyhedron is formed. The size and the shape of the top plate 110, the number of top studs 112, and the layout of the top studs 112 can be determined depending on the size and the shape of the assembly unit 100.
[0037] The bottom plate 130 defines the bottom surface of the assembly unit 100 when a polyhedron is formed. The size and the shape of the bottom plate 130, the number of bottom studs (1133 in
[0038] As shown in
[0039] The first coupling member 121 of the side plate 120 is engaged with the second coupling member 122 of a neighboring side plate 120, and the number of side plates 120 coupled in this manner determines the shapes of the top plate 110 and the bottom plate 130.
[0040]
[0041] In some embodiments of the present invention, two side plates 120 need to be coupled in a fixed manner instead of being rotatably coupled with each other.
[0042]
[0043]
[0044] The fourth coupling member 111 of the top plate 110 and the fifth coupling member 131 of the bottom plate 130 includes a hole into which the hook 720 of the side plate 120 is inserted and locked. The shape of the hole can be square or circular.
[0045]
[0046] In
[0047]
[0048] The size and the shape of the top plate 110, the number of top studs 112, and the layout of the studs 112 can be determined depending on the shape of the assembly unit 100 to be formed. In the example shown in
[0049] The top plate 110 includes the fourth coupling member 111 on each side in the form of a square or circular (including elliptical) hole. The number of fourth coupling members 111 is set to be at least same as the number of third coupling members 123.
[0050]
[0051] The size and the shape of the bottom plate 130 and the support mechanism can be determined depending on the shape of the assembly unit 100 to be formed. In the example shown in
[0052] The bottom plate 130 includes the fifth coupling member 131 on each side in the form of a square or circular (or elliptical) hole. The number of fifth coupling members 131 is set to be at least same as the number of third coupling members 123.
[0053]
[0054] With the assembly unit 1200 and the assembly unit 1300 the stacking direction can be changed by 90 degrees, providing the flexibility in building more complicated structure.
[0055]
[0056] As shown in
[0057] Similarly, the bottom plate of the assembly unit 1400 includes a thread 1430 and the side plate includes a thread 1440. When all side plates are coupled to form the side wall of a cylinder, the bottom plate can be coupled in a screwed manner using the thread 1430 and the thread 1440.
[0058] In some embodiments, the top and bottom plates includes a protrusion (not shown) on at least a pair of edges facing each other and at least two side plates facing each other include a rail structure to guide the protrusion of the top and bottom plates. When all side plates are coupled to form the side wall of a hexahedron, the top and bottom plates can be coupled by sliding the protrusion through the rail structure of the side plates.
[0059]
[0060] When a relatively small block or a shallow block needs to be stacked on the assembly unit 1500 it may not be possible to stably stack the small or shallow block. The internal protrusion 1520 reduces the effective inner diameter of the top stud 112 such that a bottom stud of a smaller diameter can be stably fitted into the top stud 112.
[0061] Further, the screw structure of the top and bottom plates of the assembly unit 1400 can be applied to the front of the side plate in a protruded manner. Two neighboring assembly units both having the screw structure on any one of the side plates then can be coupled laterally in a screwed manner.
[0062] The present invention should not be limited to the above-mentioned embodiments but various changes and modifications can be made by a person having ordinarily skill in the art within the subject matter, the spirit and scope of the present invention as hereinafter claimed. Specific terms in the specification and drawings are used for illustrative purposes and not to be considered as limitations of the present invention. Exemplary embodiments of the present invention have been described for the sake of brevity and clarity. Accordingly, a person having ordinary skill in the art would understand the scope of the claimed invention is not to be limited by the above-mentioned embodiments but by the claims and equivalents thereof.