WO2023211052A1 - Unité de jouet de construction - Google Patents

Unité de jouet de construction Download PDF

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Publication number
WO2023211052A1
WO2023211052A1 PCT/KR2023/005341 KR2023005341W WO2023211052A1 WO 2023211052 A1 WO2023211052 A1 WO 2023211052A1 KR 2023005341 W KR2023005341 W KR 2023005341W WO 2023211052 A1 WO2023211052 A1 WO 2023211052A1
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WO
WIPO (PCT)
Prior art keywords
connection
disposed
height adjustment
support member
height
Prior art date
Application number
PCT/KR2023/005341
Other languages
English (en)
Korean (ko)
Inventor
최용수
최지원
Original Assignee
최용수
최지원
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 최용수, 최지원 filed Critical 최용수
Publication of WO2023211052A1 publication Critical patent/WO2023211052A1/fr

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/06Building blocks, strips, or similar building parts to be assembled without the use of additional elements
    • A63H33/08Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails
    • A63H33/086Building blocks, strips, or similar building parts to be assembled without the use of additional elements provided with complementary holes, grooves, or protuberances, e.g. dovetails with primary projections fitting by friction in complementary spaces between secondary projections, e.g. sidewalls
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/10Building blocks, strips, or similar building parts to be assembled by means of additional non-adhesive elements
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63HTOYS, e.g. TOPS, DOLLS, HOOPS OR BUILDING BLOCKS
    • A63H33/00Other toys
    • A63H33/04Building blocks, strips, or similar building parts
    • A63H33/10Building blocks, strips, or similar building parts to be assembled by means of additional non-adhesive elements
    • A63H33/108Building blocks, strips, or similar building parts to be assembled by means of additional non-adhesive elements with holes
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63JDEVICES FOR THEATRES, CIRCUSES, OR THE LIKE; CONJURING APPLIANCES OR THE LIKE
    • A63J1/00Stage arrangements
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63JDEVICES FOR THEATRES, CIRCUSES, OR THE LIKE; CONJURING APPLIANCES OR THE LIKE
    • A63J99/00Subject matter not provided for in other groups of this subclass

Definitions

  • the present invention relates to an assembly toy unit, and more specifically, to an assembly toy unit that can simulate a scaled down stage.
  • a stage is a place created separately from the audience to perform plays, dances, concerts, etc., and is usually higher than the audience.
  • the outdoor stage can be formed at a certain height by continuously combining stage panel members with a certain height and laying a floor plate or carpet on top, so that a large number of audiences can view the stage more easily.
  • the problem to be solved by the present invention is to provide an assembly toy unit that can simulate the stage by reducing it and thereby implement the design of various stage equipment.
  • An assembly toy unit includes a support portion including a support member and a coupling protrusion disposed at one end of the support member, and a connection portion connected to the support portion, and the connection portion. includes a connecting body, a connecting protrusion disposed on one side of the connecting body, and a connecting groove recessed in the Z-axis direction on the other side of the connecting body, and a height disposed at the lower or/and upper part of the connecting body.
  • the height adjustment unit includes a height adjustment body, a height adjustment coupling protrusion disposed at one end of the height adjustment body, and a height adjustment coupling protrusion coupled to a connection portion, and disposed at the other end of the height adjustment body, and at a support portion or connection portion. It includes a height adjustment coupling groove that is coupled, and the length of the height adjustment body is formed to be shorter than the length of the support member.
  • It may include a support member disposed at the other end of the support member.
  • a step may be formed because the area of the lower surface of the engaging protrusion is smaller than the area of the upper surface of the support member.
  • the installation hole may include an internal installation hole disposed close to the support member and an external installation hole disposed outside the internal installation hole.
  • the support portion may further include a coupling groove recessed in the Z-axis direction.
  • the coupling groove may be disposed on the other end of the support member opposite to the end of the support member where the coupling protrusion is disposed.
  • the area of the lower surface of the height adjustment engaging protrusion may be smaller than the area of the upper surface of the height adjustment body, thereby forming a step.
  • connection portion includes a connection body, a first connection groove disposed on one side of the connection body, a second connection groove disposed on the other side of the connection body, and an arrangement between the first connection groove and the second connection groove. It may include a separator.
  • the separator may have a ring shape including a hole.
  • the connecting protrusion may further include a side connecting protrusion disposed on a side of the connecting body.
  • connection groove may further include a side connection groove disposed on a side of the connection body.
  • the connecting protrusion may further include a side connecting protrusion disposed on a side of the connecting body.
  • connection groove may further include a side connection groove disposed on a side of the connection body.
  • connection groove includes a first connection groove disposed on one side of the connection body, a second connection groove disposed on the other side of the connection body, and a separator disposed between the first connection groove and the second connection groove. can do.
  • the separator may have a ring shape including a hole.
  • the stage can be scaled down and simulated, so the design of various stage equipment can be implemented.
  • the director can implement the stage as desired, a synergy effect of brain development and creativity can be achieved.
  • FIG. 1 is a perspective view of a toy unit for assembly according to an embodiment of the present invention.
  • Figures 2 and 3 are perspective views showing a support portion of a toy unit for assembly according to an embodiment of the present invention.
  • Figure 4 is a diagram showing a stacked state of the support portion of the assembly toy unit according to an embodiment of the present invention.
  • Figure 5 is a bottom perspective view showing a connection part of a toy unit for assembly according to an embodiment of the present invention.
  • 6 to 11 are a perspective view and a bottom perspective view showing a connection part of a toy unit for assembly according to another embodiment of the present invention.
  • Figures 12 and 13 are perspective views showing a connection part of a toy unit for assembly according to another embodiment of the present invention.
  • 14 to 16 are diagrams showing a toy unit for assembly according to another embodiment of the present invention.
  • Figure 1 is a perspective view of a toy unit for assembly according to an embodiment of the present invention
  • Figures 2 and 3 are perspective views showing a support portion of a toy unit for assembly according to an embodiment of the present invention
  • Figure 4 is a perspective view of a toy unit for assembly according to an embodiment of the present invention.
  • It is a diagram showing the stacked state of the support portion of the assembly toy unit according to an embodiment
  • Figure 5 is a bottom perspective view showing the connection part of the assembly toy unit according to an embodiment of the present invention
  • Figures 6 to 11 are the present invention.
  • FIGS. 12 and 13 are perspective views showing the connection part of the assembly toy unit according to another embodiment of the present invention
  • FIGS. 14 to 14 16 is a diagram showing a toy unit for assembly according to another embodiment of the present invention.
  • the assembly toy unit 100 may include a base 110 and a connection part 120 connected to the base 110.
  • the connection between the support portion 110 and the connection portion 120 may include connection through other components in addition to direct connection.
  • the support portion 110 and the connection portion 120 may be formed as one piece.
  • the assembly toy unit 100 may include one or more pedestals 110 and a connection portion 120 mounted on the pedestals 110.
  • the support portion 110 may include a support member 111, a coupling protrusion 112, and a support member 113.
  • the support member 111 may extend in a bar shape.
  • the support member 111 may be formed in various shapes such as a cylinder extending in the shape of a bar, a square column, or a triangular column.
  • the support member 111 may be formed by combining different shapes.
  • a portion of the support member 111 may have a cylindrical shape, and the remainder of the support member 111 may have a square pillar shape.
  • the case where the support member 111 has a cylindrical shape will be described as an example, but is not limited thereto.
  • the support member 111 may be formed in various lengths, and by forming the support member 111 in various lengths, it may be fastened to various positions and for various purposes.
  • the length of the support member 111 may mean a length extending in the Z-axis direction.
  • the engaging protrusion 112 may be disposed at one end of the support member 111.
  • the engaging protrusion 112 may be disposed on the upper surface of the support member 111.
  • the engaging protrusion 112 may be disposed on the lower surface of the support member 111.
  • the engaging protrusion 112 may be disposed on the lower and upper surfaces of the support member 111.
  • the upper surface of the support member 111 refers to the surface in the Z-axis direction based on the center of the support member 111
  • the lower surface of the support member 111 is opposite to the Z-axis based on the center of the support member 111. It can mean the plane of direction.
  • the coupling protrusion 112 may have a cylindrical shape, but is not limited thereto and may have a polygonal pillar shape such as a triangular pillar shape, a square pillar shape, etc.
  • the shape of the engaging protrusion 112 may be the same as the shape of the support member 111.
  • the coupling protrusion 112 may also have a cylindrical shape.
  • the shape of the engaging protrusion 112 may be different from the shape of the support member 111.
  • the coupling protrusion 112 may have a polygonal pillar shape.
  • the coupling protrusion 112 and the support member 111 may overlap in the Z-axis direction.
  • the area of the top surface of the coupling protrusion 112 and the area of the top surface of the support member 111 may have different sizes.
  • the area of the upper surface of the coupling protrusion 112 may be smaller than the area of the upper surface of the support member 111.
  • the area of the lower surface of the coupling protrusion 112 and the area of the upper surface of the support member 111 may have different sizes.
  • the lower surface of the engaging protrusion 112 may be a surface in contact with the upper surface of the support member 111. Due to this difference in area, a step may be formed at the connection portion between the support member 111 and the coupling protrusion 112, and the step can improve the convenience and stability of assembly.
  • the area of the upper and lower surfaces of the coupling protrusion 112 may be larger than the area of the upper surface of the support member 111, and the areas of the upper and lower surfaces of the coupling protrusion 112 may be larger.
  • the areas of the upper surfaces of the and support members 111 may be the same.
  • the areas of the upper and lower surfaces of the coupling protrusion 112 may have different sizes.
  • the area of the upper surface of the coupling protrusion 112 may be larger than the area of the lower surface of the coupling protrusion 112
  • the area of the lower surface of the coupling protrusion 112 may be larger than the area of the upper surface of the coupling protrusion 112. It may come true. However, it is not limited to this, and the area of the upper surface of the coupling protrusion 112 and the area of the lower surface of the coupling protrusion 112 may be the same.
  • the engaging protrusion 112 is disposed on one end of the support member 111 so that one end of the support member 111 can have a protruding shape, and the engaging protrusion 112 forms the connection portion 120 described below. It can be inserted into and fastened. However, this is an example, and various assembly toy components may be fastened to the coupling protrusion 112. In some embodiments, the coupling protrusion 112 and the assembly toy components may be coupled using various coupling methods such as Velcro and snap buttons. In addition, the depth of insertion into the connecting portion 120 can be set by the step formed at the connecting portion of the support member 111 and the engaging protrusion 112, thereby providing convenience of fastening and ease of separation. At the same time, it is possible to prevent damage to the product that occurs during fastening and separation.
  • the outer surface of the coupling protrusion 112 may be formed in a shape of repeating peaks and valleys, and in some embodiments, the outer surface of the coupling protrusion 112 may be arranged with multiple protruding patterns. In this way, when the outer surface of the coupling protrusion 112 is formed in a form of repeated peaks and valleys, or when a plurality of protruding patterns are arranged on the outer surface of the coupling protrusion 112, the coupling protrusion 112 and the connection portion 120 are fastened. In this state, it is possible to more effectively prevent damage such as changing or breaking the shape of the coupling protrusion 112 due to impact from external force.
  • the outer surface of the coupling protrusion 112 may refer to the side connecting the upper and lower surfaces of the coupling protrusion 112.
  • the support member 113 may be disposed at the other end of the support member 111.
  • the support member 113 may be coupled to the lower end of the support member 111 in the direction opposite to the Z-axis direction.
  • Such a support member 113 is seated on the floor while fastened to the support member 111, allowing the support member 111 and the connection part 120 fastened to the support member 111 to be stably positioned on the floor.
  • the diameter of the support member 113 in the Y-axis direction may be formed to be wider than the diameter of the support member 111 in the Y-axis direction.
  • the bottom surface refers to the surface on which the support member 113 is seated.
  • the support member 113 and the support member 111 may be formed as one piece, and in some embodiments, the support member 113 and the support member 111 may be formed as an assembly.
  • the support member 113 may further include an installation hole.
  • the installation hole may be an opening that penetrates the interior of the support member 113 in the Z-axis direction. In some embodiments, the installation hole may be an opening formed in the support member 113 radially around the support member 111.
  • the installation hole may include an internal installation hole 113a disposed close to the support member 111 and an external installation hole 113b disposed outside the internal installation hole 113a. Therefore, when the support member 113 is seated on the floor, a separate fixing member is coupled to the internal installation hole 113a and/or the external installation hole 113b of the support member 113 to attach the support member 110 to the floor. It can also be stably fixed to the surface.
  • the internal installation holes 113a and the external installation holes 113b may not overlap in the Z-axis direction, and in some embodiments, the external installation holes 113b may be arranged in multiple numbers, and a plurality of external installation holes may be provided. (113b) may be arranged to be spaced apart and surround the internal installation hole (113a), and the support member 111 may be inserted and fixed into the internal installation hole (113a).
  • the support portion 110 may further include a coupling groove 114.
  • the coupling groove 114 may be disposed on the other end of the support member 111 opposite to the end of the support member 111 where the coupling protrusion 112 is disposed.
  • the coupling groove 114 may be recessed in the Z-axis direction on the lower surface of the support member 111.
  • the coupling protrusion 112 of the lower support portion 110' may be fastened to the coupling groove 114 of the support portion 110.
  • the coupling groove 114 and the assembled toy components may be connected using various coupling methods such as Velcro and snap buttons.
  • engaging protrusions 112 may be disposed on one end and the other end of the support member 111.
  • engaging protrusions 112 may be disposed on the upper and lower surfaces of the support member 111, respectively.
  • coupling grooves 114 may be disposed on one end and the other end of the support member 111.
  • coupling grooves 114 may be disposed on the upper and lower surfaces of the support member 111, respectively.
  • the engaging protrusion 112 may be disposed on only one of the one end and the other end of the support member 111, and in some embodiments, the engaging groove (112) may be disposed on only one of the one end and the other end of the support member 111. 112) may be deployed.
  • the connecting portion 120 may serve as a link connecting assembly toy components.
  • the support portion 110 may be connected to one side of the connection portion 120, and various assembly toy components may be connected to the other side of the connection portion 120.
  • the assembly toy components may refer to various assembly toy assembly parts, such as pillar parts forming the frame of the assembly toy, plate parts providing space for the assembly toy, and connection parts for connecting assembly toy components.
  • connection part 120 may include a connection body 121, a connection protrusion 122, and a connection groove 123.
  • connection body 121 may be a part of the body of the connection part 120.
  • the connection body 121 may be formed in a square box shape. However, it is not limited to this and can be formed in various shapes.
  • the connection body 121 may be formed as an ' ⁇ ' shaped case or a rectangular case, and in some embodiments, the connection body 121 may be formed as a circular case, an oval case, a polygonal case, etc. It could be. Additionally, the connection body 121 may be transformed into various shapes depending on its purpose, size, location, etc.
  • the connecting protrusion 122 may be disposed on one surface of the connecting body 121. In some embodiments, the connecting protrusion 122 may be disposed on the upper surface of the connecting body 121 in a manner that protrudes in the Z-axis direction. Here, the upper surface of the connecting body may include the upper part of the connecting body. In some embodiments, a plurality of connection protrusions 122 may be arranged, and the plurality of connection protrusions 122 may be arranged to be spaced apart from each other. For example, the connecting protrusions 122 may be formed in a 1*1 arrangement, a 2*2 arrangement, or a 3*3 arrangement. However, it is not limited to this, and the connecting protrusions 122 may be arranged irregularly depending on the shape and purpose of the connecting body 121.
  • the connecting protrusion 122 may be formed in a cylindrical shape, but this is an example and is not limited to this. In some embodiments, the connecting protrusion 122 may be formed in a polygonal pillar shape, such as a triangular pillar shape, a square pillar shape, etc. In some embodiments, the connecting protrusion 122 may have a semicircular shape.
  • the connecting protrusion 122 may further include a side connecting protrusion 122a.
  • the side connection protrusion 122a may be disposed on the side of the connection body 121. In some embodiments, the side connection protrusion 122a may be disposed to protrude from the side of the connection body 121.
  • connection groove 123 may be disposed on the other side of the connection body 121, which is opposite to the one side of the connection body 121 on which the connection protrusion 122 is disposed. In some embodiments, the connection groove 123 may be disposed on the lower surface of the connection body 121 in a depression in the Z-axis direction. In some embodiments, a plurality of connection grooves 123 may be arranged and the plurality of connection grooves 123 may be arranged to be spaced apart from each other. For example, it may be formed as a 1*1 array, a 2*2 array, or a 3*3 array. However, it is not limited to this, and may be arranged irregularly depending on the shape and purpose of the connection body 121. Referring to FIG. 7 , in some embodiments, the connection groove 123 may be disposed in a shape that is recessed in the Z-axis direction at the center of the lower surface of the connection body 121.
  • connection groove 123 may be disposed to correspond to the connection protrusion 122. That is, the connecting groove 123 may overlap the connecting protrusion 122 in the Z-axis direction.
  • the connection groove 123 may be arranged to be non-corresponding to the connection protrusion 122. That is, referring to FIG. 7, the connecting groove 123 may not overlap the connecting protrusion 122 in the Z-axis direction.
  • some of the plurality of connecting grooves 123 may overlap with the connecting protrusion 122 in the Z-axis direction, and others of the plurality of connecting grooves 123 overlap with the connecting protrusion 122 in the Z-axis direction. It can also be non-overlapping.
  • connection groove 123 may further include a central connection groove 123a disposed on the other surface of the connection body 121.
  • the central connection groove 123a may be disposed in the center of the lower surface of the connection body 121 in a depression in the Z-axis direction.
  • the lower surface of the connecting body may include the lower part of the connecting body.
  • connection groove 123 may further include an overlapping connection groove 123b.
  • the overlapping connection groove 123b may be disposed on the lower surface of the connection body 121 in a depression in the Z-axis direction so as to overlap the central connection groove 123a. That is, the overlapping connection groove 123b can form an 8-shaped groove by overlapping with the central connection groove 123a. Therefore, it is possible to adjust the position of the coupling protrusion 112 of the support portion 110.
  • the connecting protrusion 122 is disposed on the upper surface of the connecting body 121 and the connecting groove 123 is disposed on the lower surface of the connecting body 121 as an example, but the connecting body 121 ), a connecting protrusion 122 may be disposed on the lower surface, and a connecting groove 123 may be disposed on the upper surface of the connecting body 121.
  • connection protrusions 122 may be respectively disposed on the upper and lower surfaces of the connection body 121, and in some embodiments, connection grooves 123 may be respectively disposed on the upper and lower surfaces of the connection body 121. there is.
  • the connecting protrusion 122 may be disposed on only one of the upper and lower surfaces of the connecting body 121, and in some embodiments, it may be connected to only one of the upper and lower surfaces of the connecting body 121.
  • a groove 123 may be placed.
  • the connecting protrusion 122 and the connecting groove 123 may not be disposed on the upper surface of the connecting body 121.
  • the upper surface of the connecting body 121 may be used as a stage, etc.
  • the stage may refer to a toy stage, but is not limited thereto.
  • connection portion 120 and the assembled toy components may be connected using various coupling methods such as Velcro and snap buttons.
  • connection groove 123 may further include a side connection groove 123c.
  • the side connection groove 123c may be disposed in a recessed form on the side of the connection body 121.
  • connection groove 123 may be arranged to penetrate the connection body 121.
  • connection groove 123 is not arranged to penetrate the connection body 121, but is arranged to be recessed in the upper surface of the connection body 121 in the direction opposite to the Z axis. It can be arranged on the lower surface of the connection body 121 in a recessed form in the Z-axis direction.
  • connection grooves 123 recessed in the upper and lower surfaces of the connection body 121 may be formed to correspond to each other. That is, the connection grooves 123 disposed on the upper and lower surfaces of the connection body 121 may overlap in the Z-axis direction.
  • connection grooves 123 disposed on the upper and lower surfaces of the connecting body 121 may non-overlap in the Z-axis direction, and in some embodiments, the connecting grooves 123 disposed on the upper and lower surfaces of the connecting body 121 may overlap.
  • the arranged connection groove 123 may include an overlapping area and a non-overlapping area in the Z-axis direction.
  • connection grooves 123 disposed on the upper and lower surfaces of the connection body 121 may be arranged spaced apart in the Z-axis direction, and the spaced space includes a connection groove disposed on the upper surface of the connection body 121 ( A separator may be disposed to separate 123) from the connection groove 123 disposed on the lower surface. In this way, the connection grooves 123 on the upper and lower surfaces of the connection body 121 are separated through the separation membrane, thereby providing ease of combination and separation of assembly toy components fastened to the connection grooves 123 on the upper and lower surfaces. There will be.
  • the separator may have a ring shape.
  • the separator separating the connection groove 123 disposed on the upper surface of the connection body 121 and the connection groove 123 disposed on the lower surface may be formed in a ring shape including a hole with a smaller diameter than the connection groove 123. It may be possible.
  • the assembly toy unit 100 may further include a height adjustment unit 130.
  • the height adjustment unit 130 may be disposed between the support unit 110 and the connection unit 120. Additionally, in some embodiments, the height adjustment part 130 may be disposed between the connection part 120 and the upper connection part 120'. Additionally, in some embodiments, the height adjustment unit 130 may be disposed below or/and above the connection unit 120.
  • the height adjustment unit 130 may include a height adjustment body 131, a height adjustment coupling protrusion 132, and a height adjustment coupling groove 133.
  • the height adjustment body 131 may extend in a bar shape.
  • the height adjustment body 131 may be formed in various shapes such as a cylinder extending in a bar shape, a square column, or a triangular column.
  • the height adjustment body 131 may be of different shapes combined.
  • a portion of the height adjustment body 131 may have a cylindrical shape, and the remainder of the height adjustment body 131 may have a square pillar shape.
  • the case where the height adjustment body 131 has a cylindrical shape will be described as an example, but is not limited thereto.
  • the height adjustment body 131 may be formed in various lengths, and by forming the height adjustment body 131 in various lengths, it can be fastened to various positions and for various purposes.
  • the length of the height adjustment body 131 may mean the length extending in the Z-axis direction.
  • the height adjustment coupling protrusion 132 may be disposed at one end of the height adjustment body 131.
  • the height adjustment coupling protrusion 132 may be disposed on the upper surface of the height adjustment body 131.
  • the height-adjustable coupling protrusion 132 may be disposed on the lower surface of the height-adjustable body 131.
  • the height-adjustable coupling protrusion 132 is located on the lower surface of the height-adjustable body 131. and may be placed on the upper surface.
  • the upper surface of the height adjustment body 131 refers to the surface in the Z-axis direction based on the center of the height adjustment body 131
  • the lower surface of the height adjustment body 131 refers to the center of the height adjustment body 131. This can mean a surface in the opposite direction to the Z-axis direction.
  • the height adjustment coupling protrusion 132 may have a cylindrical shape, but is not limited thereto and may have a polygonal pillar shape such as a triangular pillar shape, a square pillar shape, etc.
  • the shape of the height adjustment coupling protrusion 132 may be the same as the shape of the height adjustment body 131.
  • the height adjustment coupling protrusion 132 may also have a cylindrical shape.
  • the shape of the height adjustment coupling protrusion 132 may be different from the shape of the height adjustment body 131.
  • the height adjustment coupling protrusion 132 may have a polygonal column shape.
  • the height adjustment coupling protrusion 132 and the height adjustment body 131 may overlap in the Z-axis direction.
  • the area of the upper surface of the height adjustment coupling protrusion 132 and the area of the upper surface of the height adjustment body 131 may have different sizes.
  • the area of the upper surface of the height adjustment coupling protrusion 132 may be smaller than the area of the upper surface of the height adjustment body 131.
  • the area of the lower surface of the height adjustment coupling protrusion 132 and the area of the upper surface of the height adjustment body 131 may have different sizes.
  • the lower surface of the height adjustment coupling protrusion 132 may be a surface in contact with the upper surface of the height adjustment body 131.
  • a step may be formed at the connection portion between the height adjustment body 131 and the height adjustment coupling protrusion 132, and the step can improve the convenience and stability of assembly.
  • the area of the upper and lower surfaces of the height-adjustable coupling protrusion 132 may be larger than the area of the upper surface of the height-adjustable body 131, and the area of the upper surface of the height-adjustable coupling protrusion 132 may be larger.
  • the area of the upper and lower surfaces and the area of the upper surface of the height adjustment body 131 may be the same.
  • the areas of the upper and lower surfaces of the height adjustment coupling protrusion 132 may have different sizes.
  • the area of the upper surface of the height-adjustable coupling protrusion 132 may be larger than the area of the lower surface of the height-adjustable coupling protrusion 132
  • the area of the lower surface of the height-adjustable coupling protrusion 132 may be larger than the area of the lower surface of the height-adjustable coupling protrusion 132 ( 132) may be larger than the upper surface area.
  • the area of the upper surface of the height-adjustable coupling protrusion 132 and the area of the lower surface of the height-adjustable coupling protrusion 132 may be the same.
  • the height-adjusting coupling protrusion 132 is disposed at one end of the height-adjusting body 131, so that one end of the height-adjusting body 131 can have a protruding shape, and the height-adjusting coupling protrusion 132 is as described above. It can be inserted and fastened into the connection part 120 or another height adjustment part 130.
  • the outer surface of the height-adjustable coupling protrusion 132 may be formed in a shape of repeating peaks and valleys, and in some embodiments, the outer surface of the height-adjustable coupling protrusion 132 may be arranged with a plurality of protruding patterns.
  • the outer surface of the height-adjustable coupling protrusion 132 is formed in a form of repeated peaks and valleys, or when a plurality of protruding patterns are arranged on the outer surface of the height-adjustable coupling protrusion 132, the height-adjustable coupling protrusion 132 and the connection portion It is possible to more effectively prevent damage such as change in shape or breakage of the height adjustment coupling protrusion 132 due to impact from an external force while fastened to (120) or another height adjustment unit 130.
  • the outer surface of the height-adjustable coupling protrusion 132 may refer to the side connecting the upper and lower surfaces of the height-adjustable coupling protrusion 132.
  • the height adjustment coupling groove 133 may be disposed at the other end of the height adjustment body 131. In some embodiments, the height adjustment coupling groove 133 may be recessed in the lower surface of the height adjustment body 131 in the Z-axis direction. Accordingly, the coupling protrusion 112 of the support portion 110 or the connecting protrusion 122 of the connecting portion 120 may be coupled.
  • height adjustment coupling protrusions 132 may be disposed on the upper and lower surfaces of the height adjustment body 131, respectively, and in some embodiments, height adjustment coupling grooves 133 may be disposed on the upper and lower surfaces of the height adjustment body 131. ) may be placed respectively. Additionally, in some embodiments, the height adjustment coupling protrusion 132 may be disposed on only one of the upper and lower surfaces of the height adjustment body 131, and in some embodiments, the height adjustment coupling protrusion 132 may be disposed on either the upper or lower surfaces of the height adjustment body 131. The height adjustment coupling groove 133 may be disposed on only one side.

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Abstract

L'invention concerne une unité de jouet de construction. L'unité de jouet de construction comprend : une partie de support comprenant un élément de support et des saillies de couplage disposées sur une extrémité de l'élément de support; et une partie de liaison reliée à la partie de support, la partie de liaison comprenant : un corps de liaison et des saillies de liaison disposées sur un côté du corps de liaison; et des rainures de liaison en retrait dans la direction de l'axe Z sur l'autre côté du corps de liaison, et comprend en outre une unité de réglage de hauteur disposée sur la partie inférieure et/ou la partie supérieure du corps de raccordement, l'unité de réglage de hauteur comprenant : un corps de réglage de hauteur; une saillie de couplage de réglage de hauteur disposée sur une extrémité du corps de réglage de hauteur et couplée à la partie de liaison; et une rainure de couplage de réglage de hauteur disposée sur l'autre extrémité du corps de réglage de hauteur et couplée à la partie de support ou à la partie de liaison, la longueur du corps de réglage de hauteur étant formée plus courte que la longueur de l'élément de support.
PCT/KR2023/005341 2022-04-29 2023-04-20 Unité de jouet de construction WO2023211052A1 (fr)

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KR2020220001064U KR200497470Y1 (ko) 2022-04-29 2022-04-29 조립용 완구 유닛
KR20-2022-0001064 2022-04-29

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0924165A (ja) * 1995-07-10 1997-01-28 Konbi Kk 組立おもちゃ
CN205654134U (zh) * 2016-04-29 2016-10-19 无锡生源健康产业有限公司 一种活动式舞台支架
KR20170002846U (ko) * 2017-07-31 2017-08-09 유니트러스트개발(주) 연결블록을 구비한 블록 조립 완구
WO2018060917A1 (fr) * 2016-09-28 2018-04-05 Chan Tang Blocs de construction et assemblages de blocs de construction
KR20200077224A (ko) * 2018-12-20 2020-06-30 이채림 블록 완구

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR200291879Y1 (ko) 2002-07-08 2002-10-11 최철상 강화유리를 이용한 무대장치
KR101047111B1 (ko) 2009-03-25 2011-07-07 김종호 무대장치 조립구조

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0924165A (ja) * 1995-07-10 1997-01-28 Konbi Kk 組立おもちゃ
CN205654134U (zh) * 2016-04-29 2016-10-19 无锡生源健康产业有限公司 一种活动式舞台支架
WO2018060917A1 (fr) * 2016-09-28 2018-04-05 Chan Tang Blocs de construction et assemblages de blocs de construction
KR20170002846U (ko) * 2017-07-31 2017-08-09 유니트러스트개발(주) 연결블록을 구비한 블록 조립 완구
KR20200077224A (ko) * 2018-12-20 2020-06-30 이채림 블록 완구

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KR20230002128U (ko) 2023-11-07
KR200497470Y1 (ko) 2023-11-21

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