CN213724789U - Six-column double-position stereo picture arrangement intelligent toy - Google Patents

Six-column double-position stereo picture arrangement intelligent toy Download PDF

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Publication number
CN213724789U
CN213724789U CN202022540117.2U CN202022540117U CN213724789U CN 213724789 U CN213724789 U CN 213724789U CN 202022540117 U CN202022540117 U CN 202022540117U CN 213724789 U CN213724789 U CN 213724789U
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jigsaw puzzle
sub
blocks
double
plane
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CN202022540117.2U
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本诺·巴特森
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Hangzhou Zhenyoutoy Co ltd
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Hangzhou Zhenyoutoy Co ltd
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Abstract

The utility model discloses a six-cylinder double-position three-dimensional jigsaw puzzle, which comprises a mother disc and is characterized in that a plurality of sunken accommodation spaces are arranged in the plane of the mother disc, and a plurality of movable sub-blocks which are mutually matched are arranged in the accommodation spaces; the movable sub-blocks are isomers formed by taking hexagonal prisms as units and extending along X/Y/Z three-dimensional space. The isomer formed by taking the hexagonal prism as a unit has countless three-dimensional expressions, provides a playing method foundation with infinite change for the toy, and each component is seemingly tangible, but is flexible and changeable when a jigsaw is assembled, thereby improving the spatial imagination of people, meeting the requirements of hands-on intelligence development, having certain difficulty, having higher interesting operability and being convenient to carry.

Description

Six-column double-position stereo picture arrangement intelligent toy
Technical Field
The utility model relates to an intelligence toy technology, in particular to a six-column double-position three-dimensional jigsaw puzzle intelligence toy.
Background
The intelligence box toy has the functions of developing intelligence and entertaining for people of all ages, and the existing intelligence box toy is relatively single in variety. If patent publication No. is CN207253727U, an integrated into one piece's jigsaw puzzle, including the jigsaw puzzle body, the last border rear portion of the jigsaw puzzle body upwards stretches out the back forward protruding go up the locator card limit, go up and form a locator card groove between locator card limit and the jigsaw puzzle body, the right border rear portion of the jigsaw puzzle body stretches out the back forward protruding right locator card limit, form a right locator card groove between right locator card limit and the jigsaw puzzle body, the lower border front portion stretches out the back backward protruding one down the location chimb downwards below the jigsaw puzzle body, form a lower locator card groove between lower location chimb and the jigsaw puzzle body, the left border front portion stretches out the back backward protruding left location chimb left side on the left side of the jigsaw puzzle body, left location chimb has and forms a left locator card groove between the jigsaw puzzle body. And a changeable picture puzzle for children, which is disclosed in patent publication No. CN201721766016.9, comprising a puzzle frame and a puzzle storage frame. The structures are not changed greatly, along with the market application and popularization of the intelligent toys, the freshness is gradually reduced, and the interestingness is relatively reduced.
Disclosure of Invention
The utility model aims at providing a six-cylinder double-position three-dimensional jigsaw puzzle, which has the characteristics of multi-angle, multi-space, multiple changing methods, moderate sub-block unit quantity, clear integral structure of components and the like.
The above technical problem of the present invention can be solved by the following technical solutions: a six-cylinder double-position stereo jigsaw puzzle comprises a mother disc, and is characterized in that a plurality of sunken accommodating spaces are arranged in the plane of the mother disc, and a plurality of movable sub-blocks which are matched with each other are arranged in the accommodating spaces; the movable sub-blocks are isomers formed by taking hexagonal prisms as units and extending along X/Y/Z three-dimensional space.
In the aforementioned six-column double-position three-dimensional jigsaw puzzle intelligence toy, preferably, the surface enclosed by the sunken accommodation space in the master disc plane is matched with the side surface of the movable sub-block unit hexagonal prism.
In the aforementioned six-column double-position three-dimensional jigsaw puzzle, preferably, the height of the surrounding surface of the sunken accommodation space in the master disc plane is an integral multiple of the height of the unit hexagonal prism.
In the aforementioned six-column double-position three-dimensional jigsaw puzzle, preferably, the volume occupied by the plurality of sunken accommodation spaces in the plane of the master disc is equal or different.
In the six-column double-position three-dimensional jigsaw puzzle, preferably, the master disc has a six-column shape.
In the aforementioned six-column double-position three-dimensional jigsaw puzzle, preferably, the edge of the master disc having the six-column shape is provided with teeth along the height direction.
In the aforementioned six-column double-position three-dimensional jigsaw puzzle, preferably, the surfaces of the plurality of movable sub-blocks which are mutually matched are coated with a color layer.
The technical scheme mainly comprises a master disc and movable sub-blocks, wherein a sunken accommodating space is arranged in the plane of the master disc, the movable sub-blocks are composed of various isomer structures, the isomers take a flat hexagonal prism as a basic unit and extend along an X/Y/Z three-dimensional space, and various change bodies are formed by tangible regular bodies, so that an operator is full of imagination in the three-dimensional space, and the accommodating space which does not correspond to the master disc is provided with various angles and directions, thus the spliced achievement feeling is obtained, and the intelligence development training is obtained in the process of splicing.
Furthermore, the surface enclosed by the mother disc accommodating space is also formed by taking the edge of the unit hexagonal prism as a basic unit, and then the whole vertical surface is formed, and the height of the vertical surface is also integral multiple of the height of the edge of the unit hexagonal prism, so that the movable sub-blocks and the mother disc jointly form a complete and seamless fit attractive whole after picture splicing. And the sinking type containing space in the mother disc can adopt various distribution modes, such as the equal volume or the unequal volume distribution, and can form various movable sub-block combination modes, so that the product is flexible and changeable.
Furthermore, the mother disc and the movable sub-blocks in the scheme can be painted, the artistic value of the work is embodied by different colors, and the product is more attractive.
Compared with the prior art, the beneficial effects of the utility model are that: the isomer formed by taking the hexagonal prism as a unit has countless three-dimensional expressions, provides a playing method foundation with infinite change for the toy, and each component is seemingly tangible, but is flexible and changeable when a jigsaw is assembled, thereby improving the spatial imagination of people, meeting the requirements of hands-on intelligence development, having certain difficulty, having higher interesting operability and being convenient to carry.
Drawings
Fig. 1 is a schematic diagram of the rear outline structure of the jigsaw puzzle of the present invention.
Fig. 2 is a schematic diagram of a master disk structure of the present invention.
Fig. 3 to fig. 13 are schematic structural diagrams of a group of movable subblocks according to the present invention.
Fig. 14 is a schematic structural view of an embodiment of the movable sub-block jigsaw of the present invention.
Fig. 15 is a schematic structural view of an embodiment of a jigsaw puzzle according to fig. 13 of the present invention.
Fig. 16 is a schematic structural diagram of an embodiment of a medium-difficulty movable sub-block jigsaw of the present invention.
Fig. 17 is a schematic structural view of an embodiment of a jigsaw puzzle according to fig. 15 of the present invention.
Fig. 18 is a schematic structural diagram of another puzzle embodiment of the present invention with higher difficulty.
In the figure: 10. the novel combined type butterfly subblock comprises a master disc, 101, a first subblock seat, 102, a second subblock seat, 20, movable subblocks, 201, a single-folded subblock, 202, a double-row subblock, 203, a butterfly pair subblock, 204, an L-shaped subblock, 205, a double-wing subblock, 206, a bow subblock, 207, a butterfly error subblock, 208, an I-shaped subblock, 209, a three-head subblock, 210, a two-fork subblock and 211, a three-fork subblock.
Detailed Description
The technical solution of the present invention is further specifically described below by way of examples and with reference to the accompanying drawings.
The present embodiment relates to a six-column dual-position stereoscopic jigsaw puzzle, which comprises a master disk 10 and 11 movable sub-blocks 20, as shown in fig. 1.
The master disk 10 has a hexagonal cylinder structure, and as shown in fig. 2, the edges of the hexagonal cylinder structure are provided with a strip tooth shape along the height direction, so that the holding hand feeling is increased. The master disk 10 has two sunken accommodation spaces in the plane, and the two accommodation spaces are used for assembling the movable sub-blocks 20 which are matched with each other. The two sunken accommodation spaces in the plane of the master disk 10 are distributed in a large-to-small size, namely, the first sub-mount 101 and the second sub-mount 102.
The movable sub-blocks 20 are isomers formed by extending along the X/Y/Z three-dimensional space in units of a regular hexagonal prism having a flat structure, as shown in fig. 3 to 13. The enclosing surface of the sunken accommodating space in the plane of the master disk 10 is also composed of a set of vertical surfaces matched with the plane where the edges of the unit hexagonal prisms are located, and the height of each vertical surface is an integral multiple of the height of the plane where the edges of the unit hexagonal prisms are located, and twice is taken as an example in the embodiment.
The surfaces of the 11 mutually matched movable sub-blocks 20 are coated with different color layers, such as red, yellow, blue, green, purple, cyan, white and the like.
The first embodiment is as follows: one of the simple playing methods is that 5 double-row subblocks 202, butterfly subblocks 203, L-shaped subblocks 204, butterfly staggered subblocks 207 and three-fork subblocks 211 are assembled according to the figure 13, the assembly is carried out in the direction of forming a regular hexagon, then the three-head subblocks 209, the double-wing subblocks 205, the single-folded subblock 201 and the assembly are assembled into the structure assembled by 5 pieces in the previous step to form a flat regular hexagonal prism shape, and the flat regular hexagonal prism shape is placed into the first subblock seat 101 of the master disc 10 as shown in the figure 14; finally, the remaining I-shaped sub-block 208, the bow sub-block 206 and the binary sub-block 210 are assembled and assembled into the second sub-block seat 102 of the master disk 10, as shown in FIG. 15.
Example two: one of the playing methods with medium difficulty is to assemble the butterfly pair sub-block 203, the bow sub-block 206 and the three-fork sub-block 211 mutually, as shown in fig. 16, the butterfly pair sub-block 203, the bow pair sub-block 206 and the three-fork sub-block 211 are assembled in the regular hexagon forming direction, 5 support blocks including the I-shaped sub-block 208, the butterfly staggered sub-block 207, the double row sub-block 202, the L-shaped sub-block 204 and the double wing sub-block 205 and the 3 assembled structures are combined into a whole and are arranged in the first sub-block seat 101 of the master disc 10, as shown in; the remaining three-head sub-block 209, two-fork sub-block 210, and single-head sub-block 201 are loaded into the second sub-block holder 102 of the master disk 10, as shown in fig. 17.
Example three: one of the playing methods with high difficulty is to assemble 8 subblocks, namely the L-shaped subblock 204, the butterfly staggered subblock 207, the bow subblock 206, the single-folded subblock 201, the binary subblock 210, the three-forked subblock 211, the three-headed subblock 209 and the double-wing subblock 205, and then place the assembled subblocks in the first subblock seat 101 of the master disk 10, and then assemble the remaining 3 subblocks, namely the butterfly subblock 203, the I-shaped subblock 208 and the double-row subblock 202, and place the assembled subblocks in the second subblock seat 102 of the master disk 10, as shown in FIG. 18.
According to different difficulties, there are 25 playing methods and mastering skills, which are not listed.
The above embodiments are descriptions of the present invention, not limitations of the present invention, and any structure after simple transformation is all included in the protection scope of the present invention.

Claims (6)

1. A six-cylinder double-position stereo jigsaw puzzle comprises a master disc (10), and is characterized in that a plurality of sunken accommodating spaces are arranged in the plane of the master disc, and a plurality of movable sub-blocks (20) which are matched with each other are arranged in the accommodating spaces; the movable sub-blocks are isomers formed by taking hexagonal prisms as units and extending along X/Y/Z three-dimensional space.
2. The six-column double-position stereoscopic jigsaw puzzle according to claim 1, wherein the surface of the master disk (10) enclosing the sunken accommodation space in the plane is matched with the side surface of the movable sub-block unit hexagonal prism.
3. The six-column double-bit jigsaw puzzle according to claim 2, wherein the height of the surrounding faces of the recessed receiving space in the plane of the master disc (10) is an integer multiple of the height of the unit hexagonal prism.
4. The six-cylinder dual-position jigsaw puzzle according to claim 1, wherein the master disc (10) is shaped as a six-cylinder structure.
5. The six-cylinder dual-position stereoscopic jigsaw puzzle according to claim 4, wherein said master disc (10) is shaped as a six-cylinder structure with the sides having teeth arranged in the height direction.
6. The six-cylinder dual-position jigsaw puzzle according to claim 1, 2, 3, 4 or 5, wherein the surface of the plurality of movable pieces (20) is coated with a color layer.
CN202022540117.2U 2020-11-05 2020-11-05 Six-column double-position stereo picture arrangement intelligent toy Active CN213724789U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022540117.2U CN213724789U (en) 2020-11-05 2020-11-05 Six-column double-position stereo picture arrangement intelligent toy

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022540117.2U CN213724789U (en) 2020-11-05 2020-11-05 Six-column double-position stereo picture arrangement intelligent toy

Publications (1)

Publication Number Publication Date
CN213724789U true CN213724789U (en) 2021-07-20

Family

ID=76821463

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202022540117.2U Active CN213724789U (en) 2020-11-05 2020-11-05 Six-column double-position stereo picture arrangement intelligent toy

Country Status (1)

Country Link
CN (1) CN213724789U (en)

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