CN201668944U - Three-layer hollow magic cube - Google Patents
Three-layer hollow magic cube Download PDFInfo
- Publication number
- CN201668944U CN201668944U CN2010201795840U CN201020179584U CN201668944U CN 201668944 U CN201668944 U CN 201668944U CN 2010201795840 U CN2010201795840 U CN 2010201795840U CN 201020179584 U CN201020179584 U CN 201020179584U CN 201668944 U CN201668944 U CN 201668944U
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- slideway
- hornblock
- magic cube
- skeleton
- center
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Abstract
The utility model relates to a three-layer hollow magic cube, in particular to the three-layer magic cube for realizing the rotation of rotating blocks on a magic cube body along a three-dimensional coordinate by using an annular chute formed by a magic cube center framework as the restriction. The utility model provides the three-layer hollow magic cube with simple structure and easy assembly and dismounting. The utility model restricts the rotation of rotating blocks on each layer through changing an internal framework structure of the magic cube and adding a chute mechanism on the basis of preserving the rotation forms of the ordinary three-layer magic cube, so the moving tracks of the rotating blocks more perfectly conform to the requirements of the magic cube rotation characteristics. In addition, compared with an ordinary magic cube, the utility model omits a center block, and increases the uncertainty during the surface arrangement, so the arrangement difficulty of the magic cube is relatively increased, and stronger exploration interests of players can be easily excited.
Description
Technical field
The utility model relates to a kind of three layers of hollow magic square, and particularly a kind of annular chute that the magic square center framework is formed realizes that as constraint switch block is along the three-layer magic cube of three-dimensional coordinate rotation on the magic square body.
Background technology
The present three-layer magic cube of selling on the market, three-layer magic cube with Hungary's Shandong Bick invention is representative, magic square is to form cube by 26 switch blocks, and the center is the cross connecting axle of three-dimensional orthogonal, and each face has a center switch block placed in the middle, it is fixed in the axle head of the six roots of sensation axle of three-dimensional orthogonal by screw, pad and spring, be divided into three layers on each change in coordinate axis direction, every layer can rotate freely, and this magic square structure assembly program is loaded down with trivial details, disassemble inconvenience, the player is often because complicated operation interest.
The utility model content
Technical problem to be solved in the utility model provides a kind of simple in structure, assembling and dismantling are easy to three layers of hollow magic square, on the basis that keeps common three-layer magic cube rotation formula, by changing the structure of magic square inner skeleton, increased slideway mechanism, retrain every layer of rotation of going up switch block with this, make its movement locus meet the requirement of magic square rotation feature more, and compare with common three-layer magic cube, it has removed central block, uncertainty when having increased arrangement plane, thus it arranges also increase relatively of difficulty, excites the denseer exploration interest of player easily.
For solving the problems of the technologies described above, the utility model is realized as follows: three layers of hollow magic square described in the utility model connect hornblock, rotation hornblock by center slideway skeleton, slideway skeleton and rotate the limit piece and form; Center slideway skeleton is a tetragonal body, its upper and lower two surfaces are sphere, there is a square hole at the center, upper and lower surface all has slideway, be the part face of cylinder, it is connected hornblock with the slideway skeleton and is connected to form the ring-type slideway mechanism, and its space tracking is that six radiuses are identical, the annulus on the sphere that coexists; It is sphenoid that the slideway skeleton connects hornblock, two lozenges of its symmetry all have the step slideway of evagination, be the part face of cylinder, embed respectively in the chute of two adjacent center slideway skeleton lower surface indents, be connected to form the ring-type slideway mechanism, the slideway skeleton connects another surface of hornblock and has chute, and it cooperates formation ring-type chute with center slideway skeleton upper surface slideway; The rotation hornblock is a square, has the step slideway on its inboard three faces, is the part face of cylinder, can be embedded in the ring-type chute, rotates freely along 3-D walls and floor; Rotating the limit piece is right angle equilateral triangle cylinder, has chute on its inboard two faces, is the part face of cylinder, can be connected on the ring-type slideway mechanism, rotates freely along 3-D walls and floor.
Described slideway skeleton connects the hornblock outer surface two triangle cylinder boss, and it can embed in the interior concave space that rotates the hornblock inboard, and the two is fixedly connected; Respectively there is a small cylinder at the place at four angles of center slideway skeleton upper surface, is connected hornblock with the slideway skeleton and cooperates, and forms the part chute.
Good effect of the present utility model: three layers of hollow magic square described in the utility model, on the basis that keeps common three-layer magic cube rotation formula, by changing the structure of magic square inner skeleton, increased slide way mechanism, retrain every layer of rotation of going up switch block with this, make its movement locus meet the requirement of magic square rotation feature more, and compare with common three-layer magic cube, it has removed central block, the uncertainty when having increased arrangement plane, thus it arranges also increase relatively of difficulty, but it is simple in structure, easy to assembly, straighten one out and ease out his anxiety easily, excite the denseer exploration interest of player easily.
Description of drawings
Below in conjunction with the drawings and specific embodiments the utility model is described in further detail.
Fig. 1 is the ring-type slideway mechanism structural representation of the utility model inside
Fig. 2 is the ring-type slideway mechanism interlayer structure schematic diagram of the utility model inside
Fig. 3 rotates hornblock mounting structure schematic diagram
Fig. 4 rotates limit piece mounting structure schematic diagram
Fig. 5 is this practical new installation forming schematic diagram
Fig. 6 is a center slideway skeleton structure schematic diagram
Fig. 7 is a slideway skeleton joint angle block structure schematic diagram
Fig. 8 is an angle of rotation block structure schematic diagram
Fig. 9 rotates limit block structure schematic diagram
Among the figure, 1 center slideway skeleton, 2 slideway skeletons connect hornblock 3 and rotate hornblock
4 rotate limit piece 5 square holes 6 ring-type slideway mechanisms
7 evagination step slideways, 8 internal concave hopper chutes, 9 chutes
10 center slideway skeleton slideway 11 ring-type chutes
12 step slideways 13 rotate limit piece chute 14 triangle cylinder boss
Concave space in 15 small cylinders 16
The specific embodiment
As Fig. 1, Fig. 2, Fig. 3, shown in Figure 4, three layers of hollow magic square described in the utility model connect hornblock (2), rotation hornblock (3) by center slideway skeleton (1), slideway skeleton and rotate limit piece (4) and form; Center slideway skeleton (1) is a tetragonal body, its upper and lower two surfaces are sphere, there is a square hole (5) at the center, upper and lower surface all has slideway, be the part face of cylinder, it is connected hornblock (2) and is connected to form ring-type slideway mechanism (6) with the slideway skeleton, its space tracking is that six radiuses are identical, the annulus on the sphere that coexists; It is sphenoid that the slideway skeleton connects hornblock (2), two lozenges of its symmetry all have the step slideway (7) of evagination, be the part face of cylinder, embed respectively in the chute (8) of adjacent two center slideway skeletons (1) lower surface indent, be connected to form ring-type slideway mechanism (6), the slideway skeleton connects another surface of hornblock (2) and has chute (9), and it cooperates formation ring-type chute (11) with center slideway skeleton (1) upper surface slideway (10); Rotating hornblock (3) is square, has step slideway (12) on its inboard three faces, is the part face of cylinder, can be embedded in the ring-type chute (11), rotates freely along 3-D walls and floor; Rotating limit piece (4) is right angle equilateral triangle cylinder, has chute (13) on its inboard two faces, is the part face of cylinder, can be connected on the ring-type slideway mechanism (6), rotates freely along 3-D walls and floor.
Described slideway skeleton connects hornblock (2) outer surface two triangle cylinder boss (14), and it can embed and rotate in the inboard interior concave space (16) of hornblock (3), and the two is fixedly connected; Respectively there is a small cylinder (15) at the place at four angles of center slideway skeleton (1) upper surface, is connected hornblock (2) with the slideway skeleton and cooperates, and forms part chute (11).
The course of work of the present utility model is:
By the structural slideway mechanism of three layers of hollow magic square inner skeleton, retrain every layer of rotation of going up switch block, the different color of configuration on each face of square, by rotating the at all levels of magic square, versicolor constitutes certain pattern.
Claims (2)
1. three layers of hollow magic square is characterized in that: described three layers of hollow magic square are connected hornblock (2), are rotated hornblock (3) and rotation limit piece (4) is formed by center slideway skeleton (1), slideway skeleton; Center slideway skeleton (1) is a tetragonal body, its upper and lower two surfaces are sphere, there is a square hole (5) at the center, upper and lower surface all has slideway, be the part face of cylinder, it is connected hornblock (2) and is connected to form ring-type slideway mechanism (6) with the slideway skeleton, its space tracking is that six radiuses are identical, the annulus on the sphere that coexists; It is sphenoid that the slideway skeleton connects hornblock (2), two lozenges of its symmetry all have the step slideway (7) of evagination, be the part face of cylinder, embed respectively in the chute (8) of adjacent two center slideway skeletons (1) lower surface indent, be connected to form ring-type slideway mechanism (6), the slideway skeleton connects another surface of hornblock (2) and has chute (9), and it cooperates formation ring-type chute (11) with center slideway skeleton (1) upper surface slideway (10); Rotating hornblock (3) is square, has step slideway (12) on its inboard three faces, is the part face of cylinder, can be embedded in the ring-type chute (11), rotates freely along 3-D walls and floor; Rotating limit piece (4) is right angle equilateral triangle cylinder, has chute (13) on its inboard two faces, is the part face of cylinder, can be connected on the ring-type slideway mechanism (6), rotates freely along 3-D walls and floor.
2. according to claim 1, three layers of hollow magic square, it is characterized in that: described slideway skeleton connects hornblock (2) outer surface two triangle cylinder boss (14), it can embed and rotate in the inboard interior concave space (16) of hornblock (3), and the two is fixedly connected; Respectively there is a small cylinder (15) at the place at four angles of center slideway skeleton (1) upper surface, is connected hornblock (2) with the slideway skeleton and cooperates, and forms part chute (11).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010201795840U CN201668944U (en) | 2010-05-05 | 2010-05-05 | Three-layer hollow magic cube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN2010201795840U CN201668944U (en) | 2010-05-05 | 2010-05-05 | Three-layer hollow magic cube |
Publications (1)
Publication Number | Publication Date |
---|---|
CN201668944U true CN201668944U (en) | 2010-12-15 |
Family
ID=43326358
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN2010201795840U Expired - Fee Related CN201668944U (en) | 2010-05-05 | 2010-05-05 | Three-layer hollow magic cube |
Country Status (1)
Country | Link |
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CN (1) | CN201668944U (en) |
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113814957A (en) * | 2021-09-14 | 2021-12-21 | 山东大学 | Multi-module security device and robot |
-
2010
- 2010-05-05 CN CN2010201795840U patent/CN201668944U/en not_active Expired - Fee Related
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113814957A (en) * | 2021-09-14 | 2021-12-21 | 山东大学 | Multi-module security device and robot |
CN113814957B (en) * | 2021-09-14 | 2023-09-05 | 山东大学 | Multi-module security protection device and robot |
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Legal Events
Date | Code | Title | Description |
---|---|---|---|
C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
C17 | Cessation of patent right | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20101215 Termination date: 20130505 |