Magnetic Rubik's cube

By setting through holes and magnetic components on the center and edge pieces of the 5-Cube, combined with tilting through holes and position adjustment parts, the 5-Cube has been made lightweight and easy to adjust, solving the problems of the existing 5-Cube's heavy weight and difficult disassembly.

CN223601977UActive Publication Date: 2025-11-28GUANGDONG YONGJUN TECH IND CO LTD
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Patent Information

Application Number
CN202522221430.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-21
Publication Date
2025-11-28
Estimated Expiration
2035-10-21

AI Technical Summary

Technical Problem

The existing five-cube is large and heavy, which can easily cause hand fatigue when holding it, and the process of adjusting the tightness is cumbersome and it is difficult to find a suitable point of force.

Method used

Through holes are provided on the center block and edge blocks, and magnetic components are used to connect them, reducing the overall weight. An inclined through hole is designed on the center cover as a force point for disassembly, which, combined with the gear adjustment component and elastic component, enables convenient adjustment.

Benefits of technology

It effectively reduces the overall weight of the 5-Cube, improves operating comfort and adjustment convenience, and solves the problems of grip fatigue and cumbersome disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a magnetic magic cube which comprises an axis assembly, a center block, edge blocks and angle blocks. A first magnetic component is arranged on the axis assembly. The center block is connected to the axis assembly and provided with a center cavity and a plurality of first through holes communicating with the center cavity, and the first through holes are sequentially formed in the circumferential direction of the center block at intervals. The edge blocks and the angle blocks are located on the peripheral side of the center block, second magnetic components are arranged on the angle blocks, when the magnetic five-cube cube is in a reset state, the first magnetic components and the corresponding second magnetic components are opposite in position and magnetically attracted, and each edge block is provided with an edge block cavity and a plurality of second through holes communicated with the edge block cavity. According to the magnetic Rubik's cube, the first through holes are formed in the center blocks, the second through holes are formed in the edge blocks, the dual weight reduction effect is achieved, the overall weight of the Rubik's cube is effectively reduced, the problem that an existing Rubik's cube is tired to hold is solved, and the operation comfort degree is good. And the first through hole can be used as a disassembly force application point, so that hands or tools can apply force to disassemble the cover conveniently, and the adjustment convenience is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a magic cube technical field, concretely relates to a magnetic five magic cube. BACKGROUND

[0002] The large special-shaped magic cube in prior art, such as five magic cube, generally has the problems of large size and heavy overall weight, and the core components such as edge block and center block are not optimized for weight reduction, which not only causes hand fatigue of user when holding and rotating and affects the use experience. And the five magic cube in prior art needs to remove the cover of center block when adjusting tightness, the surface of the cover of center block is smooth, and it is difficult to find a suitable force point by relying on conventional manual operation, so that the disassembly process is tedious and inefficient, and the use requirement of convenient adjustment cannot be met.

[0003] Therefore, the utility model is provided. UTILITY MODEL CONTENT

[0004] To solve one of the above technical problems, the utility model provides a magnetic five magic cube.

[0005] The application provides the following technical scheme:

[0006] A magnetic five magic cube comprises:

[0007] A shaft assembly is provided with a first magnetic component;

[0008] A center block is connected to the shaft assembly, and the center block has a center cavity and a plurality of first through holes communicating with the center cavity, and each first through hole is arranged at intervals around the circumference of the center block;

[0009] An edge block and a corner block are located on the circumferential side of the center block, the corner block is provided with a second magnetic component, in the reset state of the magnetic five magic cube, each first magnetic component is respectively opposite to the corresponding second magnetic component in position, and the magnetic components are attracted to each other, and the edge block has an edge block cavity and a plurality of second through holes communicating with the edge block cavity.

[0010] Optionally, the center block has a center main shell and a center cover;

[0011] The shaft assembly has a center shaft;

[0012] The center main shell is arranged on the center shaft;

[0013] The center cover is detachably connected to the center main shell, and the first through hole is arranged on the center cover.

[0014] Optionally, the center cover has a top wall and a circumferential side wall arranged around the edge of the top wall;

[0015] The first through hole is arranged on the peripheral side wall.

[0016] Optionally, the peripheral side wall has an inclined wall and a straight wall.

[0017] One side of the inclined wall is connected to the top wall, and the other side of the inclined wall is connected to the straight wall.

[0018] In the direction from the straight wall to the top wall, the outer diameter of the inclined wall gradually decreases.

[0019] The first through hole is arranged on the inclined wall.

[0020] Optionally, a plurality of blind grooves are arranged on the central main shell, and each blind groove is arranged in sequence and spaced along the circumference of the central main shell.

[0021] Optionally, in the reset state of the magnetic five Rubik's cubes, each first through hole on the central block is respectively directed to the corresponding corner block.

[0022] Optionally, the edge block has an edge block clamping foot, an edge block middle shell, and an edge block end shell.

[0023] The edge block middle shell is located between the edge block clamping foot and the edge block main shell.

[0024] The edge block end shell and the edge block middle shell form the edge block cavity.

[0025] The second through hole is arranged on the edge block middle shell.

[0026] In the reset state of the magnetic five Rubik's cubes, the edge block middle shell is located on the inner side of the magnetic five Rubik's cubes.

[0027] Optionally, the surfaces of the edge block and the corner block each have a convex surface and a concave surface.

[0028] The convex surface protrudes from the concave surface, and a stepped edge is formed between the convex surface and the concave surface.

[0029] In the reset state of the magnetic five Rubik's cubes, the stepped edges of each edge block and corner block on each face of the magnetic five Rubik's cubes are spliced to form a circle.

[0030] Optionally, the magnetic five Rubik's cubes include a gear adjusting member and an elastic component, and the central shaft has an end cap.

[0031] The gear adjusting member, the elastic component, and the end cap are all located in the central cavity.

[0032] The elastic component is located between the gear adjusting member and the end cap.

[0033] A first gear tooth is arranged inside the central block.

[0034] The gear adjusting member has a second gear tooth, and the first gear tooth and the second gear tooth are engaged;

[0035] The central shaft is arranged through the elastic component, the central block and the gear adjusting member;

[0036] Rotating the gear adjusting member can adjust the engagement position of the first gear tooth and the second gear tooth, change the distance between the gear adjusting member and the end cap, and compress or release the elastic component.

[0037] Optionally, the third magnetic component is fixedly bonded to the inner wall of the corner block;

[0038] The fourth magnetic component is bonded to the inner wall of the corner block;

[0039] In the reset state of the magnetic five Rubik's cubes, each third magnetic component is opposite to a corresponding fourth magnetic component in position and magnetically attracted.

[0040] By adopting the above technical solution, the present application has the following beneficial effects:

[0041] The magnetic five Rubik's cubes of the present application have a double weight-reducing effect by arranging the first through hole on the central block and the second through hole on the corner block, effectively reducing the overall weight of the five Rubik's cubes, solving the problem of holding fatigue of the existing five Rubik's cubes, and being comfortable to operate. The first through hole can be used as a disassembly force point, facilitating manual or tool force disassembly, and improving the convenience of adjustment. BRIEF DESCRIPTION OF DRAWINGS

[0042] The accompanying drawings, which are part of the present application, serve to provide a further understanding of the present application, and the schematic embodiments of the present application and their descriptions serve to explain the present application, but do not constitute an improper limitation on the present application. Obviously, the drawings described below are only some embodiments, and other drawings can be obtained by those skilled in the art without creative labor on the basis of these drawings.

[0043] Figure 1 The structure schematic diagram of the magnetic five Rubik's cubes provided by the present application embodiment;

[0044] Figure 2 The structure schematic diagram of the magnetic five Rubik's cubes provided by the present application embodiment; Figure 1 The enlarged view of A in the middle;

[0045] Figure 3 The structure schematic diagram of the central block of the magnetic five Rubik's cubes provided by the present application embodiment;

[0046] Figure 4 The internal structure schematic diagram of the central block of the magnetic five Rubik's cubes provided by the present application embodiment;

[0047] Figure 5The internal structure explosion map of the center block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0048] Figure 6 The structure schematic diagram of the edge block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0049] Figure 7 The internal structure schematic diagram of the edge block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0050] Figure 8 The structure schematic diagram of the magnetic five magic cubes after removing part structure is provided for the embodiment of the utility model.

[0051] Figure 9 The internal structure schematic diagram of the shaft assembly of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0052] Figure 10 The structure schematic diagram of the corner block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0053] Figure 11 The another view of the corner block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0054] Figure 12 The internal structure schematic diagram of the corner block of the magnetic five magic cubes is provided for the embodiment of the utility model.

[0055] In the figure: shaft assembly 1, center shaft 11, end cap 111, center block 2, center main shell 21, blind groove 211, first stop gear 212, center cover 22, top wall 221, peripheral side wall 222, inclined wall 2221, first through hole 2221a, straight cylinder wall 2222, edge block 3, edge block clamping leg 31, edge block middle shell 32, second through hole 321, edge block end shell 33, corner block 4, first magnetic component 5, second magnetic component 6, third magnetic component 7, fourth magnetic component 8, convex surface a, concave surface b, stop adjusting part 9, second stop gear 91, elastic component 10. DETAILED DESCRIPTION

[0056] In order to make the purpose, technical scheme and advantages of the embodiment of the utility model more clear, the technical scheme in the embodiment will be clearly and completely described below in combination with the drawings in the embodiment of the utility model, and the following embodiments are used to illustrate the utility model, but not to limit the scope of the utility model.

[0057] In the description of the utility model, it needs to explain, the term "upper", "lower", "internal", "external" and so on indicate the orientation or position relation is based on the orientation or position relation shown in the drawing, only for the convenience of describing the utility model and simplifying the description, and not indicate or imply the device or element indicated must have a particular orientation, with a particular orientation structure and operation, therefore cannot be understood as the limitation of the utility model.

[0058] In the description of the utility model, it needs to explain, unless otherwise explicitly provided and limited, the term "installation", "connection" should be broad sense, for example, can be fixed connection, can be detachable connection, or integrally connected, can be mechanical connection, can be electrical connection, can be directly connected, also can be indirectly connected through intermediate medium.

[0059] As Figures 1 to 12 The utility model discloses a magnetic five magic cube, including: axial assembly 1, center block 2, edge block 3 and corner block 4, first magnetic component 5 is arranged on the axial assembly 1, the center block 2 is connected to the axial assembly 1, the center block 2 has center cavity and multiple first through holes 2221a that communicate the center cavity, and each first through hole 2221a is sequentially spaced apart around the circumference of the center block 2, the edge block 3 and corner block 4 are located at the circumferential side of the center block 2, the corner block 4 is provided with second magnetic component 6, in the state that the magnetic five magic cube is reset, each first magnetic component 5 is respectively opposite with corresponding second magnetic component 6, and the magnetic attraction is opposite, the edge block 3 has edge block cavity and multiple second through holes 321 that communicate the edge block cavity, the first magnetic component 5 and the second magnetic component 6 can be magnet. The utility model discloses a magnetic five magic cube, including: axial assembly 1, center block 2, edge block 3 and corner block 4, first magnetic component 5 is arranged on the axial assembly 1, the center block 2 is connected to the axial assembly 1, the center block 2 has center cavity and multiple first through holes 2221a that communicate the center cavity, and each first through hole 2221a is sequentially spaced apart around the circumference of the center block 2, the edge block 3 and corner block 4 are located at the circumferential side of the center block 2, the corner block 4 is provided with second magnetic component 6, in the state that the magnetic five magic cube is reset, each first magnetic component 5 is respectively opposite with corresponding second magnetic component 6, and the magnetic attraction is opposite, the edge block 3 has edge block cavity and multiple second through holes 321 that communicate the edge block cavity, the first magnetic component 5 and the second magnetic component 6 can be magnet. The utility model discloses a magnetic five magic cube, including: axial assembly 1, center block 2, edge block 3 and corner block 4, first magnetic component 5 is arranged on the axial assembly 1, the center block 2 is connected to the axial assembly 1, the center block 2 has center cavity and multiple first through holes 2221a that communicate the center cavity, and each first through hole 2221a is sequentially spaced apart around the circumference of the center block 2, the edge block 3 and corner block 4 are located at the circumferential side of the center block 2, the corner block 4 is provided with second magnetic component 6, in the state that the magnetic five magic cube is reset, each first magnetic component 5 is respectively opposite with corresponding second magnetic component 6, and the magnetic attraction is opposite, the edge block 3 has edge block cavity and multiple second through holes 321 that communicate the edge block cavity, the first magnetic component 5 and the second magnetic component 6 can be magnet.

[0060] As Figure 1 、 Figure 2 and Figure 3As shown in the figure, the center block 2 has a center main shell 21 and a center cover 22, the shaft core assembly 1 has a center shaft 11, the center main shell 21 is arranged on the center shaft 11, the center cover 22 is detachably connected to the center main shell 21, and the first through hole 2221a is arranged on the center cover 22. The first through hole 2221a reduces the weight of the center block 2, effectively reducing the overall weight of the five Rubik's cubes. The center cover 22 is detachable, and the first through hole 2221a is arranged on the center cover 22, so that the center cover 22 can be quickly removed through the first through hole 2221a to quickly complete the adjustment of the tightness of the Rubik's cube, and the convenience of adjustment is improved.

[0061] In a possible implementation, as shown in Figure 2 and Figure 3 As shown in the figure, the center cover 22 has a top wall 221 and a circumferential side wall 222 arranged around the edge of the top wall 221, the first through hole 2221a is arranged on the circumferential side wall 222, and the first through hole 2221a is not arranged on the top wall 221, so that the structure of the top wall 221 is complete, the appearance is regular, and the position of the first through hole 2221a is more suitable for the intersection position of the corner block 4 and the edge block 3 of the five Rubik's cubes, facilitating the accurate insertion of the hand or tool to exert force and easily disassemble the center cover 22 to adjust the tightness, so that the light weight and the operation practicability are considered under the premise of not affecting the use convenience and the structural stability.

[0062] As shown in the figure, Figure 3 The circumferential side wall 222 has an inclined wall 2221 and a straight cylinder wall 2222, one side of the inclined wall 2221 is connected to the top wall 221, the other side of the inclined wall 2221 is connected to the straight cylinder wall 2222, the outer diameter of the inclined wall 2221 gradually decreases in the direction from the straight cylinder wall 2222 to the top wall 221, and the first through hole 2221a is arranged on the inclined wall 2221. The straight cylinder wall 2222 is connected to the center main shell 21. The inclined structure of the inclined wall 2221 makes the position of the first through hole 2221a more suitable for the force angle of the hand or tool, the insertion operation is smoother, and the center cover 22 can be easily disassembled to adjust the tightness of the Rubik's cube. The first through hole 2221a on the inclined wall 2221 can effectively reduce the weight of the center block 2, while not damaging the connection stability of the straight cylinder wall 2222 and the appearance integrity of the top wall 221.

[0063] In a possible implementation, as shown in Figure 3 and Figure 5As shown, the center main shell 21 is provided with a plurality of blind grooves 211, each of which is arranged in sequence and spaced along the circumference of the center main shell 21. The blind grooves 211 further reduce the weight of the center block 2 without damaging the structural stability of the center main shell 21. At the same time, the spaced blind grooves 211 can avoid the problem of insufficient local strength of the center main shell 21 due to weight reduction.

[0064] As shown in Figure 1 and Figure 2 , in the reset state of the magnetic five Rubik's cube, each first through hole 2221a on the center block 2 is respectively directed to the corresponding corner block 4. In the reset state of the magnetic five Rubik's cube, a large gap is formed between the adjacent corner block 4, the edge block 3 and the center block 2, and each first through hole 2221a of the center block 2 is respectively directed to the gap. With the sufficient operating space brought by the gap, the hand or tool can more easily stretch into the first through hole 2221a to exert force, improving the disassembly efficiency of the center cover 22 and the convenience of subsequent tightness adjustment.

[0065] In a possible implementation, as shown in Figure 6 , the edge block 3 has an edge block clamping foot 31, an edge block middle shell 32 and an edge block end shell 33. The edge block middle shell 32 is located between the edge block clamping foot 31 and the edge block 3 main shell, and the edge block end shell 33 and the edge block middle shell 32 form the edge block cavity. The second through hole 321 is opened on the edge block middle shell 32, and the edge block middle shell 32 is located on the inner side of the magnetic five Rubik's cube in the reset state of the magnetic five Rubik's cube. The edge block end shell 33 is located on the exposed side of the edge block 3. The second through hole 321 is arranged on the edge block middle shell 32 to achieve the effect of weight reduction, and the edge block end shell 33 can completely block the second through hole 321, avoiding the exposure of the second through hole 321 and damaging the overall aesthetics of the five Rubik's cube.

[0066] In a possible implementation, as shown in Figure 6 and Figure 10 , the surface of the edge block 3 and the corner block 4 is provided with a convex surface a and a concave surface b. The convex surface a protrudes from the concave surface b, and a stepped edge is formed between the convex surface a and the concave surface b. In the reset state of the magnetic five Rubik's cube, the stepped edges on each edge block 3 and corner block 4 on each face of the magnetic five Rubik's cube are spliced to form a circle. This structure conforms to ergonomics, and can better fit the hand when the hand holds or moves, greatly improving the operation comfort. The circular splicing structure makes the appearance of each face of the Rubik's cube more regular and beautiful.

[0067] In a possible implementation, as shown in Figure 4 and Figure 5As shown, the magnetic five Rubik's Cube includes a gear adjusting member 9 and an elastic component 10, the central shaft 11 has an end cap 111, the gear adjusting member 9, the elastic component 10 and the end cap 111 are located in the central cavity, the elastic component 10 is located between the gear adjusting member 9 and the end cap 111, the first gear teeth 212 are arranged inside the central block 2, the gear adjusting member 9 has second gear teeth 91, the second gear teeth 91 and the first gear teeth 212 are engaged, and the central shaft 11 is arranged through the elastic component 10, the central block 2 and the gear adjusting member 9. Rotating the gear adjusting member 9 can adjust the engagement position of the first gear teeth 212 and the second gear teeth 91, change the distance between the gear adjusting member 9 and the end cap 111, and compress or release the elastic component 10. The elastic component 10 can be a spring, and the first gear teeth 212 are located in the central main shell 21. When adjusting the elastic force of the Rubik's Cube, rotating the gear adjusting member 9 drives the second gear teeth 91 to change the engagement position of the first gear teeth 212, thereby changing the distance between the gear adjusting member 9 and the end cap 111 to compress or release the elastic component 10, and achieving convenient adjustment of the elastic force of the Rubik's Cube. It should be noted that this gear tooth engagement structure is a commonly used technology known in the Rubik's Cube field, and the specific principle thereof will not be described again.

[0068] In one possible implementation, as shown in Figure 7 and Figure 12 As shown, the third magnetic components 7 are fixedly bonded to the inner walls of the edge blocks 3, and the fourth magnetic components 8 are bonded to the inner walls of the corner blocks 4. In the reset state of the magnetic five Rubik's Cube, each third magnetic component 7 is opposite to a corresponding fourth magnetic component 8, and the two are magnetically attracted to each other. The third magnetic components 7 and the corresponding fourth magnetic components 8 assist the edge blocks 3 and the corner blocks 4 to accurately reset through magnetic attraction force, improve the reset efficiency and stability of the Rubik's Cube after rotation, and reduce misalignment and jamming. The third magnetic components 7 and the corresponding fourth magnetic components 8 can be magnets for easy bonding to the inner walls of the edge blocks 3 and the inner walls of the corner blocks 4 through adhesion, so that the assembly of the magnetic five Rubik's Cube of the present application is more convenient.

[0069] The preferred embodiments disclosed above are only used to help explain the present application. The preferred embodiments do not describe all the details and do not limit the application to the specific implementation described. Obviously, many modifications and changes can be made according to the content of the present application. The embodiments are selected and described in detail in order to better explain the principles and practical applications of the present application, so that those skilled in the art can well understand and utilize the present application. The present application is limited by the claims and their entire scope and equivalents.

Claims

1. A magnetic force five-magic cube, characterized in that, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

2. The magnetic five-cube of claim 1, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

3. The magnetic five-cube of claim 2, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

4. The magnetic five-cube of claim 3, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

5. The magnetic five-cube of claim 4, wherein, The application relates to a magnetic force five-magic cube.

6. The magnetic five-cubelike puzzle of claim 1, wherein, The application relates to a magnetic force five-magic cube.

7. The magnetic five-tesseract of claim 1, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

8. The magnetic five-cubel, according to claim 1, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

9. The magnetic five-tesseract of claim 2, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube.

10. The magnetic five-cubelike puzzle of claim 1, wherein, The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. The application relates to a magnetic force five-magic cube. 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