Magic cube assembly and magic cube

By designing the Rubik's Cube components, the matching of the card slot and the card block ensures the precise assembly of the magnetic parts, and prevents falling off through the limiting parts, the problems of poor positioning accuracy of the magnetic cube and poor stability of the magnet are solved, achieving higher rotational stability and replacement convenience.

CN223009761UActive Publication Date: 2025-06-24SHANTOU CHENGHAI MAGIC LAND CULTURE CO LTD
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Patent Information

Application Number
CN202421393050.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-06-18
Publication Date
2025-06-24
Estimated Expiration
2034-06-18

AI Technical Summary

Technical Problem

The existing magnetic cube has poor positioning accuracy due to inaccurate magnet assembly position, poor magnet stability and adaptive replacement.

Method used

A Rubik's Cube assembly is designed, including the main housing, cover, magnetic compartment and magnetic components. Through the coordination of the card slot and the card block, the assembly position of the magnetic components is ensured accurately, and the magnetic components are prevented from falling off through the limiting parts, making it convenient to replace magnetic components of different magnetic sizes.

Benefits of technology

It realizes precise assembly and stability of magnetic components, improves the stability of the Rubik's cube rotation and user's operating experience, and facilitates the replacement and maintenance of magnetic components.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a Rubik's cube assembly and a Rubik's cube. The Rubik's cube assembly comprises a main shell, a cover body, a magnetic bin and a magnetic component, the cover body is detachably arranged on the main shell; a clamping groove is formed in the main shell, a clamping block is arranged on the magnetic bin, and the magnetic bin is clamped in the clamping groove of the main shell through the clamping block; and the magnetic component is arranged in the magnetic cabin. The magic cube comprises the magic cube assembly. According to the magic cube assembly, due to the fact that the clamping grooves are formed in the main shell and the clamping blocks are arranged on the magnetic bins, the clamping grooves and the clamping blocks are used in cooperation, it can be guaranteed that the assembling positions of the magnetic parts are accurate, rapid positioning is achieved, and the magnetic parts can be replaced more conveniently so as to adapt to different use scenes.
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Description

Technical Field

[0001] The utility model relates to the field of Rubik's cubes, and specifically relates to a Rubik's cube component and a Rubik's cube. Background Technique

[0002] The Rubik's cube is not only an entertainment toy, but also has educational significance, which can exercise thinking ability, improve spatial imagination and creativity. For Rubik's cube enthusiasts, they can also improve their level by participating in various competitions. In order to make the Rubik's cube rotate more smoothly and be positioned more accurately, a magnetic force technical solution has been proposed in the prior art to set magnets on the inner walls of the corner blocks and edge blocks by bonding, and realize positioning through the magnetic adsorption between the magnets. However, the existing magnetic Rubik's cube has the following defects:

[0003] (1) Since the magnets on the inner walls of the corner blocks and edge blocks are fixed by bonding, it is very difficult to control the assembly position of the magnets during bonding, and it is easy to cause inaccurate assembly position, resulting in poor positioning accuracy.

[0004] (2) The bonding strength is difficult to control. If the bonding strength is too low, the stability of the magnets is poor, and the magnets are likely to fall off from the inner walls of the corner blocks and edge blocks during high-speed rotation, affecting the user experience; if the bonding strength is too high, it will be difficult to disassemble the magnets, resulting in the inability to adaptively replace the magnetic strength of the magnets. Summary of the Invention

[0005] The purpose of the utility model is to provide a Rubik's cube component and a Rubik's cube, which not only effectively solve the problem of poor positioning accuracy caused by inaccurate assembly positions of the magnets on the inner walls of the corner blocks and edge blocks of the existing magnetic Rubik's cube, but also solve the problems of poor stability of the magnets and inability to perform adaptive replacement.

[0006] To solve the above technical problems, the utility model provides a Rubik's cube component, which includes a main housing, a cover body, a magnetic force bin and a magnetic component; the cover body is detachably arranged on the main housing; a card slot is opened on the main housing, a clamping block is arranged on the magnetic force bin, and the magnetic force bin is clamped in the card slot of the main housing through the clamping block; the magnetic component is arranged in the magnetic force bin.

[0007] Further, the Rubik's cube component is a corner block or an edge block.

[0008] Further, the magnetic force bin includes a panel, a placement groove and a clamping block; the panel is located in the card slot; the placement groove is a hollow structure with both ends open, and one end of the placement groove is fixed to the inner side of the panel, and the other end extends into the main housing through the card slot; the clamping block is located inside the main housing and is fixed to the outer side wall of the placement groove near one end of the card slot; the magnetic component is located in the placement groove.

[0009] Furthermore, a chamfer is provided on a side of the card block close to the panel, and a slope is provided on a side of the card block away from the panel.

[0010] Furthermore, the panel is adapted to the card slot, and both are arranged in a truncated cone shape; the smaller end of the bottom surface of the panel is connected to the placement slot, and the larger end of the bottom surface of the panel is chamfered on the circumferential edge.

[0011] Furthermore, the Rubik's Cube component is a corner block; a limiting member for preventing the magnetic component from falling off is provided on one side of the main shell body near the placement slot; one end of the limiting member is fixed on the main shell body, and the other end extends to the outside near the magnetic component.

[0012] Furthermore, the cover body includes a plurality of cover plates that are interlocked and connected to each other; a cover plate is provided with a connecting block and / or a connecting groove, and any two adjacent cover plates are connected via a connecting block on one cover plate and a connecting groove on another cover plate.

[0013] Furthermore, a hook and a baffle are provided on the cover plate, and the hook is located on one side of the baffle; a clamping portion is provided on the main shell, and the cover plate is clamped and connected to the clamping portion through the hook; one end of the baffle is fixed to the cover plate, and the other end extends to the side of the clamping portion away from the hook.

[0014] Furthermore, a positioning block is provided on the cover plate, a positioning groove is provided on the main shell, and the positioning block is snap-connected in the positioning groove.

[0015] Furthermore, a positioning cylinder is also arranged on the cover plate; a positioning column matched with the positioning cylinder is arranged on the main shell body, and the positioning column is inserted into the positioning cylinder.

[0016] Furthermore, the utility model also provides a Rubik's Cube, including the above-mentioned Rubik's Cube assembly.

[0017] Compared with the prior art, the technical solution provided by the utility model has the following advantages:

[0018] (1) The utility model provides a Rubik's Cube assembly, which is provided with a main shell, a cover, a magnetic bin and a magnetic component, and a card slot is provided on the main shell, and a card block is provided on the magnetic bin. Through the coordinated use of the card slot and the card block, not only can the assembly position of the magnetic component be ensured to be accurate, and rapid positioning can be achieved, so that the Rubik's Cube can be rotated more smoothly, and the stability of the Rubik's Cube rotation and the user's operating experience can be effectively improved; and the magnetic bin is arranged on the main shell by a card connection, which is convenient for the installation and disassembly of the magnetic bin, so that the disassembly and assembly of the magnetic component is more convenient, and it is convenient to replace magnetic components of different magnetic sizes to adapt to different usage scenarios, effectively solving the problem of poor positioning accuracy of the existing magnetic Rubik's Cube due to inaccurate magnet assembly position, and solving the problem of poor magnet stability and inability to adapt to replacement. At the same time, the main shell is an integrated molding setting, which effectively reduces the difficulty of assembly and greatly improves the efficiency of assembly. In addition, the magnetic bin is a component made of transparent material, which can facilitate the observation of the working state of the magnet in the magnetic bin.

[0019] (2) The utility model provides a Rubik's Cube assembly, in which the magnetic bin is provided with a panel, a placement slot and a card block, and the panel and the card block are used in combination to fix the magnetic bin on the main housing, thereby ensuring the accurate assembly position of the magnetic component. Moreover, the structure of the magnetic bin is simple, which is not only conducive to reducing the difficulty of processing and facilitating quick disassembly and assembly, but also can reduce the weight of the Rubik's Cube assembly while ensuring the stability of the position of the magnetic bin, thereby reducing the overall weight of the Rubik's Cube and improving the user's operating experience.

[0020] (3) The utility model provides a Rubik's Cube assembly, which facilitates pressing the card block into the main shell by setting an inclined surface on the side of the card block away from the panel, thereby making the installation of the magnetic bin more convenient, and facilitates the disassembly of the magnetic bin by setting a smooth chamfer on the side of the card block close to the panel.

[0021] (4) The utility model provides a Rubik's Cube assembly, which arranges the panel and the card slot in a truncated cone shape, and connects the smaller end of the bottom surface of the panel to the placement slot, so that after the end of the placement slot away from the panel enters the main shell, the panel can be adapted to the card slot and cooperate with the card block in the main shell to connect the magnetic bin to the card slot.

[0022] (5) The Rubik's Cube assembly provided by the utility model can effectively prevent the magnetic component from falling off due to the provision of a limit piece, thereby ensuring the stability of the magnetic component.

[0023] (6) The utility model provides a Rubik's Cube assembly. Since a connecting block and a connecting groove are provided on the cover plate, the cover plates can be snap-connected with each other through the connecting block and the connecting groove, thereby facilitating the assembly and disassembly of the cover plates.

[0024] (7) The utility model provides a Rubik's Cube assembly, in which a hook is provided on the cover plate and a snap-fitting portion is provided on the main shell. The cover plate is snap-fitted and connected to the main shell through the cooperation of the hook and the snap-fitting portion, so that the cover plate can be quickly disassembled and assembled conveniently. In addition, a baffle is provided on the cover plate, and one end of the baffle extends to the side of the snap-fitting portion away from the hook. Through the cooperation of the hook and the baffle, the snap-fitting portion is clamped between the hook and the baffle, and the baffle prevents the hook from being separated from the snap-fitting portion, thereby effectively improving the stability of the connection between the cover plate and the main shell, thereby preventing the cover plate from loosening and falling off.

[0025] (8) The utility model provides a magic cube assembly, which plays a positioning role in the assembly of the cover plate and the main shell by setting a positioning block and a positioning groove, which is beneficial to improving the assembly accuracy and connection stability and preventing the cover plate from loosening and falling off.

[0026] (9) The utility model provides a magic cube assembly, which plays a positioning role in the assembly of the cover plate and the main shell by setting a positioning cylinder and a positioning column, which is beneficial to improving the assembly accuracy and connection stability and preventing the cover plate from loosening and falling off.

[0027] (10) The Rubik's Cube provided by the utility model can be quickly positioned because the Rubik's Cube is provided with the above-mentioned Rubik's Cube components, making the Rubik's Cube rotate more smoothly, thereby effectively improving the stability of the Rubik's Cube rotation and the user's operating experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] In order to more clearly illustrate the technical solutions of the prior art and the embodiments of the present application, the drawings required for use in the description of the prior art and the embodiments of the present application will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0029] Figure 1 It is a schematic diagram of the overall structure of a corner block of Example 1.

[0030] Figure 2 It is a partial structural schematic diagram of a corner block of Example 1.

[0031] Figure 3 It is a structural schematic diagram of the main shell of embodiment 1.

[0032] Figure 4 It is a structural schematic diagram of the cover body of the first embodiment.

[0033] Figure 5 It is a structural schematic diagram of the cover plate of Example 1.

[0034] Figure 6This is a schematic diagram of the combined structure of the magnetic force bin and the magnetic force component in the Rubik's Cube component of the present utility model.

[0035] Figure 7 This is a schematic diagram of the structure of the magnetic force bin in the Rubik's Cube component of the present utility model.

[0036] Figure 8 This is a schematic diagram of the overall structure of the edge block in Embodiment 2.

[0037] Explanation of reference numerals: main housing 100, card slot 110, limiting member 120, clamping portion 130, positioning groove 140, positioning post 150, cover body 200, cover plate 210, connecting block 211, connecting groove 212, hook 213, baffle 214, positioning block 215, positioning cylinder 216, magnetic force bin 300, panel 310, placement groove 320, card block 330, magnetic component 400. Specific embodiments

[0038] In order to better understand the purpose, structure and function of the present utility model, the following further describes in detail a Rubik's Cube component and a Rubik's Cube provided by the present utility model with reference to the accompanying drawings, so that those skilled in the art can better understand the present utility model and be able to implement it, but the examples given are not intended to limit the present utility model.

[0039] Embodiment 1

[0040] Please refer to Figures 1 to 7 As shown, this embodiment provides a Rubik's Cube component. The Rubik's Cube component is a corner block, including a main housing 100, a cover body 200, a magnetic force bin 300 and a magnetic component 400; the cover body 200 is detachably arranged on the main housing 100; a card slot 110 is provided on the main housing 100, a card block 330 is provided on the magnetic force bin 300, and the magnetic force bin 300 is clamped in the card slot 110 of the main housing 100 through the card block 330; the magnetic component 400 is arranged in the magnetic force bin 300.

[0041] Due to the provision of the main housing 100, the cover 200, the magnetic force bin 300 and the magnetic component 400, and a card slot 110 is provided on the main housing 100, and a card block 330 is provided on the magnetic force bin 300. By the cooperative use between the card slot 110 and the card block 330, not only can the assembly position of the magnetic component be ensured to be precise, enabling the magnetic component 400 to accurately adsorb to the corresponding magnet on the edge block of the Rubik's Cube, achieving rapid positioning, thereby making the rotation of the Rubik's Cube smoother, effectively improving the stability of the Rubik's Cube rotation and the user's operation experience; but also the magnetic force bin 300 is provided on the main housing 100 in a snap-fit manner, facilitating the installation and disassembly of the magnetic force bin 300, thus making the disassembly and assembly of the magnetic component 400 more convenient, facilitating the replacement of magnetic components 400 with different magnetic sizes to adapt to different usage scenarios, effectively solving the problem that the existing magnetic Rubik's Cube has poor positioning accuracy due to inaccurate magnet assembly positions, as well as solving the problems of poor magnet stability and inability to perform adaptive replacement. At the same time, the overall structure of the corner block is simple, and the main housing 100 is integrally formed, effectively reducing the assembly difficulty of the corner block and greatly improving the assembly efficiency. In addition, the magnetic force bin 300 is a component made of a transparent material, which can facilitate the observation of the working state of the magnet in the magnetic force bin 300.

[0042] In a preferred embodiment, the magnetic force bin 300 includes a panel 310, a placement groove 320 and a card block 330; the panel 310 is located in the card slot 110; the placement groove 320 is a hollow structure with openings at both ends, and one end of the placement groove 320 is fixed to the inner side of the panel 310, and the other end extends into the main housing 100 through the card slot 110; the card block 330 is located inside the main housing 100 and is fixed to the outer side wall of the placement groove 320 near one end of the card slot 110; the magnetic component 400 is detachably arranged in the groove 320.

[0043] Since the magnetic bin 300 is provided with a panel 310, a placement slot 320 and a block 330, the magnetic bin 300 can be fixed on the main shell 100 by using the panel 310 and the block 330 in coordination, thereby ensuring the accurate assembly position of the magnetic component 400. Specifically, by fixing one end of the placement slot 320 to the inner side of the panel 310, and fixing the blocking block 330 on the outer wall of the placement slot 320 close to the end of the blocking slot 110, the blocking block 330 cooperates with the panel 310 to clamp the blocking slot 110 to achieve the magnetic bin 300 being connected to the blocking slot 110; further, when assembling the magnetic bin 300, first, the end of the placement slot 320 away from the panel 310 is passed through the blocking slot 110 and pressed into the main shell 100, and the blocking block 330 is passed through the blocking slot 110 into the main shell 100, so that the panel 310 is placed in the blocking slot 110, and then the circumferential side wall of the blocking slot 110 is inserted between the blocking block 330 and the panel 310, thereby achieving the magnetic bin 300 being connected to the blocking slot 110. In addition, since the structure of the magnetic bin 300 is simple, it not only helps to reduce the difficulty of processing and facilitate quick disassembly and assembly, but also can reduce the weight of the corner blocks while ensuring the stable position of the magnetic bin 300, thereby reducing the overall weight of the Rubik's Cube and improving the user's operating experience.

[0044] In a preferred embodiment, a concave and convex curved surface is provided along the circumference of the inner wall of the placement groove 320, which is beneficial to improving the stability of the magnetic component 400 in the placement groove 320, thereby preventing the magnetic component 400 from falling off.

[0045] In a preferred embodiment, a side of the block 330 close to the panel 310 is provided with a chamfer, and a side of the block 330 facing away from the panel 310 is provided with an inclined surface.

[0046] By setting a slope on the side of the block 330 facing away from the panel 310, it is convenient to press the block 330 through the slot 110 into the main shell 100, thereby making the installation of the magnetic warehouse 300 more convenient. In addition, by setting a smooth chamfer on the side of the block 330 close to the panel 310, the disassembly of the magnetic warehouse 300 is facilitated.

[0047] In a preferred embodiment, the panel 310 is matched with the card slot 110, and both are arranged in a truncated cone shape; the smaller end of the bottom surface of the panel 310 is connected to the placement slot 320, and the larger end of the bottom surface of the panel 310 is chamfered on the circumferential edge.

[0048] By setting the panel 310 and the card slot 110 in a frustum shape and connecting the smaller end of the bottom surface of the panel 310 to the placement slot 320, when the end of the placement slot 320 away from the panel 310 enters the main housing 100, the panel 310 can be adapted to the card slot 110 and cooperate with the clamping block 330 in the main housing 100 to realize clamping the magnetic force bin 300 in the card slot 110. In addition, by providing a chamfer at the circumferential edge of the larger end of the bottom surface of the panel 310, the corner block can rotate more smoothly.

[0049] In a preferred embodiment, a limiting member 120 for preventing the magnetic component 400 from falling off is provided on one side of the main housing 100 near the placement slot 320; one end of the limiting member 120 is fixed to the main housing 100, and the other end extends to the outside near the magnetic member. Due to the provision of the limiting member 120, the magnetic component 400 can be effectively prevented from falling off, ensuring the stability of the magnetic component 400.

[0050] In a preferred embodiment, the cover 200 includes a plurality of cover plates 210 that are snap-connected to each other; a connecting block 211 and a connecting groove 212 are provided on one cover plate 210, and any two adjacent cover plates 210 are connected by the connecting block 211 on one cover plate 210 and the connecting groove 212 on the other cover plate 210.

[0051] Since the connecting block 211 and the connecting groove 212 are provided on the cover plate 210, the cover plates 210 can be snap-connected through the connecting block 211 and the connecting groove 212, facilitating the assembly and disassembly of the cover plates 210.

[0052] In a preferred embodiment, a hook 213 and a baffle 214 are further provided on the cover plate 210, and the hook 213 is located on one side of the baffle 214; the main housing 100 is provided with a clamping portion 130, and the cover plate 210 is snap-connected to the main housing 100 through the hook 213; one end of the baffle 214 is fixed to the cover plate 210, and the other end extends to the side of the clamping portion 130 away from the hook 213.

[0053] Since the hook 213 is provided on the cover plate 210 and the clamping portion 130 is provided on the main housing 100, by the cooperative use of the hook 213 and the clamping portion 130, the cover plate 210 is snap-connected to the main housing 100, facilitating the quick assembly and disassembly of the cover plate 210; in addition, by providing the baffle 214 on the cover plate 210 and making one end of the baffle 214 extend to the side of the clamping portion 130 away from the hook 213, through the cooperative use of the hook 213 and the baffle 214, the clamping portion 130 is clamped between the hook 213 and the baffle 214, and the baffle 214 prevents the hook 213 from disengaging from the clamping portion 130, effectively improving the connection stability between the cover plate 210 and the main housing 100, thereby preventing the cover plate 210 from loosening and falling off.

[0054] In a preferred embodiment, a positioning block 215 is further provided on the cover plate 210, and a positioning groove 140 is provided on the main housing 100. The positioning block 215 is snapped into the positioning groove 140. By providing the positioning block 215 and the positioning groove 140, it plays a positioning role in the assembly of the cover plate 210 and the main housing 100, which is beneficial to improving the assembly accuracy and connection stability, and preventing the cover plate 210 from loosening and falling off.

[0055] In a preferred embodiment, a positioning cylinder 216 is further provided on the cover plate 210; a positioning post 150 adapted to the positioning cylinder 216 is provided on the main housing 100, and the positioning post 150 is inserted into the positioning cylinder 216. By providing the positioning cylinder 216 and the positioning post 150, it plays a positioning role in the assembly of the cover plate 210 and the main housing 100, which is beneficial to improving the assembly accuracy and connection stability, and preventing the cover plate 210 from loosening and falling off.

[0056] Embodiment Two

[0057] Please refer to Figures 6 to 8 As shown, this embodiment provides a Rubik's Cube component. The Rubik's Cube component is an edge piece, including a main housing 100, a cover 200, a magnetic force bin 300, and a magnetic component 400; the cover 200 is detachably arranged on the main housing 100; a card slot 110 is provided on the main housing 100, a card block 330 is provided on the magnetic force bin 300, and the magnetic force bin 300 is snapped into the card slot 110 of the main housing 100 through the card block 330; the magnetic component 400 is arranged in the magnetic force bin 300.

[0058] Due to the provision of the main housing 100, the cover 200, the magnetic force bin 300, and the magnetic component 400, and a card slot 110 is provided on the main housing 100, a card block 330 is provided on the magnetic force bin 300. By the combined use of the card slot 110 and the card block 330, it can not only ensure the accurate assembly position of the magnetic component, so that the magnetic component 400 can accurately adsorb to the corresponding magnet on the corner piece of the Rubik's Cube to achieve rapid positioning, thereby making the rotation of the Rubik's Cube smoother, effectively improving the rotation stability of the Rubik's Cube and the user's operation experience; moreover, the magnetic force bin 300 is arranged on the main housing 100 in a snap-fit manner, which is convenient for the installation and disassembly of the magnetic force bin 300, thus making the disassembly and assembly of the magnetic component 400 more convenient, facilitating the replacement of magnetic components 400 with different magnetic sizes to adapt to different usage scenarios, effectively solving the problem of poor positioning accuracy caused by inaccurate magnet assembly positions in existing magnetic Rubik's Cubes, and solving the problems of poor magnet stability and inability to perform adaptive replacement. At the same time, the main housing 100 is integrally formed, effectively reducing the assembly difficulty of the edge piece and greatly improving the assembly efficiency. In addition, the magnetic force bin 300 is a component made of a transparent material, which can facilitate the observation of the working state of the magnet in the magnetic force bin 300.

[0059] In a preferred embodiment, the magnetic force bin 300 includes a panel 310, a placement groove 320, and a clamping block 330; the panel 310 is located within the card slot 110; the placement groove 320 is a hollow structure with openings at both ends, and one end of the placement groove 320 is fixed to the inner side of the panel 310, and the other end extends into the main housing 100 through the card slot 110; the clamping block 330 is located inside the main housing 100 and is fixed to the outer side wall of the placement groove 320 near one end of the card slot 110; the magnetic component 400 is detachably arranged within the groove 320.

[0060] Since the magnetic force bin 300 is provided with the panel 310, the placement groove 320, and the clamping block 330, by the combined use of the panel 310 and the clamping block 330, the magnetic force bin 300 can be fixed to the main housing 100, thereby ensuring the precise assembly position of the magnetic component 400. Specifically, by fixing one end of the placement groove 320 to the inner side of the panel 310 and fixing the clamping block 330 to the outer side wall of the placement groove 320 near one end of the card slot 110, the card slot 110 is clamped by the cooperation of the panel 310 and the clamping block 330 to achieve clamping the magnetic force bin 300 within the card slot 110; further, when assembling the magnetic force bin 300, first press one end of the placement groove 320 away from the panel 310 through the card slot 110 into the main housing 100, and make the clamping block 330 pass through the card slot 110 into the main housing 100, place the panel 310 within the card slot 110, and then make the circumferential side wall of the card slot 110 snap into the space between the clamping block 330 and the panel 310, thereby achieving clamping the magnetic force bin 300 onto the card slot 110. In addition, due to the simple structure of the magnetic force bin 300, it is not only beneficial to reduce the processing difficulty, facilitate quick disassembly and assembly, but also can reduce the weight of the prism while ensuring the stable position of the magnetic force bin 300, thereby reducing the overall weight of the Rubik's Cube and enhancing the user operation experience.

[0061] In a preferred embodiment, a curved surface with alternating convex and concave parts is provided along the circumferential direction of the inner side wall of the placement groove 320, which is beneficial to improving the stability of the magnetic component 400 within the placement groove 320, thereby preventing the magnetic component 400 from falling off.

[0062] In a preferred embodiment, a chamfer is provided on the side of the clamping block 330 close to the panel 310, and a bevel is provided on the side of the clamping block 330 facing away from the panel 310.

[0063] By providing a bevel on the side of the clamping block 330 facing away from the panel 310, it is beneficial to press the clamping block 330 through the card slot 110 into the main housing 100, thereby making the installation of the magnetic force bin 300 more convenient, and by providing a smooth chamfer on the side of the clamping block 330 close to the panel 310, it is convenient for disassembling the magnetic force bin 300.

[0064] In a preferred embodiment, the panel 310 is adapted to the card slot 110, and both are arranged in a frustum shape; the smaller end of the bottom surface of the panel 310 is connected to the placement groove 320, and a chamfer is provided on the circumferential edge of the larger end of the bottom surface of the panel 310.

[0065] By setting the panel 310 and the card slot 110 in a frustum shape and connecting the smaller end of the bottom surface of the panel 310 to the placement groove 320, after the end of the placement groove 320 away from the panel 310 enters the main housing 100, the panel 310 can be adapted to the card slot 110 and cooperate with the clamping block 330 in the main housing 100 to realize clamping the magnetic force bin 300 in the card slot 110. In addition, by providing a chamfer on the circumferential edge of the larger end of the bottom surface of the panel 310, the prism block can rotate more smoothly.

[0066] Embodiment III

[0067] This embodiment provides a Rubik's Cube, including the above Rubik's Cube components. Since the Rubik's Cube is provided with the above Rubik's Cube components, rapid positioning can be performed, making the rotation of the Rubik's Cube smoother, effectively improving the stability of the rotation of the Rubik's Cube and the user's operation experience.

[0068] It can be understood that the present invention is described through some embodiments. As is known to those skilled in the art, without departing from the spirit and scope of the present invention, various changes or equivalent replacements can be made to these features and embodiments. In addition, under the teaching of the present invention, these features and embodiments can be modified to adapt to specific situations and materials without departing from the spirit and scope of the present invention. Therefore, the present invention is not limited by the specific embodiments disclosed herein, and all embodiments falling within the scope of the claims of this application belong to the scope protected by the present invention.

Claims

1. A Rubik's Cube component, characterized in that: It includes a main shell, a cover, a magnetic bin and a magnetic component; the cover is detachably arranged on the main shell; a card slot is provided on the main shell, a card block is provided on the magnetic bin, and the magnetic bin is connected to the card slot of the main shell through the card block; the magnetic component is arranged in the magnetic bin.

2. The magic cube assembly according to claim 1, characterized in that: The Rubik's Cube components are corner blocks or edge blocks.

3. The magic cube assembly according to claim 2, characterized in that: The magnetic bin includes a panel, a placement slot and a card block; the panel is located in the card slot; the placement slot is a hollow structure with two ends open, and one end of the placement slot is fixed to the inner side of the panel, and the other end extends into the main shell through the card slot; the card block is located inside the main shell and fixed on the outer wall of the placement slot near one end of the card slot; the magnetic component is located in the placement slot.

4. The magic cube assembly according to claim 3, characterized in that: A chamfer is arranged on a side of the clamping block close to the panel, and a slope is arranged on a side of the clamping block away from the panel.

5. The magic cube assembly according to claim 3, characterized in that: The panel is matched with the card slot, and both are arranged in a truncated cone shape; the smaller end of the bottom surface of the panel is connected to the placement slot, and the larger end of the bottom surface of the panel is chamfered on the circumferential edge.

6. The magic cube assembly according to any one of claims 3 to 5, characterized in that: The Rubik's Cube component is a corner block; a limiting member for preventing the magnetic component from falling off is arranged on one side of the main shell body close to the placement slot; one end of the limiting member is fixed to the main shell body, and the other end extends to the outside close to the magnetic component.

7. The magic cube assembly according to claim 6, characterized in that: The cover body comprises a plurality of cover plates which are interlocked and connected to each other; a connection block and / or a connection groove are arranged on one of the cover plates, and any two adjacent cover plates are connected via the connection block on one cover plate and the connection groove on the other cover plate.

8. The magic cube assembly according to claim 7, characterized in that: The cover plate is also provided with a hook and a baffle, wherein the hook is located on one side of the baffle; the main shell is provided with a clamping portion, and the cover plate is clamped and connected with the clamping portion through the hook; one end of the baffle is fixed to the cover plate, and the other end extends to a side of the clamping portion away from the hook.

9. The magic cube assembly according to claim 7, characterized in that: The cover plate is also provided with a positioning block, the main housing is provided with a positioning groove, and the positioning block is clamped in the positioning groove.

10. The magic cube assembly according to claim 7, characterized in that: The cover plate is also provided with a positioning cylinder; the main housing is provided with a positioning column matched with the positioning cylinder, and the positioning column is inserted into the positioning cylinder.

11. A magic cube, characterized in that: A magic cube assembly comprising any one of claims 1 to 10.