Seven-axis three-order toy magic cube
By designing a seven-axis, three-dimensional toy Rubik's Cube, the number of faces and connection structure of the cube are increased, solving the problem of user fatigue and improving the fun and lifespan of the cube.
Patent Information
- Application Number
- CN202520105784.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-17
- Publication Date
- 2026-03-03
- Estimated Expiration
- 2035-01-17
AI Technical Summary
The existing six-face structure of the Rubik's Cube makes users easily fatigued and lacks novel solutions, which reduces user interest and the lifespan of the Rubik's Cube.
Design a seven-axis 3x3 toy Rubik's Cube. By adding connecting axes for the cube layers and rotating cores, a seven-face structure is formed. Interlocking blocks and arc-shaped sliding grooves are used to realize the rotation and movement between cubes, increasing the fun and avoiding fatigue.
The seven-sided design increases the fun of the Rubik's Cube, prevents user fatigue, and improves the user experience.
Smart Images

Figure CN223959155U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of Rubik's Cubes, and more specifically, to a seven-axis, three-dimensional toy Rubik's Cube. Background Technology
[0002] The Rubik's Cube is a common puzzle toy. It is usually a cube made up of multiple small cubes. There are different types of Rubik's Cubes, the most common of which is the 3x3 Rubik's Cube. Each of its faces is divided into 3x3 squares, for a total of six faces, each a different color. The goal of playing the Rubik's Cube is to rotate the various layers of the cube so that each face displays the same color. This requires a certain amount of spatial imagination, logical thinking ability, and finger dexterity. In addition to the 3x3 Rubik's Cube, there are also 2x2, 4x4, 5x5, and other Rubik's Cubes. The higher the order, the more difficult and complex the Rubik's Cube becomes.
[0003] For example, application number CN202110068467.X discloses an intelligent Rubik's Cube. When operating the cube, the terminals are inserted into the insertion holes formed by the opposing faces of the unit blocks, which can reduce frictional resistance. When the operation of the cube is finished, the terminals of the adjacent unit blocks are engaged by magnetic force, which can reliably ensure the contact between the terminals. The above-mentioned device solves the problem that existing Rubik's Cubes do not provide any functions other than adjusting the faces of the cube to the same color, thus reducing the user's interest and shortening the lifespan of the cube. However, in the prior art, Rubik's Cubes usually have six faces, and the formulas used in the use of 3x3 Rubik's Cubes are similar. Furthermore, since the cube is installed with six axes for limiting, it is easy to cause fatigue during use.
[0004] Therefore, a seven-axis, three-dimensional toy Rubik's Cube is proposed to address the above problems. Summary of the Invention
[0005] In order to overcome the above-mentioned defects of the prior art, this utility model provides a seven-axis three-dimensional toy cube to solve the problems mentioned in the background art.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a seven-axis 3x3 toy Rubik's Cube, comprising a cube body, a rotating core, a first cube layer, a second cube layer, and a third cube layer. The cube body is composed of the rotating core, the first cube layer, the second cube layer, and the third cube layer. The first cube layer, the second cube layer, and the third cube layer are respectively connected to the rotating core. The first cube layer includes a first edge cube and a first corner cube. Five sets of the first edge cube and the first corner cube are provided, and the first edge cube and the first corner cube are arranged alternately. The five sets of the first edge cube and the first corner cube are arranged around a first center cube. The second cube layer includes a second edge cube and a second corner cube. Five sets of the second edge cube and the second corner cube are provided, and the second edge cube and the second corner cube are arranged alternately. The third cube layer has the same structure as the first cube layer.
[0007] Preferably, the third Rubik's Cube layer includes a third edge Rubik's Cube and a third corner Rubik's Cube. There are five sets of each set of the third edge Rubik's Cube and the third corner Rubik's Cube, which are arranged alternately. The five sets of the third edge Rubik's Cube and the third corner Rubik's Cube are arranged around the second center Rubik's Cube.
[0008] Preferably, the rotating core is provided with seven sets of connecting shafts, two sets of connecting shafts are respectively installed on the top and bottom surfaces of the rotating core, and the other five sets of connecting shafts are installed around the rotating core. The five sets of connecting shafts are evenly arranged. The first center cube in the first cube layer, the second center cube in the third cube layer, and the second edge cube in the second cube layer are all provided with connecting holes.
[0009] Preferably, interlocking blocks are provided at the corners of the first edge cube, the first corner cube, and the first center cube in the first cube layer; at the corners of the second edge cube and the second corner cube in the second cube layer; and at the corners of the third edge cube, the third corner cube, and the second center cube in the third cube layer. Several sets of interlocking blocks are provided, and the several sets of interlocking blocks form a sphere.
[0010] Preferably, the edges of the fastening blocks installed in the first edge cube, the first corner cube, the first center cube, the second edge cube, the second corner cube, the third edge cube, the third corner cube, and the second center cube are provided with arc-shaped grooves.
[0011] Preferably, the first center cube in the first cube layer, the second edge cube in the second cube layer, and the second center cube in the third cube layer form a snap-fit structure with the connecting shaft in the rotating core through the connecting hole.
[0012] The technical effects and advantages of this utility model are as follows: Compared with the prior art, this seven-axis 3x3 toy Rubik's Cube is composed of a core, a first Rubik's Cube layer, a second Rubik's Cube layer and a third Rubik's Cube layer when in use, thus forming a Rubik's Cube with a seven-sided structure, thereby increasing the fun of using the Rubik's Cube and avoiding user fatigue by providing a different way of relieving boredom than the 3x3 Rubik's Cube.
[0013] Compared with existing technologies, this seven-axis 3x3 Rubik's Cube, when in use, involves several sets of first edge and first corner cubes in the first layer, several sets of second edge and second corner cubes in the second layer, and several sets of third edge and third corner cubes in the third layer interlocking with each other, and also interlocking with and limiting the position of the first and second center cubes. Simultaneously, since the rotating core is equipped with a connecting shaft, it is connected to the connecting shaft installed on the rotating core through connecting holes, thus limiting the connection. Furthermore, the several sets of first edge and first corner cubes in the first layer, several sets of second edge and second corner cubes in the second layer, and several sets of third edge and third corner cubes in the third layer are interlocked by interlocking blocks, forming a sphere. This facilitates the rotation and movement of the cubes through the arc-shaped sliding grooves, increasing the fun of the device and preventing user fatigue. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the three-dimensional structure of the Rubik's Cube body of this utility model.
[0015] Figure 2 This is a schematic diagram of the exploded structure of the Rubik's Cube body of this utility model.
[0016] Figure 3 This is a schematic diagram of the three-dimensional structure of the rotating core of this utility model.
[0017] Figure 4 This is a side view of the Rubik's Cube body of this utility model.
[0018] Figure 5 This is a schematic diagram of the explosion structure of the first layer of the Rubik's Cube of this utility model.
[0019] Figure 6 This is a side view of the first layer of the Rubik's Cube structure of this utility model.
[0020] Figure 7 This is a schematic diagram of the three-dimensional structure of the second layer of the present invention.
[0021] Figure 8 This is a schematic diagram of the explosion structure of the second layer of the Rubik's Cube of this utility model.
[0022] Figure 9This is a schematic diagram of the three-dimensional structure of the second central cube of this utility model.
[0023] Figure 10 This is a schematic diagram of the exploded structure of the third layer of the present invention.
[0024] The attached diagram is labeled as follows: 1. Cube body; 2. Rotating core; 21. Connecting axis; 3. First cube layer; 31. First edge cube; 32. First corner cube; 33. First center cube; 4. Second cube layer; 41. Second edge cube; 42. Second corner cube; 5. Third cube layer; 51. Third edge cube; 52. Third corner cube; 53. Second center cube; 6. Connecting hole; 7. Snap-fit block; 8. Arc-shaped groove. Detailed Implementation
[0025] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0026] Implementation, for example, attached Figures 1 to 10The illustrated seven-axis 3x3 Rubik's Cube includes a cube body 1, a core 2, a first layer 3, a second layer 4, and a third layer 5. The cube body 1 is composed of the core 2, the first layer 3, the second layer 4, and the third layer 5. The first layer 3, the second layer 4, and the third layer 5 are connected to the core 2. The first layer 3 includes a first edge cube 31 and a first corner cube 32. Five sets of each of the first edge cube 31 and the first corner cube 32 are arranged alternately, with the five sets surrounding a first center cube 33. The second layer 4 includes a second edge cube 41 and a second corner cube 42. Five sets of blocks 41 and 42 are provided for each of the first and second corner cubes, and the second edge cubes 41 and 42 are arranged alternately. The third cube layer 5 has the same structure as the first cube layer 3. The third cube layer 5 includes three edge cubes 51 and three corner cubes 52, each with five sets, arranged alternately. The five sets of three edge cubes 51 and three corner cubes 52 are arranged around the second center cube 53. The rotating core 2 has seven sets of connecting shafts 21, two of which are installed on the top and bottom faces of the rotating core 2, respectively, and the other five sets are installed around the rotating core 2, and the five sets of connecting shafts 21 are evenly arranged. The first cube layer... Connecting holes 6 are provided in the first center cube 33 in layer 3, the second center cube 53 in layer 5, and the second edge cube 41 in layer 4. Connecting holes 6 are provided at the corners of the first edge cube 31, the first corner cube 32, and the first center cube 33 in layer 3; at the corners of the second edge cube 41 and the second corner cube 42 in layer 4; and at the corners of the third edge cube 51, the third corner cube 52, and the second center cube 53 in layer 5. Several sets of connecting holes 7 are provided, and these sets of connecting holes 7 form a sphere. Connecting holes 6 are provided in the first edge cube 31, the first corner cube 32, the first center cube 33, the second edge cube 41, the second corner cube 42, and the third edge cube 53. 1. The edges of the interlocking blocks 7 installed in the third corner cube 52 and the second center cube 53 are provided with arc-shaped sliding grooves 8. The first center cube 33 in the first cube layer 3, the second edge cube 41 in the second cube layer 4, and the second center cube 53 in the third cube layer 5 form an interlocking structure with the connecting shaft 21 in the rotating core 2 through the connecting holes 6. Several sets of first edge cubes 31 and first corner cubes 32 in the first cube layer 3, several sets of second edge cubes 41 and second corner cubes 42 in the second cube layer 4, and several sets of third edge cubes 51 and third corner cubes 52 in the third cube layer 5 interlock with each other, and are also interlocked and limited with the first center cubes 33 and the second center cube 53. Since the rotating core 2 is equipped with the connecting shaft 21,Then, it is connected to the connecting shaft 21 installed on the rotating core 2 through the connecting hole 6 for limiting connection. Since several sets of first edge cubes 31 and first corner cubes 32 in the first Rubik's Cube layer 3, several sets of second edge cubes 41 and second corner cubes 42 in the second Rubik's Cube layer 4, and several sets of third edge cubes 51 and third corner cubes 52 in the third Rubik's Cube layer 5 are connected by fastening blocks 7, several sets of fastening blocks 7 interlock to form a sphere, facilitating the rotation and movement of the cubes through the arc-shaped sliding groove 8, increasing the fun of the device and preventing user fatigue.
[0027] The working process of this utility model is as follows: Several sets of first edge cubes 31 and first corner cubes 32 in the first Rubik's Cube layer 3, several sets of second edge cubes 41 and second corner cubes 42 in the second Rubik's Cube layer 4, and several sets of third edge cubes 51 and third corner cubes 52 in the third Rubik's Cube layer 5 are interlocked with each other, and are also interlocked with and limited by the first center cube 33 and second center cube 53. Simultaneously, since the rotating core 2 is equipped with a connecting shaft 21, the connecting hole 6 is used to interlock with the connecting shaft 21 installed on the rotating core 2. The limiting connection involves several sets of first edge cubes 31 and first corner cubes 32 in the first cube layer 3, several sets of second edge cubes 41 and second corner cubes 42 in the second cube layer 4, and several sets of third edge cubes 51 and third corner cubes 52 in the third cube layer 5, which are fastened together by fastening blocks 7. This allows several sets of fastening blocks 7 to fasten together to form a sphere, facilitating the rotation and movement of the cubes using the arc-shaped sliding grooves 8. This increases the fun of the device and prevents user fatigue.
Claims
1. A seven-axis third-order toy Rubik's cube, comprising a Rubik's cube body (1), a rotating core (2), a first Rubik's cube layer (3), a second Rubik's cube layer (4) and a third Rubik's cube layer (5), characterized in that: The magic cube body (1) is composed of a rotating core (2), a first magic cube layer (3), a second magic cube layer (4) and a third magic cube layer (5), the first magic cube layer (3), the second magic cube layer (4) and the third magic cube layer (5) are respectively connected with the rotating core (2) by buckling, the first magic cube layer (3) comprises first edge magic cubes (31) and first corner magic cubes (32), the first edge magic cubes (31) and the first corner magic cubes (32) are alternately arranged and arranged around the first center magic cube (33), the second magic cube layer (4) comprises second edge magic cubes (41) and second corner magic cubes (42), the second edge magic cubes (41) and the second corner magic cubes (42) are alternately arranged and arranged around the second center magic cube (53), and the third magic cube layer (5) is the same in structure as the first magic cube layer (3).
2. A seven-axis, third-order toy Rubik's Cube according to claim 1, characterized in that: The third magic cube layer (5) comprises third edge magic cubes (51) and third corner magic cubes (52), the third edge magic cubes (51) and the third corner magic cubes (52) are alternately arranged and arranged around the second center magic cube (53).
3. A seven-axis, third-order toy Rubik's Cube according to claim 2, characterized in that: The rotating core (2) is provided with seven groups of connecting shafts (21), two groups of the connecting shafts (21) are respectively installed on the top end face and the bottom end face of the rotating core (2), and the other five groups of the connecting shafts (21) are installed around the rotating core (2), and the five groups of the connecting shafts (21) are uniformly arranged, the first center magic cube (33) in the first magic cube layer (3), the second center magic cube (53) in the third magic cube layer (5) and the second edge magic cube (41) in the second magic cube layer (4) are all provided with connecting holes (6).
4. A seven-axis, third-order toy Rubik's Cube according to claim 2, characterized in that: The edge corners of the first edge magic cubes (31), the first corner magic cubes (32) and the first center magic cube (33) in the first magic cube layer (3), the edge corners of the second edge magic cubes (41) and the second corner magic cubes (42) in the second magic cube layer (4) and the edge corners of the third edge magic cubes (51), the third corner magic cubes (52) and the second center magic cube (53) in the third magic cube layer (5) are all provided with buckling blocks (7), the buckling blocks (7) are provided with a plurality of groups, and the plurality of groups of the buckling blocks (7) form a spherical body.
5. A seven-axis, third-order toy Rubik's Cube according to claim 4, characterized in that: The edge corners of the buckling blocks (7) installed in the first edge magic cubes (31), the first corner magic cubes (32), the first center magic cube (33), the second edge magic cubes (41), the second corner magic cubes (42), the third edge magic cubes (51), the third corner magic cubes (52) and the second center magic cube (53) are provided with arc-shaped sliding grooves (8).
6. A seven-axis, third-order toy Rubik's Cube according to claim 3, characterized in that: The first center cube (33) in the first Rubik's layer (3), the second edge cube (41) in the second Rubik's layer (4) and the second center cube (53) in the third Rubik's layer (5) constitute a buckling structure with the connecting shaft (21) in the rotating core (2) through the connecting hole (6).
Citation Information
Patent Citations
Intelligent magic cube
CN114618152A