Solid geometrical nested toy
By incorporating puzzle elements and magnetic blocks into nested three-dimensional geometric shapes, the problem of limited play options is solved, enhancing children's creativity and spatial awareness, and increasing the toy's fun and challenge.
Patent Information
- Application Number
- CN202520040356.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-08
- Publication Date
- 2026-02-10
- Estimated Expiration
- 2035-01-08
AI Technical Summary
Existing nested 3D geometric toys offer limited gameplay options, easily causing children to lose interest and lacking diversity in play.
A three-dimensional geometric nesting toy was designed, which includes nesting toy blocks of various shapes and interest puzzle devices. By combining magnetic blocks with magnetic panels, children can assemble different patterns according to the drawings, enhancing their hand-eye coordination and spatial cognition.
It stimulates children's creativity and thinking ability, cultivates their concentration and problem-solving skills, and increases the fun and challenge of the toys.
Smart Images

Figure CN223887413U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of children's toys, specifically relating to a nested toy with a three-dimensional geometric shape. Background Technology
[0002] With social development and increased emphasis on children's education, the variety of children's toys is becoming increasingly diverse. Nesting toys featuring three-dimensional geometric shapes, as a common type of children's toy, play an important role in cultivating children's spatial awareness and hand-eye coordination.
[0003] However, existing 3D geometric nesting toys have some shortcomings. Most 3D geometric nesting toys on the market currently offer only simple gameplay, typically involving simply nesting and assembling toy blocks of different shapes. Children may find these toys novel and interesting at first, but after a few attempts, they easily become bored. This monotonous gameplay gradually diminishes children's interest in hands-on activities and fails to sustain their attention or stimulate their creativity.
[0004] Furthermore, existing nesting toys featuring three-dimensional geometric shapes are functionally limited, lacking integration with other play methods and failing to meet children's diverse play needs. Therefore, it is necessary to develop a new type of nesting toy featuring three-dimensional geometric shapes to address the problems of existing toys' monotonous gameplay and tendency to cause children to lose interest. Utility Model Content
[0005] The purpose of this invention is to provide a three-dimensional geometric nesting toy to solve the problem mentioned in the background art that most three-dimensional geometric nesting toys on the market have relatively simple gameplay. They usually just involve nesting and assembling toy blocks of different shapes. Children may feel novel and interesting when they first come into contact with such toys, but after assembling them a few times, they are likely to get bored.
[0006] To achieve the above objectives, this utility model provides the following technical solution: a three-dimensional geometric nested toy, including a toy base plate and multiple triangular nested toy blocks disposed on the upper side of the top center of the toy base plate. Multiple rectangular nested toy blocks are disposed to the left of the multiple triangular nested toy blocks, multiple circular nested toy blocks are disposed to the left of the multiple rectangular nested toy blocks, multiple square nested toy blocks are disposed to the right of the multiple triangular nested toy blocks, and multiple polygonal nested toy blocks are disposed to the right of the multiple square nested toy blocks. An interest puzzle device is disposed at the rear end of the toy base plate.
[0007] Preferably, the puzzle device includes a longitudinal bottom support rod, a puzzle board, a fixing groove, a magnetic panel, and a back fixing rod. The longitudinal bottom support rods are provided on both the left and right sides of the center of the rear outer wall of the toy mounting base. The rear top of the two longitudinal bottom support rods are provided with a back fixing rod. The puzzle board is provided at the front end of the two back fixing rods. The bottom end of the puzzle board is placed on the top outer wall of the two longitudinal bottom support rods. The front interior of the puzzle board is provided with a fixing groove, and the magnetic panel is fixed in the fixing groove.
[0008] Preferably, the puzzle device further includes a plurality of flat circular magnets, which are magnetically fixed to the outer wall of the front end of the magnetizing panel, and the puzzle board is flush with the outer wall of the front end of the magnetizing panel.
[0009] Preferably, the edges of the puzzle board are rounded and blunted, and the back of the puzzle board is fixedly connected to two back fixing rods by multiple screws. The multiple flat circular magnets can slide arbitrarily on the outer wall of the front end of the magnetizing panel.
[0010] Preferably, the outer wall of the bottom end of the toy mounting base is also provided with an anti-slip pad, which is made of soft rubber and is fixedly connected to the toy mounting base by an adhesive.
[0011] Preferably, the polygonal nested toy block, square nested toy block, triangular nested toy block, rectangular nested toy block, and circular nested toy block are all provided with nesting holes inside, and the number of nesting holes inside the polygonal nested toy block, square nested toy block, triangular nested toy block, rectangular nested toy block, and circular nested toy block are six, four, three, two, and one, respectively.
[0012] Preferably, the multiple nesting holes inside the polygonal nested toy block are arranged at hexagonal angles, the four nesting holes inside the square nested toy block are arranged at square angles, the three nesting holes inside the triangular nested toy block are arranged at triangular angles, and the two nesting holes inside the rectangular nested toy block are symmetrically arranged front and back.
[0013] Preferably, six nested integrated rods E are equidistantly arranged at the top right end of the toy mounting base. The six nested integrated rods E are arranged at a hexagonal angle. The polygonal nested toy block can be fitted onto the outside of the multiple nested integrated rods E through multiple internal nesting holes. Four nested integrated rods D are arranged on the left side of the nested integrated rods E. The four nested integrated rods D are arranged at a square angle. The square nested toy block can be fitted onto the outside of the four square-arranged nested integrated rods D through four internal nesting holes.
[0014] Preferably, three nested integrated rods C are provided on the left side of the nested integrated rod D, and the three nested integrated rods C are arranged in a triangular angle. The triangular nested toy block can be fitted onto the outside of the three nested integrated rods C arranged in a triangular angle through the three internal nesting holes. Two nested integrated rods B are provided on the left side of the nested integrated rod C, and the two nested integrated rods B are arranged symmetrically front and back. The rectangular nested toy block can be fitted onto the outside of the two symmetrical nested integrated rods B through the two internal nesting holes. A nested integrated rod A is provided on the left side of the nested integrated rod B, and the circular nested toy block can be fitted onto the outside of the nested integrated rod A through the internal nesting hole.
[0015] Compared with the prior art, this utility model provides a nested toy with a three-dimensional geometric shape, which has the following beneficial effects:
[0016] This invention features a novel puzzle device added to the rear of the toy's base plate. This device greatly facilitates children's assembly of various nested toy blocks. Children can attach the puzzle diagram to the magnetic panel using flat, round magnetic blocks, allowing them to clearly assemble the nested toy blocks according to the diagram. This helps cultivate children's observation skills, spatial awareness, and hand-eye coordination. Simultaneously, children can learn different three-dimensional geometric shapes through play. Furthermore, the multiple flat, round magnetic blocks at the front of the magnetic panel can slide freely, allowing children to assemble different patterns on the panel. This greatly increases the toy's fun and creativity, enabling children to unleash their imagination and create unique patterns, stimulating their creativity and thinking abilities. Using the puzzle device requires children to focus on the diagram and the magnetic blocks, which helps improve their concentration and patience. Furthermore, by constantly trying and adjusting the position of the magnetic blocks, children can cultivate problem-solving skills and perseverance. Attached Figure Description
[0017] Figure 1 This is a frontal view of a three-dimensional geometric nested toy according to the present invention.
[0018] Figure 2 This is a frontal planar structural diagram of a nested three-dimensional geometric toy according to the present invention.
[0019] Figure 3 This is a top-view schematic diagram of the nested three-dimensional geometric toy of this utility model.
[0020] Figure 4 This is a frontal three-dimensional structural diagram of the interest puzzle device of this utility model.
[0021] Figure 5This is a rear-view three-dimensional structural diagram of the interest puzzle device of this utility model.
[0022] In the diagram: 1. Toy placement base; 2. Anti-slip mat; 3. Polygonal nested toy blocks; 4. Square nested toy blocks; 5. Triangular nested toy blocks; 6. Rectangular nested toy blocks; 7. Circular nested toy blocks; 8. Nesting holes; 9. Nesting integrated rod A; 10. Nesting integrated rod B; 11. Nesting integrated rod C; 12. Nesting integrated rod D; 13. Interest puzzle device; 14. Nesting integrated rod E; 15. Vertical bottom support rod; 16. Puzzle board; 17. Fixing groove; 18. Magnetizing panel; 19. Flat circular magnet block; 20. Back fixing rod. Detailed Implementation
[0023] 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.
[0024] This utility model provides, for example Figure 1-5 The illustrated three-dimensional geometric nesting toy includes a toy base plate 1 and multiple triangular nesting toy blocks 5 positioned at the top center of the base plate 1. To the left of the triangular nesting toy blocks 5 are multiple rectangular nesting toy blocks 6, and to the left of the rectangular nesting toy blocks 6 are multiple circular nesting toy blocks 7. To the right of the triangular nesting toy blocks 5 are multiple square nesting toy blocks 4, and to the right of the square nesting toy blocks 4 are multiple polygonal nesting toy blocks 3. The design principle of this three-dimensional geometric nesting toy is mainly based on the cooperative relationship between nesting toy blocks of different shapes and a specific arrangement of nesting integrated rods. Children can play by nesting toy blocks of different shapes according to their shape. The toys are assembled using blocks and corresponding nested integrated rods, which helps children develop their cognitive abilities regarding different geometric shapes, spatial imagination, and hand-eye coordination. This nested assembly method also increases the toy's fun and challenge, stimulating children's desire to explore and their creativity. The bottom outer wall of the toy's base plate 1 is also equipped with an anti-slip pad 2, made of soft rubber. The anti-slip pad 2 is fixedly connected to the toy's base plate 1 with adhesive. The toy's base plate 1, as the foundation of the entire toy, provides a stable placement platform. The anti-slip pad 2 on its bottom outer wall, made of soft rubber and fixed with adhesive, effectively prevents the toy from sliding during use, ensuring the safety and stability of children while playing.
[0025] like Figure 1 , Figure 2 and Figure 3As shown, the polygonal nested toy block 3, square nested toy block 4, triangular nested toy block 5, rectangular nested toy block 6, and circular nested toy block 7 all have nesting holes 8 inside. The number of nesting holes 8 inside the polygonal nested toy block 3, square nested toy block 4, triangular nested toy block 5, rectangular nested toy block 6, and circular nested toy block 7 are six, four, three, two, and one, respectively. The multiple nesting holes 8 inside the polygonal nested toy block 3 are arranged at hexagonal angles, the four nesting holes 8 inside the square nested toy block 4 are arranged at square angles, the three nesting holes 8 inside the triangular nested toy block 5 are arranged at triangular angles, and the two nesting holes 8 inside the rectangular nested toy block 6 are symmetrically arranged front and back. Six nested integrated rods E14 are equidistantly arranged at the top right end of the base plate 1, forming a hexagonal angle. Polygonal nested toy blocks 3 can be fitted onto the outside of the nested integrated rods E14 through multiple internal nesting holes 8. Four nested integrated rods D12 are arranged to the left of the nested integrated rods E14, forming a square angle. Square nested toy blocks 4 can be fitted onto the outside of the four square-arranged nested integrated rods D12 through the four internal nesting holes 8. Three nested integrated rods C11 are arranged to the left of the nested integrated rods D12, forming a triangular angle. Triangular nested toy blocks 5 can be fitted onto the outside of the three internal nesting holes. 8 is fitted onto the outside of three nested integrated rods C11 arranged in a triangular pattern. Two nested integrated rods B10 are located to the left of each nested integrated rod C11, symmetrically positioned front to back. A rectangular nested toy block 6 can be fitted onto the outside of the two symmetrically positioned nested integrated rods B10 through two internal nesting holes 8. A nested integrated rod A9 is located to the left of each nested integrated rod B10. A circular nested toy block 7 can be fitted onto the outside of nested integrated rod A9 through its internal nesting hole 8. For nested toy blocks of different shapes, such as polygonal nested toy block 3, square nested toy block 4, triangular nested toy block 5, rectangular nested toy block 6, and circular nested toy block 7, different numbers of nesting holes 8 are provided internally. The arrangement of the nesting holes 8 corresponds to their respective geometric shapes. For example, the multiple nesting holes 8 inside the polygonal nesting toy block 3 are arranged at hexagonal angles, which perfectly matches the six nesting integrated rods E14 arranged at hexagonal angles at the top right end of the toy base plate 1. This allows the polygonal nesting toy block 3 to be fitted onto the outside of the multiple nesting integrated rods E14 through its internal nesting holes 8. Similarly, the four nesting holes 8 inside the square nesting toy block 4 are arranged at square angles, which corresponds to the square arrangement of the four nesting integrated rods D12, allowing it to be fitted onto the outside of the four nesting integrated rods D12. The three nesting holes 8 inside the triangular nesting toy block 5 are arranged at triangular angles, allowing it to be fitted onto the outside of the three nesting integrated rods C11.The rectangular nested toy block 6 has two symmetrically arranged nesting holes 8 inside, allowing it to be fitted onto the outside of two symmetrically arranged nested integrated rods B10. The circular nested toy block 7 has one nesting hole 8 inside, allowing it to be fitted onto the outside of a nested integrated rod A9.
[0026] like Figure 1 , Figure 4 and Figure 5 As shown, an interest puzzle device 13 is provided at the rear end of the toy mounting base 1. The interest puzzle device 13 includes a longitudinal bottom support rod 15, a puzzle board 16, a fixing groove 17, a magnetic panel 18, and a back fixing rod 20. Longitudinal bottom support rods 15 are provided on both the left and right sides at the center of the rear outer wall of the toy mounting base 1. A back fixing rod 20 is provided at the top of the rear end of each of the two longitudinal bottom support rods 15. The puzzle board 16 is provided at the front end of each of the two back fixing rods 20. The bottom end of the puzzle board 16 rests on the top outer wall of the two longitudinal bottom support rods 15. The longitudinal bottom support rods 15 provide stable support for the puzzle board 16, allowing it to... The puzzle piece 16 can be placed at the rear end of the toy base plate 1. The back fixing rod 20 is fixed to the back of the puzzle piece 16 with screws to ensure that the puzzle piece 16 will not shake or fall off during use. The front end of the puzzle piece 16 has a fixing groove 17, in which a magnetic panel 18 is fixed. The puzzle device 13 also includes multiple flat round magnets 19, which are magnetically fixed to the front outer wall of the magnetic panel 18. The puzzle piece 16 is flush with the front outer wall of the magnetic panel 18. The edges of the puzzle piece 16 are rounded and blunted to prevent children from accidentally slipping or falling off while playing. The toy is designed to prevent scratches from sharp edges during play, improving safety. The curved design is also more aesthetically pleasing and meets the design requirements for children's toys. The back of the puzzle board 16 is fixedly connected to two back fixing rods 20 via multiple screws. Multiple flat, round magnetic blocks 19 can slide freely on the outer wall of the front end of the magnetic panel 18. The fixing groove 17 inside the front end of the puzzle board 16 is used to fix the magnetic panel 18, ensuring it is securely mounted on the puzzle board 16. The magnetic panel 18's function is to magnetically attract multiple flat, round magnetic blocks 19, which can be magnetically attached. Fixed to the outer front wall of the magnetic panel 18, these magnetic blocks can slide freely on the magnetic panel 18 due to the magnetic force. During use, children can attach the assembly instructions to the magnetic panel 18 by using the flat round magnetic blocks 19. This makes it easy to assemble nested toy blocks according to the instructions. At the same time, children can also slide the flat round magnetic blocks 19 to assemble different patterns on the magnetic panel 18, increasing the fun and creativity of the toy. This design can not only exercise children's hand-eye coordination and spatial imagination, but also cultivate their concentration and problem-solving abilities.
[0027] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A three-dimensional geometric nested toy, comprising a toy base plate (1) and a plurality of triangular nested toy blocks (5) disposed on the upper side of the top center of the toy base plate (1), wherein a plurality of rectangular nested toy blocks (6) are disposed on the left side of the plurality of triangular nested toy blocks (5), a plurality of circular nested toy blocks (7) are disposed on the left side of the plurality of rectangular nested toy blocks (6), a plurality of square nested toy blocks (4) are disposed on the right side of the plurality of triangular nested toy blocks (5), and a plurality of polygonal nested toy blocks (3) are disposed on the right side of the plurality of square nested toy blocks (4), characterized in that: The rear end of the toy mounting base (1) is provided with an interesting puzzle device (13); The puzzle device (13) includes a longitudinal bottom support rod (15), a puzzle board (16), a fixing groove (17), a magnetic panel (18), and a back fixing rod (20). The left and right sides of the center of the outer wall of the rear end of the toy mounting base (1) are provided with longitudinal bottom support rods (15). The top of the rear end of the two longitudinal bottom support rods (15) is provided with a back fixing rod (20). The front end of the two back fixing rods (20) is provided with a puzzle board (16). The bottom end of the puzzle board (16) is placed on the outer wall of the top end of the two longitudinal bottom support rods (15). The front end of the puzzle board (16) is provided with a fixing groove (17). The magnetic panel (18) is fixed in the fixing groove (17).
2. The nested toy with three-dimensional geometric shapes according to claim 1, characterized in that: The interest puzzle device (13) also includes a plurality of flat circular magnet blocks (19), which are magnetically fixed to the outer wall of the front end of the magnetizing panel (18), and the puzzle board (16) is flush with the outer wall of the front end of the magnetizing panel (18).
3. A nested toy with three-dimensional geometric shapes according to claim 2, characterized in that: The edges of the puzzle board (16) are all rounded and blunted. The back of the puzzle board (16) is fixedly connected to two back fixing rods (20) by multiple screws. Multiple flat circular magnets (19) can slide arbitrarily on the outer wall of the front end of the magnetizing panel (18).
4. A nested toy with three-dimensional geometric shapes according to claim 1, characterized in that: The bottom outer wall of the toy mounting base (1) is also provided with an anti-slip pad (2). The anti-slip pad (2) is made of soft rubber and is fixedly connected to the toy mounting base (1) by an adhesive.
5. A nested toy with three-dimensional geometric shapes according to claim 1, characterized in that: The polygonal nested toy block (3), square nested toy block (4), triangular nested toy block (5), rectangular nested toy block (6) and circular nested toy block (7) are all provided with nesting holes (8). The number of nesting holes (8) inside the polygonal nested toy block (3), square nested toy block (4), triangular nested toy block (5), rectangular nested toy block (6) and circular nested toy block (7) are six, four, three, two and one, respectively.
6. A nested toy with three-dimensional geometric shapes according to claim 5, characterized in that: The multiple nesting holes (8) inside the polygonal nested toy block (3) are arranged in a hexagonal angle; the four nesting holes (8) inside the square nested toy block (4) are arranged in a square angle; the three nesting holes (8) inside the triangular nested toy block (5) are arranged in a triangular angle; and the two nesting holes (8) inside the rectangular nested toy block (6) are symmetrically arranged front and back.
7. A nested toy with three-dimensional geometric shapes according to claim 1, characterized in that: The toy mounting base plate (1) has six nested integrated rods E (14) equidistantly arranged at the top right end. The six nested integrated rods E (14) are arranged in a hexagonal angle. The polygonal nested toy block (3) can be fitted onto the outside of the multiple nested integrated rods E (14) through multiple nesting holes (8). The left side of the nested integrated rods E (14) has four nested integrated rods D (12). The four nested integrated rods D (12) are arranged in a square angle. The square nested toy block (4) can be fitted onto the outside of the four square-arranged nested integrated rods D (12) through the four nesting holes (8).
8. A nested toy with three-dimensional geometric shapes according to claim 7, characterized in that: Three nested integrated rods C (11) are provided on the left side of the nested integrated rod D (12). The three nested integrated rods C (11) are arranged in a triangular angle. The triangular nested toy block (5) can be fitted onto the outside of the three nested integrated rods C (11) arranged in a triangular angle through the three nesting holes (8) inside. Two nested integrated rods B (10) are provided on the left side of the nested integrated rod C (11). The two nested integrated rods B (10) are arranged symmetrically front and back. The rectangular nested toy block (6) can be fitted onto the outside of the two symmetrical nested integrated rods B (10) through the two nesting holes (8) inside. A nested integrated rod A (9) is provided on the left side of the nested integrated rod B (10). The circular nested toy block (7) can be fitted onto the outside of the nested integrated rod A (9) through the nesting hole (8) inside.