Rotatable panda mill-pushing toy device
By adopting a rotating structure of mortise and tenon connections and motor-driven rotation in the toy, the problem of loose connections and lack of dynamic elements is solved, achieving a more durable and interactive toy design.
Patent Information
- Application Number
- CN202421165657.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-27
- Publication Date
- 2025-06-24
- Estimated Expiration
- 2034-05-27
AI Technical Summary
Existing toys may loosen or fall off during use through glue and screw connections, resulting in unstable or damaged toys. Static toys lack dynamic elements, making it difficult to stimulate children's creativity and imagination.
A rotatable panda push-grinding toy device is designed, using a rotating structure driven by mortise and tenon connections and motors. The stability and durability of toy members are improved through mortise and tenon connections, and the interest and creativity of children are stimulated through dynamic rotating structures.
The durability and stability of the toy is improved through mortise and tenon connections, extending its service life, and stimulating children's creativity and logical thinking ability through dynamic rotating structures.
Smart Images

Figure CN223009781U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of toy models, in particular to a rotatable panda grinding toy device. Background Technique
[0002] Toy models are toys designed to promote children's learning and development. They usually combine educational and entertainment elements to attract children's attention and stimulate their learning interest. These toys can help children master various skills, knowledge and concepts during play, thus promoting their cognitive, emotional, social and motor development.
[0003] Items used by children in games and entertainment are usually designed in various shapes, colors and functions to satisfy children's curiosity and creativity. Toys can be simple handmade products or complex electronic devices. Toys are items used for children to play, entertain and learn. They have different shapes, materials and functions and can be suitable for children of all ages.
[0004] In the process of implementing the utility model, the inventor found that the prior art has the following problems: 1. The mortise and tenon structure provides a more stable connection, making it more difficult for toys to disassemble or damage, thus increasing the safety and durability of toys. In contrast, glued and screwed connections may become loose or fall off during use, resulting in toy instability or damage; 2. Static toys usually lack dynamic elements and interactivity with children, and may be difficult to stimulate children's creativity and imagination. Content of the Utility Model
[0005] The purpose of the utility model is to provide a rotatable panda grinding toy device to solve the problem that the toy connected by glue and screws may become loose or fall off during use, resulting in toy instability or damage as mentioned in the above background technique. To achieve the above purpose, the utility model provides the following technical solution: A rotatable panda grinding toy device, including a doll, a fixing ring is arranged on one side of the doll, a flour mill is arranged below the fixing ring, and a lower plate is arranged below the flour mill;
[0006] A clamping block is welded on one side of the lower plate, a groove is connected to the upper part of the clamping block by mortise and tenon, a front plate is attached to the upper part of the lower plate, an inserting block is welded on one side of the front plate, a clamping groove is connected to the upper part of the inserting block by mortise and tenon, a left plate is welded on one side of the clamping groove, an inserting rod is attached to the upper part of the inserting block, a rear plate is connected to the upper part of the left plate by mortise and tenon, an upper plate is connected to the upper part of the rear plate by mortise and tenon, and a right plate is connected to the lower part of the upper plate by mortise and tenon.
[0007] Further preferably, a handle is welded above the surface grinder, a rotating shaft is inserted below the surface grinder, a bottom grinder is inserted below the rotating shaft, a support column is welded below the bottom grinder, a driven wheel is inserted below the bottom grinder, the driven wheel and the driving wheel are connected by a conveyor belt to form a transmission connection, a motor is inserted below the driving wheel, a fixing plate is attached below the motor, and the driving wheel forms a rotating structure through the motor, and the driven wheel forms a rotating structure through the conveyor belt.
[0008] Further preferably, the rotating shaft forms a rotating structure through the driven wheel, and the surface grinder forms a rotating structure through the rotating shaft.
[0009] Further preferably, the external structure size of the handle is consistent with the internal size of the fixing ring, a connecting rod is provided on one side of the doll, and is distributed on the two hind legs of the doll, and the hind legs of the doll are inserted into the holes of the right plate.
[0010] Further preferably, insertion blocks are provided at the four corners of the sides of the front plate and the rear plate, clamping grooves are provided at the four corners of the sides of the left plate and the right plate, and the internal size of the insertion block is consistent with the external structure size of the clamping groove.
[0011] Further preferably, a groove is provided behind the front plate, and grooves are provided at the four corners behind the front plate, and grooves are provided in front of the rear plate, and grooves are provided at the four corners in front of the rear plate, and clamping blocks are provided at the four corners of the upper plate and the lower plate, and the external structure sizes of the clamping blocks connected to the upper plate are respectively consistent with the internal structure sizes of the front plate and the rear plate, and the external structure sizes of the clamping blocks connected to the lower plate are respectively consistent with the internal structure sizes of the front plate and the rear plate.
[0012] Compared with the prior art, the beneficial effects of the present utility model are:
[0013] In the present utility model, the mortise and tenon connection can usually increase the contact area between the toy components, improve the connection stability and durability, make the toy more durable, and can withstand longer use and play. The tenon structure makes the toy assembly process simpler and more efficient, without additional tools or complex assembly processes, reducing production costs and improving production efficiency.
[0014] In the present utility model, the principle of real people grinding can be simulated by the panda grinding, enabling children to understand the grinding principle. Moreover, the cute panda doll can attract children's attention, increasing children's curiosity and interest. Dynamic toys often involve problem-solving or task-completion, which can help children cultivate logical thinking, spatial perception and problem-solving abilities. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] Figure 1 It is a front view structural schematic diagram of the present utility model;
[0016] Figure 2 This is a schematic side view structure of the present utility model;
[0017] Figure 3 This is a schematic structure diagram below the surface grinding of the present utility model;
[0018] Figure 4 This is a schematic structure diagram above the lower plate of the present utility model.
[0019] In the figure: 1, doll; 2, fixed ring; 3, surface grinder; 301, handle; 302, rotating shaft; 303, bottom grinder; 304, support column; 305, driven wheel; 306, conveyor belt; 307, motor; 308, fixed plate; 309, driving wheel; 4, lower plate; 401, upper plate; 402, right plate; 403, front plate; 404, clamping block; 405, groove; 406, clamping groove; 407, inserting block; 408, inserting rod; 409, rear plate; 410, left plate. Specific embodiments
[0020] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts belong to the scope of protection of the present utility model.
[0021] Please refer to Figures 1 to 4 , the present utility model provides a technical solution: a rotatable panda grinding toy device, including a doll 1, a fixed ring 2 is provided on one side of the doll 1, a surface grinder 3 is provided below the fixed ring 2, and a lower plate 4 is provided below the surface grinder 3;
[0022] A clamping block 404 is welded on one side of the lower plate 4, a groove 405 is connected to the upper part of the clamping block 404 by mortise and tenon, a front plate 403 is attached to the upper part of the lower plate 4, an inserting block 407 is welded on one side of the front plate 403, a clamping groove 406 is connected to the side of the inserting block 407 by mortise and tenon, a left plate 410 is welded on one side of the clamping groove 406, an inserting rod 408 is attached to the upper part of the inserting block 407, a rear plate 409 is connected to the side of the left plate 410 by mortise and tenon, an upper plate 401 is connected to the upper part of the rear plate 409 by mortise and tenon, and a right plate 402 is connected to the lower part of the upper plate 401 by mortise and tenon.
[0023] In this embodiment, as Figure 1 , Figure 2 and Figure 3As shown in the figure, a handle 301 is welded above the surface grinder 3, a rotating shaft 302 is inserted below the surface grinder 3, a bottom grinder 303 is inserted below the rotating shaft 302, a support column 304 is welded below the bottom grinder 303, a driven wheel 305 is inserted below the bottom grinder 303, and the driven wheel 305 and the driving wheel 309 are connected by a conveyor belt 306 to form a transmission connection. A motor 307 is inserted below the driving wheel 309, and a fixing plate 308 is attached below the motor 307. Moreover, the driving wheel 309 forms a rotating structure through the motor 307, and the driven wheel 305 forms a rotating structure through the conveyor belt 306. The movement of the toy can increase its interestingness. A dynamic educational toy is more attractive, which can stimulate children's interest and curiosity, making children more willing to participate in the game and learning process. By rotating the driving wheel 309 through the motor 307, the driven wheel 305 is rotated by the driving wheel 309 through the conveyor belt 306, and the driven wheel 305 rotates the rotating shaft 302, facilitating the driving of the surface grinder 3 to rotate, increasing children's ability to think, and the dynamic toy can make children participate more actively.
[0024] In this embodiment, as Figure 1 、 Figure 2 and Figure 3 shown, the rotating shaft 302 forms a rotating structure through the driven wheel 305, and the surface grinder 3 forms a rotating structure through the rotating shaft 302. The driven wheel 305 rotates the rotating shaft 302, and the rotating shaft 302 rotates the surface grinder 3. By rotating the surface grinder 3, it can give children more direct feedback and more interactive experiences, thereby increasing children's participation and immersion.
[0025] In this embodiment, as Figure 1 、 Figure 2 、 Figure 3 and Figure 4 shown, the external structural dimensions of the handle 301 are consistent with the internal dimensions of the fixing ring 2. One side of the doll 1 is provided with a connecting rod, which is distributed on the two hind legs of the doll 1, and the hind legs of the doll 1 are inserted into the holes of the right plate 402. The doll 1 is connected to the fixing ring 2 and sleeved on the handle 301. By driving the front limbs of the doll 1 to rotate through the surface grinder 3, the authenticity of manual grinding can be simulated, enabling children to understand the principle of grinding and stimulating children's intellectual development.
[0026] In this embodiment, as Figure 4As shown, insertion blocks 407 are provided at the four corners on the sides of the front plate 403 and the rear plate 409, and clamping grooves 406 are provided at the four corners on the sides of the left plate 410 and the right plate 402. Moreover, the internal dimensions of the insertion blocks 407 are consistent with the external structural dimensions of the clamping grooves 406. The mortise and tenon structure can usually improve the durability of the toy, while the non-mortise and tenon structure may cause the connection parts to be more easily damaged or worn, shortening the service life of the toy. The left insertion block A407 of the front plate 403 fits inside the clamping groove A406 on one side of the left plate 410. Through the insertion rod A408, it is inserted into the internal holes of the insertion block A407 and the clamping groove A406. The right insertion block B407 of the front plate 403 fits inside the clamping groove B406 on one side of the right plate 402. Through the insertion rod B408, it is inserted into the internal holes of the insertion block B407 and the clamping groove B406. The other clamping groove C406 of the left plate 410 fits inside the insertion block C407 on one side of the rear plate 409. Through the insertion rod C408, it is inserted into the internal holes of the insertion block C407 and the clamping groove C406. The other clamping groove D406 of the right plate 402 fits against the insertion block D407 on the other side of the rear plate 409. Through the insertion rod D408, it is inserted into the internal holes of the insertion block D407 and the clamping groove D406, forming support on all four sides. The mortise and tenon connection can usually increase the contact area between the toy components, improve the stability and durability of the connection, making the toy more durable and able to withstand longer use and play.
[0027] In this embodiment, as Figure 1 and Figure 4 shown, a groove 405 is provided behind the front plate 403, and grooves 405 are provided at the four corners behind the front plate 403. In addition, a groove 405 is provided in front of the rear plate 409, and grooves 405 are provided at the four corners in front of the rear plate 409. Moreover, clamping blocks 404 are provided at the four corners of the upper plate 401 and the lower plate 4. And the external structural dimensions of the clamping blocks 404 connected to the upper plate 401 are respectively consistent with the internal structural dimensions of the front plate 403 and the rear plate 409. Also, the external structural dimensions of the clamping blocks 404 connected to the lower plate 4 are respectively consistent with the internal structural dimensions of the front plate 403 and the rear plate 409. The non-mortise and tenon connection may increase the assembly complexity of the toy, making the assembly process more difficult and time-consuming, affecting the production efficiency and cost of the toy. The clamping blocks 404 at the four corners of the upper plate 401 are snapped into the grooves 405 of the front plate 403 and the rear plate 409. The mortise and tenon structure makes the assembly process of the toy simpler and more efficient, without the need for additional tools or complex assembly processes, reducing the production cost and improving the production efficiency.
[0028] The usage method and advantages of the present utility model: For this rotatable panda grinding toy device, during use, the working process is as follows:
[0029] As Figure 1 、 Figure 2 、 Figure 3 and Figure 4As shown in the figure, first, the left insertion block A407 of the front plate 403 fits inside the slot A406 on one side of the left plate 410. The insertion rod A408 is inserted into the internal holes of the insertion block A407 and the slot A406. The right insertion block B407 of the front plate 403 fits inside the slot B406 on one side of the right plate 402. The insertion rod B408 is inserted into the internal holes of the insertion block B407 and the slot B406. The slot C406 on the other side of the left plate 410 fits inside the insertion block C407 on one side of the rear plate 409. The insertion rod C408 is inserted into the internal holes of the insertion block C407 and the slot C406. The slot D406 on the other side of the right plate 402 fits against the insertion block D407 on the other side of the rear plate 409. The insertion rod D408 is inserted into the internal holes of the insertion block D407 and the slot D406. The four corner blocks 404 of the upper plate 401 are snapped into the grooves 405 of the front plate 403 and the rear plate 409 to achieve stable support at the bottom. The motor 307 drives the driving wheel 309 to rotate clockwise. The driving wheel 309 and the driven wheel 305 rotate through the conveyor belt 306. The driven wheel 305 drives the rotating shaft 302, the surface grinder 3, the handle 301, the fixing ring 2, and one front limb of the doll 1 in sequence to rotate, realizing the function of the doll 1 turning the handle 301, simulating a real person grinding wheat, and enhancing children's learning ability. The bottom grinder 303 is vertically inserted into the hole of the upper plate 401 through the support column 304 to achieve the function of stably fixing the surface grinder 3.
[0030] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art of this industry should understand that the present invention is not limited by the above embodiments. The above embodiments and the descriptions in the specification are only preferred examples of the present invention and are not used to limit the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of protection claimed by the present invention is defined by the appended claims and their equivalents.
Claims
1. A rotatable panda mill toy device, comprising a doll (1), characterized in that: A fixing ring (2) is provided on one side of the doll (1), a surface grinder (3) is provided below the fixing ring (2), and a lower plate (4) is provided below the surface grinder (3); A clamping block (404) is welded to one side of the lower plate (4), and a groove (405) is connected to the upper side of the clamping block (404) by mortise and tenon joints. A front plate (403) is attached to the upper side of the lower plate (4), an inserting block (407) is welded to one side of the front plate (403), and a clamping groove (406) is connected to one side of the inserting block (407) by mortise and tenon joints. A left plate (410) is welded to one side of the clamping groove (406), and an inserting rod (408) is attached to the upper side of the inserting block (407). A rear plate (409) is connected to the upper plate (401) by mortise and tenon joints. The upper side of the rear plate (409) is connected to the upper plate (401) by mortise and tenon joints. The lower side of the upper plate (401) is connected to the right plate (402) by mortise and tenon joints.
2. The rotatable panda mill toy device according to claim 1, characterized in that: A handle (301) is welded on the top of the surface grinder (3), a rotating shaft (302) is inserted on the bottom of the surface grinder (3), a bottom grinder (303) is inserted on the bottom of the rotating shaft (302), a pillar (304) is welded on the bottom of the bottom grinder (303), a driven wheel (305) is inserted on the bottom of the bottom grinder (303), the driven wheel (305) and the driving wheel (309) are connected to each other through a transmission belt (306), a motor (307) is inserted on the bottom of the driving wheel (309), a fixing plate (308) is attached on the bottom of the motor (307), the driving wheel (309) forms a rotating structure through the motor (307), and the driven wheel (305) forms a rotating structure through the transmission belt (306).
3. The rotatable panda mill toy device according to claim 2, characterized in that: The rotating shaft (302) forms a rotating structure through the driven wheel (305), and the surface grinder (3) forms a rotating structure through the rotating shaft (302).
4. The rotatable panda mill toy device according to claim 2, characterized in that: The external structural dimensions of the handle (301) are consistent with the internal dimensions of the fixing ring (2), and a connecting rod is provided on one side of the doll (1) and distributed on two hind limbs of the doll (1), and the hind limbs of the doll (1) are inserted into the holes of the right plate (402).
5. The rotatable panda mill toy device according to claim 1, characterized in that: The four corners of the sides of the front plate (403) and the rear plate (409) are each provided with an insert block (407), and the four corners of the sides of the left plate (410) and the right plate (402) are each provided with a card slot (406), and the internal dimensions of the insert block (407) are consistent with the external structural dimensions of the card slot (406).
6. The rotatable panda mill toy device according to claim 1, characterized in that: A groove (405) is provided at the rear of the front plate (403), and grooves (405) are provided at the four rear corners of the front plate (403), and a groove (405) is provided at the front of the rear plate (409), and grooves (405) are provided at the four front corners of the rear plate (409), and blocks (404) are provided at the four corners of the upper plate (401) and the lower plate (4), and the external structural dimensions of the blocks (404) connected to the upper plate (401) are respectively consistent with the internal structural dimensions of the front plate (403) and the rear plate (409), and the external structural dimensions of the blocks (404) connected to the lower plate (4) are respectively consistent with the internal structural dimensions of the front plate (403) and the rear plate (409).