A book-reading simulation toy movement

By combining dual motors and multi-stage gear transmission, the problem of multi-action coordinated simulation in reading simulation toys has been solved, achieving realistic hand and mouth movements and improving the toy's fun and lifespan.

CN224358003UActive Publication Date: 2026-06-16JIANGXI JIAMING TECH ELECTRONICS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
JIANGXI JIAMING TECH ELECTRONICS CO LTD
Filing Date
2025-06-07
Publication Date
2026-06-16

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Abstract

The utility model belongs to the technical field of toys, concretely points to a kind of reading simulation toy movement, including base, the base is composed of body front shell and body rear shell, lifting hand gear pressure box is provided on the base, lifting hand gear set and driving motor two are installed in the lifting hand gear pressure box, driving motor two are connected with lifting hand gear set transmission, rotating shaft is rotatably arranged on the opposite side wall of lifting hand gear pressure box, arm is connected on the rotating shaft, lifting hand gear set is connected with rotating shaft transmission, dynamic mouth gear box is provided on the lifting hand gear pressure box, dynamic mouth gear set and driving motor one are installed in the dynamic mouth gear box, driving motor one is connected with dynamic mouth gear set transmission, upper mouth piece and lower mouth piece are installed on the dynamic mouth gear box;Adopt double-motor combination, realize the posture of simulation person's both hands holding book, realize the mouth action of simulation person reading, make the action of hand and mouth more flexible and changeable, show more realistic visual effect.
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Description

Technical Field

[0001] This utility model belongs to the field of toy technology, specifically referring to a reading simulation toy mechanism. Background Technology

[0002] Most reading simulation toys on the market currently only have single-action functions, lacking vividness and realism. For example, simple arm swings or mouth opening and closing are insufficient to simulate a multi-action reading scenario. Even those toys that do possess multi-action capabilities often have complex internal transmission structures, resulting in bulky toys, high costs, low transmission efficiency, poor stability, and susceptibility to malfunctions. Therefore, there is an urgent need for a compact, efficient, multifunctional, and easy-to-operate reading simulation toy mechanism. Utility Model Content

[0003] To solve the above problems, this utility model provides a reading simulation toy mechanism, which adopts a dual-motor combination. The motors are controlled by a program to realize the posture of a human holding a book with both hands, and the mouth is controlled by a program to realize the mouth movements of a human reading, making the hand and mouth movements more flexible and varied, and showing a more realistic visual effect.

[0004] To achieve the above functions, the technical solution adopted by this utility model is as follows: A reading simulation toy mechanism includes a base, which is composed of a front shell and a rear shell. A lifting gear pressure box is provided on the base. A lifting gear set and a second drive motor are installed in the lifting gear pressure box. The second drive motor is driven by the lifting gear set. A rotating shaft is rotatably provided on the opposite side walls of the lifting gear pressure box. An arm is connected to the rotating shaft. The lifting gear set is driven by the rotating shaft. A moving mouth gear box is provided on the lifting gear pressure box. A moving mouth gear set and a first drive motor are installed in the moving mouth gear box. The first drive motor is driven by the moving mouth gear set. An upper mouth plate and a lower mouth plate are installed on the moving mouth gear box. The upper mouth plate and the lower mouth plate are correspondingly arranged. The moving mouth gear set is driven by the lower mouth plate.

[0005] As a preferred technical solution of this utility model, the moving nozzle gear set includes a driving gear one, a driven large gear one, a driven small gear one, a driven large gear two, a driven small gear two, a driven large gear three, a driven small gear three, and a connecting gear one. The driving gear one is coaxially connected to the output end of the driving motor one. The driven large gear one and the driven small gear one are coaxially connected and meshed with the driving gear one. The driven large gear two and the driven small gear two are coaxially connected and meshed with the driven small gear one. The driven large gear three and the driven small gear three are meshed with the driven small gear two. The connecting gear one and the driven small gear three are meshed. The rotation shaft of the connecting gear one passes through the side wall of the moving nozzle gear box and is connected to the lower nozzle plate.

[0006] As a preferred technical solution of this utility model, the lifting gear set includes a driving gear two, a driven large gear four, a driven small gear four, a driven large gear five, a driven small gear five, a driven large gear six, a driven small gear six, and a connecting gear two. The driving gear two is coaxially connected to the output end of the driving motor two. The driven large gear four and the driven small gear four are coaxially connected and mesh with the driving gear two. The driven large gear five and the driven small gear five are coaxially connected and mesh with the driven small gear four. The driven large gear six and the driven small gear six, the driven large gear six and the driven small gear five are meshed. The connecting gear two meshes with the driven small gear six. The rotating shaft of the connecting gear two passes through the side wall of the lifting gear pressure box and is connected to two sets of rotating shafts.

[0007] As a preferred technical solution of this utility model, the lower mouth piece is connected to the moving mouth gearbox via a fixed support arm, the fixed support arm is connected to the rotating shaft of the first connecting gear, and a torsion spring is wound on the connecting shaft of the fixed support arm and the first connecting gear, the torsion spring providing the torque for closing the lower mouth piece.

[0008] As a preferred embodiment of this utility model, a power supply and an SOB motherboard are installed on the inner bottom wall of the base. The SOB motherboard is electrically connected to the power supply and is provided with a charging interface and a switch.

[0009] As a preferred technical solution of this utility model, the SOB motherboard is signal-connected to drive motor one and drive motor two.

[0010] Compared with the prior art, the present invention achieves the following beneficial effects by adopting the above structure:

[0011] 1. Through independently set hand-raising gear set and mouth-moving gear set, driven by drive motor one and drive motor two respectively, the movement of arm swinging up and down and mouth opening and closing can be simulated, highly restoring the movement form when reading, greatly enhancing the fun and simulation of the toy.

[0012] 2. Both the moving mouth gear set and the lifting hand gear set adopt multi-stage gear transmission. The moving mouth gear set is driven by multiple gears such as the first driving gear, the first driven large gear, and the first driven small gear, which can accurately amplify the power, ensure stable and smooth operation, reduce jamming, and extend the service life of the toy.

[0013] 3. The lifting gear assembly and the moving mouth gear assembly are arranged in layers. The moving mouth gear box is set on the lifting gear pressure box. The space is used reasonably, making the overall structure of the mechanism compact. While reducing the size of the toy, it is convenient for production and assembly and reduces production costs. Attached Figure Description

[0014] Figure 1 This is a schematic diagram of the overall structure of a reading simulation toy mechanism proposed in this utility model;

[0015] Figure 2 This is a partial exploded view of the mechanism of a reading simulation toy proposed in this utility model;

[0016] Figure 3 An exploded view of the mechanism of a reading simulation toy proposed in this utility model;

[0017] Figure 4 This is a schematic diagram of the moving gear assembly of the reading simulation toy mechanism proposed in this utility model;

[0018] Figure 5 This is a schematic diagram of the lifting gear assembly of a reading simulation toy mechanism proposed in this utility model.

[0019] The components include: 1. Base; 11. Front shell; 12. Rear shell; 13. Power supply; 14. SOB motherboard; 15. Charging port; 16. Switch; 2. Hand-raising gear pressure box; 21. Hand-raising gear assembly; 211. Drive gear two; 212. Driven large gear four; 213. Driven small gear four; 214. Driven large gear five; 215. Driven small gear five; 216. Driven large gear six; 217. Driven small gear six; 218. Linkage gear. 22. Drive motor 2, 23. Rotating shaft, 231. Arm, 24. Torsion spring, 3. Moving mouth gearbox, 31. Moving mouth gear set, 311. Drive gear 1, 312. Driven large gear 1, 313. Driven small gear 1, 314. Driven large gear 2, 315. Driven small gear 2, 316. Driven large gear 3, 317. Driven small gear 3, 318. Linking gear 1, 32. Drive motor 1, 33. Upper mouth plate, 34. Lower mouth plate. Detailed Implementation

[0020] The technical solution of this utility model will now be clearly and completely described with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this utility model. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0021] In the description of this utility model, it should be noted that the terms "center," "upper," "lower," "left," "right," "vertical," "horizontal," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The utility model will be further described in detail below with reference to the accompanying drawings.

[0022] like Figures 1-5 As shown, the present invention provides a reading simulation toy mechanism, including a base 1, which consists of a front shell 11 and a rear shell 12. A power supply 13 and an SOB main board 14 are installed on the inner bottom wall of the base 1. The SOB main board 14 is electrically connected to the power supply 13. The SOB main board 14 is equipped with a charging interface 15 and a switch 16. A lifting gear pressure box 2 is provided on the base 1. A lifting gear assembly 21 and a second drive motor 22 are installed inside the lifting gear pressure box 2. The second drive motor 22 is connected to the lifting gear assembly 21 and provides power to the lifting gear assembly 21. Rotating shafts 23 are rotatably mounted on opposite side walls of the lifting gear pressure box 2. Arms 231 are connected to the rotating shafts 23. The lifting gear assembly 21 and... The rotating shaft 23 is connected to the transmission, and the lifting gear set 21 controls the up and down swing of the rotating shaft 23 to simulate the up and down swing of the arm 231. The lifting gear pressure box 2 is equipped with a moving mouth gear box 3, which contains a moving mouth gear set 31 and a drive motor 32. The drive motor 32 is connected to the moving mouth gear set 31. The SOB main board 14 is connected to the drive motor 32 and the drive motor 22. The drive motor 32 provides power to the moving mouth gear set 31. The moving mouth gear box 3 is equipped with an upper mouth plate 33 and a lower mouth plate 34, which are set correspondingly. The moving mouth gear set 31 is connected to the lower mouth plate 34, and the lower mouth plate 34 is controlled to swing up and down by the transmission of the moving mouth gear set 31 to simulate speaking.

[0023] The moving gear set 31 includes a drive gear 311, a driven large gear 312, a driven small gear 313, a driven large gear 314, a driven small gear 315, a driven large gear 316, a driven small gear 317, and a connecting gear 318. The drive gear 311 is coaxially connected to the output end of the drive motor 32. The driven large gear 312 is coaxially connected to the driven small gear 313. The driven large gear 312 is connected to the drive gear 318. 11. The driven large gear 2 314 and driven small gear 2 315 are coaxially connected. The driven large gear 2 314 is meshed with the driven small gear 1 313. The driven large gear 3 316 and driven small gear 3 317 are meshed. The driven large gear 3 316 is meshed with the driven small gear 2 315. The connecting gear 1 318 is meshed with the driven small gear 3 317. The rotating shaft of the connecting gear 1 318 passes through the side wall of the moving nozzle gearbox 3 and is connected to the lower nozzle plate 34.

[0024] The lifting gear assembly 21 includes a second drive gear 211, a fourth driven large gear 212, a fourth driven small gear 213, a fifth driven large gear 214, a fifth driven small gear 215, a sixth driven large gear 216, a sixth driven small gear 217, and a second connecting gear 218. The second drive gear 211 is coaxially connected to the output end of the second drive motor 22. The fourth driven large gear 212 is coaxially connected to the fourth driven small gear 213. The fourth driven large gear 212 is connected to the second drive gear 218. 1. The driven large gear 5 214 and driven small gear 5 215 are coaxially connected. The driven large gear 5 214 is meshed with the driven small gear 4 213. The driven large gear 6 216 and driven small gear 6 217 are meshed. The driven large gear 6 216 is meshed with the driven small gear 5 215. The connecting gear 2 218 is meshed with the driven small gear 6 217. The rotating shaft of the connecting gear 2 218 passes through the side wall of the lifting gear pressure box 2 and is connected to two sets of rotating shafts 23.

[0025] The lower mouth piece 34 is connected to the moving mouth gearbox 3 via a fixed support arm. The fixed support arm is connected to the rotating shaft of the connecting gear 318. A torsion spring 24 is wound on the connecting shaft between the fixed support arm and the connecting gear 318. The torsion spring 24 provides the torque for closing the lower mouth piece 34.

[0026] In actual use, use the charging cable to connect to the charging interface 15 on the SOB motherboard to charge the power supply 13. After charging is complete, turn on the toy through the switch 16. At this time, the SOB motherboard starts to work and supplies power to drive motor 1 32 and drive motor 22. Drive motor 22 starts and the output end of drive motor 22 drives drive gear 211 to rotate. Drive gear 211 meshes with driven large gear 4 212 and transmits power to driven large gear 4 212. Since driven large gear 4 212 is coaxially connected with driven small gear 4 213, driven small gear 4 213 rotates accordingly. After passing through multiple gear transmissions, the drive gear 218 finally obtains power. The rotating shaft of drive gear 218 drives the rotating shaft 23 to swing up and down, realizing the up and down swinging action of the arm 231, simulating the action of turning pages or raising the hand when reading.

[0027] When the drive motor 32 is started, its output drives the drive gear 311 to rotate. The drive gear 311 meshes with the driven large gear 312, and the power is transmitted sequentially to the driven large gear 312, the driven small gear 313, the driven large gear 314, the driven small gear 315, the driven large gear 316, the driven small gear 317, and finally to the connecting gear 318. The rotating shaft of the connecting gear 318 drives the lower mouth piece 34 to swing up and down, cooperating with the fixed upper mouth piece 33 to simulate the opening and closing of the mouth when speaking. After use, the toy is turned off by the switch 16.

[0028] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.

Claims

1. A reading simulation toy mechanism, comprising a base (1), said base (1) being composed of a front shell (11) and a rear shell (12), characterized in that: A lifting gear pressure box (2) is provided on the base (1). A lifting gear set (21) and a second drive motor (22) are installed inside the lifting gear pressure box (2). The second drive motor (22) is connected to the lifting gear set (21) in a transmission connection. A rotating shaft (23) is rotatably provided on the opposite side walls of the lifting gear pressure box (2). An arm (231) is connected to the rotating shaft (23). The lifting gear set (21) is connected to the rotating shaft (23) in a transmission connection. A moving mouth gearbox (3) is provided on the hand gear press box (2). A moving mouth gear set (31) and a drive motor (32) are installed in the moving mouth gearbox (3). The drive motor (32) is connected to the moving mouth gear set (31) in a transmission. An upper mouth plate (33) and a lower mouth plate (34) are installed on the moving mouth gearbox (3). The upper mouth plate (33) and the lower mouth plate (34) are arranged correspondingly. The moving mouth gear set (31) and the lower mouth plate (34) are connected in a transmission.

2. The reading simulation toy mechanism according to claim 1, characterized in that: The moving gear set (31) includes a drive gear one (311), a driven large gear one (312), a driven small gear one (313), a driven large gear two (314), a driven small gear two (315), a driven large gear three (316), a driven small gear three (317), and a connecting gear one (318). The drive gear one (311) is coaxially connected to the output end of the drive motor one (32). The driven large gear one (312) is coaxially connected to the driven small gear one (313). The driven large gear one (312) is coaxially connected to the drive gear one (318). 1) Meshing configuration: the driven large gear 2 (314) and driven small gear 2 (315) are coaxially connected. The driven large gear 2 (314) is meshed with the driven small gear 1 (313). The driven large gear 3 (316) and driven small gear 3 (317) are meshed. The driven large gear 3 (316) is meshed with the driven small gear 2 (315). The connecting gear 1 (318) is meshed with the driven small gear 3 (317). The rotating shaft of the connecting gear 1 (318) passes through the side wall of the moving mouth gearbox (3) and is connected to the lower mouth plate (34).

3. The reading simulation toy mechanism according to claim 1, characterized in that: The lifting gear set (21) includes a driving gear two (211), a driven large gear four (212), a driven small gear four (213), a driven large gear five (214), a driven small gear five (215), a driven large gear six (216), a driven small gear six (217), and a connecting gear two (218). The driving gear two (211) is coaxially connected to the output end of the driving motor two (22). The driven large gear four (212) is coaxially connected to the driven small gear four (213). The driven large gear four (212) is connected to the driving gear two (211). The driven large gear five (214) and driven small gear five (215) are coaxially connected. The driven large gear five (214) is meshed with the driven small gear four (213). The driven large gear six (216) and driven small gear six (217) are meshed. The driven large gear six (216) is meshed with the driven small gear five (215). The connecting gear two (218) is meshed with the driven small gear six (217). The rotating shaft of the connecting gear two (218) passes through the side wall of the lifting gear pressure box (2) and is connected to two sets of rotating shafts (23).

4. The reading simulation toy mechanism according to claim 1, characterized in that: A power supply (13) and an SOB motherboard (14) are installed on the inner bottom wall of the base (1). The SOB motherboard (14) is electrically connected to the power supply (13). The SOB motherboard (14) is provided with a charging interface (15) and a switch (16).

5. The reading simulation toy mechanism according to claim 4, characterized in that: The SOB motherboard (14) is connected to drive motor one (32) and drive motor two (22) via signals.