Turnover toy machine core and turnover chimpanzee

By using a motor to drive the arm to rotate and combining voice control and sound effects, the problem of insufficient fun and durability of existing flip toys has been solved, realizing a flip toy mechanism and a flipping gorilla with realistic somersault movements and diverse interactive effects.

CN224099990UActive Publication Date: 2026-04-10HUAXIN ELECTRONIC TECH (JIANGSU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUAXIN ELECTRONIC TECH (JIANGSU) CO LTD
Filing Date
2025-04-23
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Most existing flipping toys are driven by wind-up or magnetism, which makes them less fun and less durable, and cannot meet children's need for long-term play.

Method used

The arm is driven by a motor to rotate and stops when it touches the ground. The body flips to realistically simulate a somersault. It combines voice control and speakers to emit different sounds, and the motor can be controlled to rotate forward and backward via limit switches to achieve various movements.

Benefits of technology

It enhances the fun and durability of flip toys, realistically simulating somersaults through motor-driven flipping motions, and combines voice and sound control to enhance interactivity and entertainment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of toys, and particularly discloses a turnover toy machine core and a turnover chimpanzee, the turnover toy machine core comprises a machine body, the two sides of the machine body are rotatably connected with arms, and the bottom ends of the arms are lower than the bottom end of the machine body when the arms are in a drooping state; a reduction gearbox is connected in the machine body, the motor is in drive connection with the reduction gearbox, the reduction gearbox is in drive connection with a square shaft, and two ends of the square shaft are connected with two rocking seats. One end of each rocking seat extends to the outer side of the machine body, and the arms are connected to the outer side ends of the two rocking seats respectively; a power box, a power switch and a circuit board are connected to the machine body, the motor is electrically connected to the circuit board, and the power switch is electrically connected with the power box and the circuit board. Compared with the prior art, the robot has the advantages that the arm rotating rod is driven by the motor, when the arm is in contact with the ground, the robot body is turned over to vividly simulate the tumbling action, and the interestingness and durability are good.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a toy technical field especially turn over toy machine core and turn over big gorilla. BACKGROUND

[0002] Toys are popular entertainment items that are enjoyed by children and adults alike, and they bring happiness and imagination to children. There are various toys on the market, including puzzles, dolls, model cars, construction sets, board games or card games. Electric toys are a kind of motorized toys driven by a miniature motor, most of which use batteries as energy power, also known as battery toys. Electric toys can be played without effort, and at the same time help to develop children's fine motor skills, spatial awareness and physical ability. At the same time, some electric toys can be used for educational purposes to help children develop more extensive skills.

[0003] Most of the existing turn over toys on the market are driven by a spring or magnetic force, and have poor interest and durability. Therefore, an electric turn over toy mechanism is needed. SUMMARY

[0004] The utility model aims at providing a turn over toy mechanism and a turn over big gorilla, which is driven by a motor to rotate the arm rod, stops when the arm contacts the ground, and turns over the body to realistically simulate the action of somersaulting, has good interest and durability, and solves the problems in the above background technology.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme:

[0006] A turn over toy mechanism, comprising a body, arms rotatably connected to both sides of the body, and in a hanging state, the bottom end of the arm is lower than the bottom end of the body; a reduction box is connected in the body, a motor is drivingly connected to the reduction box, the reduction box is drivingly connected to a square shaft, and two rocking seats are connected to both ends of the square shaft; one end of the rocking seat extends to the outside of the body, and the arms are respectively connected to the outside ends of the two rocking seats; a power box, a power switch and a circuit board are connected to the body, the motor is electrically connected to the circuit board, and the power switch is electrically connected to the power box and the circuit board.

[0007] A further scheme of the utility model is that the motor is connected to the reduction box, the first gear, the second gear, the third gear and the fourth gear are rotatably connected in the reduction box; a driven pulley is connected to the power output shaft of the motor, a driving pulley is connected to the power output shaft of the motor, a belt is drivingly connected between the driving pulley and the driven pulley, and the fourth gear is connected to the square shaft.

[0008] A further scheme of the utility model is that the bottom end of the body is connected to a bottom plate, the power box and the power switch are connected to the bottom part in the body, and the power box and the power switch are exposed on the bottom plate.

[0009] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0010] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0011] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0012] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0013] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0014] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0015] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0016] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0017] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0018] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0019] The further scheme of the utility model is that the rotating disc is connected to the body through fastener A.

[0020] The utility model discloses a turnover toy machine core and turnover gorilla, and the rocking seat is equipped with a protrusion, and the outside of the reduction gearbox is connected with a travel switch, the positive and negative rotation of the motor can be controlled, so that the front and back somersaults are realized, and the interesting is better.

[0021] The utility model discloses a turnover toy machine core and turnover gorilla, and the outside of the turnover toy machine core is sleeved with the gorilla-shaped cover, and the interesting is further improved. DRAWINGS

[0022] Figure 1 It is external structure schematic diagram of the utility model turnover toy machine core.

[0023] Figure 2 It is external structure schematic diagram of the utility model turnover toy machine core.

[0024] Figure 3 It is internal structure schematic diagram of the utility model turnover toy machine core.

[0025] Figure 4 It is internal structure schematic diagram of the utility model turnover toy machine core.

[0026] Figure 5 It is local structure schematic diagram of the utility model turnover toy machine core.

[0027] Figure 6 It is internal structure schematic diagram of the utility model turnover toy machine core reduction gearbox.

[0028] Figure 7 It is travel switch installation schematic diagram of the utility model turnover toy machine core.

[0029] Figure 8 It is square shaft and rocking seat connection schematic diagram of the utility model turnover toy machine core.

[0030] Figure 9 It is whole structure schematic diagram of the utility model turnover gorilla.

[0031] Figure 10 It is hand installation schematic diagram of the utility model turnover gorilla.

[0032] Figure 11 It is body structure schematic diagram of the utility model turnover gorilla.

[0033] Figure 12 It is arm structure schematic diagram of the utility model turnover gorilla.

[0034] Figure 13 It is hand structure schematic diagram of the utility model turnover gorilla.

[0035] In the figure: 1-body, 2-arm, 201-supporting disc, 202-inserting rod, 3-reduction box, 301-first gear, 302-second gear, 303-third gear, 304-fourth gear, 4-motor, 5-square shaft, 6-oscillating seat, 602-boss, 7-power supply box, 8-power switch, 9-circuit board, 10-driven pulley, 11-driving pulley, 12-rotating disc, 13-bottom plate, 14-fixing disc, 15-stop disc, 16-microphone, 17-loudspeaker, 18-travel switch, 19-body part, 20-arm part, 21-hand part, 22-head part, 23-lower limb part, 24-connection hole A, 25-connection hole B. DETAILED DESCRIPTION

[0036] The utility model is further illustrated below in combination with the drawings and specific embodiments.

[0037] Embodiment 1: as shown in the figure, a turnover toy core, including body 1, body 1 both sides are rotationally connected with arm 2, and arm 2 is in the state of drooping, the bottom end of arm 2 is lower than the bottom end of body 1, body 1 is connected with reduction box 3, motor 4 is driven to be connected in reduction box 3, reduction box 3 is driven to be connected in square shaft 5, and both ends of square shaft 5 are connected with two oscillating seats 6. Figures 1-8 Motor 4 is connected on reduction box 3, and first gear 301, second gear 302, third gear 303 and fourth gear 304 that are sequentially engaged are rotationally connected in reduction box 3, the power output shaft of motor 4 is connected with driven pulley 10, the power output shaft of motor 4 is connected with driving pulley 11, and driving pulley 11 and driven pulley 10 are transmissionally connected with a belt, and fourth gear 304 is connected on square shaft 5.

[0038] The bottom end of body 1 is connected with bottom plate 13, power supply box 7 and power switch 8 are connected in the bottom of body 1, and power supply box 7 and power switch 8 are exposed on bottom plate 13.

[0039] Oscillating seat 6 is connected with rotating disc 12, and rotating disc 12 is rotationally connected to body 1, the outside of rotating disc 12 is connected with fixing disc 14 through fastener A, and fixing disc 14 is located on the outside of body 1.

[0040] The outside end of oscillating seat 6 is inserted with stop disc 15, and a gap is left between stop disc 15 and fixing disc 14, the supporting disc 201 of the root of arm 2 is buckled on the outside end of oscillating seat 6, and supporting disc 201 is connected to stop disc 15 through fastener B.

[0041] The bottom end of body 1 is connected with bottom plate 13, power supply box 7 and power switch 8 are connected in the bottom of body 1, and power supply box 7 and power switch 8 are exposed on bottom plate 13.

[0042] The main body 1 houses a microphone 16 and a speaker 17, which are electrically connected to a circuit board 9. The microphone 16 is a sound-to-electrical converter; its pins are connected to the circuit board 9 via wires. The microphone 16 can receive commands from children such as "hello" or "stop," converting the signals and transmitting them to the circuit board 9. The controller on the circuit board 9 then sends corresponding action commands to the motor 4, enabling voice control and further enhancing the fun.

[0043] The rocker arm 6 has a protrusion 602, and a limit switch 18 is connected to the outside of the gearbox 3. The protrusion 602 can contact the contacts of the limit switch 18.

[0044] The specific working principle of this embodiment is as follows:

[0045] When in operation, turn on the power switch 8. The motor 4 rotates forward, driving the gears in the gearbox to rotate. The square shaft 5 drives the rocker 6 to rotate, and the rocker 6 drives the arm 2 to rotate. When the arm 2 contacts the ground, it stops. The machine body 1 flips to realistically simulate the action of somersaulting, which is more fun and has better endurance. When the protrusion 602 touches the contact of the limit switch 18, the motor 4 flips, and the machine body 1 flips in the opposite direction to somersault.

[0046] Example 2: As Figures 1-13 As shown, this embodiment discloses a flipping gorilla, including the flipping toy mechanism of Embodiment 1, with a gorilla-shaped silicone outer cover on the outside of the flipping toy mechanism.

[0047] The outer casing includes a body 19, an arm 20, and a hand 21. The body 19 is fitted onto the outside of the fuselage 1. The top of the body 19 has an integrally formed head 22, and the bottom of the body 19 has an integrally formed lower limb 23. Several connecting holes A24 are provided on the upper sides of the body 19, and the fasteners A between the fixed plate 14 and the turntable 12 pass through the connecting holes A24. The arm 20 is fitted onto the outside of the arm 2. The top of the arm 20 has a connecting hole B25, and the fasteners B between the support plate 201 and the baffle plate 15 pass through the connecting hole B25. The hand 21 is clenched into a fist shape, so that it can make better contact with the ground. The bottom of the arm 2 is connected to a plug rod 202, and the hand 21 is engaged with the plug rod 202 by a plug sleeve.

[0048] Apart from the above, this embodiment is exactly the same as Embodiment 1, and will not be described again here.

[0049] The above embodiments are only for illustrating the technical concept and features of this utility model, and are intended to enable those skilled in the art to understand the content of this utility model and implement it accordingly. They should not be construed as limiting the scope of protection of this utility model. All equivalent transformations or modifications made in accordance with the spirit and essence of this utility model should be included within the scope of protection of this utility model.

Claims

1. A flip toy movement, characterized by: The utility model provides a kind of flip toy, including fuselage (1), the bottom end of arm (2) is lower than the bottom end of fuselage (1) in the state of drooping, and arm (2) is rotatably connected with both sides of fuselage (1);The motor (4) is drivenly connected to the reduction gearbox (3) connected in the fuselage (1), and the reduction gearbox (3) is drivenly connected to the square shaft (5), and the both ends of square shaft (5) are connected with two rocking seats (6);One end of rocking seat (6) extends to the outside of fuselage (1), and arm (2) is respectively connected to the outside end of two rocking seats (6);The power box (7), power switch (8) and circuit board (9) are connected on the fuselage (1), and the motor (4) is electrically connected to the circuit board (9), and the power switch (8) is electrically connected with the power box (7) and the circuit board (9).

2. The flip toy movement as defined in claim 1, wherein: The motor (4) is connected to the reduction gearbox (3), and the first gear (301), the second gear (302), the third gear (303) and the fourth gear (304) are rotatably connected in the reduction gearbox (3) in sequence;The power output shaft of motor (4) is connected with driven pulley (10), and the power output shaft of motor (4) is connected with driving pulley (11), and the driving pulley (11) and the driven pulley (10) are transmissionally connected with belt, and the fourth gear (304) is connected to the square shaft (5).

3. A flip-over toy movement as claimed in claim 1 or 2, characterized in that: The bottom end of the fuselage (1) is connected with the bottom plate (13), and the power box (7) and the power switch (8) are connected to the inner bottom of the fuselage (1), and the power box (7) and the power switch (8) are exposed to the bottom plate (13).

4. The flip toy movement as defined in claim 1, wherein: The rocking seat (6) is connected with the rotating disc (12), and the rotating disc (12) is rotatably connected to the fuselage (1);The outside of the rotating disc (12) is connected with the fixed disc (14) through fastener A, and the fixed disc (14) is located outside the fuselage (1).

5. The flip toy movement as defined in claim 4, wherein: The outside end of the rocking seat (6) is inserted with the baffle disc (15), and the baffle disc (15) and the fixed disc (14) have a gap therebetween;The support disc (201) at the root of the arm (2) is clamped to the outside end of the rocking seat (6) through buckle, and the support disc (201) is connected to the baffle disc (15) through fastener B.

6. The flip toy movement as defined in claim 1, wherein: The microphone (16) and the loudspeaker (17) are connected in the fuselage (1), and the microphone (16) and the loudspeaker (17) are electrically connected to the circuit board (9).

7. The flip toy movement as defined in claim 1, wherein: The rocking seat (6) is provided with the protrusion (602), and the outside of the reduction gearbox (3) is connected with the travel switch (18), and the protrusion (602) can contact the contact of the travel switch (18).

8. A flip gorilla, characterized by: The utility model provides a kind of flip toy, including the core of the flip toy as claimed in any one of claims 1-7, and the outside of the core of the flip toy is sleeved with the outer sleeve of big gorilla shape.

9. The inverted gorilla of claim 8, wherein: The outer cover comprises a body part (19), an arm part (20) and a hand part (21); the body part (19) is sleeved outside the fuselage (1), the top end of the body part (19) is provided with a head part (22) formed integrally, and the bottom end of the body part (19) is provided with a lower limb (23) formed integrally; a plurality of connecting holes A (24) are arranged on the two sides of the upper portion of the body part (19), and the fasteners A between the fixing disc (14) and the rotating disc (12) pass through the connecting holes A (24); the arm part (20) is sleeved outside the arm (2), the top end of the arm part (20) is provided with a connecting hole B (25), and the fasteners B between the supporting disc (201) and the blocking disc (15) pass through the connecting hole B (25); the hand part (21) is in a fist shape, the bottom end of the arm (2) is connected with a plug rod (202), and the hand part (21) is clamped on the plug rod (202) through a plug sleeve.

10. The inverted gorilla of claim 9, wherein: The material of the outer cover is silica gel or plastic.