Heavy-duty scooter equipped with toy gun

By setting up sensing mechanisms and protective mechanisms on the heavy-duty mobility scooter, the problem of collision during children's operation is solved, safety and entertainment are improved, and the safety and comfort of children during operation are ensured.

CN223314995UActive Publication Date: 2025-09-09YONGKANG RUIHE METAL PRODUCTS CO LTD
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Patent Information

Application Number
CN202421832343.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-09-09
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

When children operate existing heavy-duty scooters equipped with toy guns, they are prone to collisions due to their weak reaction and control abilities, which can damage the scooter's housing or parts, injure children, and damage indoor furniture or valuables.

Method used

A sensing mechanism is set on the mobility scooter, including a first and a second ultrasonic sensor, for detecting obstacles in front and behind, and automatically cutting off power and braking when obstacles are detected. The mobility scooter is also equipped with a seat belt and a protective mechanism to provide additional safety protection.

Benefits of technology

Sensor detection and automatic braking avoid collision accidents, enhancing the safety of children's operation. Safety belts and protective mechanisms provide stable support and cushioning to reduce impact force and ensure children's safety and entertainment experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of children's scooters, in particular to a heavy-duty scooter equipped with a toy gun. The scooter comprises a scooter body, the scooter body comprises a scooter frame, a seat and a safety belt, sensing mechanisms are arranged at the front end and the rear end of the scooter frame respectively, the sensing mechanisms are arranged, a first mounting rod and a first ultrasonic sensor on the first mounting rod are responsible for detecting obstacles in front, and a second mounting rod is responsible for detecting the obstacles in front; the scooter can be automatically powered off and braked before a child makes a response, so that collision is avoided, a second mounting rod and a second ultrasonic sensor on the second mounting rod are responsible for detecting obstacles behind the scooter, the omnibearing collision detection capacity is provided, and the safety of the child is improved. By detecting obstacles in advance, automatically powering off and braking and providing additional safety protection measures, various problems possibly encountered in the using process of an existing scooter are effectively solved, and a safer and more interesting playing environment is provided for children.
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Description

Technical Field

[0001] The utility model relates to the field of children's scooters, in particular to a heavy-duty scooter equipped with a toy gun. Background Art

[0002] A heavy-duty mobility scooter equipped with toy guns is a tank-shaped children's mobility scooter. It usually has a sturdy shell and a powerful power system, and can simulate the driving and appearance characteristics of a tank. In order to increase entertainment and fun, this type of mobility scooter is specially equipped with toy guns as decoration or interactive elements, allowing children to experience the fun of military games while driving.

[0003] The inventors of this application have found the following problems in practical use:

[0004] Although the current heavy-duty mobility scooters equipped with toy guns are used at a slow speed, since the operators are children, their reaction and control abilities are relatively weak, which may cause the mobility scooters to collide with other objects. This may cause some problems, such as damage to the scooter's casing or parts, requiring frequent repairs or replacements. The impact force generated by the collision may cause harm to children, especially if they are not wearing safety protection equipment correctly. In addition, if the mobility scooter is used indoors or in a crowded environment, the collision may also damage furniture, electrical appliances or other valuables, causing unnecessary economic losses to the family.

[0005] Therefore, be necessary to provide a kind of heavy-duty scooter of equipment toy gun to solve the problems of the technologies described above. Utility Model Content

[0006] The technical problem to be solved by the present utility model is to provide a heavy-duty mobility scooter equipped with a toy gun, in view of the defect in the prior art that children may collide with other objects due to their relatively weak reaction and control abilities when operating a mobility scooter, thereby causing damage to the scooter casing or parts, injury to children, and damage to furniture, electrical appliances or other valuables in indoor or crowded environments.

[0007] To achieve the above-mentioned purpose, the technical solution of the present utility model is: a heavy-duty mobility scooter equipped with a toy gun, comprising a mobility scooter, the mobility scooter comprising a frame, a seat, and a safety belt, the front and rear ends of the frame are both provided with sensing mechanisms, the sensing mechanism comprising a first mounting rod, the first mounting rod being fixedly connected to the frame, an adjustment slot being provided at the top of the first mounting rod, a first ultrasonic sensor being rotatably connected to the interior of the adjustment slot, a second mounting rod being fixedly linked to the rear end of the frame, and a second ultrasonic sensor being rotatably connected to the top of the second mounting rod.

[0008] By adopting the above technical solution, the setting of the mobility scooter combines the frame, seat and safety belt, providing a stable driving platform and comfort for children. The setting of the sensor mechanism enhances safety and can detect the surrounding environment and respond accordingly.

[0009] It is further configured that the first ultrasonic sensor and the second ultrasonic sensor are used to detect the surrounding environment of the scooter. When there are objects around the scooter, the first ultrasonic sensor and the second ultrasonic sensor can effectively cut off the power and brake the scooter.

[0010] By adopting the above technical solution, the first ultrasonic sensor and the second ultrasonic sensor can detect the environment around the mobility scooter. When there are objects around, the mobility scooter can be powered off and braked in time, thereby avoiding the occurrence of collision accidents.

[0011] It is further configured that the first ultrasonic sensor and the second ultrasonic sensor are used to ensure that the mobility scooter does not collide with other objects when it loses control.

[0012] By adopting the above technical solution, through the monitoring of the first ultrasonic sensor and the second ultrasonic sensor, it can be ensured that the mobility scooter will not collide with other objects when it loses control, further improving the safety of children when operating the mobility scooter.

[0013] It is further provided that two safety belts are provided, and spring belt sockets are provided above the outer surfaces of the two safety belts, and the spring belt sockets are located at the child's shoulder position.

[0014] By adopting the above technical solution, two safety belts are set up to ensure that children can get stable support and protection from both sides when operating the scooter. At the same time, the spring belt socket is located at the child's shoulder position, which facilitates the connection and fixation of the safety belt and provides a comfortable wearing experience.

[0015] It is further provided that a top frame is provided at the top rear end of the frame, and a protective mechanism is provided on the top frame.

[0016] By adopting the above technical solution, the top frame provides a stable installation base for the protective mechanism, ensuring that the protective mechanism can be firmly fixed on the mobility scooter, providing additional head and upper body protection for children.

[0017] It is further provided that the protection mechanism includes a collar, the collar is sleeved with the top frame, and a spring belt is provided at the bottom of the collar.

[0018] By adopting the above technical solution, the collar of the protective mechanism is connected with the top frame, so that the protective mechanism can be easily installed on the mobility scooter. The spring belt has a certain elasticity and toughness, which can provide a buffering effect during a collision and reduce the impact force.

[0019] It is further provided that a spring belt buckle is provided at the bottom of the spring belt, the spring belt buckle is plugged into the spring belt socket, a button is provided on one side of the spring belt socket, and the spring belt buckle can be effectively separated from the spring belt socket by pressing the button.

[0020] By adopting the above technical solution, the setting of the spring belt buckle and the spring belt socket enables the protective mechanism to be easily connected and disassembled, which is convenient for parents to adjust according to their needs. The setting of the button enables the buckle and the socket to be quickly separated in an emergency, which makes it convenient for children to quickly leave the mobility scooter.

[0021] It is further provided that a seat is provided at the top front end of the frame, armrests are provided below both sides of the seat, a control rod is provided at the top of one of the armrests, two sets of track wheels are provided at the bottom of the frame, and decorative gun barrels are provided on the inner sides of the two first mounting rods, and the mobility scooter is in the shape of a tank.

[0022] By adopting the above technical solution, the mobility scooter is configured in the shape of a tank, with a unique appearance and stable driving performance. The settings of the seat and armrests provide a comfortable riding environment, and the control lever makes it easy for children to operate the driving direction of the mobility scooter.

[0023] It is further provided that a bullet loading port and a firing button are provided on the top of the other armrest, and a firing head is provided on the outer surface of the armrest, and the firing head is used to fire plastic bullets.

[0024] By adopting the above technical solution, the arrangement of the loading port and the firing button enables the mobility scooter to have the function of a toy gun, thereby increasing entertainment and fun. The firing head is used to fire plastic bullets, providing children with an additional gaming experience.

[0025] It is further provided that safety belts are provided above both sides of the frame, one end of each safety belt is provided with a safety belt buckle, and the inner sides of the two armrests are provided with a safety belt socket, and the safety belt socket is plugged into the safety belt buckle.

[0026] By adopting the above technical solution, a seat belt buckle is provided at one end of the seat belt, which is plugged into the seat belt socket on the inner side of the armrest, ensuring that the child can be firmly fixed on the seat when riding in the mobility scooter, thereby improving safety.

[0027] Compared with the related art, the heavy-duty mobility scooter equipped with a toy gun provided by the present invention has the following beneficial effects:

[0028] The utility model provides a heavy-duty mobility scooter equipped with a toy gun. By providing a sensing mechanism, a first mounting rod and a first ultrasonic sensor thereon are responsible for detecting obstacles in front, and can automatically cut off the power supply and brake the mobility scooter before the child reacts, thereby avoiding a collision. A second mounting rod and a second ultrasonic sensor thereon are responsible for detecting obstacles behind the mobility scooter, thereby providing a full range of collision detection capabilities. These structures and settings together constitute a safer and more reliable heavy-duty mobility scooter equipped with a toy gun. By detecting obstacles in advance, automatically cutting off the power supply and braking, and providing additional safety protection measures, various problems that may be encountered during the use of existing mobility scooters are effectively solved, thereby providing a safer and more interesting play environment for children.

[0029] The utility model provides a heavy-duty mobility scooter equipped with a toy gun, which adopts a protective mechanism, wherein the arrangement of the safety belt and the spring belt socket ensures that the child can obtain stable support and protection from both sides when operating the mobility scooter, while providing a comfortable wearing experience; the top frame on the top of the frame provides a stable installation base for the protective mechanism, providing additional head and upper body protection for the child; the arrangement of the ring and the spring belt of the protective mechanism enables the protective mechanism to be easily installed, and provides a buffering effect in the event of a collision to reduce the impact force; the arrangement of the spring belt buckle and the socket provides a convenient way to connect the protective mechanism, while ensuring that the child can safely and quickly leave the mobility scooter in an emergency; these arrangements together enhance the safety of the child when operating the mobility scooter, and prevent accidental injuries caused by collision or sudden parking. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model;

[0031] Figure 2 This is a bottom-up perspective structural diagram of the present invention;

[0032] Figure 3 For this utility model Figure 1 A schematic diagram of the structure enlarged in the middle;

[0033] Figure 4 For this utility model Figure 1 Schematic diagram of the structure enlarged at point B.

[0034] Numbers in the figure: 1. Vehicle for mobility scooter; 101. Vehicle frame; 102. Track wheels; 103. Decorative barrel; 104. Seat; 105. Armrest; 106. Control lever; 107. Loading port; 108. Launch button; 109. Launch head; 110. Top frame; 111. Safety belt socket; 112. Safety belt; 113. Safety belt buckle; 114. Spring belt socket; 2. Protective mechanism; 201. Ring; 202. Spring belt; 203. Spring belt buckle; 3. Sensing mechanism; 301. First mounting rod; 302. Adjustment slot; 303. First ultrasonic sensor; 304. Second mounting rod; 305. Second ultrasonic sensor. DETAILED DESCRIPTION

[0035] In order to facilitate the understanding of the present invention, the present invention will be described in more detail below with reference to the accompanying drawings, in which typical embodiments of the present invention are shown.

[0036] Example 1:

[0037] like Figure 1-Figure 4 As shown, the utility model is a heavy-duty scooter equipped with a toy gun, including a scooter 1, which includes a frame 101, a seat 104, and a safety belt 112. The front and rear ends of the frame 101 are both provided with a sensing mechanism 3, the sensing mechanism 3 including a first mounting rod 301, the first mounting rod 301 is fixedly connected to the frame 101, an adjustment slot 302 is provided on the top of the first mounting rod 301, a first ultrasonic sensor 303 is rotatably connected inside the adjustment slot 302, a second mounting rod 304 is fixedly connected to the rear end of the frame 101, and a second ultrasonic sensor 305 is rotatably connected to the top of the second mounting rod 304. Through the arrangement of the sensing mechanism 3, including the first mounting rod 301, the adjustment slot 302, the first ultrasonic sensor 303, the second mounting rod 304 and the second ultrasonic sensor 305, the scooter 1 can detect the surrounding environment in real time and improve driving safety.

[0038] like Figure 1 、 Figure 3 As shown, the first ultrasonic sensor 303 and the second ultrasonic sensor 305 are used to detect the surrounding environment of the mobility scooter 1. When there are objects around the mobility scooter 1, the first ultrasonic sensor 303 and the second ultrasonic sensor 305 can effectively cut off the power and brake the mobility scooter 1. The coordinated use of the first ultrasonic sensor 303 and the second ultrasonic sensor 305 can cut off the power and brake in time when there are objects around the mobility scooter 1, effectively preventing collision accidents.

[0039] like Figure 1 、 Figure 3As shown, the first ultrasonic sensor 303 and the second ultrasonic sensor 305 are used to ensure that the mobility scooter 1 does not collide with other objects when it is out of control. Through monitoring by the first ultrasonic sensor 303 and the second ultrasonic sensor 305, it is ensured that the mobility scooter 1 does not collide with other objects when it is out of control, thereby improving the safety of children's operation.

[0040] like Figure 1 、 Figure 3 As shown, two seat belts 112 are provided, and spring belt sockets 114 are provided above the outer surfaces of the two seat belts 112, and the spring belt sockets 114 are located at the child's shoulders. Two seat belts 112 are provided, and spring belt sockets 114 are provided above their outer surfaces, and are located at the child's shoulders, providing firm support and protection and increasing the safety of riding.

[0041] Example 2:

[0042] like Figure 1 、 Figure 2 As shown, a top frame 110 is provided at the top rear end of the frame 101, and a protective mechanism 2 is provided on the top frame 110. The top frame 110 provides a stable installation base for the protective mechanism 2, ensuring that the protective mechanism can be firmly fixed on the mobility scooter, providing additional head and upper body protection for children.

[0043] like Figure 1 、 Figure 4 As shown, the protective mechanism 2 includes a ring 201, which is socketed with the top frame 110. A spring belt 202 is provided at the bottom of the ring 201. The ring 201 of the protective mechanism 2 is socketed with the top frame 110. The spring belt 202 has a certain elasticity and toughness, which can provide a buffering effect during a collision and reduce the impact force.

[0044] like Figure 1 、 Figure 4 As shown, a spring belt buckle 203 is provided at the bottom of the spring belt 202, and the spring belt buckle 203 is plugged into the spring belt socket 114. A button is provided on one side of the spring belt socket 114, and after pressing the button, the spring belt buckle 203 can be effectively separated from the spring belt socket 114. The setting of the spring belt buckle 203 and the spring belt socket 114 enables the protective mechanism to be easily connected and disassembled, and the setting of the button facilitates the rapid separation of the buckle and the socket in an emergency, thereby improving safety.

[0045] like Figure 1 、 Figure 4As shown, a seat 104 is provided at the top front end of the frame 101, and armrests 105 are provided below the two sides of the seat 104, a control rod 106 is provided on the top of one of the armrests 105, two sets of track wheels 102 are provided at the bottom of the frame 101, and decorative barrels 103 are provided on the inner sides of the two first mounting rods 301. The scooter 1 is in the shape of a tank, has a unique appearance and stable driving performance, and the arrangement of the seat 104, armrests 105, control rods 106, track wheels 102 and decorative barrels 103 provides a comfortable riding environment and operating experience.

[0046] like Figure 1 、 Figure 3 As shown, a loading port 107 and a firing button 108 are provided on the top of the other armrest 105, and a firing head 109 is provided on the outer surface of the armrest 105. The firing head 109 is used to fire plastic bullets. The arrangement of the loading port 107, the firing button 108 and the firing head 109 enables the mobility scooter to have the function of a toy gun, increases entertainment and fun, and provides children with an additional gaming experience.

[0047] like Figure 1 、 Figure 3 As shown, safety belts 112 are provided on the upper sides of the frame 101, and a safety belt buckle 113 is provided at one end of the safety belt 112. Safety belt sockets 111 are provided on the inner sides of the two armrests 105, and the safety belt sockets 111 are plugged into the safety belt buckles 113. One end of the safety belt 112 is provided with a safety belt buckle 113, which is plugged into the safety belt sockets 111 on the inner sides of the armrests 105, ensuring that children can be firmly fixed on the seat when riding in the mobility scooter, thereby improving safety.

[0048] During implementation, first, ensure that the mobility scooter 1 is in the closed state and check that all components are intact, especially the sensor mechanism 3, the safety belt 112, and the protective mechanism 2. Then, place the mobility scooter 1 on a flat, obstacle-free surface, ensuring that there is enough space around for the child to operate. Then, with the assistance of a parent, the child sits on the seat 104, ensuring that both feet are firmly placed on the bottom of the mobility scooter. Pass the two safety belts 112 through the child's shoulders, and insert the safety belt buckle 113 into the safety belt socket 111 on the inside of the armrest 105 to ensure that the child is firmly fixed on the seat.

[0049] The child controls the direction of the scooter by controlling the control lever 106 and gently pushes the control lever to start the scooter. The scooter starts to move through the two sets of track wheels 102 at the bottom. The child can adjust the speed and direction as needed.

[0050] In addition, children can add plastic bullets through the bullet loading port 107 on the other armrest 105. When the plastic bullet needs to be fired, the child presses the firing button 108, and the firing head 109 will shoot the plastic bullet, which increases the fun of playing. The specific principle is that an ammunition chamber is provided inside the bullet loading port 107, and a spring is installed inside the ammunition chamber to stably push the plastic bullet to the firing position. When the child presses the firing button 108, the button will immediately trigger a mechanical switch, thereby activating an electric motor or pneumatic device to generate sufficient force to push the plastic bullet in the ammunition chamber or magazine to the firing head 109. The firing head 109 is a tubular structure with a smooth internal channel to ensure that the plastic bullet can be fired smoothly. Once the plastic bullet is pushed to the firing head, it will be subjected to a sudden force and quickly shot out of the scooter.

[0051] During the scooter's travel, the first ultrasonic sensor 303 and the second ultrasonic sensor 305 continuously monitor the surrounding environment. If the sensors detect an object approaching the scooter, or if the child fails to avoid an obstacle in time, the scooter will automatically power off and brake to prevent a collision.

[0052] After use, the child can, with the assistance of the parent, press the button on one side of the seat belt socket 111 to pull the seat belt buckle 113 out of the socket to unfasten the seat belt.

[0053] The advantages of this technical solution in practical applications include but are not limited to the following:

[0054] 1. By providing a sensing mechanism, including a first mounting rod and a first ultrasonic sensor thereon, and a second mounting rod and a second ultrasonic sensor thereon, all-round obstacle detection is achieved. The scooter can automatically power off and brake before the child reacts, thereby effectively avoiding collisions and providing a safer and more reliable play environment for children.

[0055] 2. By setting up a protective mechanism, including the seat belt and spring belt socket, children can get stable support and protection from both sides when operating the mobility scooter. The top frame on the top of the frame provides a stable installation base for the protective mechanism, providing additional head and upper body protection for children. The ring and spring belt setting of the protective mechanism can provide a buffering effect and reduce the impact force in the event of a collision, while the setting of the spring belt buckle and socket ensures that children can safely and quickly leave the mobility scooter in an emergency, thereby enhancing the operating safety of children.

Claims

1. A heavy-duty mobility scooter equipped with a toy gun, characterized by: The invention comprises a mobility scooter (1), wherein the mobility scooter (1) comprises a vehicle frame (101), a seat (104), and a safety belt (112); a sensing mechanism (3) is provided at the front end and the rear end of the vehicle frame (101); the sensing mechanism (3) comprises a first mounting rod (301); the first mounting rod (301) is fixedly connected to the vehicle frame (101); an adjustment slot (302) is provided at the top of the first mounting rod (301); a first ultrasonic sensor (303) is rotatably connected to the interior of the adjustment slot (302); a second mounting rod (304) is fixedly connected to the rear end of the vehicle frame (101); a second ultrasonic sensor (305) is rotatably connected to the top of the second mounting rod (304).

2. A heavy-duty mobility scooter equipped with a toy gun according to claim 1, characterized in that: The first ultrasonic sensor (303) and the second ultrasonic sensor (305) are used to detect the surrounding environment of the mobility scooter (1). When there are objects around the mobility scooter (1), the first ultrasonic sensor (303) and the second ultrasonic sensor (305) can effectively cut off the power supply and brake the mobility scooter (1).

3. A heavy-duty mobility scooter equipped with a toy gun according to claim 1, characterized in that: The first ultrasonic sensor (303) and the second ultrasonic sensor (305) are used to ensure that the mobility scooter (1) does not collide with other objects when it loses control.

4. A heavy-duty mobility scooter equipped with a toy gun according to claim 1, characterized in that: Two safety belts (112) are provided, and spring belt sockets (114) are provided above the outer surfaces of the two safety belts (112), and the spring belt sockets (114) are located at the child's shoulder position.

5. A heavy-duty mobility scooter equipped with a toy gun according to claim 1, characterized in that: A top frame (110) is provided at the rear end of the top of the vehicle frame (101), and a protective mechanism (2) is provided on the top frame (110).

6. A heavy-duty mobility scooter equipped with a toy gun according to claim 5, characterized in that: The protection mechanism (2) comprises a sleeve ring (201), the sleeve ring (201) is sleeved with the top frame (110), and a spring belt (202) is provided at the bottom of the sleeve ring (201).

7. A heavy-duty mobility scooter equipped with a toy gun according to claim 6, characterized in that: A spring belt buckle (203) is provided at the bottom of the spring belt (202), and the spring belt buckle (203) is plugged into the spring belt socket (114). A button is provided on one side of the spring belt socket (114), and the spring belt buckle (203) can be effectively separated from the spring belt socket (114) by pressing the button.

8. A heavy-duty mobility scooter equipped with a toy gun according to claim 1, characterized in that A seat (104) is provided at the front end of the top of the vehicle frame (101), and armrests (105) are provided below both sides of the seat (104), a control rod (106) is provided at the top of one of the armrests (105), two sets of track wheels (102) are provided at the bottom of the vehicle frame (101), and decorative barrels (103) are provided on the inner sides of the two first mounting rods (301), and the mobility scooter (1) is in the form of a tank.

9. A heavy-duty mobility scooter equipped with a toy gun according to claim 8, characterized in that The top of the other armrest (105) is provided with a bullet loading port (107) and a firing button (108), and the outer surface of the armrest (105) is provided with a firing head (109), and the firing head (109) is used for firing plastic bullets.

10. The heavy-duty mobility scooter equipped with a toy gun according to claim 8, characterized in that: Safety belts (112) are provided above both sides of the vehicle frame (101), one end of each of the safety belts (112) is provided with a safety belt buckle (113), and the inner sides of the two armrests (105) are provided with a safety belt socket (111), and the safety belt socket (111) is plugged into the safety belt buckle (113).