Toy serving trolley

By using non-slip soft rubber drive wheels, a multi-wheel design, and an 'L'-shaped body structure on the toy delivery cart, the problem of vehicle instability was solved, achieving a stable delivery of goods. The use of a light-transmitting panel and LED light source adds to the fun.

CN223542444UActive Publication Date: 2025-11-14余秀玲
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Patent Information

Application Number
CN202422742077.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-11
Publication Date
2025-11-14
Estimated Expiration
2034-11-11

AI Technical Summary

Technical Problem

Existing toy delivery vehicles are prone to instability, tilting, and tipping over during operation, causing items to scatter and making it impossible to achieve stable delivery tasks.

Method used

The machine features a wheel design with anti-slip soft rubber on the outer circumference of the drive wheels, combined with multiple wheel sets and auxiliary steering wheels to improve stability; the drive unit is connected to the drive wheels through multiple gear drive mechanisms to ensure stable transport; the detachable shelf is fixed by a plug-in structure to increase stability; the body adopts an 'L' shape to improve the low center of gravity; and the light-transmitting panel and LED light source add fun.

Benefits of technology

The toy delivery truck has improved stability and grip on different surfaces, ensuring the stability of transported items, and its multi-functional design enhances its fun and practicality.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a toy serving trolley which comprises a machine body and a wheel set, and the wheel set is arranged on the machine body. The wheel set comprises a front wheel, at least two driving wheels and an auxiliary steering wheel, the two driving wheels are oppositely arranged on the left side and the right side of the bottom of the machine body respectively, and the front wheel and the auxiliary steering wheel are connected to the front end and the rear end of the bottom of the machine body respectively; and anti-skid soft rubber is arranged on the peripheral surface of the driving wheel. The driving wheels in the driving device are made of anti-skid soft rubber materials, the design of the wheel sets is matched, the stability and the road holding force of the toy serving trolley on different grounds are improved, and meanwhile the auxiliary steering wheels are matched, so that the stability during article conveying is guaranteed.
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Description

Technical Field

[0001] This utility model relates to the technical field of toy vehicles, specifically to a toy food delivery vehicle. Background Technology

[0002] With the continuous advancement of technology and the increasing diversification of the children's toy market, remote-controlled toys have gradually become a new favorite for children's entertainment. Among them, toys that can simulate real-life scenarios, such as toy cars and toy food delivery trucks, are particularly popular due to their fun and interactivity.

[0003] While existing remote-controlled toy cars possess a certain degree of mobility, their structural design limitations often result in insufficient stability when transporting goods. Existing toy food delivery vehicles are prone to instability, tilting, or even tipping over during operation, especially when turning or accelerating, causing the goods to scatter and making stable delivery impossible.

[0004] Therefore, there is a need for a toy food delivery vehicle that can move / walk stably and transport items smoothly. Utility Model Content

[0005] In order to overcome the technical defects of existing toy food delivery carts that are prone to instability, tilting and tipping over during use, this utility model provides a toy food delivery cart.

[0006] In order to overcome the shortcomings of the existing technology, this utility model provides a toy food delivery cart.

[0007] To solve the above problems, this utility model is implemented according to the following technical solution:

[0008] This utility model provides a toy food delivery cart, comprising:

[0009] body;

[0010] A wheel assembly is provided on the fuselage; the wheel assembly includes a front wheel, at least two drive wheels and an auxiliary steering wheel, wherein the two drive wheels are respectively disposed opposite to each other on the left and right sides of the bottom of the fuselage, and the front wheel and the auxiliary steering wheel are respectively connected to the front and rear ends of the bottom of the fuselage;

[0011] The outer circumferential surface of the drive wheel is provided with anti-slip soft rubber.

[0012] Preferably, the driving component is disposed within the body; the driving component includes multiple gear driving mechanisms, with each gear driving mechanism correspondingly connected to a driving wheel;

[0013] The gear drive mechanism includes a motor and a gear train, wherein the motor is connected to the gear train, and the gear train is used to drive the drive wheel.

[0014] Preferably, the gear system includes a first gear, a second gear, a third gear, and a fourth gear; the first gear is connected to the output shaft of the motor; the second gear is connected to the third gear and meshes with the fourth gear; the third gear is fixed on the drive component and meshes with the second and fourth gears.

[0015] Preferably, the shelf is detachably connected to the body and has several storage slots.

[0016] Preferably, the shelf is inserted into the insertion slot of the machine body.

[0017] Preferably, the shelf has a plug-in portion, and the plug-in portion has a plurality of slots that are spaced apart in sequence;

[0018] The device body has multiple plugs in the plug slot, which are adapted to the slots. The shelf is plugged into the plug slot of the device body through the plug part, and the multiple plugs are correspondingly inserted into the multiple slots.

[0019] Preferably, the housing is further provided with a gear mounting seat, and the drive component is installed in the gear mounting seat; the gear mounting seat is provided with a plurality of positioning blocks that cooperate with the drive component, and their shape matches the inner cavity at the bottom of the housing.

[0020] Preferably, the back of the body is also provided with a light-transmitting plate with a pattern on it. The body is also provided with an LED light source. The back of the body is also provided with multiple recessed holes that are connected to multiple recessed rods on the light-transmitting plate. The back of the body is also provided with several circular through holes. The light from the LED light source can pass through the circular through holes and reflect the pattern on the light-transmitting plate.

[0021] Preferably, the housing also includes a speaker, with a circular slot matching the speaker's shape on the housing and a sound outlet that works with the speaker on the housing.

[0022] Preferably, the fuselage is in an "L" shape.

[0023] Compared with the prior art, the toy food delivery cart described in this utility model has the following advantages:

[0024] This utility model provides a toy food delivery cart, including a body and a wheel set, wherein the wheel set is disposed on the body; the wheel set includes a front wheel, at least two drive wheels and an auxiliary steering wheel, wherein the two drive wheels are respectively disposed opposite to each other on the left and right sides of the bottom of the body, and the front wheel and the auxiliary steering wheel are respectively connected to the front and rear ends of the bottom of the body; wherein the outer circumferential surface of the drive wheel is provided with anti-slip soft rubber.

[0025] The drive wheel in this utility model is made of non-slip soft rubber material, and the design of multiple wheel sets improves the stability and grip of the toy food delivery vehicle on different ground surfaces. At the same time, the auxiliary steering wheel ensures the stability when transporting items. Attached Figure Description

[0026] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings, wherein:

[0027] Figure 1 This is a three-dimensional schematic diagram of a toy food delivery cart according to the present invention;

[0028] Figure 2 This is a side sectional view of a toy food delivery cart according to this utility model;

[0029] Figure 3 This is a three-dimensional schematic diagram of the drive component of a toy food delivery cart according to the present invention;

[0030] Figure 4 This is a top view of the drive component of a toy food delivery cart according to the present invention;

[0031] Figure 5 This is a three-dimensional schematic diagram of the drive component of a toy food delivery cart according to the present invention;

[0032] Figure 6 This is a schematic diagram of the structure of the slot in the storage panel and the insert block in the front shell of a toy food delivery cart according to this utility model;

[0033] Figure 7 This is a schematic diagram of the battery compartment in a toy food delivery cart according to the present invention;

[0034] Figure 8 This is a front view of the internal structure of a toy food delivery cart according to this utility model;

[0035] Figure 9 This is a three-dimensional schematic diagram of the disassembly of the light-transmitting panel of a toy food delivery cart according to this utility model;

[0036] Figure 10 This is a bottom view of a toy food delivery cart according to this utility model;

[0037] In the diagram: 10-body, 20-wheel set, 50-gear, 300-drive component; 13-base, 15-battery compartment, 16-gear mounting base, 17-speaker, 18-storage plate; 21-front wheel, 22-drive wheel, 23-auxiliary steering wheel; 31-remote control; 51-first gear, 52-second gear, 53-third gear, 54-fourth gear; 111-sound outlet, 112-LED light source; 121-circular groove, 123-light-transmitting plate, 124-embedded hole, 125-embedded rod, 126-through hole, 127-threaded post, 128-countersunk hole; 180-slot, 181-insertion block, 182-insertion groove, 183-storage slot; 150-battery cover, 151-buckle, 152-buckle groove, 153-threaded hole; 301-switch, 302-motor. Detailed Implementation

[0038] The preferred embodiments of the present invention will be described below with reference to the accompanying drawings. It should be understood that the preferred embodiments described herein are for illustration and explanation only and are not intended to limit the present invention.

[0039] like Figures 1-10 As shown, the toy food delivery cart of this utility model includes a body 10 and a wheel set 20. The wheel set is disposed on the body 10. The wheel set 20 includes a front wheel 21, at least two drive wheels 22 and an auxiliary steering wheel 23. The two drive wheels 22 are respectively disposed on the left and right sides of the bottom of the body 10. The front wheel 21 and the auxiliary steering wheel 23 are respectively connected to the front and rear ends of the bottom of the body 10. The outer circumferential surface of the drive wheels 22 is provided with anti-slip soft rubber.

[0040] Understandably, wheel assembly 20 includes a front wheel 21, drive wheels 22, and auxiliary steering wheels 23. Drive wheels 22 are located on the left and right sides of the bottom of the chassis 10, responsible for driving the delivery cart forward or backward. The drive wheels have anti-slip soft rubber on their surface to improve grip. The front wheel 21 and auxiliary steering wheels 23 are located at the front and rear of the chassis, respectively, for steering and maintaining balance.

[0041] Combination Figure 10 The bottom surface of the body 10 is equipped with a wheel set 20, including a front wheel 21, a drive wheel 22, and an auxiliary steering wheel 23. In the figure, the wheel set 20 is distributed at the center of the square bottom edge, which can make the toy food delivery cart move more stably.

[0042] Implementation, for example Figure 1 and Figure 2 As shown, switch 301 is located on the front surface of the body 10 and is used to control the toy food delivery cart's on / off operation. When in use, the user turns on the switch and moves the toy food delivery cart by operating the remote control 31.

[0043] Working principle: When the user presses a button on the remote control 31, the drive component 300 drives the drive wheel 22 to rotate, thereby moving the toy food delivery cart. By controlling the speed and direction of different drive wheels, the toy food delivery cart can move forward, backward, and turn.

[0044] Implementation, for example Figure 2 and Figure 5 As shown, preferably, the drive component 300 is disposed inside the body 10; the drive component 300 includes a plurality of gear drive mechanisms, and one gear drive mechanism is correspondingly connected to one drive wheel 22;

[0045] The gear drive mechanism includes a motor 302 and a gear system 50. The motor 302 is connected to the gear system 50, which is used to drive the drive wheel 22.

[0046] Understandably, the drive unit 300 includes multiple motors 302 and multiple gears 50. Each motor 302 is connected to a corresponding drive wheel 22 via an independent gear transmission system.

[0047] Combination Figure 3 and Figure 4 Preferably, the gear system 50 includes a first gear 51, a second gear 52, a third gear 53, and a fourth gear 54; the first gear 51 is connected to the output shaft of the motor; the second gear 52 is connected to the third gear 53 and meshes with the fourth gear 54; the third gear 53 is fixed on the drive component 300 and meshes with the second gear 52 and the fourth gear 54.

[0048] Each gear transmission system includes the following components: a first gear 51, which is directly connected to the output shaft of the motor 302, converting the motor's rotational motion into gear rotation. A second gear 52, which meshes with the first gear 51, transmitting torque. It also meshes with a fourth gear 54, transmitting torque to the drive wheel 22. A third gear 53, fixed to the drive component 300, meshes with the second gear 52 and the fourth gear 54. It supports and guides the other gears and helps improve the stability of the transmission system. The fourth gear 54, meshing with the second gear 52 and the third gear 53, ultimately transmits torque to the drive wheel 22, driving its rotation.

[0049] Implementation, for example Figure 4 As shown, the working principle of the drive component of this utility model is as follows: When the motor 302 is energized, the first gear 51 rotates accordingly. Through meshing with the second gear 52, torque is transmitted to the intermediate shaft. Subsequently, the second gear 52 transmits torque to the fourth gear 54. Finally, the fourth gear 54 drives the drive wheel 22 to rotate, thereby realizing the movement of the drive component 300.

[0050] Implementation, for example Figure 2 As shown, preferably, the shelf 18 is detachably connected to the body 10, and the shelf 18 has a plurality of storage slots 183.

[0051] Combination Figure 1 Understandably, the storage slot 183 can be used to place small items of different sizes and shapes, such as toy food, snacks, etc. The design of multiple storage slots increases the practicality of the shelf 18, and the edges of the storage slots 183 are provided with protrusions to prevent toy food from falling off during transport by the toy delivery cart.

[0052] Implementation, for example Figure 2 As shown, preferably, the shelf 18 is inserted into the insertion slot 182 of the body 10.

[0053] Implementation as Figure 2 and Figure 6 As shown, preferably, the shelf 18 has a plug-in portion, which has a plurality of slots 180 arranged at intervals in sequence.

[0054] The body 10 has multiple plugs 181 in the plug slot, which are adapted to the slots 180. The shelf 18 is plugged into the plug slot 182 of the body 10 through the plug part, and the multiple plugs 181 are correspondingly inserted into the multiple slots 180.

[0055] Understandably, one end of the shelf 18 has multiple rectangular slots 180. These slots are arranged regularly, with consistent depth and width. The front housing 11 has correspondingly multiple inserts 181, the shape of which complements the slots 180; that is, the width and thickness of the inserts 181 correspond to the width and depth of the slots 180. When the shelf 18 is placed on the front housing 11, the inserts 181 are accurately inserted into the slots 180. Because the width of the inserts 181 is slightly larger than the width of the slots 180, a certain amount of elastic deformation occurs during insertion, thus forming a tight connection. This structure combining inserts and slots, similar to a snap-fit, securely fixes the shelf 18 to the front housing 11.

[0056] The working principle of this snap-fit ​​structure is mainly based on the elastic deformation generated by the interference fit. The fit between the insert 181 and the slot 180 provides good stability of the shelf 18 in the horizontal direction. Simultaneously, due to the elastic deformation of the insert 181, it can effectively absorb external forces, preventing the shelf 18 from falling off when subjected to impact. The fit between the insert 181 and the slot 180 makes the installation and removal of the shelf 18 very convenient; simply align the shelf 18 with the slot on the front cover 11 and press gently to complete the installation. The snap-fit ​​structure of the insert 181 and the slot 180 provides sufficient friction to ensure that the shelf 18 will not loosen or fall off during use.

[0057] It can also be understood that this refers to the one-to-one correspondence between slots 180 and inserts 181 in terms of quantity, position, and shape. Specifically:

[0058] Correspondingly, the number of slots 180 on the shelf 18 is the same as the number of inserts 181 on the body 10.

[0059] The positions of the slots 180 and the plugs 181 are in one-to-one correspondence, that is, each slot 180 has a corresponding plug 181.

[0060] The shapes correspond, with the shape of the slot 180 complementing that of the insert 181, and the protruding part of the slot 180 and the recessed part of the insert 181 can fit together perfectly.

[0061] As can be understood from the above embodiments, a detachable shelf 18 is provided on the front surface of the body 10 for placing food or other items. When the shelf 18 is removed, beverages can be placed on the base 13. When the shelf 18 is installed on the body 10, the body 10 forms a storage space with upper and lower layers.

[0062] Implementation, for example Figure 3 and Figure 4 As shown, preferably, the body 10 is also provided with a gear mounting seat 16, and the drive component 300 is installed in the gear mounting seat 16; the gear mounting seat 16 is provided with a plurality of positioning blocks that cooperate with the drive component 300, and their shape matches the inner cavity at the bottom of the body 10.

[0063] The drive unit 300 is installed in the gear mounting base 16 and is connected to the drive wheel 22 through the gear transmission system, which is responsible for driving the movement of the toy food delivery cart.

[0064] Understandably, the drive component 300 is mounted within the gear mount 16. The gear mount 16 is designed to provide physical protection for the drive component and ensure its stability during operation. The gear mount 16 is typically a closed shell structure whose shape matches the inner cavity at the bottom of the body 10. It is located within the body 10, completely enclosing the drive component 300. The material of the gear mount 16 can be selected according to actual needs, such as plastic or metal. Plastic is lightweight and easy to process, while metal has higher strength and corrosion resistance. Multiple positioning blocks are provided on the inner wall of the gear mount 16. The shape and size of these positioning blocks match the corresponding positions on the drive component 300. Through these positioning blocks, the drive component 300 can be precisely fixed in a predetermined position within the gear mount 16, preventing displacement during operation.

[0065] Implementation, for example Figure 9As shown, preferably, the back of the body 10 is also provided with a light-transmitting plate 123, on which a pattern is provided. The body is also provided with an LED light source 112. The back of the body 10 is also provided with a plurality of recessed holes 124 connected to a plurality of recessed rods 125 on the light-transmitting plate 123. The back of the body 10 is also provided with a plurality of circular through holes 126. The light from the LED light source 112 passes through the circular through holes 126 and can reflect the pattern on the light-transmitting plate 123.

[0066] Understandably, a light-transmitting plate 123 is also provided at the upper end of the rear shell 12. The light-transmitting plate 123 is usually made of a material with good light transmittance, such as acrylic. The light-transmitting plate 123 can be rectangular, circular, or other polygonal, and its shape and size are determined according to design requirements. The rear shell 12 is provided with polygonal recessed holes 124. The shape of the recessed holes 124 corresponds to the recessed rods 125 on the light-transmitting plate 123, and the two are connected by a fitting method. This connection method not only ensures the firmness of the light-transmitting plate 123, but also facilitates user replacement. An LED light source 112 is provided between the rear shell 12 and the front shell 11. The LED light source 112 can be a single LED or an array of multiple LEDs. The light emitted by the LED light source 112 shines onto the light-transmitting plate 123 through the through hole 126 on the rear shell 12. Due to the light transmittance of the light-transmitting plate 123, the light can penetrate the light-transmitting plate 123 and form a pattern on the light-transmitting plate. This can be achieved by controlling the brightness, color, and flashing frequency of the LED light source 112. In addition, different display effects can be achieved by setting different patterns or text on the light-transmitting plate 123.

[0067] Implementation, for example Figures 1 to 10 As shown, preferably, the fuselage 10 is in an "L" shape.

[0068] Understandably, the "L"-shaped structure makes the delivery cart chassis wider and its center of gravity lower, improving vehicle stability and making it less prone to tipping over. The "L"-shaped structure also allows the storage panel 18 to make full use of space, providing a larger placement area when the panel 18 is removed, and its horizontal "L"-shaped end face can serve as a platform for placing larger items. The "L"-shaped design also makes the delivery cart more visually appealing and attractive to children.

[0069] Implementation, for example Figure 7 As shown, a battery compartment 15 is provided on the base of the body 10. The battery compartment 15 is rectangular in shape and has multiple protruding baffles inside. A battery cover 150 is provided on the upper end of the battery compartment 15. The battery cover 150 is fixed to the base shell 13 by a combination of buckles and screws. One end of the battery cover 150 has multiple buckles 151 that fit into corresponding buckle slots 152 on the base shell 13. The base shell 13 has threaded holes 153 that connect to the battery cover 150.

[0070] Understandably, the battery compartment 15 is rectangular in shape and has multiple raised baffles inside. A battery cover 150 is located at the top of the battery compartment 15, which seals the battery compartment and prevents dust and liquid from entering. The connection between the battery cover 150 and the base housing 13 uses a combination of clips and screws. Specifically, one end of the battery cover 150 has multiple clips 151, which engage with corresponding clip slots 152 on the base housing 13. This clip structure allows for quick and easy attachment of the battery cover 150 to the base housing 13 while also facilitating disassembly. To increase the fixing strength of the battery cover 150, threaded holes 153 are provided on the base housing 13, through which screws connect the battery cover 150 to the base housing 13. When the battery needs to be replaced, simply loosen the screws and remove the clips on the battery cover 150 from the clip slots 152 to open the battery compartment. After replacing the battery, put the battery cover back on and tighten the screws to complete the battery replacement.

[0071] Implementation, for example Figure 8 As shown, the body 10 is also equipped with a speaker 17, and the body 10 is equipped with a circular slot 122 that matches the shape of the speaker 17. The body 10 is also equipped with a sound outlet 111 that cooperates with the speaker 17.

[0072] Understandably, a speaker 17 is also installed inside the body 10. To facilitate the installation and fixation of the speaker 17, a circular slot 122 matching the shape of the speaker 17 is provided on the rear cover 12. When the speaker 17 is installed on the rear cover 12, the outer shell of the speaker 17 fits tightly against the circular slot 122, forming a stable connection. To ensure that sound can be clearly transmitted from inside the body, a sound outlet 111 cooperating with the speaker 17 is provided on the front cover 11. The position and size of the sound outlet 111 correspond to the position and size of the sound hole of the speaker 17, thus ensuring that sound can propagate unobstructed through the sound outlet 111. The speaker 17 generates sound through an electrical signal, and the generated sound is transmitted through the circular slot 122 on the rear cover 12 to the interior of the front cover 11, and then emitted to the outside through the sound outlet 111.

[0073] Implementation, for example Figure 3 , Figure 4 and Figure 5 As shown, a motor 302 controls a drive wheel 22 through a gear system. By controlling the forward and reverse rotation of the two motors, the toy food delivery vehicle can be turned.

[0074] When the two motors 302 rotate in the same direction, the drive wheels 22 rotate in the same direction, and the toy delivery cart moves forward or backward. When the two motors 302 rotate in opposite directions, the drive wheels 22 rotate in opposite directions, and the toy delivery cart rotates in place, thus achieving the steering function.

[0075] In summary, this utility model proposes a compact and stable toy delivery cart. Through modular design, this toy delivery cart achieves multiple functions. By controlling the speed and direction of the two drive wheels, it can move forward, backward, and turn in various modes. The detachable shelf and the space on the base can accommodate items of different sizes and weights. A wireless remote control allows for remote control of the cart's movement. The combination of a translucent panel and LED light source enables the display of various patterns and text, increasing the cart's appeal. The plastic shell, connected by clips, screws, and sockets, ensures the cart's stability.

[0076] The working principle of the toy food delivery cart described in this utility model is as follows:

[0077] This toy food delivery cart moves and steers by controlling multiple motors that drive the wheel assembly. The cart contains at least two motors, each driving one of the left or right drive wheels. The motors' rotation is transmitted to the drive wheels via a gear transmission system, converting speed into torque. The drive wheels contact the ground, using friction to propel the cart forward or turn. Steering is achieved by controlling the speed and direction of the two drive wheels. When both motors rotate in the same direction, the cart moves straight; when they rotate in opposite directions, it spins in place; and when their speeds differ, it moves in a curved path. Users control the cart via a remote control. The internal control module receives wireless signals and controls the motors accordingly, thus controlling the cart. An internal battery powers the motors and control circuitry.

[0078] Users operate the toy delivery cart by sending commands via remote control, such as forward, backward, left turn, and right turn. The wireless signal is transmitted to a wireless module inside the toy delivery cart. Upon receiving the signal, the control module controls the drive module according to the command. The motor, based on the control signal, drives the gear transmission system, causing the drive wheels to rotate. The rotation of the drive wheels causes the toy delivery cart to move accordingly.

[0079] The above description is merely a preferred embodiment of the present utility model and is not intended to limit the present utility model in any way. Therefore, any modifications, equivalent changes, and alterations made to the above embodiments based on the technical essence of the present utility model without departing from the technical solution of the present utility model shall still fall within the scope of the technical solution of the present utility model.

Claims

1. A toy food delivery cart, characterized in that, include: Fuselage (10); A wheel assembly (20) is disposed on the fuselage (10); the wheel assembly (20) includes a front wheel (21), at least two drive wheels (22) and an auxiliary steering wheel (23), wherein the two drive wheels (22) are respectively disposed opposite to each other on the left and right sides of the bottom of the fuselage (10), and the front wheel (21) and the auxiliary steering wheel (23) are respectively connected to the front and rear ends of the bottom of the fuselage (10); The outer circumferential surface of the drive wheel (22) is provided with anti-slip soft rubber.

2. The toy food delivery cart according to claim 1, characterized in that, Also includes: A drive component (300) is disposed inside the body (10); the drive component (300) includes a plurality of gear drive mechanisms, each gear drive mechanism being connected to a drive wheel (22); The gear drive mechanism includes a motor (302) and a gear system (50). The motor (302) is connected to the gear system (50), and the gear system (50) is used to drive the drive wheel (22).

3. A toy food delivery cart according to claim 2, characterized in that, The gear system (50) includes a first gear (51), a second gear (52), a third gear (53), and a fourth gear (54); the first gear (51) is connected to the output shaft of the motor; the second gear (52) is connected to the third gear (53) and meshes with the fourth gear (54); the third gear (53) is fixed on the drive component (300) and meshes with the second gear (52) and the fourth gear (54).

4. A toy food delivery cart according to claim 1, characterized in that, Also includes: A shelf (18) is detachably connected to the body (10) and has several storage slots.

5. A toy food delivery cart according to claim 4, characterized in that, The storage plate (18) is inserted into the insertion slot (182) of the body (10).

6. A toy food delivery cart according to claim 5, characterized in that, The shelf (18) has a plug-in portion, which has a plurality of slots (180) spaced apart in sequence; In this case, a plurality of plugs (181) are provided in the plug slot of the body (10), the plugs (181) are adapted to the slots (180), the shelf (18) is plugged into the plug slot (182) of the body (10) through the plug part, and the plurality of plugs (181) are correspondingly inserted into the plurality of slots (180).

7. A toy food delivery cart according to claim 2, characterized in that, The body (10) is also provided with a gear mounting seat (16), and the drive component (300) is installed in the gear mounting seat (16); the gear mounting seat (16) is provided with a number of positioning blocks that cooperate with the drive component (300), and their shape matches the inner cavity at the bottom of the body (10).

8. A toy food delivery cart according to claim 1, characterized in that, The back of the body (10) is also provided with a light-transmitting plate (123), on which a pattern is provided. The body is also provided with an LED light source (112). The back of the body (10) is also provided with multiple recessed holes (124) connected to multiple recessed rods (125) on the light-transmitting plate (123). The back of the body (10) is also provided with several circular through holes (126). The light from the LED light source (112) passes through the circular through holes (126) and can reflect the pattern on the light-transmitting plate (123).

9. A toy food delivery cart according to claim 1, characterized in that, The body (10) is also equipped with a speaker (17), and the body (10) is equipped with a circular slot (122) that matches the shape of the speaker (17), and the body (10) is equipped with a sound outlet (111) that cooperates with the speaker (17).

10. A toy food delivery cart according to claim 1, characterized in that, The fuselage (10) is generally L-shaped.