Food quality sampling vehicle

By designing a multifunctional food quality sampling vehicle, the problem of the single function of existing sampling vehicles has been solved, and the sampling tools and samples have been stored in an orderly manner, improving work efficiency and the accuracy and safety of testing.

CN224241033UActive Publication Date: 2026-05-15ZHONGSHAN HOSPITAL FUDAN UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
ZHONGSHAN HOSPITAL FUDAN UNIV
Filing Date
2025-03-14
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

The existing canteen quality control sampling vehicle has a relatively limited function. Nutritionists cannot retrieve the required items in a timely manner during the sampling process, resulting in low work efficiency. Furthermore, the lack of a testing checklist increases the workload.

Method used

Design a multifunctional food quality sampling vehicle, which includes multiple partitions and drawers for categorizing and storing sampling tools and samples. It is equipped with an operating table, wheels, brakes, hooks, and removable garbage bags to improve space utilization and work efficiency, and reduce the risk of cross-contamination.

Benefits of technology

This system enables the orderly storage of sampling tools and samples, improves work efficiency, reduces the risk of cross-contamination, and ensures the accuracy and safety of food quality testing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of food quality detection, and discloses a food quality sampling vehicle, which is characterized in that a plurality of partition plates are arranged in a vehicle body to divide a cavity into a plurality of areas, so that the internal space of the vehicle body can be effectively utilized, different sampling tools or samples can be orderly stored, and the disorder among articles is avoided; the use efficiency of the space is improved; the cavity is divided into at least three areas, classified management can be carried out according to different sampling tools or samples, the working efficiency is improved, the risk of cross contamination can be reduced, and the accuracy and safety of food quality detection are ensured; besides, an opening is formed in one side face of the trolley body, an operator can conveniently and rapidly take required tools or samples in the working process, the included angle between the partition plate and the horizontal plane is not smaller than 0 degree, the operator can adjust the angle of the partition plate according to actual needs, and therefore the placement requirements of different types of tools or samples are met; therefore, the sampling vehicle can adapt to various sampling scenes and requirements.
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Description

Technical Field

[0001] This utility model relates to the field of mechanical testing equipment technology, and specifically to a food quality sampling vehicle. Background Technology

[0002] Hospital canteens must provide personalized catering services based on patients' different conditions, dietary habits, and nutritional needs to meet the diverse requirements of each patient. Hospital canteens must strictly adhere to food safety regulations to ensure the quality and reliability of food. Strict food safety management measures must be implemented in all aspects of food procurement, storage, processing, and preparation to guarantee patients' dietary safety. A professional team of nutritionists develops scientifically sound meal plans to ensure that patients and medical staff receive sufficient nutritional support, providing personalized nutritional guidance to help patients better recover their health.

[0003] In addition, quality control, quality inspection and sample retention of meals are important tasks for hospital nutritionists. Nutritionists need to take samples during the sampling process, record the data of the retained samples, seal them and label them. The existing canteen quality control sampling vehicle has a relatively simple function, and nutritionists cannot get the required items in time, resulting in low work efficiency. At the same time, the vehicle is not equipped with the test checklist required for the work, which increases the workload of nutritionists.

[0004] Therefore, there is a lack of a food quality sampling vehicle in the existing technology that can accommodate a variety of tools. Utility Model Content

[0005] The purpose of this invention is to overcome the problem that the existing canteen quality control sampling vehicles have relatively limited functions, and to provide a multifunctional food quality sampling vehicle. This vehicle has multiple spaces for storing various tools and items, which can meet the needs of nutritionists for food quality sampling.

[0006] To achieve the above objectives, this utility model provides a food quality sampling vehicle, including a vehicle body with an interior cavity. The vehicle also includes at least two partitions, which are sequentially arranged within the cavity along the height direction of the vehicle body. These partitions divide the cavity into at least three regions along the height direction. One side of the vehicle body has an opening.

[0007] Wherein, along the direction close to the opening, the angle between the partition and the horizontal plane is not less than 0°, and the at least three areas are used to place different sampling tools or samples.

[0008] Preferably, the food quality sampling vehicle further includes at least two drawers, the receiving cavities of the at least two drawers are disposed inside the vehicle body, the pull-out portion of the drawers is flush with the side of the vehicle body, and the different receiving cavities are used to hold different samples.

[0009] Preferably, the drawer is located above and / or below the cavity; or,

[0010] At least two of the drawers are located on the same horizontal plane or arranged sequentially along the height direction.

[0011] Preferably, the partitions are arranged horizontally or vertically, and at least two of the partitions are parallel to each other.

[0012] Preferably, the food quality sampling vehicle further includes a baffle, which is disposed on the side of the partition and located on one side of the opening, and the plane of the baffle is perpendicular to the plane of the partition.

[0013] Preferably, the food quality sampling vehicle further includes an operating table, which is located above the vehicle body and fits against the upper surface of the vehicle body. The operating table is provided with a tool placement area, a label printing area and an electronic display screen. The tool placement area and the label printing area are arranged sequentially along the left and right directions of the operating table, and the electronic display screen is located on the side of the operating table and faces the operator.

[0014] Preferably, the tool placement area includes sampling forceps, sampling spoon and sampling needle, and the panel of the operating table is also provided with magnetic adsorption or buckle, and the sampling forceps, sampling spoon and sampling needle are fixed on the operating table by the magnetic adsorption or buckle.

[0015] Preferably, the food quality sampling vehicle further includes at least four wheels, which are disposed below the vehicle body, rotatably connected to the vehicle body, and distributed at the four corners of the lower surface of the vehicle body;

[0016] The food quality sampling vehicle also includes an auxiliary brake, which is rotatably connected to the wheel and has a friction surface that rubs against the wheel to stop the wheel from rotating.

[0017] Preferably, the food quality sampling vehicle further includes a hook, which is disposed on the side of the vehicle body.

[0018] Preferably, the food quality sampling vehicle further includes a detachable garbage bag, which is disposed on the side of the vehicle body and located below the hook.

[0019] The above technical solution, by setting multiple partitions inside the vehicle body to divide the cavity into multiple areas, effectively utilizes the vehicle's internal space, allowing for the orderly storage of different sampling tools or samples, avoiding clutter and improving space utilization efficiency. Dividing the cavity into at least three areas allows for categorized management based on different sampling tools or samples, improving work efficiency and reducing the risk of cross-contamination, ensuring the accuracy and safety of food quality testing. Furthermore, an opening on one side of the vehicle body facilitates quick access to necessary tools or samples during operation. The angle between the partitions and the horizontal plane is not less than 0°, allowing the operator to adjust the partition angle as needed to accommodate different types of tools or samples, enabling the sampling vehicle to adapt to various sampling scenarios and requirements. Attached Figure Description

[0020] Figure 1 This is a three-dimensional structural diagram of an embodiment of the present utility model.

[0021] Explanation of reference numerals in the attached figures

[0022] 100 Food Quality Sampling Vehicle

[0023] 1 control panel

[0024] 2 drawers

[0025] 3 baffles

[0026] 4 partitions

[0027] 5 wheels

[0028] 6 hooks

[0029] 7 Detachable garbage bags

[0030] 8 Assist Braking Detailed Implementation

[0031] In this invention, unless otherwise stated, the directional terms such as "up," "down," "left," and "right" refer to the following: "up" refers to the position relative to the top or above of the vehicle body; "down" refers to the position relative to the bottom or below of the vehicle body; "left" refers to the left side when viewed from the front; and "right" refers to the right side when viewed from the front. "Inner" refers to the space or cavity inside the vehicle body; "outer" refers to the space or environment outside the vehicle body. "Near" refers to a position close to the observer or user; and "far" refers to a position far from the observer or user.

[0032] This utility model provides a food quality sampling vehicle 100, such as... Figure 1As shown, the vehicle includes a body with a cavity inside. The food quality sampling vehicle 100 also includes at least two partitions 4, which are arranged sequentially in the cavity along the height direction of the vehicle. The at least two partitions 4 divide the cavity into at least three areas along the height direction. One side of the vehicle has an opening. Along the direction close to the opening, the angle between the partition 4 and the horizontal plane is not less than 0°. The at least three areas are used to place different sampling tools or samples.

[0033] By installing at least two partitions 4 inside the vehicle body, the cavity is divided into multiple areas, effectively utilizing the internal space of the vehicle. This allows for the orderly storage of different sampling tools or samples, avoiding clutter and improving space utilization efficiency. Dividing the cavity into at least three areas allows for categorized management based on different sampling tools or samples, improving work efficiency and reducing the risk of cross-contamination, ensuring the accuracy and safety of food quality testing. Furthermore, an opening on one side of the vehicle body facilitates quick access to necessary tools or samples during operation. The angle between the partitions 4 and the horizontal plane is not less than 0°, allowing the operator to adjust the angle of the partitions 4 as needed to accommodate different types of tools or samples, enabling the sampling vehicle to adapt to various sampling scenarios and requirements.

[0034] In a preferred embodiment, the food quality sampling cart 100 further includes at least two drawers 2, with the receiving cavities of the at least two drawers 2 disposed inside the cart body. The pull-out portion of the drawer 2 is flush with the side of the cart body, and different receiving cavities are used to hold different samples. Multiple drawers 2 allow different samples to be stored orderly in their respective receiving cavities, avoiding sample confusion and cross-contamination, and facilitating classification and management. The pull-out portion of the drawer 2 being flush with the side of the cart body allows users to easily remove or return sampling tools or sampled samples during use, improving operational convenience, reducing time spent retrieving samples, and increasing work efficiency. Furthermore, by storing samples in the drawers 2, the time samples are exposed to the external environment can be effectively reduced, lowering the risk of sample contamination and further enhancing the safety of food quality testing.

[0035] In a preferred embodiment, each sample storage box is equipped with an independent temperature control module, which can adjust the temperature according to the sample requirements. Three independent drawer-type storage boxes (200mm × 150mm × 100mm each) are installed inside the vehicle body. Each layer is made of PP plastic and has removable partitions (30-50mm spacing) inside. The cooling unit can use a semiconductor cooling chip (model TEC1-12706, cooling power 60W) in conjunction with a cooling fan, and a PID controller stabilizes the temperature at 4±1℃. The heating unit can be achieved by embedding a silicone heating film within the insulation layer.

[0036] The sample storage box is labeled with a QR code for recording sample information. The side of the vehicle is equipped with an ultraviolet disinfection lamp and an alcohol spray device for disinfecting sampling tools and workbench 1 to prevent cross-contamination. A 200ml alcohol reservoir (made of medical-grade PET material) is installed below workbench 1, connected to a stainless steel spray head via a miniature air pump (operating voltage 12V, flow rate 0.5L / min), covering the entire tool placement area.

[0037] In a preferred embodiment, drawer 2 is positioned above and / or below the cavity; positioning drawer 2 above and / or below the cavity allows for flexible use of the vehicle's internal space. This enables the sampling vehicle to optimize its space configuration according to actual needs, adapting to different working environments and usage scenarios. The location of drawer 2 can be rationally arranged according to the user's height and working habits. For example, positioning drawer 2 above or below allows users of different heights to easily access the required samples or operating tools.

[0038] In a preferred embodiment, at least two drawers 2 are located on the same horizontal plane or arranged sequentially along the vertical direction. Drawers 2 at different heights or on the same horizontal plane can be used to store different types of samples, facilitating classification and management. Alternatively, being on the same horizontal plane allows for flexible utilization of the vehicle's interior space; if at least two drawers 2 are on the same horizontal plane, users can retrieve samples more quickly, reducing the frequency of vertical movement and thus improving work efficiency.

[0039] In a preferred embodiment, the partitions 4 are arranged horizontally or vertically, with at least two partitions 4 parallel to each other. This enhances the stability of the internal structure of the sampling vehicle, effectively supporting different types of samples or tools, reducing the possibility of tilting or collapse during movement, and ensuring the safe storage of samples. The parallel partitions 4 clearly divide the cavity into multiple areas, allowing different samples or tools to be stored in an orderly manner, helping users quickly identify and retrieve the required items, thus improving work efficiency. By setting parallel partitions 4, samples can be rationally classified and stored according to their type, size, or purpose. This classification management not only improves the convenience of storage and retrieval but also effectively reduces the risk of cross-contamination, ensuring the accuracy and safety of food quality testing.

[0040] The horizontally or vertically arranged partitions 4 can flexibly adapt to the storage needs of samples or tools of different sizes and shapes. Users can adjust the storage method according to actual needs to make full use of the cavity space.

[0041] In a preferred embodiment, the food quality sampling vehicle 100 further includes a baffle 3, which is disposed on the side of the partition 4 and located on the side of the opening. The plane of the baffle 3 is perpendicular to the plane of the partition 4. First, this effectively prevents accidental leakage of samples stored in the sampling vehicle during movement or operation. This design enhances sample safety, ensuring that samples do not fall or become contaminated during transportation and use. Second, the presence of the baffle 3 provides additional support for the partition 4, enhancing the structural stability of the entire sampling vehicle. This stability helps maintain the verticality of the partition 4, ensuring that samples or tools in different areas can be safely stored, reducing the risk of tilting or collapse. Third, the baffle 3 effectively isolates the opening from the internal storage area, reducing the impact of the external environment on the samples and lowering the risk of cross-contamination. This design helps maintain the purity of the samples, ensuring the accuracy of food quality testing. Fourth, the baffle 3 allows for more rational use of the internal space of the sampling vehicle.

[0042] In a preferred embodiment, the food quality sampling vehicle 100 further includes an operating table 1, which is positioned above the vehicle body and conforms to its upper surface. The operating table 1 includes a tool storage area, a label printing area, and an electronic display screen. The tool storage area and label printing area are arranged sequentially along the left-right direction of the operating table 1, while the electronic display screen is positioned on the side of the operating table 1 and faces the operator. The clear division of functional areas on the operating table 1 allows users to quickly locate the necessary tools and equipment. The tool storage area can store commonly used sampling tools, the label printing area facilitates quick label printing, and the electronic display screen provides real-time information and operational guidance, improving work efficiency. The sequential arrangement of the tool storage area and label printing area along the left-right direction of the operating table 1 allows users to smoothly access and print tools during operation, reducing search and operation time, optimizing the workflow, and enabling users to complete tasks more efficiently. The electronic display screen, positioned on the side of the operating table 1 and facing the operator, allows users to easily view information and operational instructions in real time.

[0043] In a preferred embodiment, the tool placement area includes sampling forceps, a sampling spoon, and a sampling needle. The control panel 1 is also equipped with magnetic adsorption components or clips, which secure the sampling forceps, sampling spoon, and sampling needle to the control panel 1. Securing the sampling forceps, sampling spoon, and sampling needle to the control panel 1 using magnetic adsorption components or clips effectively prevents the tools from accidentally falling off during movement or operation, ensuring that the user can easily access them without worrying about loss or damage. The design of the magnetic adsorption components or clips allows users to quickly and conveniently access the required tools. Users can easily remove the tools with a simple pull, making operation simple and quick, and improving work efficiency.

[0044] Fixing tools to workbench 1 effectively saves space, preventing them from occupying too much space on the work surface, keeping workbench 1 organized, and reducing the time spent searching for tools. The tool placement area design allows users to find all commonly used sampling tools in one centralized location, reducing the time spent searching for tools in different places, thereby improving overall work efficiency. By fixing tools to workbench 1, users can more easily perform cleaning and maintenance work, and tools are less likely to fall out. The design of magnetic adsorption or clip-on components makes tool replacement and adjustment more flexible, allowing operators to change or adjust the position of tools at any time according to actual needs, adapting to different work requirements.

[0045] Neodymium iron boron magnets (10mm×5mm, magnetic force grade N52) are embedded in the sampling tool placement area of ​​the operating table 1, arranged at 50mm intervals, to attract sampling forceps and sampling spoons (with iron plates embedded in the tool handles). Alternatively, a quick-change structure can be used; for example, the sampling needle can employ a snap-on design, with an 8mm diameter ABS plastic snap-on on the tool handle that matches the corresponding slot on the operating table 1.

[0046] In a preferred embodiment, the food quality sampling vehicle 100 also includes four wheels 5, such as... Figure 1As shown, wheels 5 are located below the vehicle body, rotatably connected to the vehicle body, and distributed at the four corners of the lower surface of the vehicle body. The food quality sampling vehicle 100 also includes an auxiliary brake 8, which is rotatably connected to the wheels 5. The auxiliary brake 8 has a friction surface that rubs against the wheels 5 to stop their rotation. Positioning the wheels 5 below the vehicle body and distributing them at the four corners of the lower surface provides good stability and flexibility. This design allows the sampling vehicle to maintain balance during movement, reducing the risk of tilting or tipping over and ensuring safe use under various ground conditions. The four-wheel design makes the food quality sampling vehicle 100 easier to move in different environments. Users can easily push or pull the sampling vehicle, reducing the difficulty of moving it in places such as hospitals or laboratories and improving work efficiency. The auxiliary brake 8 provides additional safety for the sampling vehicle. Through the contact between the friction surface and the wheels 5, the auxiliary brake 8 can effectively stop the rotation of the wheels 5, preventing the sampling vehicle from accidentally sliding on uneven ground or slopes, ensuring user safety during operation. The design of the auxiliary brake 8 can quickly stop the movement of the sampling vehicle when needed, enhancing operational safety. When users are performing sampling or other operations, the brakes ensure the sampling vehicle remains stable, reducing the risk of accidents. The auxiliary brake 8 design makes it easier for users to control the rotation of the wheels 5 while using the sampling vehicle. Braking is achieved with simple operation, reducing complex control of the wheels 5 during movement and improving operational convenience. The four wheels 5 design allows the sampling vehicle to adapt to different ground conditions, including flat and slightly uneven surfaces. The auxiliary brake 8 also makes it safer and more reliable to use in various environments. The wheels 5 and auxiliary brake 8 can be made of wear-resistant materials to enhance their durability, ensuring good performance even during long-term use and reducing maintenance costs.

[0047] The vehicle body is made of lightweight aluminum alloy profiles, with 6061-T6 being the preferred material. The main frame is welded from 30mm×30mm square aluminum tubes. The vehicle body is designed to be 800mm long × 500mm wide × 1000mm high. Four omnidirectional wheels with braking function are installed at the four corners of the bottom of the vehicle body. The diameter of the omnidirectional wheels is 100mm, and the load-bearing capacity is 50kg each. They are fixed to the aluminum base plate with bolts. The aluminum base plate is 3mm thick.

[0048] An aluminum workbench 1 is welded to the top of the vehicle body. The workbench 1 measures 600mm × 400mm and is covered with food-grade 304 stainless steel plate. The stainless steel is 1.5mm thick and the edges are bent by 5mm to prevent liquid leakage.

[0049] In a preferred embodiment, the food quality sampling vehicle 100 also includes hooks 6, which are disposed on the side of the vehicle. The hooks 6 provide users with additional storage space, allowing for the convenient hanging of various tools, equipment, or other items, such as gloves, aprons, and disinfectants. This makes the sampling vehicle more flexible in use, allowing users to access the hung items as needed, thus improving work efficiency. The design of the hooks 6 enables users to quickly and easily access the hung items. Compared to tools placed inside the vehicle, hung items are more easily accessible, reducing search and retrieval time and improving work efficiency. By hanging frequently used tools or items on the hooks 6, users can quickly obtain the necessary auxiliary tools during food quality testing, optimizing the workflow and reducing movement between different locations. The use of hooks 6 helps users hang tools and items in an orderly manner, avoiding the clutter of items piled up inside the vehicle or on the workbench, reducing the risk of accidental collisions or falls during work, and improving operational safety.

[0050] The design of hook 6 allows users to change or adjust the suspended items at any time according to actual needs, adapting to different work requirements.

[0051] In a preferred embodiment, the food quality sampling vehicle 100 also includes a removable garbage bag 7, which is disposed on the side of the vehicle and below the hook 6. The removable garbage bag 7 provides users with a convenient waste disposal solution. During food quality testing or other operations, users can easily place any waste or garbage generated into the garbage bag, maintaining a clean working environment. By placing the garbage bag on the side of the vehicle and below the hook 6, space can be effectively utilized, preventing garbage from accumulating in the working area.

[0052] Removable garbage bags allow users to easily replace them. When a garbage bag is full, users simply remove it and replace it with a new one, reducing hassle during the cleaning process and improving work efficiency. The removable garbage bags also effectively isolate waste, reducing the risk of cross-contamination and ensuring the safety of food quality testing.

[0053] In a preferred embodiment, the sampling vehicle also includes an onboard refrigerator, which is installed inside the baffle 3. The onboard refrigerator effectively maintains a low-temperature environment for the food samples, preventing spoilage during transportation and storage, and ensuring the quality and safety of the samples.

[0054] The vehicle-mounted refrigerator provides users with a dedicated storage space for refrigerated samples or reagents, allowing for convenient access during food quality testing. Positioning the refrigerator inside baffle 3 effectively utilizes the sampling vehicle's space, avoiding the need for additional floor space and resulting in a more rational overall layout and improved space utilization. The refrigerator design reduces sample exposure during transport, lowering the risk of cross-contamination and ensuring the safety of food quality testing. Furthermore, the refrigerator allows the sampling vehicle to adapt to different sample storage needs, especially for refrigerated foods or reagents, enhancing its versatility.

[0055] The preferred embodiments of the present invention have been described in detail above with reference to the accompanying drawings; however, the present invention is not limited thereto. Within the scope of the technical concept of the present invention, various simple modifications can be made to the technical solution of the present invention. To avoid unnecessary repetition, the present invention will not describe the various possible combinations separately. However, these simple modifications and combinations should also be considered as the content disclosed in the present invention and are all within the protection scope of the present invention.

Claims

1. A food quality sampling vehicle (100), comprising a body, characterized in that, The vehicle body has an interior cavity, and the food quality sampling vehicle (100) further includes at least two partitions (4). The at least two partitions (4) are sequentially arranged in the cavity along the height direction of the vehicle body, and the at least two partitions (4) divide the cavity into at least three regions along the height direction. One side of the vehicle body has an opening. Wherein, along the direction close to the opening, the angle between the partition (4) and the horizontal plane is not less than 0°, and the at least three areas are used to place different sampling tools or samples; The food quality sampling vehicle (100) also includes an operating table (1), which is located above the vehicle body and fits against the upper surface of the vehicle body. The operating table (1) is provided with a tool placement area, a label printing area and an electronic display screen. The tool placement area is used to store sampling forceps, sampling spoons and sampling needles. The panel of the operating table (1) is also provided with magnetic adsorption components or fasteners. The sampling forceps, the sampling spoons and the sampling needles are fixed on the operating table by the magnetic adsorption components or the fasteners. The side of the vehicle body is provided with an ultraviolet disinfection lamp and an alcohol spray device. The spray range of the alcohol spray device covers the tool placement area.

2. The food quality sampling vehicle (100) according to claim 1, characterized in that, The food quality sampling vehicle (100) also includes at least two drawers (2), the accommodating cavities of the at least two drawers (2) are disposed inside the vehicle body, the pull-out portion of the drawers (2) is flush with the side of the vehicle body, and the different accommodating cavities are used to accommodate different samples.

3. The food quality sampling vehicle (100) as described in claim 2, characterized in that, The drawer (2) is located above and / or below the cavity; or, At least two of the drawers (2) are located on the same horizontal plane or arranged sequentially along the height direction.

4. The food quality sampling vehicle (100) as described in claim 1 or 2, characterized in that, The partition (4) is arranged horizontally or vertically, and at least two of the partitions (4) are parallel to each other.

5. The food quality sampling vehicle (100) according to claim 1, characterized in that, The food quality sampling vehicle (100) also includes a baffle (3), which is disposed on the side of the partition (4) and is located on one side of the opening. The plane of the baffle (3) is perpendicular to the plane of the partition (4).

6. The food quality sampling vehicle (100) according to claim 1, characterized in that, The tool placement area and the label printing area are arranged sequentially along the left and right sides of the workbench, and the electronic display screen is located on the side of the workbench and faces the operator.

7. The food quality sampling vehicle (100) according to claim 1, characterized in that, The food quality sampling vehicle (100) also includes at least four wheels (5), which are located below the vehicle body and are rotatably connected to the vehicle body. The wheels (5) are distributed at the four corners of the lower surface of the vehicle body. The food quality sampling vehicle (100) also includes an auxiliary brake (8), which is rotatably connected to the wheel (5). The auxiliary brake (8) has a friction surface that rubs against the wheel (5) to stop the wheel (5) from rotating.

8. The food quality sampling vehicle (100) according to claim 1, characterized in that, The food quality sampling vehicle (100) also includes a hook (6), which is disposed on the side of the vehicle body.

9. The food quality sampling vehicle (100) according to claim 8, characterized in that, The food quality sampling vehicle (100) also includes a detachable garbage bag (7), which is located on the side of the vehicle body and below the hook (6).