Residual drug detection device for animal-derived food

By designing an animal-derived food drug residue detection device with an easily removable baffle and a self-cleaning function, the problem of drug residue in detection devices has been solved, and the detection efficiency and accuracy of results have been improved.

CN224247706UActive Publication Date: 2026-05-15GUANGZHOU HUAXIN TESTING TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
GUANGZHOU HUAXIN TESTING TECH CO LTD
Filing Date
2025-05-20
Publication Date
2026-05-15

AI Technical Summary

Technical Problem

Existing animal-derived food testing devices are prone to drug residues after prolonged use, affecting the accuracy of test results.

Method used

A drug residue detection device for animal-derived food was designed. The device enables easy disassembly of the baffle through the cooperation of a baffle, a limiting groove, a movable push block, a connecting plate, a rebound column, and a spring. It also enables self-cleaning through the cooperation of a feeding plate, a telescopic column, a slide rail, a sliding block, a drive motor, a cleaning roller, a water tank, and a nozzle.

Benefits of technology

It enables convenient replacement of baffles, improves detection efficiency, and ensures the cleanliness of the device through a self-cleaning function, thus ensuring the accuracy of the detection results.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a residual drug detection device for animal-derived food, which relates to the technical field of detection devices and comprises a drug detection equipment box, a detection chamber is arranged at one end of the top of the drug detection equipment box, and a glass cover is movably mounted at one end of the detection chamber. A control display screen is fixedly installed at the other end of the top of the medicine detection equipment box, a carrying plate is movably installed in the detection chamber, a feeding plate is movably installed at the top of the carrying plate, and limiting mechanisms are arranged on the two sides of one end of the feeding plate. Through mutual cooperation of the baffle, the limiting groove, the movable push block, the connecting plate, the springback column and the spring, the movable push block is manually pushed to move towards the outer side, so that the connecting plate is driven to move out of the limiting groove, the baffle loses the limiting acting force, the top plate and the baffle are pushed in cooperation with the springback force of the springback column and the spring, one end of the baffle is tilted, and the baffle is fixed. Workers can conveniently disassemble and replace the baffle, and better detection of the device is facilitated.
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Description

Technical Field

[0001] This utility model relates to the field of detection device technology, specifically to a drug residue detection device for animal-derived food. Background Technology

[0002] Animal-derived foods refer to all edible animal tissues, as well as eggs and milk, including meat and its products (including animal organs), aquatic animal products, etc. In recent years, food safety issues have gradually attracted people's attention, and drug residues in animal-derived foods are one of the important problems. Due to the overuse and abuse of drugs, drug residues have always existed in animal-derived foods in my country, which not only threaten people's lives and safety but also cause environmental pollution. Therefore, it is necessary to actively carry out drug residue testing in animal-derived foods.

[0003] In existing technical solutions, prolonged use of the sample carrier in the detection device can easily lead to drug residues, which is detrimental to drug detection and thus affects the detection results. Utility Model Content

[0004] The purpose of this invention is to provide a device for detecting drug residues in animal-derived foods, in order to solve the problems mentioned in the background art.

[0005] To solve the above-mentioned technical problems, the technical solution adopted by this utility model is as follows:

[0006] A drug residue detection device for animal-derived food includes a drug detection equipment box, a detection chamber is opened at one end of the top of the drug detection equipment box, a glass cover is movably installed at one end of the detection chamber, a control display screen is fixedly installed at the other end of the top of the drug detection equipment box, and a carrying plate is movably installed inside the detection chamber;

[0007] A feeding plate is movably mounted on the top of the carrying plate. Limiting mechanisms are provided on both sides of one end of the feeding plate. The limiting mechanism includes a movable push block, and a connecting plate is fixedly connected to one end of the bottom of the movable push block.

[0008] A feeding port is provided on one side of the inner wall of the testing chamber. An inspection module is provided at the top of the inner cavity of the feeding port. A cleaning mechanism is provided inside the feeding port. The cleaning mechanism includes a slide rail, a sliding block is movably connected to the top of the slide rail, and a cleaning roller is movably sleeved inside the sliding block.

[0009] A further improvement of this utility model is that: a baffle is detachably connected to the top of the feeding plate, and a limiting groove is opened on both sides of one end of the baffle. The inside of the limiting groove is used to engage with one side of the connecting plate.

[0010] By adopting the above technical solution, the feeding plate, the limiting groove and the connecting plate work together to achieve the function of moving and snapping, which facilitates the fixed installation of the baffle.

[0011] A further improvement of this utility model is that: a pneumatic rod is fixedly sleeved at one end of the carrying plate, and a cylinder is movably connected to the bottom of the pneumatic rod.

[0012] By adopting the above technical solution, the lifting function is achieved through the cooperation of the pneumatic rod and the cylinder.

[0013] A further improvement of this utility model is that a telescopic column is movably connected to one side of the feeding plate, and the other end of the telescopic column is fixedly installed on the inner wall of the testing chamber.

[0014] By adopting the above technical solution, the push detection function is achieved through the cooperation of the telescopic column and the feeding plate.

[0015] A further improvement of this utility model is that: a top plate is movably mounted on the surface of one end of the feeding plate, and two rebound columns are movably mounted on both ends of the bottom of the top plate. A spring is movably sleeved on the outer side of the rebound column, and the bottom of the rebound column is fixedly mounted on the top of the feeding plate.

[0016] By adopting the above technical solution, the function of rebound ejection is achieved through the cooperation of the top plate, the rebound column and the spring.

[0017] A further improvement of this utility model is that: one end of the cleaning roller extends to the side of the sliding block and is fixedly connected to a drive motor, and the other end of the cleaning roller is movably connected to a slider.

[0018] By employing the above technical solution, the cleaning roller and the drive motor work together to achieve the function of rotational cleaning.

[0019] A further improvement of this utility model is that a water tank is fixedly installed at the other end of the top of the feeding port, a water inlet pipe is fixedly connected to one side of the top of the water tank, and a nozzle is fixedly installed at the bottom of the water tank.

[0020] By adopting the above technical solution, the water tank, water pipe and nozzle work together to achieve the function of spray cleaning.

[0021] Due to the adoption of the above technical solution, the technological progress achieved by this utility model compared to the prior art is as follows:

[0022] 1. This utility model provides a drug residue detection device for animal-derived food. Through the cooperation of a baffle, a limiting groove, a movable push block, a connecting plate, a rebound column, and a spring, the movable push block is pushed outward by manual pushing, thereby moving the connecting plate out of the limiting groove, so that the baffle loses its limiting force. Then, with the rebound force of the rebound column and the spring, the top plate and the baffle are pushed up, so that one end of the baffle is tilted up, which makes it convenient for the staff to disassemble and replace the baffle, and facilitates better detection by the device.

[0023] 2. This utility model provides a drug residue detection device for animal-derived food. The device consists of a feeding plate, a telescopic column, a slide rail, a sliding block, a drive motor, a cleaning roller, a water tank, and a nozzle. After the test is completed, the telescopic column is electrically driven to extend and retract, pushing the feeding plate to the bottom of the cleaning roller. Then, the nozzle performs a spraying operation, and the drive motor drives the cleaning roller to rotate and clean, thereby achieving a self-cleaning function, which is beneficial for convenient detection. Attached Figure Description

[0024] Figure 1 This is a schematic diagram of the structure of this utility model;

[0025] Figure 2 This is a schematic diagram of the carrier plate structure of this utility model;

[0026] Figure 3 This is an enlarged view of point A in this utility model;

[0027] Figure 4 This is a schematic diagram of the top plate structure of this utility model;

[0028] Figure 5 This is a schematic diagram of the feeding port structure of this utility model.

[0029] In the diagram: 1. Drug testing equipment box; 2. Testing chamber; 3. Glass cover; 4. Control display screen; 5. Feed port; 6. Carrier plate; 7. Inspection module; 51. Slide rail; 52. Sliding block; 53. Drive motor; 54. Cleaning roller; 55. Water tank; 56. Nozzle; 57. Water pipe; 61. Baffle; 62. Limiting groove; 63. Air rod; 64. Cylinder; 65. Top plate; 66. Feed plate; 67. Telescopic column; 651. Rebound column; 652. Spring; 661. Moving push block; 662. Connecting plate. Detailed Implementation

[0030] The present invention will be further described in detail below with reference to embodiments:

[0031] Example 1

[0032] like Figure 1-5As shown, this utility model provides a drug residue detection device for animal-derived food, including a drug detection equipment box 1. A detection chamber 2 is opened at one end of the top of the drug detection equipment box 1. A glass cover 3 is movably installed at one end of the detection chamber 2. A control display screen 4 is fixedly installed at the other end of the top of the drug detection equipment box 1. A carrying plate 6 is movably installed inside the detection chamber 2. A feeding plate 66 is movably installed on the top of the carrying plate 6. Limiting mechanisms are provided on both sides of one end of the feeding plate 66. The limiting mechanism includes a movable push block 661. A connecting plate 662 is fixedly connected to one end of the bottom of the movable push block 661. A baffle 61 is detachably connected to the top of the feeding plate 66. Limiting grooves 62 are opened on both sides of one end of the baffle 61. The interior of the limiting grooves 62 is used to engage with one side of the connecting plate 662. An air rod 63 is fixedly sleeved on one end of the carrying plate 6. A cylinder 64 is movably connected to the bottom of the feed plate 66. A telescopic column 67 is movably connected to one side of the feed plate 66. The other end of the telescopic column 67 is fixedly installed on the inner wall of the testing chamber 2. A top plate 65 is movably installed on the surface of one end of the feed plate 66. Rebound columns 651 are movably installed at both ends of the bottom of the top plate 65. A spring 652 is movably sleeved on the outer side of the rebound column 651. The bottom of the rebound column 651 is fixedly installed on the top of the feed plate 66. By manually pushing the movable push blocks 661 on both sides to move outward, the connecting plate 662 is moved out of the limiting groove 62, so that the baffle 61 loses its locking and limiting force. Combined with the rebound force of the rebound column 651 and the spring 652, after the pressure is lost, the top plate 65 and the baffle 61 are pushed up, so that one end of the baffle 61 is raised, which makes it convenient for the staff to disassemble and replace the baffle 61, which is conducive to better testing.

[0033] Example 2

[0034] like Figure 1-5 As shown, based on Embodiment 1, this utility model provides a technical solution: Preferably, a pneumatic rod 63 is fixedly sleeved at one end of the carrying plate 6, and a cylinder 64 is movably connected to the bottom of the pneumatic rod 63. A telescopic column 67 is movably connected to one side of the feeding plate 66, and the other end of the telescopic column 67 is fixedly installed on the inner wall of the testing chamber 2. Through the cooperation of the pneumatic rod 63 and the cylinder 64, the pneumatic rod 63 is driven to move up and down, thereby driving the carrying plate 6 to move up and down for adjustment, which facilitates the loading and testing by the staff. Then, the telescopic column 67 is electrically driven to extend and retract, pushing the feeding plate 66 to the bottom of the inspection module 7 for testing, which is beneficial for convenient testing by the device.

[0035] Example 3

[0036] like Figure 1-5As shown, based on Embodiment 1, this utility model provides a technical solution: Preferably, a feeding port 5 is provided on one side of the inner wall of the testing chamber 2, an inspection module 7 is provided at the top of the inner cavity of the feeding port 5, and a cleaning mechanism is provided inside the feeding port 5. The cleaning mechanism includes a slide rail 51, a sliding block 52 is movably connected to the top of the slide rail 51, a cleaning roller 54 is movably sleeved inside the sliding block 52, one end of the cleaning roller 54 extends to the side of the sliding block 52 and is fixedly connected to a drive motor 53, and the other end of the cleaning roller 54 is movably connected to a slider. A water tank 55 is fixedly installed at the other end of the unit. A water inlet pipe 57 is fixedly connected to one side of the top of the water tank 55. A nozzle 56 is fixedly installed at the bottom of the water tank 55. The feeding plate 66 is pushed into the interior of the cleaning mechanism by the telescopic column 67. The cleaning roller 54 is driven by the drive motor 53 to rotate and clean. The cleaning liquid is injected into the water tank 55 by the water inlet pipe 57 and sprayed on the top of the baffle 61 by the nozzle 56. Then, the sliding block 52 is driven by the slide rail 51 to slide, which drives the cleaning roller 54 to move horizontally, further accelerating the cleaning efficiency.

[0037] The working principle of the drug residue detection device for this animal-derived food will be explained in detail below.

[0038] like Figure 1-5 As shown, by manually pushing the movable push blocks 661 on both sides outward, the connecting plate 662 is moved out of the limiting groove 62, causing the baffle 61 to lose its locking and limiting force. Combined with the rebound force of the return pin 651 and the spring 652, after the pressure is lost, the top plate 65 and the baffle 61 are pushed up, causing one end of the baffle 61 to tilt up, making it convenient for workers to disassemble and replace the baffle 61, which is beneficial for better detection. Then, through the cooperation of the air rod 63 and the air cylinder 64, the air rod 63 is driven to move up and down, thereby driving the load plate 6 to move up and down for adjustment, which is convenient for work. Personnel perform material loading and inspection, and then the telescopic column 67 is electrically driven to extend and retract, pushing the feeding plate 66 to the bottom of the inspection module 7 for inspection, which facilitates convenient inspection of the device. The telescopic column 67 pushes the feeding plate 66 into the interior of the cleaning mechanism, and the cleaning roller 54 is electrically driven by the drive motor 53 to rotate and clean. The water pipe 57 is used to inject cleaning fluid into the water tank 55, and the nozzle 56 sprays it on the top of the baffle 61. Then the sliding block 52 is electrically driven by the slide rail 51 to slide, driving the cleaning roller 54 to move horizontally, further accelerating the cleaning efficiency.

[0039] The present invention has been described in detail above. However, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, any modifications or improvements that do not depart from the spirit of the present invention are within the protection scope of the present invention.

Claims

1. A drug residue detection device for animal-derived food, comprising a drug detection equipment box (1), characterized in that: The drug testing equipment box (1) has a testing chamber (2) at one end of its top. A glass cover (3) is movably installed at one end of the testing chamber (2). A control display screen (4) is fixedly installed at the other end of the top of the drug testing equipment box (1). A loading plate (6) is movably installed inside the testing chamber (2). A feeding plate (66) is movably installed on the top of the loading plate (6). Limiting mechanisms are provided on both sides of one end of the feeding plate (66). The limiting mechanism includes a movable push block (661). A connecting plate (662) is fixedly connected to one end of the bottom of the movable push block (661). A feeding port (5) is provided on one side of the inner wall of the testing chamber (2). An inspection module (7) is provided at the top of the inner cavity of the feeding port (5). A cleaning mechanism is provided inside the feeding port (5). The cleaning mechanism includes a slide rail (51). A sliding block (52) is movably connected to the top of the slide rail (51). A cleaning roller (54) is movably sleeved inside the sliding block (52).

2. The drug residue detection device for animal-derived food according to claim 1, characterized in that: The top of the feeding plate (66) is detachably connected to a baffle (61). Limiting grooves (62) are provided on both sides of one end of the baffle (61). The inside of the limiting grooves (62) is used to engage with one side of the connecting plate (662).

3. The drug residue detection device for animal-derived food according to claim 1, characterized in that: One end of the carrier plate (6) is fixedly sleeved with a pneumatic rod (63), and the bottom of the pneumatic rod (63) is movably connected to a cylinder (64).

4. The drug residue detection device for animal-derived food according to claim 1, characterized in that: One side of the feeding plate (66) is movably connected to a telescopic column (67), and the other end of the telescopic column (67) is fixedly installed on the inner wall of the testing chamber (2).

5. The drug residue detection device for animal-derived food according to claim 1, characterized in that: A top plate (65) is movably mounted on the surface of one end of the feeding plate (66). Two rebound posts (651) are movably mounted on both ends of the bottom of the top plate (65). A spring (652) is movably sleeved on the outside of the rebound post (651). The bottom of the rebound post (651) is fixedly mounted on the top of the feeding plate (66).

6. The drug residue detection device for animal-derived food according to claim 1, characterized in that: One end of the cleaning roller (54) extends to the side of the sliding block (52) and is fixedly connected to a drive motor (53), while the other end of the cleaning roller (54) is movably connected to a slider.

7. The drug residue detection device for animal-derived food according to claim 1, characterized in that: A water tank (55) is fixedly installed at the other end of the top of the feed port (5), a water pipe (57) is fixedly connected to one side of the top of the water tank (55), and a nozzle (56) is fixedly installed at the bottom of the water tank (55).