Detection device for production and processing of hindered phenol antioxidants

By designing an antioxidant detection device consisting of a water tank, a rinser, and a clamping mechanism, the problem of residual substances in the test cup interfering with the test results was solved, and automated cleaning and high-precision detection of the test cup were achieved.

CN223308182UActive Publication Date: 2025-09-05SHANDONG LINYI SUNNY WEALTH CHEM CO LTD
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Patent Information

Application Number
CN202422025922.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-21
Publication Date
2025-09-05
Estimated Expiration
2034-08-21

AI Technical Summary

Technical Problem

Existing antioxidant detection devices require cleaning the test cup before testing to remove residual substances, ensure the accuracy and independence of the test, and avoid cross contamination.

Method used

A detection device consisting of a water tank, a rinser, an electric telescopic rod, a drain plate and a detector body was designed. The automatic cleaning and clamping mechanism ensures the cleanliness and stability of the test cup and reduces external environmental interference.

Benefits of technology

The automatic cleaning of the test cup is realized to ensure the accuracy and independence of each test, improve the detection precision and automation level, and protect the integrity of the sample.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a detection device for production and processing of hindered phenol antioxidants, which relates to the technical field of antioxidant production and comprises a detection box, a water tank is fixedly connected to one side of the top wall of the detection box, a water inlet is communicated with one side of the top wall of the water tank, and a telescopic pipe is mounted on one side of the inner wall of the water tank. One side of the surface wall of the telescopic pipe is provided with a flusher, one side of the surface wall of the water tank is provided with two electric telescopic rods, the output ends of the two electric telescopic rods are fixedly connected with a splash-proof box, one side of the bottom wall of the detection box is fixedly connected with a sewage tank, one side of the top wall of the sewage tank is fixedly connected with a draining plate, and a test cup is placed on the draining plate. Cleaning liquid is added into the water tank through the water inlet, under the action of the electric telescopic rod, the splash-proof box and the flusher are lowered to flush the test cup, then it is ensured that the test cup is clean before and after each time of detection, residual substances are removed, cross contamination is reduced, and the accuracy and independence of each time of detection are ensured.
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Description

Technical Field

[0001] The utility model relates to the technical field of antioxidant production, in particular to a detection device for the production and processing of hindered phenol antioxidants. Background Art

[0002] Hindered phenolic antioxidants are an important type of antioxidant additive, widely used in industrial fields such as plastics, rubber, lubricants, fuels and food packaging materials to prevent or delay the degradation and aging of materials due to oxidation. The core structural feature of this type of antioxidant is the presence of a phenolic hydroxyl (-OH) group, and this phenolic hydroxyl group is usually "blocked" by a bulky alkyl or aromatic group. This structural design can effectively improve the stability and efficacy of the antioxidant. Hindered phenolic antioxidants work by capturing and stabilizing free radicals. During the oxidation process of the material, highly active free radicals are generated. These free radicals will attack the molecular chain, causing the polymer chain to break or cross-link, thereby causing the material performance to deteriorate.

[0003] However, the existing antioxidant detection device requires the test cup to be cleaned before testing. Since the detection of hindered phenolic antioxidants often requires extremely high precision, the residues of antioxidants from different batches or types may interfere with the analysis results of subsequent samples. It is necessary to remove the residual substances inside the test cup to reduce cross-contamination and ensure the accuracy and independence of each test. Therefore, it is necessary to propose a new detection device for the production and processing of hindered phenolic antioxidants. Utility Model Content

[0004] The purpose of the utility model is to solve the problem that antioxidant residues from different batches or different types may interfere with the analysis results of subsequent samples, and it is necessary to remove the residual substances inside the test cup to ensure the accuracy and independence of each test. A detection device for the production and processing of hindered phenolic antioxidants is proposed.

[0005] In order to achieve the above-mentioned purpose, the utility model adopts the following technical scheme: a detection device for the production and processing of hindered phenol antioxidants, comprising a detection box, a water tank is fastened to one side of the top wall of the detection box, a water inlet is connected to one side of the top wall of the water tank, a telescopic tube is installed on one side of the inner wall of the water tank, a flusher is installed on one side of the surface wall of the telescopic tube, two electric telescopic rods are installed on one side of the surface wall of the water tank, the output ends of the two electric telescopic rods are fastened to a splash-proof box, a sewage tank is fastened to one side of the bottom wall of the detection box, a drain plate is fastened to one side of the top wall of the sewage tank, a water tank is movably connected to one side of the inner wall of the sewage tank, and a box door is hinged on one side of the surface wall of the sewage tank.

[0006] Preferably, a sealing door is hinged on one side of the outer wall of the detection box, and a detector body is installed on one side of the inner wall of the detection box.

[0007] Preferably, a working box is fastened to one side of the outer wall of the detection box, and an electric push rod is installed on one side of the inner wall of the working box.

[0008] Preferably, the output end of the electric push rod is fastened to an operation box, and one side of the bottom wall of the operation box is slidably connected to two guide rails.

[0009] Preferably, a cylinder is installed on one side of the inner wall of the operation box, and a gear is rotatably connected to the bottom side of the inner wall of the operation box.

[0010] Preferably, two racks are meshedly connected to the peripheral side of the surface wall of the gear, one side of the rack is fastened to the output end of the cylinder, and one side of the top wall of the two racks is fastened to a clamping plate.

[0011] Preferably, a test cup is movably connected to one side of the top wall of the operation box, and two movable grooves are provided on one side of the top wall of the operation box.

[0012] Compared with the prior art, the advantages and positive effects of the present invention are:

[0013] 1. In this utility model, the test cup is placed on the drain plate, and cleaning liquid is added to the inside of the water tank through the water inlet. Under the action of the electric telescopic rod, the splash box is lowered, and the rinser rinses the test cup, thereby ensuring the cleanliness of the test cup before and after each test, removing residual substances, reducing cross contamination, and ensuring the accuracy and independence of each test.

[0014] 2. In the present invention, under the action of the gear, the output end of the cylinder moves to drive the rack to move, and the rack movement drives the clamping plate to move. Under the action of the clamping plate, the test cup is tightly clamped, and then under the action of the electric push rod, the test cup is driven into the interior of the detection box for detection operation, thereby improving the degree of automation of the detection device. At the same time, detection inside the detection box can reduce interference from the external environment, improve detection accuracy, and protect the integrity of the sample. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of a detection device for the production and processing of hindered phenol antioxidants proposed in the utility model;

[0016] Figure 2 The utility model provides a schematic diagram of the internal cross-sectional structure of a detection device for the production and processing of hindered phenol antioxidants;

[0017] Figure 3 The utility model provides a schematic diagram of the internal cross-sectional structure of a detection device for the production and processing of hindered phenol antioxidants;

[0018] Figure 4The utility model provides a partial structural diagram of a detection device for the production and processing of hindered phenol antioxidants.

[0019] Legend: 1. Detection box; 2. Water tank; 3. Water inlet; 4. Telescopic tube; 5. Splash-proof box; 6. Rinse; 7. Electric telescopic rod; 8. Drain plate; 9. Water tank; 10. Sewage tank; 11. Box door; 12. Sealing door; 13. Detector body; 14. Operation box; 15. Cylinder; 16. Gear; 17. Rack; 18. Clamp; 19. Movable slot; 20. Test cup; 21. Guide rail; 22. Electric push rod; 23. Working box. DETAILED DESCRIPTION

[0020] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0021] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0022] Example 1: Figures 1-4 As shown, the utility model provides a technical solution: a detection device for the production and processing of hindered phenol antioxidants, comprising a detection box 1, a water tank 2 is fastened to one side of the top wall of the detection box 1, a water tank 2 is connected to one side of the top wall of the water tank 2, a water inlet 3 is connected to one side of the inner wall of the water tank 2, a telescopic tube 4 is installed on one side of the surface wall of the telescopic tube 4, a flusher 6 is installed on one side of the surface wall of the water tank 2, two electric telescopic rods 7 are installed on one side of the surface wall of the water tank 2, the output ends of the two electric telescopic rods 7 are fastened to a splash-proof box 5, a sewage tank 10 is fastened to one side of the bottom wall of the detection box 1, a drain plate 8 is fastened to one side of the top wall of the sewage tank 10, a water tank 9 is movably connected to one side of the inner wall of the sewage tank 10, and a box door 11 is hinged on one side of the surface wall of the sewage tank 10.

[0023] In this embodiment, after the user has used the test cup 20, the user places the test cup 20 on the drain plate 8, adds cleaning liquid to the inside of the water tank 2 through the water inlet 3, and starts the electric telescopic rod 7 installed on the water tank 2. The output end of the electric telescopic rod 7 moves to drive the splash box 5 to descend, and one end of the telescopic tube 4 can extend along with the splash box 5. After the splash box 5 covers the test cup 20, the flusher 6 is started. Under the action of the telescopic tube 4, the cleaning liquid inside the water tank 2 is sprayed out through the flusher 6 to flush the test cup 20. The sewage after flushing falls into the water tank 9 inside the sewage tank 10 through the drain plate 8. Then the user can open the box door 11 and take out the water tank 9 for unified treatment, thereby ensuring the cleaning of the test cup 20 before and after each test, removing residual substances, reducing cross contamination, and ensuring the accuracy and independence of each test.

[0024] Example 2: Figures 1-4 As shown, a sealed door 12 is hinged on one side of the surface wall of the detection box 1, a detector body 13 is installed on one side of the inner wall of the detection box 1, a working box 23 is fastened to one side of the surface wall of the detection box 1, an electric push rod 22 is installed on one side of the inner wall of the working box 23, the output end of the electric push rod 22 is fastened to the operation box 14, two guide rails 21 are slidably connected to one side of the bottom wall of the operation box 14, a cylinder 15 is installed on one side of the inner wall of the operation box 14, a gear 16 is rotatably connected to the bottom side of the inner wall of the operation box 14, two racks 17 are meshedly connected on the circumferential side of the surface wall of the gear 16, one side of the rack 17 is fastened to the output end of the cylinder 15, one side of the top wall of the two racks 17 is fastened with a splint 18, a test cup 20 is movably connected to one side of the top wall of the operation box 14, and two movable slots 19 are provided on one side of the top wall of the operation box 14.

[0025] In this embodiment, the sealed door 12 is opened, and the electric push rod 22 installed inside the working box 23 is activated. Under the action of the guide rail 21, the output end of the electric push rod 22 moves, driving the operation box 14 to move on the guide rail 21, and then driving the operation box 14 to the edge of the detection box 1, so that the user can place the test cup 20 on the operation box 14. The cylinder 15 is activated, and the output end of the cylinder 15 moves, driving the rack 17 on one side to move. The movement of the rack 17 on one side drives the gear 16 to rotate. The rotation of the gear 16 drives the rack 17 on the other side to move. Under the action of the movable groove 19, the two racks 17 move, driving the two clamping plates 18 to move inside the movable groove 19. The two clamping plates 18 clamp the test cup 20, preventing the test cup 20 from shaking when entering the detection box 1. After entering the detection box 1, the test operation is performed by the detector body 13, thereby improving the automation level of the detection device. At the same time, testing inside the detection box 1 can reduce external environmental interference, improve detection accuracy, and protect the integrity of the sample.

[0026] The working principle of this embodiment is as follows: when in use, first connect the power supply, open the sealing door 12, start the electric push rod 22, the output end of the electric push rod 22 moves to drive the operation box 14 to move on the guide rail 21, and then drives the operation box 14 to move to the edge of the detection box 1, so that the user can place the test cup 20 on the operation box 14. Then, start the cylinder 15, the output end of the cylinder 15 moves to drive the rack 17 on one side to move, the movement of the rack 17 on one side drives the gear 16 to rotate, the rotation of the gear 16 drives the rack 17 on the other side to move, the movement of the two racks 17 drives the two clamps 18 to move inside the movable groove 19, and the test cup 20 is clamped under the action of the two clamps 18 to prevent the test cup from being stuck. 20 shakes when entering the detection box 1. After entering the detection box 1, it undergoes detection through the detector body 13. Then, after using the test cup 20, the test cup 20 is placed on the drain plate 8, and cleaning liquid is added to the inside of the water tank 2 through the water inlet 3. The electric telescopic rod 7 is started, and the output end of the electric telescopic rod 7 moves to drive the splash-proof box 5 to descend. After the splash-proof box 5 covers the test cup 20, the flusher 6 is started. Under the action of the telescopic tube 4, the cleaning liquid inside the water tank 2 is sprayed out through the flusher 6 to flush the test cup 20. Finally, the sewage after flushing falls through the drain plate 8 into the water tank 9 inside the sewage tank 10. The user can open the box door 11 and take out the water tank 9 for unified treatment.

[0027] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A detection device for the production and processing of hindered phenolic antioxidants, characterized by: The invention comprises a detection box (1), wherein one side of the top wall of the detection box (1) is fastened to a water tank (2), one side of the top wall of the water tank (2) is connected to a water inlet (3), one side of the inner wall of the water tank (2) is provided with a telescopic tube (4), one side of the surface wall of the telescopic tube (4) is provided with a washer (6), one side of the surface wall of the water tank (2) is provided with two electric telescopic rods (7), the output ends of the two electric telescopic rods (7) are fastened to a splash-proof box (5), one side of the bottom wall of the detection box (1) is fastened to a sewage tank (10), one side of the top wall of the sewage tank (10) is fastened to a drain plate (8), one side of the inner wall of the sewage tank (10) is movably connected to a water tank (9), and one side of the surface wall of the sewage tank (10) is hinged to a box door (11).

2. The detection device for production and processing of hindered phenol antioxidants according to claim 1, characterized in that: A sealing door (12) is hingedly connected to one side of the outer wall of the detection box (1), and a detector body (13) is installed on one side of the inner wall of the detection box (1).

3. The detection device for production and processing of hindered phenol antioxidants according to claim 2, characterized in that: A working box (23) is fastened to one side of the outer wall of the detection box (1), and an electric push rod (22) is installed on one side of the inner wall of the working box (23).

4. The detection device for production and processing of hindered phenol antioxidants according to claim 3, characterized in that: The output end of the electric push rod (22) is fastened to the operating box (14), and one side of the bottom wall of the operating box (14) is slidably connected to two guide rails (21).

5. The detection device for production and processing of hindered phenol antioxidants according to claim 4, characterized in that: A cylinder (15) is installed on one side of the inner wall of the operating box (14), and a gear (16) is rotatably connected to the bottom side of the inner wall of the operating box (14).

6. The detection device for production and processing of hindered phenol antioxidants according to claim 5, characterized in that: Two racks (17) are meshedly connected to the peripheral side of the surface wall of the gear (16), one side of the rack (17) is fastened to the output end of the cylinder (15), and one side of the top wall of the two racks (17) is fastened to a clamping plate (18).

7. The detection device for production and processing of hindered phenol antioxidants according to claim 6, characterized in that: A test cup (20) is movably connected to one side of the top wall of the operation box (14), and two movable grooves (19) are provided on one side of the top wall of the operation box (14).