Rapid reagent detection tool

By using an intermittent motion mechanism of incomplete gears and driven gears, combined with a starting mark ring and control panel, automated testing of rapid reagent testing tools is achieved, solving the problems of low testing efficiency and insufficient accuracy, and improving testing efficiency and accuracy.

CN224225597UActive Publication Date: 2026-05-12WUHAN SHUNYUANSHENG BIOMEDICAL TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
WUHAN SHUNYUANSHENG BIOMEDICAL TECH CO LTD
Filing Date
2025-05-28
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Existing rapid reagent testing tools require personnel to repeatedly handle reagent bottles, resulting in slow testing efficiency, a high risk of errors or duplicate testing, and low accuracy.

Method used

采用不完全齿轮和从动齿轮的间歇运动机制,通过驱动电机控制旋转盘的间歇旋转,结合起始标记圈和控制面板实现自动化检测,减少人为操作。

Benefits of technology

It improves the automation level of reagent testing, reduces the possibility of repeated testing, and improves testing efficiency and accuracy.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of reagent detection tools, and discloses a rapid reagent detection tool. According to the device, a fixed rod is movably mounted on the surface of the reagent storage box, an incomplete gear is fixedly mounted on the surface of the fixed rod, a fixed column is welded to the surface of the incomplete gear, a rotating rod is fixedly mounted on the surface of the fixed rod, a driven gear is fixedly mounted on the surface of the rotating rod, and a rotating disc is movably inserted into the surface of a magnetic slot. When the incomplete gear makes contact with the tooth tips of the driven gear, the driven gear can be driven to rotate, after mutual contact of the tooth tips is completed, the arc face of the incomplete gear makes contact with the concave position of the driven gear, after contact of the arc contact face is completed, the fixing column pokes the connecting rod, and the tooth tips of the incomplete gear and the driven gear make contact again to enter a motion state. The rotating disc is intermittently rotated, so that automatic detection is achieved, and the detection efficiency of the reagent is greatly improved.
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Description

Technical Field

[0001] This application belongs to the technical field of reagent testing tools, specifically a rapid reagent testing tool. Background Technology

[0002] Rapid reagent testing tools can detect target substances in a short time, typically providing results within hours or even less. This is particularly important for the detection of acute infectious diseases, helping to facilitate timely implementation of prevention and control measures.

[0003] Existing rapid reagent testing tools require personnel to repeatedly handle reagent bottles for testing, resulting in slow efficiency and a high probability of errors or duplicate testing during the process, leading to insufficient accuracy. This paper proposes a rapid reagent testing tool that can automate the testing process and improve the accuracy of test data. Utility Model Content

[0004] The purpose of this application is to provide a rapid reagent testing tool to address the problems of existing rapid reagent testing tools, such as the need for personnel to repeatedly handle reagent bottles for testing, resulting in slow testing efficiency, a high probability of errors or duplicate testing during the testing process, and insufficient accuracy.

[0005] The technical solution adopted in this application is as follows: A rapid reagent testing tool, wherein a fixed rod is movably mounted on the surface of the reagent storage box, an incomplete gear is fixedly mounted on the surface of the fixed rod, a fixed column is welded to the surface of the incomplete gear, a connecting rod is movably connected to the surface of the fixed column, a rotating rod is fixedly mounted on the surface of the connecting rod, a driven gear is fixedly mounted on the surface of the rotating rod, a fixed disk is welded to the upper surface of the rotating rod, a magnetic slot is fixedly connected to the upper surface of the fixed disk, and a rotating disk is movably inserted into the surface of the magnetic slot.

[0006] By adopting the above technical solution, when the drive motor is turned on during use, it drives the fixed rod to rotate. When the tip of the incomplete gear contacts the tooth of the driven gear, it drives the driven gear to rotate. After the tooth tips come into contact with each other, the arc surface of the incomplete gear contacts the concave part of the driven gear, at which point the driven gear stops moving. After the arc contact surfaces come into contact, the fixed column moves the connecting rod, and the tips of the incomplete gear and the driven gear come into contact again and enter the moving state. This achieves the intermittent movement of the driven gear. The operator controls the speed of the drive motor to control the detection time of each reagent and rotates the rotating disk intermittently to achieve automated detection, which greatly improves the detection efficiency of the reagents.

[0007] In a preferred embodiment, the surface of the rotating disk has an insertion hole, and a reagent storage groove is formed on the surface of the rotating disk adjacent to the insertion hole. A starting mark ring is adhered to the surface of the rotating disk.

[0008] By adopting the above technical solution, the starting marking circle can help operators remember the first detection position, making it easier for inspectors to understand the current detection status, avoiding repeated detection, and reducing detection efficiency.

[0009] In a preferred embodiment, a control box is fixedly installed on the lower surface of the reagent storage box, and a drive motor is fixedly installed on the inner wall surface of the control box.

[0010] By adopting the above technical solution, the drive motor converts mechanical energy into electrical energy, providing power support for the overall rotating device.

[0011] In a preferred embodiment, the surface of the reagent storage box is provided with a hinge, a box door is fixedly installed on the surface of the hinge, and a handle is welded to the surface of the box door.

[0012] By adopting the above technical solution, the door can effectively isolate the inside of the reagent testing box from other areas, prevent the reagent from contaminating other areas, and at the same time maintain the cleanliness of the internal environment of the reagent box.

[0013] In a preferred embodiment, a glass window is fixedly installed on the surface of the cabinet door.

[0014] By adopting the above technical solution, the glass window allows testing personnel to observe the testing process without opening the chamber door, ensuring the continuity and stability of the testing. At the same time, the glass window provides a safe way of observation, avoiding the risks that may be caused by direct contact and protecting the personal safety of testing personnel.

[0015] In a preferred embodiment, a reagent retrieval window is provided on one side surface of the reagent storage box, a connecting shaft is provided on the surface of the reagent retrieval window, and a dust cover is fixedly installed on the surface of the connecting shaft.

[0016] By adopting the above technical solution, the reagent retrieval window facilitates the retrieval or placement of reagent bottles, eliminating the need to stop the entire device before placing and collecting the reagent bottles, and making the placement process easier.

[0017] In a preferred embodiment, the upper surface of the reagent storage box has a reagent detection hole, and a control panel is fixedly installed on one side surface of the reagent storage box.

[0018] By adopting the above technical solution, the testing personnel insert the testing tool through the reagent testing hole into the reagent storage box to test the reagents in the reagent bottle. The testing tool is connected to the cloud control panel, where the relevant testing data can be viewed and recorded directly by the testing personnel, thus improving the overall testing efficiency.

[0019] In summary, due to the adoption of the above technical solution, the beneficial effects of this application are:

[0020] In this application, when the device is in use, turning on the drive motor switch causes the fixed rod to rotate. When the tip of the incomplete gear contacts the tooth of the driven gear, it drives the driven gear to rotate. After the tooth tips come into contact, the arc surface of the incomplete gear contacts the concave part of the driven gear, at which point the driven gear stops moving. After the arc contact surfaces come into contact, the fixed column moves the connecting rod, and the tips of the incomplete gear and the driven gear come into contact again and enter the moving state. This achieves intermittent movement of the driven gear. The operator controls the speed of the drive motor to control the detection time of each reagent and rotates the rotating disk intermittently to achieve automated detection, which greatly improves the detection efficiency of the reagents. Attached Figure Description

[0021] Figure 1 This is a schematic diagram of the main structure of the rapid reagent testing tool of this application;

[0022] Figure 2 This is a side view of the rapid reagent testing tool in this application;

[0023] Figure 3 This is a schematic diagram of the drive device structure for the rapid reagent detection tool in this application;

[0024] Figure 4 This is a schematic diagram of the reagent fixing device structure of the rapid reagent testing tool in this application.

[0025] The markings in the diagram are: 1. Reagent storage box; 2. Fixing plate; 3. Magnetic slot; 4. Reagent detection port; 5. Glass window; 6. Box door; 7. Control box; 8. Control panel; 9. Dust cover; 10. Reagent retrieval window; 11. Hinge; 12. Handle; 13. Driven gear; 14. Rotating rod; 15. Connecting rod; 16. Fixing column; 17. Incomplete gear; 18. Fixing rod; 19. Drive motor; 20. Reagent storage slot; 21. Socket; 22. Rotating plate; 23. Starting mark circle. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions in the embodiments of this application will be clearly and completely described below in conjunction with the embodiments of this application. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0027] Reference Figure 1-3 ,

[0028] Example:

[0029] A rapid reagent testing tool includes a reagent storage box 1 with a fixed rod 18 movably mounted on its surface. An incomplete gear 17 is fixedly mounted on the surface of the fixed rod 18. A fixed post 16 is welded to the surface of the incomplete gear 17. A connecting rod 15 is movably connected to the surface of the fixed post 16. A rotating rod 14 is fixedly mounted on the surface of the connecting rod 15. A driven gear 13 is fixedly mounted on the surface of the rotating rod 14. A fixed disk 2 is welded to the upper surface of the rotating rod 14. A magnetic slot 3 is fixedly connected to the upper surface of the fixed disk 2. A rotating disk 22 is movably inserted into the surface of the magnetic slot 3.

[0030] When in use, the drive motor 19 is switched on, causing the fixed rod 18 to rotate. When the tip of the incomplete gear 17 contacts the tooth of the driven gear 13, it will cause the driven gear 13 to rotate. After the tooth tips come into contact, the arc surface of the incomplete gear 17 contacts the concave part of the driven gear 13, at which point the driven gear 13 stops moving. After the arc contact surfaces come into contact, the fixed column 16 moves the connecting rod 15, and the tips of the incomplete gear 17 and the driven gear 13 come into contact again and enter the moving state. This achieves the intermittent movement of the driven gear 13. The operator controls the speed of the drive motor 19 to control the detection time of each reagent and rotates the rotating disk 22 intermittently to achieve automated detection, which greatly improves the detection efficiency of the reagents.

[0031] The rotating disk 22 has an insertion hole 21 on its surface, and a reagent storage slot 20 is provided on the surface of the rotating disk 22 adjacent to the insertion hole 21. A starting mark ring 23 is attached to the surface of the rotating disk 22. The starting mark ring 23 can help operators remember the first detection position, making it convenient for testing personnel to understand the current detection status, avoid repeated testing, and reduce testing efficiency.

[0032] A control box 7 is fixedly installed on the lower surface of the reagent storage box 1, and a drive motor 19 is fixedly installed on the inner wall surface of the control box 7. The drive motor 19 converts mechanical energy into electrical energy to provide power for the overall rotating device.

[0033] The reagent storage box 1 has a hinge 11 on its surface, and a box door 6 is fixedly installed on the surface of the hinge 11. A handle 12 is welded to the surface of the box door 6. The box door 6 can effectively isolate the inside of the reagent testing box from other areas, prevent the reagent from contaminating other areas, and keep the internal environment of the reagent box clean.

[0034] A glass window 5 is fixedly installed on the surface of the enclosure door 6. The glass window 5 allows testing personnel to observe the testing process without opening the enclosure door, ensuring the continuity and stability of the testing. At the same time, the glass window 5 provides a safe way of observation, avoiding the risks that may be caused by direct contact and protecting the personal safety of the testing personnel.

[0035] A reagent retrieval window 10 is provided on one side of the reagent storage box 1. A connecting shaft is provided on the surface of the reagent retrieval window 10, and a dust cover 9 is fixedly installed on the surface of the connecting shaft. The reagent retrieval window 10 facilitates the retrieval or placement of reagent bottles without having to stop the entire device before placing or retrieving the reagent bottles, making the placement process easier.

[0036] The upper surface of the reagent storage box 1 has a reagent detection hole 4, and a control panel 8 is fixedly installed on one side surface of the reagent storage box 1. The testing personnel insert the testing tool into the reagent storage box 1 through the reagent detection hole 4 to test the reagents in the reagent bottles. The testing tool is connected to the control panel 8 via the cloud, and the relevant test data can be viewed on the control panel 8. The testing personnel can directly record the data, which improves the overall testing efficiency.

[0037] The implementation principle of a rapid reagent testing tool embodiment of this application is as follows:

[0038] When in use, the drive motor 19 is switched on, causing the fixed rod 18 to rotate. When the tip of the incomplete gear 17 contacts the tooth of the driven gear 13, it will cause the driven gear 13 to rotate. After the tooth tips come into contact, the arc surface of the incomplete gear 17 contacts the concave part of the driven gear 13, at which point the driven gear 13 stops moving. After the arc contact surfaces come into contact, the fixed column 16 moves the connecting rod 15, and the tips of the incomplete gear 17 and the driven gear 13 come into contact again and enter the moving state. This achieves the intermittent movement of the driven gear 13. The operator controls the speed of the drive motor 19 to control the detection time of each reagent and rotates the rotating disk 22 intermittently to achieve automated detection, which greatly improves the detection efficiency of the reagents.

[0039] The testing personnel insert the testing tool through the reagent testing hole 4 into the reagent storage box 1 to test the reagents in the reagent bottle. The testing tool is connected to the control panel 8 via the cloud, where the relevant testing data can be viewed and recorded directly by the testing personnel, thus improving the overall testing efficiency.

[0040] The above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of this application.

Claims

1. A rapid reagent testing tool, comprising a reagent storage box (1), characterized in that: A fixed rod (18) is movably mounted on the surface of the reagent storage box (1). An incomplete gear (17) is fixedly mounted on the surface of the fixed rod (18). A fixed column (16) is welded to the surface of the incomplete gear (17). A connecting rod (15) is movably connected to the surface of the fixed column (16). A rotating rod (14) is fixedly mounted on the surface of the connecting rod (15). A driven gear (13) is fixedly mounted on the surface of the rotating rod (14). A fixed disk (2) is welded to the upper surface of the rotating rod (14). A magnetic slot (3) is fixedly connected to the upper surface of the fixed disk (2). A rotating disk (22) is movably inserted into the surface of the magnetic slot (3).

2. The rapid reagent detection tool as described in claim 1, characterized in that: The rotating disk (22) has an insertion hole (21) on its surface, and a reagent storage slot (20) is provided on the surface of the rotating disk (22) adjacent to the insertion hole (21). A starting mark ring (23) is attached to the surface of the rotating disk (22).

3. The rapid reagent detection tool as described in claim 1, characterized in that: A control box (7) is fixedly installed on the lower surface of the reagent storage box (1), and a drive motor (19) is fixedly installed on the inner wall surface of the control box (7).

4. The rapid reagent detection tool as described in claim 1, characterized in that: The reagent storage box (1) is provided with a hinge (11) on its surface, and a box door (6) is fixedly installed on the surface of the hinge (11). A handle (12) is welded to the surface of the box door (6).

5. A rapid reagent testing tool as described in claim 4, characterized in that: A glass window (5) is fixedly installed on the surface of the box door (6).

6. The rapid reagent detection tool as described in claim 1, characterized in that: The reagent storage box (1) has a reagent retrieval window (10) on one side surface. A connecting shaft is provided on the surface of the reagent retrieval window (10), and a dust cover (9) is fixedly installed on the surface of the connecting shaft.

7. A rapid reagent detection tool as described in claim 1, characterized in that... The reagent storage box (1) has a reagent detection hole (4) on its upper surface, and a control panel (8) is fixedly installed on one side surface of the reagent storage box (1).