Detection equipment for detecting kit
By designing a detection kit detection equipment that combines fixed plate, press plate and baffle, the problem of undetected and detected boxes is solved, and a fast and accurate positioning and stable detection process is achieved.
Patent Information
- Application Number
- CN202421808644.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-30
- Publication Date
- 2025-07-29
- Estimated Expiration
- 2034-07-30
AI Technical Summary
During the inspection process of existing testing kits, the boxes that have not been detected and have been detected are prone to be confused and their positioning is inaccurate, which affects the scanning code and detection effect.
A detection device including a fixed plate, a press plate, a baffle and a conveying device is designed. Through a combined clamping detection kit of a fixed plate and a press plate, the baffle is used to limit the insertion direction of the box, and the constant distance positioning of the conveying device and the baffle is combined to ensure the accurate position of the box.
The fast and accurate positioning of the detection kit is achieved, preventing the undetected box from being confused with the detected box, and improving the stability and efficiency of the automated process of detection.
Smart Images

Figure CN223166759U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of detection of detection kits, and particularly relates to a detection device for a detection kit. Background Art
[0002] A detection kit is an auxiliary detection device, which is a box for containing chemical reagents such as chemical components, drug residues, virus types, etc. These chemical reagents are pre-prepared and mixed with other necessary materials to simplify the sampling and detection operations. Detection kits can be applied to multiple fields, including biology, chemistry, medicine, environmental monitoring, etc. According to different application requirements, detection kits are classified according to different detection needs, such as nucleic acid extraction and purification types, protein detection types, etc., for qualitative and quantitative detection of substances such as human body fluids and blood that reflect human health conditions. Detection kits usually contain materials required for experiments such as standards, reagents, buffers, reactors, test tubes, well plates, etc., which are precisely formulated and calibrated to ensure accurate and reproducible results during detection. The advent of detection kits not only reduces the cumbersome reagent preparation steps, but also simplifies the detection collection and sample detection processes. Therefore, detection kits play a key role in detection, and their application scope is wide, covering many important laboratories, medical institutions, industrial production and other places.
[0003] Immunochromatography technology is a rapid detection technology for collecting samples in a detection kit based on immunofiltration. Its principle is to first fix specific antibodies on a certain zone of a nitrocellulose membrane. By fully mixing the sample and the buffer, a sample mixture is obtained. Then, the mixture is vertically dropped onto one end of the dry nitrocellulose membrane. By means of chromatography, the sample mixture moves forward along the membrane on the chromatography strip. When the sample mixture moves to the area where the receptor (such as an antibody or an antigen) for the analyte to be detected is fixed, the corresponding analyte in the sample specifically binds to the receptor. Then, a scanning device is used to read the optical signal of the nitrocellulose membrane, and detection and analysis are performed based on the optical signal to achieve specific immunodiagnosis. Due to the characteristics of simple operation and rapid reaction of immunochromatography technology, it has been used in many important fields such as clinical diagnosis, environmental monitoring, and food safety. As a commonly used detector for immunochromatography technology, a fluorescence detector scans the nitrocellulose membrane in the detection kit to obtain an optical signal, and then detects and analyzes the optical signal to detect a specific chemical component in the sample.
[0004] In order to facilitate the identification of each test kit, a QR code or bar code is equipped on the test kit. Therefore, a barcode scanner is required to identify the test kit during the detection process. To simplify the detection operation, a fluorescence detector and a barcode scanner are combined to form an immunochromatography analyzer. A conveying device is constituted by installing a telescopic cylinder, a conveyor belt and other devices in the immunochromatography analyzer, so as to convey the test kit to sequentially complete the barcode scanning and detection operations, so as to realize an automated barcode scanning and detection process. However, each time a test kit is placed, the untested test kit needs to be inserted into the insertion slot of the immunochromatography analyzer first, so that the untested test kit falls on the conveying device. However, since the depths at which the test kits need to be inserted into the insertion slot vary, the positions at which the test kits fall on the conveying device are different, resulting in differences in the positioning of barcode scanning and detection, thereby affecting the barcode scanning and detection operations. In order to ensure the accuracy of placing the test kit, great care is needed when placing the test kit, so there is a certain burden when placing the test kit. In addition, since the conveying device is a reciprocating drive device, the conveying device will carry the test kit to move back and forth. In order to facilitate the sequential detection of multiple test kits, it is necessary to prevent the tested test kits and the untested test kits from being mixed together. Therefore, it is necessary to prevent the tested test kits from passing out of the insertion slot of the immunochromatography analyzer. Generally speaking, although the immunochromatography analyzer has achieved remarkable results in simplifying detection, there are still improvements in the detection positioning of the test kit and the partition collection of the test kit to simplify the detection operation of the test kit. Summary of the Invention
[0005] In view of the deficiencies of the prior art, the utility model provides a detection device for a test kit, which can prevent the tested test kits and the untested test kits from being mixed together and accurately position the test kit, so as to overcome the defects in the prior art.
[0006] The technical solution adopted by the utility model is as follows: A detection device for a test kit, comprising a box body, a display screen and an insertion slot embedded in the box body, and a barcode scanner and a fluorescence detector arranged in the box body. An L-shaped fixing plate is arranged between the insertion slot and the fluorescence detector. A pressing plate made of an elastic material is arranged on the horizontal plate of the fixing plate. The pressing plate is installed on the side of the horizontal plate of the fixing plate away from the vertical plate of the fixing plate. A baffle is arranged between the fixing plate and the insertion slot. The top end of the baffle is hinged on the inner wall of the box body, and the bottom of the baffle is in contact with one end of the insertion slot. A conveying device for driving the fixing plate to move between the insertion slot and the fluorescence detector is arranged on one side of the fixing plate. The fixing plate is installed in the box body through the conveying device. The barcode scanner is located above the fixing plate, and the barcode scanning end of the barcode scanner faces the fixing plate.
[0007] Preferably, the conveying device includes a support plate provided on a fixed plate, a conveyor belt provided on one side of the support plate, two pulleys sleeved inside the conveyor belt, and a motor provided on the pulley. The motor is installed in the box body. The driving shaft of the motor is connected to one of the pulleys. The two pulleys are rotatably installed in the box body. Both sides of the conveyor belt are tensioned and sleeved on the two pulleys respectively. Both ends of the support plate are installed on the bottom surface of the fixed plate and the conveyor belt respectively.
[0008] Preferably, a partition is provided in the box body. The partition is installed in the box body along the vertical direction. The insertion slot, the barcode scanner, the fluorescence detector and the fixed plate are all located on one side of the partition. The conveyor belt, the two pulleys and the motor are all located on the other side of the partition. The two pulleys are rotatably installed on the partition. A bracket is provided on the motor. Both sides of the bracket are installed on the motor and the partition respectively. A sleeve groove is opened on the partition along the horizontal direction. The support plate is sleeved in the sleeve groove. The groove height of the sleeve groove coincides with the height of the support plate.
[0009] Preferably, a telescopic cylinder is provided between the barcode scanner and the fluorescence detector along the vertical direction. The telescopic cylinder is installed in the box body. The telescopic direction of the telescopic cylinder faces the bottom end of the box body. The telescopic cylinder is located above the fixed plate. A push plate is provided on the telescopic end of the telescopic cylinder. The middle upper part of the push plate is installed on the telescopic end of the telescopic cylinder. The push plate is located between the vertical plate and the pressing plate of the fixed plate.
[0010] Preferably, a storage groove is opened on the box body. A drawer with an open top is sleeved in the storage groove. The drawer is located below the fixed plate.
[0011] Preferably, a limiting plate is inclined on one side of the cross plate of the fixed plate away from the vertical plate of the fixed plate. The limiting plate is installed on the top surface of the cross plate of the fixed plate. One side of the limiting plate is in contact with the pressing plate. Sleeve holes are respectively opened on the pressing plate and the limiting plate. A first bolt is sleeved in the sleeve hole. A first nut is threadedly sleeved on one side of the first bolt. The pressing plate is clamped on the limiting plate by the first nut and the first bolt.
[0012] Preferably, a tensioning plate is provided on one side of the cross plate of the fixed plate away from the vertical plate of the fixed plate. The tensioning plate is installed on the top surface of the cross plate of the fixed plate. A tensioning hole is opened on the tensioning plate. A second bolt is movably sleeved on the tensioning hole. A spring is movably sleeved on the second bolt. A tensioning rod is provided on one side of the second bolt close to the pressing plate. The tensioning rod is installed on the second bolt. Both sides of the spring are in contact with the tensioning plate and the tensioning rod respectively. The tensioning rod is in contact with the pressing plate. A tensioning groove is opened on one side of the cross plate of the fixed plate away from the vertical plate of the fixed plate along the vertical direction. One side of the tensioning rod is sleeved in the tensioning groove.
[0013] The beneficial effects of the present utility model are as follows: Firstly, through the fixed plate and the pressing plate provided in the present utility model, it is convenient to clamp the test kit for scanning code and detection processing. Through the baffle provided, it is restricted that the test kit can only be inserted into the box body through the insertion box opening, thereby preventing the test kit from being inserted from the box body towards the insertion box opening, and further preventing the tested test kits and the untested test kits from being mixed together. Moreover, through the conveying device provided in the present utility model, the fixed plate can be driven to move; by combining the conveying device and the baffle, since the conveying distance of the conveying device is limited, the minimum distance between the fixed plate and the baffle is a constant value. By means of the baffle to block the test kit carried on the fixed plate, when the fixed plate moves to the position of the minimum distance between the fixed plate and the baffle, the baffle pushes the test kit to move on the fixed plate, so that one side of the test kit is in contact with the baffle. At the same time, the minimum distance between the fixed plate and the baffle is a constant value, thereby calculating the position where the fixed plate clamps the test kit. Based on the position where the fixed plate clamps the test kit at this time as the positioning basis, the positioning of the test kit can be completed quickly and accurately.
[0014] Secondly, through the partition plate provided in the present utility model, the conveying device is separated from the insertion box opening, the fixed plate, the code scanner and the fluorescence detector, so as to avoid the influence of the conveying device on the detection of the test kit. By opening a sleeve groove on the partition plate, it is convenient to use the support plate for transmission and limit the support plate, reducing the shaking of the support plate, so as to improve the stability of conveying the test kit. Moreover, through the telescopic cylinder and the push plate provided in the present utility model, by means of the conveying device driving the fixed plate to move, the test kit carried by the fixed plate can be pushed off the fixed plate, so as to facilitate the separation operation of the fixed plate and the test kit. Through the drawer provided, the test kit falling off the fixed plate can fall into the drawer, so as to facilitate the collection of the tested test kits.
[0015] Thirdly, through the first bolt and the first nut provided in the present utility model, the pressing plate can be extruded and clamped on the limiting plate, so that by removing the first nut and the first bolt, it is convenient to maintain and replace the pressing plate. Moreover, through the tensioning plate, the second bolt, the spring and the tensioning rod provided in the present utility model to extrude and tension the pressing plate, thereby preventing the elastic performance of the pressing plate from decreasing and affecting the continuous extrusion and clamping effect on the test kit, and further improving the clamping stability of the test kit. Description of the Drawings
[0016] Figure 1 It is the first three-dimensional schematic diagram of the present utility model.
[0017] Figure 2 It is the second three-dimensional schematic diagram of the present utility model.
[0018] Figure 3 is Figure 2 The enlarged schematic view of part A in
[0019] Figure 4 This is the third three-dimensional schematic view of the present utility model.
[0020] Figure 5 is Figure 4 The enlarged schematic view of part B in
[0021] Figure 6 This is the fourth three-dimensional schematic view of the present utility model.
[0022] Figure 7 This is the assembly schematic view of the fixing plate and the pressing plate in the present utility model. Specific implementation manner
[0023] Such as Figures 1 to 7As shown, a detection device for a detection kit comprises a box body 1, a display screen 2 and a box insertion port 3 embedded in the box body 1, and a code scanner 4 and a fluorescence detector 5 arranged in the box body 1. An L-shaped fixing plate 6 is provided between the box insertion port 3 and the fluorescence detector 5. A pressing plate 7 made of elastic material is provided on the horizontal plate of the fixing plate 6. The pressing plate 7 is installed on the side of the horizontal plate of the fixing plate 6 away from the vertical plate of the fixing plate 6. The closest distance from the pressing plate 7 to the vertical plate of the fixing plate 6 is not greater than the width of the detection kit, so that after the detection kit is inserted between the pressing plate 7 and the vertical plate of the fixing plate 6, the detection kit can be squeezed and clamped on the vertical plate of the fixing plate 6 by the pressing plate 7. A baffle 8 is provided between the fixing plate 6 and the box insertion port 3, and the top of the baffle 8 is hinged to the box body 1. On the inner wall, a hinge is provided on the top of the baffle 8, and the two sides of the hinge are respectively installed on the baffle 8 and the box body 1, and the bottom of the baffle 8 is in contact with one end of the box opening 3. Therefore, when the detection kit is inserted into the box opening 3 from outside the box body 1, the detection kit pushes the baffle 8 away from the box opening 3, so that the detection kit can be inserted between the vertical plates of the pressure plate 7 and the fixed plate 6; on the contrary, when the detection kit is inserted into the box opening 3 from the box body 1, the bottom of the baffle 8 will block the box opening 3, so that the detection kit cannot be inserted into the box opening 3, thereby forming a one-way channel for the box opening 3 to prevent the detection kit from being inserted into the box opening 3 from the box body 1, thereby preventing the tested detection kit and the untested detection kit from being mixed together. A conveying device is provided on one side of the fixed plate 6 to drive the fixed plate 6 to move between the insertion box port 3 and the fluorescence detector 5. The fixed plate 6 is installed in the box body 1 through the conveying device, so as to facilitate the transportation of the fixed plate 6 in the box body 1; the barcode scanner 4 is located above the fixed plate 6, and the scanning end of the barcode scanner 4 faces the fixed plate 6, so as to facilitate the scanning processing of the detection kit clamped on the fixed plate 6. The detection kit is first driven to move into the box body 1 through the conveying device, and then the conveying equipment is controlled to drive the fixed plate 6 to move toward the baffle 8, so that the detection kit carried on the fixed plate 6 is blocked by the baffle 8, thereby pushing the detection kit to move on the fixed plate 6; since the minimum distance between the fixed plate 6 and the baffle 8 is a constant value, when the fixed plate 6 is moved to the position of the minimum distance between the fixed plate 6 and the baffle 8, one side of the detection kit is in contact with the baffle 8, and the minimum distance between the fixed plate 6 and the baffle 8 is a constant value, so that the position of the fixed plate 6 clamping the detection kit can be calculated, and the position of the fixed plate 6 clamping the detection kit at this time is used as the positioning basis, and the positioning of the detection kit can be completed quickly and accurately.
[0024] In this embodiment, the conveying device includes a support plate 9 provided on a fixed plate 6, a conveyor belt 10 provided on one side of the support plate 9, two belt pulleys 11 sleeved inside the conveyor belt 10, and a motor 12 provided on the belt pulleys 11. The motor 12 is installed in the box body 1. The drive shaft of the motor 12 is connected to one of the belt pulleys 11. The two belt pulleys 11 are rotatably installed in the box body 1. Both sides of the conveyor belt 10 are tensioned and sleeved on the two belt pulleys 11 respectively. Both ends of the support plate 9 are installed on the bottom surface of the fixed plate 6 and the conveyor belt 10 respectively. By running the motor 12, the belt pulleys 11 and the conveyor belt 10 are driven to transmit, thereby driving the support plate 9 and the fixed plate 6 to move to meet the requirement of conveying the test kit.
[0025] Specifically, a partition plate 13 is provided in the box body 1. The partition plate 13 is installed in the box body 1 along the vertical direction. The cartridge insertion port 3, the barcode scanner 4, the fluorescence detector 5, and the fixed plate 6 are all located on one side of the partition plate 13. The conveyor belt 10, the two belt pulleys 11, and the motor 12 are all located on the other side of the partition plate 13. The two belt pulleys 11 are rotatably installed on the partition plate 13. A bracket 14 is provided on the motor 12. Both sides of the bracket 14 are installed on the motor 12 and the partition plate 13 respectively. Thus, the conveying device is separated from the cartridge insertion port 3, the fixed plate 6, the barcode scanner 4, and the fluorescence detector 5 to avoid the influence of the conveying device on the detection of the test kit. A sleeve groove 15 is opened on the partition plate 13 along the horizontal direction. The support plate 9 is sleeved in the sleeve groove 15. The groove height of the sleeve groove 15 coincides with the height of the support plate 9, thereby limiting the support plate 9 and reducing the shaking of the support plate 9 to improve the stability of conveying the test kit.
[0026] Please refer to again Figure 1 , a telescopic cylinder 16 is provided between the barcode scanner 4 and the fluorescence detector 5 along the vertical direction. The telescopic cylinder 16 is installed in the box body 1. The telescopic direction of the telescopic cylinder 16 faces the bottom end of the box body 1. The telescopic cylinder 16 is located above the fixed plate 6. A push plate 17 is provided on the telescopic end of the telescopic cylinder 16. The upper middle part of the push plate 17 is installed on the telescopic end of the telescopic cylinder 16. The push plate 17 is located between the vertical plate of the fixed plate 6 and the pressing plate 7. By extending the telescopic cylinder 16, the push plate 17 is moved onto the conveying path of the fixed plate 6 carrying the test kit. As the fixed plate 6 continues to move, since the test kit carried by the fixed plate 6 will be blocked by the push plate 17 and the fixed plate 6 continues to move, the push plate 17 will push the test kit carried by the fixed plate 6 off the fixed plate 6, so that the test kit falls into the box body 1 to complete the separation operation of the fixed plate 6 and the test kit.
[0027] In this embodiment, a storage groove is formed in the box body 1, and a drawer 18 with an open top is sleeved in the storage groove. The drawer 18 is located below the fixing plate 6. This can make the detection kit that falls off the fixing plate 6 drop into the drawer 18, facilitating the collection of the detected detection kit.
[0028] Please refer to again Figure 3 and 7 , on the side of the horizontal plate of the fixing plate 6 away from the vertical plate of the fixing plate 6, a limiting plate 19 is inclinedly arranged. The limiting plate 19 is installed on the top surface of the horizontal plate of the fixing plate 6. One side of the limiting plate 19 is in contact with the pressing plate 7. Sleeve holes are respectively formed in the pressing plate 7 and the limiting plate 19. A first bolt 20 is sleeved in the sleeve hole 20. A first nut 21 is threadedly sleeved on one side of the first bolt 20. The pressing plate 7 is clamped on the limiting plate 19 by the first nut 21 and the first bolt 20. Thus, by unscrewing the first nut 21 and removing the first bolt 20, it is convenient to maintain and replace the pressing plate 7.
[0029] Specifically, on the side of the horizontal plate of the fixing plate 6 away from the vertical plate of the fixing plate 6, a tensioning plate 22 is arranged. The tensioning plate 22 is installed on the top surface of the horizontal plate of the fixing plate 6. A tensioning hole is formed in the tensioning plate 22. A second bolt 23 is movably sleeved in the tensioning hole. A spring 24 is movably sleeved on the second bolt 23. On the side of the second bolt 23 close to the pressing plate 7, a tensioning rod 25 is arranged. The tensioning rod 25 is installed on the second bolt 23. Both sides of the spring 24 are respectively in contact with the tensioning plate 22 and the tensioning rod 25. The tensioning rod 25 is in contact with the pressing plate 7. On the side of the horizontal plate of the fixing plate 6 away from the vertical plate of the fixing plate 6, a tensioning groove is formed along the vertical direction. One side of the tensioning rod 25 is sleeved in the tensioning groove. The spring 24 is used to drive the tensioning rod 25 to continuously press on the pressing plate 7, so as to perform tensioning treatment on the pressing plate 7, thereby preventing the elastic performance of the pressing plate 7 from decreasing and affecting the continuous squeezing and clamping effect on the detection kit, and further improving the clamping stability of the detection kit.
[0030] The usage method of this product is as follows: As Figures 1 to 7As shown, first, by running the motor 12, the support plate 9 drives the fixed plate 6 to move to one side of the insertion box port 3, and the test kit to be tested is inserted into the insertion box port 3, so that the test kit is squeezed and clamped between the vertical plate and the pressure plate 7 of the fixed plate 6. Next, by controlling the motor 1, the fixed plate 6 is driven to move toward the fluorescence detector 5, so that the part of the test kit located in the insertion box port 3 enters the box body 1, and then by controlling the motor 1 to run in the reverse direction, the fixed plate 6 is driven to move toward the insertion box port 3, so that the test kit carried on the fixed plate 6 is pressed against the baffle 8. As the fixed plate 6 moves to the position of the minimum distance between the fixed plate 6 and the baffle 8, since the test kit continues to press against the baffle 8, and the minimum distance between the fixed plate 6 and the baffle 8 is a constant value, the position of the fixed plate 6 clamping the test kit is calculated, and the positioning of the test kit is completed. Then, the motor 12 is controlled to run again, driving the fixed plate 6 and the detection kit to move toward the fluorescence detector 5, so that the barcode or QR code on the detection kit is first identified by the barcode scanner 4, and then the nitrocellulose membrane in the detection kit is inserted into the fluorescence detector 5, so that the nitrocellulose membrane in the detection kit can be detected by the fluorescence detector 5. After the detection of the fluorescence detector 5 is completed, the telescopic cylinder 16 is controlled to extend so that the push plate 17 moves to the conveying path of the fixed plate 6 carrying the detection kit, and then the motor 12 is controlled to run in the reverse direction to drive the fixed plate 6 to reset, that is, drive the fixed plate 6 to move to the side of the insertion box port 3; in this process, the push plate 17 is used to push the fixed plate 6 carrying the detection kit from the fixed plate 6 into the drawer 18, so that the detected detection kit is collected. Finally, the telescopic cylinder 16 is controlled to shorten and reset to facilitate the use of this product to detect the detection kit again.
[0031] Through the embodiments, by providing the fixed plate 6 and the pressing plate 7, it is convenient to clamp the test kit for scanning code and detection processing. By providing the baffle 8, it is restricted that the test kit can only be inserted into the box body 1 through the insertion opening 3, thereby preventing the test kit from being inserted from the box body 1 towards the insertion opening 3, and further preventing the tested test kits and the untested test kits from being mixed together. Moreover, in the present utility model, through the provided conveying device, the fixed plate 6 can be driven to move; by combining the use of the conveying device and the baffle 8, since the conveying distance of the conveying device is limited, the minimum distance between the fixed plate 6 and the baffle 8 is a constant value. With the baffle 8 blocking the test kit carried on the fixed plate 6, when the fixed plate 6 moves to the position of the minimum distance between the fixed plate 6 and the baffle 8, since the baffle 8 pushes the test kit to move on the fixed plate 6, one side of the test kit is in contact with the baffle 8. At the same time, the minimum distance between the fixed plate 6 and the baffle 8 is a constant value, so as to calculate the position where the fixed plate 6 clamps the test kit. Based on the position where the fixed plate 6 clamps the test kit as the positioning basis, the positioning of the test kit can be quickly and accurately completed.
[0032] The above-mentioned embodiments are only the preferred embodiments of the present utility model, and do not limit the scope of implementation of the present utility model. Therefore, any equivalent changes or modifications made according to the structure, features and principles described in the scope of the present utility model patent shall be included in the scope of the present utility model's patent application.
Claims
1. A detection device for a detection kit, comprising a box body (1), a display screen (2) and an insertion box opening (3) embedded in the box body (1), and a barcode scanner (4) and a fluorescence detector (5) arranged in the box body (1), characterized in that: An L-shaped fixing plate (6) is arranged between the socket (3) and the fluorescence detector (5). A pressing plate (7) made of an elastic material is arranged on the horizontal plate of the fixing plate (6). The pressing plate (7) is installed on the side of the horizontal plate of the fixing plate (6) away from the vertical plate of the fixing plate (6). A baffle (8) is arranged between the fixing plate (6) and the socket (3). The top end of the baffle (8) is hinged to the inner wall of the box body (1), and the bottom of the baffle (8) is in contact with one end of the socket (3). A conveying device for driving the fixing plate (6) to move between the socket (3) and the fluorescence detector (5) is arranged on one side of the fixing plate (6). The fixing plate (6) is installed in the box body (1) through this conveying device. The code scanner (4) is located above the fixing plate (6), and the scanning end of the code scanner (4) faces the fixing plate (6).
2. The detection device of the detection kit according to claim 1, characterized in that: The conveying device includes a support plate (9) arranged on the fixing plate (6), a conveyor belt (10) arranged on one side of the support plate (9), two belt pulleys (11) sleeved inside the conveyor belt (10), and a motor (12) arranged on the belt pulley (11). The motor (12) is installed in the box body (1). The driving shaft of the motor (12) is connected to one of the belt pulleys (11). The two belt pulleys (11) are rotatably installed in the box body (1). The two sides of the conveyor belt (10) are respectively tensioned and sleeved on the two belt pulleys (11). The two ends of the support plate (9) are respectively installed on the bottom surface of the fixing plate (6) and the conveyor belt (10).
3. The detection device of the detection kit according to claim 2, characterized in that: A partition plate (13) is arranged in the box body (1). The partition plate (13) is installed in the box body (1) along the vertical direction. The socket (3), the code scanner (4), the fluorescence detector (5) and the fixing plate (6) are all located on one side of the partition plate (13). The conveyor belt (10), the two belt pulleys (11) and the motor (12) are all located on the other side of the partition plate (13). The two belt pulleys (11) are rotatably installed on the partition plate (13). A bracket (14) is arranged on the motor (12). The two sides of the bracket (14) are respectively installed on the motor (12) and the partition plate (13). A sleeve groove (15) is opened on the partition plate (13) along the horizontal direction. The support plate (9) is sleeved in the sleeve groove (15), and the groove height of the sleeve groove (15) coincides with the height of the support plate (9).
4. The detection device of the detection kit according to claim 1, characterized in that: A telescopic cylinder (16) is arranged between the code scanner (4) and the fluorescence detector (5) along the vertical direction. The telescopic cylinder (16) is installed in the box body (1). The telescopic direction of the telescopic cylinder (16) faces the bottom end of the box body (1). The telescopic cylinder (16) is located above the fixing plate (6). A push plate (17) is arranged on the telescopic end of the telescopic cylinder (16). The upper middle part of the push plate (17) is installed on the telescopic end of the telescopic cylinder (16). The push plate (17) is located between the vertical plate of the fixing plate (6) and the pressing plate (7).
5. The detection device of the detection kit according to claim 1, characterized in that: A storage groove is opened on the box body (1), and a drawer (18) with an open top is sleeved in the storage groove. The drawer (18) is located below the fixing plate (6).
6. The detection device of the detection kit according to claim 1, characterized in that: On one side of the cross plate of the fixed plate (6) away from the vertical plate of the fixed plate (6), a limiting plate (19) is inclinedly arranged. The limiting plate (19) is installed on the top surface of the cross plate of the fixed plate (6). One side of the limiting plate (19) is in contact with the pressing plate (7). Sleeve holes are respectively formed in the pressing plate (7) and the limiting plate (19). A first bolt (20) is sleeved in the sleeve hole. A first nut (21) is threadedly sleeved on one side of the first bolt (20). The pressing plate (7) is clamped on the limiting plate (19) by the first nut (21) and the first bolt (20).
7. The detection device of the detection kit according to claim 6, characterized in that: On one side of the cross plate of the fixed plate (6) away from the vertical plate of the fixed plate (6), a tensioning plate (22) is arranged. The tensioning plate (22) is installed on the top surface of the cross plate of the fixed plate (6). A tensioning hole is formed in the tensioning plate (22). A second bolt (23) is movably sleeved in the tensioning hole. A spring (24) is movably sleeved on the second bolt (23). A tensioning rod (25) is arranged on one side of the second bolt (23) close to the pressing plate (7). The tensioning rod (25) is installed on the second bolt (23). Both sides of the spring (24) are respectively in contact with the tensioning plate (22) and the tensioning rod (25). The tensioning rod (25) is in contact with the pressing plate (7). A tensioning groove is formed in the vertical direction on one side of the cross plate of the fixed plate (6) away from the vertical plate of the fixed plate (6). One side of the tensioning rod (25) is sleeved in the tensioning groove.