Experiment operation table main body for biomedical research engineering

By setting up a servo motor-driven cleaning component and a heating and drying function on the experimental workbench, the problem of poor manual cleaning results was solved, realizing automated workbench cleaning and disinfection, and improving the practicality and safety of the experimental workbench.

CN223931461UActive Publication Date: 2026-02-24XIYUAN HOSPITAL OF CHINA ACAD OF CHINESE MEDICAL SCI
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Patent Information

Application Number
CN202520510112.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-02-24
Estimated Expiration
2035-03-21

AI Technical Summary

Technical Problem

The existing experimental workbench requires manual operation for cleaning, and the cleaning effect is poor, making it difficult to completely remove corrosive materials and affecting the safety of experimental personnel.

Method used

The main body of an experimental operating table for biomedical research engineering was designed. It adopts a cleaning component driven by a servo motor, including a threaded rod, a servo motor, a cylinder, a scraper, and a liquid storage tank, to achieve automatic cleaning and disinfection, combined with heating and drying functions.

Benefits of technology

It achieves automated tabletop cleaning and disinfection, improves cleaning quality, reduces manual operation, and enhances the practicality and safety of the laboratory workbench.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of experiment operation tables, and discloses an experiment operation table main body for biomedical research engineering, which comprises two protection boxes, a cleaning assembly and a control assembly, the upper surfaces of the two protection boxes are provided with chutes communicated with the interiors of the protection boxes, the cleaning assembly is arranged on the two protection boxes, and the cleaning assembly comprises two servo motors. The two servo motors are fixedly installed on the front surfaces of the two protection boxes correspondingly, the output ends of the two servo motors are fixedly connected with threaded rods correspondingly, and the rear ends of the two threaded rods rotationally penetrate into the corresponding protection boxes correspondingly and are rotationally connected with the inner walls of the corresponding protection boxes correspondingly. By arranging the cleaning assembly, automatic cleaning of the surface of the operation panel can be achieved, workers do not need to manually operate a cleaning structure to clean the operation panel, the operation panel can be disinfected and secondarily cleaned, the cleaning quality is high, and then the practicability of the experiment operation table body of the biomedical research engineering is improved.
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Description

Technical Field

[0001] This utility model relates to the field of experimental operating table technology, specifically to the main body of an experimental operating table for biomedical research engineering. Background Technology

[0002] An existing experimental workbench with publication number CN218796039U discloses an experimental workbench including a tabletop. A support cabinet is fixedly connected to the lower surface of the tabletop. Several drawers are slidably connected inside the support cabinet. Cleaning structures are provided on the front and rear sides of the tabletop. Each cleaning structure includes two slide rails fixedly connected to the tabletop. A slider is slidably connected to the inner wall of each slide rail. A connecting rod is fixedly connected to the upper surface of the slider. A connecting plate is fixedly connected to the upper surface of the connecting rod. Two limiting rings are fixedly connected to the upper surface of the connecting plate. A screw is threaded onto the arc surface of each limiting ring. A sliding rod is slidably connected to the inner wall of each limiting ring. The sliding rod is slidably connected to the limiting plate. A cleaning pad is fixedly connected to the lower end of the sliding rod. This design solves the problem of potential hand injuries caused by corrosive materials during material cleaning.

[0003] While a laboratory workbench solves the problem of corrosive materials causing hand injuries to lab personnel during cleaning, it still requires manual operation of the cleaning mechanism. Furthermore, the workbench cannot be thoroughly cleaned using only a cleaning pad, resulting in poor cleaning performance. Utility Model Content

[0004] (a) Technical problems to be solved

[0005] To address the shortcomings of existing technologies, this utility model provides a main body for an experimental operating table in biomedical research engineering, which solves the problems of requiring staff to manually operate the cleaning structure to clean the table surface, and the difficulty in thoroughly cleaning the table surface using cleaning pads, resulting in poor cleaning effects.

[0006] (II) Technical Solution

[0007] To achieve the above objectives, the technical solution adopted by this utility model is as follows:

[0008] The main body of an experimental operating table for biomedical research engineering includes two protective boxes, and the upper surface of each protective box is provided with a sliding groove that communicates with its interior.

[0009] The cleaning component is mounted on two protective boxes and includes two servo motors, which are respectively fixedly installed on the front surface of the two protective boxes.

[0010] The output ends of the two servo motors are fixedly connected with threaded rods. The rear ends of the two threaded rods are rotatably inserted into the interior of the corresponding protective box and rotatably connected to the inner wall of the corresponding protective box.

[0011] Among them, the outer walls of the two threaded rods are threaded with movable sleeves, and the inner walls of the two sliding grooves are slidably connected with concave plates. The lower ends of the concave plates are fixedly connected to the two movable sleeves.

[0012] Among them, cylinders are fixedly installed on the left and right inner walls of the concave plate, and the extension and retraction ends of the two cylinders slide through the upper surface of the concave plate.

[0013] Among them, L-shaped connecting plates are fixedly connected to the opposite faces of the telescopic ends of the two cylinders, and scrapers are fixedly connected to the lower surfaces of the two L-shaped connecting plates. The lower ends of the scrapers slide through the lower surface of the concave plate.

[0014] Preferably, liquid storage tanks are fixedly installed on both the left and right sides of the concave plate. The liquid storage tank on the left side is used for storing cleaning water, and the liquid storage tank on the right side is used for storing disinfectant.

[0015] Each of the two liquid storage tanks has a water pump fixedly installed on its front surface, and the input end of each water pump is connected to the interior of the corresponding liquid storage tank.

[0016] Preferably, the output ends of both water pumps are fixedly connected to delivery pipes, and the ends of both delivery pipes away from the water pumps are fixedly connected to water storage pipes.

[0017] Both delivery pipes are connected to the interior of the water storage pipe, which is fixedly connected to the concave plate.

[0018] Preferably, a plurality of electric nozzles are fixedly connected to the lower surface of the water storage pipe, and the input ends of the plurality of electric nozzles are all connected to the interior of the water storage pipe.

[0019] Preferably, an air outlet box is fixedly connected to the rear surface of the concave plate, and a heating box is fixedly connected to the rear surface of each air outlet box, with a heating wire installed inside the heating box;

[0020] The heating box has a fixed exhaust pipe on its left side that communicates with its interior, and an exhaust fan is fixedly installed inside the exhaust pipe.

[0021] Preferably, the rear surface of the heating box is fixedly connected to a connecting pipe that communicates with its interior, and the connecting pipe is fixedly connected to the air outlet box, and the connecting pipe communicates with the interior of the air outlet box.

[0022] Preferably, a rectangular frame is fixedly connected to the opposite faces of the two protective boxes, the front surface of the rectangular frame is provided with a rectangular groove communicating with its interior, and an operating plate is fixedly connected to the inner wall of the rectangular frame.

[0023] Preferably, an inclined plate is fixedly connected to the front surface of the rectangular frame, a waste liquid collection box is provided on the lower surface of the inclined plate, and support legs are fixedly connected to the lower surfaces of the two protective boxes.

[0024] (III) Beneficial Effects

[0025] Compared with the prior art, this utility model provides a main body for an experimental operating table in biomedical research engineering, which has the following beneficial effects:

[0026] 1. The main body of the experimental operating table of this biomedical research project, by setting up a cleaning component, can not only realize automatic cleaning of the surface of the operating board, eliminating the need for staff to manually operate the cleaning structure to clean the operating board, but also disinfect and perform secondary cleaning on the operating board, resulting in high cleaning quality and thus improving the practicality of the main body of the experimental operating table of the biomedical research project.

[0027] 2. The main body of the experimental operating table of this biomedical research project is heated by the heating wire and blown onto the surface of the operating plate through the connecting pipe and the air outlet box. In addition, the surface of the operating plate is dried by the scraper during movement, which further improves the practicality of the main body of the experimental operating table of the biomedical research project. Attached Figure Description

[0028] Appendix Figure 1 This is a schematic diagram of the overall structure of the main body of the experimental operating table of this utility model;

[0029] Appendix Figure 2 This is a schematic diagram showing the connection between the movable sleeve and the threaded rod of this utility model;

[0030] Appendix Figure 3 This is a schematic diagram showing the connection between the electric nozzle and the water storage pipe of this utility model;

[0031] Appendix Figure 4 This is a schematic diagram showing the connection between the scraper and the L-shaped connecting plate of this utility model.

[0032] The following are the labels in the diagram: 1. Support leg; 2. Rectangular frame; 3. Slide groove; 4. Servo motor; 5. Waste liquid collection tank; 6. Inclined plate; 7. Rectangular trough; 8. Control panel; 9. Concave plate; 10. Cylinder; 11. Scraper; 12. L-shaped connecting plate; 13. Liquid storage tank; 14. Water pump; 15. Delivery pipe; 16. Protective box; 17. Electric nozzle; 18. Air outlet box; 19. Connecting pipe; 20. Heating box; 21. Exhaust pipe; 22. Moving sleeve; 23. Threaded rod; 24. Water storage pipe. Detailed Implementation

[0033] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0034] Please see the appendix Figures 1-4 This utility model provides a new technical solution:

[0035] A main body of an experimental operating table for biomedical research engineering includes two protective boxes 16. The upper surface of each of the two protective boxes 16 is provided with a sliding groove 3 that communicates with its interior. A cleaning component is provided on the two protective boxes 16. The cleaning component includes two servo motors 4, which are respectively fixedly installed on the front surface of the two protective boxes 16.

[0036] Among them, the output ends of the two servo motors 4 are fixedly connected with threaded rods 23. The rear ends of the two threaded rods 23 respectively rotatably penetrate into the interior of the corresponding protective box 16 and are rotatably connected to the inner wall of the corresponding protective box 16.

[0037] Among them, the outer walls of the two threaded rods 23 are threaded with movable sleeves 22, and the inner walls of the two sliding grooves 3 are slidably connected with concave plates 9. The lower ends of the concave plates 9 are fixedly connected to the two movable sleeves 22.

[0038] Among them, cylinders 10 are fixedly installed on the left and right inner walls of the concave plate 9, and the telescopic ends of the two cylinders 10 slide through the upper surface of the concave plate 9.

[0039] Among them, L-shaped connecting plates 12 are fixedly connected to the opposite faces of the telescopic ends of the two cylinders 10, and scrapers 11 are fixedly connected to the lower surfaces of the two L-shaped connecting plates 12. The lower end of the scraper 11 slides through the lower surface of the concave plate 9.

[0040] Furthermore, liquid storage tanks 13 are fixedly installed on both the left and right sides of the concave plate 9. The liquid storage tank 13 on the left side is used for storing cleaning water; while the liquid storage tank 13 on the right side is used for storing disinfectant.

[0041] Each of the two liquid storage tanks 13 has a water pump 14 fixedly installed on its front surface, and the input end of each water pump 14 is connected to the interior of the corresponding liquid storage tank 13.

[0042] Furthermore, the output ends of both water pumps 14 are fixedly connected to delivery pipes 15, and the ends of both delivery pipes 15 away from the water pumps 14 are fixedly connected to water storage pipes 24.

[0043] Both conveying pipes 15 are connected to the interior of the water storage pipe 24, and the water storage pipe 24 is fixedly connected to the concave plate 9.

[0044] Furthermore, multiple electric nozzles 17 are fixedly connected to the lower surface of the water storage pipe 24, and the input ends of the multiple electric nozzles 17 are all connected to the interior of the water storage pipe 24.

[0045] Furthermore, an air outlet box 18 is fixedly connected to the rear surface of the concave plate 9, and a heating box 20 is fixedly connected to the rear surface of the air outlet box 18. A heating wire is provided inside the heating box 20.

[0046] The heating box 20 has an exhaust pipe 21 fixedly connected to its interior on the left side, and an exhaust fan is fixedly installed inside the exhaust pipe 21.

[0047] Furthermore, a connecting pipe 19 communicating with the interior of the heating box 20 is fixedly connected to the rear surface of the heating box 20. The connecting pipe 19 is fixedly connected to the air outlet box 18 and communicates with the interior of the air outlet box 18.

[0048] Furthermore, a rectangular frame 2 is fixedly connected to the opposite sides of the two protective boxes 16. A rectangular groove 7 communicating with the interior is opened on the front surface of the rectangular frame 2, and an operating plate 8 is fixedly connected to the inner wall of the rectangular frame 2.

[0049] Furthermore, an inclined plate 6 is fixedly connected to the front surface of the rectangular frame 2, a waste liquid collection box 5 is provided on the lower surface of the inclined plate 6, and support legs 1 are fixedly connected to the lower surfaces of the two protective boxes 16.

[0050] Furthermore, when using the main body of the experimental operating table of this biomedical research project, when it is necessary to clean the operating panel 8;

[0051] First, two servo motors 4 are started. The output ends of the two servo motors 4 drive the two threaded rods 23 to rotate. The two threaded rods 23 drive the two moving sleeves 22 to move forward. The two moving sleeves 22 drive the concave plate 9 to move forward as a whole.

[0052] When multiple water storage pipes 24 move above the control panel 8, the water pump 14 located on the left is activated. The water pump 14 inputs the cleaning water from the liquid storage tank 13 located on the left into the water storage pipe 24 through the delivery pipe 15, and finally discharges it through multiple electric nozzles 17, spraying it onto the upper surface of the control panel 8.

[0053] Simultaneously, two cylinders 10 are activated, and the extension and retraction ends of the two cylinders 10 push the scraper 11 downward through two L-shaped connecting plates 12, so that the lower surface of the scraper 11 contacts the upper surface of the operating plate 8.

[0054] Multiple moving electric nozzles 17 spray cleaning water evenly onto the upper surface of the control panel 8 to clean the upper surface of the control panel 8. Then, the scraper 11 scrapes the cleaning water and impurities to move and clean the upper surface of the control panel 8. Finally, the cleaning water and impurities fall into the waste liquid collection tank 5 through the inclined plate 6, thus completing the first cleaning.

[0055] Subsequently, the two servo motors 4 are reset to drive the concave plate 9 to move backward, and the two cylinders 10 are reset. After the concave plate 9 is reset to its initial position, the two servo motors 4 are restarted to drive the concave plate 9 to move forward.

[0056] Simultaneously, the water pump 14 located on the right is started. The water pump 14 inputs the disinfectant from the liquid storage tank 13 located on the right into the water storage pipe 24 through the delivery pipe 15. Finally, it is discharged through multiple electric nozzles 17 and sprayed onto the upper surface of the control panel 8, thereby disinfecting the control panel 8.

[0057] Once the device moves to the designated position, the two servo motors 4 are reset to drive the concave plate 9 to move backward. After the concave plate 9 is reset to its initial position, the two servo motors 4 are restarted to drive the concave plate 9 to move forward. At the same time, the water pump 14 and two cylinders 10 on the left side are started to input cleaning water onto the upper surface of the operation plate 8. The scraper 11 drives the cleaning water and disinfectant forward, so that the cleaning water and disinfectant fall into the waste liquid collection tank 5 through the inclined plate 6, thus completing the second cleaning.

[0058] Among them, by setting up cleaning components, not only can the surface of the operation panel 8 be automatically cleaned, saving staff from manually operating the cleaning structure to clean the operation panel 8, but the operation panel 8 can also be disinfected and cleaned a second time, with high cleaning quality, thereby improving the practicality of the main body of the experimental operation table for biomedical research engineering.

[0059] After the second cleaning is completed, the exhaust fan inside the exhaust pipe 21 and the heating wire inside the heating box 20 are then started.

[0060] The exhaust fan draws air into the heating chamber 20. When the air passes through the heating wire, it is heated and becomes hot air. It is then blown onto the surface of the operating plate 8 through the connecting pipe 19 and the air outlet box 18. In conjunction with the scraper 11, the surface of the operating plate 8 is dried during movement, further improving the practicality of the main body of the experimental operating table for biomedical research engineering.

[0061] The structure is described as follows:

[0062] Support leg 1 provides support for the protective box 16.

[0063] Rectangular frame 2 is used to fix the operating panel 8.

[0064] Servo motor 4 is used to drive the threaded rod 23 to rotate.

[0065] The threaded rod 23 is used to drive the movable sleeve 22 to move.

[0066] The movable sleeve 22 is used to move the concave plate 9.

[0067] Inclined plate 6 is used to assist in cleaning water falling into the interior of waste liquid collection tank 5.

[0068] The slide 3 assists in the movement of the concave plate 9.

[0069] Cylinder 10 is used to drive the L-shaped connecting plate 12 to move up and down.

[0070] L-shaped connecting plate 12 is used to fix and drive scraper 11 to move up and down.

[0071] Connecting pipe 19 is used to input hot air into the interior of the air outlet box 18.

[0072] The vent box 18 is used to exhaust hot air.

[0073] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. A main body of an experimental operating platform for biomedical research engineering, characterized in that, include: Two protective boxes (16), and the upper surface of each protective box (16) is provided with a sliding groove (3) that communicates with its interior; The cleaning component is set on two protective boxes (16). The cleaning component includes two servo motors (4), which are respectively fixedly installed on the front surface of the two protective boxes (16). Among them, the output ends of the two servo motors (4) are fixedly connected with threaded rods (23), and the rear ends of the two threaded rods (23) respectively rotate through into the interior of the corresponding protective box (16) and are respectively rotatably connected to the inner wall of the corresponding protective box (16); Among them, the outer walls of the two threaded rods (23) are threaded with movable sleeves (22), and the inner walls of the two sliding grooves (3) are slidably connected with concave plates (9). The lower ends of the concave plates (9) are fixedly connected to the two movable sleeves (22). Among them, cylinders (10) are fixedly installed on the left and right inner walls of the concave plate (9), and the extension and retraction ends of the two cylinders (10) slide through the upper surface of the concave plate (9). Among them, L-shaped connecting plates (12) are fixedly connected to the opposite surfaces of the telescopic ends of the two cylinders (10), and scrapers (11) are fixedly connected to the lower surfaces of the two L-shaped connecting plates (12). The lower end of the scraper (11) slides through the lower surface of the concave plate (9).

2. The main body of the experimental operating platform for biomedical research engineering according to claim 1, characterized in that: Liquid storage tanks (13) are fixedly installed on both the left and right sides of the concave plate (9). The liquid storage tank (13) on the left side is used for storing cleaning water. The storage tank (13) on the right is used for storing disinfectant. Among them, water pumps (14) are fixedly installed on the front surface of the two liquid storage tanks (13), and the input ends of the two water pumps (14) are respectively connected to the interior of the corresponding liquid storage tanks (13).

3. The main body of an experimental operating platform for biomedical research engineering according to claim 2, characterized in that: Both of the pumps (14) are fixedly connected to a delivery pipe (15) at their output ends, and both delivery pipes (15) are fixedly connected to a water storage pipe (24) at the end away from the pumps (14). Both delivery pipes (15) are connected to the interior of the water storage pipe (24), and the water storage pipe (24) is fixedly connected to the concave plate (9).

4. The main body of an experimental operating platform for biomedical research engineering according to claim 3, characterized in that: Multiple electric nozzles (17) are fixedly connected to the lower surface of the water storage pipe (24), and the input ends of the multiple electric nozzles (17) are all connected to the interior of the water storage pipe (24).

5. The main body of an experimental operating platform for biomedical research engineering according to claim 1, characterized in that: The rear surface of the concave plate (9) is fixedly connected to an air outlet box (18), and the rear surface of the air outlet box (18) is fixedly connected to a heating box (20). The heating box (20) is equipped with a heating wire inside. The heating box (20) is fixedly connected to the left side by an exhaust pipe (21) that communicates with its interior, and an exhaust fan is fixedly installed inside the exhaust pipe (21).

6. The main body of an experimental operating platform for biomedical research engineering according to claim 5, characterized in that: The rear surface of the heating box (20) is fixedly connected to a connecting pipe (19) that communicates with its interior. The connecting pipe (19) is fixedly connected to the air outlet box (18), and the connecting pipe (19) communicates with the interior of the air outlet box (18).

7. The main body of an experimental operating platform for biomedical research engineering according to claim 1, characterized in that: A rectangular frame (2) is fixedly connected to the opposite sides of the two protective boxes (16). A rectangular groove (7) communicating with the interior is opened on the front surface of the rectangular frame (2). An operating plate (8) is fixedly connected to the inner wall of the rectangular frame (2).

8. The main body of an experimental operating platform for biomedical research engineering according to claim 7, characterized in that: An inclined plate (6) is fixedly connected to the front surface of the rectangular frame (2), and a waste liquid collection box (5) is provided on the lower surface of the inclined plate (6). Support legs (1) are fixedly connected to the lower surfaces of the two protective boxes (16).