An inspection apparatus console

By designing an integrated control, cleaning, testing, and storage unit for inspection instruments, the problem of storing slides in case of malfunction was solved, achieving efficient integrated cleaning and storage of slides and improving experimental efficiency and cleanliness.

CN117654660BActive Publication Date: 2026-05-05THE FIRST AFFILIATED HOSPITAL ZHEJIANG UNIV COLLEGE OF MEDICINE +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
THE FIRST AFFILIATED HOSPITAL ZHEJIANG UNIV COLLEGE OF MEDICINE
Filing Date
2023-12-18
Publication Date
2026-05-05

AI Technical Summary

Technical Problem

In the existing technology, the glass slide cleaning and storage device loses storage space when the cleaning function fails, and the experimental operation is inconvenient, affecting the experimental efficiency.

Method used

Design an operating table for testing instruments, integrating a control unit, a cleaning unit, a testing unit, and a storage unit, equipped with a placement component and a transmission component, to achieve the orderly placement, cleaning, and storage of glass slides in one integrated manner. Humidity detection and dehumidification are performed through a suction tube and a temperature and humidity sensor, and the cleanliness of the glass slides is detected and processed accordingly using a signal terminal.

Benefits of technology

This system integrates efficient cleaning and storage of glass slides, improving experimental efficiency, ensuring the cleanliness of the storage area and the cleanliness of the glass slides, and reducing manual operation steps.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention discloses an operating table for testing instruments, relating to the field of testing instrument processing technology. It includes a housing, with a control unit, a cleaning unit, an experimental unit, and a storage unit respectively arranged on the upper surface of the housing. The control unit includes a processor, several control buttons, and a display screen, all of which are signal-connected to the processor. The cleaning unit is used to clean glass slides after use. The experimental unit is an operating surface for using glass slides. The storage unit is used to place cleaned glass slides. A cover plate is hinged to one side of the storage unit. The interior of the storage unit includes a placement component and a transmission component. The placement component is used to arrange several glass slides in an orderly manner. A suction tube is located at the rear of the storage unit, and a temperature and humidity sensor is installed at the connection between the suction tube and the storage unit. This device solves the current problem of how to integrate cleaning and storage of glass slides after use.
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Description

Technical Field

[0001] This invention relates to the field of medical device processing technology, specifically to an operating table for testing instruments. Background Technology

[0002] When conducting chemical or physical experiments, glass slides are often needed to observe cellular components. When observing under a microscope, it is essential to ensure the cleanliness and hygiene of the glass slides. First, they are wiped with alcohol, and then tweezers, trays, and colorants are used to perform microscopic examinations on the slides. After use, they are usually manually cleaned, dried, and then placed in a professional sterilizer. This process is too cumbersome and affects efficiency.

[0003] To address the aforementioned issues, patent application number 201821363690.7 discloses an integrated machine for cleaning, disinfecting, and storing glass slides, which includes a cleaning tank. The cleaning tank comprises a top cover and a glass slide storage rack. An alcohol sprayer is located at the bottom of the top cover, and a rotating plate is located at the bottom of the cleaning tank. A power unit is located below the cleaning tank. A cleaning solution tank is located to the left of the power unit, and a clean water storage tank is located to the right. This machine can quickly and efficiently clean the required medical glass slides and can clean a large number of medical glass slides at once. Furthermore, it can dry and disinfect the slides after cleaning, allowing them to be stored for a long time.

[0004] However, in actual use, the cleaning tank is also the device for storing glass slides. If the cleaning function of the cleaning tank malfunctions and needs to be repaired, the glass slides will also lose their storage space. Therefore, the convenient use of cleaning and storage cannot be achieved. In addition, when it is necessary to take out the glass slides for experiments, it is still necessary to go to another operating table to conduct the experiments, which does not achieve the effect of saving experimental time. This has become a problem that urgently needs to be solved by people in this field. Summary of the Invention

[0005] The purpose of this invention is to provide an operating table for an inspection instrument to solve the problems mentioned in the background art.

[0006] To solve the above-mentioned technical problems, the present invention provides the following technical solution: an inspection instrument operating table, comprising a housing, wherein the upper surface of the housing is respectively provided with:

[0007] The control unit includes a processor, several control buttons, and a display screen, all of which are signal-connected to the processor.

[0008] The cleaning section is used to clean glass slides after they have been used.

[0009] The experimental section contains work surfaces for using glass slides.

[0010] The storage section is used to place cleaned glass slides. A cover plate is hinged to one side of the storage section. The storage section is equipped with a sorting component and a transmission component. The sorting component is used to arrange several glass slides in an orderly manner. A suction tube is provided at the rear of the storage section. A temperature and humidity sensor is provided at the connection between the suction tube and the storage section. The temperature and humidity sensor is connected to the control unit.

[0011] The rear surface of the enclosure is provided with a heat dissipation vent.

[0012] The present invention further describes that the cleaning unit includes:

[0013] A cleaning tank, wherein a cover plate is hinged to the upper left side of the cleaning tank;

[0014] A set of L-shaped plates is fixed to the inner upper surface of the box, and the set of L-shaped plates is slidably connected to the left and right side walls of the cleaning box;

[0015] A recycling bin is provided, and a recycling pipe is connected between the recycling bin and the cleaning bin. An electrically controlled valve is installed on the recycling pipe.

[0016] A liquid supply tank is provided, and a liquid supply pipe is provided between the liquid supply tank and the cleaning tank. A liquid pump is provided at the liquid supply pipe. The electric control valve, the liquid pump and the processor are connected by signal.

[0017] The present invention further illustrates that the surface of the cover plate is provided with a dispensing port, a baffle is provided on the side of the cover plate facing the interior of the storage section, a telescopic part is provided on one side of the baffle, the telescopic part is fixedly connected to the cover plate, and the output end of the telescopic part is fixedly connected to the baffle.

[0018] The present invention further describes that the internal structure of the storage section includes:

[0019] First chamber;

[0020] The second chamber has a first partition between the first chamber and the second chamber, and a heating element is fixedly installed inside the second chamber.

[0021] The third chamber is provided with a second partition between the second chamber and the third chamber. The second partition is convex in shape and has several through holes evenly distributed on it.

[0022] The inner walls of the first chamber and the second chamber are provided with ventilation openings, and filters are fixedly installed at the ventilation openings. The placement component and the transmission component are disposed on the second partition.

[0023] The present invention further describes that the placement component includes:

[0024] A set of limiting plates, bolted to the second partition;

[0025] A plurality of partition plates are disposed on a set of limiting plates, and a plurality of circular rollers are disposed inside the partition plates, the circular rollers being made of an elastic material;

[0026] A plurality of partition strips are fixed below the partition plate, the partition strips being longer than the partition plate, and a movable groove is formed between two adjacent partition plates.

[0027] The present invention further describes that the transmission component includes:

[0028] A chute is provided on the front side of the second partition plate, and an annular groove is provided at the bottom of the chute, which extends through the interior of the second partition plate.

[0029] The slider has a lead screw internally connected to it, one end of which is connected to a second motor. The slider has brackets fixedly connected to the four corners of its upper surface, and the top surface of the brackets is provided with a top plate.

[0030] A set of first conveyor rollers is disposed on the side of the slider away from the placement assembly, and a first motor is disposed above one of the first conveyor rollers;

[0031] A set of second conveyor rollers, with a second central shaft in the middle of the set of second conveyor rollers. The upper and lower ends of the second central shaft are respectively connected to the top plate and the bearing between the sliders. A third motor is connected above one of the second central shafts.

[0032] The upper ends of both the first set of conveyor rollers and the second set of conveyor rollers are equipped with gears, which are meshing transmissions.

[0033] The first motor, the second motor, and the third motor are bidirectional motors.

[0034] The present invention further illustrates that the lower pipe of the suction pipe is connected to a filter box, the lower end pipe of the filter box is connected to a first connecting pipe, the other end of the first connecting pipe is connected to a recovery pipe, and a suction pump and a condenser are provided on the first connecting pipe. An exhaust section is provided on the side of the first connecting pipe near the condenser, and a plurality of micro-pores are opened on the surface of the exhaust section. The exhaust section is connected to the interior of the first connecting pipe.

[0035] The present invention further describes that the internal structure of the storage section includes:

[0036] First signal transmitter;

[0037] Second signal transmitter;

[0038] The first signal receiving end is positioned opposite to the first signal transmitting end;

[0039] The second signal receiver is positioned opposite to the second signal transmitter.

[0040] The first signal transmitter, the second signal transmitter, the first signal receiver, and the second signal receiver are all connected to the control unit and are used to detect the cleanliness of the glass slide surface.

[0041] The present invention further describes that the first chamber is provided with a replenishment box, and the internal pipe of the replenishment box is connected to an infusion pump. The other end of the infusion pump is connected to a second pipe, which is a Y-shaped telescopic hose. The other two connecting pipes of the second pipe are each provided with a control valve, and the two connecting ends of the second pipe are respectively connected to the lower end bearing of the second central shaft inside the second conveying roller. The second conveying roller is provided with a first flow channel for the transmission of cleaning fluid. The surface of the second conveying roller is provided with an annular groove, and a cleaning block is connected to the annular groove by a spring. The outer surface of the cleaning block is made of cotton, and the inside of the cleaning block is provided with fine holes to facilitate the seepage of cleaning fluid. The cleaning block is connected to the first flow channel pipe.

[0042] The present invention further illustrates that a sealing strip and a magnetic strip are fixed at the edge of the cover plate, and a corresponding magnetic structure is provided at the connection between the frame of the storage part and the magnetic strip.

[0043] Compared with the prior art, the beneficial effects achieved by the present invention are:

[0044] The slide operation table is equipped with a control section, a cleaning section, an experimental section, and a storage section to ensure standardized use. The experimental section 4 is the operation table for using slides and has a designated area to prevent instruments from being placed haphazardly. The cleaning section performs a cleaning process on the slides after use, and the storage section is specifically designed for storing the cleaned slides. This test instrument operation table is an integrated intelligent system that combines operation, cleaning, and storage.

[0045] The system is equipped with a sorting component and a transport component to arrange several glass slides in an orderly manner. The transport component is used to transport the glass slides and position them for delivery. It also performs a further cleaning process on the glass slides during the transport process and can be used for various storage methods.

[0046] By incorporating a suction tube, temperature and humidity sensors, and a condensation chamber, the system utilizes airflow to achieve real-time humidity detection and dehumidification. This ensures that the humidity meets storage requirements. Furthermore, the dehumidification process also cleans impurities within the third chamber 17 to a certain extent, thereby improving the cleanliness of the interior.

[0047] By setting up a replenishment box, a first signal transmitter, a second signal transmitter, a first signal receiver, a second signal receiver, and a cleaning block, the cleanliness of the glass slide surface can be detected when the glass slide is transported through the transmission assembly, and corresponding processing procedures can be carried out according to the cleanliness of the glass slide surface to improve the cleanliness of the stored glass slide. Attached Figure Description

[0048] The accompanying drawings are provided to further illustrate the invention and form part of the specification. They are used in conjunction with embodiments of the invention to explain the invention and do not constitute a limitation thereof. In the drawings:

[0049] Figure 1 This is a schematic diagram of the overall structure of the present invention;

[0050] Figure 2 This is a schematic diagram of the overall front view and partial cross-section of the present invention;

[0051] Figure 3 This is a schematic diagram of the placement component and transmission component of the present invention;

[0052] Figure 4 This is the present invention. Figure 1 A schematic diagram of the rear view structure;

[0053] Figure 5 This is the present invention. Figure 1 A schematic diagram of the structure of region A;

[0054] Figure 6 This is the present invention. Figure 1 Schematic diagram of area B;

[0055] Figure 7 This is a schematic diagram of the structure above the slider of the present invention;

[0056] Figure 8 This is a schematic diagram of the inner cross-sectional plane of the second conveying roller of the present invention;

[0057] Figure 9 This is the invention Figure 2 Schematic diagram of region C;

[0058] Figure 10 This is a schematic internal cross-sectional view of the filter box of the present invention;

[0059] Figure 11 This is a schematic diagram of the exhaust section arrangement of the present invention;

[0060] In the diagram: 1. Housing; 2. Control unit; 3. Cleaning unit; 4. Experimental unit; 5. Storage unit; 6. Cover plate; 7. Temperature and humidity sensor; 8. Cleaning tank; 9. Recovery tank; 10. Liquid supply tank; 11. Liquid supply pipe; 12. Recovery pipe; 13. Exhaust unit; 14. Condensation tank; 15. First chamber; 16. Second chamber; 161. First partition; 162. Second partition; 17. Third chamber; 18. Suction pipe; 19. First signal transmitter; 20. Second signal transmitter; 21. First signal receiver; 22. Second signal receiver; 23. Feeding tank; 24. 25. Heating section; 26. Telescopic section; 27. Baffle; 28. Inlet; 29. ​​Divider plate; 30. Lead screw; 31. Slider; 32. Support; 33. First conveyor roller; 34. Second conveyor roller; 35. Cleaning block; 36. First flow channel; 37. Control valve; 38. Infusion pump; 39. Spacer bar; 40. Limiting plate; 41. First through pipe; 42. Heat dissipation port; 33. Filter box; 34. Filter plate; 45. Suction pump; 46. Annular groove; 47. Sealing strip; 48. Magnetic strip; 49. First motor; 40. Second motor; 41. Third motor. Detailed Implementation

[0061] The following detailed, non-limiting description of the technical solution of the present invention, in conjunction with preferred embodiments and accompanying drawings, is provided. Obviously, the described embodiments are merely some, not all, of the embodiments of the present invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without inventive effort are within the scope of protection of the present invention.

[0062] Example 1:

[0063] Please see Figure 1-2 The present invention provides a technical solution: an inspection instrument operating table, including a housing 1. The upper surface of the housing 1 is respectively provided with a control unit 2, a cleaning unit 3, an experimental unit 4, and a storage unit 5. The control unit 2 is used to preset and adjust relevant operating parameters for the standardized use of the slide operating table. The experimental unit 4 is the operating surface for using slides and a certain area is set to prevent instruments from being placed randomly. The cleaning unit 3 is used to clean the slides after use. The storage unit 5 is used to specially place the cleaned slides. This inspection instrument operating table integrates operation, cleaning, and storage into a smart setting, which facilitates the use of slides.

[0064] The control unit 2 is equipped with a processor for receiving data and outputting commands. The control unit 2 also includes several control buttons and a display screen. The control buttons are used for setting operating parameters and outputting commands. The display screen is used to switch and display the operating status of the corresponding components, so that the operator can understand the operating status of each device on the control panel in a timely manner. A support plate is fixed to the back of the display screen. The support plate has a bearing with a support rod inside. The support rod is fixed to the upper surface of the control unit 2. The position of the display screen can be rotated and adjusted according to the user's usage habits. The control buttons and the display screen are all connected to the processor for signal transmission.

[0065] Experiment Section 4 is a pre-defined experimental area where operators can place corresponding supporting equipment on its upper surface area according to the needs of the experimental instruments, so as to achieve the purpose of convenient use.

[0066] The cleaning unit 3 includes a cleaning box 8, which is an ultrasonic cleaning box. The ultrasonic cleaning setting achieves a better cleaning effect. A cover plate is hinged to the upper left side of the cleaning box 8. L-shaped plates are slidably connected to the left and right side walls of the cleaning box 8. One end of the L-shaped plate is fixed to the inner upper surface of the box 1. The L-shaped plate supports the cleaning box 8 and facilitates its assembly and disassembly inside the box 1.

[0067] The cleaning unit 3 also includes a recovery tank 9 and a supply tank 10. A recovery pipe 12 connects the recovery tank 9 and the cleaning tank 8. An electrically controlled valve is installed on the recovery pipe 12 to control the internal connection status of the recovery pipe 12. A supply pipe 11 is installed between the supply tank 10 and the cleaning tank 8. A liquid pump is installed at the supply pipe 11 and is fixed inside the housing 1. The electrically controlled valve, the liquid pump, and the processor are connected by signal. When the liquid pump starts, the cleaning solution inside the supply tank 10 enters the cleaning tank 8 through the supply pipe 11. The amount of liquid inside the cleaning tank 8 is determined by the start time of the liquid pump. After the slides are used, they are placed inside the cleaning tank 8. The cleaning tank 8 starts and performs ultrasonic cleaning on the slides. In addition, when the cleaning solution in the cleaning tank 8 needs to be replaced, the electrically controlled valve starts, and the cleaning solution in the cleaning tank 8 enters the recovery tank 9 through the recovery pipe 12, thereby realizing the use and replacement of the slide cleaning solution.

[0068] Storage section 5 is configured as a box structure, and a cover plate 6 is hinged to one side of the front surface of storage section 5. Please refer to [link / reference]. Figure 5 The surface of the cover plate 6 is provided with a dispensing port 27. A baffle 26 is provided on the side of the cover plate 6 facing the inside of the storage section 5. A telescopic part 25 is provided on one side of the baffle 26. The telescopic part 25 includes, but is not limited to, an electric telescopic rod. The telescopic part 25 is fixedly connected to the cover plate 6. The output end of the telescopic part 25 is fixedly connected to the baffle 26. The opening and closing of the dispensing port 27 is controlled by the telescopic part 25. For easy observation, the cover plate 6 can be made of transparent material.

[0069] The storage section 5 is internally divided into a first chamber 15, a second chamber 16, and a third chamber 17. A first partition 161 is provided between the first chamber 15 and the second chamber 16, and a second partition 162 is provided between the second chamber 16 and the third chamber 17. The surfaces of the first partition 161 and the second partition 162 are coated with high-temperature resistant heat-insulating material, and a pull-out connection can be used between them and the inner wall of the storage section 5 for easy disassembly and assembly. Ventilation openings are provided on the inner walls of the first chamber 15 and the second chamber 16, and filters are fixedly installed at the ventilation openings to connect to the external space.

[0070] Please see Figure 3 The second partition 162 is convex in shape and has several through holes evenly distributed on it to allow airflow. The second partition 162 is equipped with a sorting component and a transmission component. The sorting component is used to arrange several glass slides in an orderly manner, and the transmission component is used to transport the glass slides and to perform further cleaning processes on the glass slides during the transport process.

[0071] The placement assembly includes a set of limiting plates 35 for limiting the amount of glass slides stored. The limiting plates 35 are bolted to the second partition 162. The total amount of glass slides stored can be adjusted by adjusting the bolt fixing position of the limiting plates 35. Several partition plates 28 are arranged between the limiting plates 35. Several round rollers are arranged inside the partition plates 28. The round rollers are made of elastic material. When the glass slides enter between the partition plates 28, they will undergo elastic deformation, thereby enabling the clamping and fixing of glass slides of various thicknesses. A spacer strip 34 is fixed below the partition plate 28. The length of the spacer strip 34 is longer than the length of the partition plate 28. A moving groove is formed between two adjacent partition plates 28. The glass slides can move orderly into the space between the partition plates 28 along the moving groove to realize the placement of the glass slides.

[0072] The transmission component is located between the positioning component and the cover plate 6 in the closed state. The transmission component includes a slide groove opened on the front side of the second partition plate 162. A slider 30 is slidably connected inside the slide groove. A lead screw 29 is rotatably connected inside the slider 30. A second motor 44 is provided at one end of the lead screw 29. The second motor 44 is a bidirectional motor. The output end of the second motor 44 is connected to the lead screw 29 through a coupling. The second motor 44, slider 30, and lead screw 29 form a lead screw nut structure. When the second motor 44 is energized, the output end of the second motor 44 drives the lead screw 29 to rotate, thereby driving the slider 30 to move along the inside of the slide groove to achieve the positioning and transmission effect of the glass slide.

[0073] Please see Figure 6Each of the four corners of the upper surface of the slider 30 is fixedly connected to a bracket 31. A top plate is provided on the top surface of the bracket 31. A set of second conveyor rollers 33 is provided on the side of the slider 30 closest to the settling component. A second central shaft is provided in the middle of the second conveyor rollers 33. The upper and lower ends of the second central shaft are respectively connected to the top plate and the slider 30 via bearings. A third motor 45 is provided above the second central shaft. The output end of the third motor 45 is fixedly connected to the second central shaft. A set of first conveyor rollers 32 is provided on the side of the slider 30 furthest from the settling component. Each set of second conveyor rollers 33 has a gear at its upper end, and the gears are meshed for transmission. A first motor 43 is located above one of the first conveyor rollers 32. The output end of the first motor 43 passes through the top plate and is fixed to the middle of the gear located below it. The first motor 43 is a bidirectional motor. When the first motor 43 is started, the first conveyor roller 32 is rotated through the gear meshing, thereby transmitting the glass sheets located between the first conveyor rollers 32. The third motor 45 is a bidirectional motor, and the rotation of the second conveyor roller 33 is driven in the same way as described above.

[0074] Please see Figure 2 , Figure 9 A sealing strip 41 and a magnetic strip 42 are fixed to the edge of the side surface of the cover plate 6 facing the inside of the storage section 5. A corresponding magnetic structure is provided at the connection between the frame of the storage section 5 and the magnetic strip 42. The cover plate 6 can be closed with the storage section 5 through magnetic attraction. The sealing strip 41 improves the closing effect between the cover plate 6 and the storage section 5.

[0075] In this embodiment, after the glass slide is used, it is first placed in the cleaning tank 8 which contains cleaning solution. The ultrasonic cleaning mode is selected at one of the buttons on the control unit 2. If the ultrasonic cleaning mode is selected, the cover is closed with the cleaning tank 8. After the set cleaning time is completed, the operator takes out the glass slide, wipes it, and puts it into the storage unit 5.

[0076] Placement Method 1: When there is a large number of glass slides to be cleaned, in order to improve processing efficiency, after all glass slides have been cleaned and wiped, the cover plate 6 can be opened and the glass slides can be manually placed in the partition plates 28 in an orderly manner along the corresponding moving grooves for batch placement. Then the cover plate 6 and the storage part 5 can be closed to realize the placement of glass slides after batch cleaning and wiping. Afterwards, the glass slides can be further dried by the subsequent hot air flow.

[0077] In the second placement method, when cleaning a large number of glass slides and using a method of wiping and storing simultaneously, to reduce dust ingress, the cover plate 6 and storage section 5 are closed, the telescopic section 25 retracts, and the baffle 26 moves away from the inlet 27. The initial position of the slider 30 is aligned with the inlet 27. When the slider 30 moves, by pre-controlling the forward and reverse rotation of the second motor 44 and its running time, the slider 30 sequentially transports and places the glass slides in a straight line from one side limit plate 35 to the other side limit plate 35. Specifically, when the slider 30 is in the initial position, the cleaned glass slides are manually placed from the inlet 27 into the middle area of ​​the first conveyor roller 32. At this time, the first motor 43 and the third motor 45 are started. For a period of time, the first conveyor roller 32 and the second conveyor roller 33 rotate, moving the glass slide between the first conveyor roller 32 and the second conveyor roller 33. Then, the second motor 44 starts, moving the glass slide between the corresponding moving slots. The first motor 43 and the third motor 45 start again, transferring the glass slide along the moving slots to the spacers 28. After that, the second motor 44 starts, causing the slider 30 to return to its initial position. The above process is repeated to transfer and place the next glass slide. When there are few glass slides, the above placement method can also be used. After all the glass slides have been placed, the telescopic part 25 moves the baffle 26 and blocks the delivery port 27 to prevent a large amount of dust from the outside space from entering the interior of the storage part 5, thereby improving the cleanliness of the glass slide placement space.

[0078] Example 2:

[0079] Based on Example 1, the following structure is added: Please refer to Figure 4 A suction pipe 18 is provided on the rear side of the storage section 5. A filter box 38 is connected to the lower pipe of the suction pipe 18. A first through pipe 36 is connected to the lower end of the filter box 38. A temperature and humidity sensor 7 is provided at the connection between the suction pipe 18 and the storage section 5. The temperature and humidity sensor 7 is connected to the control unit 2. The temperature and humidity sensor 7 detects the humidity inside the storage section 5 and transmits the detection data to the control unit 2. A heat dissipation vent 37 is provided on the rear surface of the box 1 for airflow.

[0080] The other end of the first pipe 36 is connected to the recovery pipe 12, and the first pipe 36 is equipped with a suction pump 39 and a condenser box 14. The condenser box 14 is equipped with a condenser, which is the prior art. Since the first pipe 36 runs through the inside of the condenser box 14, when the hot air flow of the first pipe 36 passes through the inside of the condenser box 14, the vapor molecules in the hot air flow are liquefied by condensation, so as to facilitate recovery.

[0081] Please see Figure 10The filter box 38 is equipped with a filter plate 381 inside, which is used to filter impurities in the airflow to prevent impurities from entering the recovery box 9. The filter plate 381 and the filter box 38 are connected by a pull-out mechanism, and the accumulated impurities are cleaned by pulling out the filter plate 381.

[0082] Please see Figure 11 An exhaust section 13 is provided on the side of the first pipe 36 near the condenser box 14. Several micro-holes are opened on the surface of the exhaust section 13. The exhaust section 13 is connected to the inside of the first pipe 36. The recovered liquid after condensation is discharged into the recovery box 9 through the first pipe 36, while the airflow is discharged from the exhaust section 13 to perform gas-liquid separation.

[0083] In this embodiment, the humidity of the third chamber 17 needs to be controlled when the glass slide is placed. Therefore, after the glass slide is placed, the humidity of the glass slide in the third chamber 17 needs to be detected. The detection method is as follows: the suction pump 39 is started, and the external airflow is discharged through the filter of the second chamber 16, the through hole of the second partition 162 and the suction tube 18, while driving the internal water vapor to be discharged. The temperature and humidity sensor 7 detects the humidity in the airflow in real time, stores and records the detected humidity value, and transmits it to the control unit 2. The data is converted and displayed on the display screen for easy observation by the operator.

[0084] When the airflow is discharged from the suction pipe 18, it first passes through the filter box 38, which filters impurities in the airflow and collects the filtered impurities. The filtered airflow passes through the condenser box 14, where gas-liquid separation is achieved. The liquid is below the gas and flows into the recovery box 9 through the first pipe 36. The gas is discharged from the exhaust section 13. In this way, the airflow not only achieves real-time humidity detection, but also performs dehumidification under the action of the airflow. When the humidity data displayed on the screen meets the storage humidity requirements, the suction pump 39 can stop running. During the dehumidification process, it can also clean the impurities inside the third chamber 17 to a certain extent, thereby improving the cleanliness of the interior.

[0085] Example 3:

[0086] Please see Figure 7 , 8 Based on Embodiment 1 or Embodiment 2, the following structure is configured:

[0087] A heating element 24 is fixedly installed inside the second chamber 16. The heating element 24 can be a heating tube or a heating wire. It is electrically connected to an external power source via the control unit 2. When the power is turned on, the heating element 24 heats up, thereby raising the internal temperature and achieving a further drying effect on the glass slide.

[0088] The bottom of the chute is provided with an annular groove 40, which is installed through the interior of the second partition 162 to facilitate the installation and movement of subsequent pipelines.

[0089] The storage unit 5 has a first signal transmitter 19 and a second signal transmitter 20 arranged sequentially from the outside to the inside on the left side of its inner wall. Correspondingly, the storage unit 5 has a first signal receiver 21 and a second signal receiver 22 arranged sequentially from the outside to the inside on the right side of its inner wall. The first signal transmitter 19, the second signal transmitter 20, the first signal receiver 21, and the second signal receiver 22 are all connected to the control unit 2 for detecting the cleanliness of the glass slide surface. The first signal transmitter 19 and the second signal transmitter 20 are light transmitters, and the first signal receiver 21 and the second signal receiver 22 are light receivers.

[0090] The first chamber 15 contains a replenishment tank 23, which is filled with cleaning fluid for further cleaning of glass slides with low cleanliness levels. An infusion pump 334 is connected to the internal pipes of the replenishment tank 23. The other end of the infusion pump 334 is connected to a second conduit, which is a Y-shaped flexible hose. Control valves 333 are installed on the other two connecting pipes of the second conduit. The two connecting ends of the second conduit are respectively connected to the lower bearing of the second central shaft inside the second conveyor roller 33, and seals are provided at the connection points to prevent liquid leakage. The second central shaft and the second conveyor roller 33 are integrally formed. The second conveyor roller 33 has a first flow channel 332 inside for the transmission of cleaning fluid. The surface of the second conveyor roller 33 has an annular groove. A cleaning block 331 is spring-connected inside the annular groove. The outer surface of the cleaning block 331 is made of cotton. The cleaning block 331 has fine holes inside to facilitate the seepage of cleaning fluid. The cleaning block 331 is connected to the first flow channel 332 pipe, which is a flexible tube. The body of the cleaning block 331 is an elastic component, such as rubber.

[0091] In this embodiment, the operation of the heating unit 24 can improve the internal dehumidification efficiency. When the airflow process in Embodiment 2 is performed, the processor monitors the humidity data detected by the temperature and humidity sensor 7 in real time and sets T as the limited dehumidification time. When the airflow humidity in the storage unit 5 does not reach the storage humidity requirement within T, the processor transmits a signal to the heating unit 24, and the heating unit 24 is activated to heat the airflow, thereby improving the dehumidification efficiency in the third chamber 17. When the detected airflow humidity meets the storage humidity requirement, the heating unit 24 stops operating, and the dehumidification process also stops accordingly.

[0092] To ensure the cleanliness of the glass slide surface, the cleanliness of the glass slide surface can be detected when the glass slide is transported through the transfer assembly, and corresponding processing procedures can be carried out according to the cleanliness of the glass slide surface to improve the cleanliness of the stored glass slide.

[0093] The specific steps are as follows:

[0094] The glass slide is inserted through the inlet 27. After the first motor 43 and the third motor 45 run for a period of time, they stop and move the glass slide between the first conveyor roller 32 and the second conveyor roller 33, where it remains stationary.

[0095] The first signal transmitter 19 and the first signal receiver 21 are activated. The first signal receiver 21 detects the brightness of the light emitted by the first signal transmitter 19. When the light encounters a dirty spot on the surface of the glass slide, the brightness of the light transmission will change. The first signal receiver 21 receives the location and area data of the change in brightness of the light and transmits it to the controller.

[0096] After acquiring position and area data, the controller controls the first motor 43 and the third motor 45 to operate. When the first signal receiver 21 does not receive data indicating a change in light intensity, the slide is placed within the partition plate 28. When the first signal receiver 21 receives data indicating a change in light intensity, the infusion pump 334 starts and the control valve 333 opens when the slide reaches the dirty area. The cleaning solution in the replenishment tank 23 enters the cleaning block 331 through the pipeline. When the slide contacts the cleaning block 331, the cleaning solution is squeezed out and cleans the surface of the slide. During the wiping process, as the third motor 45 operates, the glass slide is removed from the slider 30 after wiping. Simultaneously, the second signal transmitter 20 and the second signal receiver 22 perform a secondary inspection of the wiped glass slide surface and transmit the inspection data to the controller. The controller calculates a ratio coefficient α between the area data from the second inspection and the area data from the first inspection, denoted as α = s / S, where s is the area data from the second inspection, S is the area data from the first inspection, and S≠0. The controller then determines the cleanliness level after cleaning based on this ratio coefficient.

[0097] When α = 0, it indicates that the glass slide has been cleaned and is considered to be of a high level of cleanliness. The second motor 44 and the third motor 45 run in sequence to feed the glass slide into the spacer 28.

[0098] When 0 < α ≤ 0.5, it indicates that cleaning block 331 has achieved a certain cleaning effect and is considered to be of medium cleanliness level. The surface of the slide should be wiped to improve the cleanliness level of the slide surface.

[0099] When 0.5 < α ≤ 1, it indicates that the cleaning block 331 has not achieved the cleaning effect, and the dirt in this area should be manually removed. Therefore, the third motor 45 and the first motor 43 will run in reverse, and the glass slide will be pushed out from the delivery port 27. It will be manually removed and processed separately.

[0100] When the cleanliness level is determined to be medium, the controller will control the third motor 45 to run in reverse, and the infusion pump 334 will start working again. The number of forward and reverse runs of the third motor 45 will be controlled according to the specific value of α. The reverse-forward run of the third motor 45 is set as 1 cleaning cycle. If it is set that when α = 0.5, the third motor 45 will run 10 cycles by default, then the number of cleaning cycles of the third motor 45 will be positively correlated with α. The specific number of cycles is converted using the rounding method. The default number of cycles can be manually modified.

[0101] After completing the set cleaning process, the second signal transmitter 20 and the second signal receiver 22 perform a second test, comparing the test value with the area value of the first test. If the cleanliness level is determined to be high, the second motor 44 and the third motor 45 will run in sequence to place the glass slide between the partition plates 28. If the cleanliness level is determined to be low, the third motor 45 and the first motor 43 will run in reverse, and the glass slide will be pushed out from the delivery port 27 and manually removed. The display screen shows the corresponding ratio coefficient, which serves as a prompt.

[0102] When replenishing the cleaning solution for the glass slides, the start-up time of the heating unit 24 and the start-up time of the suction pump 39 are controlled according to the working time of the infusion pump 334, showing a positive correlation. When the working time of the infusion pump 334 is long, it indicates that the area of ​​dirt is large. During the repeated wiping of the cleaning block 331, impurities may be generated and a large amount of cleaning solution may overflow. Therefore, through the combined action of the heating unit 24 and the suction pump 39, impurities can be cleaned by hot airflow, and excess cleaning solution inside can be dried to prevent a large amount of cleaning solution from overflowing when used.

[0103] In the description of this invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this invention, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this invention.

[0104] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them. Although the present invention 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, and these 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 the present invention.

Claims

1. An inspection instrument operating table, comprising a housing (1), characterized in that: The upper surface of the housing (1) is respectively provided with: Control unit (2), the control unit (2) includes a processor, several control buttons and a display screen, the several control buttons and the display screen are all connected to the processor; The cleaning section (3) is used to clean the glass slides after use; Experimental section (4) is a work surface for using glass slides; Storage section (5) is used to place cleaned glass slides. A cover plate (6) is hinged to one side of the storage section (5). The storage section (5) is equipped with a sorting component and a transmission component. The sorting component is used to arrange several glass slides in an orderly manner. A suction tube (18) is provided on the rear side of the storage section (5). A temperature and humidity sensor (7) is provided at the connection between the suction tube (18) and the storage section (5). The temperature and humidity sensor (7) is connected to the control section (2). A heat dissipation vent (37) is provided on the rear surface of the enclosure (1). The transmission components include: The slider (30) is internally connected to a lead screw (29), one end of the lead screw (29) is connected to a second motor (44), and brackets (31) are fixedly connected at the four corners of the upper surface of the slider (30). A top plate is provided on the top surface of the bracket (31). A set of first conveyor rollers (32) are disposed on the side of the slider (30) away from the placement component, and a first motor (43) is disposed above one of the first conveyor rollers (32). A set of second conveyor rollers (33) is provided with a second central shaft in the middle of the set of second conveyor rollers (33). The upper and lower ends of the second central shaft are respectively connected to the bearings between the top plate and the slider (30). A third motor (45) is connected above one of the second central shafts. Gears are provided at the upper ends of a set of first conveyor rollers (32) and a set of second conveyor rollers (33), and the gears are configured for meshing transmission. The first motor (43), the second motor (44), and the third motor (45) are bidirectional motors; The internal structure of the storage section (5) includes: First signal transmitter (19); Second signal transmitter (20); The first signal receiving end (21) is arranged opposite to the first signal transmitting end (19); The second signal receiver (22) is positioned opposite to the second signal transmitter (20); The first signal transmitter (19), the second signal transmitter (20), the first signal receiver (21), and the second signal receiver (22) are all connected to the control unit (2) for detecting the cleanliness of the glass slide surface. The first chamber (15) is equipped with a feeding box (23). The feeding box (23) is connected to an infusion pump (334) through a pipe. The other end of the infusion pump (334) is connected to a second pipe, which is a Y-shaped telescopic hose. The other two connecting pipes of the second pipe are equipped with control valves (333). The two connecting ends of the second pipe are respectively connected to the lower end bearing of the second central shaft in the second conveyor roller (33). The second conveyor roller (33) is equipped with a first flow channel (332) for the transmission of cleaning fluid. The surface of the second conveyor roller (33) is provided with an annular groove. The cleaning block (331) is connected to the spring inside the annular groove. The cleaning block (331) is provided with fine holes inside. The cleaning block (331) is connected to the pipe of the first flow channel (332).

2. The inspection instrument operating table according to claim 1, characterized in that: The cleaning unit (3) includes: A cleaning tank (8) has a cover hinged to the upper left side; A set of L-shaped plates is fixed on the inner upper surface of the box (1), and the set of L-shaped plates is slidably connected to the left and right side walls of the cleaning box (8); A recycling bin (9) is connected to a cleaning bin (8) by a recycling pipe (12), and an electrically controlled valve is installed on the recycling pipe (12). A liquid supply tank (10) is provided between the liquid supply tank (10) and the cleaning tank (8), and a liquid supply pipe (11) is provided at the liquid supply pipe (11). The electric control valve, the liquid pump and the processor are connected by signal.

3. The inspection instrument operating table according to claim 1, characterized in that: The surface of the cover plate (6) is provided with a delivery port (27). A baffle (26) is provided on the side of the cover plate (6) facing the inside of the storage part (5). A telescopic part (25) is provided on one side of the baffle (26). The telescopic part (25) is fixedly connected to the cover plate (6). The output end of the telescopic part (25) is fixedly connected to the baffle (26).

4. The inspection instrument operating table according to claim 1, characterized in that: The storage section (5) is internally provided with: First chamber (15); The second chamber (16) is provided with a first partition (161) between the first chamber (15) and the second chamber (16), and a heating element (24) is fixedly provided inside the second chamber (16). The third chamber (17) is provided with a second partition (162) between the second chamber (16) and the third chamber (17). The second partition (162) is convex in shape and has several through holes evenly provided on it. Ventilation openings are provided on the inner walls of the first chamber (15) and the second chamber (16), and a filter screen is fixedly installed at the ventilation opening. The placement component and the transmission component are disposed on the second partition (162).

5. The inspection instrument operating table according to claim 4, characterized in that: The placement component includes: A set of limiting plates (35) are bolted to the second partition plate (162); A plurality of partition plates (28) are disposed on a set of limiting plates (35), and a plurality of circular rollers are disposed inside the partition plates (28), the circular rollers being made of elastic material; A plurality of partition strips (34) are fixed below the partition plate (28), the partition strips (34) being longer than the partition plate (28), and a moving groove is formed between two adjacent partition plates (28).

6. The inspection instrument operating table according to claim 5, characterized in that: The transmission component further includes: A chute is provided on the front side of the second partition (162), and an annular groove (40) is provided at the bottom of the chute. The annular groove (40) is provided through the interior of the second partition (162).

7. The inspection instrument operating table according to claim 6, characterized in that: The lower pipe of the suction pipe (18) is connected to a filter box (38), and the lower end of the filter box (38) is connected to a first connecting pipe (36). The other end of the first connecting pipe (36) is connected to a recovery pipe (12), and a suction pump (39) and a condenser box (14) are provided on the first connecting pipe (36). An exhaust part (13) is provided on the side of the first connecting pipe (36) near the condenser box (14). Several micro-holes are opened on the surface of the exhaust part (13), and the exhaust part (13) is connected to the inside of the first connecting pipe (36).

8. The inspection instrument operating table according to claim 1, characterized in that: The outer surface of the cleaning block (331) is made of cotton, and the fine pores facilitate the seepage of cleaning liquid.

9. The inspection instrument operating table according to claim 1, characterized in that: A sealing strip (41) and a magnetic strip (42) are fixed at the edge of the cover plate (6), and a corresponding magnetic structure is provided at the connection between the frame of the storage part (5) and the magnetic strip (42).

Citation Information

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