DAPI diluent cover glass stripping equipment

By designing a DAPI diluent coverslip removal device, which utilizes a pressure plate, photoelectric switch, and screw pusher plate, the device achieves automatic removal, accurate counting, and orderly storage of coverslips. This solves the problems of low efficiency and damage risk in existing technologies, and improves the efficiency and accuracy of experimental management.

CN223664372UActive Publication Date: 2025-12-12TIANJIN JIANKANG HUAMEI MEDICAL DIAGNOSTIC TECH CO LTD
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Patent Information

Application Number
CN202423123514.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2025-12-12
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

In existing technologies, DAPI diluent coverslips have low peeling efficiency, are easily damaged, and are difficult to accurately count in quantity and inconvenient to discharge during storage and management.

Method used

A DAPI diluent coverslip peeling device was designed, comprising a peeling box, a storage trough, a lower pressure plate, a spring, a push plate, and a push rod. The device uses a photoelectric switch and a reflector to monitor the peeling quantity, and combines a storage box, a through-shaft motor, and a screw push plate to achieve automatic peeling, orderly storage, and convenient discharge.

Benefits of technology

It improves the efficiency of cover slip peeling, reduces the risk of damage, enables accurate counting and orderly storage of cover slips, facilitates material discharge, and improves the efficiency and accuracy of experimental management.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides DAPI diluent cover glass stripping equipment, and belongs to the technical field of stripping equipment. Comprising a stripping box; the object containing groove is formed in the stripping box, the object containing groove is matched with the cover glass, and the object containing groove is used for containing the cover glass which is not stripped; the lower pressing plate is connected into the stripping box in a sliding mode, the lower pressing plate is located over the containing groove, the lower pressing plate is matched with the containing groove, and the lower pressing plate is used for pressing the unstripped cover glass downwards. According to the automatic stripping device for the cover glass, the purpose of automatically stripping the cover glass is achieved through the cooperation of the lower pressing plate, the spring, the storage groove, the push plate and the push rod, and the purposes of accurately detecting the number of the cover glass, orderly storing and conveniently discharging the cover glass are achieved through the cooperation of the reflector, the photoelectric switch, the lifting frame, the material pushing plate, the connecting block, the first threaded rod and other structures.
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Description

TECHNICAL FIELD

[0001] The utility model relates to stripping equipment technical field, especially a DAPI diluent coverslide stripping equipment. BACKGROUND

[0002] In the field of life science research and medical examination, coverslides are often used for sample observation and analysis. DAPI diluent, as a common staining agent, can better show microscopic features such as cell structure when used in combination with coverslides. With the continuous deepening and development of related research, the demand for coverslide processing is increasing. In order to improve experimental efficiency and accuracy, professional coverslide processing equipment is becoming more and more important.

[0003] Currently, when processing DAPI diluent coverslides, manual stripping is mostly used. In actual operation, experimenters need to rely on experience and manual skills to strip coverslides. This process not only has low efficiency, but also seriously affects the experimental progress. Moreover, due to the instability of manual operation, coverslides are easily damaged. Coverslides are usually fragile, and a slight carelessness may cause scratches or breakage, which will directly affect subsequent observation and analysis. For experiments that require high-resolution observation, any minor damage to the coverslide may lead to inaccurate experimental results. In addition, manual stripping cannot guarantee the consistency of operation, and the operation method and intensity of different experimenters may differ, further increasing the uncertainty of experimental results. SUMMARY

[0004] The technical problem to be solved by the utility model is to provide a DAPI diluent coverslide stripping equipment to solve the technical problems of low efficiency, easy damage, and difficulty in accurately counting the number, easy storage confusion, and inconvenient discharge in coverslide storage and management.

[0005] Technical solution: To achieve the above object, the utility model discloses a DAPI diluent coverslips peeling equipment, which comprises a peeling box, a storage groove, a lower pressing plate, a spring, a pull ring rod, a push plate and a push rod. The storage groove is arranged in the peeling box and is matched with the coverslips. The lower pressing plate is slidably connected to the peeling box and is located above the storage groove. The spring is arranged between the lower pressing plate and the storage groove and provides a pressing force for the lower pressing plate. The pull ring rod is stably connected to the lower pressing plate and penetrates the peeling box. The push plate is slidably connected to the peeling box and is located at the lowermost part of the storage groove. The push plate is matched with the coverslips and is used for pushing the coverslips. The push rod is stably installed on the peeling box and is stably connected to the push plate. The surface of the storage groove is smooth to avoid scratching the coverslips. The lower surface of the lower pressing plate is flat, and the contact area with the coverslips is large enough to ensure uniform pressure distribution. The spring coefficient is selected according to the thickness and hardness of the coverslips to ensure that the lower pressing plate can provide appropriate pressure. The surface of the push plate is smooth, and the contact area with the coverslips is appropriate to avoid damaging the coverslips. The push rod can be an electric push rod or a pneumatic push rod, which can provide stable thrust. The stroke and thrust of the push rod should be selected according to the size and number of the coverslips to ensure that the push plate can be smoothly pushed.

[0006] In a further embodiment, a storage box is stably connected to the peeling box and is used for storing the peeled coverslips. A communication port is provided between the storage box and the peeling box, which is matched with the coverslips. An outlet is provided on the storage box. The capacity of the storage box should be designed according to the actual demand, and it should have good sealing performance to prevent dust and impurities from entering.

[0007] In a further embodiment, a photoelectric switch is stably installed in the peeling box and is located at the communication port. The photoelectric switch is used to monitor the number of times the push plate enters the communication port to realize the statistics of the number of peeled coverslips. A reflector is stably installed in the peeling box and is located at the communication port. The reflector is opposite to the photoelectric switch and is used to reflect the light emitted by the photoelectric switch. The photoelectric switch should have high sensitivity and accuracy to reliably detect the movement of the push plate. The reflectivity of the reflector should be high, and the surface should be flat to ensure that the light can be accurately reflected.

[0008] In further embodiments, the storage box is provided with a slide-mounted shelf, the shelf comprises a plurality of shelves, and the distance between two adjacent shelves is suitable for the cover glass. A through-shaft motor is stably installed in the storage box, and the screw rod in the through-shaft motor is rotationally connected with the shelf. The surface of the shelf should be smooth to avoid scratching the cover glass. The sliding mechanism of the shelf should be flexible and reliable for easy operation. The through-shaft motor should have sufficient torque and precision to smoothly drive the shelf to move.

[0009] In further embodiments, a first through slot is formed on the shelf, and the opening width of the first through slot is less than half the size of the cover glass. A first screw rod is stably installed in the storage box, and the first screw rod is located at the end of the shelf away from the through-shaft motor. A push plate is threadedly connected with the first screw rod, and the push plate is located in the first through slot. The push plate is suitable for the first through slot, and the moving direction of the push plate is perpendicular to the moving direction of the push plate. The push plate is used to push the cover glass. The width of the first through slot should be reasonably designed according to the size of the cover glass and the thickness of the push plate to ensure that the push plate can pass smoothly. The pitch and length of the first screw rod should be selected according to the size of the storage box and the number of cover glasses to ensure that the push plate can cover the entire storage area. The material of the push plate should have certain strength and wear resistance, and the surface should be smooth to avoid damaging the cover glass.

[0010] In further embodiments, a second through slot is formed on the shelf, and the opening width of the second through slot is less than half the size of the cover glass. A second screw rod is stably installed in the storage box, and the second screw rod is located at the end of the shelf away from the through-shaft motor, and the second screw rod is perpendicular to the first screw rod. A feeding plate is threadedly connected with the second screw rod, and the feeding plate is located in the second through slot. The feeding plate is suitable for the first through slot, and the feeding plate is used to push the cover glass to pass through the discharge port. The width of the second through slot should match the width of the first through slot to ensure that the feeding plate and the push plate can work together. The pitch and length of the second screw rod should be selected according to the size of the storage box and the number of cover glasses to ensure that the feeding plate can smoothly push the cover glass out of the discharge port. The material and size of the feeding plate should match the push plate to ensure that the cover glass is not damaged during the pushing process.

[0011] In further embodiments, a display is stably installed on the storage box, and the display is used to display the number of cover glasses in the storage box. A flexible sealing block is rotationally connected to the storage box, and the flexible sealing block is located at the discharge port. The flexible sealing block is used to seal the discharge port. The display should have clear display effect and accurate counting function to timely reflect the change of the number of cover glasses. The flexible sealing block should have good sealing property and wear resistance to be used for a long time.

[0012] In a further embodiment, the top of the push plate is not lower than the lower surface of the communication port and not higher than the upper surface of the communication port, wherein the height of the push plate and the feeding plate should be accurately adjusted according to the position of the communication port and the thickness of the cover glass to ensure the normal operation of the equipment.

[0013] Beneficial effects: 1. Through the cooperation of the lower pressing plate, the spring, the storage groove, the push plate and the push rod, the lower pressing plate provides stable pressing force for the unpeeled cover glass in the storage groove under the action of the spring, ensuring that the cover glass is placed stably; the push plate can automatically push the cover glass at the bottom of the storage groove into the storage part under the driving of the push rod, achieving the purpose of automatic peeling; the peeling efficiency of the cover glass is improved, and the damage to the cover glass caused by unstable operation during manual peeling is avoided, reducing the risk of damage to the cover glass.

[0014] 2. Through the cooperation of the reflective sheet, the photoelectric switch, the lifting frame, the pushing plate, the connecting block and the first threaded rod, the purpose of accurate detection, orderly storage and convenient discharge of the number of cover glasses is achieved; the reflective sheet and the photoelectric switch are arranged in the communication port between the peeling part and the storage part, the photoelectric switch can monitor the number of times of the push plate entering the communication port when the push plate pushes the cover glass into the storage part, thereby achieving accurate detection of the number of cover glasses; the lifting frame arranged in the storage part has a spacing between the plurality of storage plates adapted to the cover glass, after the cover glass enters the storage part, the lifting frame is driven by the through shaft motor to lift, so that the cover glass can be orderly stored on the storage plate; at the same time, the pushing plate, the connecting block and the first threaded rod in the storage part cooperate with each other, the pushing plate is driven by the first threaded rod to push the cover glass to the other side of the storage plate, achieving the purpose of convenient discharge. BRIEF DESCRIPTION OF DRAWINGS

[0015] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiment or prior art description. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.

[0016] Figure 1 It is a structural schematic diagram of the present application.

[0017] Figure 2 It is a structural schematic diagram of the present application. Figure 1 It is a structural schematic diagram of the present application.

[0018] Figure 3 It is a structural schematic diagram of the present application. Figure 1 It is a structural schematic diagram of the present application.

[0019] Figure 4 It is a structural schematic diagram of the present application.Figure 1 A top-down sectional view of the structure.

[0020] Figure 5 This is a structural diagram of the shelving unit.

[0021] Figure 6 for Figure 5 A top-down sectional view of the structure.

[0022] Figure 7 for Figure 2 A schematic diagram of the structure at point A.

[0023] The reference numerals in the figure are as follows: 1. Stripping box; 101. Storage slot; 2. Lower pressure plate; 3. Spring; 4. Pull ring rod; 5. Push rod; 6. Push plate; 7. Photoelectric switch; 701. Reflector; 8. Storage box; 9. Through shaft motor; 10. Display; 11. Flexible sealing block; 12. Storage rack; 1201. First through slot; 1202. Second through slot; 13. First screw; 14. Second screw; 15. Push plate; 16. Feeding plate. Detailed Implementation

[0024] To make the objectives, technical solutions, and advantages of this utility model clearer, the technical solutions in this utility model are described clearly and completely. Obviously, the described embodiments are only some, not all, of the embodiments in this utility model. All other embodiments obtained by those skilled in the art based on the embodiments in this utility model without creative effort are within the scope of protection of this utility model.

[0025] This application provides a DAPI diluent coverslip peeling device, which solves the technical problems of low efficiency, easy damage to coverslips, difficulty in accurate quantity counting, chaotic storage, and inconvenient discharging in current manual coverslip peeling methods. In practical use, it realizes automatic coverslip peeling, improves peeling efficiency, reduces the risk of coverslip damage, and enables accurate quantity counting, orderly storage, and convenient discharging.

[0026] To better understand the above technical solutions, the following will provide a detailed explanation of the technical solutions in conjunction with the accompanying drawings and specific implementation methods.

[0027] Reference Figures 1-7The utility model provides a DAPI diluent cover glass stripping equipment, including: stripping box 1, the storage groove 101 is opened in stripping box 1, the storage groove 101 is adapted with cover glass, and the storage groove 101 is used to accommodate the cover glass that has not been stripped, the lower pressing plate 2 is slidably connected in stripping box 1, and the lower pressing plate 2 is just above the storage groove 101, the lower pressing plate 2 is adapted with the storage groove 101, and the lower pressing plate 2 is used to press down the cover glass that has not been stripped, the spring 3 is arranged between the lower pressing plate 2 and the storage groove 101, and the spring 3 is used to provide the lower pressing force for the lower pressing plate 2, the pull ring rod 4 is stably connected on the lower pressing plate 2, and the pull ring end on the pull ring rod 4 penetrates stripping box 1, and the pull ring rod 4 is used to pull the lower pressing plate 2, the push plate 6 is slidably connected in stripping box 1, and the push plate 6 is just below the storage groove 101, the push plate 6 is adapted with the cover glass, and the push plate 6 is used to push the cover glass, the push rod 5 is stably installed on stripping box 1, and the telescopic end of the push rod 5 is stably connected with the push plate 6, and the push rod 5 is used to drive the push plate 6 to slide.

[0028] Through the cooperation of stripping box 1, the storage groove 101, the lower pressing plate 2, the spring 3, the pull ring rod 4, the push plate 6 and the push rod 5, the storage groove 101 adapted with the cover glass is arranged in stripping box 1 to accommodate the cover glass that has not been stripped, the lower pressing plate 2 presses the cover glass under the action of the spring 3, the pull ring rod 4 can pull the lower pressing plate 2, and the push plate 6 slides under the driving of the push rod 5, so that the cover glass that has not been stripped is stably placed and automatically pushed and stripped.

[0029] The storage box 8 is stably connected to the stripping box 1, and the storage box 8 is used to store the cover glass after stripping, and the storage box 8 is connected between the stripping box 1, and the communication port is adapted with the cover glass, and the storage box 8 is provided with a discharge port, and the communication port is used for the cover glass to enter the storage box 8.

[0030] Through the connection of the storage box 8 and the stripping box 1, and the communication port between the storage box 8 and the stripping box 1, the cover glass after stripping can smoothly enter the storage box 8 from the stripping box 1 for storage.

[0031] The photoelectric switch 7 is stably installed in the stripping box 1, and the photoelectric switch 7 is at the communication port, and the photoelectric switch 7 is used to monitor the number of times that the push plate 6 enters the communication port, so as to realize the statistics of the number of cover glass stripping, the reflector plate 701 is stably installed in the stripping box 1, and the reflector plate 701 is at the communication port, and the reflector plate 701 is opposite to the photoelectric switch 7, and the reflector plate 701 is used to reflect the light emitted by the photoelectric switch 7.

[0032] The photoelectric switch 7 monitors the number of times that the push plate 6 enters the communication port when the push plate 6 pushes the cover glass into the communication port through the cooperation of the photoelectric switch 7 and the reflecting plate 701 at the communication port of the stripping box 1, and the accurate counting effect of the cover glass stripping number is realized.

[0033] The storage rack 12 is slidably installed in the storage box 8, the storage rack 12 includes a plurality of storage plates, and the spacing between two adjacent storage plates is adapted to the cover glass, and the storage rack 12 is used for placing the cover glass; the through-shaft motor 9 is stably installed in the storage box 8, and the screw rod in the through-shaft motor 9 is rotationally connected with the storage rack 12, and the through-shaft motor 9 is used to drive the storage rack 12 to move.

[0034] Through the sliding installation of the storage rack 12 in the storage box 8 and the rotational connection of the screw rod of the through-shaft motor 9 with the storage rack 12, the spacing between the plurality of storage plates is adapted to the cover glass, and the effect of orderly placing the cover glass and automatically adjusting the position of the storage rack 12 according to the number of cover glasses is realized.

[0035] The first through slot 1201 is formed on the storage rack 12, and the opening width of the first through slot 1201 is less than one-half of the cover glass; the first screw rod 13 is stably installed in the storage box 8, and the first screw rod 13 is located at the end of the storage rack 12 away from the through-shaft motor 9; the push plate 15 is threadedly connected with the first screw rod 13, and the push plate 15 is located in the first through slot 1201, the push plate 15 is adapted to the first through slot 1201, the moving direction of the push plate 15 is perpendicular to the moving direction of the push plate 6, and the push plate 15 is used to push the cover glass.

[0036] The first through slot 1201 is formed on the storage rack 12, the first screw rod 13 is installed in the storage box 8 and threadedly connected with the push plate 15, and the push plate 15 moves in the first through slot 1201 and the moving direction is perpendicular to the push plate 6, so that the horizontal pushing effect of the cover glass on the storage rack 12 is realized.

[0037] The second through slot 1202 is formed on the storage rack 12, and the opening width of the second through slot 1202 is less than one-half of the cover glass; the second screw rod 14 is stably installed in the storage box 8, and the second screw rod 14 is located at the end of the storage rack 12 away from the through-shaft motor 9, and the second screw rod 14 is perpendicular to the first screw rod 13; the feeding plate 16 is threadedly connected with the second screw rod 14, and the feeding plate 16 is located in the second through slot 1202, the feeding plate 16 is adapted to the first through slot 1201, and the feeding plate 16 is used to push the cover glass so that the cover glass passes through the discharge port.

[0038] The second screw rod 14 is installed in the storage box 8 and is in threaded connection with the feeding plate 16, the feeding plate 16 moves in the second through slot 1202 and is matched with the first through slot 1201, so that the cover glass is pushed from the storage rack 12 to the discharge port.

[0039] The display 10 is stably installed on the storage box 8, and the display 10 is used for displaying the number of cover glasses in the storage box 8; the flexible sealing block 11 is rotatably connected to the storage box 8, and the flexible sealing block 11 is located at the discharge port, and the flexible sealing block 11 is used for sealing the discharge port.

[0040] The display 10 is installed on the storage box 8, and the flexible sealing block 11 is rotatably connected to the discharge port of the storage box 8, so that the number of cover glasses in the storage box 8 is displayed in real time, and the discharge port is sealed to prevent impurities from entering.

[0041] The top of the pushing plate 15 and the feeding plate 16 is not lower than the lower surface of the communication port and is not higher than the upper surface of the communication port.

[0042] The height of the pushing plate 15 and the feeding plate 16 is limited, so that the top of the pushing plate 15 and the feeding plate 16 is not lower than the lower surface of the communication port and is not higher than the upper surface of the communication port, so that the pushing plate 6 pushes the cover glass into the storage box 8, and the pushing plate 15 and the feeding plate 16 can smoothly receive and perform subsequent pushing operation.

[0043] In use, first, the cover glass which is not peeled is placed in the storage groove 101 of the peeling box 1, and the lower pressing plate 2 is pressed against the cover glass under the action of the spring 3; then, the push rod 5 pushes the pushing plate 6 to slide, and the cover glass at the lowermost part of the storage groove 101 is pushed to the communication port between the storage box 8 and the peeling box 1 and enters the storage box 8; when the pushing plate 6 enters the communication port, the photoelectric switch 7 cooperates with the reflecting plate 701 to monitor the number of times that the pushing plate 6 enters the communication port, so that the number of peeled cover glasses is counted and displayed through the display 10; the cover glass entering the storage box 8 is placed on the storage plate of the storage rack 12, and the through shaft motor 9 can drive the storage rack 12 to move to adjust the position; when the cover glass needs to be arranged, the first screw rod 13 drives the pushing plate 15 to push the cover glass horizontally in the first through slot 1201 of the storage rack 12, and then the second screw rod 14 drives the feeding plate 16 to push the cover glass to the discharge port in the second through slot 1202; the flexible sealing block 11 at the discharge port can seal the discharge port when not in use.

[0044] The constant temperature device, driving device and positioning device required in the above description are all prior art and are non-essential technical features in the present application, so they are not described or drawn in the documents and drawings of the present application. The figures shown in the drawings are example figures, and the purpose is only to more intuitively show the key structure and connection relationship of the DAPI diluent coverslip peeling device. In actual application, the appearance and size of the device can be adjusted and optimized according to specific needs.

[0045] In summary, compared with the prior art, the present application has the following beneficial effects: first, through the cooperation of the storage groove, the lower pressing plate, the spring, the pull ring rod, the push plate and the push rod in the peeling box, the stable placement of the unpeeled cover glass and the automatic pushing and peeling are realized, the peeling efficiency is improved and the cover glass damage risk is reduced; second, the cooperation of the photoelectric switch and the reflector at the communication port can accurately count the number of cover glass peeling, providing accurate data for experimental management and inventory control; the cooperative action of the storage rack, the through shaft motor, the first screw rod, the push plate, the second screw rod and the feeding plate in the storage box realizes the orderly storage, arrangement and discharge of the cover glass, improves the storage efficiency and management level; at the same time, the display shows the number of cover glasses in the storage box in real time, which is convenient for the experimental personnel to master the inventory situation, and the flexible sealing block at the discharge port effectively seals the discharge port, ensuring the cleanliness of the cover glass during storage and discharge.

[0046] The present application encompasses any alternative, modification, equivalent method and scheme made in the essence and scope of the present application. In order to enable the public to have a thorough understanding of the present application, the specific details are described in detail in the above preferred embodiments of the present application, and the present application can be completely understood without the description of these details for those skilled in the art. In addition, in order to avoid unnecessary confusion to the essence of the present application, well-known methods, processes, procedures, elements and circuits are not described in detail.

[0047] The above is only the preferred embodiment of the present application, and it should be pointed out that for ordinary skilled persons in the technical field, without departing from the principle of the present application, a number of improvements and refinements can be made, and these improvements and refinements should also be regarded as the protection scope of the present application.

Claims

1. A DAPI diluent coverslip peeling apparatus, characterized by, It includes: peeling box (1); storage groove (101) is opened in the peeling box (1), the storage groove (101) is adapted to cover glass, and the storage groove (101) is used to accommodate unpeeled cover glass; The lower pressing plate (2) is slidably connected in the peeling box (1), and the lower pressing plate (2) is directly above the storage groove (101), the lower pressing plate (2) is adapted to the storage groove (101), and the lower pressing plate (2) is used to press the unpeeled cover glass; Spring (3) is arranged between the lower pressing plate (2) and the storage groove (101), and the spring (3) is used to provide the lower pressing force for the lower pressing plate (2); The pull ring rod (4) is stably connected to the lower pressing plate (2), and the pull ring end of the pull ring rod (4) penetrates the peeling box (1), and the pull ring rod (4) is used to pull the lower pressing plate (2); The push plate (6) is slidably connected in the peeling box (1), and the push plate (6) is at the lowermost of the storage groove (101), the push plate (6) is adapted to the cover glass, and the push plate (6) is used to push the cover glass; The push rod (5) is stably installed on the peeling box (1), and the telescopic end of the push rod (5) is stably connected with the push plate (6), and the push rod (5) is used to drive the push plate (6) to slide.

2. A DAPI diluent coverslip peeling apparatus according to claim 1, wherein, It also includes: Storage box (8) is stably connected to the peeling box (1), and the storage box (8) is used to store the peeled cover glass, and the storage box (8) is communicated with the peeling box (1), the communication port is adapted to the cover glass, and the storage box (8) is provided with a discharge port, and the communication port is used for the cover glass to enter the storage box (8).

3. A DAPI diluent coverslip peeling apparatus according to claim 2, wherein, It also includes: Photoelectric switch (7) is stably installed in the peeling box (1), and the photoelectric switch (7) is at the communication port, the photoelectric switch (7) is used for monitoring the number of times that the push plate (6) enters the communication port, so as to realize the statistics of the number of peeled cover glasses; The reflector plate (701) is stably installed in the peeling box (1), and the reflector plate (701) is at the communication port, the reflector plate (701) is opposite to the photoelectric switch (7), and the reflector plate (701) is used to reflect the light emitted by the photoelectric switch (7).

4. A DAPI diluent coverslip peeling apparatus according to claim 2, wherein It also includes: Storage rack (12) is slidably installed in the storage box (8), the storage rack (12) includes a plurality of storage plates, and the distance between two adjacent storage plates is adapted to the cover glass, and the storage rack (12) is used to place the cover glass; The through shaft motor (9) is stably installed in the storage box (8), and the screw rod in the through shaft motor (9) is rotatably connected with the storage rack (12), and the through shaft motor (9) is used to drive the storage rack (12) to move.

5. A DAPI diluent coverslip peeling apparatus according to claim 4, wherein, It also includes: The first through groove (1201) is opened on the storage rack (12), and the opening width of the first through groove (1201) is less than half of the cover glass; The first screw rod (13) is stably installed in the storage box (8), and the first screw rod (13) is at one end of the storage rack (12) away from the through shaft motor (9); Pushing plate (15), threadedly connected with the first screw rod (13), and the pushing plate (15) is in the first through slot (1201), the pushing plate (15) is matched with the first through slot (1201), the moving direction of the pushing plate (15) is perpendicular to the moving direction of the pushing plate (6), and the pushing plate (15) is used for pushing the cover glass.

6. A DAPI diluent coverslip peeling apparatus according to claim 5, wherein, Also include: Second through slot (1202), which is opened on the storage rack (12), and the opening width of the second through slot (1202) is less than half of the cover glass; Second screw rod (14), stably installed in the storage box (8), and the second screw rod (14) is at the end of the storage rack (12) away from the through shaft motor (9), and the second screw rod (14) is perpendicular to the first screw rod (13); Feeding plate (16), threadedly connected with the second screw rod (14), and the feeding plate (16) is in the second through slot (1202), the feeding plate (16) is matched with the first through slot (1201), and the feeding plate (16) is used for pushing the cover glass, so that the cover glass passes through the discharge port.

7. A DAPI diluent coverslip peeling apparatus according to claim 2, wherein, Also include: Display (10), stably installed on the storage box (8), and the display (10) is used for displaying the number of cover glasses in the storage box (8); Flexible sealing block (11), rotatably connected to the storage box (8), and the flexible sealing block (11) is at the discharge port, and the flexible sealing block (11) is used for sealing the discharge port.

8. A DAPI diluent coverslip peeling apparatus according to claim 6, wherein: The top of the pushing plate (15) and the feeding plate (16) is not lower than the lower surface of the communication port, and is not higher than the upper surface of the communication port.