High-pressure cleaning machine for microscope lens

By designing a high-pressure microscope slide cleaner with a rotating drum, fixed base, support rollers, and synchronization components, the problem of the slides being unable to rotate for cleaning has been solved, achieving all-around automatic cleaning and improving cleaning efficiency and effectiveness.

CN223916089UActive Publication Date: 2026-02-17NANJING TAIXUN OPTICAL INSTR CO LTD
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Patent Information

Application Number
CN202520398959.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-02-17
Estimated Expiration
2035-03-07

AI Technical Summary

Technical Problem

Existing microscope slide high-pressure cleaners lack a structure that drives the lens to rotate around its axis, resulting in the clamped area not being effectively cleaned and affecting cleaning efficiency.

Method used

A structure including a rotating drum, a fixed base, a support roller, a clamping frame, and a synchronization component was designed. The clamping frame is connected to the synchronization component to realize automatic lens flipping and rotation cleaning. Combined with ultrasonic oscillation and high-pressure spray cleaning, the lens is cleaned in all directions.

Benefits of technology

It enables comprehensive cleaning of lenses, improves cleaning efficiency, reduces manual operation, and enhances both cleaning effect and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of lens cleaning, in particular to a microscope lens high-pressure cleaning machine which comprises a machine box, a support, a clamping frame, a synchronous assembly, a rotary driving assembly, a driving assembly A, a driving assembly B, a spray head and a water supply assembly. A cleaning bin and a water storage bin are arranged in the machine box, and a window communicated with the cleaning bin is formed in the machine box. The support is arranged in the cleaning bin and rotationally connected with the rotary drum, a fixing base is arranged on the rotary drum, and a supporting roller A and a supporting roller B are arranged at the end, away from the rotary drum, of the fixing base. The clamping frames are symmetrically arranged on the fixing base, and clamping rollers are rotationally arranged on the clamping frames. The synchronous assembly is in transmission connection with the clamping frames on the two sides. The rotation driving assembly is connected with the fixing base and drives the clamping frame to rotate. The driving assembly A drives the rotary drum to rotate. The driving assembly B drives the supporting roller A to rotate. And the two groups of nozzles are symmetrically arranged in the cleaning bin. The water supply assembly communicates with the water storage bin and the nozzles. The lens cleaning device can clean lenses in all directions, and is high in efficiency and convenient to take and place.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a lens cleaning technical field, in particular to a microscope lens high pressure cleaning machine. BACKGROUND

[0002] If the surface of the optical element of the microscope accumulates dust, dirt or oil stains, it will cause the light to be unable to pass normally, thereby affecting the definition and contrast of the image, and even causing the generation of artifacts in severe cases. Regular cleaning can prolong the service life of the microscope. Dust and dirt not only affect the observation effect, but also may scratch the lens surface, causing damage to the lens. Therefore, the microscope lens needs to be cleaned, and the lens cleaning usually uses a high-pressure cleaning machine, but the existing lens high-pressure cleaning machine structure is relatively simple.

[0003] The technical scheme disclosed in Chinese patent CN113492138B realizes the automatic turning function of the lens by rotating the clamping mechanism through the jacking mechanism, replaces manual operation, improves the cleaning efficiency, and changes the opening direction of the U-shaped base of the clamping mechanism before and after turning, cooperates with the sliding plate and the circulating transmission belt to avoid realizing automatic feeding and discharging, is convenient to use, and liberates manpower.

[0004] However, the device still has the following problems: the device lacks a structure for driving the lens to rotate around its axis, so that the part clamped by the clamping block cannot be effectively cleaned, or manual repositioning is required, affecting the cleaning efficiency. UTILITY MODEL CONTENTS

[0005] The utility model aims at the problems in the background art and provides a microscope lens high-pressure cleaning machine.

[0006] The technical scheme of the utility model: a microscope lens high-pressure cleaning machine, comprising a case, a cleaning bin and a water storage bin are arranged in the case, a window communicating with the cleaning bin is arranged on the case.

[0007] A support is arranged in the cleaning bin and connected with the inner wall of the case, the support is rotationally connected with a rotating drum, a plurality of fixing seats are arranged in a ring array around the axis of the arc surface of the rotating drum, a groove is arranged at the end of the fixing seat away from the rotating drum, a supporting roller A is arranged in the center of the groove, and two supporting rollers B are symmetrically arranged in the groove with respect to the supporting roller A.

[0008] A clamping frame is symmetrically arranged on the fixing seat and rotationally connected therewith, and a clamping roller is rotationally arranged at the end of the clamping frame away from the fixing seat.

[0009] A synchronous assembly is drivingly connected with the two clamping frames on the same fixing seat.

[0010] A rotary drive assembly is connected with the fixing seat and drives the clamping frame to rotate.

[0011] Driving assembly A, driving assembly A is connected with support and drives rotating drum rotation.

[0012] Driving assembly B, driving assembly B is connected with fixed seat and drives corresponding side support roller A rotation.

[0013] Spray head, two groups of spray heads are symmetrically arranged in the cleaning bin and are located above the liquid surface, and the fixed seat passes through the passage between the two groups of spray heads in the rotating state.

[0014] And water supply assembly, water supply assembly is connected with the case, water supply assembly communicates the water storage bin and the spray head.

[0015] Preferably, the water storage bin is located below the cleaning bin, the bottom of the cleaning bin is provided with a discharging hole, the bottom of the discharging hole is communicated with a drain pipe, an electromagnetic valve is arranged in the drain pipe, and a sealing plate in sliding connection with the cleaning bin and the water storage bin is arranged in the case, a through hole communicated with the discharging hole is arranged on the sealing plate, and a filter screen is arranged at the bottom of the through hole.

[0016] Preferably, a liquid level sensor is arranged in the cleaning bin, the liquid level sensor is electrically connected with the controller, and the controller is electrically connected with the electromagnetic valve.

[0017] Preferably, an ultrasonic oscillator is arranged in the cleaning bin, the ultrasonic oscillator is located below the liquid surface, and the ultrasonic oscillator is electrically connected with an ultrasonic generator.

[0018] Preferably, the synchronous assembly comprises a gear. Two rotating shafts in rotation connection with the fixed seat are symmetrically arranged about the axis of the support roller A, two clamping frames are fixedly connected with the rotating shafts on the corresponding sides, the rotating shafts on the two sides are coaxially connected with a gear respectively, and the two gears are engaged.

[0019] Preferably, the rotary driving assembly comprises a coil spring, a circular groove coaxial with the rotating shaft is arranged on the fixed seat, the coil spring is located in the circular groove, and the inner end of the coil spring is connected with the outer wall of the rotating shaft, and the outer end of the coil spring is connected with the inner wall of the circular groove.

[0020] Preferably, a water guide pipe is arranged in the cleaning bin, two shunt seats communicated with the inside of the water guide pipe are symmetrically arranged on the water guide pipe, and the two groups of spray heads are arranged on the side close to each other of the two shunt seats.

[0021] Preferably, the water supply assembly comprises a water pump, the input end of the water pump is provided with a water pumping pipe, the output end of the water pump is provided with a water outlet pipe, the other end of the water pumping pipe is inserted into the water storage bin and located below the liquid surface, and the other end of the water outlet pipe is communicated with the input end of the water guide pipe.

[0022] Compared with the prior art, the utility model has the advantages of the following beneficial technical effects:

[0023] By setting the upper and lower communication cleaning bin and water storage bin, the filter structure is arranged between the cleaning bin and the water storage bin, so that the water entering the water storage bin from the cleaning bin is impurity-free, avoiding the blockage of the spray head; by setting the rotating drum, fixed seat, support roller A, support roller B, clamping frame and clamping roller cooperation structure, the synchronous assembly is used to drive connect the clamping frames on both sides, when one side clamping frame is opened, the other side clamping frame is automatically opened synchronously, the lens is convenient to take and place, and the structure for driving the lens to rotate is also arranged, so that the cleaning of the clamped part of the lens is facilitated, and the cleaning efficiency is improved. BRIEF DESCRIPTION OF DRAWINGS

[0024] Figure 1 It is a structural schematic view of an embodiment in the utility model;

[0025] Figure 2 It is a structural schematic view of a filter assembly;

[0026] Figure 3 It is a connection structure schematic view of each component on the support;

[0027] Figure 4 It is a connection structure schematic view of each component on the fixed seat;

[0028] Figure 5 It is a connection structure schematic view of the water guide pipe and the spray head.

[0029] The drawing mark: 1, the case; 101, cleaning bin; 1011, window; 1012, blanking hole; 102, water storage bin; 103, control bin; 2, window door; 3, ultrasonic oscillator; 4, sealing plate; 41, through hole; 5, filter screen; 6, support; 7, rotating drum; 8, motor A; 9, fixed seat; 10, support roller A; 11, support roller B; 12, motor B; 13, rotating shaft; 14, clamping frame; 15, clamping roller; 16, gear; 17, coil spring; 18, water guide pipe; 19, shunt seat; 20, spray head; 21, water pump; 22, water suction pipe; 23, water outlet pipe. DETAILED DESCRIPTION

[0030] Embodiment one

[0031] As Figures 1-5As shown, the utility model provides a microscope lens high pressure cleaning machine, including case 1, support 6, clamping frame 14, synchronous assembly, rotary drive assembly, drive assembly A, drive assembly B, spray head 20 and water supply component. The case 1 is provided with cleaning bin 101 and water storage bin 102, and the window 1011 that is in communication with the cleaning bin 101 is arranged on the case 1, and the window door 2 for closing the window 1011 is arranged on the case 1. The ultrasonic oscillator 3 is arranged in the cleaning bin 101, and the ultrasonic oscillator 3 is located below the liquid level, and the ultrasonic oscillator 3 is electrically connected with the ultrasonic generator. The support 6 is arranged in the cleaning bin 101 and is connected with the inner wall of the case 1, the support 6 is rotatably connected with the rotating drum 7, a plurality of fixed seats 9 are arranged in annular array around the axis of the arc surface of the rotating drum 7, a groove is arranged at the end of the fixed seat 9 away from the rotating drum 7, a support roller A 10 is arranged in the middle of the groove, and two support rollers B 11 are symmetrically arranged in the groove about the support roller A 10, and the top end height of the support roller A 10 is lower than the top end height of the support roller B 11. The clamping frame 14 is symmetrically arranged on the fixed seat 9 and rotatably connected with it, and the clamping roller 15 is rotatably arranged at the end of the clamping frame 14 away from the fixed seat 9. The synchronous assembly includes a gear 16. Two rotating shafts 13 rotatably connected with the fixed seat 9 are symmetrically arranged about the axis of the support roller A 10, two clamping frames 14 are fixedly connected with the corresponding rotating shaft 13, the two rotating shafts 13 are coaxially connected with a gear 16 respectively, the two gears 16 are engaged, and the synchronous assembly is drivingly connected with the two clamping frames 14 on the same fixed seat 9. The rotary drive assembly includes a coil spring 17, a circular groove coaxial with the rotating shaft 13 is arranged on the fixed seat 9, the coil spring 17 is located in the circular groove, the inner end of the coil spring 17 is connected with the outer wall of the rotating shaft 13, and the outer end of the coil spring 17 is connected with the inner wall of the circular groove. The rotary drive assembly drives the clamping frame 14 to rotate. The drive assembly A includes but is not limited to a motor A 8, the body of the motor A 8 is connected with the support 6, and the output end of the motor A 8 is coaxially connected with the rotating drum 7. The drive assembly B includes but is not limited to a motor B 12, the body of the motor B 12 is connected with the fixed seat 9, and the output end of the motor B 12 is coaxially connected with the roller shaft of the support roller A 10. The motor A 8 and the motor B 12 are both waterproof motors. The water guide pipe 18 is arranged in the cleaning bin 101, two shunt seats 19 in communication with the inside thereof are symmetrically arranged on the water guide pipe 18, two groups of spray heads 20 are arranged on the side close to each other of the two shunt seats 19, and the two groups of spray heads 20 are all located above the liquid level. The fixed seat 9 passes through the passage between the two groups of spray heads 20 in the rotating state. The water supply component includes a water pump 21, a control bin 103 is arranged in the case 1, the water pump 21 is located in the control bin 103, the input end of the water pump 21 is provided with a water suction pipe 22, the output end of the water pump 21 is provided with a water outlet pipe 23, the other end of the water suction pipe 22 is inserted into the water storage bin 102 and located below the liquid level, and the other end of the water outlet pipe 23 is in communication with the input end of the water guide pipe 18.

[0032] In this embodiment, the window door 2 is opened, the clamping frame 14 on one side is pulled to open, at this time the clamping frame 14 on the other side is opened synchronously under the transmission of the two meshing gears 16, the coil spring 17 accumulates tension, the lens to be cleaned is placed vertically in the arc-shaped placement area formed by the support roller A10 and the support roller B11, the lens is placed on the support roller A10, then the clamping frame 14 is released, the coil spring 17 releases the tension, so that the clamping frames 14 on both sides are synchronized to approach and clamp and fix the lens through the clamping roller 15, then the motor A8 is started, the motor A8 drives the rotating drum 7 to rotate clockwise, so that the lens is immersed in water, the ultrasonic oscillator 3 is started, the water bubbles excited by the ultrasonic oscillator 3 contact the surface of the lens, so that stubborn dirt and attachments on the surface of the lens are cleaned, at the same time, the motor B12 continuously drives the support roller A10 to rotate, the lens is driven to rotate by the cooperation of the support roller A10, the support roller B11 and the clamping roller 15, so that the arc surface of the lens is blocked and cleaned thoroughly, then the motor A8 is continuously started, the motor A8 continuously drives the rotating drum 7 to rotate clockwise, so that the lens is rotated to between the two nozzles 20, the water pump 21 is started and water is pumped from the water storage bin 102, the water pump 21 sends water along the water outlet pipe 23 into the water guide pipe 18, and then the water is sprayed to the end surface of the lens through the pressurized nozzles 20, the two nozzles 20 spray water synchronously, so that the lens is quickly washed in the rotating state, after washing, when the lens is rotated to the window 1011, the clamping frame 14 can be taken out by opening. In actual use, the ultrasonic cleaning and high-pressure washing are combined, and the feeding and discharging can be intermittently and continuously, so that the efficiency of batch cleaning of lenses is further improved.

[0033] Embodiment two

[0034] As Figure 1 shown, compared with embodiment one, the water storage bin 102 is located below the cleaning bin 101, the bottom of the cleaning bin 101 is provided with a discharging hole 1012, the bottom of the discharging hole 1012 is communicated with a drain pipe, an electromagnetic valve is arranged in the drain pipe, a sealing plate 4 is arranged in the cleaning bin 101 and the water storage bin 102 in the cabinet 1 and is slidably connected with the cleaning bin 101 and the water storage bin 102, a through hole 41 communicated with the discharging hole 1012 is arranged on the sealing plate 4, and a filter screen 5 is arranged at the bottom of the through hole 41. A liquid level sensor is arranged in the cleaning bin 101, the liquid level sensor is electrically connected with a controller, and the controller is electrically connected with the electromagnetic valve.

[0035] In the embodiment, the cleaning bin 101 and the water storage bin 102 are communicated through the discharging hole 1012 and the drain pipe, water with a certain depth is kept in the cleaning bin 101, the depth of the water in the cleaning bin is detected by the liquid level sensor, when the water level is higher than the set value, the controller controls the electromagnetic valve to open, and then the excess water is discharged into the water storage bin 102, and in the process of discharging water through the drain pipe, the filter screen 5 filters the water entering the water storage bin 102 from the cleaning bin 101, and removes impurities, when the cleaning is completed, the water in the cleaning bin 101 is completely discharged into the water storage bin 102, then the sealing plate 4 is pulled out, and the impurities blocked by the filter screen 5 in the through hole 41 are cleaned.

[0036] The embodiment of the utility model is described in detail in combination with the drawings, but the utility model is not limited to this, and various changes can be made within the knowledge range possessed by the technical personnel in the technical field without departing from the purpose of the utility model.

Claims

1. A high-pressure cleaning machine for microscope slides, characterized in that, include The chassis (1) is provided with a cleaning chamber (101) and a water storage chamber (102) inside the chassis (1), and a window (1011) connected to the cleaning chamber (101) is provided on the chassis (1); The bracket (6) is set inside the cleaning chamber (101) and connected to the inner wall of the casing (1). The bracket (6) is rotatably connected to the rotating drum (7). Several fixed seats (9) are arranged in a ring array around the axis on the arc surface of the rotating drum (7). A groove is provided at the end of the fixed seat (9) away from the rotating drum (7). A support roller A (10) is arranged in the center of the groove, and two support rollers B (11) are symmetrically arranged in the groove about the support roller A (10). The clamping frame (14) is symmetrically arranged on the fixed base (9) and rotatably connected thereto. The clamping frame (14) is rotatably equipped with a clamping roller (15) at the end away from the fixed base (9). Synchronization component, the synchronization component is connected to two clamping frames (14) on the same fixed base (9); A rotary drive assembly is connected to the fixed base (9) and drives the clamping frame (14) to rotate; Drive component A is connected to the bracket (6) and drives the rotating drum (7) to rotate; Drive component B is connected to the fixed base (9) and drives the support roller A (10) on the corresponding side to rotate; The nozzles (20) are symmetrically arranged in the cleaning chamber (101) and located above the liquid surface. The fixed seat (9) passes through the channel between the two nozzles (20) in the rotating state. And a water supply component, which is connected to the chassis (1) and the water supply component is connected to the water storage tank (102) and the nozzle (20).

2. The microscope slide high-pressure cleaner according to claim 1, characterized in that, The water storage tank (102) is located below the cleaning tank (101). The bottom of the cleaning tank (101) is provided with a discharge hole (1012). The bottom of the discharge hole (1012) is connected to a drain pipe. A solenoid valve is installed in the drain pipe. A sealing plate (4) is provided between the cleaning tank (101) and the water storage tank (102) in the machine box (1). A through hole (41) connected to the discharge hole (1012) is provided on the sealing plate (4). A filter screen (5) is provided at the bottom of the through hole (41).

3. A high-pressure microscope slide cleaning machine according to claim 2, characterized in that, A liquid level sensor is installed inside the cleaning chamber (101). The liquid level sensor is electrically connected to the controller, and the controller is electrically connected to the solenoid valve.

4. A high-pressure microscope slide cleaner according to claim 1, characterized in that, An ultrasonic oscillator (3) is installed inside the cleaning chamber (101). The ultrasonic oscillator (3) is located below the liquid surface and is electrically connected to an ultrasonic generator.

5. A high-pressure microscope slide cleaner according to claim 1, characterized in that, The synchronization component includes a gear (16); two rotating shafts (13) are symmetrically arranged on the fixed base (9) about the axis of the support roller A (10) and are rotatably connected to it; two clamps (14) are fixedly connected to the rotating shafts (13) on the corresponding sides respectively; a gear (16) is coaxially connected to each of the two rotating shafts (13); and the two gears (16) mesh.

6. A high-pressure microscope slide cleaning machine according to claim 5, characterized in that, The rotary drive assembly includes a coil spring (17), and a circular groove coaxial with the rotating shaft (13) is provided on the fixed base (9). The coil spring (17) is located in the circular groove, and the inner end of the coil spring (17) is connected to the outer wall of the rotating shaft (13), while the outer end of the coil spring (17) is connected to the inner wall of the circular groove.

7. A high-pressure microscope slide cleaning machine according to claim 1, characterized in that, A water guide pipe (18) is installed inside the cleaning chamber (101). Two diversion seats (19) connected to the inside of the water guide pipe (18) are symmetrically installed on the water guide pipe (18). Two sets of nozzles (20) are installed on the side of the two diversion seats (19) that are close to each other.

8. A high-pressure microscope slide cleaner according to claim 7, characterized in that, The water supply assembly includes a water pump (21), with a pumping pipe (22) installed at the input end of the water pump (21) and an outlet pipe (23) installed at the output end of the water pump (21). The other end of the pumping pipe (22) is inserted into the water storage tank (102) and located below the liquid surface. The other end of the outlet pipe (23) is connected to the input end of the water guide pipe (18).

Citation Information

Patent Citations

  • A high-pressure cleaner for microscope slides

    CN113492138B