Optical lens cleaning and drying integrated equipment and using method thereof
By integrating cleaning, rinsing, and drying chambers into a single unit, and combining automatic transfer and drying mechanisms, the problems of high manual labor intensity and poor cleaning effect in traditional optical lens cleaning equipment have been solved, achieving a highly efficient and stable lens cleaning and drying process.
Patent Information
- Application Number
- CN202511869392.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-11
- Publication Date
- 2026-02-17
AI Technical Summary
Traditional optical lens cleaning equipment has a separate layout, which leads to high manual labor intensity, lenses are easily contaminated and damaged by collisions, resulting in poor cleaning effect. Furthermore, the mixing of cleaning and rinsing processes affects the cleanliness.
Design an integrated optical lens cleaning and drying equipment that combines a cleaning chamber, a rinsing chamber, and a drying chamber in the same housing. Equipped with an automatic transfer mechanism, it achieves continuous automated operation throughout the entire process. It employs an ultrasonic transducer and a heating and drying mechanism, combined with limit components and solenoid valve control, to ensure stable movement and uniform drying of the lenses.
It significantly reduces manual labor intensity, avoids secondary contamination and collisions of lenses, improves batch processing efficiency, ensures lens surface cleanliness and optical quality, and prevents lens damage.
Smart Images

Figure CN121534983A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application belongs to the technical field of optical lenses, and particularly relates to an optical lens cleaning and drying integrated device and a use method thereof. BACKGROUND
[0002] In the production, processing and maintenance process of optical lenses, impurities such as oil stains, dust and cutting fluid residues are easily attached to the lens surface, which can seriously affect the light transmission performance, imaging quality and the effect of subsequent coating process of the lens, so cleaning and drying is a key process.
[0003] Traditional optical lens cleaning usually adopts a separate layout of independent cleaning equipment and independent drying equipment. The lens needs to be manually transported to the drying equipment after cleaning, which not only increases the labor intensity, but also easily causes secondary pollution and collision scratches during the transportation process. At the same time, manual transfer leads to interruption of process connection, low production efficiency, poor cleaning effect and high risk of lens damage. In addition, some cleaning equipment only uses a single cleaning cavity, and the cleaning and rinsing processes are mixed, which can easily leave cleaning liquid on the lens surface, affecting the cleanliness. Therefore, we propose an optical lens cleaning and drying integrated device and a use method thereof to solve the problems in the prior art. SUMMARY
[0004] The purpose of the present application is to provide an optical lens cleaning and drying integrated device and a use method thereof. By integrating the cleaning cavity, rinsing cavity and drying cavity in the same box and configuring an automatic moving mechanism, the continuous automatic operation of the "cleaning-rinsing-drying" whole process is realized, without the need for manual transportation and transfer, which greatly reduces the labor intensity, avoids the risk of secondary pollution and collision of the lens, and shortens the process connection time, thereby solving the problems in the prior art mentioned in the background.
[0005] To achieve the above purpose, the present application adopts the following technical solutions: An optical lens cleaning and drying integrated device comprises: A box composed of a cleaning cavity, a rinsing cavity and a drying cavity, and two groups of ultrasonic transducers are installed at the bottom of the cleaning cavity and the rinsing cavity, and an ultrasonic generator electrically connected with the ultrasonic transducers; A taking and placing opening is provided on the front face of the box for taking and placing optical lenses; A placing net box is internally fixedly installed with a plurality of groups of supporting net racks in a rectangular array for placing optical lenses; A moving mechanism is installed at the inner top of the box for moving the placing net box in the cleaning cavity, the rinsing cavity and the drying cavity; A drying mechanism is installed on the box for drying the optical lenses on the placing net box and the supporting net racks moved into the drying cavity; The water adding mechanism is installed on the side wall of the box body and used for adding cleaning water into the cleaning cavity and the rinsing cavity.
[0006] Preferably, the moving mechanism comprises a fixed shell; The fixed shell is fixedly installed on the inner top of the box body, a threaded rod is rotatably installed in the fixed shell, one end of the threaded rod is fixedly connected with a driving motor penetrating through the fixed shell, a sliding block is threadedly installed on the outer wall of the threaded rod, an installation plate is fixedly installed on the bottom of the sliding block, two groups of electric push rods are symmetrically fixedly installed on the bottom of the installation plate, a connecting plate is fixedly installed on the bottom of the retractable end of the two groups of electric push rods, an L-shaped plate is fixedly installed on one side of the connecting plate, the top plate of the placed net box is clamped on the horizontal plate of the L-shaped plate, and a limiting assembly for limiting the top plate of the placed net box is installed on the top of the connecting plate.
[0007] Preferably, the limiting assembly comprises a mounting bracket; The mounting bracket is fixedly installed on the top of the connecting plate, a pull rod is slidingly inserted on the mounting bracket, a limiting plate is fixedly sleeved on the outer wall of the pull rod, and a spring is arranged between the limiting plate and the inner top of the mounting bracket.
[0008] Preferably, a stepped hole corresponding to the limiting plate is formed in the center of the top of the connecting plate, a through hole is formed in the center of the top plate of the placed net box, a blind hole is formed in the top of the horizontal plate of the L-shaped plate, the bottom of the pull rod is sequentially inserted into the inside of the blind hole penetrating through the stepped hole and the through hole, and the limiting plate is slidingly inserted into the inside of the stepped hole.
[0009] Preferably, a limiting rod is slidingly inserted on one side of the threaded rod, and the two ends of the limiting rod are fixedly connected with the inner walls of the two sides of the fixed shell.
[0010] Preferably, the drying mechanism comprises a heating box; The heating box is fixedly installed on the top of the box body, two groups of heating wires are fixedly installed in the heating box, a blower is fixedly installed on the air inlet of the heating box, a first three-way pipe is fixedly communicated with the air outlet of the heating box, two ends of the first three-way pipe are fixedly communicated with air outlet pipes, and one end of each of the two groups of air outlet pipes is fixedly connected with an air outlet cover penetrating through the box body.
[0011] Preferably, a first electromagnetic valve is installed at the connection between the first three-way pipe and the two groups of air outlet pipes, the two groups of air outlet covers are fixedly installed above the inner walls of the two sides of the box body corresponding to the drying cavities, the air outlet covers are above the inside of the drying cavities, and the two groups of air outlet covers are alternately used to dry the optical lenses moved into the drying cavities through cooperation of the two groups of first electromagnetic valves.
[0012] Preferably, the water adding mechanism comprises a second three-way pipe; The second three-way pipe is fixedly installed on the side wall of the box body, and two ends of the second three-way pipe are fixedly communicated with water adding pipes, one end of the two groups of water adding pipes penetrates through the side wall of the box body and extends to the inside of the cleaning cavity and the rinsing cavity respectively, and the connection positions of the two groups of water adding pipes and the second three-way pipe are both fixedly installed with second electromagnetic valves.
[0013] Preferably, the box body is provided with a drain pipe penetrating through the bottom of the cleaning cavity and the rinsing cavity, and the outer wall of the drain pipe is provided with a third electromagnetic valve, and the box body is provided with an air outlet above the side wall on one side of the drying cavity, and the inside of the air outlet is fixedly installed with a dustproof net.
[0014] A method for using an optical lens cleaning and drying integrated device, comprising the following steps: Step 1: the operator places the optical lens to be cleaned on the several groups of supporting frames in the placing net box one by one, ensuring that the lenses are independently separated; through the taking and placing opening on the front of the box body, then the pulling rod of the limiting assembly is pulled, the top plate of the placing net box is clamped on the horizontal plate of the L-shaped plate, the pulling rod penetrates through the stepped hole, the through hole and the blind hole in sequence under the elastic force of the spring, and the fixing of the placing net box is completed; Step 2: the water inlet end of the second three-way pipe is connected with the external water supply device, the second three-way pipe of the water adding mechanism is connected with the water source, the corresponding second electromagnetic valve is controlled to be opened according to the demand, the water adding pipes inject appropriate amount of cleaning water into the cleaning cavity and the rinsing cavity respectively, and the second electromagnetic valve is closed after the water adding is completed; Step 3: the two groups of telescopic ends of the electric push rods of the moving mechanism are driven to extend and retract to drive the placing net box to descend into the cleaning cavity, the ultrasonic generator at the bottom of the cleaning cavity is started, the ultrasonic transducer generates high-frequency vibration, the cleaning water in the cleaning cavity is vibrated, and the oil stains and impurities on the surface of the lens are stripped; after the cleaning is completed, the third electromagnetic valve of the drain pipe at the bottom of the cleaning cavity is opened to drain the waste liquid; Step 4: the two groups of electric push rods of the moving mechanism drive the placing net box to rise, the driving motor drives the threaded rod to rotate, the sliding block moves horizontally under the guidance of the limiting rod, and the placing net box is transferred to the rinsing cavity by the cooperation of the extension and retraction of the electric push rod; the ultrasonic generator of the rinsing cavity is started, the residual cleaning liquid and impurities on the surface of the lens are removed by water rinsing, and the waste liquid is discharged after the rinsing is completed; Step 5: the placing net box is transferred to the drying cavity by the moving mechanism, the air blower and the heating wire of the drying mechanism are started, the air heated by the heating wire enters the first three-way pipe, and the two groups of first electromagnetic valves are alternately opened to alternately blow hot air to the lens from the two air outlet hoods, so that the water on the surface of the lens is completely removed; the humid hot air generated in the drying process is discharged through the air outlet, and the dustproof net blocks the dust from the outside; Step 6: After the drying is completed, the moving mechanism moves the placing net box to the corresponding position of the taking and placing opening, the operator pulls the pull rod to release the limiting, takes out the placing net box, and completes the whole process of lens cleaning and drying.
[0015] The technical effects and advantages of the present application: the optical lens cleaning and drying integrated equipment and the using method thereof have the following advantages compared with the prior art: 1、The present application integrates the cleaning cavity, the rinsing cavity and the drying cavity in the same box body, and is provided with an automatic moving mechanism, so that the continuous automatic operation of the cleaning, rinsing and drying processes is realized, manual carrying and moving are not needed, the labor intensity is greatly reduced, the secondary pollution and collision risk of the lenses are avoided, the process connection time is shortened, the batch processing efficiency is significantly improved, the cleaning cavity and the rinsing cavity are independently partitioned, two groups of ultrasonic transducers at the bottom of the cleaning cavity and the rinsing cavity are used, impurities are completely stripped through high-frequency vibration, the rinsing cavity further removes residual cleaning liquid, and the cleanliness of the lens surface is ensured; the supporting net rack in the form of a rectangular array is used in the placing net box, so that each lens is independently and separately placed, friction scratches are effectively avoided, and the surface integrity of the lens is ensured. 2、The horizontal driving structure is adopted by the moving mechanism, two groups of electric push rods are symmetrically arranged, horizontal movement is realized without deviation, and vertical lifting is stable; the limiting assembly is precisely matched with the multi-hole position through the spring elastic force, the limiting and fixing of the placing net box are realized, shaking and falling during the moving process are prevented, the stability and positioning accuracy of the equipment operation are improved, the double-sided air outlet cover design is adopted by the drying mechanism, the first electromagnetic valve is used for controlling the alternate air outlet, local heat air concentration is avoided, the uniform heating of the lens surface is ensured, residual moisture is completely removed, and there is no obvious water stain; the hot air is uniformly heated by the heating wire and then diffused through the air outlet cover, the wind speed is gentle, the deformation or coating damage of the lens caused by high-temperature direct blowing is avoided, and the optical quality and size stability of the lens are ensured. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a front view structural schematic diagram of the present application; Figure 2 It is a sectional view structural schematic diagram of the present application; Figure 3 It is a structural schematic diagram of the moving mechanism and the placing net box of the present application; Figure 4 It is a structural schematic diagram of the limiting assembly and the connecting plate of the present application; Figure 5 It is a structural schematic diagram of the drying mechanism of the present application; Figure 6 It is a structural schematic diagram of the bottom of the box body of the present application; Figure 7 It is a structural schematic diagram of the water adding mechanism of the present application; Figure 8 The structure diagram of the supporting net frame of the application is shown.
[0017] In the figure: 1, box body; 11, cleaning cavity; 12, rinsing cavity; 13, drying cavity; 14, ultrasonic transducer; 15, ultrasonic generator; 16, liquid discharge pipe; 17, third electromagnetic valve; 2, taking and placing opening; 3, placing net box; 31, through hole; 4, supporting net frame; 5, moving mechanism; 51, fixed shell; 52, threaded rod; 53, driving motor; 54, sliding block; 55, mounting plate; 56, electric push rod; 57, connecting plate; 58, L-shaped plate; 581, blind hole; 59, limiting assembly; 591, mounting frame; 592, pull rod; 593, limiting plate; 594, spring; 595, stepped hole; 510, limiting rod; 6, drying mechanism; 61, heating box; 62, heating wire; 63, air blower; 64, first three-way pipe; 65, air outlet pipe; 66, air outlet cover; 67, first electromagnetic valve; 7, water adding mechanism; 71, second three-way pipe; 72, water adding pipe; 73, second electromagnetic valve; 8, air outlet. DETAILED DESCRIPTION
[0018] The technical solutions in the embodiments of the application will be clearly and completely described below with reference to the drawings in the embodiments of the application. Obviously, the described embodiments are only part of the embodiments of the application, rather than all the embodiments of the application. The specific embodiments described herein are only used to explain the application, and are not used to limit the application. Based on the embodiments in the application, all other embodiments obtained by those skilled in the art without creative work fall within the protection scope of the application.
[0019] The application provides an optical lens cleaning and drying integrated equipment as shown in Figures 1-8 The application provides an optical lens cleaning and drying integrated equipment as shown in The taking and placing opening 2 is arranged on the front face of the box body 1 and is used for taking and placing optical lenses. The taking and placing opening 2 arranged on the front face of the box body 1 facilitates an operator to quickly install the placing net box 3 containing lenses to be processed on the moving mechanism 5 and to take out the placing net box 3 after processing, so that the convenience of operating the equipment and the time for connecting processes are improved. The placing net box 3 is internally fixedly installed with a plurality of groups of supporting net racks 4 in a rectangular array for placing optical lenses; by arranging the supporting net racks 4 in a rectangular array inside, a plurality of optical lenses can be independently placed and separated, so as to avoid scratches caused by mutual friction between the lenses, and the lens surface integrity is ensured and the single processing capacity is improved; The moving mechanism 5 is installed on the inner top of the box body 1 and is used for moving the placing net box 3 in the cleaning cavity 11, the rinsing cavity 12 and the drying cavity 13; by arranging the moving mechanism 5 installed on the inner top of the box body 1, the automatic transfer of the placing net box 3 between the three cavities is realized, manual carrying is not required, the labor intensity is reduced, and the process connection continuity is ensured; The drying mechanism 6 is installed on the box body 1 and is used for drying the optical lenses on the placing net box 3 and the supporting net racks 4 moved into the drying cavity 13; by arranging the specific drying mechanism 6, the lens surface residual water can be quickly removed, water stains are avoided to affect the light transmission performance of the lenses, the drying efficiency is improved, and the optical quality of the lenses is ensured; The water adding mechanism 7 is installed on the side wall of the box body 1 and is used for adding cleaning water to the cleaning cavity 11 and the rinsing cavity 12; by arranging the water adding mechanism 7 installed on the side wall of the box body 1, the required cleaning water can be accurately supplied to the cleaning cavity 11 and the rinsing cavity 12, manual water adding is not required, the water adding amount precision is controlled, and the equipment automation degree is improved.
[0020] In an optional embodiment, the moving mechanism 5 includes a fixed shell 51; the fixed shell 51 is fixedly installed on the inner top of the box body 1, a threaded rod 52 is rotatably installed in the inside of the fixed shell 51, one end of the threaded rod 52 penetrates through the fixed shell 51 and is fixedly connected with a driving motor 53, a sliding block 54 is threadedly installed on the outer wall of the threaded rod 52, a mounting plate 55 is fixedly installed on the bottom of the sliding block 54, two groups of electric push rods 56 are symmetrically fixedly installed on the bottom of the mounting plate 55, a connecting plate 57 is fixedly installed on one side of the electric push rods 56, an L-shaped plate 58 is fixedly installed on one side of the connecting plate 57, the top flange of the placing net box 3 is clamped on the horizontal plate of the L-shaped plate 58, and a limiting assembly 59 for limiting the top flange of the placing net box 3 is installed on the top of the connecting plate 57; It should be noted that by arranging the moving mechanism 5 composed of the driving motor 53, the threaded rod 52, the electric push rod 56, the L-shaped plate 58 and the limiting assembly 59, the driving motor 53 drives the threaded rod 52 to rotate to realize horizontal movement, the electric push rod 56 realizes vertical lifting, the L-shaped plate 58 cooperates with the limiting assembly 59 to fix the placing net box 3, and the effect of stably and accurately moving the placing net box 3 is achieved.
[0021] In an optional embodiment: the limiting component 59 comprises a mounting frame 591; the mounting frame 591 is fixedly installed on the top of the connecting plate 57, a pull rod 592 is slidingly inserted on the mounting frame 591, the outer wall of the pull rod 592 is fixedly sleeved with a limiting plate 593, and the spring 594 is arranged between the limiting plate 593 and the inner top of the mounting frame 591; It should be noted that by setting the limiting component 59 composed of the mounting frame 591, the pull rod 592, the limiting plate 593 and the spring 594, the spring 594 is pushed by the elastic force to make the pull rod 592 keep downward pressure, which achieves the effect of automatically limiting the placement of the net box 3 and preventing the net box from falling off during moving.
[0022] In an optional embodiment: the top of the connecting plate 57 is centrally provided with a stepped hole 595 corresponding to the limiting plate 593, the center of the placement of the net box 3 is provided with a through hole 31, the top of the horizontal plate of the L-shaped plate 58 is provided with a blind hole 581, and the bottom of the pull rod 592 is sequentially inserted into the inside of the blind hole 581 through the stepped hole 595 and the through hole 31, and the limiting plate 593 is slidingly inserted into the inside of the stepped hole 595; It should be noted that by setting the precise cooperation of the stepped hole 595, the through hole 31 and the blind hole 581, the pull rod 592 can sequentially penetrate each component to realize positioning, and the stepped hole 595 plays a limiting role on the limiting plate 593, which achieves the effect of improving the positioning accuracy of the limiting component 59 and ensuring the stability.
[0023] It is worth noting that the top of the stepped hole 595 is rectangular and the bottom is a circular hole, which facilitates the insertion of the limiting plate 593. When the limiting plate 593 is inserted into the stepped hole 595, the pull rod 592 limits and fixes the placement of the net box 3. When it is necessary to cancel the limiting of the placement of the net box 3, the pull rod 592 can be pulled up and rotated, so that the limiting plate 593 is rotated and staggered with the stepped hole 595 and is clamped on the surface of the connecting plate 57, so that the bottom of the pull rod 592 is retracted into the circular hole at the bottom of the stepped hole 595, facilitating the taking and placing of the top plate of the placement of the net box 3.
[0024] In an optional embodiment: the sliding block 54 is slidingly inserted with a limiting rod 510 on one side of the threaded rod 52, and the two ends of the limiting rod 510 are fixedly connected with the inner walls of the two sides of the fixed shell 51; It should be noted that by setting the limiting rod 510 parallel to the threaded rod 52, the moving direction of the sliding block 54 is limited, avoiding the deflection of the sliding block 54 with the rotation of the threaded rod 52, which achieves the effect of ensuring the horizontal moving stability of the sliding block 54 and improving the running accuracy of the moving mechanism 5.
[0025] In an optional embodiment: the drying mechanism 6 comprises a heating box 61; the heating box 61 is fixedly installed on the top of the box body 1, two groups of heating wires 62 are fixedly installed inside the heating box 61, an air blower 63 is fixedly installed at the air inlet of the heating box 61, a first three-way pipe 64 is fixedly communicated with the air outlet of the heating box 61, two ends of the first three-way pipe 64 are fixedly communicated with air outlet pipes 65, one end of each of the two groups of air outlet pipes 65 penetrates through the box body 1 and is fixedly connected with an air outlet cover 66 respectively; It should be noted that, by setting the drying mechanism 6 composed of the heating wires 62, the air blower 63, the first three-way pipe 64, the air outlet pipe 65 and the air outlet cover 66, the air introduced by the air blower 63 is heated by the heating wires 62 and then uniformly blown to the lenses through the air outlet cover 66, so as to improve the hot air coverage and ensure the uniformity of drying.
[0026] In an optional embodiment: the first three-way pipe 64 is provided with a first electromagnetic valve 67 at the connection with each of the two groups of air outlet pipes 65, the two groups of air outlet covers 66 are fixedly installed above the inner walls on both sides of the drying cavity 13 of the box body 1 respectively, the air outlet cover 66 is located above the inside of the drying cavity 13, and the two groups of air outlet covers 66 are alternately used to dry the optical lenses moved into the drying cavity 13 through the cooperation of the two groups of first electromagnetic valves 67; It should be noted that, by setting the two groups of first electromagnetic valves 67 to control the on-off of the air outlet pipes 65, the air outlet of the air outlet covers 66 on both sides is alternated, so as to avoid the damage of the lenses caused by the long-time direct blowing of hot air, so as to optimize the drying effect and protect the surface performance of the lenses.
[0027] In an optional embodiment: the water adding mechanism 7 comprises a second three-way pipe 71; the second three-way pipe 71 is fixedly installed on the side wall of the box body 1, two groups of water adding pipes 72 are fixedly communicated with both ends of the second three-way pipe 71, one end of each of the two groups of water adding pipes 72 penetrates through the side wall of the box body 1 and extends to above the inside of the cleaning cavity 11 and the rinsing cavity 12 respectively, and a second electromagnetic valve 73 is installed at the connection between each of the two groups of water adding pipes 72 and the second three-way pipe 71; It should be noted that, by setting the second three-way pipe 71 cooperating with the two groups of second electromagnetic valves 73, the water adding process to the cleaning cavity 11 and the rinsing cavity 12 can be controlled respectively, and the water adding pipe 72 extends to above the inside of the cavity to avoid the impact of water flow on the lenses, so as to achieve the effect of independent water adding in different zones and protect the lenses from the impact of water flow. In an optional embodiment: the box body 1 is provided with a drain pipe 16 penetratingly installed at the bottom of the cleaning cavity 11 and the rinsing cavity 12, a third electromagnetic valve 17 is arranged on the outer wall of the drain pipe 16, an exhaust port 8 is formed above the side wall of the drying cavity 13 of the box body 1, and a dust screen is fixedly installed inside the exhaust port 8; It should be noted that by providing the drain pipe 16 with the third electromagnetic valve 17, the waste liquid in the cleaning cavity 11 and the rinsing cavity 12 can be quickly discharged, the exhaust port 8 of the drying cavity 13 can timely discharge the hot and humid air, and the dust screen can prevent external dust from entering, thereby achieving the effects of convenient waste liquid discharge, internal cleaning of the drying cavity, and improved convenience of equipment use.
[0028] A method for using an optical lens cleaning and drying integrated device, comprising the following steps: Step 1: The operator places the optical lenses to be cleaned one by one on the several groups of supporting net racks 4 in the placing net box 3, ensuring that the lenses are independently separated; through the taking and placing opening 2 on the front of the box body 1, then the pulling rod 592 of the limiting assembly 59 is pulled, the top plate of the placing net box 3 is clamped on the horizontal plate of the L-shaped plate 58, the pulling rod 592 is loosened, and under the elastic force of the spring 594, the pulling rod 592 penetrates the stepped hole 595, the through hole 31 and the blind hole 581 in sequence, and the fixing of the placing net box 3 is completed; Step 2: The second three-way pipe 71 is connected to the external water supply equipment through the water inlet end, the second three-way pipe 71 of the water adding mechanism 7 is connected to the water source, the opening of the corresponding second electromagnetic valve 73 is controlled according to the demand, the water adding pipe 72 injects appropriate cleaning water into the cleaning cavity 11 and the rinsing cavity 12 respectively, and after the water adding is completed, the second electromagnetic valve 73 is closed; Step 3: The two groups of electric push rods 56 of the moving mechanism 5 are extended and retracted to drive the placing net box 3 to descend into the cleaning cavity 11, the ultrasonic generator 15 at the bottom of the cleaning cavity 11 is started, the ultrasonic transducer 14 generates high-frequency vibration, the cleaning water in the cleaning cavity 11 is vibrated, and the oil stains and impurities on the surface of the lenses are stripped; after the cleaning is completed, the third electromagnetic valve 17 of the drain pipe 16 at the bottom of the cleaning cavity 11 is opened, and the waste liquid is discharged; Step 4: The two groups of electric push rods 56 of the moving mechanism 5 drive the placing net box 3 to rise, the driving motor 53 drives the threaded rod 52 to rotate, the sliding block 54 moves horizontally under the guidance of the limiting rod 510, and the extension and retraction of the electric push rod 56 cooperates to transfer the placing net box 3 to the rinsing cavity 12; the ultrasonic generator 15 of the rinsing cavity 12 is started, the lenses are rinsed with clean water to remove the residual cleaning liquid and impurities on the surface of the lenses, and after the rinsing is completed, the waste liquid is discharged through the corresponding drain pipe 16; Step 5: The placing net box 3 is transferred to the drying cavity 13 by the moving mechanism 5, the air blower 63 and the heating wire 62 of the drying mechanism 6 are started, the air is heated by the heating wire 62 and then enters the first three-way pipe 64, the two groups of first electromagnetic valves 67 are alternately opened to make the two air outlet hoods 66 alternately blow hot air to the lenses, and the water on the surface of the lenses is completely removed; the hot and humid air generated during the drying process is discharged through the exhaust port 8, and the dust screen blocks the external dust from entering; Step 6: After the drying is completed, the moving mechanism 5 moves the placing net box 3 to the position corresponding to the taking and placing opening 2, an operator pulls the pull rod 592 to release the limiting, takes out the placing net box 3, and completes the whole process of lens cleaning and drying.
[0029] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and not for limiting the present application, although the foregoing detailed description of the present application is made with reference to the foregoing embodiments, for those skilled in the art, it still can be modified, or part of the technical features of the equivalent replacement, within the spirit and principles of the present application, any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.
Claims
1. An optical lens cleaning and drying integrated device, characterized in that, Include: Box (1), the box (1) is composed of cleaning cavity (11), rinsing cavity (12) and drying cavity (13), and the bottom of cleaning cavity (11) and rinsing cavity (12) is installed with two groups of ultrasonic transducer (14), and the ultrasonic transducer (14) is electrically connected with ultrasonic generator (15); Take and put mouth (2), open in the front of box (1), for taking and placing optical lens; Place net box (3), a plurality of groups of supporting net racks (4) are fixedly installed in the inside of rectangular array, for placing optical lens; Moving mechanism (5), installed at the inner top of box (1), for moving the placing net box (3) in cleaning cavity (11), rinsing cavity (12) and drying cavity (13); Drying mechanism (6), installed on the box (1), for drying the optical lens on the placing net box (3) and supporting net rack (4) moved into drying cavity (13); Water adding mechanism (7), installed on the side wall of box (1), for adding cleaning water in cleaning cavity (11) and rinsing cavity (12).
2. The optical lens cleaning and drying integrated device according to claim 1, characterized in that: The moving mechanism (5) includes a fixed shell (51); The fixed shell (51) is fixedly installed on the inner top of the box (1), a threaded rod (52) is rotatably installed in the fixed shell (51), one end of the threaded rod (52) penetrates through the fixed shell (51) and is fixedly connected with a driving motor (53), a sliding block (54) is threadedly installed on the outer wall of the threaded rod (52), a mounting plate (55) is fixedly installed on the bottom of the sliding block (54), two groups of electric push rods (56) are fixedly installed on the bottom of the mounting plate (55), a connecting plate (57) is fixedly installed on one side of the electric push rod (56), an L-shaped plate (58) is fixedly installed on one side of the connecting plate (57), the top plate of the placing net box (3) is clamped on the horizontal plate of the L-shaped plate (58), and a limiting assembly (59) is installed on the top of the connecting plate (57) to limit the top plate of the placing net box (3).
3. The optical lens cleaning and drying integrated device according to claim 2, characterized in that: The limiting assembly (59) includes a mounting bracket (591); The mounting bracket (591) is fixedly installed on the top of the connecting plate (57), a pull rod (592) is slidably inserted into the mounting bracket (591), a limiting plate (593) is fixedly sleeved on the outer wall of the pull rod (592), and a spring (594) is arranged between the limiting plate (593) and the inner top of the mounting bracket (591).
4. The optical lens cleaning and drying integrated device according to claim 3, characterized in that: A stepped hole (595) corresponding to the limiting plate (593) is formed in the center of the top of the connecting plate (57), a through hole (31) is formed in the center of the top plate of the placing net box (3), and a blind hole (581) is formed in the top of the horizontal plate of the L-shaped plate (58), the bottom of the pull rod (592) penetrates the stepped hole (595) and the through hole (31) in sequence and is inserted into the blind hole (581), and the limiting plate (593) is slidably inserted into the stepped hole (595).
5. The optical lens cleaning and drying integrated device according to claim 2, characterized in that: The sliding block (54) is slidably inserted into a limiting rod (510) on one side of the threaded rod (52), and the limiting rod (510) is fixedly connected with the inner walls of the fixed shell (51) on both ends.
6. The optical lens cleaning and drying integrated device according to claim 1, characterized in that: The drying mechanism (6) comprises a heating box (61); The heating box (61) is fixedly installed on the top of the box body (1), two groups of heating wires (62) are fixedly installed in the heating box (61), an air blower (63) is fixedly installed on the air inlet of the heating box (61), a first three-way pipe (64) is fixedly communicated with the air outlet of the heating box (61), two ends of the first three-way pipe (64) are fixedly communicated with air outlet pipes (65), and one end of each of the two groups of air outlet pipes (65) penetrates through the box body (1) and is fixedly connected with an air outlet cover (66).
7. The optical lens cleaning and drying integrated device according to claim 6, characterized in that: First electromagnetic valves (67) are installed at the connection positions of the first three-way pipe (64) and the two groups of air outlet pipes (65), the two groups of air outlet covers (66) are fixedly installed on the inner walls of the two sides of the drying cavity (13) of the box body (1) and are located above the drying cavity (13), and the two groups of air outlet covers (66) are alternately used to dry the optical lenses moved into the drying cavity (13) through cooperation of the two groups of first electromagnetic valves (67).
8. The optical lens cleaning and drying integrated device according to claim 1, characterized in that: The water adding mechanism (7) comprises a second three-way pipe (71); The second three-way pipe (71) is fixedly installed on the side wall of the box body (1), two ends of the second three-way pipe (71) are fixedly communicated with water adding pipes (72), one end of each of the two groups of water adding pipes (72) penetrates through the side wall of the box body (1) and extends to the upper part of the cleaning cavity (11) and the rinsing cavity (12), and second electromagnetic valves (73) are installed at the connection positions of the two groups of water adding pipes (72) and the second three-way pipe (71).
9. The optical lens cleaning and drying integrated device according to claim 1, characterized in that: A drain pipe (16) is installed through the bottom of the box body (1) and located in the cleaning cavity (11) and the rinsing cavity (12), a third electromagnetic valve (17) is arranged on the outer wall of the drain pipe (16), an air outlet (8) is arranged on the side wall of the box body (1) and located on one side of the drying cavity (13), and a dustproof net is fixedly installed in the air outlet (8).
10. The use method of the optical lens cleaning and drying integrated device according to claim 1, comprising the following steps: Step 1: the operator places the optical lenses to be cleaned on the support net racks (4) in the placing net box (3) one by one, and ensures that the lenses are independently separated; the top plate of the placing net box (3) is clamped on the horizontal plate of the L-shaped plate (58) through the taking and placing opening (2) on the front of the box body (1), the pulling rod (592) of the limiting assembly (59) is pulled, the pulling rod (592) penetrates through the stepped hole (595), the through hole (31) and is inserted into the blind hole (581) under the elastic force of the spring (594), and the fixing of the placing net box (3) is completed; Step 2: the water adding mechanism (7) is connected with the external water supply device through the water inlet end of the second three-way pipe (71), the second three-way pipe (71) is connected with the water source, the second electromagnetic valves (73) are controlled to be opened according to the requirement, the water adding pipes (72) respectively inject appropriate cleaning water into the cleaning cavity (11) and the rinsing cavity (12), and the second electromagnetic valves (73) are closed after the water adding is completed; Step 3: The net box (3) is lowered into the cleaning cavity (11) by the telescopic extension of the two groups of telescopic ends of the electric push rods (56) of the moving mechanism (5), the ultrasonic generator (15) at the bottom of the cleaning cavity (11) is started, the ultrasonic transducer (14) generates high-frequency vibration, the cleaning water in the cleaning cavity (11) is vibrated, and the oil stains and impurities on the surface of the lens are stripped; after cleaning is completed, the third electromagnetic valve (17) of the drain pipe (16) at the bottom of the cleaning cavity (11) is opened, and waste liquid is discharged; Step 4: The net box (3) is lifted by the two groups of electric push rods (56) of the moving mechanism (5), the driving motor (53) drives the threaded rod (52) to rotate, the sliding block (54) moves horizontally under the guidance of the limiting rod (510), and the net box (3) is transferred to the rinsing cavity (12) by the telescopic extension of the electric push rod (56); the ultrasonic generator (15) of the rinsing cavity (12) is started, the residual cleaning liquid and impurities on the surface of the lens are removed by water rinsing, the corresponding drain pipe (16) is opened after rinsing is completed, and waste liquid is discharged; Step 5: The net box (3) is transferred to the drying cavity (13) by the moving mechanism (5), the air blower (63) and the heating wire (62) of the drying mechanism (6) are started, the air is heated by the heating wire (62) and then enters the first three-way pipe (64), the two groups of first electromagnetic valves (67) are alternately opened, the air is blown to the lens by the two air outlet covers (66) alternately, and the water on the surface of the lens is completely removed; the humid hot air generated during the drying process is discharged through the exhaust port (8), and the dust screen prevents dust from entering from the outside; Step 6: After drying is completed, the net box (3) is transferred to the corresponding position of the taking and placing opening (2) by the moving mechanism (5), the operator pulls the pull rod (592) to release the limiting, takes out the net box (3), and completes the whole process of lens cleaning and drying.