Adhesive coating device for optical lens processing

By designing an automated adhesive coating device for optical lens processing, the automatic positioning and rotation of the lens is achieved, the problems of low glue coating efficiency and poor uniformity are solved, the quality and efficiency of glue coating are improved, and the pollution risk of manual operation is reduced.

CN120502469APending Publication Date: 2025-08-19江西宏信光学科技有限公司
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Patent Information

Application Number
CN202510701957.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-28
Publication Date
2025-08-19

AI Technical Summary

Technical Problem

In the prior art, optical lenses have low glue efficiency and poor uniformity, and are easy to stain the lens by manual operation. The existing automation device cannot adjust the position of the lens, resulting in uneven glue coating.

Method used

A bonding glue application device for optical lens processing is designed, including a support base, a driving component, a cleaning component and a glue coating component. The position adjustment unit and a driving component realize the automatic positioning and rotation of the lens, and the cleaning unit and the blowing unit are combined for thorough cleaning and drying. The glue coating component can adapt to lenses of different diameters and drive the lens to rotate during the glue coating process.

Benefits of technology

Improves glue coating efficiency and uniformity, adapts to lenses of different diameters, ensures glue coating quality, and reduces the risk of pollution caused by manual operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an adhesive applying device for optical lens processing, and relates to the technical field of optical lens processing equipment, the adhesive applying device comprises a supporting seat, a driving assembly, a cleaning assembly and an adhesive applying assembly are arranged on the supporting seat, and a material taking assembly is arranged on the driving assembly; the cleaning assembly comprises a first position adjusting unit, a second position adjusting unit, a cleaning unit and an air blowing unit, the first position adjusting unit is installed on the supporting base, the second position adjusting unit is installed on the first position adjusting unit, the cleaning unit is installed on the second position adjusting unit, and the air blowing unit is installed on the bottom face of the supporting base; the air blowing unit is arranged under the second position adjusting unit. The multiple sets of cleaning units are arranged. The position of a lens can be adjusted, the lens is centered, the lens gluing device can adapt to lenses with different diameters, meanwhile, the lens can be driven to rotate in the gluing process, and the gluing efficiency and the gluing uniformity are improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of optical lens processing equipment, and in particular to an adhesive coating device for optical lens processing. Background Art

[0002] Optical lenses generally refer to optical glass lenses. During the installation process, adhesive glue needs to be applied to the edge of the lens to facilitate the installation of the lens on the frame. In the existing technology, manual glue application is usually adopted. Before applying the glue, the lens is manually cleaned and then glue is applied after cleaning. However, manual glue application has the problems of low efficiency and low glue application uniformity. At the same time, since it is a manual operation, it is easy to dirty the lens during the glue application process, which will increase the workload in disguise.

[0003] A Chinese invention patent with the announcement number "CN112718390B" proposes an adhesive coating device for optical lens processing. The patent uses upper and lower suction cups to press the lens, and then the gluing head is attached to the edge of the lens, causing the lens to rotate for gluing. Although the patent can automatically apply glue, it cannot adjust the position of the lens and cannot ensure that the lens remains in the center position. When the lens is not centered, it will cause uneven glue coating, affecting the quality of the glue coating. Summary of the Invention

[0004] In response to the above technical problems, the present invention provides an adhesive coating device for optical lens processing, comprising a support seat, the support seat being externally connected to a program control component, the support seat being provided with a driving component, the support seat being further provided with a cleaning component and a gluing component, the driving component being provided with a material picking component, the cleaning component comprising a first position adjustment unit, a second position adjustment unit, a cleaning unit, and a blowing unit, the first position adjustment unit being mounted on the support seat, the second position adjustment unit being mounted on the first position adjustment unit, the cleaning unit being mounted on the second position adjustment unit, the blowing unit being mounted on the bottom surface of the support seat, and the blowing unit being arranged directly below the second position adjustment unit; the cleaning units are provided in multiple groups, and the spacing between the multiple groups of cleaning units is adjusted by the second position adjustment unit.

[0005] Furthermore, the cleaning unit includes a slider 1, a support plate 3, a cleaning wheel, a support plate 4, a belt, a rotating shaft 3, a rotating shaft 4, and a motor 8, the slider 1 is rotatably mounted on the second position adjustment unit, the support plate 3 and the support plate 4 are both slidably mounted on the slider 1, the cleaning wheel is rotatably mounted on the support plate 3, the cleaning wheel and the support plate 4 are rotatably connected, the motor 8 is mounted on the support plate 3, the rotating shaft 4 is rotatably mounted on the support plate 3, the rotating shaft 4 and the support plate 4 are rotatably connected, the rotating shaft 4 and the output shaft of the motor 8 are fixedly connected, the lower end of the cleaning wheel is fixedly mounted with a pulley 1, the lower end of the rotating shaft 4 is fixedly mounted with a pulley 2, the pulley 1 and the pulley 2 are connected by a belt, the rotating shaft 3 is rotatably mounted on the second position adjustment unit, the pulley 2 is rotatably connected to the rotating shaft 3, a plurality of cleaning holes are provided on the cleaning wheel, a liquid storage cavity is provided in the cleaning wheel, a cleaning liquid is provided in the liquid storage cavity, a valve is provided between the liquid storage cavity and the cleaning hole, and a sensor is provided on the cleaning wheel.

[0006] Furthermore, the first position adjustment unit includes an electric cylinder 1, a support block 1, a motor 6, a rotating shaft 2, a support block 2, a motor 7, a support plate 2, an electric cylinder 2, a flip table, a connecting rod, and an adsorption table 2. The electric cylinder 1 is fixedly mounted on the support seat, the support block 1 is fixedly mounted on the piston rod of the electric cylinder 1, the motor 6 is fixedly mounted on the support block 1, the rotating shaft 2 is fixedly mounted on the output shaft of the motor 6, the support block 2 is fixedly mounted on the rotating shaft 2, the flip table is fixedly mounted on the support block 2, and the electric cylinder 2 is fixedly mounted on the flip table. On, the support plate 2 is fixedly mounted on the piston rod of the electric cylinder 2, the motor 7 is mounted on the support plate 2, the connecting rod is fixedly mounted on the output shaft of the motor 7, the connecting rod and the support plate 2 are rotatably connected, the adsorption platform 2 is fixedly mounted on the connecting rod, a plurality of suction holes 1 are provided on the adsorption platform 2, the adsorption platform 2 is externally connected to a suction component 1, the electric cylinder 1, the support block 1, the motor 6, the rotating shaft 2, the support block 2, and the electric cylinder 2 are each provided with two, a through hole is provided on the flip platform, and the diameter of the adsorption platform 2 is smaller than the diameter of the through hole.

[0007] Furthermore, the second position adjustment unit includes a support frame three, a support frame four, a gear, a motor five, and an incomplete gear. The support frame four is fixedly mounted on the electric cylinder one, the motor five is mounted on the support frame four, the gear is fixedly mounted on the mounting shaft, the mounting shaft is rotatably mounted on the support frame four, the mounting shaft is fixedly connected to the output shaft of the motor five, the incomplete gear is rotatably mounted on the support frame four, the incomplete gear is meshed with the gear, the support frame three is fixedly mounted on the incomplete gear, the slider one is rotatably mounted on the support frame three, and the rotating shaft three is rotatably mounted on the support frame four.

[0008] Furthermore, the glue coating assembly includes a support plate five, a support frame five, a motor nine, a rotating plate two, a slider two, a spray gun, and an adsorption table three. The support frame five is fixedly mounted on the support seat, the support plate five is fixedly mounted on the support frame five, the rotating plate two is rotatably mounted on the support frame five, the motor nine is mounted on the support frame five, the rotating plate two is fixedly connected to the output shaft of the motor nine, a plurality of straight grooves one are provided on the support plate five, the slider two is slidably mounted in the straight groove one, and the lower end of the slider two is fixedly mounted with a connecting shaft one. The rotating plate 2 is provided with a plurality of arc grooves 1, the connecting shaft 1 is slidably connected to the arc groove 1, the spray gun is fixedly mounted on the slider 2, the adsorption platform 3 is rotatably mounted on the support plate 5, a motor 1 is provided below the adsorption platform 3, the motor 1 is fixedly mounted on the support plate 5, the adsorption platform 3 and the output shaft of the motor 1 are fixedly connected, the slider 2 and the spray gun are both provided with multiple, and are evenly spaced in a circular shape, the adsorption platform 3 is provided with a plurality of suction holes 2, and the adsorption platform 3 is externally connected to a suction component 2.

[0009] The driving member is a chain which has a first end fixed to the side panel that is located adjacent to the driving member, and a second end of the driving member is engaged with the transmission gear of the motor, and the transmission gear is engaged with the transmission gear of the motor.

[0010] The driving mechanism that the present invention relates to a driving mechanism that the sprocket is the most basic component of the present invention, and the sprocket is mainly connected to the driving mechanism, and the sprocket is mainly connected to the transmission gear of the sprocket. The sprocket is mainly connected to the transmission gear of the sprocket.

[0011] Furthermore, the blowing unit includes a support frame 1 and a fan, the support frame 1 is fixedly mounted on the bottom surface of the support base, and the fan is fixedly mounted on the support frame 1.

[0012] The beneficial effects of the present invention compared with the prior art are as follows: (1) the present invention can adjust the spacing of multiple cleaning units through the second position adjustment unit, so that lenses of different diameters can be cleaned to facilitate subsequent gluing; (2) the present invention can thoroughly clean the edge of the lens through the rotation of the cleaning wheel, and can blow dry it after cleaning, thereby improving the quality of subsequent gluing; (3) the present invention can drive the material taking component to automatically take and put the lens through the driving component, and can adjust the position of the lens to center the lens, thereby making the gluing more uniform; (4) the gluing units in the present invention can change the spacing during the gluing process to adapt to lenses of different diameters, and have a wide range of applications. At the same time, they can drive the lens to rotate during the gluing process, thereby improving the efficiency and uniformity of gluing. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 The overall structure of the present invention is shown in FIG. Figure 1 .

[0014] Figure 2 The overall structure of the present invention is shown in FIG. Figure 2 .

[0015] Figure 3 The overall structure of the present invention is shown in FIG. Figure 3 .

[0016] Figure 4 The overall structure of the present invention is shown in FIG. Figure 4 .

[0017] Figure 5It is a schematic diagram of the local structure of the present invention.

[0018] Figure 6 This is a structural diagram of the material taking component of the present invention.

[0019] Figure 7 Schematic diagram of the local structure of the material taking component of the present invention Figure 1 .

[0020] Figure 8 Schematic diagram of the local structure of the material taking component of the present invention Figure 2 .

[0021] Figure 9 This is a schematic structural diagram of the cleaning component of the present invention.

[0022] Figure 10 For the present invention Figure 9 Enlarged structural diagram at point A in the middle.

[0023] Figure 11 It is a schematic diagram of the partial structure of the cleaning component of the present invention.

[0024] Figure 12 It is a schematic structural diagram of the gluing component of the present invention.

[0025] Figure 13 It is a schematic diagram of the local structure of the gluing component of the present invention.

[0026] Figure numbers: 101-support base; 201-support frame 1; 202-fan; 301-movable frame 1; 302-screw 1; 303-motor 2; 304-movable frame 2; 305-movable frame 3; 306-screw 2; 307-motor 3; 308-guide rod; 401-support frame 2; 402-support plate 1; 403-positioning block; 404-adsorption table 1; 405-rotating plate 1; 406-rotating shaft 1; 407-motor 4; 501-support frame 3; 502-support frame 4; 503-gear; 504-motor 5; 505-electric cylinder 1; 506-support block 1; 507-motor 6; 508 - Slider 1; 509 - Incomplete gear; 510 - Rotating shaft 2; 511 - Support block 2; 512 - Motor 7; 513 - Support plate 2; 514 - Electric cylinder 2; 515 - Turning table; 516 - Connecting rod; 517 - Adsorption table 2; 518 - Support plate 3; 519 - Cleaning wheel; 520 - Support plate 4; 521 - Pulley 1; 522 - Belt; 523 - Rotating shaft 3; 524 - Pulley 2; 525 - Rotating shaft 4; 526 - Motor 8; 601 - Support plate 5; 602 - Support frame 5; 603 - Motor 9; 604 - Rotating plate 2; 605 - Slider 2; 606 - Spray gun; 607 - Adsorption table 3. DETAILED DESCRIPTION

[0027] The present invention will be further described below with reference to specific embodiments. The illustrative embodiments and descriptions of the present invention are used to explain the present invention but are not intended to limit the present invention.

[0028] Example: Figures 1-13 The adhesive coating device for optical lens processing shown in the figure includes a support base 101, the support base 101 is externally connected to a program control component, a driving component is provided on the support base 101, a cleaning component and a glue coating component are also provided on the support base 101, a material picking component is provided on the driving component, the cleaning component includes a first position adjustment unit, a second position adjustment unit, a cleaning unit, and a blowing unit, the first position adjustment unit is installed on the support base 101, the second position adjustment unit is installed on the first position adjustment unit, the cleaning unit is installed on the second position adjustment unit, the blowing unit is installed on the bottom surface of the support base 101, and the blowing unit is arranged directly below the second position adjustment unit; multiple groups of cleaning units are provided, and the spacing between the multiple groups of cleaning units is adjusted by the second position adjustment unit.

[0029] The cleaning unit includes a slider 1 508, a support plate 3 518, a cleaning wheel 519, a support plate 4 520, a belt 522, a rotating shaft 3 523, a rotating shaft 4 525, and a motor 8 526. The slider 1 508 is rotatably mounted on the second position adjustment unit. The support plate 3 518 and the support plate 4 520 are both slidably mounted on the slider 1 508. The cleaning wheel 519 is rotatably mounted on the support plate 3 518. The cleaning wheel 519 and the support plate 4 520 are rotatably connected. The motor 8 526 is mounted on the support plate 3 518. The rotating shaft 4 525 is rotatably mounted on the support plate 3 518. The rotating shaft 4 525 and the support plate 4 520 rotate. Connection, shaft four 525 and the output shaft of motor eight 526 are fixedly connected, pulley one 521 is fixedly installed on the lower end of the cleaning wheel 519, pulley two 524 is fixedly installed on the lower end of shaft four 525, pulley one 521 and pulley two 524 are connected by belt 522, shaft three 523 is rotatably installed on the second position adjustment unit, pulley two 524 is rotatably connected to shaft three 523, a plurality of cleaning holes are provided on the cleaning wheel 519, a liquid storage chamber is provided in the cleaning wheel 519, cleaning liquid is provided in the liquid storage chamber, a valve is provided between the liquid storage chamber and the cleaning hole, and a sensor is provided on the cleaning wheel 519.

[0030] The first position adjustment unit includes an electric cylinder 1 505, a support block 1 506, a motor 6 507, a rotating shaft 2 510, a support block 2 511, a motor 7 512, a support plate 2 513, an electric cylinder 2 514, a turning table 515, a connecting rod 516, and an adsorption table 2 517. The electric cylinder 1 505 is fixedly mounted on the support base 101, the support block 1 506 is fixedly mounted on the piston rod of the electric cylinder 1 505, the motor 6 507 is fixedly mounted on the support block 1 506, the rotating shaft 2 510 is fixedly mounted on the output shaft of the motor 6 507, the support block 2 511 is fixedly mounted on the rotating shaft 2 510, the turning table 515 is fixedly mounted on the support block 2 511, and the electric cylinder 2 514 is fixedly mounted. On the flipping table 515, the support plate 2 513 is fixedly mounted on the piston rod of the electric cylinder 2 514, the motor 7 512 is mounted on the support plate 2 513, the connecting rod 516 is fixedly mounted on the output shaft of the motor 7 512, the connecting rod 516 and the support plate 2 513 are rotatably connected, the adsorption platform 2 517 is fixedly mounted on the connecting rod 516, a plurality of suction holes 1 are provided on the adsorption platform 2 517, the adsorption platform 2 517 is externally connected to a suction component 1, the electric cylinder 1 505, the support block 1 506, the motor 6 507, the rotating shaft 2 510, the support block 2 511, and the electric cylinder 2 514 are each provided with two, a through hole is provided on the flipping table 515, and the diameter of the adsorption platform 2 517 is smaller than the diameter of the through hole.

[0031] The second position adjustment unit includes a support frame three 501, a support frame four 502, a gear 503, a motor five 504, and an incomplete gear 509. The support frame four 502 is fixedly mounted on the electric cylinder one 505, the motor five 504 is mounted on the support frame four 502, the gear 503 is fixedly mounted on the mounting shaft, the mounting shaft is rotatably mounted on the support frame four 502, the mounting shaft is fixedly connected to the output shaft of the motor five 504, the incomplete gear 509 is rotatably mounted on the support frame four 502, the incomplete gear 509 is meshed with the gear 503, the support frame three 501 is fixedly mounted on the incomplete gear 509, the slider one 508 is rotatably mounted on the support frame three 501, and the rotating shaft three 523 is rotatably mounted on the support frame four 502.

[0032] The glue coating assembly includes a support plate 5 601, a support frame 5 602, a motor 9 603, a rotating plate 2 604, a slider 2 605, a spray gun 606, and an adsorption platform 3 607. The support frame 5 602 is fixedly mounted on the support base 101, the support plate 5 601 is fixedly mounted on the support frame 5 602, the rotating plate 2 604 is rotatably mounted on the support frame 5 602, the motor 9 603 is mounted on the support frame 5 602, the rotating plate 2 604 is fixedly connected to the output shaft of the motor 9 603, a plurality of straight grooves 1 are provided on the support plate 5 601, the slider 2 605 is slidably mounted in the straight groove 1, and the lower end of the slider 2 605 is fixedly mounted on the support frame 5 A connecting shaft 1 is fixedly installed at the end, a plurality of arc grooves 1 are provided on the rotating plate 2 604, the connecting shaft 1 is slidably connected to the arc groove 1, the spray gun 606 is fixedly installed on the slider 2 605, the adsorption platform 3 607 is rotatably installed on the support plate 5 601, a motor 1 is provided under the adsorption platform 3 607, the motor 1 is fixedly installed on the support plate 5 601, the adsorption platform 3 607 and the output shaft of the motor 1 are fixedly connected, the slider 2 605 and the spray gun 606 are provided with multiple, and are evenly spaced in a circular shape, a plurality of suction holes 2 are provided on the adsorption platform 3 607, and the adsorption platform 3 607 is externally connected to a suction component 2.

[0033] The material taking assembly includes a support frame 2 401, a support plate 1 402, a positioning block 403, an adsorption platform 1 404, a rotating plate 1 405, a rotating shaft 1 406, and a motor 407. The support frame 2 401 is fixedly mounted on the driving assembly, the rotating shaft 1 406 is connected to the driving assembly, the motor 407 is mounted on the driving assembly, the output shaft of the motor 407 is fixedly connected to the rotating shaft 1 406, the support plate 1 402 is fixedly mounted on the support frame 2 401, the rotating plate 1 405 is rotatably mounted on the support plate 1 402, and the rotating plate 1 405 is fixedly connected to the rotating shaft 1 406. A plurality of straight grooves 2 are provided on the support plate 1 402, a T-shaped groove is provided in the straight groove 2, a positioning block 403 is slidably installed in the T-shaped groove, a connecting shaft 2 is provided on the upper end of the positioning block 403, a plurality of arc-shaped grooves 2 are provided on the rotating plate 1 405, the connecting shaft 2 is slidably connected to the arc-shaped groove 2, an adsorption platform 1 404 is fixedly installed on the support plate 1 402, a plurality of suction holes 3 are provided on the adsorption platform 1 404, and an suction component 3 is externally connected to the adsorption platform 1 404, a plurality of positioning blocks 403 are provided, and they are evenly spaced in a circular shape, and each positioning block 403 is provided with an elastic pad.

[0034] The driving assembly includes a moving frame 1 301, a lead screw 1 302, a motor 2 303, a moving frame 2 304, a moving frame 305, a lead screw 2 306, a motor 307, and a guide rod 308. The lead screw 1 302 is rotatably mounted on one side of the support base 101, and the guide rod 308 is fixedly mounted on the other side of the support base 101. The moving frame 1 301 and the moving frame 3 305 are both slidably mounted on the support base 101. The moving frame 1 301 is connected to the lead screw 1 302 by a thread, and the moving frame 305 is slidably connected to the guide rod 308. The lead screw 2 306 is rotatably mounted in the moving frame 3 305. The motor 3 Machine three 307 is installed in mobile frame three 305, screw two 306 is fixedly connected to the output shaft of motor three 307, mobile frame two 304 is slidingly installed on mobile frame one 301, mobile frame two 304 is slidingly connected to mobile frame three 305, mobile frame two 304 is connected to screw two 306 by thread, motor two 303 is installed on support seat 101, screw one 302 is fixedly connected to the output shaft of motor two 303, support frame two 401 is fixedly installed on mobile frame two 304, rotating shaft one 406 is rotatably connected to mobile frame two 304, and motor four 407 is installed on mobile frame two 304.

[0035] The blowing unit includes a support frame 201 and a fan 202. The support frame 201 is fixedly mounted on the bottom surface of the support base 101, and the fan 202 is fixedly mounted on the support frame 201.

[0036] The working principle of the present invention is as follows: the optical lens coated with glue in the present invention is a circular lens; when the driving component is working, the output shaft of motor 2 303 drives screw 1 302 to rotate, screw 1 302 drives movable frame 1 301 to move, movable frame 1 301 drives movable frame 2 304 to move, movable frame 2 304 drives the material picking component to move, thereby changing the horizontal position of the material picking component; the output shaft of motor 307 drives screw 2 306 to rotate, screw 2 306 drives movable frame 2 304 to move, movable frame 2 304 drives the material picking component to move, thereby changing the vertical position of the material picking component.

[0037] When the material picking component is working, the suction component 3 connected to the adsorption table 404 works, so that the suction hole 3 generates suction to suck the lens, and the output shaft of the motor 407 drives the rotating shaft 406 to rotate, and the rotating shaft 406 drives the rotating plate 405 to rotate. When the rotating plate 405 rotates, it drives the positioning block 403 to move through the arc groove 2, and the positioning block 403 drives the elastic pad to move. Through the movement of multiple elastic pads, the center of the lens is moved to the center of the adsorption table 404.

[0038] When the cleaning component is working, the piston rod of the electric cylinder 505 drives the motor 6 507 to move through the support block 1 506, and the motor 6 507 drives the rotating shaft 2 510 to move, and the rotating shaft 2 510 drives the flip table 515 to move through the support block 2 511, and the flip table 515 drives the connecting rod 516 and the adsorption table 2 517 to move, thereby changing the vertical position of the adsorption table 2 517; when the lens taken by the material taking component needs to be placed on the adsorption table 2 517, the output shaft of the motor 6 507 drives the rotating shaft 2 510 to rotate, and the rotating shaft 2 510 drives the flip table 515 to rotate through the support block 2 511 The flip table 515 drives the adsorption table 2 517 to rotate, so that the side of the adsorption table 2 517 with the suction hole 1 faces the material picking component, and the material picking component places the lens on the adsorption table 2 517. The suction component 1 connected to the adsorption table 2 517 works, so that the suction hole 1 generates suction to suck the lens, and then flips it to the side facing the cleaning unit. The piston rod of the electric cylinder 2 514 drives the connecting rod 516 to move through the support plate 2 513, and the connecting rod 516 drives the adsorption table 2 517 to move, so that the adsorption table 2 517 can be moved to a position close to the cleaning unit, making it convenient for the cleaning unit to clean the lens.

[0039] When the lens needs to be cleaned, the output shaft of motor five 504 drives gear 503 to rotate via the mounting shaft, gear 503 drives incomplete gear 509 to rotate, incomplete gear 509 drives support plate three 518 and support plate four 520 to move via slider one 508, thereby driving cleaning wheel 519 to move, so that multiple cleaning wheels 519 are attached to the lens, the output shaft of motor eight 526 drives shaft four 525 to rotate, shaft four 525 drives pulley two 524 to rotate, pulley two 524 drives pulley one 521 to rotate via belt 522 , pulley 1 521 drives the cleaning wheel 519 to rotate, thereby cleaning the lens through multiple cleaning wheels 519; during cleaning, the output shaft of motor 7 512 drives the connecting rod 516 to rotate, and the connecting rod 516 drives the adsorption platform 2 517 to rotate, so that the lens can be thoroughly cleaned around. When the lens is attached to the cleaning wheel 519, the sensor sends a signal, the valve opens, and the cleaning liquid flows out from the cleaning port on the cleaning wheel 519. After cleaning is completed, the cleaning wheel 519 is away from the lens, the valve is closed, and the lens is blown dry by the fan 202.

[0040] The lens after cleaning is taken away by the material taking component, and the driving component drives the lens to the gluing component through the material taking component. When the gluing component is working, the suction component 2 connected to the adsorption platform 3 607 works, so that the suction hole 2 generates suction, thereby sucking the lens. The output shaft of the motor 9 603 drives the rotating plate 2 604 to rotate, and the arc groove 1 drives the slider 2 605 to slide in the straight groove 1 through the connecting shaft 1, so that the spray gun 606 is attached to the lens. The output shaft of the motor 1 drives the adsorption platform 3 607 to rotate, and the adsorption platform 3 607 drives the lens to rotate. When the lens rotates, the lens is coated with glue through the spray gun 606, so that lenses with different diameters can be coated with glue. The rotation of the lens makes the gluing more uniform and efficient.

[0041] It should be noted that the start and stop of the above-mentioned power parts of the present invention are all controlled by the program control component.

Claims

1. A device for applying adhesive for processing optical lenses, comprising a support base (101), wherein the support base (101) is externally connected to a program control component, and a drive component is provided on the support base (101), characterized in that: The support seat (101) is also provided with a cleaning component and a gluing component, the driving component is provided with a material taking component, the cleaning component comprises a first position adjustment unit, a second position adjustment unit, a cleaning unit, and a blowing unit, the first position adjustment unit being mounted on the support seat (101), the second position adjustment unit being mounted on the first position adjustment unit, the cleaning unit being mounted on the second position adjustment unit, the blowing unit being mounted on the bottom surface of the support seat (101), and the blowing unit being arranged directly below the second position adjustment unit; the cleaning units are provided in multiple groups, and the spacing between the multiple groups of cleaning units is adjusted by the second position adjustment unit.

2. The adhesive coating device for optical lens processing according to claim 1, characterized in that: The cleaning unit comprises a slider 1 (508), a support plate 3 (518), a cleaning wheel (519), a support plate 4 (520), a belt (522), a rotating shaft 3 (523), a rotating shaft 4 (525), and a motor 8 (526). The slider 1 (508) is rotatably mounted on the second position adjustment unit. The support plate 3 (518) and the support plate 4 (520) are both slidably mounted on the slider 1 (508). The cleaning wheel (519) is rotatably mounted on the support plate 3 (518). The cleaning wheel (519) and the support plate 4 (520) are rotatably connected. The motor 8 (526) is mounted on the support plate 3 (518). The rotating shaft 4 (525) is rotatably mounted on the support plate 3 (518). The rotating shaft 4 (525) and the support plate 4 (520) are rotatably connected. The cleaning wheel (519) is rotatably connected to the second position adjustment unit, the rotating shaft (520) is rotatably connected to the output shaft of the motor (526), the rotating shaft (525) is fixedly connected to the output shaft of the motor (526), the lower end of the cleaning wheel (519) is fixedly mounted with a pulley (521), the lower end of the rotating shaft (525) is fixedly mounted with a pulley (524), the pulley (521) and the pulley (524) are connected via a belt (522), the rotating shaft (523) is rotatably mounted on the second position adjustment unit, the pulley (524) is rotatably connected to the rotating shaft (523), a plurality of cleaning holes are provided on the cleaning wheel (519), a liquid storage chamber is provided in the cleaning wheel (519), a cleaning liquid is provided in the liquid storage chamber, a valve is provided between the liquid storage chamber and the cleaning hole, and a sensor is provided on the cleaning wheel (519).

3. The adhesive coating device for optical lens processing according to claim 2, characterized in that: The first position adjustment unit includes an electric cylinder 1 (505), a support block 1 (506), a motor 6 (507), a rotating shaft 2 (510), a support block 2 (511), a motor 7 (512), a support plate 2 (513), an electric cylinder 2 (514), a turning table (515), a connecting rod (516), and an adsorption table 2 (517). The electric cylinder 1 (505) is fixedly mounted on the support seat (101), the support block 1 (506) is fixedly mounted on the piston rod of the electric cylinder 1 (505), the motor 6 (507) is fixedly mounted on the support block 1 (506), the rotating shaft 2 (510) is fixedly mounted on the output shaft of the motor 6 (507), the support block 2 (511) is fixedly mounted on the rotating shaft 2 (510), the turning table (515) is fixedly mounted on the support block 2 (511), and the electric cylinder 2 (514) is fixedly mounted. Mounted on the flip table (515), the support plate 2 (513) is fixedly mounted on the piston rod of the electric cylinder 2 (514), the motor 7 (512) is mounted on the support plate 2 (513), the connecting rod (516) is fixedly mounted on the output shaft of the motor 7 (512), the connecting rod (516) and the support plate 2 (513) are rotatably connected, the adsorption platform 2 (517) is fixedly mounted on the connecting rod (516), a plurality of suction holes 1 are provided on the adsorption platform 2 (517), the adsorption platform 2 (517) is externally connected to a suction component 1, the electric cylinder 1 (505), the support block 1 (506), the motor 6 (507), the rotating shaft 2 (510), the support block 2 (511), and the electric cylinder 2 (514) are each provided with two, the flip table (515) is provided with a through hole, and the diameter of the adsorption platform 2 (517) is smaller than the diameter of the through hole.

4. The adhesive coating device for optical lens processing according to claim 3, characterized in that: The second position adjustment unit includes a support frame three (501), a support frame four (502), a gear (503), a motor five (504), and an incomplete gear (509), wherein the support frame four (502) is fixedly mounted on the electric cylinder one (505), the motor five (504) is mounted on the support frame four (502), the gear (503) is fixedly mounted on the mounting shaft, the mounting shaft is rotatably mounted on the support frame four (502), the mounting shaft is fixedly connected to the output shaft of the motor five (504), the incomplete gear (509) is rotatably mounted on the support frame four (502), the incomplete gear (509) is meshed with the gear (503), the support frame three (501) is fixedly mounted on the incomplete gear (509), the slider one (508) is rotatably mounted on the support frame three (501), and the rotating shaft three (523) is rotatably mounted on the support frame four (502).

5. The adhesive coating device for optical lens processing according to claim 4, characterized in that: The glue coating assembly includes a support plate five (601), a support frame five (602), a motor nine (603), a rotating plate two (604), a slider two (605), a spray gun (606), and an adsorption platform three (607). The support frame five (602) is fixedly mounted on the support seat (101), the support plate five (601) is fixedly mounted on the support frame five (602), the rotating plate two (604) is rotatably mounted on the support frame five (602), the motor nine (603) is mounted on the support frame five (602), the rotating plate two (604) is fixedly connected to the output shaft of the motor nine (603), a plurality of straight grooves one are provided on the support plate five (601), the slider two (605) is slidably mounted in the straight groove one, and the slider two A connecting shaft 1 is fixedly installed at the lower end of (605), and a plurality of arc grooves 1 are provided on the rotating plate 2 (604). The connecting shaft 1 is slidably connected to the arc groove 1. The spray gun (606) is fixedly installed on the slider 2 (605). The adsorption platform 3 (607) is rotatably installed on the support plate 5 (601). A motor 1 is provided below the adsorption platform 3 (607), and the motor 1 is fixedly installed on the support plate 5 (601). The adsorption platform 3 (607) and the output shaft of the motor 1 are fixedly connected. The slider 2 (605) and the spray gun (606) are both provided with multiple ones, and are evenly spaced in a circular shape. A plurality of suction holes 2 are provided on the adsorption platform 3 (607), and the adsorption platform 3 (607) is externally connected to a suction component 2.

6. The adhesive coating device for optical lens processing according to claim 5, characterized in that: The material taking component includes a support frame 2 (401), a support plate 1 (402), a positioning block (403), an adsorption platform 1 (404), a rotating plate 1 (405), a rotating shaft 1 (406), and a motor 4 (407). The support frame 2 (401) is fixedly mounted on the driving component, the rotating shaft 1 (406) is connected to the driving component, the motor 4 (407) is mounted on the driving component, the output shaft of the motor 4 (407) is fixedly connected to the rotating shaft 1 (406), the support plate 1 (402) is fixedly mounted on the support frame 2 (401), the rotating plate 1 (405) is rotatably mounted on the support plate 1 (402), the rotating plate 1 (405) is connected to the rotating shaft 1 (406) Fixed connection, the support plate 1 (402) is provided with a plurality of straight grooves 2, the straight grooves 2 are provided with T-shaped grooves, the positioning block (403) is slidably installed in the T-shaped grooves, the upper end of the positioning block (403) is provided with a connecting shaft 2, the rotating plate 1 (405) is provided with a plurality of arc grooves 2, the connecting shaft 2 is slidably connected to the arc groove 2, the adsorption platform 1 (404) is fixedly installed on the support plate 1 (402), the adsorption platform 1 (404) is provided with a plurality of suction holes 3, the adsorption platform 1 (404) is externally connected to a suction component 3, the positioning block (403) is provided in plurality, and is evenly spaced and distributed in a circular shape, and each positioning block (403) is provided with an elastic pad.

7. The adhesive coating device for optical lens processing according to claim 6, characterized in that: The driving assembly includes a moving frame (301), a lead screw (302), a motor (303), a moving frame (304), a moving frame (305), a lead screw (306), a motor (307), and a guide rod (308). The lead screw (302) is rotatably mounted on one side of the support seat (101), and the guide rod (308) is fixedly mounted on the other side of the support seat (101). The moving frame (301) and the moving frame (305) are both slidably mounted on the support seat (101). The moving frame (301) is connected to the lead screw (302) by a thread, and the moving frame (305) is slidably connected to the guide rod (308). The lead screw (306) is rotatably mounted in the moving frame (305). The motor (307) is fixedly mounted on the other side of the support seat (101). The machine three (307) is installed in the moving frame three (305), the screw two (306) is fixedly connected to the output shaft of the motor three (307), the moving frame two (304) is slidably installed on the moving frame one (301), the moving frame two (304) is slidably connected to the moving frame three (305), the moving frame two (304) is connected to the screw two (306) by a thread, the motor two (303) is installed on the support seat (101), the screw one (302) is fixedly connected to the output shaft of the motor two (303), the support frame two (401) is fixedly installed on the moving frame two (304), the rotating shaft one (406) is rotatably connected to the moving frame two (304), and the motor four (407) is installed on the moving frame two (304).

8. The adhesive coating device for optical lens processing according to claim 7, characterized in that: The blowing unit comprises a support frame (201) and a fan (202), wherein the support frame (201) is fixedly mounted on the bottom surface of the support base (101), and the fan (202) is fixedly mounted on the support frame (201).

Citation Information

Patent Citations

  • An adhesive application device for optical lens processing

    CN112718390B