Polishing device for optical lens

By designing dust collection and filtration components, the problem of insufficient dust control in traditional optical lens polishing is solved, achieving efficient dust collection and clean air exhaust, thus improving workplace safety and ease of operation.

CN223455688UActive Publication Date: 2025-10-21NANJING SHUNYUE OPTICAL INSTR CO LTD
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Patent Information

Application Number
CN202422550718.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-10-21
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

Dust control is insufficient during the traditional optical lens polishing process, the ventilation system cannot completely absorb and filter out all dust, and wearing a protective mask for a long time causes discomfort to the operator's respiratory system.

Method used

A polishing device comprising a dust collection component one and a dust collection component two is designed. The dust collection component achieves efficient dust intake, filtration and collection through a cavity duct, a servo motor-driven impeller and a filter component. The dust collection component two ensures uniform dust intake through evenly arranged through holes. The filter component blocks dust through a filter plate, allowing only clean air to be discharged.

Benefits of technology

It improves dust collection efficiency, reduces the concentration of suspended particulate matter in the air, alleviates respiratory hazards for operators, simplifies work processes, and enhances work efficiency and intelligence.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223455688U_ABST
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Abstract

The utility model discloses a polishing device for an optical lens, and belongs to the field of optical lens polishing. A polishing device for optical lenses comprises a foot stool, a first dust collection component is fixed to one side of the foot stool, and a second dust collection component is arranged on the upper side of the foot stool. According to the dust collection system, through effective cooperation of the first dust collection component and the second dust collection component, dust generated in the polishing process is efficiently sucked, filtered and collected, and the polishing efficiency is improved; the concentration of suspended particles in air is reduced, harm of dust to the respiratory system of an operator is relieved, safety of a working place is improved, meanwhile, in the aspect of dust collection efficiency, an impeller in a first dust collection component is driven by a servo motor, generated suction force is uniform and strong, and through cooperation of first through holes and second through holes which are evenly formed, the dust collection efficiency is improved. And it is ensured that dust generated in the polishing process can be sucked in time, efficiently and evenly, and the problem that in the prior art, a ventilation system possibly cannot completely suck and filter all dust in time is solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the field of optical lens polishing, especially to a polishing device for optical lens. BACKGROUND

[0002] In the traditional optical lens polishing process, manual or semi-automatic polishing methods are usually used. The operator uses a polishing wheel to polish the lens surface, which produces a large amount of dust in the process.

[0003] The traditional method mainly reduces the harm of dust to the environment and the human body through the ventilation system and protective masks. However, this method has obvious shortcomings in dust control. On the one hand, the ventilation system may not be able to completely absorb and filter all the dust in time, resulting in some dust still scattered in the air; on the other hand, although the protective mask can protect the operator to a certain extent, it may still cause discomfort to the respiratory system after a long time of wearing. SUMMARY

[0004] The utility model aims at providing a polishing device for optical lens to solve the problems raised in the background art.

[0005] In order to solve the above technical problems, the utility model adopts the following technical scheme:

[0006] A polishing device for optical lens, comprising: a tripod, a power distribution box is fixed on one side of the tripod, a polishing member is fixed on the top of the tripod, a dust collecting member one is fixed on one side of the tripod, and a dust collecting member two is arranged on the upper side of the tripod;

[0007] The dust collecting member one comprises a cavity air pipe, the lower side of the tripod is fixed with the cavity air pipe, one side of the cavity air pipe is fixed with a servo motor, and one side of the cavity air pipe is fixed with a filter member;

[0008] The dust collecting member two comprises a fixed block, the upper side of the cavity air pipe is provided with the fixed block, the inner side of the fixed block is provided with a placing table, a plurality of through holes one are formed in the top of the fixed block, a plurality of groups of through holes two are fixed on the outer wall of the fixed block, and the through holes one, the through holes two and the cavity air pipe are throughly arranged.

[0009] Preferably, the filter member comprises an outer shell, the servo motor is fixed with the outer shell on one side through bolts, the output end direction of the servo motor is fixed with an impeller through a connecting rod, an air inlet is formed in the inner side of the outer shell, at least three groups of filter plates are fixed on the inner wall top of the outer shell, a dust collecting groove is formed in the bottom of the outer shell, and an air outlet is formed on one side of the outer shell.

[0010] The dust collecting member one and the dust collecting member two jointly constitute a dust collecting system of the polishing device. The cavity air pipe is fixed on the lower side of the foot stand, which serves as a main channel of the dust collecting system and is responsible for guiding the dust generated in the polishing process to the filtering member for treatment. The servo motor drives the impeller to rotate in the cavity air pipe to generate suction force, so as to suck the dust into the cavity air pipe. The filtering member includes a shell, an impeller, an air inlet, a filter plate, a dust collecting groove and an air outlet. The air inlet allows the dust to enter the inside of the shell, and the filter plate is responsible for blocking the dust and allowing only air to pass through. After the dust accumulates on the filter plate, it will fall into the dust collecting groove for subsequent cleaning. The air outlet allows the filtered clean air to be discharged.

[0011] Preferably, the fixing block is fixed with the foot stand by bolts.

[0012] Preferably, the dust collecting groove is arranged below the three groups of filter plates.

[0013] Preferably, the through holes one and two are circumferentially arranged and equidistantly arranged.

[0014] The dust collecting member two includes a fixing block, a placement table, a through hole one and a through hole two. The fixing block is fixed on the foot stand by bolts, and the through holes one and two arranged thereon are in communication with the cavity air pipe, allowing the dust generated in the polishing process to be sucked into the cavity air pipe. The circumferentially arranged and equidistantly arranged through holes one and two ensure that the dust can be uniformly and efficiently collected. During the polishing process, the rotating motor drives the polishing wheel to rotate and contact the optical lens placed on the placement table for polishing. At the same time, the servo motor drives the impeller to rotate to generate suction force in the cavity air pipe, and the dust generated in the polishing process is sucked into the cavity air pipe through the through holes one and two. The dust is blocked by the filter plate of the filtering member and falls into the dust collecting groove, while the clean air is discharged from the air outlet. After the polishing is completed, the dust can be collected and treated by cleaning the dust collecting groove. The uniform distribution of the through holes ensures that the dust generated in the polishing process can be effectively collected.

[0015] Preferably, the polishing member includes a connecting plate, the upper side of the foot stand is fixed with the connecting plate, one side of the connecting plate is fixed with a sliding rail, the outer side wall of the sliding rail is fitted with a fixed plate which slides, the top of the connecting plate is fixed with an electric cylinder, the output end direction of the electric cylinder is fixed with a fixed plate through a piston rod, one side of the fixed plate is fixed with a rotating motor, and the output end direction of the rotating motor is fixed with a polishing wheel through a connecting rod.

[0016] Preferably, the placement table is located directly below the polishing wheel.

[0017] The polishing member is the core part of the entire polishing device. It starts with a connecting plate that is firmly fixed to the upper side of the foot stand. One side of the connecting plate is provided with a sliding rail, and the outer side wall of the sliding rail is in close contact with the fixed plate for sliding. This design allows the fixed plate to move smoothly on the sliding rail, thereby achieving flexibility in polishing operations. The electric cylinder is connected to the fixed plate through the piston rod, providing power to the fixed plate to enable precise movement along the sliding rail. The rotary motor is fixed to one side of the fixed plate, and its output end is connected to the polishing wheel through a connecting rod. When the rotary motor starts, it drives the polishing wheel to rotate at high speed, thereby polishing the optical lens placed on the placement table.

[0018] Compared with the prior art, the polishing device for optical lenses has the following advantages:

[0019] 1、The dust collection system of the utility model, through the effective cooperation of dust collection component one and dust collection component two, realizes the efficient suction, filtration and collection of dust generated in the polishing process, reduces the concentration of suspended particulate matter in the air, reduces the harm of dust to the respiratory system of the operator, improves the safety of the workplace, and at the same time, in terms of dust collection efficiency, the impeller in the dust collection component one is driven by a servo motor, and the suction force is uniform and strong. The uniform arrangement of the through hole one and the through hole two ensures that the dust generated in the polishing process can be sucked in timely and efficiently, greatly improves the dust collection efficiency, and solves the problem that the ventilation system in the prior art may not be able to completely absorb and filter all the dust in time.

[0020] 2、The utility model also combines a filtering component in terms of filtering effect, and the filter plate can effectively block dust and only allow clean air to pass through, achieving the clean standard of discharged air, and also showing advantages in operation and maintenance. After the polishing operation is completed, the operator only needs to clean the dust in the dust collection groove, and can quickly perform the next polishing operation, simplifying the work process, reducing the operation difficulty, improving the work efficiency, and realizing integration and automation, improving the intelligent level of the polishing process, and providing convenience for the operator. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 A perspective structural schematic view of a polishing device for optical lenses is provided for the utility model;

[0022] Figure 2 A polishing member structure schematic view of a polishing device for optical lenses is provided for the utility model;

[0023] Figure 3 A dust collection component one structure schematic view of a polishing device for optical lenses is provided for the utility model;

[0024] Figure 4 A kind of cutting structure schematic view for the polishing device of optical lens is proposed for the utility model;

[0025] Figure 5 A kind of cutting structure schematic view for the polishing device of optical lens is proposed for the utility model;

[0026] In the figure: 1, foot support;2, distribution box;3, polishing member;31, connecting plate;32, slide rail;33, fixed plate;34, electric cylinder;35, rotary motor;36, polishing wheel;4, dust collecting member one;41, cavity air pipe;42, servo motor;43, filter member;431, shell;432, impeller;433, air inlet;434, filter plate;435, dust collecting groove;436, air outlet;5, dust collecting member two;51, fixed block;52, placing table;53, through hole one;54, through hole two. DETAILED DESCRIPTION

[0027] The technical scheme in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments.

[0028] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation on the present application. Embodiment one

[0029] Reference Figure 1 , Figure 3 , Figure 4 , Figure 5 A kind of polishing device for optical lens, including: foot support 1, one side of foot support 1 is fixed with distribution box 2, the top of foot support 1 is fixed with polishing member 3, one side of foot support 1 is fixed with dust collecting member one 4, the upper side of foot support 1 is provided with dust collecting member two 5;

[0030] Dust collecting member one 4 includes cavity air pipe 41, the lower side of foot support 1 is fixed with cavity air pipe 41, one side of cavity air pipe 41 is fixed with servo motor 42, one side of cavity air pipe 41 is fixed with filter member 43;

[0031] The dust collecting member two 5 comprises a fixing block 51, the upper side of the cavity air pipe 41 is provided with the fixing block 51, the inner side of the fixing block 51 is provided with a placing table 52, the top of the fixing block 51 is provided with a plurality of through holes one 53, the outer side wall of the fixing block 51 is fixed with a plurality of groups of through holes two 54, and the through holes one 53 and the through holes two 54 are throughly arranged with the cavity air pipe 41.

[0032] The dust collecting member one 4 and the dust collecting member two 5 jointly constitute the dust collecting system of the polishing device. The cavity air pipe 41 is fixed at the lower side of the foot support 1, which serves as the main channel of the dust collecting system and is responsible for guiding the dust generated in the polishing process to the filtering member 43 for treatment. The servo motor 42 drives the impeller 432 to rotate in the cavity air pipe 41, generating suction force to suck the dust into the cavity air pipe 41. The filtering member 43 comprises an outer shell 431, an impeller 432, an air inlet 433, a filter plate 434, a dust collecting groove 435 and an air outlet 436. The air inlet 433 allows the dust to enter the inside of the outer shell 431, and the filter plate 434 is responsible for blocking the dust and allowing only air to pass through. After the dust accumulates on the filter plate 434, it will fall into the dust collecting groove 435 for subsequent cleaning. The air outlet 436 allows the filtered clean air to be discharged.

[0033] The filtering member 43 comprises an outer shell 431, one side of the servo motor 42 is fixed with the outer shell 431 through bolts, the output end direction of the servo motor 42 is fixed with the impeller 432 through a connecting rod, the inner side of the outer shell 431 is provided with the air inlet 433, the inner side wall top of the outer shell 431 is fixed with at least three groups of filter plates 434, the bottom of the outer shell 431 is provided with the dust collecting groove 435, and one side of the outer shell 431 is provided with the air outlet 436.

[0034] The fixing block 51 is fixed with the foot support 1 through bolts.

[0035] The dust collecting groove 435 is arranged directly below the three groups of filter plates 434.

[0036] The through holes one 53 and the through holes two 54 are both circumferentially arranged and equidistantly arranged.

[0037] The dust collecting member 5 includes a fixed block 51, a placement table 52, a through hole 1 53 and a through hole 2 54. The fixed block 51 is fixed on the foot stand 1 by bolts, and the through hole 1 53 and the through hole 2 54 opened on it are through the cavity air duct 41, allowing the dust generated during polishing to be sucked into the cavity air duct 41. The circumferentially arrayed equidistant through hole 1 53 and the through hole 2 54 ensure that the dust can be collected uniformly and efficiently. During polishing, the rotating motor 35 drives the polishing wheel 36 to rotate and contact the optical lens placed on the placement table 52 for polishing. At the same time, the servo motor 42 drives the impeller 432 to rotate to generate suction in the cavity air duct 41, and the dust generated during polishing is sucked into the cavity air duct 41 through the through hole 1 53 and the through hole 2 54. The dust is blocked when passing through the filter plate 434 of the filter member 43 and falls into the dust collecting groove 435, while the clean air is discharged from the air outlet 436. After polishing is completed, the dust can be collected and treated by cleaning the dust collecting groove 435. These through holes are uniformly distributed to ensure that the dust generated during polishing can be effectively collected. Embodiment two

[0038] Based on the above embodiment 1, reference is made to Figure 1 、 Figure 2 、 Figure 5 , the polishing member 3 includes a connecting plate 31, the upper side of the foot stand 1 is fixed with the connecting plate 31, one side of the connecting plate 31 is fixed with a sliding rail 32, the outer side wall of the sliding rail 32 is slidably fitted with a fixed plate 33, the top of the connecting plate 31 is fixed with an electric cylinder 34, the output end direction of the electric cylinder 34 is fixed with the fixed plate 33 through a piston rod, one side of the fixed plate 33 is fixed with a rotating motor 35, and the output end of the rotating motor 35 is fixed with a polishing wheel 36 through a connecting rod.

[0039] The placement table 52 is located directly below the polishing wheel 36.

[0040] The polishing member 3 is the core part of the entire polishing device. It starts with a connecting plate 31 which is firmly fixed on the upper side of the foot stand 1. One side of the connecting plate 31 is provided with a sliding rail 32, and the outer side wall of the sliding rail 32 is slidably fitted with a fixed plate 33. This design allows the fixed plate 33 to move smoothly on the sliding rail 32, thereby realizing the flexibility of the polishing operation. The electric cylinder 34 is connected to the fixed plate 33 through a piston rod, which provides power for the fixed plate 33 to move accurately along the sliding rail 32. The rotating motor 35 is fixed on one side of the fixed plate 33, and its output end is connected to the polishing wheel 36 through a connecting rod. When the rotating motor 35 starts, it will drive the polishing wheel 36 to rotate at high speed, thereby polishing the optical lens placed on the placement table 52.

[0041] Working principle: please refer to Figures 1-5As shown, first, the polishing member 3 and the dust collection member one 4 are electrically connected with the distribution box 2. After the connection, the optical lens to be polished is placed on the placement table 52, ensuring that it is directly below the polishing wheel 36. The electric cylinder 34 and the rotating motor 35 are started to make the polishing wheel 36 polish the lens. At the same time, the servo motor 42 is started to drive the impeller 432 to rotate, generating suction to suck the dust generated during polishing into the cavity air pipe 41 and filter and collect it through the filter member 43. After polishing is completed, all motors and power are turned off, and the dust in the dust collection groove 435 is cleaned, and the next polishing operation is prepared.

[0042] The polishing member 3 is the core part of the entire polishing device. It starts with a connecting plate 31 that is firmly fixed to the upper side of the foot stand 1. One side of the connecting plate 31 is provided with a sliding rail 32, and the outer side wall of the sliding rail 32 is in sliding fit with the fixed plate 33. This design allows the fixed plate 33 to move smoothly on the sliding rail 32, thereby realizing the flexibility of the polishing operation. The electric cylinder 34 is connected to the fixed plate 33 through the piston rod, providing power for the fixed plate 33 to enable it to move accurately along the sliding rail 32. The rotating motor 35 is fixed to one side of the fixed plate 33, and its output end is connected to the polishing wheel 36 through a connecting rod. When the rotating motor 35 is started, it will drive the polishing wheel 36 to rotate at high speed, thereby polishing the optical lens placed on the placement table 52.

[0043] The dust collection member one 4 and the dust collection member two 5 together constitute the dust collection system of the polishing device. The cavity air pipe 41 is fixed to the lower side of the foot stand 1, which serves as the main channel of the dust collection system, responsible for guiding the dust generated during polishing to the filter member 43 for treatment, and the servo motor 42 drives the impeller 432 to rotate in the cavity air pipe 41, generating suction to suck the dust into the cavity air pipe 41. The filter member 43 includes a housing 431, an impeller 432, an air inlet 433, a filter plate 434, a dust collection groove 435, and an air outlet 436. The air inlet 433 allows dust to enter the inside of the housing 431, while the filter plate 434 is responsible for blocking dust and only allowing air to pass through. After the dust accumulates on the filter plate 434, it will fall into the dust collection groove 435 for subsequent cleaning. The air outlet 436 allows clean air filtered to be discharged.

[0044] Dust collection component 2 5 includes a fixed block 51, a placement platform 52, through-hole 1 53, and through-hole 2 54. The fixed block 51 is bolted to the stand 1. Through-holes 1 53 and 2 54 formed therein connect to the cavity air duct 41, allowing dust generated during the polishing process to be drawn into the cavity air duct 41. The equidistant arrangement of through-holes 1 53 and 2 54 in a circular array ensures uniform and efficient dust collection. During the polishing process, the rotary motor 35 rotates the polishing wheel 36, which contacts the optical lens placed on the placement platform 52 to perform the polishing. Simultaneously, the servo motor 42 rotates the impeller 432, generating suction within the cavity air duct 41. Dust generated during the polishing process is drawn into the cavity air duct 41 through through-holes 1 53 and 2 54. Dust is trapped when it passes through the filter plate 434 of the filter component 43 and falls into the dust collection trough 435, while clean air is discharged through the air outlet 436. After polishing is completed, dust can be collected and processed by cleaning the dust collecting trough 435. These through holes are evenly distributed to ensure that the dust generated during the polishing process can be effectively collected.

Claims

1. A polishing apparatus for an optical lens, comprising: The utility model provides a foot stool (1), one side of the foot stool (1) is fixed with distribution box (2), the top of foot stool (1) is fixed with polishing member (3), characterized by, one side of the foot stool (1) is fixed with dust collecting member one (4), the upper side of foot stool (1) is provided with dust collecting member two (5), The dust collecting member one (4) includes cavity air pipe (41), the lower side of foot stool (1) is fixed with cavity air pipe (41), one side of cavity air pipe (41) is fixed with servo motor (42), one side of cavity air pipe (41) is fixed with filter member (43), The dust collecting member two (5) includes fixed block (51), the upper side of cavity air pipe (41) is provided with fixed block (51), the inner side of fixed block (51) is provided with placement platform (52), the top of fixed block (51) is provided with a plurality of through -hole no.

2. A polishing apparatus for optical lenses according to claim 1, characterized in that, The filter member (43) includes shell (431), one side of servo motor (42) is fixed with shell (431) through bolt, the output end direction of servo motor (42) is fixed with impeller (432) through connecting rod, the inner side of shell (431) is provided with air inlet (433), the inner side wall top of shell (431) is fixed with at least three sets of filter plate (434), the bottom of shell (431) is provided with dust collecting groove (435), one side of shell (431) is provided with air outlet (436).

3. A polishing apparatus for optical lenses according to claim 1, characterized in that, The fixed block (51) is fixed with foot stool (1) through bolt.

4. A polishing apparatus for optical lenses according to claim 2, characterized in that, The dust collecting groove (435) is arranged below the three sets of filter plate (434).

5. A polishing apparatus for optical lenses according to claim 1, characterized in that, The through -hole no.

6. A polishing apparatus for optical lenses according to claim 1, characterized in that, The polishing member (3) includes connecting plate (31), the upper side of foot stool (1) is fixed with connecting plate (31), one side of connecting plate (31) is fixed with sliding rail (32), the outer side wall of sliding rail (32) is fixed with fixed plate (33), the top of connecting plate (31) is fixed with electric cylinder (34), the output end direction of electric cylinder (34) is fixed with fixed plate (33) through piston rod, one side of fixed plate (33) is fixed with rotary motor (35), the output end direction of rotary motor (35) is fixed with polishing wheel (36) through connecting rod.

7. A polishing apparatus for optical lenses according to claim 1 or 6, characterized in that, The placement platform (52) is located below the polishing wheel (36).