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CN109333170A - A kind of profusely diameter coating process of optical mirror slip - Google Patents

A kind of profusely diameter coating process of optical mirror slip Download PDF

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Publication number
CN109333170A
CN109333170A CN201811366180.XA CN201811366180A CN109333170A CN 109333170 A CN109333170 A CN 109333170A CN 201811366180 A CN201811366180 A CN 201811366180A CN 109333170 A CN109333170 A CN 109333170A
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CN
China
Prior art keywords
eyeglass
optical mirror
mirror slip
degrees celsius
wear
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201811366180.XA
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Chinese (zh)
Inventor
张龙
聂新旺
邢广东
古文斌
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xiangyang Xiongshi Photoelectric Technology Co Ltd
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Xiangyang Xiongshi Photoelectric Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Xiangyang Xiongshi Photoelectric Technology Co Ltd filed Critical Xiangyang Xiongshi Photoelectric Technology Co Ltd
Priority to CN201811366180.XA priority Critical patent/CN109333170A/en
Publication of CN109333170A publication Critical patent/CN109333170A/en
Pending legal-status Critical Current

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B1/00Processes of grinding or polishing; Use of auxiliary equipment in connection with such processes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B24GRINDING; POLISHING
    • B24BMACHINES, DEVICES, OR PROCESSES FOR GRINDING OR POLISHING; DRESSING OR CONDITIONING OF ABRADING SURFACES; FEEDING OF GRINDING, POLISHING, OR LAPPING AGENTS
    • B24B13/00Machines or devices designed for grinding or polishing optical surfaces on lenses or surfaces of similar shape on other work; Accessories therefor

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Surface Treatment Of Optical Elements (AREA)

Abstract

The invention discloses a kind of profusely diameter coating process of optical mirror slip, include the following steps: optical lens surface uniformly smearing binder, and antireflective coating is fitted in lens surface, then it places it in baking oven, and 30-45min is toasted in 200-230 degrees Celsius of gnotobasis, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, then organic inks are uniformly smeared on the outside of antireflective coating again, and it is dried under conditions of 60-75 degrees Celsius, Secondary Organic ink smear is carried out rapidly, and wear-resistant film is placed in 60-75 degrees Celsius of hardening liquid and is impregnated, by treated, wear-resistant film is fitted in lens surface at the first time, and it places it in baking oven, and it polymerize 80-95min under conditions of 90-120 degrees Celsius, then Carry out edging processing.The present invention can be improved user satisfaction and the service life of the eyeglass.

Description

A kind of profusely diameter coating process of optical mirror slip
Technical field
The present invention relates to glasses lens plated technical field more particularly to a kind of profusely diameter coating process of optical mirror slip.
Background technique
In optical system, in order to reach the optical requirement of whole system, in systems for every kind of optical mirror slip The role undertaken is with regard to different, in order to improve the functions such as the high permeability of system, dichroism, image rotation, each member in optical system Part need to reach these functions by plated film.It needs to realize certain elements profusely diameter plated film could allow system to reach in special circumstances To gross area photo-quality imaging.
Profusely popular say of diameter plated film is exactly that plated film clamping process is required not have any rib, and most of optical mirror slips are all wanted Rib is sought, as long as not influencing clear aperture, such installation way is also that people are easiest to solve.But there are also one A little high request optical system optical mirror slips are needed without rib, are not needed plated film shade, it is desirable that coated surface completely plates.With existing Higher and higher in the requirement to coating process, traditional technological means is no longer satisfied present requirement.For this purpose, it is proposed that A kind of profusely diameter coating process of optical mirror slip.
Summary of the invention
The invention proposes a kind of profusely diameter coating process of optical mirror slip, to solve mentioned above in the background art ask Topic.
The invention proposes a kind of profusely diameter coating process of optical mirror slip, include the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, so that it is uneven to remove lens surface Bubble and impurity, the optical mirror slip after milling is then subjected to fine grinding processing, its destruction layer can be eliminated, to fix R Value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and in 50-60 degrees Celsius of environment into Row ultrasonic cleaning 3-6min, and guarantee that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and on its surface Uniformly sprinkling polishing fluid, is then processed by shot blasting its surface, after the completion, cleans out, spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and binder need to cover completely lens surface Then lid chooses antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in eyeglass table Then face places it in baking oven, and toast 30-45min in 200-230 degrees Celsius of gnotobasis, so as to incite somebody to action Antireflective coating incorporates lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, so It uniformly smears organic inks on the outside of antireflective coating again afterwards, and is dried under conditions of 60-75 degrees Celsius, carried out rapidly secondary Organic inks are smeared, then dry in sterile natural environment;
S5: choosing wear-resistant film again, and wear-resistant film be placed in 60-75 degrees Celsius of hardening liquid and is impregnated, and needs Guarantee that hardening liquid covers wear-resistant film, and soaking time is 20-35min, after the completion, will treated wear-resistant film the first when Between be fitted in the lens surface handled in S4, and place it in baking oven, and polymerize 80- under conditions of 90-120 degrees Celsius 95min;
The eyeglass handled in S5: and then being placed in edge polisher by S6, and according to reality to the size needs of optical mirror slip, into The processing of row edging, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, that is, completes optical mirror slip profusely Diameter plated film.
Preferably, when carrying out optical mirror slip in S1, it need to guarantee that the glass appearance after wiping requires surface free from dust And trace.
Preferably, the polishing fluid in S2 is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, And cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water weight ratio be 4:1:2:1:2.
Preferably, in S6, specific step is as follows for inspection: eyeglass being placed in and is contained in container gritty, certain Under control, eyeglass is rubbed back and forth wherein, after with haze meter testing lens friction front and back light diffusing reflection amount, and with Standard eyeglass is made comparisons, so as to effectively judge the wear resistance and antireflective ability upon wear of eyeglass.
Preferably, in S3 and S5, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus to guarantee The efficiency and quality of drying.
A kind of profusely diameter coating process of optical mirror slip proposed by the present invention, beneficial effect are: the optical mirror slip is expired By being plated with antireflective coating on its surface, the reflected light so as to generate in lens surface interferes with each other bore coating process, To counteract reflected light, achievees the effect that antireflective, the use quality of eyeglass can be effectively improved, it is also wear-resistant by being arranged Film improves its service life so as to avoid eyeglass and antireflective coating from being damaged, and product is coated with using this method, without de- Film outward appearance is good, can reach completely plating requirement needed for client.
Specific embodiment
It is next combined with specific embodiments below that the present invention will be further described.
Embodiment 1
The invention proposes a kind of profusely diameter coating process of optical mirror slip, include the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, so that it is uneven to remove lens surface Bubble and impurity, the optical mirror slip after milling is then subjected to fine grinding processing, its destruction layer can be eliminated, to fix R Value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and is carried out in 50 degrees Celsius of environment It is cleaned by ultrasonic 3min, and guarantees that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and uniform on its surface Polishing fluid is sprayed, then its surface is processed by shot blasting, after the completion, is cleaned out, it is spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and binder need to cover completely lens surface Then lid chooses antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in eyeglass table Then face places it in baking oven, and toast 30min in 200 degrees Celsius of gnotobasis, so as to by antireflective coating Incorporate lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, so It uniformly smears organic inks on the outside of antireflective coating again afterwards, and is dried under conditions of 60-75 degrees Celsius, carried out rapidly secondary Organic inks are smeared, then dry in sterile natural environment;
S5: wear-resistant film is chosen again, and wear-resistant film is placed in 60 degrees Celsius of hardening liquid and is impregnated, needs to guarantee Hardening liquid covers wear-resistant film, and soaking time is 20min, and after the completion, by treated, wear-resistant film is bonded at the first time The lens surface handled in S4, and place it in baking oven, and polymerize 80min under conditions of 90 degrees Celsius;
The eyeglass handled in S5: and then being placed in edge polisher by S6, and according to reality to the size needs of optical mirror slip, into The processing of row edging, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, that is, completes optical mirror slip profusely Diameter plated film.
When carrying out optical mirror slip in S1, it need to guarantee that the glass appearance after wiping requires surface free from dust and trace.
Polishing fluid in S2 is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, and aoxidizes Cerium, aluminium oxide, zirconium oxide, chromium oxide and ionized water weight ratio be 4:1:2:1:2.
In S6, specific step is as follows for inspection: eyeglass is placed in and is contained in container gritty, under certain control, Eyeglass is rubbed back and forth wherein, after with haze meter testing lens friction front and back light diffusing reflection amount, and with standard mirror Piece is made comparisons, so as to effectively judge the wear resistance and antireflective ability upon wear of eyeglass.
In S3 and S5, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus the effect to guarantee drying Rate and quality.
Embodiment 2
The invention proposes a kind of profusely diameter coating process of optical mirror slip, include the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, so that it is uneven to remove lens surface Bubble and impurity, the optical mirror slip after milling is then subjected to fine grinding processing, its destruction layer can be eliminated, to fix R Value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and is carried out in 53 degrees Celsius of environment It is cleaned by ultrasonic 4min, and guarantees that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and uniform on its surface Polishing fluid is sprayed, then its surface is processed by shot blasting, after the completion, is cleaned out, it is spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and binder need to cover completely lens surface Then lid chooses antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in eyeglass table Then face places it in baking oven, and toast 35min in 210 degrees Celsius of gnotobasis, so as to by antireflective coating Incorporate lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, so It uniformly smears organic inks on the outside of antireflective coating again afterwards, and is dried under conditions of 65 degrees Celsius, carry out secondary having rapidly Machine ink smear, it is then dry in sterile natural environment;
S5: wear-resistant film is chosen again, and wear-resistant film is placed in 65 degrees Celsius of hardening liquid and is impregnated, needs to guarantee Hardening liquid covers wear-resistant film, and soaking time is 25min, and after the completion, by treated, wear-resistant film is bonded at the first time The lens surface handled in S4, and place it in baking oven, and polymerize 85min under conditions of 100 degrees Celsius;
The eyeglass handled in S5: and then being placed in edge polisher by S6, and according to reality to the size needs of optical mirror slip, into The processing of row edging, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, that is, completes optical mirror slip profusely Diameter plated film.
When carrying out optical mirror slip in S1, it need to guarantee that the glass appearance after wiping requires surface free from dust and trace.
Polishing fluid in S2 is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, and aoxidizes Cerium, aluminium oxide, zirconium oxide, chromium oxide and ionized water weight ratio be 4:1:2:1:2.
In S6, specific step is as follows for inspection: eyeglass is placed in and is contained in container gritty, under certain control, Eyeglass is rubbed back and forth wherein, after with haze meter testing lens friction front and back light diffusing reflection amount, and with standard mirror Piece is made comparisons, so as to effectively judge the wear resistance and antireflective ability upon wear of eyeglass.
In S3 and S5, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus the effect to guarantee drying Rate and quality.
Embodiment 3
The invention proposes a kind of profusely diameter coating process of optical mirror slip, include the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, so that it is uneven to remove lens surface Bubble and impurity, the optical mirror slip after milling is then subjected to fine grinding processing, its destruction layer can be eliminated, to fix R Value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and is carried out in 56 degrees Celsius of environment It is cleaned by ultrasonic 5min, and guarantees that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and uniform on its surface Polishing fluid is sprayed, then its surface is processed by shot blasting, after the completion, is cleaned out, it is spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and binder need to cover completely lens surface Then lid chooses antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in eyeglass table Then face places it in baking oven, and toast 40min in 220 degrees Celsius of gnotobasis, so as to by antireflective coating Incorporate lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, so It uniformly smears organic inks on the outside of antireflective coating again afterwards, and is dried under conditions of 70 degrees Celsius, carry out secondary having rapidly Machine ink smear, it is then dry in sterile natural environment;
S5: wear-resistant film is chosen again, and wear-resistant film is placed in 70 degrees Celsius of hardening liquid and is impregnated, needs to guarantee Hardening liquid covers wear-resistant film, and soaking time is 30min, and after the completion, by treated, wear-resistant film is bonded at the first time The lens surface handled in S4, and place it in baking oven, and polymerize 90min under conditions of 110 degrees Celsius;
The eyeglass handled in S5: and then being placed in edge polisher by S6, and according to reality to the size needs of optical mirror slip, into The processing of row edging, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, that is, completes optical mirror slip profusely Diameter plated film.
When carrying out optical mirror slip in S1, it need to guarantee that the glass appearance after wiping requires surface free from dust and trace.
Polishing fluid in S2 is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, and aoxidizes Cerium, aluminium oxide, zirconium oxide, chromium oxide and ionized water weight ratio be 4:1:2:1:2.
In S6, specific step is as follows for inspection: eyeglass is placed in and is contained in container gritty, under certain control, Eyeglass is rubbed back and forth wherein, after with haze meter testing lens friction front and back light diffusing reflection amount, and with standard mirror Piece is made comparisons, so as to effectively judge the wear resistance and antireflective ability upon wear of eyeglass.
In S3 and S5, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus the effect to guarantee drying Rate and quality.
Embodiment 4
The invention proposes a kind of profusely diameter coating process of optical mirror slip, include the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, so that it is uneven to remove lens surface Bubble and impurity, the optical mirror slip after milling is then subjected to fine grinding processing, its destruction layer can be eliminated, to fix R Value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and is carried out in 60 degrees Celsius of environment It is cleaned by ultrasonic 6min, and guarantees that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and uniform on its surface Polishing fluid is sprayed, then its surface is processed by shot blasting, after the completion, is cleaned out, it is spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and binder need to cover completely lens surface Then lid chooses antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in eyeglass table Then face places it in baking oven, and toast 45min in 230 degrees Celsius of gnotobasis, so as to by antireflective coating Incorporate lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, so It uniformly smears organic inks on the outside of antireflective coating again afterwards, and is dried under conditions of 75 degrees Celsius, carry out secondary having rapidly Machine ink smear, it is then dry in sterile natural environment;
S5: wear-resistant film is chosen again, and wear-resistant film is placed in 75 degrees Celsius of hardening liquid and is impregnated, needs to guarantee Hardening liquid covers wear-resistant film, and soaking time is 35min, and after the completion, by treated, wear-resistant film is bonded at the first time The lens surface handled in S4, and place it in baking oven, and polymerize 95min under conditions of 120 degrees Celsius;
The eyeglass handled in S5: and then being placed in edge polisher by S6, and according to reality to the size needs of optical mirror slip, into The processing of row edging, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, that is, completes optical mirror slip profusely Diameter plated film.
When carrying out optical mirror slip in S1, it need to guarantee that the glass appearance after wiping requires surface free from dust and trace.
Polishing fluid in S2 is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, and aoxidizes Cerium, aluminium oxide, zirconium oxide, chromium oxide and ionized water weight ratio be 4:1:2:1:2.
In S6, specific step is as follows for inspection: eyeglass is placed in and is contained in container gritty, under certain control, Eyeglass is rubbed back and forth wherein, after with haze meter testing lens friction front and back light diffusing reflection amount, and with standard mirror Piece is made comparisons, so as to effectively judge the wear resistance and antireflective ability upon wear of eyeglass.
In S3 and S5, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus the effect to guarantee drying Rate and quality.
The foregoing is only a preferred embodiment of the present invention, but scope of protection of the present invention is not limited thereto, Anyone skilled in the art in the technical scope disclosed by the present invention, according to the technique and scheme of the present invention and its Inventive concept is subject to equivalent substitution or change, should be covered by the protection scope of the present invention.

Claims (5)

1. a kind of profusely diameter coating process of optical mirror slip, which comprises the following steps:
S1: optical mirror slip to be treated is chosen, and milling is carried out to its surface, to remove the rough gas of lens surface Bubble and impurity, then carry out fine grinding processing for the optical mirror slip after milling, can eliminate its destruction layer, to fix R value;
S2: by treated in S1, optical mirror slip is placed in ultrasonic cleaner, and is surpassed in 50-60 degrees Celsius of environment Sound cleans 3-6min, and guarantees that ultrasonic intensity in 1.2-2W/cm2, after the completion, is drawn off drying, and uniform on its surface Polishing fluid is sprayed, then its surface is processed by shot blasting, after the completion, is cleaned out, it is spare;
S3: optical lens surface obtained in S2 is uniformly smeared into binder, and lens surface need to be completely covered for binder, so After choose antireflective coating, and the cross-sectional area of antireflective coating need to be greater than eyeglass, and antireflective coating is fitted in lens surface, then It places it in baking oven, and toasts 30-45min in 200-230 degrees Celsius of gnotobasis, so as to by antireflective coating Incorporate lens surface;
S4: after the completion of S3 processing, the eyeglass for incorporating antireflective coating is placed in natural cooling in sterile normal temperature environment, then again It is secondary that organic inks are uniformly smeared on the outside of antireflective coating, and dried under conditions of 60-75 degrees Celsius, Secondary Organic is carried out rapidly Ink smear, it is then dry in sterile natural environment;
S5: wear-resistant film is chosen again, and wear-resistant film is placed in 60-75 degrees Celsius of hardening liquid and is impregnated, needs to guarantee Hardening liquid covers wear-resistant film, and soaking time is 20-35min, and after the completion, by treated, wear-resistant film pastes at the first time The lens surface handled in S4 is closed, and is placed it in baking oven, and polymerize 80-95min under conditions of 90-120 degrees Celsius;
S6: and then the eyeglass handled in S5 is placed in edge polisher, and the size needs of optical mirror slip are ground according to reality Side processing, so as to which eyeglass outer diameter is ground to specified outer diameter, then tests, i.e. the profusely diameter plating of completion optical mirror slip Film.
2. a kind of profusely diameter coating process of optical mirror slip according to claim 1, it is characterised in that: carry out light in S1 When learning eyeglass, it need to guarantee that the glass appearance after wiping requires surface free from dust and trace.
3. a kind of profusely diameter coating process of optical mirror slip according to claim 1, it is characterised in that: the polishing in S2 Liquid is the mixed liquor of cerium oxide, aluminium oxide, zirconium oxide, chromium oxide and ionized water, and cerium oxide, aluminium oxide, zirconium oxide, oxidation The weight ratio of chromium and ionized water is 4:1:2:1:2.
4. a kind of profusely diameter coating process of optical mirror slip according to claim 1, it is characterised in that: in S6, examine Specific step is as follows: eyeglass being placed in and is contained in container gritty, under certain control, eyeglass is ground back and forth wherein Wipe, after with the light diffusing reflection amount of haze meter testing lens friction front and back, and make comparisons with standard eyeglass, so as to have Effect judges the wear resistance and antireflective ability upon wear of eyeglass.
5. a kind of profusely diameter coating process of optical mirror slip according to claim 1, it is characterised in that: in S3 and S5 In, the heating rate in baking oven need to be controlled in 5-8 degrees Celsius/s, thus efficiency and quality to guarantee drying.
CN201811366180.XA 2018-11-16 2018-11-16 A kind of profusely diameter coating process of optical mirror slip Pending CN109333170A (en)

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Publication number Priority date Publication date Assignee Title
CN110515141A (en) * 2019-08-19 2019-11-29 扬州霞光光学仪器有限公司 The coating process of silicon carbide optical frames
CN113427354A (en) * 2021-05-19 2021-09-24 董江磊 Processing equipment and processing technology of optical lens
CN115637405A (en) * 2022-10-31 2023-01-24 武汉联欧光学科技有限公司 A full aperture coating process for optical lenses

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CN105437020A (en) * 2015-12-23 2016-03-30 福建福光股份有限公司 Processing technique of spherical mirror provided with platform surface
CN207345196U (en) * 2017-10-31 2018-05-11 深圳市吉美光学有限公司 A kind of optical mirror slip protective film

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110515141A (en) * 2019-08-19 2019-11-29 扬州霞光光学仪器有限公司 The coating process of silicon carbide optical frames
CN113427354A (en) * 2021-05-19 2021-09-24 董江磊 Processing equipment and processing technology of optical lens
CN115637405A (en) * 2022-10-31 2023-01-24 武汉联欧光学科技有限公司 A full aperture coating process for optical lenses

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