Exquisite multifunctional composite lens patch technology, control system, composite lens, glasses
By using a control center and database connection system in the composite lens patch technology, and using a microprocessor to control the press-fit plate for accurate patching of seven-layer lenses, the problems of limited functions and insufficient wear resistance in the prior art are solved, and a high refractive index, impact resistance and high-quality composite lenses are achieved.
Patent Information
- Application Number
- CN202110426409.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-04-20
- Publication Date
- 2025-05-02
- Estimated Expiration
- 2041-04-20
AI Technical Summary
The existing composite lens patch technology lacks specific preparation process methods and processes. The resin lens has limited functions and weak wear resistance. The composite lens has few layers and relatively weak functionalities.
The system connected to the control center and the database is adopted to control the upper and lower pressing plates through the microprocessor to accurately press the plate to realize the patch of seven-layer lenses, including PC negative, potion functional layer, glue layer, potion functional layer, TAC, PVA, and TAC outer reinforcement surface.
It realizes composite lenses with high refractive index and high hardness, with the advantages of impact resistance and high quality, and meets multifunctional needs.
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Figure CN112959797B_ABST
Abstract
Description
Technical Field
[0001] The invention belongs to the technical field of composite lens patches, and in particular relates to a sophisticated multifunctional composite lens patch process, a control system, a composite lens, and glasses. Background Art
[0002] At present, a kind of eyeglass lens has been disclosed in the existing patents, wherein the eyeglass lens is a layered structure, the middle layer of the layered structure is made of glass material, and the upper surface and the lower surface of the middle layer are respectively provided with an upper surface layer and a lower surface layer. The upper surface layer and the lower surface layer are made of resin material. The thickness of the upper surface layer and the lower surface layer is the same. The thickness of the upper surface layer and the lower surface layer is less than the thickness of the middle layer. However, the patent does not disclose the material and the composite method of the composite eyeglass lens. Resin lenses made of various hydrocarbons and carbon ester polymers as raw materials have become one of the important categories in the eyeglass market in recent years. Resin lenses have significant characteristics such as good plasticity and high corrosion resistance, can be easily machined, and have a high reuse rate. However, the refractive index of the resin lens is often not very high due to the influence of the degree of polymerization and the crystallinity of the monomer, and the wear resistance of the polycarbonate resin lens is relatively weak, and it is easy to form scratches, which affects the transmittance of light and has poor use effect. The composite lens patch lens in the current eyeglass market has few layers, few functions, and no specific process flow method, and does not achieve the advantages described in the present invention.
[0003] Through the above analysis, the problems and defects of the prior art are as follows:
[0004] (1) The current composite lens patch technology does not have a specific preparation process method and technology.
[0005] (2) The resin lenses currently made from various hydrocarbon and carbon ester polymers have few functions and relatively weak wear resistance.
[0006] (3) The composite lens in the currently disclosed technology has fewer layers and its functionality is relatively weak. Summary of the invention
[0007] In view of the problems existing in the prior art, the present invention provides a sophisticated multifunctional composite lens patch process, a control system, a composite lens, and glasses.
[0008] A fine multifunctional composite lens patch process, the fine multifunctional composite lens patch process comprising: a control center controls a microprocessor to control a lower pressing plate to fix a position, and controls an upper pressing plate to move and press;
[0009] When the upper pressing plate is pressing and reaches a preset force or a certain value of the lower pressing, the indicator lights up to serve as a prompt;
[0010] When the lenses and lens layers in the lens and lens layer temporary storage are empty or full, an alarm sounds to remind the user to take out the pressed lenses or put the lens layers into the lens and lens layer temporary storage.
[0011] Furthermore, the control center is connected to a database to perform real-time data interaction. Before this, specific parameters of various lenses and various lens layers need to be input into the database;
[0012] The specific parameters include: the name, type, wear resistance, ductility and compressibility of the lens and lens layer, the compressibility and extensibility at room temperature and high temperature, and the melting point of each layer; when a certain type of lens needs to be prepared, the required lens name is input into the control center, and the control center controls each module to control and operate, and all parameters required for compressing the composite lens are controlled by a microprocessor.
[0013] The upper and lower pressing plates controlled by the control center perform pressing operations according to various parameters of the lens transmitted from the control center;
[0014] Specifically, the control data is obtained according to the force and stretchability that the lens can withstand, and then the upper pressing plate is controlled to perform upper and lower pressing operations. After each layer of the lens is pressed, the next layer of the lens is placed on the already pressed lens to continue pressing.
[0015] The lens and lens layer temporary storage device automatically places the set next lens layer on the already pressed lens layer after the upper and lower pressing devices have completed pressing; when all seven lens layers have been pressed, the lens and lens layer temporary storage device automatically takes out the pressed composite lens and puts it into the lens and lens layer temporary storage device.
[0016] Furthermore, the microprocessor is controlled by a control center, which sends commands to the microprocessor, and the processing core of the microprocessor sends the received commands to the lens and lens layer registers or the upper and lower pressing plates.
[0017] TAC material is triacetate cellulose film, which is used to make optical films of polarizers. The mass proportion of plasticizer, cosolvent, wetting agent, lubricant and UV inhibitor contained in TAC can be adjusted according to actual needs.
[0018] Another object of the present invention is to provide a control system for operating and controlling the delicate multifunctional composite lens patch process, the control system comprising: a control center, a database, an upper pressing plate, a lower pressing plate, a microprocessor, a lens and a lens layer register, an alarm and an indicator;
[0019] The alarm is located in the lens and lens layer register;
[0020] The indicator is located in the upper pressing plate; when working, the control center controls the microprocessor to control the lower pressing plate to fix the position and control the upper pressing plate to move and press;
[0021] The indicator lights up to remind you when the upper pressing plate reaches a preset force or a certain value of the lower pressing.
[0022] The alarm is set in the lens and lens layer register. When the lenses and lens layers in the lens and lens layer register are empty or full, the alarm sounds to remind the staff to take out the pressed lenses or put the lens layers into the lens and lens layer register.
[0023] Another object of the present invention is to provide a refined multifunctional composite lens patch prepared by the refined multifunctional composite lens patch process, wherein the refined multifunctional composite lens patch is sequentially bonded with:
[0024] PC film, potion functional layer, glue layer, potion functional layer, TAC, PVA, TAC outer reinforcement surface.
[0025] Another object of the present invention is to provide a composite lens prepared using the sophisticated multifunctional composite lens patch.
[0026] Another object of the present invention is to provide a pair of glasses, comprising a frame in which the composite lens is embedded.
[0027] Combining all the above technical solutions, the advantages and positive effects of the present invention are as follows:
[0028] The present invention includes a control center, a database, an upper pressing plate, a lower pressing plate, a microprocessor, a lens and a lens layer register, an alarm and an indicator, wherein the alarm is located in the lens and lens layer register, the indicator is located in the upper pressing plate, when the system is working, the control center controls the microprocessor to control the lower pressing plate to fix the position, and controls the upper pressing plate to move and press, the indicator is when the upper pressing plate is pressed, when the preset force or a certain value of the lower pressing is reached, the indicator lights up to serve as a prompt, the alarm is set in the lens and lens layer register, when the lens and lens layer in the lens and lens layer register are empty or full, the alarm sounds, reminding the staff to take out the pressed lens or put the lens layer into the lens and lens layer register. The lens in the present invention is divided into seven layers, including PC bottom film, liquid medicine functional layer, glue layer, liquid medicine functional layer, TAC, PVA, and TAC outer strengthening surface. The multifunctional composite lens patching process prepared by the present invention can produce a composite eyeglass lens that can meet the requirements of high refractive index and high hardness and has the advantages of impact resistance and high quality.
[0029] The multifunctional composite lens patching process prepared by the present invention can produce composite eyeglass lenses that can meet the requirements of high refractive index and high hardness, and have the advantages of impact resistance and high quality. In the lens preparation process, it contains seven layers of lens functional layers, adopts a variety of advanced functional technical raw materials, and obtains a sophisticated and multifunctional lens patching process technology. The multifunctional lens is suitable for large-scale promotion and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0030] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following is a brief introduction to the drawings required for use in the embodiments of the present application. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.
[0031] Figure 1 The present invention provides a process flow chart of a sophisticated multifunctional composite lens patch.
[0032] Figure 2 It is a principle diagram of the process of patching a sophisticated multifunctional composite lens provided by an embodiment of the present invention.
[0033] Figure 3 1 is a structural diagram of a composite lens provided by an embodiment of the present invention.
[0034] In the figure: 1. Control center; 2. Database; 3. Lower pressing plate; 4. Microprocessor; 5. Lens and lens layer register; 6. Alarm; 7. Upper pressing plate; 8. Indicator; 9. PC film; 10. Chemical functional layer; 11. Glue layer; 12. Chemical functional layer; 13. TAC; 14. PVA; 15. TAC outer strengthening surface. DETAILED DESCRIPTION
[0035] In order to make the purpose, technical solution and advantages of the present invention more clearly understood, the present invention is further described in detail below in conjunction with the embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0036] In view of the problems existing in the prior art, the present invention provides a sophisticated multifunctional composite lens pasting process, which is described in detail below in conjunction with the accompanying drawings.
[0037] like Figure 1 As shown, the sophisticated multifunctional composite lens patch process provided by the embodiment of the present invention includes:
[0038] S101, the control center controls the microprocessor to control the lower pressing plate to fix the position, and controls the upper pressing plate to move and press for the last time;
[0039] S102, when the upper pressing plate is pressing and reaches a preset force or a certain value of the lower pressing, the indicator lights up to serve as a prompt;
[0040] S103, when the lenses and lens layers in the lens and lens layer temporary storage are empty or full, an alarm sounds to remind the user to take out the pressed lenses or put the lens layers into the lens and lens layer temporary storage.
[0041] In one embodiment of the present invention, the control center is connected to a database to perform real-time data interaction. Before the interaction is performed, specific parameters of various lenses and various lens layers need to be input into the database;
[0042] The specific parameters include: the name, type, wear resistance, ductility and compressibility of the lens and lens layer, the compressibility and extensibility at room temperature and high temperature, and the melting point of each layer; when a certain type of lens needs to be prepared, the required lens name is input into the control center, and the control center controls each module to control and operate, and all parameters required for compressing the composite lens are controlled by a microprocessor.
[0043] In one embodiment of the present invention, the upper and lower pressing plates controlled by the control center perform pressing operations according to various parameters of the lens transmitted from the control center;
[0044] Specifically, the control data is obtained according to the force and stretchability that the lens can withstand, and then the upper pressing plate is controlled to perform upper and lower pressing operations. After each layer of the lens is pressed, the next layer of the lens is placed on the already pressed lens to continue pressing.
[0045] In one embodiment of the present invention, the lens and lens layer temporary storage device automatically places the set next lens layer on top of the already pressed lens layer after the upper and lower presses have completed pressing; when all seven lens layers have been pressed, the lens and lens layer temporary storage device automatically takes out the pressed composite lens and places it into the lens and lens layer temporary storage device.
[0046] In one embodiment of the present invention, the microprocessor is controlled by a control center, which sends commands to the microprocessor, and the processing core of the microprocessor sends the received commands to the lens and lens layer registers or the upper and lower pressing plates.
[0047] In one embodiment of the present invention, the TAC material is a triacetate cellulose film, which is used to manufacture an optical film of a polarizer; the mass proportion of the plasticizer, cosolvent, wetting agent, lubricant and anti-ultraviolet agent contained in the TAC composition can be adjusted according to actual needs.
[0048] Specifically, Figure 2 , a control system for operating and controlling the exquisite multifunctional composite lens patch process, including a control center, a database, an upper pressing plate, a lower pressing plate, a microprocessor, a lens and a lens layer register, an alarm and an indicator; wherein the alarm is located in the lens and lens layer register, the indicator is located in the upper pressing plate, when the system is working, the control center controls the microprocessor to control the lower pressing plate to fix the position, and controls the upper pressing plate to move and press the last time, the indicator is when the upper pressing plate is pressed, when the preset force or a certain value of the lower pressing is reached, the indicator light is lit to serve as a prompt, the alarm is set in the lens and lens layer register, when the lens and lens layer in the lens and lens layer register are empty or full, the alarm sounds, reminding the staff to take out the pressed lens or put the lens layer into the lens and lens layer register. The lens in the present invention is divided into seven layers, including PC bottom film, liquid medicine functional layer, glue layer, liquid medicine functional layer, TAC, PVA, and TAC outer strengthening surface.
[0049] The control center is connected to the database, and real-time data exchange is carried out between the two. Before this function is performed, the staff needs to input the specific parameters of various lenses and lens layers into the database, including the name, type, wear resistance, ductility and compressibility of the lenses and lens layers, as well as the compressible bearing capacity and extensibility at room temperature and high temperature, and the melting point value of each layer. When a certain type of lens needs to be prepared, it is only necessary to input the required lens name into the control center. The control center controls each module to control and operate, and all parameters required for compressing the composite lens are controlled by a microprocessor.
[0050] The upper and lower pressing plates controlled by the control center perform pressing operations according to the various parameters of the lens transmitted from the control center. Specifically, the parameters are obtained according to the force and stretchability that the lens can withstand, and then the upper pressing plate is controlled to perform upper and lower pressing operations. The lens in this application needs to be pressed in seven layers. After each layer is pressed, the next layer of the lens is placed on the already pressed lens to continue pressing.
[0051] The lens and lens layer temporary storage is used to automatically place the set next lens layer on top of the already pressed lens layer after the upper and lower pressers have pressed the existing lenses. When all seven lens layers are pressed, the lens and lens layer temporary storage will automatically take out the pressed composite lens and put it into the lens and lens layer temporary storage.
[0052] The microprocessor is controlled by the control center. The control center sends commands to the microprocessor, and the processing core of the microprocessor sends the received commands to the lens and lens layer registers or the upper and lower pressing plates.
[0053] The TAC material is a triacetate film, which is used to make the optical film of polarizer. The composition of TAC is very complex, including plasticizer, cosolvent, wetting agent, lubricant and anti-ultraviolet agent, etc. TAC is processed into film by solvent casting and is one of the polymer materials with the highest penetration.
[0054] Figure 2 This is a schematic diagram of the process principle of the exquisite multifunctional composite lens patch provided by the embodiment of the present invention. It includes:
[0055] Control center 1, database 2, lower pressing plate 3, microprocessor 4, lens and lens layer register 5, alarm 6, upper pressing plate 7, indicator 8.
[0056] like Figure 3 As shown, the sophisticated multifunctional composite lens patch provided by the present invention comprises:
[0057] PC bottom film 9, medicine functional layer 10, glue layer 11, medicine functional layer 12, TAC 13, PVA 14, TAC outer reinforcement surface 15.
[0058] The present invention solves the problem that the resin lenses made of various hydrocarbon and carbon ester polymers as raw materials have few functions and relatively weak wear resistance, and realizes the expectation of a composite lens with many layers and strong functionality.
[0059] The multifunctional composite lens patching process prepared by the present invention can produce composite eyeglass lenses that can meet the requirements of high refractive index and high hardness, and have the advantages of impact resistance and high quality. In the lens preparation process, it contains seven layers of lens functional layers, adopts a variety of advanced functional technical raw materials, and obtains a sophisticated and multifunctional lens patching process technology. The multifunctional lens is suitable for large-scale promotion and use.
[0060] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any modifications, equivalent substitutions and improvements made by any technician familiar with the technical field within the technical scope disclosed by the present invention and within the spirit and principles of the present invention should be covered within the protection scope of the present invention.
Claims
1. A sophisticated multifunctional composite lens patch process, characterized in that: The exquisite multifunctional composite lens patching process comprises: the control center controls the microprocessor to control the lower pressing plate to fix the position, and controls the upper pressing plate to move and press in sequence; When the upper pressing plate is pressing and reaches a preset force or a certain value of the lower pressing, the indicator lights up to serve as a prompt; When the lenses and lens layers in the lens and lens layer temporary storage are empty or full, an alarm sounds to remind the user to take out the pressed lenses or put the lens layers into the lens and lens layer temporary storage.
2. The exquisite multifunctional composite lens pasting process as claimed in claim 1, characterized in that: The control center is connected to the database to perform real-time data interaction. Before the interaction, specific parameters of various lenses and various lens layers need to be input into the database. The specific parameters include: the name, type, wear resistance, ductility and compressibility of the lens and lens layer, the compressibility and extensibility at room temperature and high temperature, and the melting point of each layer; when a certain type of lens needs to be prepared, the required lens name is input into the control center, and the control center controls each module to control and operate, and all parameters required for compressing the composite lens are controlled by a microprocessor.
3. The exquisite multifunctional composite lens pasting process as claimed in claim 1, characterized in that: The upper and lower pressing plates controlled by the control center perform pressing operations according to various parameters of the lens transmitted from the control center; Specifically, the control data is obtained according to the force and stretchability that the lens can withstand, and then the upper pressing plate is controlled to perform upper and lower pressing operations. After each layer of the lens is pressed, the next layer of the lens is placed on the already pressed lens to continue pressing.
4. The exquisite multifunctional composite lens pasting process as claimed in claim 1, characterized in that: The lens and lens layer temporary storage device automatically places the set next lens layer on the already pressed lens layer after the upper and lower pressing devices have completed pressing; when all seven lens layers have been pressed, the lens and lens layer temporary storage device automatically takes out the pressed composite lens and puts it into the lens and lens layer temporary storage device.
5. The exquisite multifunctional composite lens pasting process as claimed in claim 1, characterized in that: The microprocessor is controlled by the control center. The control center sends commands to the microprocessor, and the processing core of the microprocessor sends the received commands to the lens and lens layer registers or the upper and lower pressing plates.
6. The exquisite multifunctional composite lens pasting process as claimed in claim 1, characterized in that: TAC material is cellulose triacetate film, which is used to make optical films of polarizers. The mass proportion of plasticizer, cosolvent, wetting agent, lubricant and UV inhibitor contained in TAC can be adjusted according to actual needs.
7. A control system for operating and controlling the delicate multifunctional composite lens pasting process according to any one of claims 1 to 6, characterized in that: The control system includes: a control center, a database, an upper pressing plate, a lower pressing plate, a microprocessor, a lens and a lens layer temporary register, an alarm and an indicator; The alarm is located in the lens and lens layer register; The indicator is located in the upper pressing plate; when working, the control center controls the microprocessor to control the lower pressing plate to fix the position, and controls the upper pressing plate to move and press in sequence; The indicator lights up to remind you when the upper pressing plate reaches a preset force or a certain value of the lower pressing. The alarm is set in the lens and lens layer register. When the lenses and lens layers in the lens and lens layer register are empty or full, the alarm sounds to remind the staff to take out the pressed lenses or put the lens layers into the lens and lens layer register.
Citation Information
Patent Citations
Polarized light lens structure
CN203101675U
Fine multifunctional composite lens
CN214646616U