Rotary coating dual-purpose plate for optical lens

By designing a dual-purpose plate for flow and coating, the complex problem of using two types of plates in the production of optical lenses was solved, the unification of flow and coating was achieved, the production process was simplified, and efficiency and stability were improved.

CN223342602UActive Publication Date: 2025-09-16ZHONGSHAN RUIKE OPTICAL PROD CO LTD
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Patent Information

Application Number
CN202422721446.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-09-16
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

The production of optical lenses requires the use of two different types of boards, which complicates the production process.

Method used

A dual-purpose plate for flow and coating is designed, comprising a first dual-purpose plate and a second dual-purpose plate, which can be stacked and locked by a snap fastener, and are respectively provided with a lens placement hole and a locking structure for positioning and locking during the flow and coating process.

Benefits of technology

This has achieved the goal that only one type of board is needed to meet the needs of circulation and coating in the production of optical lenses, simplifying the production process and improving production efficiency and stability.

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Abstract

The utility model relates to the technical field of optical lens production, and particularly discloses a transfer coating dual-purpose plate for an optical lens. The first dual-purpose plate is provided with first lens placing holes which are distributed in a rectangular array, and the first dual-purpose plate comprises a first locking structure and a first fool-proof structure; the first dual-purpose plate is provided with first lens placing holes which are distributed in a rectangular array, the second dual-purpose plate is provided with second lens placing holes which are distributed in a rectangular array, the first dual-purpose plate and the second dual-purpose plate can be overlapped and can be separated from each other, a film coating area is defined after the first dual-purpose plate and the second dual-purpose plate are overlapped, and the second dual-purpose plate comprises a second locking structure and a second fool-proof structure; when the first dual-purpose plate and the second dual-purpose plate are overlapped, the buckle can lock the first locking structure and the second locking structure. According to the utility model, the problem that the production flow becomes complicated because two different types of plates need to be arranged on an optical lens production line is solved.
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Description

Technical Field

[0001] The utility model relates to the technical field of optical lens production, in particular to a dual-purpose flow coating plate for optical lenses. Background Art

[0002] In modern manufacturing, the production of optical lenses involves multiple process steps, including lens transfer and coating. Traditional optical lens production lines require the use of transfer plates for lens transfer and coating plates for lens coating. This necessitates the use of two different types of plates during production, complicating the process. Utility Model Content

[0003] In order to solve the problem that an optical lens production line needs to be equipped with two different types of plates, which makes the production process complicated, the utility model provides a dual-purpose flow coating plate for optical lenses.

[0004] In order to solve the above problems, the present invention adopts the following technical solutions:

[0005] The embodiment of the present invention provides a dual-purpose plate for flow coating of optical lenses, comprising:

[0006] Buckle;

[0007] A first dual-purpose plate, the first dual-purpose plate being provided with first lens placement holes distributed in a rectangular array, the first dual-purpose plate comprising a first locking structure and a first foolproof structure;

[0008] The second dual-purpose plate is provided with second lens placement holes distributed in a rectangular array. The first dual-purpose plate and the second dual-purpose plate can be overlapped and separated from each other. After the first dual-purpose plate and the second dual-purpose plate are overlapped, a coating area is defined. The second dual-purpose plate includes a second locking structure and a second anti-foolproofing structure. When the first dual-purpose plate and the second dual-purpose plate are overlapped, the buckle can lock the first locking structure and the second locking structure.

[0009] According to some embodiments of the present invention, the first fool-proofing structure and the second fool-proofing structure are first grooves.

[0010] According to some embodiments of the present invention, the first fool-proofing structure is provided on both sides of the first dual-purpose plate, and the second fool-proofing structure is provided on both sides of the second dual-purpose plate.

[0011] According to some embodiments of the present invention, the height of the bottom wall of the first groove on the first dual-purpose plate gradually increases in the direction extending from the edge of the first dual-purpose plate toward the center of the first dual-purpose plate; the height of the bottom wall of the first groove on the second dual-purpose plate gradually increases in the direction extending from the edge of the second dual-purpose plate toward the center of the second dual-purpose plate.

[0012] According to some embodiments of the present invention, the first locking structure is a second groove provided on the edge of the first dual-purpose plate, and the outer edge of the second groove is provided with a first ridge; the second locking structure is a third groove provided on the edge of the second dual-purpose plate, and the outer edge of the third groove is provided with a second ridge; when the first dual-purpose plate and the second dual-purpose plate are overlapped, the buckle can slide into the second groove and the third groove and allow the first ridge and the second ridge to be embedded in the buckle.

[0013] According to some embodiments of the present invention, the second groove is provided with a first anti-falling portion for preventing the buckle from falling off, and the third groove is provided with a second anti-falling portion for preventing the buckle from falling off.

[0014] According to some embodiments of the present invention, the first anti-slip portion is a first protrusion provided along the length extension direction of the second groove, and the second anti-slip portion is a second protrusion provided along the length extension direction of the third groove.

[0015] According to some embodiments of the present invention, there are six second grooves, one of which is provided on both sides of the first dual-purpose plate in the width direction, and two of which are provided on both sides of the first dual-purpose plate in the length direction; there are six third grooves, one of which is provided on both sides of the second dual-purpose plate in the width direction, and two of which are provided on both sides of the second dual-purpose plate in the length direction.

[0016] According to some embodiments of the present invention, the buckle includes a sliding groove that cooperates with the second groove and the third groove, and also includes a limiting portion for cooperating with the first convex strip and the second convex strip.

[0017] The present invention has at least the following beneficial effects: when the flow coating plate of the present invention is used as a flow plate, because the first dual-purpose plate is provided with a first lens placement hole and the second dual-purpose plate is provided with a second lens placement hole, the first dual-purpose plate and the second dual-purpose plate can be used as flow plates respectively. When used as flow plates, the first dual-purpose plate and the second dual-purpose plate are positioned using the first anti-foolproof structure and the second anti-foolproof structure respectively, ensuring that the first dual-purpose plate and the second dual-purpose plate can be placed in the correct position during the flow process. When the flow coating plate of the present invention is used as a coating plate, the optical lens is placed in the second lens placement hole of the second dual-purpose plate, and then the first locking structure and the second locking structure are locked with a snap. Since the first dual-purpose plate and the second dual-purpose plate are overlapped with each other to define the coating area, the first dual-purpose plate and the second dual-purpose plate can be used for optical lens coating after overlapping. The design of the present invention makes it possible to only need one type of plate in the optical lens production line to meet the needs of optical lens circulation and coating. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is an exploded schematic diagram of an embodiment of the present utility model;

[0019] Figure 2 This is a schematic diagram of the back structure of the first dual-purpose board according to an embodiment of the present utility model;

[0020] Figure 3 This is a schematic diagram of the back structure of the second dual-purpose board according to an embodiment of the present utility model;

[0021] Figure 4 for Figure 1 A magnified image of the marker;

[0022] Figure 5 for Figure 1 B is an enlarged view of the marker;

[0023] Figure 6 This is a schematic structural diagram of a buckle according to an embodiment of the present utility model;

[0024] Figure 7 This is a schematic diagram of the assembly of the first dual-purpose plate, the second dual-purpose plate and the buckle according to an embodiment of the present utility model. DETAILED DESCRIPTION

[0025] The following description of the present invention, with reference to the accompanying drawings, is provided to facilitate a more comprehensive understanding of the various embodiments of the present invention as defined in the claims and their equivalents. The description includes various specific details to assist understanding, but these details should be construed as merely exemplary. Therefore, those skilled in the art will recognize that various changes and modifications may be made to the various embodiments described herein without departing from the scope and spirit of the present invention.

[0026] In the description of the present invention, descriptions of directions, such as up, down, front, back, left, right, etc., indicating directions or positional relationships, are based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they cannot be understood as a limitation on the present invention.

[0027] It will be understood that when one element (e.g., a first element) is “connected” to another element (e.g., a second element), the element may be directly connected to the other element or an intervening element (e.g., a third element) may be present between the element and the other element.

[0028] The embodiment of the present invention provides a dual-purpose plate for flow coating of optical lenses, such as Figure 1-7 Shown, including:

[0029] Buckle 100;

[0030] The first dual-purpose plate 200 is provided with first lens placement holes 210 distributed in a rectangular array. The first dual-purpose plate 200 includes a first locking structure 230 and a first foolproof structure 220;

[0031] The second dual-purpose plate 300 is provided with second lens placement holes 310 distributed in a rectangular array. The first dual-purpose plate 200 and the second dual-purpose plate 300 can be overlapped and separated from each other. After the first dual-purpose plate 200 and the second dual-purpose plate 300 are overlapped, a coating area is defined. The second dual-purpose plate 300 includes a second locking structure 330 and a second anti-fool structure 320. When the first dual-purpose plate 200 and the second dual-purpose plate 300 are overlapped, the buckle 100 can lock the first locking structure 230 and the second locking structure 330.

[0032] The buckle 100 is a structure used to secure and lock the dual-purpose plate, ensuring its stability during the coating process. The first dual-purpose plate 200, part of the dual-purpose plate, is provided with a plurality of first lens placement holes 210 arranged in a rectangular array for placing lenses to be coated. The first dual-purpose plate 200 also includes a first locking structure 230 and a first foolproofing structure 220. The first locking structure 230 cooperates with the locking structure of the second dual-purpose plate 300 to ensure the two plates are securely locked when stacked. The first foolproofing structure 220 is used to position the first dual-purpose plate 200 when used as a transfer plate. The second dual-purpose plate 300, another part of the dual-purpose plate, also features a plurality of second lens placement holes 310 arranged in a rectangular array. The second dual-purpose plate 300 can be stacked or separated from the first dual-purpose plate 200. The second dual-purpose plate 300 includes a second locking structure 330 and a second foolproofing structure 320. The second locking structure 330 corresponds to the first locking structure 230 and is used to ensure that the two plates are securely locked when superimposed. The second foolproofing structure 320 is similar to the first foolproofing structure 220 and is used to position the second dual-purpose plate 300 when the second dual-purpose plate 300 is used as a circulation plate. The first foolproofing structure 220 allows the first dual-purpose plate 200 to be placed in the correct position, and the second foolproofing structure 320 allows the second dual-purpose plate 300 to be placed in the correct position. When the first dual-purpose plate 200 or the second dual-purpose plate 300 is placed in the wrong position or flipped over, it cannot be properly snapped into the positioning position corresponding to the first foolproofing structure 220 or the second foolproofing structure 320. When the first dual-purpose plate 200 and the second dual-purpose plate 300 are superimposed, they jointly define a coating area for lens coating operations. When the first dual-purpose plate 200 and the second dual-purpose plate 300 are superimposed, the buckle 100 can simultaneously lock the first locking structure 230 and the second locking structure 330 to ensure the stability of the dual-purpose plate during the coating process.

[0033] When the dual-purpose flow coating plate of the utility model is used as a flow plate:

[0034] Because the first dual-purpose plate 200 is provided with a first lens placement hole 210 and the second dual-purpose plate 300 is provided with a second lens placement hole 310, the first dual-purpose plate 200 and the second dual-purpose plate 300 can be used as circulation plates respectively. When used as circulation plates, the first dual-purpose plate 200 and the second dual-purpose plate 300 are positioned respectively using the first anti-fool structure 220 and the second anti-fool structure 320 to ensure that the first dual-purpose plate 200 and the second dual-purpose plate 300 can be placed in the correct position during the circulation process.

[0035] When the dual-purpose flow coating plate of the utility model is used as a coating plate:

[0036] The optical lens is placed in the second lens placement hole 310 of the second dual-purpose plate 300, and then the first locking structure 230 and the second locking structure 330 are locked using the buckle 100. Since the first dual-purpose plate 200 and the second dual-purpose plate 300 are overlapped with each other to define the coating area, the first dual-purpose plate 200 and the second dual-purpose plate 300 can be used for optical lens coating after overlapping.

[0037] In some embodiments, the first fool-proofing structure 220 and the second fool-proofing structure 320 are first grooves.

[0038] The foolproof structure (groove) can prevent the operator from placing the first dual-purpose board 200 or the second dual-purpose board 300 incorrectly. The groove design helps to improve the overall efficiency of the production line.

[0039] Furthermore, the first fool-proofing structure 220 is provided on both sides of the first dual-purpose board 200 , and the second fool-proofing structure 320 is provided on both sides of the second dual-purpose board 300 .

[0040] Setting the foolproof structure (groove) on both sides of the dual-purpose board can provide symmetrical support, which helps to maintain the stability of the first dual-purpose board 200 or the second dual-purpose board 300 during circulation and reduce tilting or deviation caused by gravity or external forces.

[0041] Furthermore, the bottom wall of the first groove on the first dual-purpose plate 200 gradually increases in height from the edge of the first dual-purpose plate 200 toward the center of the first dual-purpose plate 200; and the bottom wall of the first groove on the second dual-purpose plate 300 gradually increases in height from the edge of the second dual-purpose plate 300 toward the center of the second dual-purpose plate 300. In this embodiment, the first groove is sloped.

[0042] In some embodiments, the first locking structure 230 is a second groove 400 provided on the edge of the first dual-purpose plate 200, and the outer edge of the second groove 400 is provided with a first ridge 410. The second locking structure 330 is a third groove 500 provided on the edge of the second dual-purpose plate 300, and the outer edge of the third groove 500 is provided with a second ridge 510. When the first dual-purpose plate 200 and the second dual-purpose plate 300 are overlapped, the buckle 100 can slide into the second groove 400 and the third groove 500 and allow the first ridge 410 and the second ridge 510 to be embedded in the buckle 100.

[0043] The first locking structure 230 is located at the edge of the first dual-purpose board 200. The first locking structure 230 includes a second groove 400, and a first protrusion 410 is provided at the outer edge of the second groove 400.

[0044] The second locking structure 330 is located at the edge of the second dual-purpose plate 300 and includes a third groove 500 with a second ridge 510 formed on its outer edge. When the first dual-purpose plate 200 and the second dual-purpose plate 300 are superimposed, the buckle 100 can slide into the second groove 400 and the third groove 500. The first ridge 410 and the second ridge 510 embed in the buckle 100, locking the two plates. The combination of the groove and the ridge provides a mechanical locking mechanism, ensuring that the dual-purpose plates do not accidentally separate during the coating process. The design of the buckle 100 makes assembly and disassembly of the dual-purpose plates simple and quick, improving production line efficiency.

[0045] Furthermore, a first anti-falling portion 420 for preventing the buckle 100 from falling off is provided on the second groove 400 , and a second anti-falling portion 520 for preventing the buckle 100 from falling off is provided on the third groove 500 .

[0046] The first anti-slip portion 420 is provided on the second groove 400 to prevent the buckle 100 from falling out of the second groove 400. The second anti-slip portion 520 is provided on the third groove 500 to prevent the buckle 100 from falling out of the third groove 500. After the first dual-purpose plate 200 and the second dual-purpose plate 300 are superimposed, the buckle 100 can slide into the second groove 400 and the third groove 500. The first and second protrusions 410 and 510 are embedded in the buckle 100, locking the two plates. The first and second anti-slip portions 420 and 520 ensure that the buckle 100 will not accidentally fall out when locked.

[0047] Furthermore, the first anti-slip portion 420 is a first protrusion provided along the length extension direction of the second groove 400 , and the second anti-slip portion 520 is a second protrusion provided along the length extension direction of the third groove 500 .

[0048] In some embodiments, there are six second grooves 400, and one second groove 400 is provided on both sides of the first dual-purpose plate 200 in the width direction, and two second grooves 400 are provided on both sides of the first dual-purpose plate 200 in the length direction; there are six third grooves 500, and one third groove 500 is provided on both sides of the second dual-purpose plate 300 in the width direction, and two third grooves 500 are provided on both sides of the second dual-purpose plate 300 in the length direction.

[0049] A second groove 400 is provided on each side of the first dual-purpose plate 200 along its width. Two second grooves 400 are provided on each side of the first dual-purpose plate 200 along its length. There are a total of six second grooves 400, distributed along the edge of the first dual-purpose plate 200. A third groove 500 is provided on each side of the second dual-purpose plate 300 along its width. Two third grooves 500 are provided on each side of the second dual-purpose plate 300 along its length. There are a total of six third grooves 500, distributed along the edge of the second dual-purpose plate 300. The buckle 100 can be slid into the corresponding second groove 400 and third groove 500 to lock the dual-purpose plate.

[0050] In some embodiments, the buckle 100 includes a sliding groove 110 that cooperates with the second groove 400 and the third groove 500 , and also includes a limiting portion 120 for cooperating with the first protrusion 410 and the second protrusion 510 .

[0051] The buckle 100 includes slide grooves 110, which cooperate with the second grooves 400 and the third grooves 500. The slide grooves 110 allow the buckle 100 to slide in the grooves to achieve locking and unlocking of the dual-purpose plate. The buckle 100 also includes limiting portions 120, which cooperate with the first ridges 410 and the second ridges 510. The limiting portions 120 ensure that the buckle 100 does not move excessively or fall off when in the locked position. The design of the slide grooves 110 and the limiting portions 120 provides a precise fit, ensuring that the buckle 100 can interact correctly with the grooves and ridges. The design of the limiting portions 120 prevents the buckle 100 from accidentally moving or falling off in the locked state, thereby improving the reliability of the locking.

[0052] The terms and words used in the above description and claims are not limited to their literal meanings, but are merely used by the applicant to enable a clear and consistent understanding of the present invention. Therefore, it should be clear to those skilled in the art that the above description of various embodiments of the present invention is provided for illustration only and is not intended to limit the present invention as defined in the appended claims and their equivalents.

Claims

1. A dual-purpose plate for flow coating of optical lenses, characterized in that: include: Snap(100); A first dual-purpose plate (200), the first dual-purpose plate (200) being provided with first lens placement holes (210) distributed in a rectangular array, the first dual-purpose plate (200) comprising a first locking structure (230) and a first fool-proofing structure (220); A second dual-purpose plate (300), the second dual-purpose plate (300) is provided with second lens placement holes (310) distributed in a rectangular array, the first dual-purpose plate (200) and the second dual-purpose plate (300) can be overlapped and separated from each other, the first dual-purpose plate (200) and the second dual-purpose plate (300) define a coating area after being overlapped, the second dual-purpose plate (300) includes a second locking structure (330) and a second fool-proof structure (320), and when the first dual-purpose plate (200) and the second dual-purpose plate (300) are overlapped, the buckle (100) can lock the first locking structure (230) and the second locking structure (330).

2. A dual-purpose plate for transfer coating of optical lenses according to claim 1, characterized in that: The first fool-proofing structure (220) and the second fool-proofing structure (320) are first grooves.

3. A dual-purpose plate for transfer coating of optical lenses according to claim 2, characterized in that: The first fool-proofing structure (220) is provided on both sides of the first dual-purpose plate (200), and the second fool-proofing structure (320) is provided on both sides of the second dual-purpose plate (300).

4. The dual-purpose plate for transfer coating of optical lenses according to claim 3, characterized in that: In a direction extending from the edge of the first dual-purpose plate (200) toward the center of the first dual-purpose plate (200), the height of the bottom wall of the first groove on the first dual-purpose plate (200) gradually increases; in a direction extending from the edge of the second dual-purpose plate (300) toward the center of the second dual-purpose plate (300), the height of the bottom wall of the first groove on the second dual-purpose plate (300) gradually increases.

5. A dual-purpose plate for transfer coating of optical lenses according to any one of claims 1 to 4, characterized in that: The first locking structure (230) is a second groove (400) provided on the edge of the first dual-purpose plate (200), and the outer edge of the second groove (400) is provided with a first ridge (410). The second locking structure (330) is a third groove (500) provided on the edge of the second dual-purpose plate (300), and the outer edge of the third groove (500) is provided with a second ridge (510). When the first dual-purpose plate (200) and the second dual-purpose plate (300) are superimposed, the buckle (100) can slide into the second groove (400) and the third groove (500) and make the first ridge (410) and the second ridge (510) embedded in the buckle (100).

6. The dual-purpose plate for transfer coating of optical lenses according to claim 5, characterized in that: The second groove (400) is provided with a first anti-falling portion (420) for preventing the buckle (100) from falling off, and the third groove (500) is provided with a second anti-falling portion (520) for preventing the buckle (100) from falling off.

7. The dual-purpose plate for transfer coating of optical lenses according to claim 6, characterized in that: The first anti-slip portion (420) is a first protrusion provided along the length extension direction of the second groove (400), and the second anti-slip portion (520) is a second protrusion provided along the length extension direction of the third groove (500).

8. The dual-purpose plate for transfer coating of optical lenses according to claim 5, characterized in that: There are six second grooves (400), one of which is provided on both sides of the first dual-purpose plate (200) in the width direction, and two of which are provided on both sides of the first dual-purpose plate (200) in the length direction; there are six third grooves (500), one of which is provided on both sides of the second dual-purpose plate (300) in the width direction, and two of which are provided on both sides of the second dual-purpose plate (300) in the length direction.

9. The dual-purpose plate for transfer coating of optical lenses according to claim 5, characterized in that: The buckle (100) includes a sliding groove (110) that cooperates with the second groove (400) and the third groove (500), and also includes a limiting portion (120) for cooperating with the first convex strip (410) and the second convex strip (510).