Chamfering and grinding device for optical glass production

By introducing racks, gears, and cleaning rollers into the chamfering and grinding device for optical glass production, the problems of waste cleaning and adaptability have been solved, achieving efficient waste cleaning and stable grinding, and adapting to the needs of optical glass of different shapes.

CN223947527UActive Publication Date: 2026-02-27WUHAN ZHENGKE TECH CO LTD
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Patent Information

Application Number
CN202520339712.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-02-27
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

Existing chamfering and grinding equipment for optical glass production lacks a waste cleaning function, resulting in waste accumulation that affects the grinding effect. Furthermore, it has low adaptability and is difficult to handle optical glass of different shapes.

Method used

A polishing device comprising a rack, gears, and a cleaning roller was designed. The synchronous movement of the cleaning roller is achieved through the meshing of the gears and racks to remove waste. At the same time, a support plate and clamping plate structure is adopted to adapt to optical glass of different shapes. Combined with a motor-driven support plate and a fixing frame, stable clamping and polishing are achieved.

Benefits of technology

It achieves efficient cleaning of waste debris, ensures polishing effect, and improves the device's adaptability to optical glass of different shapes and polishing stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a chamfering and polishing device for optical glass production, which belongs to the technical field of optical glass processing and comprises an operation table, a transmission case is fixedly connected to one side of the operation table, a double-end servo motor is fixedly connected to the inside of the transmission case, and a rack, a gear and a cleaning roller are arranged in a support above the operation table. According to the optical glass polishing device, the polishing assembly is arranged on the operation table, the polishing assembly can synchronously move in the polishing process, sweeps are cleaned, when the cleaning roller moves, rotation is achieved through a gear and a rack, the cleaning efficiency is higher, and it is guaranteed that the polishing effect of optical glass is not affected by the sweeps; according to the optical glass chamfering and grinding device, chamfering and grinding of round optical glass can be achieved while square optical glass is subjected to chamfering and grinding, the practicability of the device is greatly improved, the optical glass can be effectively clamped through the fixing frame, the air cylinder and the clamping plate in cooperation with the bearing disc, and the stability in the grinding process is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to optical glass processing technical field, specifically is a chamfer polishing device for optical glass production. BACKGROUND

[0002] Optical glass is extremely widely used in modern optical instruments, such as telescope, microscope, camera lens, optical lens in laser equipment etc. These optical instruments have extremely high requirements on imaging quality, light propagation accuracy etc., and the edge chamfer quality of optical glass is directly related to the performance of optical elements. The angle, flatness, surface roughness etc. of chamfer must be controlled in an accurate range, therefore, the optical glass chamfer polishing device has wide application in optical instruments, precision manufacturing etc. fields.

[0003] The prior art still has the following deficiencies:

[0004] 1. The existing chamfer polishing device for optical glass production lacks the function of cleaning waste chips during the chamfer polishing process of optical glass, and a large amount of powder waste chips will be generated during the chamfer polishing process. If these waste chips are not cleaned in time, they will gradually accumulate and affect the polishing effect.

[0005] 2. The existing chamfer polishing device for optical glass production has low adaptability, and it is difficult to chamfer and polish optical glasses of different shapes, which undoubtedly reduces the production efficiency and increases the equipment cost. UTILITY MODEL CONTENTS

[0006] In order to overcome the above-mentioned defects, the utility model provides a chamfer polishing device for optical glass production, which solves the problems of lack of cleaning waste chips during the polishing process and low adaptability.

[0007] In order to achieve the above-mentioned purpose, the utility model provides the following technical scheme: a chamfer polishing device for optical glass production, comprising an operation table, one side of the operation table is fixedly connected with a transmission box, the inside of the transmission box is fixedly connected with a double-head servo motor, the two output ends of the double-head servo motor are coaxially fixedly connected with bevel gears one, one side of each of the two bevel gears one is provided with a bevel gear two, the inside of the operation table is rotatably connected with two lead screws, one end of the lead screw is fixedly connected with the bevel gear two, the outer side of the lead screw is threadedly connected with a sliding block, the top of the operation table is provided with two sliding grooves, the sliding block is slidably connected with the sliding groove, the top of the sliding block is fixedly connected with a polishing assembly, the top of the polishing assembly is fixedly connected with a mounting plate, a rotating shaft is rotatably connected between the two mounting plates, the two ends of the rotating shaft are fixedly connected with gears, and a cleaning roller is fixedly connected to the outer side of the rotating shaft.

[0008] As a further scheme of the present utility model: the operating table is fixedly connected with a support above, the support is fixedly connected with a rack inside, the gear is engaged with the rack.

[0009] As a further scheme of the present utility model: the operating table is fixedly connected with a motor inside, the operating table is rotatably connected with a bearing disc above, the bearing disc is coaxially fixedly connected with the output end of the motor.

[0010] As a further scheme of the present utility model: the operating table is fixedly connected with a fixing frame above, the fixing frame is fixedly connected with a cylinder at one end, the cylinder is rotatably connected with a clamping plate at the output end, the clamping plate is above the bearing disc.

[0011] As a further scheme of the present utility model: the surface of the cleaning roller is uniformly distributed with bristles.

[0012] As a further scheme of the present utility model: the inside of the polishing assembly is provided with a polishing wheel and a driving unit.

[0013] Compared with the prior art, the present utility model has the beneficial effects that:

[0014] 1. By setting the rack, gear and cleaning roller in the support above the operating table, the waste can be cleaned during the polishing process, the cleaning roller rotates through the gear and rack when moving, the cleaning efficiency is higher, and the polishing effect of the optical glass is not affected by the waste.

[0015] 2. By setting the bearing disc driven by the motor above the operating table, the chamfer polishing of the circular optical glass is realized while the chamfer polishing of the square optical glass is realized, the practicability of the device is greatly improved, the optical glass can be effectively clamped through the fixing frame, cylinder and clamping plate, and the stability in the polishing process is ensured. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the structural schematic diagram of the present utility model;

[0017] Figure 2 It is the transmission structure schematic diagram of the present utility model;

[0018] Figure 3 It is the clamping structure and bearing disc structure schematic diagram of the present utility model;

[0019] Figure 4 It is the A place enlarged view of the present utility model.

[0020] In the figure: 1, operating platform; 2, transmission box; 3, double head servo motor; 4, bevel gear one; 5, bevel gear two; 6, screw rod; 7, sliding block; 8, polishing assembly; 9, mounting plate; 10, rotating shaft; 11, gear; 12, cleaning roller; 13, support; 14, rack; 15, sliding groove; 16, motor; 17, bearing disc; 18, fixed frame; 19, air cylinder; 20, clamping plate. DETAILED DESCRIPTION

[0021] The technical scheme of the patent will be further described in detail in combination with specific embodiments.

[0022] As Figures 1-4 shown, the utility model provides a technical scheme:

[0023] A chamfer polishing device for optical glass production, including operating platform 1, operating platform 1 one side fixedly connected with transmission box 2, transmission box 2 inside fixedly connected with double head servo motor 3, and the two output ends of double head servo motor 3 are coaxially fixedly connected with bevel gear one 4 respectively, and one side of two bevel gear one 4 is provided with bevel gear two 5 respectively, and operating platform 1 inside rotationally connected with two screw rods 6, and one end of screw rod 6 is fixedly connected with bevel gear two 5, and the outside of screw rod 6 is threadedly connected with sliding block 7, and the upper portion of operating platform 1 is provided with two sliding grooves 15, and sliding block 7 is slidably connected with sliding groove 15, and the upper portion of sliding block 7 is fixedly connected with polishing assembly 8, and the upper portion of polishing assembly 8 is fixedly connected with mounting plate 9, and rotating shaft 10 is rotationally connected between two mounting plates 9, and the two ends of rotating shaft 10 are fixedly connected with gear 11 respectively, and the outside of rotating shaft 10 is fixedly connected with cleaning roller 12, and starting double head servo motor 3, and the two bevel gear one 4 fixedly connected with the output end thereof drive the bevel gear two 5 meshed with it to rotate, when two bevel gear two 5 rotate, drive the two sliding blocks 7 inside operating platform 1 to rotate, at this time, polishing assembly 8 moves along the direction of sliding block 7, and starting polishing assembly 8, and along the edge of optical glass chamfer polishing is carried out, and while polishing assembly 8 moves and chamfer polishing are carried out, through mounting plate 9 and rotating shaft 10 drive cleaning roller 12 to move synchronously, and the debris is cleaned.

[0024] The upper portion of operating platform 1 is fixedly connected with support 13, the inside of support 13 is fixedly connected with rack 14, and gear 11 is meshed with rack 14, when cleaning roller 12 moves, because the gear 11 at the two ends of rotating shaft 10 is meshed with the rack 14 inside support 13, therefore, cleaning roller 12 rotates while moving, and the cleaning effect is better.

[0025] The operation table 1 is internally fixedly connected with a motor 16, the upper portion of the operation table 1 is rotatably connected with a bearing disc 17, the bearing disc 17 is coaxially fixedly connected with the output end of the motor 16, the upper portion of the operation table 1 is fixedly connected with a fixed frame 18, one end of the fixed frame 18 is fixedly connected with an air cylinder 19, the output end of the air cylinder 19 is rotatably connected with a clamping plate 20, the clamping plate 20 is located above the bearing disc 17, the surface of the cleaning roller 12 is uniformly distributed with bristles, the interior of the polishing assembly 8 is provided with a polishing wheel and a driving unit, the operator places the optical glass on the bearing disc 17, then starts the air cylinder 19, drives the clamping plate 20 to descend, clamps the optical glass, when chamfering and polishing the circular optical glass, the motor 16 is started, drives the bearing disc 17 to rotate, the bearing disc 17 drives the circular optical glass to rotate, then the polishing assembly 8 is adjusted to a proper position through the double-head servo motor 3 and the lead screw 6, and chamfering and polishing work is carried out.

[0026] The working principle of the utility model is:

[0027] Firstly, the operator places the optical glass on the bearing disc 17, then starts the air cylinder 19, drives the clamping plate 20 to descend, clamps the optical glass, then starts the double-head servo motor 3, drives the bevel gear two 5 rotatable through the two bevel gear one 4 fixedly connected with the output end thereof and meshed with the bevel gear two 5, when the two bevel gear two 5 rotate, drive the two sliding blocks 7 in the operation table 1 to rotate, at this time, the polishing assembly 8 moves along the direction of the sliding block 7, the polishing assembly 8 is started, chamfering and polishing are carried out along the edge of the optical glass, while the polishing assembly 8 moves and chamfers and polishes, the cleaning roller 12 is synchronously moved through the mounting plate 9 and the rotating shaft 10, and the waste is cleaned, when the cleaning roller 12 moves, since the gear 11 at both ends of the rotating shaft 10 is meshed with the rack 14 in the support 13, therefore, the cleaning roller 12 rotates while moving, the cleaning effect is better in cooperation with the bristles on the surface of the cleaning roller 12, when chamfering and polishing the circular optical glass, the motor 16 is started, drives the bearing disc 17 to rotate, the bearing disc 17 drives the circular optical glass to rotate, then the polishing assembly 8 is adjusted to a proper position through the double-head servo motor 3 and the lead screw 6, and chamfering and polishing work is carried out, the practicability is high, and the optical glass of different shapes is well adapted.

[0028] The above describes the preferred embodiment of the patent in detail, but the patent is not limited to the above-mentioned embodiment, and various changes can be made within the knowledge of those skilled in the art without departing from the purpose of the patent.

Claims

1. A chamfer polishing device for optical glass production, comprising an operation table (1), characterized in that: One side of the operating platform (1) is fixedly connected with a transmission box (2), the inside of the transmission box (2) is fixedly connected with a double-head servo motor (3), the two output ends of the double-head servo motor (3) are coaxially fixedly connected with bevel gears one (4) respectively, one side of the two bevel gears one (4) is provided with bevel gears two (5) respectively, the inside of the operating platform (1) is rotatably connected with two lead screws (6), one end of the lead screw (6) is fixedly connected with the bevel gears two (5), the outside of the lead screw (6) is threadedly connected with a sliding block (7), the top of the operating platform (1) is provided with two slide grooves (15), the sliding block (7) is slidably connected with the slide groove (15), the top of the sliding block (7) is fixedly connected with a polishing assembly (8), the top of the polishing assembly (8) is fixedly connected with a mounting plate (9), the two mounting plates (9) are rotatably connected with a rotating shaft (10), the two ends of the rotating shaft (10) are fixedly connected with gears (11) respectively, the outside of the rotating shaft (10) is fixedly connected with a cleaning roller (12).

2. The chamfer polishing device for optical glass production according to claim 1, characterized in that: The top of the operating platform (1) is fixedly connected with a support (13), the inside of the support (13) is fixedly connected with a rack (14), the gear (11) is engaged with the rack (14).

3. The chamfer polishing device for optical glass production according to claim 2, characterized in that: The inside of the operating platform (1) is fixedly connected with a motor (16), the top of the operating platform (1) is rotatably connected with a bearing disc (17), the bearing disc (17) is coaxially fixedly connected with the output end of the motor (16).

4. The chamfer polishing device for optical glass production according to claim 3, characterized in that: The top of the operating platform (1) is fixedly connected with a fixing frame (18), one end of the fixing frame (18) is fixedly connected with an air cylinder (19), the output end of the air cylinder (19) is rotatably connected with a clamping plate (20), the clamping plate (20) is located above the bearing disc (17).

5. The chamfer polishing device for optical glass production according to claim 4, characterized in that: The surface of the cleaning roller (12) is uniformly distributed with bristles.

6. The chamfer polishing device for optical glass production according to claim 5, characterized in that: The inside of the polishing assembly (8) is provided with a polishing wheel and a driving unit. The inside of the polishing assembly (8) is provided with a polishing wheel and a driving unit.