Cutting device for optical glass processing

Through the design of the adjustment and fixing mechanism, the multi-directional adjustment and stable fixation of the optical glass cutting device are achieved, which solves the problem of insufficient adaptability in the prior art, improves processing efficiency and accuracy, and reduces costs and error risks.

CN223189110UActive Publication Date: 2025-08-05WUHAN LICHENG OPTICAL INSTR CO LTD
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Patent Information

Application Number
CN202422753934.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-08-05
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The existing cutting devices for optical glass processing can only adjust the cutting disc in one direction, and cannot meet the adjustment needs of multiple angles and directions, resulting in insufficient adaptability to different types and specifications of optical glass, increasing production costs and the work burden of operators.

Method used

The adjustment mechanism and the fixing mechanism are adopted. The adjustment mechanism realizes multi-directional adjustment of the cutting device through the cooperation of the first motor and the second motor; the fixing mechanism drives the fixing suction cup through the cylinder and the electric telescopic rod, and is steadily fixed according to the specifications of the optical glass.

Benefits of technology

It improves the adaptability of the cutting device to different types and specifications of optical glass, reduces production costs, reduces the work burden and probability of errors of operators, and ensures processing accuracy and efficiency.

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Abstract

The utility model provides a cutting device for optical glass processing, which relates to the technical field of cutting machines and comprises a workbench, an adjusting mechanism is arranged at the top of the workbench, fixing mechanisms are symmetrically arranged on two sides in the adjusting mechanism, and a cutting device is arranged at the bottom of the adjusting mechanism. According to the optical glass cutting device, through the arrangement of the adjusting mechanism, the cutting device is adjusted in multiple directions, so that the adaptability of the device to different types and specifications of optical glass is improved, the production cost is reduced, the workload of operators and the error probability are reduced, the optical glass is fixed on the workbench through the arrangement of the fixing mechanism, and the working efficiency is improved. The fixing mechanism can reach a proper position according to the specification of the optical glass, so that the optical glass is firmly fixed on the protection pad through the fixing suction cup, the optical glass is kept at a stable position in the cutting process, the machining precision is ensured, a glass material is protected, and the machining efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of cutting machines, in particular to a cutting device for optical glass processing. Background Art

[0002] In today's science and technology and industrial fields, optical glass is widely used in various high-tech products due to its unique optical properties, such as optical instruments, electronic product displays, camera lenses, etc. As the demand for optical glass continues to grow, the requirements for its processing quality and efficiency are also increasing. Traditional optical glass cutting methods often have some limitations. For example, manual cutting has low precision and poor consistency, which makes it difficult to meet the production requirements of high-precision optical components. Some ordinary mechanical cutting equipment may cause damage to the optical glass during the cutting process, such as cracks, edge collapse and other problems, affecting the performance and quality of the optical glass. In addition, with the continuous advancement of science and technology, the types and specifications of optical glass are becoming more and more diversified, which puts higher requirements on the adaptability and flexibility of cutting devices. Different types of optical glass may have different hardness, thickness and shape, requiring the cutting device to be able to adjust and optimize according to the specific material properties. In order to overcome these problems, cutting devices specifically used for optical glass processing are particularly important.

[0003] However, the existing cutting device for optical glass processing can only adjust the cutting disk in one direction and cannot meet the requirements of multi-angle and multi-directional adjustment. As a result, the adaptability of the device in dealing with optical glass of different types and specifications is greatly reduced, which consumes a lot of time and energy and increases production costs. Frequent adjustments may also increase the workload of operators and the probability of errors. Utility Model Content

[0004] The purpose of the utility model is to solve the problem in the prior art that the cutting disc can only be adjusted in one direction and cannot meet the needs of multi-angle and multi-directional adjustment, and to propose a cutting device for optical glass processing.

[0005] In order to achieve the above-mentioned object, the utility model adopts the following technical solution: a cutting device for optical glass processing, comprising a workbench, an adjustment mechanism is provided on the top of the workbench, fixing mechanisms are provided on both sides of the interior of the adjustment mechanism, and a cutting device is provided at the bottom of the adjustment mechanism;

[0006] The adjusting mechanism comprises a first adjusting frame and a second adjusting frame, wherein the first slide groove is provided at the top inner side of the first adjusting frame, the front side of the first adjusting frame is provided with a first motor, the output end of the first motor is provided with a threaded rod, a cross beam is slidably mounted on the inside of the first adjusting frame and the second adjusting frame side, the top of the cross beam is fixedly mounted with a fixing frame, the inner sides of the two fixing frames are fixedly mounted with a second motor, the output end of the second motor is provided with a gear, a second slide groove is symmetrically provided on the inner side of the cross beam, a toothed slide bar is slidably mounted on the inner side of one of the second slide grooves, and the toothed slide bar is meshed with the gear, and a slide bar is movably mounted on the inner side of the other second slide groove, a third slide groove is provided at the bottom of the two second slide grooves, a slider is fixedly mounted on the toothed slide bar and the bottom of the slider, and the two sliders pass through the corresponding third slide grooves, and a connecting plate is fixedly mounted on the bottom of the two sliders.

[0007] Preferably, the four fixing mechanisms include a first cylinder, a first telescopic rod is provided at the output end of the first cylinder, a fixed block is fixedly installed at one end of the first telescopic rod, a first electric telescopic rod is fixedly installed at the bottom of the fixed block, and a fixed suction cup is fixedly installed at the bottom of the first electric telescopic rod.

[0008] Preferably, the cutting device includes a second electric telescopic rod, a fixing plate is fixedly installed on the bottom of the electric telescopic rod, a mounting plate is symmetrically fixedly installed on the bottom of the fixing plate, a rotating shaft is provided on the inner side of the mounting plate, and a cutting disc is provided on the outer wall of the rotating shaft.

[0009] Preferably, a control panel is provided on the front of the second adjustment frame.

[0010] Preferably, support legs are fixedly installed at the four corners of the bottom of the workbench, and universal wheels are provided at the bottoms of the four support legs.

[0011] Preferably, a protective pad is provided on the top of the workbench.

[0012] Compared with the prior art, the advantages and positive effects of the present invention are:

[0013] 1. In the utility model, the cutting device is adjusted in multiple directions through the adjustment mechanism provided. First, the depth direction of the cutting device is adjusted, and the first motor is started. The operation of the first motor causes the threaded rod to rotate, thereby driving the crossbeam to slide in the first slide groove. When it reaches the appropriate position, the first motor is turned off. Then, the transverse direction of the cutting device is adjusted, and the second motor is started. The operation of the second motor causes the gear to rotate, thereby driving the toothed slide bar meshing with the gear to slide transversely in the second slide groove, thereby driving the slider fixedly connected to the toothed slide bar to slide in the third slide groove. Since the bottoms of the two sliders are fixedly connected by the connecting plate, the cutting device installed at the bottom of the connecting plate is driven to move transversely together. When it reaches the appropriate position, the second motor is turned off, thereby achieving the effect of adjusting the cutting device in multiple directions, thereby improving the adaptability of the device in dealing with optical glasses of different types and specifications, reducing production costs, and alleviating the workload and error probability of the operator.

[0014] 2. In the present invention, through the setting of the fixing mechanism, when fixing the optical glass on the workbench, first put the optical glass on the workbench, then start the first cylinder, the first cylinder works, drives the first telescopic rod to work, thereby drives the fixed block to move, so that the fixing mechanism reaches a suitable position according to the specifications of the optical glass, then starts the first electric telescopic rod to work, drives the fixed suction cup fixed at the bottom thereof to move downward, so that the fixed suction cup firmly fixes the optical glass on the protective pad, so that during the cutting process, the optical glass maintains a stable position, ensures processing accuracy, protects the glass material, and thus improves processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a schematic diagram of the three-dimensional structure of a cutting device for optical glass processing proposed by the present invention;

[0016] Figure 2 This is a front structural diagram of a cutting device for optical glass processing proposed by the present invention;

[0017] Figure 3 This utility model provides a schematic diagram of the structure of an adjustment mechanism of a cutting device for optical glass processing;

[0018] Figure 4 The present invention provides a schematic structural diagram of the adjustment mechanism of a cutting device for optical glass processing from another angle.

[0019] Figure 5 The utility model provides a schematic structural diagram of a fixing mechanism of a cutting device for optical glass processing.

[0020] Legend: 1. Workbench; 2. Adjustment mechanism; 201. First adjustment frame; 202. Second adjustment frame; 203. First slide; 204. First motor; 205. Threaded rod; 206. Beam; 207. Fixed frame; 208. Second motor; 209. Gear; 210. Second slide; 211. Toothed slide; 212. Third slide; 213. Slider; 214. Connecting plate; 3. Fixing mechanism; 301. First cylinder; 302. First telescopic rod; 303. Fixed block; 304. First electric telescopic rod; 305. Fixed suction cup; 4. Cutting device; 401. Second electric telescopic rod; 402. Fixed plate; 403. Mounting plate; 404. Rotating shaft; 405. Cutting disc; 5. Control panel; 6. Support leg; 7. Universal wheel; 8. Protective pad. DETAILED DESCRIPTION

[0021] In order to more clearly understand the above-mentioned purpose, features and advantages of the present invention, the present invention is further described below with reference to the accompanying drawings and embodiments. It should be noted that the embodiments of the present application and the features therein can be combined with each other without conflict.

[0022] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways than those described herein. Therefore, the present invention is not limited to the specific embodiments disclosed in the following specification.

[0023] Example 1: Figure 1-Figure 5As shown, the utility model provides a technical solution: a cutting device for optical glass processing, comprising a workbench 1, an adjusting mechanism 2 is provided on the top of the workbench 1, a fixing mechanism 3 is symmetrically provided on both sides of the interior of the adjusting mechanism 2, a cutting device 4 is provided at the bottom of the adjusting mechanism 2, the adjusting mechanism 2 comprises a first adjusting frame 201 and a second adjusting frame 202, a first slide groove 203 is provided on the inner top of the first adjusting frame 201, a first motor 204 is provided on the front of the first adjusting frame 201, a threaded rod 205 is provided at the output end of the first motor 204, a crossbeam 206 is slidably installed on the inner side of the first adjusting frame 201 and the second adjusting frame 202, and a crossbeam 206 is fixedly installed on the top of the crossbeam 206. A fixed frame 207, a second motor 208 is fixedly installed on the inner side of the two fixed frames 207, a gear 209 is provided at the output end of the second motor 208, and a second slide groove 210 is symmetrically opened on the inner side of the crossbeam 206, a toothed slide 211 is slidably installed on the inner side of one of the second slide grooves 210, and the toothed slide 211 is meshed with the gear 209, and a slide is movably installed on the inner side of the other second slide groove 210, a third slide groove 212 is opened at the bottom of the two second slide grooves 210, a slider 213 is fixedly installed on the toothed slide 211 and the bottom of the slider, and the two sliders 213 pass through the corresponding third slide grooves 212, and a connecting plate 214 is fixedly installed on the bottom of the two sliders 213. The cutting device 4 includes a second electric telescopic rod 401, a fixing plate 402 is fixedly installed at the bottom of the electric telescopic rod 401, a mounting plate 403 is symmetrically fixedly installed at the bottom of the fixing plate 402, a rotating shaft 404 is provided on the inner side of the mounting plate 403, and a cutting disc 405 is provided on the outer wall of the rotating shaft 404. A control panel 5 is provided on the front of the second adjustment frame 202, support legs 6 are fixedly installed at the four corners of the bottom of the workbench 1, universal wheels 7 are provided at the bottom of the four support legs 6, and a protective pad 8 is provided on the top of the workbench 1.

[0024] In this embodiment, when it is necessary to adjust the cutting device 4 in multiple directions, the adjustment mechanism 2 is provided to first adjust the depth direction of the cutting device 4, and then start the first motor 204. The first motor 204 rotates the threaded rod 205, thereby driving the crossbeam 206 to slide in the first slide groove 203. When it reaches the appropriate position, the first motor is turned off, and then the lateral direction of the cutting device 4 is adjusted. The second motor 208 is started, and the second motor 208 rotates the gear 209, thereby driving the toothed slide 211 meshed with the gear 209 to slide horizontally in the second slide groove 210, thereby driving the slider 213 fixedly connected to the toothed slide 211 to slide in the third slide groove 212. Since the bottoms of the two sliders 213 are fixedly connected by the connecting plate 214, the cutting device 4 installed at the bottom of the connecting plate is driven to move horizontally together. When it reaches the appropriate position, the second motor 208 is turned off, thereby achieving the effect of adjusting the cutting device 4 in multiple directions, thereby improving the adaptability of the device in dealing with optical glasses of different types and specifications, reducing production costs, and alleviating the workload and error probability of the operator.

[0025] Example 2: Figure 1-Figure 5 As shown, the four fixing mechanisms 3 include a first cylinder 301, a first telescopic rod 302 is provided at the output end of the first cylinder 301, a fixed block 303 is fixedly installed at one end of the first telescopic rod 302, a first electric telescopic rod 304 is fixedly installed at the bottom of the fixed block 303, and a fixed suction cup 305 is fixedly installed at the bottom of the first electric telescopic rod 304.

[0026] In this embodiment, when the optical glass needs to be fixed on the workbench 1, the optical glass is first placed on the workbench 1, and then the first cylinder 301 is started. The first cylinder 301 works, driving the first telescopic rod 302 to work, thereby driving the fixed block 303 to move, so that the fixing mechanism 3 reaches a suitable position according to the specifications of the optical glass, and then the first electric telescopic rod 304 is started to work, driving the fixed suction cup 305 fixed at its bottom to move downward, so that the fixed suction cup 305 firmly fixes the optical glass on the protective pad 8, so that during the cutting process, the optical glass maintains a stable position, ensuring processing accuracy, protecting the glass material, and thus improving processing efficiency.

[0027] The working principle of this embodiment is as follows: when in use, first place the optical glass on the workbench 1, then start the first cylinder 301, the first cylinder 301 works, drives the first telescopic rod 302 to work, thereby drives the fixed block 303 to move, so that the fixing mechanism 3 reaches a suitable position according to the specifications of the optical glass, then starts the first electric telescopic rod 304 to work, drives the fixed suction cup 305 fixed at its bottom to move downward, so that the fixed suction cup 305 firmly fixes the optical glass on the protective pad 8, so that during the cutting process, the optical glass maintains a stable position, ensures processing accuracy, protects the glass material, and thus improves processing efficiency, then when it is necessary to adjust the cutting device 4 in multiple directions, first adjust the depth direction of the cutting device 4 through the provided adjustment mechanism 2, start the first motor 204, the first motor 204 works to rotate the threaded rod 205, The crossbeam 206 is driven to slide in the first slide groove 203. When it reaches the appropriate position, the first motor is turned off, and then the lateral direction of the cutting device 4 is adjusted, and the second motor 208 is started. The operation of the second motor 208 causes the gear 209 to rotate, thereby driving the toothed slide 211 meshing with the gear 209 to slide horizontally in the second slide groove 210, thereby driving the slider 213 fixedly connected to the toothed slide 211 to slide in the third slide groove 212. Since the bottoms of the two sliders 213 are fixedly connected by the connecting plate 214, the cutting device 4 installed at the bottom of the connecting plate is driven to move horizontally together. When it reaches the appropriate position, the second motor 208 can be turned off, thereby achieving the effect of multi-directional adjustment of the cutting device 4, thereby improving the adaptability of the device in dealing with optical glasses of different types and specifications, reducing production costs, and alleviating the operator's workload and the probability of error.

[0028] The above description is only a preferred embodiment of the present invention and does not limit the present invention in any other form. Any technician familiar with the profession may use the technical content disclosed above to change or modify it into an equivalent embodiment with equivalent changes for application in other fields. However, any simple modification, equivalent change and modification of the above embodiment made according to the technical essence of the present invention without departing from the content of the technical solution of the present invention shall still fall within the scope of protection of the technical solution of the present invention.

Claims

1. A cutting device for optical glass processing, comprising a workbench (1), characterized in that: An adjusting mechanism (2) is provided on the top of the workbench (1), fixing mechanisms (3) are symmetrically provided on both sides of the adjusting mechanism (2), and a cutting device (4) is provided at the bottom of the adjusting mechanism (2); The regulating mechanism (2) comprises a first regulating frame (201) and a second regulating frame (202), wherein a first sliding groove (203) is provided on the inner top of the first regulating frame (201), a first motor (204) is provided on the front of the first regulating frame (201), a threaded rod (205) is provided at the output end of the first motor (204), a crossbeam (206) is slidably mounted on the inner sides of the first regulating frame (201) and the second regulating frame (202), a fixing frame (207) is fixedly mounted on the top of the crossbeam (206), a second motor (208) is fixedly mounted on the inner sides of the two fixing frames (207), and a screw thread is provided at the output end of the second motor (208). Gear (209), the inner side of the crossbeam (206) is symmetrically provided with a second slide groove (210), wherein a toothed slide bar (211) is slidably installed on the inner side of one of the second slide grooves (210), and the toothed slide bar (211) is meshed and connected with the gear (209), and a slide bar is movably installed on the inner side of the other second slide groove (210), and a third slide groove (212) is provided at the bottom of the two second slide grooves (210), and a slider (213) is fixedly installed at the bottom of the toothed slide bar (211) and the slider, and the two sliders (213) pass through the corresponding third slide grooves (212), and a connecting plate (214) is fixedly installed at the bottom of the two sliders (213).

2. The cutting device for optical glass processing according to claim 1, characterized in that: The four fixing mechanisms (3) include a first cylinder (301), an output end of the first cylinder (301) is provided with a first telescopic rod (302), one end of the first telescopic rod (302) is fixedly mounted with a fixing block (303), a bottom of the fixing block (303) is fixedly mounted with a first electric telescopic rod (304), and a fixing suction cup (305) is fixedly mounted with the bottom of the first electric telescopic rod (304).

3. The cutting device for optical glass processing according to claim 1, characterized in that: The cutting device (4) comprises a second electric telescopic rod (401), a fixing plate (402) being fixedly mounted on the bottom of the electric telescopic rod (401), a mounting plate (403) being symmetrically fixedly mounted on the bottom of the fixing plate (402), a rotating shaft (404) being provided on the inner side of the mounting plate (403), and a cutting disc (405) being provided on the outer wall of the rotating shaft (404).

4. The cutting device for optical glass processing according to claim 1, characterized in that: A control panel (5) is provided on the front of the second adjustment frame (202).

5. The cutting device for optical glass processing according to claim 1, characterized in that: Support legs (6) are fixedly mounted at the four corners of the bottom of the workbench (1), and universal wheels (7) are provided at the bottoms of the four support legs (6).

6. The cutting device for optical glass processing according to claim 1, characterized in that: A protective pad (8) is provided on the top of the workbench (1).

Citation Information

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