CN223189110U - Cutting device for optical glass processing - Google Patents

Cutting device for optical glass processing

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Publication number
CN223189110U
CN223189110U CN202422753934.4U CN202422753934U CN223189110U CN 223189110 U CN223189110 U CN 223189110U CN 202422753934 U CN202422753934 U CN 202422753934U CN 223189110 U CN223189110 U CN 223189110U
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CN
China
Prior art keywords
optical glass
cutting device
fixing
telescopic rod
sliding
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Active
Application number
CN202422753934.4U
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Chinese (zh)
Inventor
骆得胜
杨承芝
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Wuhan Licheng Optical Instrument Co ltd
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Wuhan Licheng Optical Instrument Co ltd
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Application filed by Wuhan Licheng Optical Instrument Co ltd filed Critical Wuhan Licheng Optical Instrument Co ltd
Priority to CN202422753934.4U priority Critical patent/CN223189110U/en
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Publication of CN223189110U publication Critical patent/CN223189110U/en
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Abstract

The utility model provides a cutting device for processing optical glass, which relates to the technical field of cutting machines and comprises a workbench, wherein an adjusting mechanism is arranged at the top of the workbench, fixing mechanisms are symmetrically arranged at two sides of the inside of the adjusting mechanism, and a cutting device is arranged at the bottom of the adjusting mechanism. According to the utility model, the cutting device is adjusted in multiple directions through the adjusting mechanism, so that the adaptability of the device in coping with optical glass of different types and specifications is improved, the production cost is reduced, the workload of operators and the error probability are reduced, and the optical glass is fixed on the workbench through the fixing mechanism, so that the fixing mechanism reaches a proper position according to the specifications of the optical glass, and the optical glass is firmly fixed on the protection pad through the fixing sucker, so that the optical glass keeps a stable position in the cutting process, the processing precision is ensured, and the glass material is protected, thereby improving the processing efficiency.

Description

Cutting device for optical glass processing
Technical Field
The utility model relates to the technical field of cutting machines, in particular to a cutting device for processing optical glass.
Background
In the current technical and industrial fields, optical glass is widely applied to various high-tech products such as optical instruments, display screens of electronic products, camera lenses and the like due to the unique optical performance, and with the continuous increase of the demand for the optical glass, the requirements on the processing quality and the processing efficiency of the optical glass are also increasing. The conventional optical glass cutting method often has some limitations, such as low manual cutting precision and poor consistency, and is difficult to meet the production requirements of high-precision optical elements, while some common mechanical cutting devices may damage the optical glass in the cutting process, such as cracking, edge breakage and other problems, so as to influence the performance and quality of the optical glass, and in addition, with the continuous progress of technology, the types and specifications of optical glass are also becoming more and more diversified, and higher requirements are being put on the adaptability and flexibility of the cutting device, and different types of optical glass may have different hardness, thickness and shape, so that the cutting device needs to be adjusted and optimized according to specific material characteristics, and in order to overcome these problems, the cutting device specially used for optical glass processing is particularly important.
However, the existing cutting device for processing the optical glass can only adjust the cutting disc in one direction, and cannot meet the adjustment requirements of multiple angles and multiple directions, so that the adaptability of the device in coping with the optical glass of different types and specifications is greatly reduced, a great deal of time and energy are consumed, the production cost is increased, and the workload of operators and the error probability can be increased due to frequent adjustment.
Disclosure of utility model
The utility model aims to solve the problems that in the prior art, a cutting disc can be adjusted in one direction only, and the requirements of multi-angle and multi-azimuth adjustment cannot be met.
In order to achieve the aim, the cutting device for processing the optical glass comprises a workbench, wherein the top of the workbench is provided with an adjusting mechanism, two sides of the inside of the adjusting mechanism are provided with fixing mechanisms, and the bottom of the adjusting mechanism is provided with the cutting device;
The adjusting mechanism comprises a first adjusting frame and a second adjusting frame, wherein a first sliding groove is formed in the top of the inner side of the first adjusting frame, a first motor is arranged on the front face of the first adjusting frame, a threaded rod is arranged at the output end of the first motor, a cross beam is arranged in the side inner sliding mode of the first adjusting frame and the second adjusting frame, a fixing frame is fixedly arranged at the top of the cross beam, two fixing frames are fixedly provided with a second motor, gears are arranged at the output end of the second motor, second sliding grooves are symmetrically formed in the inner side of the cross beam, one of the second sliding grooves is provided with a toothed sliding strip in a sliding mode, the other toothed sliding strip is connected with the gears in a meshed mode, a sliding strip is movably arranged in the inner side of the second sliding groove, a third sliding groove is formed in the bottom of the second sliding groove, a sliding block is fixedly arranged at the bottom of the toothed sliding strip and the sliding strip, the sliding block penetrates through the corresponding third sliding groove, and a connecting plate is fixedly arranged at the bottom of the sliding block.
Preferably, the four fixing mechanisms comprise a first air cylinder, a first telescopic rod is arranged at the output end of the first air cylinder, a fixing block is fixedly arranged at one end of the first telescopic rod, a first electric telescopic rod is fixedly arranged at the bottom of the fixing block, and a fixing sucker is fixedly arranged at the bottom of the first electric telescopic rod.
Preferably, the cutting device comprises a second electric telescopic rod, a fixing plate is fixedly arranged at the bottom of the electric telescopic rod, a mounting plate is symmetrically and fixedly arranged at the bottom of the fixing plate, a rotating shaft is arranged on the inner side of the mounting plate, and a cutting disc is arranged on the outer wall of the rotating shaft.
Preferably, a control panel is arranged on the front surface of the second adjusting frame.
Preferably, supporting legs are fixedly arranged at four corners of the bottom of the workbench, and universal wheels are arranged at the bottoms of the four supporting legs.
Preferably, a protection pad is arranged at the top of the workbench.
Compared with the prior art, the utility model has the advantages and positive effects that,
1. According to the utility model, the cutting device is adjusted in multiple directions through the adjusting mechanism, the depth direction of the cutting device is adjusted first, the first motor is started, the first motor works to enable the threaded rod to rotate, the cross beam is driven to slide in the first sliding groove, when the cross beam reaches a proper position, the first motor is closed, then the transverse direction of the cutting device is adjusted, the second motor is started, the second motor works to enable the gear to rotate, the toothed sliding strip meshed with the gear is driven to slide transversely in the second sliding groove, the sliding blocks fixedly connected with the toothed sliding strip are driven to slide in the third sliding groove, the bottoms of the two sliding blocks are fixedly connected through the connecting plate, the cutting device arranged at the bottom of the connecting plate is driven to move transversely together, and when the cutting device reaches the proper position, the second motor is closed, so that the effect of regulating the cutting device in multiple directions is achieved, the adaptability of the device when the optical glass of different types and specifications is met is improved, the production cost is reduced, and the workload and the error probability of operators are lightened.
2. According to the utility model, when the optical glass is fixed on the workbench, the optical glass is firstly placed on the workbench, then the first cylinder is started, the first cylinder works to drive the first telescopic rod to work so as to drive the fixing block to move, so that the fixing mechanism reaches a proper position according to the specification of the optical glass, then the first electric telescopic rod is started to work so as to drive the fixing sucker fixed at the bottom of the fixing mechanism to move downwards, and the fixing sucker is enabled to firmly fix the optical glass on the protection pad, so that the optical glass keeps a stable position in the cutting process, the processing precision is ensured, the glass material is protected, and the processing efficiency is improved.
Drawings
Fig. 1 is a schematic perspective view of a cutting device for processing optical glass according to the present utility model;
FIG. 2 is a schematic diagram showing the front structure of a cutting device for processing optical glass according to the present utility model;
FIG. 3 is a schematic diagram showing the structure of an adjusting mechanism of a cutting device for processing optical glass according to the present utility model;
Fig. 4 is a schematic view showing another angle structure of an adjusting mechanism of a cutting device for processing optical glass according to the present utility model.
Fig. 5 is a schematic structural view of a fixing mechanism of a cutting device for processing optical glass according to the present utility model.
The legend is 1, a workbench, 2, an adjusting mechanism, 201, a first adjusting frame, 202, a second adjusting frame, 203, a first sliding groove, 204, a first motor, 205, a threaded rod, 206, a cross beam, 207, a fixing frame, 208, a second motor, 209, gears, 210, a second sliding groove, 211, a toothed sliding bar, 212, a third sliding groove, 213, a sliding block, 214, a connecting plate, 3, a fixing mechanism, 301, a first cylinder, 302, a first telescopic rod, 303, a fixing block, 304, a first electric telescopic rod, 305, a fixing sucker, 4, a cutting device, 401, a second electric telescopic rod, 402, a fixing plate, 403, a mounting plate, 404, a rotating shaft, 405, a cutting disc, 5, a control panel, 6, a supporting leg, 7, a universal wheel, 8 and a protection pad.
Detailed Description
In order that the above objects, features and advantages of the utility model will be more clearly understood, a further description of the utility model will be rendered by reference to the appended drawings and examples. It should be noted that, without conflict, the embodiments of the present utility model and features in the embodiments may be combined with each other.
In the following description, numerous specific details are set forth in order to provide a thorough understanding of the present utility model, but the present utility model may be practiced otherwise than as described herein, and therefore the present utility model is not limited to the specific embodiments of the disclosure that follow.
1-5, The utility model provides a technical scheme, which comprises a workbench 1, wherein an adjusting mechanism 2 is arranged at the top of the workbench 1, fixing mechanisms 3 are symmetrically arranged at two sides of the inside of the adjusting mechanism 2, a cutting device 4 is arranged 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 sliding groove 203 is formed in the top of the inner side of the first adjusting frame 201, a first motor 204 is arranged on the front surface of the first adjusting frame 201, a threaded rod 205 is arranged at the output end of the first motor 204, a cross beam 206 is slidably arranged at the inner sides of the first adjusting frame 201 and the second adjusting frame 202, a fixing frame 207 is fixedly arranged at the top of the cross beam 206, a second motor 208 is fixedly arranged at the inner sides of the two fixing frames 207, a gear 209 is arranged at the output end of the second motor 208, a second sliding groove 210 is symmetrically arranged at the inner side of the cross beam 206, a toothed sliding bar 211 is connected with the top of the inner side of the first adjusting frame 201, a first sliding bar 211 is meshed with the gear 209, two sliding bars 213 are fixedly arranged at the bottoms of the second sliding bars 212 and the corresponding sliding bars 213 are fixedly arranged at the bottoms of the two sliding bars 213. The cutting device 4 comprises 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 and fixedly installed at the bottom of the fixing plate 402, a rotating shaft 404 is arranged on the inner side of the mounting plate 403, a cutting disc 405 is arranged on the outer wall of the rotating shaft 404, a control panel 5 is arranged on the front face of the second adjusting frame 202, supporting legs 6 are fixedly installed at four corners of the bottom of the workbench 1, universal wheels 7 are arranged at the bottoms of the four supporting legs 6, and a protection pad 8 is arranged at the top of the workbench 1.
In this embodiment, when the cutting device 4 needs to be adjusted in multiple directions, through the adjusting mechanism 2, the depth direction of the cutting device 4 is adjusted first, the first motor 204 is started, the first motor 204 works to enable the threaded rod 205 to rotate, thereby driving the cross beam 206, slide in the first chute 203, when reaching a proper position, the first motor is closed, then the transverse direction of the cutting device 4 is adjusted, the second motor 208 is started, the second motor 208 works to enable the gear 209 to rotate, thereby driving the toothed slide bar 211 meshed with the gear 209 to slide in the second chute 210 in the transverse direction, thereby driving the slide blocks 213 fixedly connected with the toothed slide bar 211 to slide in the third chute 212, and as the bottoms of the two slide blocks 213 are fixedly connected through the connecting plate 214, thereby driving the cutting device 4 mounted at the bottom of the connecting plate to move together in the transverse direction, when reaching the proper position, the second motor 208 is closed, thereby achieving the effect of adjusting the cutting device 4 in multiple directions, thereby improving the adaptability of the device when coping with optical glasses of different types and specifications, reducing the production cost, and reducing the workload and error probability of operators.
Embodiment 2 As shown in fig. 1-5, the four fixing mechanisms 3 comprise a first air cylinder 301, a first telescopic rod 302 is arranged at the output end of the first air cylinder 301, a fixing block 303 is fixedly arranged at one end of the first telescopic rod 302, a first electric telescopic rod 304 is fixedly arranged at the bottom of the fixing block 303, and a fixing sucker 305 is fixedly arranged at the bottom of the first electric telescopic rod 304.
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, then the first cylinder 301 is started, the first cylinder 301 works to drive the first telescopic rod 302 to work so as to drive the fixing block 303 to move, so that the fixing mechanism 3 reaches a proper position according to the specification of the optical glass, then the first electric telescopic rod 304 is started to work so as to drive the fixing sucker 305 fixed at the bottom of the fixing mechanism to move downwards, so that the fixing sucker 305 firmly fixes the optical glass on the protection pad 8, and therefore, in the cutting process, the optical glass keeps a stable position, the processing precision is ensured, the glass material is protected, and the processing efficiency is improved.
The working principle of the embodiment is as follows: when in use, firstly, the optical glass is placed on the workbench 1, then the first air cylinder 301 is started, the first air cylinder 301 works to drive the first telescopic rod 302 to work so as to drive the fixed block 303 to move, thus the fixed mechanism 3 reaches a proper position according to the specification of the optical glass, then the first electric telescopic rod 304 is started to work to drive the fixed sucker 305 fixed at the bottom of the fixed block to move downwards, thus the fixed sucker 305 firmly fixes the optical glass on the protective pad 8, during the cutting process, the optical glass keeps a stable position, the processing precision is ensured, the glass material is protected, the processing efficiency is improved, then when the cutting device 4 needs to be adjusted in multiple directions, the longitudinal direction of the cutting device 4 is firstly adjusted by the adjusting mechanism 2, the first motor 204 is started, the first motor 204 works to rotate the threaded rod 205, thereby driving the cross beam 206 to slide in the first sliding groove 203, closing the first motor when the proper position is reached, then adjusting the transverse direction of the cutting device 4, starting the second motor 208, enabling the gear 209 to rotate by the second motor 208, thereby driving the toothed sliding bar 211 meshed with the gear 209 to slide transversely in the second sliding groove 210, driving the sliding blocks 213 fixedly connected with the toothed sliding bar 211 to slide in the third sliding groove 212, driving the cutting device 4 arranged at the bottom of the connecting plate to move transversely together due to the fixed connection of the bottoms of the two sliding blocks 213 through the connecting plate 214, closing the second motor 208 when the proper position is reached, thereby achieving the effect of adjusting the cutting device 4 in multiple directions, improving the adaptability of the device when coping with different types and specifications of optical glass, reducing the production cost, the workload of operators and the probability of errors are reduced.
The present utility model is not limited to the above-mentioned embodiments, and any equivalent embodiments which can be changed or modified by the technical content disclosed above can be applied to other fields, but any simple modification, equivalent changes and modification made to the above-mentioned embodiments according to the technical substance of the present utility model without departing from the technical content of the present utility model still belong to the protection scope of the technical solution of the present utility model.

Claims (6)

1. The cutting device for processing the optical glass comprises a workbench (1) and is characterized in that an adjusting mechanism (2) is arranged at the top of the workbench (1), fixing mechanisms (3) are symmetrically arranged at two sides of the inside of the adjusting mechanism (2), and a cutting device (4) is arranged 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 sliding groove (203) is formed in the top of the inner side of the first adjusting frame (201), a first motor (204) is arranged on the front surface of the first adjusting frame (201), a threaded rod (205) is arranged at the output end of the first motor (204), a cross beam (206) is slidably arranged in the inner sides of the first adjusting frame (201) and the second adjusting frame (202), a fixing frame (207) is fixedly arranged at the top of the cross beam (206), a second motor (208) is fixedly arranged at the inner sides of the two fixing frames (207), a gear (209) is arranged at the output end of the second motor (208), a second sliding groove (210) is symmetrically formed in the inner side of the cross beam (206), a toothed sliding bar (211) is slidably arranged in the inner side of one second sliding groove (210), the toothed sliding bar (211) is in meshed connection with the gear (209), a movable mounting of the inner side of the second sliding groove (210), two sliding bars (212) are movably mounted at the inner sides of the second sliding groove (210), two sliding bars (212) are correspondingly arranged at the bottom of the second sliding bar (212), the bottom of the second sliding bar (212) is correspondingly provided with a third sliding bar (213), the bottoms of the two sliding blocks (213) are fixedly provided with connecting plates (214).
2. The cutting device for optical glass processing according to claim 1, wherein the four fixing mechanisms (3) comprise a first air cylinder (301), a first telescopic rod (302) is arranged at the output end of the first air cylinder (301), a fixing block (303) is fixedly arranged at one end of the first telescopic rod (302), a first electric telescopic rod (304) is fixedly arranged at the bottom of the fixing block (303), and a fixing sucker (305) is fixedly arranged at the bottom of the first electric telescopic rod (304).
3. The cutting device for optical glass processing according to claim 1, wherein the cutting device (4) comprises 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 and fixedly installed at the bottom of the fixing plate (402), a rotating shaft (404) is arranged on the inner side of the mounting plate (403), and a cutting disc (405) is arranged on the outer wall of the rotating shaft (404).
4. The cutting device for optical glass processing according to claim 1, wherein the second adjusting frame (202) is provided with a control panel (5) on the front surface thereof.
5. The cutting device for optical glass processing according to claim 1, wherein supporting legs (6) are fixedly arranged at four corners of the bottom of the workbench (1), and universal wheels (7) are arranged at the bottoms of the four supporting legs (6).
6. The cutting device for optical glass processing according to claim 1, wherein a protection pad (8) is arranged on the top of the workbench (1).
CN202422753934.4U 2024-11-12 2024-11-12 Cutting device for optical glass processing Active CN223189110U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422753934.4U CN223189110U (en) 2024-11-12 2024-11-12 Cutting device for optical glass processing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422753934.4U CN223189110U (en) 2024-11-12 2024-11-12 Cutting device for optical glass processing

Publications (1)

Publication Number Publication Date
CN223189110U true CN223189110U (en) 2025-08-05

Family

ID=96569395

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422753934.4U Active CN223189110U (en) 2024-11-12 2024-11-12 Cutting device for optical glass processing

Country Status (1)

Country Link
CN (1) CN223189110U (en)

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