Intelligent manufacturing polishing device for machining glass holes
By linking the clamping device and the cleaning and recycling device, the shortcomings of the glass hole polishing device in clamping and fixing and debris removal are solved, realizing the stable fixing and safe cleaning of the glass plate, and improving processing efficiency and safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- 海安明光光学玻璃科技有限公司
- Filing Date
- 2026-02-26
- Publication Date
- 2026-04-21
AI Technical Summary
Existing glass hole polishing devices cannot effectively protect the glass plate when clamping and fixing it, and their cleaning and safety are insufficient, affecting processing efficiency and safety.
The clamping device, including a flexible telescopic pressure plate, a limiting plate, a connecting rod, a rotating rod, and other linkage structures, achieves stable fixation of the glass plate and protection against debris; combined with components such as toothed plates, gears, and scrapers, it forms an automatic cleaning and recycling device to achieve rapid cleaning and collection of debris.
It achieves stable fixation of the glass plate, prevents debris from flying out, improves processing safety and equipment stability, ensures a safe working environment, and provides efficient debris removal, reducing equipment damage.
Smart Images

Figure CN121893134A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of glass hole polishing technology, specifically to a smart manufacturing polishing device for processing glass holes. Background Technology
[0002] The polishing device for processing glass holes in intelligent manufacturing is a processing machine used to grind and polish holes in glass plates, and is designed to protect the glass plate during grinding and polishing.
[0003] Patent publication number CN219152354U includes a motor spindle and a cross-shaped abrasive clamp. The cross-shaped abrasive clamp includes a drive shaft and cross-shaped abrasives, a first abrasive fastening nut, and a second abrasive fastening nut assembled on the drive shaft. The cross-shaped abrasives include a first abrasive and a second abrasive. The lower end of the motor spindle is connected to the upper end of the drive shaft. The drive shaft has a first through groove and a second through groove that intersect each other. Both the first through groove and the second through groove are formed by indentation upward from the lower end surface of the drive shaft. The first abrasive and the second abrasive are respectively inserted into the first through groove and the second through groove. The first abrasive fastening nut and the second abrasive fastening nut together lock the cross-shaped abrasive to the drive shaft. The polishing device of this patent has the advantages of good polishing effect, high polishing efficiency, and stable structure.
[0004] In the aforementioned patent, the polishing device has the advantages of good polishing effect, high polishing efficiency and stable structure, but there are still problems. It cannot effectively and quickly clamp and fix the glass plate during grinding and polishing, and it is also difficult to ensure the protection of the glass plate during clamping. The machine needs to be cleaned before grinding and polishing, which wastes a lot of time and cannot effectively protect the safety of the operators. Summary of the Invention
[0005] To address the shortcomings of existing technologies, this invention provides a smart manufacturing polishing device for processing glass holes, solving the problems mentioned in the background section.
[0006] To achieve the above objectives, the present invention provides the following technical solution: a smart manufacturing polishing device for processing glass holes, comprising a frame, a clamping device for quickly clamping a glass plate, the clamping device further comprising; A punching device is provided on the top of a frame, and a machine platform is provided on the top of the frame. A limiting plate is slidably installed inside the machine tool. A connecting rod is fixedly installed on the front of the limiting plate, and a pressure rod is fixedly installed on the other end of the connecting rod. A rotating rod is rotatably installed on the front of the machine tool. A baffle is slidably installed inside the machine tool to protect the grinding point and prevent glass fragments from flying out. When the drilling device moves downward, it will drive the square plate to move. When the square plate moves, it will drive the elastic telescopic pressure plate to move. When the elastic telescopic pressure plate moves, it will contact the limiting plate.
[0007] According to the above technical solution, the clamping device further includes a square plate, an elastic telescopic pressure plate, and a round rod. One end of the square plate is fixedly installed at the output end of the drilling device, the elastic telescopic pressure plate is fixedly installed at the bottom of the other end of the square plate, and the round rod is fixedly installed on the front of the baffle. When the elastic telescopic pressure plate contacts the limiting plate, it will cause the limiting plate to move. When the limiting plate moves, it will limit and fix the glass plate. At the same time, the elasticity of the elastic telescopic pressure plate can prevent the pressure of the limiting plate from crushing the glass plate.
[0008] According to the above technical solution, the pressure rod is in contact with the rotating rod, the rotating rod is in contact with the round rod, and the elastic telescopic pressure plate is in contact with the limiting plate; The machine is equipped with a cleaning device inside for quickly removing the debris from the polished glass rod and a recycling device at the bottom of the frame for collecting the debris. When the connecting rod moves, it drives the pressure rod to move. When the pressure rod moves, it squeezes one end of the rotating rod. When one end of the rotating rod is squeezed, it drives the other end of the rotating rod to rotate.
[0009] According to the above technical solution, the cleaning device includes a toothed plate, a gear, a cylindrical rod, a slider, and a scraper. The toothed plate is fixedly installed on the right side of the limiting plate, the gear is rotatably installed on the right side of the machine base, the cylindrical rod is fixedly installed on the side of the gear near the machine base, a reciprocating spiral groove is formed on the circumferential surface of the cylindrical rod, the slider is slidably installed inside the reciprocating spiral groove of the cylindrical rod, and the scraper is fixedly installed on the back of the slider. When the gear rotates, it will drive the cylindrical rod to rotate. The cylindrical rod has a self-locking function. When the cylindrical rod rotates, it will drive the slider to move. When the slider moves, it will drive the scraper to move.
[0010] According to the above technical solution, the cleaning device further includes an elastic telescopic L-block and a telescopic plate. One end of the elastic telescopic L-block is fixedly installed on the side of the baffle near the gear. The fixed end of the telescopic plate is fixedly installed on the top of the frame. When the scraper moves, it will scrape the top of the telescopic plate. When the scraper moves, it will scrape the glass shards on the top of the telescopic plate to the bottom. When the baffle moves, it will drive the elastic telescopic L-block to move.
[0011] According to the above technical solution, the elastic telescopic L-block contacts the telescopic plate, and the toothed plate meshes with the gear. When the elastic telescopic L-block moves, it will drive the telescopic plate to move. At the same time, the elastic telescopic L-block has elastic telescopic properties, so the telescopic plate can avoid damaging the scraper.
[0012] According to the above technical solution, the recycling device includes a small piece, an elliptical ring, an irregular plate, a rotating plate, a telescopic rod, a collection box, and a hollow plate. The small piece is fixedly installed on the side of the gear near the drilling device. The elliptical ring is slidably installed on the circumferential surface of the small piece. The irregular plate is fixedly installed on the bottom of the elliptical ring. The rotating plate is rotatably installed inside the frame. The fixed end of the telescopic rod is rotatably installed on the bottom of the rotating plate. The collection box is slidably installed inside the frame. The hollow plate is slidably installed inside the collection box. The telescopic rod is slidably installed with the hollow plate. When the elliptical ring moves, it will drive the irregular plate to move. When the irregular plate moves, it will press the rotating plate, causing the residual glass fragments on the rotating plate to fall off. At the same time, when the rotating plate moves, it will drive the telescopic rod to move.
[0013] According to the above technical solution, the irregular plate is in contact with the rotating plate, and the collection box is in contact with the hollow plate. When the hollow plate moves, it will make the glass fragments inside the collection box smoother, so that the space inside the collection box can be maximized. At the same time, the rotating plate rotates through the contact of the irregular plate.
[0014] This invention provides a smart manufacturing polishing apparatus for processing glass holes. It offers the following advantages: (1) This invention, through the elastic properties of the elastic telescopic pressure plate, can prevent the pressure of the limiting plate from crushing the glass plate when the limiting plate is used to limit and fix the glass plate, thus taking into account both the stability of the fixation and the integrity of the glass. When the limiting plate moves, the linkage of the connecting rod, the pressure rod, the rotating rod and the round rod drives the baffle to move, forming a protection for the grinding point, preventing glass fragments from flying out, and ensuring the safety of the working environment and personnel.
[0015] (2) In this invention, when the toothed plate moves upward, the linkage gear, the long rod, and the slider drive the scraper to move, which can scrape the glass shards on the top of the telescopic plate to the bottom, realize automatic cleaning of the shards, avoid the accumulation of shards affecting the processing, and improve stability and safety. The elastic telescopic L-block's elastic telescopic characteristics can prevent the telescopic plate from damaging the scraper and protect the equipment parts. At the same time, when it moves upward, it pushes the glass plate to realize secondary fixation of the glass plate, enhances the stability during processing, and prevents the glass from shifting.
[0016] (3) The invention uses the linkage of small pieces, elliptical rings and irregular plates to press the rotating plate, which can make the glass shards remaining on the rotating plate fall off, preventing the shards from adhering and accumulating and affecting the operation of the equipment. The rotating plate drives the telescopic rod and hollow plate to move, which can not only sort the shards in the collection box to make it flat, but also make the collection box vibrate through the rebound of the rotating plate, so that the shards are filled more densely and make full use of the internal space. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the overall structure of the present invention; Figure 2 This is a schematic diagram of the limiting plate and rotating rod structure of the present invention; Figure 3 This is a schematic diagram of the connecting rod and compression rod structure of the present invention; Figure 4 This is a schematic diagram of the baffle and telescopic plate structure of the present invention; Figure 5 This is a schematic diagram of the circular rod and telescopic plate structure of the present invention; Figure 6 This is a schematic diagram of the rotating plate and telescopic rod structure of the present invention; Figure 7 This is a schematic diagram of the overall structure of the toothed plate of the present invention.
[0018] In the diagram: 1. Frame; 2. Drilling device; 3. Machine base; 301. Square plate; 302. Elastic telescopic pressure plate; 303. Limiting plate; 304. Connecting rod; 305. Pressure rod; 306. Rotating rod; 307. Round rod; 308. Baffle; 401. Toothed plate; 402. Gear; 403. Round long rod; 404. Slider; 405. Scraper; 406. Elastic telescopic L-block; 407. Telescopic plate; 501. Small block; 502. Elliptical ring; 503. Irregular plate; 504. Rotating plate; 505. Telescopic rod; 506. Collection box; 507. Hollow plate. Detailed Implementation
[0019] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0020] Please see Figures 1-7 One embodiment of the present invention is: a smart manufacturing polishing device for processing glass holes, including a frame 1, a clamping device for quickly clamping a glass plate, the clamping device further comprising; A punching device 2 is installed on the top of the frame 1, and a machine platform 3 is installed on the top of the frame 1. A limiting plate 303 is slidably installed inside the machine base 3. A connecting rod 304 is fixedly installed on the front of the limiting plate 303, and a pressure rod 305 is fixedly installed on the other end of the connecting rod 304. A rotating rod 306 is rotatably installed on the front of the machine base 3. A baffle 308 is slidably installed inside the machine base 3. The baffle 308 is used to protect the grinding point from glass fragments flying out and to prevent the pressure of the limiting plate 303 from crushing the glass plate. It takes into account both the stability of the fixation and the integrity of the glass. When the limiting plate 303 moves, the linkage of the connecting rod 304, the pressure rod 305, the rotating rod 306, and the round rod 307 drives the baffle 308 to move, forming a protection for the grinding point, preventing glass fragments from flying out, and ensuring the safety of the working environment and personnel.
[0021] The clamping device also includes a square plate 301, an elastic telescopic pressure plate 302, and a round rod 307. One end of the square plate 301 is fixedly installed at the output end of the drilling device 2. The elastic telescopic pressure plate 302 is fixedly installed at the bottom of the other end of the square plate 301. The round rod 307 is fixedly installed on the front of the baffle 308. When the elastic telescopic pressure plate 302 contacts the limiting plate 303, the limiting plate 303 will move. When the limiting plate 303 moves, it will limit and fix the glass plate. At the same time, the elasticity of the elastic telescopic pressure plate 302 can prevent the pressure of the limiting plate 303 from crushing the glass plate.
[0022] The pressure rod 305 contacts the rotating rod 306, the rotating rod 306 contacts the round rod 307, and the elastic telescopic pressure plate 302 contacts the limiting plate 303. When the connecting rod 304 moves, it will drive the pressure rod 305 to move. When the pressure rod 305 moves, it will squeeze one end of the rotating rod 306. When one end of the rotating rod 306 is squeezed, it will drive the other end of the rotating rod 306 to rotate.
[0023] In this embodiment, during operation: the operator places the glass plate on the top of the machine platform 3 at the top of the frame 1, and starts the drilling device 2. When the drilling device 2 is started, it moves downward. When the drilling device 2 moves downward, it drives the square plate 301 to move. When the square plate 301 moves, it drives the elastic telescopic pressure plate 302 to move. When the elastic telescopic pressure plate 302 moves, it contacts the limiting plate 303. When the elastic telescopic pressure plate 302 contacts the limiting plate 303, it causes the limiting plate 303 to move. When the limiting plate 303 moves, it will limit and fix the glass plate. At the same time, the elasticity of the elastic telescopic pressure plate 302 can prevent the pressure of the limiting plate 303 from crushing the glass plate. When the limiting plate 303 moves, it will drive the connecting rod 304 to move. When the connecting rod 304 moves, it will drive the pressure rod 305 to move. When the pressure rod 305 moves, it will squeeze one end of the rotating rod 306. When one end of the rotating rod 306 is squeezed, it will cause the other end of the rotating rod 306 to rotate. When the other end of the rotating rod 306 rotates, it will cause the round rod 307 to move. When the round rod 307 moves, it will cause the baffle 308 to move. When the baffle 308 moves, it will protect the grinding point.
[0024] Please see Figures 1-7 Based on the above embodiments, in another embodiment of the present invention, the machine base 3 is provided with a cleaning device for quickly cleaning up the debris from the polished glass rod, and a recycling device for collecting the debris is provided at the bottom of the frame 1. The cleaning device includes a toothed plate 401, a gear 402, a round rod 403, a slider 404, and a scraper 405. The toothed plate 401 is fixedly installed on the right side of the limiting plate 303, the gear 402 is rotatably installed on the right side of the machine base 3, and the round rod 403 is fixedly installed on the gear 402. 2. On the side near the machine base 3, a reciprocating spiral groove is formed on the circumferential surface of the long cylindrical rod 403. The slider 404 is slidably installed inside the reciprocating spiral groove of the long cylindrical rod 403. The scraper 405 is fixedly installed on the back of the slider 404 to avoid the accumulation of debris affecting the processing and improve stability and safety. The elastic telescopic L-block 406 can prevent the telescopic plate 407 from damaging the scraper 405 and protect the equipment components. At the same time, when it moves upward, it pushes the glass plate to achieve secondary fixation of the glass plate, enhances the stability during processing, and prevents the glass from shifting.
[0025] The cleaning device also includes an elastic telescopic L-block 406 and a telescopic plate 407. One end of the elastic telescopic L-block 406 is fixedly installed on the side of the baffle 308 near the gear 402. The fixed end of the telescopic plate 407 is fixedly installed on the top of the frame 1. When the scraper 405 moves, it will scrape the top of the telescopic plate 407. When the scraper 405 moves, it will scrape the glass shards on the top of the telescopic plate 407 to the bottom. When the baffle 308 moves, it will drive the elastic telescopic L-block 406 to move.
[0026] The elastic telescopic L-block 406 contacts the telescopic plate 407, and the toothed plate 401 meshes with the gear 402. When the elastic telescopic L-block 406 moves, it will drive the telescopic plate 407 to move. At the same time, the elastic telescopic L-block 406 has elastic telescopic properties, so it can prevent the telescopic plate 407 from damaging the scraper 405.
[0027] The recycling device includes a small piece 501, an elliptical ring 502, an irregular plate 503, a rotating plate 504, a telescopic rod 505, a collection box 506, and a hollow plate 507. The small piece 501 is fixedly installed on the side of the gear 402 near the drilling device 2. The elliptical ring 502 is slidably installed on the circumferential surface of the small piece 501. The irregular plate 503 is fixedly installed on the bottom of the elliptical ring 502. The rotating plate 504 is rotatably installed inside the frame 1. The fixed end of the telescopic rod 505 is rotatably installed on the rotating plate. At the bottom of 504, the collection box 506 is slidably installed inside the frame 1, and the hollow plate 507 is slidably installed inside the collection box 506. The telescopic rod 505 is slidably installed with the hollow plate 507 to prevent debris from adhering and accumulating and affecting the operation of the equipment. The rotating plate 504 drives the telescopic rod 505 and the hollow plate 507 to move, which can not only sort the debris in the collection box 506 to make it flat, but also make the collection box 506 vibrate through the rebound of the rotating plate 504, so that the debris is filled more densely and the internal space is fully utilized.
[0028] The irregular plate 503 contacts the rotating plate 504, and the collection box 506 contacts the hollow plate 507. When the hollow plate 507 moves, it will make the glass shards inside the collection box 506 more even, so that the space inside the collection box 506 can be maximized. At the same time, the rotating plate 504 rotates through the contact of the irregular plate 503.
[0029] In this embodiment, when the limiting plate 303 moves, it will drive the toothed plate 401 to move. When the toothed plate 401 moves downward, it cannot make the gear 402 rotate. However, when the toothed plate 401 moves upward, it will drive the gear 402 to rotate. When the gear 402 rotates, it will drive the round rod 403 to rotate. The round rod 403 has a self-locking function. When the round rod 403 rotates, it will drive the slider 404 to move. When the slider 404 moves, it will drive the scraper 405 to move. When the scraper 405 moves, it will scrape the top of the telescopic plate 407. When the scraper 405 moves, it will scrape the glass shards on the top of the telescopic plate 407 to the bottom. When the baffle 308 moves, it will drive the elastic telescopic L block 406 to move. When the elastic telescopic L-block 406 moves, it will drive the telescopic plate 407 to move. At the same time, the elastic telescopic L-block 406 has elastic telescopic properties, so it can prevent the telescopic plate 407 from damaging the scraper 405. When the elastic telescopic L-block 406 moves upward, it will push the top glass plate and fix the glass plate a second time.
[0030] When small piece 501 moves, it will cause small piece 501 to rotate. When small piece 501 moves, it will cause elliptical ring 502 to move. When elliptical ring 502 moves, it will cause irregular plate 503 to move. When irregular plate 503 moves, it will press the rotating plate 504, causing the remaining glass fragments on the rotating plate 504 to fall off. At the same time, when the rotating plate 504 moves, it will drive the telescopic rod 505 to move. When the telescopic rod 505 moves, it will drive the hollow plate 507 inside the collection box 506 to move. When the hollow plate 507 moves, it will make the glass shards inside the collection box 506 more even, so that the space inside the collection box 506 can be utilized to the maximum extent. Meanwhile, since the rotating plate 504 rotates through contact with the irregular plate 503, when the irregular plate 503 leaves the rotating plate 504, the rotating plate 504 will bounce back upward, thereby driving the telescopic rod 505 and the hollow plate 507 to move, which in turn causes the collection box 506 to vibrate, allowing more glass shards to be filled inside the collection box 506.
[0031] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A smart manufacturing polishing apparatus for processing glass holes, comprising a frame (1), characterized in that: A clamping device for quickly clamping a glass plate, including a clamping device, the clamping device further comprising; A punching device (2) is provided on the top of a frame (1), and a machine platform (3) is provided on the top of the frame (1). A limiting plate (303) is slidably installed inside the machine base (3). A connecting rod (304) is fixedly installed on the front side of the limiting plate (303). A pressure rod (305) is fixedly installed on the other end of the connecting rod (304). A rotating rod (306) is rotatably installed on the front side of the machine base (3). A baffle (308) is slidably installed inside the machine base (3). The baffle (308) is used to protect the grinding point and prevent glass fragments from flying out.
2. The intelligent manufacturing polishing device for processing glass holes according to claim 1, characterized in that: The clamping device also includes a square plate (301), an elastic telescopic pressure plate (302), and a round rod (307). One end of the square plate (301) is fixedly installed at the output end of the punching device (2), the elastic telescopic pressure plate (302) is fixedly installed at the bottom of the other end of the square plate (301), and the round rod (307) is fixedly installed on the front of the baffle (308).
3. The intelligent manufacturing polishing device for processing glass holes according to claim 2, characterized in that: The pressure bar (305) is in contact with the rotating rod (306), the rotating rod (306) is in contact with the round rod (307), and the elastic telescopic pressure plate (302) is in contact with the limiting plate (303); The machine (3) is equipped with a cleaning device for quickly cleaning up the debris of the polished glass rod and a recycling device for collecting the debris is provided at the bottom of the frame (1).
4. The intelligent manufacturing polishing device for processing glass holes according to claim 3, characterized in that: The cleaning device includes a toothed plate (401), a gear (402), a round rod (403), a slider (404), and a scraper (405). The toothed plate (401) is fixedly installed on the right side of the limiting plate (303). The gear (402) is rotatably installed on the right side of the machine base (3). The round rod (403) is fixedly installed on the side of the gear (402) near the machine base (3). A reciprocating spiral groove is provided on the circumferential surface of the round rod (403). The slider (404) is slidably installed inside the reciprocating spiral groove of the round rod (403). The scraper (405) is fixedly installed on the back side of the slider (404).
5. A smart manufacturing polishing device for processing glass holes according to claim 4, characterized in that: The cleaning device also includes an elastic telescopic L-block (406) and a telescopic plate (407). One end of the elastic telescopic L-block (406) is fixedly installed on the side of the baffle (308) near the gear (402), and the fixed end of the telescopic plate (407) is fixedly installed on the top of the frame (1).
6. A smart manufacturing polishing device for processing glass holes according to claim 5, characterized in that: The elastic telescopic L-block (406) contacts the telescopic plate (407), and the toothed plate (401) meshes with the gear (402).
7. A smart manufacturing polishing device for processing glass holes according to claim 6, characterized in that: The recycling device includes a small block (501), an elliptical ring (502), an irregular plate (503), a rotating plate (504), a telescopic rod (505), a collection box (506), and a hollow plate (507). The small block (501) is fixedly installed on the side of the gear (402) near the punching device (2). The elliptical ring (502) is slidably installed on the circumferential surface of the small block (501). The irregular plate (503) is fixedly installed on the bottom of the elliptical ring (502). The rotating plate (504) is rotatably installed inside the frame (1). The fixed end of the telescopic rod (505) is rotatably installed on the bottom of the rotating plate (504). The collection box (506) is slidably installed inside the frame (1). The hollow plate (507) is slidably installed inside the collection box (506). The telescopic rod (505) is slidably installed with the hollow plate (507).
8. A smart manufacturing polishing device for processing glass holes according to claim 7, characterized in that: The irregular plate (503) is in contact with the rotating plate (504), and the collection box (506) is in contact with the hollow plate (507).
Citation Information
Patent Citations
Polishing device for machining glass holes
CN219152354U