Glass sheet rounding device
By designing a glass sheet rolling device with clamping, grinding, cleaning, and rinsing mechanisms, the problem of scratches caused by easy adhesion of debris during the rolling process was solved, thus improving the appearance quality of the glass.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- XIANGYANG AOLAITE PHOTOELECTRIC INSTR CO LTD
- Filing Date
- 2025-04-27
- Publication Date
- 2026-05-08
AI Technical Summary
In existing technologies, glass fragments tend to adhere to the sidewalls during the rolling process, causing scratches on the glass and affecting its appearance quality and optical performance.
A glass slide rolling device was designed, which includes clamping, grinding, cleaning and rinsing mechanisms. The device uses a brush to scrape off the debris and uses cutting fluid to wash away the debris, thus avoiding scratches caused by the debris being squeezed.
This effectively avoids sidewall scratches caused by the compression of glass fragments during the rolling process, thus improving the appearance quality of the glass.
Smart Images

Figure CN224209630U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of glass processing, specifically to a glass sheet rolling device. Background Technology
[0002] In the glass processing industry, with the booming development of industries such as optical technology, architectural decoration, and electronic displays, the demand for round glass products is increasing. Traditional glass sheets are mostly rectangular or square, and a rounding process is required to obtain round glass.
[0003] Chinese utility model patent CN218696963U discloses a glass pre-rolling machine, including a machine body, a working table, a drive box, a positioning plate, a positioning mechanism, and a rolling mechanism. The working table is set on the machine body, the drive box is set at one end of the working table, the positioning plate is connected to the drive box, the positioning mechanism is set at the other end of the working table opposite to the drive box, and the rolling mechanism is set at an angle to the drive box and the positioning mechanism.
[0004] The aforementioned technologies have the following drawbacks: during the glass rolling process, a large number of glass fragments adhere to the side wall of the glass. When squeezed by the rolling mechanism, these fragments can easily cause scratches on the side wall of the glass, affecting the appearance quality and optical performance. Utility Model Content
[0005] The purpose of this invention is to overcome the above-mentioned technical deficiencies and propose a glass rolling device to solve the technical problem that the debris generated during the rolling process in the prior art can easily cause scratches on the glass.
[0006] To achieve the above-mentioned technical objectives, the present invention provides a glass sheet rolling device, including a frame;
[0007] A clamping mechanism, mounted on a frame, is used to clamp the glass and drive the glass to rotate.
[0008] A grinding mechanism, which is mounted on a frame, is used to round the glass.
[0009] A cleaning mechanism, the cleaning mechanism including a brush cylinder connected to a frame and abutting against the sidewall of the glass; and,
[0010] A rinsing mechanism, mounted on a frame, is used to spray cutting fluid onto the glass.
[0011] In some embodiments, the cleaning mechanism further includes a drive assembly, the fixed end of which is connected to the frame, and the brush cylinder is connected to the movable end of the drive assembly. The drive assembly is used to drive the brush cylinder to rotate in the opposite direction relative to the glass.
[0012] In some embodiments, the drive assembly includes a motor mounted on a frame, and the brush cylinder is connected to the output shaft of the motor.
[0013] In some embodiments, the brush cylinder includes a brush body and brush bristles. The brush body is connected to the output shaft of a motor, and the brush bristles are arranged around the periphery of the brush body. When the motor drives the brush body to rotate, the brush bristles come into contact with the glass.
[0014] In some embodiments, the cleaning mechanism further includes a slide plate and a fixing component, the slide plate being slidably connected to the frame, the motor being mounted on the slide plate, and the fixing component being used to fix the slide plate to adjust the distance between the brush body and the glass.
[0015] In some embodiments, the fixing assembly includes a bolt and a nut, the slide plate has a through hole, the frame has a strip hole, the bolt passes through the through hole and is slidably connected to the strip hole, the nut is threaded to the end of the bolt and is used to abut against the inner wall of the strip hole.
[0016] In some embodiments, the fixing assembly further includes a washer fitted onto the bolt and located between the nut and the inner wall of the slotted hole.
[0017] In some embodiments, the cleaning mechanism further includes a scraper connected to a slide plate, wherein the scraper contacts the brush bristles when the motor drives the brush body to rotate.
[0018] In some embodiments, the scraper is serrated on the side near the bristles.
[0019] In some embodiments, the cleaning mechanism further includes an anti-stick layer attached to the outside of the scraper.
[0020] Compared with the prior art, the beneficial effects of this utility model include: the cleaning mechanism's brush tube promptly scrapes off the debris from the glass sidewall, and the rinsing mechanism uses cutting fluid to wash away the debris, effectively avoiding sidewall scratches caused by the debris being squeezed by the grinding mechanism during the glass rolling process, thus improving the appearance quality of the glass. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the overall structure of the rolling device provided by this utility model;
[0022] Figure 2 This is a cross-sectional view of the overall structure of the fixing component provided by this utility model.
[0023] Explanation of reference numerals in the attached figures:
[0024] 1. Frame; 2. Clamping mechanism; 3. Grinding mechanism; 4. Cleaning mechanism; 41. Brush cylinder; 411. Brush body; 412. Brush bristles; 42. Drive assembly; 43. Slide plate; 44. Fixing assembly; 441. Bolt; 442. Nut; 443. Through hole; 444. Strip hole; 445. Gasket; 45. Scraper; 5. Flushing mechanism. Detailed Implementation
[0025] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain this utility model and are not intended to limit this utility model.
[0026] This utility model provides a glass sheet rolling device, the structure of which is as follows: Figure 1 - Figure 2 As shown, it includes a frame 1, a clamping mechanism 2, a grinding mechanism 3, a cleaning mechanism 4, and a rinsing mechanism 5.
[0027] The clamping mechanism 2 is mounted on the frame 1. The clamping mechanism 2 is used to clamp the glass and drive the glass to rotate.
[0028] The polishing mechanism 3 is mounted on the frame 1 and is used to round the glass.
[0029] The cleaning mechanism 4 includes a brush cylinder 41, which is connected to the frame 1 and abuts against the side wall of the glass.
[0030] The rinsing mechanism 5 is mounted on the frame 1 and is used to spray cutting fluid onto the glass.
[0031] In operation, when the glass rolling process begins, the clamping mechanism 2 activates first, fixing the glass in place and driving it to rotate around its own axis. Simultaneously, the grinding mechanism 3 starts. Utilizing the friction generated by the high-speed rotation of the grinding tool, the edges of the glass are ground, gradually rounding them. The brush cylinder 41 in the cleaning mechanism 4 is connected to the frame 1, ensuring that the brush cylinder 41 always remains in contact with the sidewall of the glass. As the glass rotates under the influence of the clamping mechanism 2, the brush cylinder 41 moves relative to the glass sidewall. During this relative movement, the bristles 412 scrape off glass debris adhering to the sidewall. The rinsing mechanism 5 sprays cutting fluid onto the glass surface. Cutting fluid has lubricating and cooling functions. During the glass rolling process, on the one hand, cutting fluid can reduce the friction between the grinding tool and the glass, reduce the heat generated during the grinding process, and prevent the glass from cracking due to overheating. On the other hand, after the cutting fluid is sprayed onto the glass surface, it can wash away the glass debris scraped off by the brush 41, further ensuring that the glass sidewalls will not be scratched by the debris residue.
[0032] In this invention, the brush cylinder 41 of the cleaning mechanism 4 scrapes off the debris from the side wall of the glass in a timely manner, and the rinsing mechanism 5 uses cutting fluid to wash away the debris, which effectively avoids the side wall scratches caused by the debris being squeezed by the grinding mechanism 3 during the glass rolling process, thus improving the appearance quality of the glass.
[0033] To improve the cleaning effect of brush 41, please refer to Figure 1 In a preferred embodiment, the cleaning mechanism 4 further includes a drive assembly 42, the fixed end of which is connected to the frame 1, and the brush cylinder 41 is connected to the movable end of the drive assembly 42. The drive assembly 42 is used to drive the brush cylinder 41 to rotate in the opposite direction relative to the glass.
[0034] During use, since the brush cylinder 41 is connected to the movable end of the drive assembly 42, it rotates in the opposite direction to the glass under the drive of the drive assembly 42. When the glass rotates clockwise under the drive of the clamping mechanism 2, the brush cylinder 41 rotates counterclockwise. This counterclockwise rotation greatly increases the relative speed and friction between the brush cylinder 41 and the glass sidewall. The bristles 412 on the surface of the brush cylinder 41 can more forcefully contact the debris on the glass sidewall, more effectively scraping off the debris that was originally tightly adhered to the glass sidewall. Compared to the case where the brush cylinder 41 is stationary or rotates in the same direction as the glass, the counterclockwise rotation can significantly improve cleaning efficiency and reduce the residual time of debris on the glass sidewall.
[0035] To drive the brush cylinder 41 to rotate in the opposite direction relative to the glass, please refer to... Figure 1 In a preferred embodiment, the drive assembly 42 includes a motor mounted on the frame 1, and the brush cylinder 41 is connected to the output shaft of the motor.
[0036] When in use, the motor is started, and the motor's output shaft rotates. Since the brush cylinder 41 is directly connected to the motor's output shaft, the rotation of the output shaft will drive the brush cylinder 41 to rotate as well. At this time, the glass rotates under the drive of the clamping mechanism 2. The direction of rotation of the motor-driven brush cylinder 41 is opposite to the direction of rotation of the glass.
[0037] To clean up debris without obstructing the glass's rotation, please refer to... Figure 1 In a preferred embodiment, the brush cylinder 41 includes a brush body 411 and bristles 412. The brush body 411 is connected to the output shaft of the motor, and the bristles 412 are arranged around the periphery of the brush body 411. When the motor drives the brush body 411 to rotate, the bristles 412 come into contact with the glass.
[0038] In use, the bristles 412 are arranged in a ring around the brush body 411. When the brush body 411 rotates under the drive of the motor, the bristles 412 will also make circular motion. At this time, because the position of the brush cylinder 41 is precisely set, the bristles 412 can contact the side wall of the glass. When the glass rotates under the drive of the clamping mechanism 2, and the brush body 411 drives the bristles 412 to rotate in the opposite direction, relative motion is formed between the bristles 412 and the side wall of the glass, thereby generating friction.
[0039] To accommodate different glass sizes, please refer to [reference needed]. Figure 1 In a preferred embodiment, the cleaning mechanism 4 further includes a slide plate 43 and a fixing component 44. The slide plate 43 is slidably connected to the frame 1, the motor is mounted on the slide plate 43, and the fixing component 44 is used to fix the slide plate 43 to adjust the distance between the brush body 411 and the glass.
[0040] In use, when cleaning glass of different thicknesses or curvatures, the brush body 411 is moved closer to or further away from the glass by sliding the slide plate 43. The fixing component 44 is used to fix the slide plate 43 to the frame 1 after the position of the slide plate 43 is adjusted. This ensures that the bristles 412 can contact the glass sidewall with appropriate pressure, effectively cleaning debris from the glass sidewall without damaging the glass due to excessive pressure.
[0041] To secure skateboard 43, please refer to... Figure 2 In a preferred embodiment, the fixing component 44 includes a bolt 441 and a nut 442. The slide plate 43 is provided with a through hole 443, and the frame 1 is provided with a strip hole 444. The bolt 441 passes through the through hole 443 and is slidably connected to the strip hole 444. The nut 442 is threaded to the end of the bolt 441 and is used to abut against the inner wall of the strip hole 444.
[0042] When adjusting the distance between the brush body 411 and the glass, first loosen the nut 442 so that it no longer exerts a clamping force against the inner wall of the slotted hole 444. At this time, the slide plate 43 can slide freely on the frame 1, driving the motor mounted on the slide plate 43 and the brush cylinder 41 to move together, thereby changing the distance between the brush body 411 and the glass to accommodate different sizes or cleaning needs of the glass. Once the slide plate 43 has slid to the appropriate position, achieving the ideal distance between the brush body 411 and the glass, tighten the nut 442. The nut 442 will move along the thread of the bolt 441 towards the inner wall of the slotted hole 444. As the nut 442 tightens, it gradually abuts against and presses against the inner wall of the slotted hole 444, generating friction. This friction effectively prevents the slide plate 43 from continuing to slide on the frame 1, thus firmly fixing the slide plate 43 in its current position.
[0043] To improve the durability and stability of nut 442 and bolt 441, please refer to... Figure 2 In a preferred embodiment, the fixing component 44 further includes a washer 445, which is sleeved on the bolt 441 and is located between the nut 442 and the inner wall of the slot 444.
[0044] During use, the washer 445 is fitted onto the bolt 441 between the nut 442 and the inner wall of the slotted hole 444, increasing the contact area between the nut 442 and the inner wall of the slotted hole 444. This allows the pressure to be distributed more evenly on the inner wall of the slotted hole 444 when the nut 442 is tightened, preventing excessive local pressure from causing deformation or damage to the frame 1 and protecting the structural integrity of the frame 1.
[0045] To clean bristles 412, please refer to... Figure 1 In a preferred embodiment, the cleaning mechanism 4 further includes a scraper 45 connected to the slide plate 43. When the motor drives the brush body 411 to rotate, the scraper 45 contacts the brush bristles 412.
[0046] During use, as the brush cylinder 41 rotates to clean the glass, some debris adheres to the bristles 412. At this time, the scraper 45 connected to the slide plate 43 comes into contact with the bristles 412. When the motor drives the brush body 411 to rotate, the bristles 412 pass through the scraper 45 in sequence. When the bristles 412 pass through the scraper 45, the scraper 45 scrapes off the debris adhering to the bristles 412.
[0047] To improve the cleaning effect of scraper 45, please refer to Figure 1 In a preferred embodiment, the scraper 45 has a serrated side near the bristles 412.
[0048] During use, the serrated scraper 45 increases the contact area and friction with the bristles 412. As the bristles 412 rotate, the serrations can penetrate deeper between the bristles 412, effectively scraping away glass debris, impurities, etc., attached to the bristles 412, thus improving the cleanliness of the glass.
[0049] To reduce the possibility of debris adhering to the scraper 45, please refer to... Figure 1 In a preferred embodiment, the cleaning mechanism 4 further includes an anti-stick layer connected to the outside of the scraper 45. The anti-stick layer is made of polytetrafluoroethylene and has a thickness of 0.1 mm.
[0050] During use, debris generated during glass cleaning may adhere to the surface of the scraper 45. The anti-stick layer can effectively reduce the adhesion between the debris and the scraper 45, making it difficult for debris to adhere to the scraper 45, thereby keeping the surface of the scraper 45 clean and avoiding the impact of debris accumulation on the cleaning effect and normal operation of the scraper 45.
[0051] To better understand this utility model, the following is combined with... Figure 1 - Figure 2 The working principle of a glass sheet rolling device according to this utility model is described in detail below: When the glass sheet rolling operation is started, the clamping mechanism 2 is activated first to fix the glass and drive it to rotate around its own axis. Simultaneously with the glass rotation, the grinding mechanism 3 is activated. Utilizing the friction generated by the high-speed rotation of the grinding tool, the edges of the glass are ground, gradually rounding them. The brush cylinder 41 in the cleaning mechanism 4 is connected to the frame 1, ensuring that the brush cylinder 41 always abuts against the side wall of the glass. When the glass rotates under the drive of the clamping mechanism 2, the brush cylinder 41 and the side wall of the glass generate relative movement. During this relative movement, the bristles 412 can scrape off glass debris adhering to the side wall of the glass. The rinsing mechanism 5 sprays cutting fluid onto the glass surface. Cutting fluid has lubricating and cooling functions. During the glass rolling process, on the one hand, cutting fluid can reduce the friction between the grinding tool and the glass, reduce the heat generated during the grinding process, and prevent the glass from cracking due to overheating. On the other hand, after the cutting fluid is sprayed onto the glass surface, it can wash away the glass debris scraped off by the brush 41, further ensuring that the glass sidewalls will not be scratched by the debris residue.
[0052] The specific embodiments of this utility model described above do not constitute a limitation on the scope of protection of this utility model. Any other corresponding changes and modifications made based on the technical concept of this utility model should be included within the scope of protection of the claims of this utility model.
Claims
1. A glass slide rolling device, characterized in that, include: frame; A clamping mechanism, mounted on a frame, is used to clamp the glass and drive the glass to rotate. A grinding mechanism, which is mounted on a frame, is used to round the glass. A cleaning mechanism, the cleaning mechanism including a brush cylinder connected to a frame and abutting against the sidewall of the glass; and, A rinsing mechanism, mounted on a frame, is used to spray cutting fluid onto the glass.
2. The glass sheet rounding device according to claim 1, characterized in that, The cleaning mechanism also includes a drive assembly, the fixed end of which is connected to the frame, and the brush cylinder is connected to the movable end of the drive assembly. The drive assembly is used to drive the brush cylinder to rotate in the opposite direction relative to the glass.
3. The glass sheet rolling device according to claim 2, characterized in that, The drive assembly includes a motor mounted on a frame, and the brush cylinder is connected to the output shaft of the motor.
4. The glass sheet rolling device according to claim 3, characterized in that, The brush cylinder includes a brush body and brush bristles. The brush body is connected to the output shaft of the motor, and the brush bristles are arranged around the periphery of the brush body. When the motor drives the brush body to rotate, the brush bristles come into contact with the glass.
5. The glass sheet rounding device according to claim 3, characterized in that, The cleaning mechanism also includes a slide plate and a fixing component. The slide plate is slidably connected to the frame, the motor is mounted on the slide plate, and the fixing component is used to fix the slide plate to adjust the distance between the brush body and the glass.
6. The glass sheet rolling device according to claim 5, characterized in that, The fixing component includes a bolt and a nut. The slide plate has a through hole, and the frame has a strip hole. The bolt passes through the through hole and is slidably connected to the strip hole. The nut is threaded to the end of the bolt and is used to abut against the inner wall of the strip hole.
7. The glass sheet rolling device according to claim 6, characterized in that, The fixing assembly also includes a washer, which is fitted onto the bolt and located between the nut and the inner wall of the slotted hole.
8. The glass sheet rolling device according to claim 5, characterized in that, The cleaning mechanism also includes a scraper connected to a slide plate. When the motor drives the brush body to rotate, the scraper comes into contact with the brush bristles.
9. The glass sheet rounding device according to claim 8, characterized in that, The scraper has a serrated edge near the bristles.
10. The glass sheet rounding device according to claim 8, characterized in that, The cleaning mechanism also includes an anti-stick layer, which is attached to the outside of the scraper.
Citation Information
Patent Citations
Square glass pre-rounding machine
CN218696963U