Edge grinding machine for ultrathin FTO conductive glass
By designing a grinder for ultra-thin FTO conductive glass, the combination of multiple rolling support structures and grinding rollers is used to solve the damage problem of conventional grinding equipment to ultra-thin FTO conductive glass, achieving a safer and more efficient grinding process.
Patent Information
- Application Number
- CN202421754803.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-24
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-07-24
AI Technical Summary
In the production process of ultra-thin FTO conductive glass, conventional grinding equipment is prone to damage to ultra-thin FTO conductive glass, resulting in damage.
An ultra-thin FTO conductive glass edge grinder is designed, and the frames of the ultra-thin FTO conductive glass are polished by pressing and synchronous grinding.
Through stable support and precise polishing, the damage of ultra-thin FTO conductive glass is reduced, and the safety and efficiency in the production process are improved.
Smart Images

Figure CN222986537U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of auxiliary equipment for the production of conductive glass, in particular to an edge grinding machine for ultra-thin FTO conductive glass. Background Art
[0002] Conductive glass is SnO2 conductive glass doped with fluorine, abbreviated as FTO. Its comprehensive performance is commonly evaluated by the direct index FTC: FTC = T10 / RS, where T is the light transmittance of the film and RS is the sheet resistance of the film. In optical applications, it is required to have good transmittance to visible light and good reflectivity to infrared.
[0003] During the production process of ultra-thin FTO conductive glass, edge grinding operations are often required. However, due to the overall thinness of ultra-thin FTO conductive glass, conventional grinding equipment is likely to cause damage to ultra-thin FTO conductive glass. Summary of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide an edge grinding machine for ultra-thin FTO conductive glass aiming at the deficiencies mentioned in the above background art.
[0005] To solve the above technical problem, the technical solution provided by the utility model is: an edge grinding machine for ultra-thin FTO conductive glass, including a support base and a rear baffle arranged at the top of the rear end of the support base. A plurality of rolling support structures located on the same horizontal plane are connected to the top of the support base. A groove is arranged in the middle at the rear side of the rear baffle. A first grinding roller is connected in the middle of the groove. A first driving motor for driving the first grinding roller is connected in the rear baffle. A lower grinder and an upper grinder for cooperating with the first grinding roller are connected to the front side of the rear baffle;
[0006] A first grinding groove is arranged at the rear side inside the lower grinder. A second grinding roller is rotatably connected in the first grinding groove. A second driving motor for driving the second grinding roller is connected in the lower grinder. The top of the second grinding roller is arranged at the same horizontal plane as the top of the rolling support structure.
[0007] A second grinding groove is arranged at the bottom inside the upper grinder. An electric cylinder is connected to the top of the upper grinder. The power end at the bottom of the electric cylinder extends into the second grinding groove and is connected to a lifting plate. A support frame is connected to the bottom of the lifting plate. A third grinding roller is rotatably connected inside the support frame. A third driving motor for driving the third grinding roller to rotate is connected to the outside of the support frame.
[0008] The described rolling support structure includes a bottom support bearing seat. A rotating shaft is rotatably connected to the top of the support bearing seat. An articulated member is connected to the top of the rotating shaft. A roller is rotatably connected inside the articulated member, facilitating the support for the movement operation of the conductive glass plane.
[0009] Support rollers are rotatably connected to both sides inside the groove. A support plate is connected to the rear side of the support base. A plurality of balls are provided on the top of the support plate. The front side of the support roller and the front side of the first grinding roller are arranged in the same plane. The tops of the plurality of balls and the top of the rolling support structure are arranged in the same horizontal plane, facilitating the auxiliary support for the movement operation of the conductive glass plane.
[0010] A water injection pipe is connected to the top of the upper grinding device. The water injection pipe extends above the lifting plate and is connected to a water delivery hose. The water delivery hose is connected to a water distribution pipe. The water distribution pipe extends below the lifting plate and is connected to a plurality of spray nozzles, facilitating the water spraying operation during grinding.
[0011] A waste water tank is provided inside the support base. A plurality of openings matching the waste water tank are provided on the top of the support base. A water guiding hole communicating with the waste water tank is provided at the bottom of the first grinding groove, facilitating the collection and discharge of waste water.
[0012] A plurality of limit rods penetrating the upper grinding device are connected to the top of the lifting plate, facilitating the stable lifting operation of the lifting plate.
[0013] The advantages of the present utility model compared with the prior art are as follows: Through a plurality of rolling support structures arranged in the same horizontal plane, the device can ensure the stable support for the movement of the ultra-thin FTO conductive glass. With the cooperation of a plurality of grinding rollers, the frame of the ultra-thin FTO conductive glass can be tightly pressed and synchronously ground, thereby reducing the occurrence of breakage of the ultra-thin FTO conductive glass. BRIEF DESCRIPTION OF THE DRAWINGS
[0014] Figure 1 FIG. is a schematic structural diagram of an edge grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0015] Figure 2 FIG. is a schematic cross-sectional structure diagram of the rear baffle of an edge grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0016] Figure 3 FIG. is a schematic cross-sectional structure diagram of the support base of an edge grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0017] Figure 4 FIG. is a schematic structural diagram of the rolling support structure of an edge grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0018] Figure 5It is a schematic cross-sectional structure diagram of the lower grinding device of a grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0019] Figure 6 It is a schematic cross-sectional structure diagram of the upper grinding device of a grinding machine for an ultra-thin FTO conductive glass of the present utility model.
[0020] As shown in the figure: 1. Support base; 2. Rear baffle; 3. Rolling support structure; 4. Support bearing seat; 5. Rotating shaft; 6. Hinge; 7. Roller; 8. Groove; 9. First grinding roller; 10. First driving motor; 11. Support roller shaft; 12. Limit rod; 13. Lower grinding device; 14. Upper grinding device; 15. First grinding groove; 16. Second grinding roller; 17. Second driving motor; 18. Electric cylinder; 19. Lifting plate; 20. Support frame; 21. Third grinding roller; 22. Third driving motor; 23. Second grinding groove; 24. Water injection pipe; 25. Water delivery hose; 26. Water distribution pipe; 27. Sprinkler head; 28. Waste water tank; 29. Opening; 30. Support plate; 31. Ball; 32. Water guide hole. Specific embodiments
[0021] The following further elaborates on the present utility model in conjunction with the accompanying drawings.
[0022] Combined with the attached Figure 1-6 , a grinding machine for an ultra-thin FTO conductive glass includes a support base 1 and a rear baffle 2 provided at the top of the rear end of the support base 1. A plurality of rolling support structures 3 located on the same horizontal plane are connected to the top of the support base 1. The rolling support structure 3 includes a bottom support bearing seat 4. A rotating shaft 5 is rotatably connected to the top of the support bearing seat 4. A hinge 6 is connected to the top of the rotating shaft 5. A roller 7 is rotatably connected inside the hinge 6, that is, the tops of a plurality of rollers 7 are arranged on the same horizontal plane for operation.
[0023] A groove 8 is provided in the middle at the rear side of the rear baffle 2. Support roller shafts 11 are rotatably connected to both sides inside the groove 8. A first grinding roller 9 is connected to the middle inside the groove 8. The front sides of the support roller shafts 11 and the first grinding roller 9 are arranged on the same plane. That is, the ultra-thin FTO conductive glass is held against a plurality of support roller shafts 11 and then pushed towards the first grinding roller 9, so as to accurately grind the side edges of the ultra-thin FTO conductive glass. A first driving motor 10 for driving the first grinding roller 9 is connected inside the rear baffle 2. A lower grinding device 13 and an upper grinding device 14 for cooperating with the first grinding roller 9 are connected to the front side of the rear baffle 2;
[0024] A first grinding groove 15 is provided at the inner rear side of the lower grinding device 13. A second grinding roller 16 is rotatably connected in the first grinding groove 15. A second driving motor 17 for driving the second grinding roller 16 is connected in the lower grinding device 13. The top of the second grinding roller 16 and the top of the rolling support structure 3 are arranged on the same horizontal plane. That is, when pushing the ultra-thin FTO conductive glass, precise grinding operations can be performed on the lower part of the frame of the ultra-thin FTO conductive glass.
[0025] A second grinding groove 23 is provided at the inner bottom of the upper grinding device 14. An electric cylinder 18 is connected to the top of the upper grinding device 14. The power end of the bottom of the electric cylinder 18 extends into the second grinding groove 23 and is connected to a lifting plate 19. A plurality of limiting rods 12 penetrating the upper grinding device 14 are connected to the top of the lifting plate 19. A support frame 20 is connected to the bottom of the lifting plate 19. A third grinding roller 21 is rotatably connected inside the support frame 20. A third driving motor 22 for driving the third grinding roller 21 to rotate is connected to the outside of the support frame 20. By adjusting the height of the lifting plate 19 and the third grinding roller 21 at the bottom through the electric cylinder 18, the distance between the second grinding roller 16 and the third grinding roller 21 can be precisely adjusted. Thus, clamping operations can be performed while grinding, enabling stable, safe, and precise grinding operations and reducing the occurrence of breakage.
[0026] A support plate 30 is connected to the rear side of the support base 1. A plurality of balls 31 are provided on the top of the support plate 30. The tops of the plurality of balls 31 and the top of the rolling support structure 3 are arranged on the same horizontal plane. Since the ultra-thin FTO conductive glass is relatively thin, the support plate 30 and the plurality of balls 31 are provided on both sides of the lower grinding device 13. Therefore, when being stressed and ground in the middle, support forces can be provided on both sides, further preventing breakage.
[0027] A water injection pipe 24 is connected to the top of the upper grinding device 14. The water injection pipe 24 extends above the lifting plate 19 and is connected to a water delivery hose 25. The water delivery hose 25 is connected to a water distribution pipe 26. The water distribution pipe 26 extends below the lifting plate 19 and is connected to a plurality of spray heads 27. A waste water tank 28 is provided in the support base 1. A plurality of openings 29 matching the waste water tank 28 are provided on the top of the support base 1. A water guide hole 32 communicating with the waste water tank 28 is provided at the bottom of the first grinding groove 15. During actual grinding, water injection and grinding need to be continuously carried out. Thus, the waste water can be collected and discharged through the bottom waste water tank 28. These waste waters can be recycled in cooperation with external filtering components. The water circulation equipment is a common equipment, so no more details will be described.
[0028] The above description is made on the present utility model and its implementation manners. Such description is not restrictive. What is shown in the drawings is only one of the implementation manners of the present utility model, and the actual structure is not limited thereto. Generally speaking, if those of ordinary skill in the art are inspired by it and without departing from the gist of the creation of the present utility model, they design similar structural modes and embodiments to this technical solution without creative efforts, they shall fall within the protection scope of the present utility model.
Claims
1. An edge grinding machine for ultra-thin FTO conductive glass, comprising a support base (1) and a rear baffle (2) arranged on the top of the rear end of the support base (1), characterized in that: The top of the support base (1) is connected to a plurality of rolling support structures (3) located in the same horizontal plane, a groove (8) is provided in the middle of the rear side of the rear baffle (2), a first grinding roller (9) is connected in the middle of the groove (8), a first driving motor (10) for driving the first grinding roller (9) is connected in the rear baffle (2), and a lower grinder (13) and an upper grinder (14) for cooperating with the first grinding roller (9) are connected to the front side of the rear baffle (2); A first grinding groove (15) is provided at the rear side of the lower grinder (13), a second grinding roller (16) is rotatably connected in the first grinding groove (15), a second driving motor (17) for driving the second grinding roller (16) is connected in the lower grinder (13), and the top of the second grinding roller (16) and the top of the rolling support structure (3) are arranged on the same horizontal plane; A second grinding groove (23) is provided at the bottom of the upper grinder (14); an electric cylinder (18) is connected to the top of the upper grinder (14); a power end at the bottom of the electric cylinder (18) extends into the second grinding groove (23) and is connected to a lifting plate (19); a support frame (20) is connected to the bottom of the lifting plate (19); a third grinding roller (21) is rotatably connected inside the support frame (20); and a third driving motor (22) for driving the third grinding roller (21) to rotate is connected to the outside of the support frame (20).
2. The edge grinding machine for ultra-thin FTO conductive glass according to claim 1, characterized in that: The rolling support structure (3) comprises a bottom support bearing seat (4), the top of the support bearing seat (4) is rotatably connected to a rotating shaft (5), the top of the rotating shaft (5) is connected to a hinge (6), and the hinge (6) is rotatably connected inside to a roller (7).
3. The edge grinding machine for ultra-thin FTO conductive glass according to claim 1, characterized in that: Support rollers (11) are rotatably connected on both sides of the groove (8); a support plate (30) is connected to the rear side of the support base (1); a plurality of balls (31) are arranged on the top of the support plate (30); the front side of the support roller (11) and the front side of the first grinding roller (9) are arranged in the same plane; the tops of the plurality of balls (31) and the top of the rolling support structure (3) are arranged in the same horizontal plane.
4. The edge grinding machine for ultra-thin FTO conductive glass according to claim 1, characterized in that: The top of the upper grinder (14) is connected with a water injection pipe (24), the water injection pipe (24) extends to the top of the lifting plate (19) and is connected with a water hose (25), the water hose (25) is connected with a water distribution pipe (26), and the water distribution pipe (26) extends to the bottom of the lifting plate (19) and is connected with a plurality of water spray heads (27).
5. The edge grinding machine for ultra-thin FTO conductive glass according to claim 4, characterized in that: A waste water tank (28) is provided in the support base (1), a plurality of openings (29) cooperating with the waste water tank (28) are provided on the top of the support base (1), and a water guide hole (32) communicating with the waste water tank (28) is provided at the bottom of the first grinding tank (15).
6. The edge grinding machine for ultra-thin FTO conductive glass according to claim 1, characterized in that: The top of the lifting plate (19) is connected with a plurality of limit rods (12) penetrating the upper grinder (14).