Corner trimming mechanism after glass cutting

By designing an automated mechanism for trimming the edges and corners of glass after cutting, the problems of time-consuming, labor-intensive and unstable manual operations during trimming the edges and corners of LCD glass after cutting are solved, and efficient and stable automated polishing is achieved, which improves processing efficiency and protects the integrity of the glass.

CN223419152UActive Publication Date: 2025-10-10SUZHOU WCD SMART EQUIP CO LTD
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Patent Information

Application Number
CN202422821826.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-10-10
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

The existing technology has the problem that the manual operation of trimming the edges and corners of liquid crystal glass after cutting is time-consuming and labor-intensive and has low processing efficiency. At the same time, the stability of the glass during transportation and polishing is difficult to ensure, which may cause damage to the glass.

Method used

A mechanism for trimming the edges and corners of glass after cutting is designed, which includes an adjustment mechanism, a sliding mechanism, a braking mechanism, a stabilization mechanism and a polishing mechanism. Through the coordination of motor drive and mechanical structure, the automatic positioning, adjustment and stable polishing of liquid crystal glass can be achieved, replacing manual operation.

Benefits of technology

The efficiency and stability of polishing the edges and corners of liquid crystal glass are improved, the intensity of manual labor is reduced, and damage to the glass during the polishing process is avoided.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model discloses a corner trimming mechanism after glass cutting. The left side of the top surface of a processing table is provided with an adjusting mechanism, the top of the adjusting mechanism is provided with a moving rod, the top of the moving rod is provided with a transverse plate, the right side of the transverse plate is provided with a sliding mechanism, the right side of the sliding mechanism is provided with a connecting rod, and a vertical rod is inserted into the connecting rod; the liquid crystal glass is placed at the top of the rotary table and matched with a component in the driving end, so that the liquid crystal glass is limited and rotates, then the sliding end and the adjusting end can drive the grinding end to be adjusted at different positions, and the corners of the liquid crystal glass are ground and trimmed; through driving of the braking end, the multiple sets of stabilizing ends are attached to the surface of the liquid crystal glass, polishing is more stable, manual polishing and trimming of corners of the liquid crystal glass are replaced, time and labor are saved, and the machining efficiency is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of glass processing devices, and in particular to a mechanism for trimming corners of glass after cutting. Background Art

[0002] Liquid crystal glass (with a large sheet structure) requires trimming of the edges and corners after the large piece of glass is cut into small pieces.

[0003] When trimming the edges and corners of the liquid crystal glass after cutting, if a manual handheld grinding instrument is used to grind the edges and corners of the liquid crystal glass, manual grinding of the liquid crystal glass corners is time-consuming and labor-intensive, and the processing efficiency is low. Another example is a glass chamfering and grinding device with application number 202420385698.2, which discloses that a fourth motor drives a rotating roller to rotate and drives a conveyor belt to move the glass to the center side of the bottom box, a third motor drives a bidirectional threaded rod to rotate so that the abutment roller abuts against both sides of the glass, and a cylinder drives the connecting frame to slide, and the uprights of the connecting frame abut against both sides of the glass and perform centering operations on the glass to achieve auxiliary loading. However, it still feeds the material by moving the glass on the conveyor line. If the stability of the glass during transportation and the stability of the glass during grinding cannot be effectively guaranteed, it may still cause damage to the glass.

[0004] In view of this, a glass cutting corner trimming mechanism is provided to overcome the above-mentioned defects. Utility Model Content

[0005] In view of the problems in the related art, the present invention proposes a glass cutting corner trimming mechanism to overcome the above technical problems existing in the existing related art.

[0006] To this end, the specific technical solution adopted by the present invention is as follows: a mechanism for trimming corners after glass cutting, comprising a processing table, an adjusting mechanism being provided on the left side of the top surface of the processing table, a moving rod being provided on the top of the adjusting mechanism, a horizontal plate being provided on the top of the moving rod, a sliding mechanism being provided on the right side of the horizontal plate, a connecting rod being provided on the right side of the sliding mechanism, a vertical rod being inserted into the connecting rod, a braking mechanism being provided on the right side of the vertical rod, a stabilizing mechanism being symmetrically provided on the right side of the braking mechanism, a grinding mechanism being provided on the right side of the connecting rod, a turntable being provided on the right side of the top surface of the processing table, and a driving mechanism being provided above the turntable.

[0007] As a further optimization, the adjustment mechanism includes an adjustment groove, an adjustment screw, an adjustment block and a first self-locking motor. The adjustment groove is dug on the left side of the top surface of the processing table, and an adjustment screw is provided on the right side of the inner cavity of the adjustment groove. The outer wall of the adjustment screw is connected to the adjustment block through a reverse thread. The first self-locking motor is provided on the left side of the adjustment screw, and the first self-locking motor is provided on the left side of the processing table. The moving rod is provided on the top of the adjustment block.

[0008] As a further optimization, the sliding mechanism includes a slide groove, a first electro-hydraulic push rod and a slider. The slide groove is dug on the right side of the horizontal plate. The front surface of the inner cavity of the slide groove is provided with a first electro-hydraulic push rod. The rear surface of the first electro-hydraulic push rod is provided with a slider. The slider is slidably arranged in the slide groove, and the connecting rod is arranged on the right side of the slider.

[0009] As a further optimization, the braking mechanism includes a brake groove, a bidirectional brake screw, a brake block and a second self-locking motor. The brake groove is dug on the right side of the vertical rod, and a bidirectional brake screw is provided on the bottom surface of the inner cavity of the brake groove. The outer wall of the bidirectional brake screw is connected to the brake block through a reverse thread, and a second self-locking motor is provided on the top of the bidirectional brake screw.

[0010] As a further optimization, the stabilizing mechanism includes a connecting rod, a concave block, a brake shaft and a stabilizing wheel. The connecting rod is arranged on the right side of the brake block, a concave block is arranged on the right side of the connecting rod, a brake shaft is arranged on one side of the inner wall of the concave block, and a stabilizing wheel is sleeved on the outer wall of the brake shaft.

[0011] As a further optimization, the grinding mechanism includes a third self-locking motor and a grinding wheel. The third self-locking motor is arranged on the right side of the connecting rod, and the right side of the third self-locking motor is sleeved with a grinding wheel.

[0012] As a further optimization, the driving mechanism includes an L-shaped mounting rod, a second electro-hydraulic push rod, a fourth self-locking motor, a drive shaft and a suction cup. The L-shaped mounting rod is arranged on the rear surface of the processing table, and the bottom surface of the L-shaped mounting rod is provided with a second electro-hydraulic push rod, and the bottom of the second electro-hydraulic push rod is provided with a fourth self-locking motor, and the bottom of the fourth self-locking motor is provided with a drive shaft, and the bottom of the drive shaft is provided with a suction cup.

[0013] Compared with the prior art, the present invention has the following beneficial effects: through the setting of the adjustment mechanism, sliding mechanism, braking mechanism, stabilizing mechanism and polishing mechanism, first the liquid crystal glass is placed on the top of the turntable and cooperates with the components in the driving end to limit the position of the liquid crystal glass and realize the rotation effect, then the sliding end and the adjustment end can lead the polishing end to adjust to different positions and realize the polishing and trimming of the edges and corners of the liquid crystal glass, and during the polishing and trimming, the braking end drives multiple groups of stabilizing ends to fit to the surface of the liquid crystal glass, making the polishing more stable, replacing manual polishing and trimming of the edges and corners of the liquid crystal glass, saving time and effort, and improving processing efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0014] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0015] Figure 1 This is a schematic diagram of the main structure of the utility model;

[0016] Figure 2 This is a schematic diagram of the partial mechanism of the present invention;

[0017] Figure 3 This is an enlarged schematic diagram of the connecting rod and the structure thereon of the present utility model;

[0018] Figure 4 This is a schematic diagram of the disassembly of the concave block and the structure inside it of the present invention.

[0019] In the figure: 1. Processing table; 2. Adjustment mechanism; 3. Moving rod; 4. Horizontal plate; 5. Sliding mechanism; 6. Connecting rod; 7. Vertical rod; 8. Braking mechanism; 9. Stabilizing mechanism; 10. Grinding mechanism; 11. Turntable; 12. Driving mechanism; 13. Adjustment slot; 14. Adjustment screw; 15. Adjustment block; 16. First self-locking motor; 17. Slide slot; 18. First electro-hydraulic push rod; 19. Sliding block; 20. Braking slot; 21. Bidirectional brake screw; 22. Brake block; 23. Second self-locking motor; 24. Connecting rod; 25. Concave block; 26. Brake shaft; 27. Stabilizing wheel; 28. Third self-locking motor; 29. ​​Grinding wheel. DETAILED DESCRIPTION

[0020] In order to make the purpose, technical solutions and advantages of this practical embodiment clearer, the technical solutions in the embodiment will be clearly and completely described below in conjunction with the drawings in the practical embodiment. The following embodiments are used to illustrate this practical embodiment but are not used to limit the scope of this practical embodiment.

[0021] In the description of this utility model, it should be noted that the terms "up", "down", "front", "back", "left", "right", "vertical", "inside", "outside", etc. indicate directions or positional relationships based on the directions or positional relationships shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific direction, be constructed and operated in a specific direction. Therefore, they should not be understood as a limitation on this utility model.

[0022] In the description of this utility, it should be noted that, unless otherwise specified or limited, the terms "installed," "connected," and "connected" should be understood broadly. For example, they can refer to fixed connections, detachable connections, or integral connections; mechanical connections, electrical connections; and direct connections or indirect connections through an intermediary. Those skilled in the art will understand the specific meanings of these terms in this utility based on the specific circumstances.

[0023] like Figures 1 to 4 As shown, the glass cutting corner trimming mechanism includes a processing table 1, an adjustment mechanism 2 is provided on the left side of the top surface of the processing table 1, a moving rod 3 is provided on the top of the adjustment mechanism 2, a horizontal plate 4 is provided on the top of the moving rod 3, a sliding mechanism 5 is provided on the right side of the horizontal plate 4, a connecting rod 6 is provided on the right side of the sliding mechanism 5, a vertical rod 7 is inserted in the connecting rod 6, a braking mechanism 8 is provided on the right side of the vertical rod 7, a stabilizing mechanism 9 is symmetrically provided on the right side of the braking mechanism 8, a grinding mechanism 10 is provided on the right side of the connecting rod 6, a turntable 11 is provided on the right side of the top surface of the processing table 1, and a driving mechanism 10 is provided on the top of the turntable 11. Driving mechanism 12; first, the liquid crystal glass is placed on the top of the turntable 11, and cooperates with the components in the driving mechanism 12 to limit the position of the liquid crystal glass and realize the rotation effect, and then the sliding mechanism 5 and the adjusting mechanism 2 can drive the grinding mechanism 10 to adjust to different positions and realize the grinding and trimming of the corners of the liquid crystal glass. As well as during the grinding and trimming, the braking mechanism 8 drives the multiple sets of stabilizing mechanisms 9 to fit to the surface of the liquid crystal glass, making the grinding more stable, replacing manual grinding and trimming of the corners of the liquid crystal glass, saving time and effort, and improving the processing efficiency.

[0024] The adjusting mechanism 2 includes an adjusting groove 13, an adjusting screw 14, an adjusting block 15 and a first self-locking motor 16. The adjusting groove 13 is dug on the left side of the top surface of the processing table 1, and an adjusting screw 14 is provided on the right side of the inner cavity of the adjusting groove 13. The outer wall of the adjusting screw 14 is connected to the adjusting block 15 through a reverse thread. The first self-locking motor 16 is provided on the left side of the adjusting screw 14, and the first self-locking motor 16 is provided on the left side of the processing table 1, and the moving rod 3 is provided on the top of the adjusting block 15; the first self-locking motor 16 is started by an external switch, and the first self-locking motor 16 drives the adjusting screw 14 to rotate, and the outer wall of the adjusting screw 14 drives the adjusting block 15 to adjust through the reverse thread, and the adjusting block 15 drives the moving rod 3 fixedly connected to the top and the components thereon to adjust, so as to realize the adjustment of the grinding end during grinding.

[0025] The sliding mechanism 5 includes a slide groove 17, a first electro-hydraulic push rod 18 and a slider 19. The slide groove 17 is dug on the right side of the horizontal plate 4. The front surface of the inner cavity of the slide groove 17 is provided with the first electro-hydraulic push rod 18, and the rear surface of the first electro-hydraulic push rod 18 is provided with a slider 19. The slider 19 is slidably set in the slide groove 17, and the connecting rod 6 is set on the right side of the slider 19; the first electro-hydraulic push rod 18 is started by an external switch, and the first electro-hydraulic push rod 18 slides in the slide groove 17 with the slider 19 and the components thereon, and the slider 19 moves with the connecting rod 6 fixed on the right side and the components thereon, thereby realizing the adjustment of the grinding end during grinding.

[0026] The braking mechanism 8 includes a brake groove 20, a two-way brake screw 21, a brake block 22 and a second self-locking motor 23. The brake groove 20 is dug on the right side of the vertical rod 7. The bottom surface of the inner cavity of the brake groove 20 is provided with a two-way brake screw 21. The outer wall of the two-way brake screw 21 is connected to the brake block 22 through a reverse thread. The top of the two-way brake screw 21 is provided with a second self-locking motor 23; before grinding, the second self-locking motor 23 is started by an external switch, and the second self-locking motor 23 drives the two-way brake screw 21 to rotate. The outer wall of the two-way brake screw 21 drives multiple brake blocks 22 to adjust in opposite directions through a reverse thread. The brake block 22 drives the connecting rod 24 to adjust with the components on it, so that the stabilizing wheel 27 on it fits to the surface of the liquid crystal glass, making it more stable during grinding.

[0027] The stabilizing mechanism 9 includes a connecting rod 24, a concave block 25, a brake shaft 26 and a stabilizing wheel 27. The connecting rod 24 is arranged on the right side of the brake block 22. The concave block 25 is arranged on the right side of the connecting rod 24. The brake shaft 26 is arranged on one side of the inner wall of the concave block 25. The stabilizing wheel 27 is sleeved on the outer wall of the brake shaft 26.

[0028] The grinding mechanism 10 includes a third self-locking motor 28 and a grinding wheel 29. The third self-locking motor 28 is arranged on the right side of the connecting rod 6, and the grinding wheel 29 is sleeved on the right side of the third self-locking motor 28. When the grinding end is started, the third self-locking motor 28 drives the grinding wheel 29 to rotate. With the cooperation of multiple driving structures, the grinding wheel 29 performs grinding and edging operations on the corners of the liquid crystal glass.

[0029] The driving mechanism 12 includes an L-shaped mounting rod, a second electro-hydraulic push rod, a fourth self-locking motor, a driving shaft and a suction cup. The L-shaped mounting rod is arranged on the rear surface of the processing table 1, and the bottom surface of the L-shaped mounting rod is provided with a second electro-hydraulic push rod, and the bottom of the second electro-hydraulic push rod is provided with a fourth self-locking motor. The bottom of the fourth self-locking motor is provided with a driving shaft, and the bottom of the driving shaft is provided with a suction cup; the liquid crystal glass is placed on the turntable 11, and then the components on it are moved downward by the second electro-hydraulic push rod, so that the suction cup is attached to the top surface of the liquid crystal glass, and the fourth self-locking motor is started by an external switch. The fourth self-locking motor rotates with the suction cup, so that the liquid crystal glass is limited and the rotation effect is achieved.

[0030] When using the present invention, first place the liquid crystal glass on the turntable 11, then move the components thereon downwards through the second electro-hydraulic push rod, so that the suction cup is attached to the top surface of the liquid crystal glass, and start the fourth self-locking motor through the external switch. The fourth self-locking motor rotates the suction cup, so that the liquid crystal glass is limited and rotated. At the same time, start the first self-locking motor 16 through the external switch, and the first self-locking motor 16 rotates the adjusting screw 14. The outer wall of the adjusting screw 14 is adjusted by the adjusting block 15 through the reverse thread. The adjusting block 15 adjusts the moving rod 3 fixedly connected to the top and the components thereon, and starts the first electro-hydraulic push rod 18 through the external switch. The first electro-hydraulic push rod 18 carries the slider 19 and the components thereon in the slide groove 17 The slider 19 slides inwardly, and moves with the connecting rod 6 fixedly connected on the right side and the components thereon, so as to realize the adjustment of the grinding end during grinding, and the grinding end is started to rotate with the third self-locking motor 28 and the grinding wheel 29. With the cooperation of multiple driving structures, the grinding wheel 29 grinds and edges the corners of the liquid crystal glass. Before grinding, the second self-locking motor 23 is started by an external switch, and the second self-locking motor 23 rotates with the bidirectional brake screw 21. The outer wall of the bidirectional brake screw 21 is adjusted in opposite directions with multiple brake blocks 22 through reverse threads. The brake blocks 22 are adjusted with the connecting rod 24 and the components thereon, so that the stabilizing wheel 27 thereon fits to the surface of the liquid crystal glass, making it more stable during grinding.

[0031] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. Glass cutting corner trimming mechanism, characterized by: The invention comprises a processing table (1), wherein an adjustment mechanism (2) is provided on the left side of the top surface of the processing table (1), a moving rod (3) is provided on the top of the adjustment mechanism (2), a horizontal plate (4) is provided on the top of the moving rod (3), a sliding mechanism (5) is provided on the right side of the horizontal plate (4), a connecting rod (6) is provided on the right side of the sliding mechanism (5), a vertical rod (7) is inserted into the connecting rod (6), a braking mechanism (8) is provided on the right side of the vertical rod (7), a stabilizing mechanism (9) is symmetrically provided on the right side of the braking mechanism (8), a grinding mechanism (10) is provided on the right side of the connecting rod (6), a turntable (11) is provided on the right side of the top surface of the processing table (1), and a driving mechanism (12) is provided above the turntable (11).

2. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The adjusting mechanism (2) comprises an adjusting groove (13), an adjusting screw (14), an adjusting block (15) and a first self-locking motor (16); the adjusting groove (13) is dug on the left side of the top surface of the processing table (1); an adjusting screw (14) is provided on the right side of the inner cavity of the adjusting groove (13); the outer wall of the adjusting screw (14) is connected to the adjusting block (15) through a reverse thread; a first self-locking motor (16) is provided on the left side of the adjusting screw (14), and the first self-locking motor (16) is provided on the left side of the processing table (1); and the moving rod (3) is provided on the top of the adjusting block (15).

3. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The sliding mechanism (5) includes a slide groove (17), a first electro-hydraulic push rod (18) and a slider (19); the slide groove (17) is excavated on the right side of the horizontal plate (4); the front surface of the inner cavity of the slide groove (17) is provided with the first electro-hydraulic push rod (18); the rear surface of the first electro-hydraulic push rod (18) is provided with a slider (19); the slider (19) is slidably provided in the slide groove (17), and the connecting rod (6) is provided on the right side of the slider (19).

4. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The braking mechanism (8) comprises a braking groove (20), a bidirectional braking screw (21), a braking block (22) and a second self-locking motor (23); the braking groove (20) is dug on the right side of the vertical rod (7); a bidirectional braking screw (21) is provided on the bottom surface of the inner cavity of the braking groove (20); the outer wall of the bidirectional braking screw (21) is connected to the braking block (22) through a reverse thread; and the top of the bidirectional braking screw (21) is provided with a second self-locking motor (23).

5. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The stabilizing mechanism (9) comprises a connecting rod (24), a concave block (25), a brake shaft (26) and a stabilizing wheel (27); the connecting rod (24) is arranged on the right side of the brake block (22); the concave block (25) is arranged on the right side of the connecting rod (24); the brake shaft (26) is arranged on one side of the inner wall of the concave block (25); and the stabilizing wheel (27) is sleeved on the outer wall of the brake shaft (26).

6. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The grinding mechanism (10) comprises a third self-locking motor (28) and a grinding wheel (29); the third self-locking motor (28) is arranged on the right side of the connecting rod (6); and the grinding wheel (29) is sleeved on the right side of the third self-locking motor (28).

7. The glass cutting corner trimming mechanism according to claim 1, characterized in that: The driving mechanism (12) includes an L-shaped mounting rod, a second electro-hydraulic push rod, a fourth self-locking motor, a driving shaft and a suction cup. The L-shaped mounting rod is arranged on the rear surface of the processing table (1). The bottom surface of the L-shaped mounting rod is provided with a second electro-hydraulic push rod. The bottom of the second electro-hydraulic push rod is provided with a fourth self-locking motor. The bottom of the fourth self-locking motor is provided with a driving shaft. The bottom of the driving shaft is provided with a suction cup.

Citation Information

Patent Citations

  • Glass chamfering and grinding equipment

    CN221849649U