Bevel edge polishing device for glass processing

By designing an adjustable glass placement angle bevel polishing device, the problem of existing technologies being unable to adapt to bevel polishing of glass of different specifications has been solved, achieving efficient polishing of glass bevels at different tilt angles and improving convenience.

CN224059425UActive Publication Date: 2026-03-31JIANGXI PROVINCE XINGAN COUNTY XINJING GLASS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing glass processing equipment cannot adjust the glass placement angle, which makes it inconvenient to polish the beveled edges of microcrystalline glass with different tilt angles, reducing the applicability of the equipment and the convenience for workers.

Method used

A bevel polishing device was designed, which includes a polishing frame and a glass processing angle adjustment device. Through the cooperation of a hydraulic press, gears and toothed plates, the glass placement angle can be adjusted. Combined with the sliding of the guide rod and the slide, the position of the polishing machine can be adjusted, which enhances the applicability to glass of different specifications.

Benefits of technology

It enables effective polishing of the beveled edges of microcrystalline glass at different tilt angles, increases the applicability of the device, and improves the convenience for workers to polish glass of different specifications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bevel edge polishing device for glass processing, which relates to the technical field of glass processing and comprises a polishing frame and a glass processing angle adjusting device. The glass processing angle adjusting device comprises two supporting frames, two rotating shafts, a gear, a hydraulic machine and a toothed plate, the two supporting frames are fixedly connected to the top of the polishing frame, the two rotating shafts are rotationally connected to the upper ends of the two supporting frames in a sleeving mode respectively, the gear is fixedly connected to the right end of the right rotating shaft, and the hydraulic machine is fixedly installed at the top of the polishing frame; the toothed plate is fixedly installed at the output end of the hydraulic machine and is in meshed connection with the gear, after a worker fixes glass through the two fixing clamping plates, the placing angle of the glass can be adjusted, the worker can conveniently polish glass ceramic bevel edges with different inclination angles, the application range of the polishing device is enlarged, and the polishing efficiency is improved. And the convenience of polishing glass of different specifications by workers is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to glass processing technical field especially relates to a bevel polishing device for glass processing. BACKGROUND

[0002] In the glass processing process, often need to cut glass, according to the size of the glass required, first draw cutting line on the glass, through glass cutter moves along the cutting line, according to the different needs of use, often cut out the glass with inclined surface, and after cutting glass, the cutting part often retains burr, thereby needing to polish the cutting edge of glass, polishing glass needs to use glass polishing device.

[0003] In the process of processing the bevel of the microcrystalline glass, the microcrystalline glass needs to be polished, and the clamping plate is used to clamp and fix the microcrystalline glass during the polishing process. However, the clamping plate is usually fixedly arranged, so that the staff cannot adjust the placing angle of the glass after the clamping plate clamps and fixes the glass. Since the bevel angles of the glass cut in different specifications are different, the staff cannot conveniently polish the bevel of the microcrystalline glass with different inclination angles after the glass is fixed by the clamping plate, the application range of the polishing device is reduced, and the convenience of the staff in polishing the glass with different specifications is affected. UTILITY MODEL CONTENTS

[0004] The utility model discloses a bevel polishing device for glass processing, which can solve the problem that the staff cannot conveniently polish the bevel of the microcrystalline glass with different inclination angles after the glass is fixed by the clamping plate, reduce the application range of the polishing device, and improve the convenience of the staff in polishing the glass with different specifications.

[0005] To achieve the above-mentioned purpose, the utility model provides the following technical scheme: a bevel polishing device for glass processing, comprising a polishing frame and a glass processing angle adjusting device; the glass processing angle adjusting device comprises two supporting frames, two rotating shafts, a gear, a hydraulic machine and a toothed plate, the two supporting frames are fixedly connected to the top of the polishing frame, the two rotating shafts are rotatably sleeved at the upper ends of the two supporting frames, the gear is fixedly connected to the right end of the right rotating shaft, the hydraulic machine is fixedly installed on the top of the polishing frame, the toothed plate is fixedly installed on the output end of the hydraulic machine, the toothed plate is meshed with the gear, the opposite ends of the two rotating shafts are fixedly connected with fixed clamps, rubber pressing plates are slidably connected in the two fixed clamps, and second threaded rods are threadedly connected in the two fixed clamps.

[0006] Preferably, the top of the polishing frame is fixedly connected to two guide rods, and a carriage is slidably mounted on the surface of the two guide rods.

[0007] Preferably, a hydraulic lift is fixedly installed at the upper end of the two guide rods, and the output end of the hydraulic lift is fixedly installed on the top of the slide.

[0008] Preferably, a slider is slidably mounted inside the carriage, and a polishing machine is fixedly mounted at the lower end of the slider.

[0009] Preferably, the slider is internally threaded with a first threaded rod, which is rotatably mounted inside the slide.

[0010] Preferably, a bidirectional motor is fixedly installed inside the carriage, and the output end of the bidirectional motor is fixedly connected to the right end of the first threaded rod.

[0011] Preferably, the lower ends of the two second threaded rods are rotatably connected to the surfaces of the two rubber pressure plates, and the upper ends of the two second threaded rods are fixedly connected to a rotating wheel.

[0012] Compared with the prior art, the beneficial effects of this utility model are:

[0013] 1. This bevel polishing device for glass processing allows the operator to fix the glass using two clamping plates and adjust the glass's placement angle. This makes it convenient for the operator to polish the bevels of microcrystalline glass at different tilt angles, increasing the applicability of the polishing device and improving the convenience for the operator to polish glass of different specifications. Attached Figure Description

[0014] The present invention will be further described below with reference to the accompanying drawings and embodiments:

[0015] Figure 1 This is a schematic diagram of the overall structure of a bevel polishing device for glass processing according to the present invention;

[0016] Figure 2 This is a schematic diagram of the top structure of a bevel polishing device for glass processing according to the present invention;

[0017] Figure 3 This is a schematic diagram of the internal structure of the carriage of this utility model;

[0018] Figure 4 This is a schematic diagram of the internal structure of the fixing clamp of this utility model.

[0019] Reference numerals in the attached drawings: 1. Polishing frame; 2. Guide rod; 3. Slide; 4. Hydraulic lift; 5. Slider; 6. Polishing machine; 7. First threaded rod; 8. Bidirectional motor; 9. Support frame; 10. Rotating shaft; 11. Gear; 12. Hydraulic press; 13. Gear plate; 14. Fixed clamping plate; 15. Rubber pressure plate; 16. Second threaded rod; 17. Rotary wheel. Detailed Implementation

[0020] This section will describe in detail the specific embodiments of the present utility model. The preferred embodiments of the present utility model are shown in the accompanying drawings. The purpose of the drawings is to supplement the textual description with graphics, so that people can intuitively and vividly understand each technical feature and the overall technical solution of the present utility model, but they should not be construed as limiting the scope of protection of the present utility model.

[0021] In the description of this utility model, it should be understood that the directional descriptions, such as up, down, front, back, left, right, etc., indicate the directional or positional relationship based on the directional or positional relationship 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 orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0022] In the description of this utility model, terms such as greater than, less than, and exceeding are understood to exclude the stated number, while terms such as above, below, and within are understood to include the stated number. The use of terms like "first" and "second" is merely for distinguishing technical features and should not be construed as indicating or implying relative importance, or implicitly indicating the quantity or sequence of the indicated technical features.

[0023] In the description of this utility model, unless otherwise explicitly defined, terms such as "setting," "installation," and "connection" should be interpreted broadly, and those skilled in the art can reasonably determine the specific meaning of the above terms in this utility model in conjunction with the specific content of the technical solution.

[0024] Please see Figures 1-4 This utility model provides a technical solution: a bevel polishing device for glass processing, including a polishing frame 1 and a glass processing angle adjustment device. Two guide rods 2 are fixedly connected to the top of the polishing frame 1. A slide 3 is slidably installed on the surface of the two guide rods 2. A hydraulic lift 4 is fixedly installed at the upper end of the two guide rods 2. The output end of the hydraulic lift 4 is fixedly installed on the top of the slide 3. A slider 5 is slidably installed inside the slide 3. A polishing machine 6 is fixedly installed at the lower end of the slider 5. A first threaded rod 7 is threadedly connected inside the slider 5. The first threaded rod 7 is rotatably installed inside the slide 3. A bidirectional motor 8 is fixedly installed inside the slide 3. The output end of the bidirectional motor 8 is fixedly connected to the right end of the first threaded rod 7.

[0025] The glass processing angle adjustment device includes two support frames 9, two rotating shafts 10, a gear 11, a hydraulic press 12, and a toothed plate 13. The two support frames 9 are fixedly connected to the top of the polishing frame 1. The two rotating shafts 10 are respectively rotatably sleeved on the upper ends of the two support frames 9. The gear 11 is fixedly connected to the right end of the right rotating shaft 10. The hydraulic press 12 is fixedly installed on the top of the polishing frame 1. The toothed plate 13 is fixedly installed on the output end of the hydraulic press 12 and meshes with the gear 11. Fixed clamping plates 14 are fixedly connected to the opposite ends of the two rotating shafts 10. Rubber pressure plates 15 are slidably connected inside the two fixed clamping plates 14. Second threaded rods 16 are threadedly connected inside the two fixed clamping plates 14. The lower ends of the two second threaded rods 16 are respectively rotatably connected to the surfaces of the two rubber pressure plates 15. Rotary wheels 17 are fixedly connected to the upper ends of the two second threaded rods 16.

[0026] After the worker places the glass into the two fixed clamps 14, the rotating wheel 17 drives the second threaded rod 16 to rotate. The second threaded rod 16 rotates and moves downward through the thread action between it and the fixed clamps 14. The movement of the second threaded rod 16 drives the rubber pressure plate 15 to move downward and press it against the surface of the glass. Then, the glass is fixed inside the two fixed clamps 14 by the pressing action of the two rubber pressure plates 15. Finally, after the worker starts the polishing machine 6, the output end of the polishing machine 6 rotates, which drives the polishing wheel to rotate and polish the bevel of the glass. After the worker starts the bidirectional motor 8, the output end of the bidirectional motor 8 rotates and drives the first threaded rod 7 to rotate. The rotation of the first threaded rod 7 drives the slider 5 and the polishing machine 6 to slide left and right. The left and right sliding of the polishing machine 6 completes the process of polishing the bevel of the glass.

[0027] When the bevel angles of the glass are different, the operator can start the hydraulic press 12. The output end of the hydraulic press 12 slides upward, which drives the toothed plate 13 to slide upward. The toothed plate 13 slides upward, which drives the gear 11 and the rotating shaft 10 on the right to rotate. The rotation of the rotating shaft 10 on the right drives the fixed clamping plate 14 on the right and the glass plate to rotate simultaneously to adjust the placement angle and make the bevel of the glass parallel to the polishing wheel. Finally, after the operator starts the hydraulic lift 4, the output end of the hydraulic lift 4 slides downward, which drives the carriage 3 and the polishing machine 6 to slide downward simultaneously. The sliding of the polishing machine 6 drives the polishing wheel to slide downward and contact the bevel of the glass again. At this time, the polishing wheel can polish the bevels of the glass at different angles. After the operator fixes the glass with the two fixed clamping plates 14, the placement angle of the glass can be adjusted, which makes it convenient for the operator to polish the bevels of microcrystalline glass with different tilt angles. This increases the applicability of the polishing device and improves the convenience for the operator to polish glass of different specifications.

[0028] Structural Description:

[0029] Polishing frame 1: It is the basic support component of the entire bevel polishing device for glass processing, which plays the role of bearing and fixing other components, and is the basic platform for the stable operation of the entire device; two guide rods 2 and two support frames 9 are fixedly connected to its top, providing positions for the installation of subsequent components;

[0030] Guide rod 2: Both guide rods 2 are fixedly connected to the top of the polishing frame 1; their main function is to provide a guide track for the sliding of the carriage 3, so that the carriage 3 can slide smoothly up and down in the vertical direction along the direction of the guide rod 2, ensuring the linearity and stability of the movement of the carriage 3, thereby ensuring that the polishing machine 6 and other components installed on the carriage 3 can work accurately.

[0031] Slide 3: Slidingly mounted on the surfaces of two guide rods 2; Slide 3 is equivalent to a carrier, with a slider 5 slidably mounted inside it, and a polishing machine 6 fixedly mounted at the lower end; It can move on the guide rods 2, and through the drive of the hydraulic lift 4, the position of slide 3 in the vertical direction can be adjusted, thereby driving the slider 5 and polishing machine 6 to rise or fall to adapt to different processing needs;

[0032] Hydraulic lift 4: Installed on the upper end of the two guide rods 2, and its output end is fixedly installed on the top of the slide 3; the hydraulic lift 4 is the power component that drives the slide 3 to move up and down. The extension and retraction of its output end is controlled by the hydraulic system, thereby realizing the vertical lifting and lowering movement of the slide 3. It can precisely adjust the height of the polishing machine 6 so that the polishing wheel of the polishing machine 6 can contact the glass bevel at different height positions.

[0033] Slider 5: Slidingly installed inside the slide 3, with polishing machine 6 fixedly installed at the lower end of slider 5; the sliding of slider 5 inside the slide 3 is driven by the rotation of the first threaded rod 7; by sliding slider 5 left and right inside the slide 3, polishing machine 6 fixed at its lower end can move in the horizontal direction (left and right direction), thereby realizing the polishing operation of the glass bevel.

[0034] Polishing machine 6: Fixedly installed at the lower end of slider 5, it is the core execution component for polishing the beveled edge of glass; the output end of polishing machine 6 can drive the polishing wheel to rotate, and through the contact and friction between the polishing wheel and the beveled edge of glass, the beveled edge of glass is ground and polished to achieve the required processing accuracy and surface quality;

[0035] The first threaded rod 7 is rotatably installed inside the slide 3 and is threadedly connected to the slider 5. When the bidirectional motor 8 drives the first threaded rod 7 to rotate, the slider 5 will move left and right inside the slide 3 due to the transmission effect of the thread. The rotation direction of the first threaded rod 7 is controlled by the bidirectional motor 8. By changing the rotation direction of the bidirectional motor 8, the slider 5 and the polishing machine 6 can move left and right in both directions, thereby completing the polishing of different positions on the glass bevel.

[0036] Bidirectional motor 8: It is fixedly installed inside the slide 3, and its output end is fixedly connected to the right end of the first threaded rod 7. The bidirectional motor 8 provides power for the rotation of the first threaded rod 7. It can achieve forward and reverse rotation. By forward and reverse rotation, the rotation direction of the first threaded rod 7 can be controlled, thereby controlling the left and right movement direction of the slider 5 and the polishing machine 6, so that the polishing machine 6 can perform polishing operations at different positions on the glass slope.

[0037] Support frame 9: Both support frames 9 are fixedly connected to the top of the polishing frame 1; the support frame 9 is mainly used to support the rotating shaft 10, so that the rotating shaft 10 can rotate freely on the support frame 9, providing an installation base and rotation support for the glass processing angle adjustment device, and ensuring the stability and reliability of the rotation of the rotating shaft 10.

[0038] Rotating shaft 10: Two rotating shafts 10 are respectively rotatably sleeved on the upper ends of two support frames 9; one end of the rotating shaft 10 is connected to the fixed clamping plate 14, and the other end (the right end of the right rotating shaft 10) is connected to the gear 11; by rotating the rotating shaft 10, the fixed clamping plate 14 can be driven to rotate, thereby realizing the adjustment of the glass placement angle to adapt to the glass processing requirements of different bevel angles.

[0039] Gear 11: Fixedly connected to the right end of the right rotating shaft 10, and meshing with the toothed plate 13; When the toothed plate 13 moves up and down under the drive of the hydraulic press 12, the linear motion of the toothed plate 13 is converted into the rotational motion of the gear 11 and the right rotating shaft 10 through the meshing transmission of the gear 11 and the toothed plate 13, thereby driving the right fixed clamping plate 14 and the glass plate to rotate together, so as to realize the adjustment of the glass placement angle;

[0040] Hydraulic press 12: Fixedly installed on the top of polishing frame 1, it is the power source of glass processing angle adjustment device; the hydraulic press 12 drives its output end to move up and down through the hydraulic system. The output end is fixedly installed with a toothed plate 13. The movement of the output end of the hydraulic press 12 drives the toothed plate 13 to move up and down, thereby realizing the rotation control of gear 11 and rotating shaft 10, and finally realizing the adjustment of glass placement angle.

[0041] Tooth plate 13: Fixedly installed at the output end of hydraulic press 12 and meshed with gear 11; tooth plate 13 moves up and down under the drive of hydraulic press 12, and through meshing with gear 11, transmits the linear motion of hydraulic press 12 to gear 11, causing gear 11 to rotate, thereby driving rotating shaft 10 and fixed clamping plate 14 to rotate, thereby realizing the adjustment of glass placement angle.

[0042] Fixed clamping plate 14: Fixed clamping plates 14 are fixedly connected to the opposite ends of the two rotating shafts 10. It is a component used to fix the glass. The two fixed clamping plates 14 are arranged opposite each other. The glass is placed between them and clamped and fixed by cooperating with the rubber pressure plate 15. This provides stable support for the glass processing and ensures that the glass will not be displaced during the processing.

[0043] Rubber pressure plate 15: It is slidably connected inside the two fixed clamping plates 14 and is used to squeeze the glass to achieve fixation. The rubber pressure plate 15 has a certain elasticity and can effectively clamp and fix the glass without damaging the glass surface. Driven by the second threaded rod 16, the rubber pressure plate 15 can move up and down inside the fixed clamping plates 14, thereby realizing the clamping and releasing operation of the glass.

[0044] Second threaded rod 16: The interior of both fixed clamping plates 14 is threaded with a second threaded rod 16, the lower end of which is rotatably connected to the surface of the two rubber pressure plates 15, and the upper end of each is fixedly connected to a rotating wheel 17; by rotating the rotating wheel 17, the second threaded rod 16 is driven to rotate, and by using the thread transmission principle, the second threaded rod 16 moves up and down, thereby driving the rubber pressure plates 15 to move up and down, realizing the clamping and loosening of the glass, which makes it convenient for workers to place and remove the glass;

[0045] Rotating wheel 17: Fixedly connected to the upper end of the second threaded rod 16, it is a component that is easy for operators to operate; by manually rotating the rotating wheel 17, operators can easily control the rotation of the second threaded rod 16, thereby controlling the up and down movement of the rubber pressure plate 15, realizing the fixing and loosening of the glass, and improving the convenience of operation.

[0046] The embodiments of the present utility model have been described in detail above with reference to the accompanying drawings. However, the present utility model is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the spirit of the present utility model.

Claims

1. A bevel polishing apparatus for glass processing, characterized in that, include: Polishing frame (1) and glass processing angle adjustment device; The glass processing angle adjustment device includes two support frames (9), two rotating shafts (10), a gear (11), a hydraulic press (12), and a toothed plate (13). The two support frames (9) are fixedly connected to the top of the polishing frame (1). The two rotating shafts (10) are respectively rotatably sleeved on the upper ends of the two support frames (9). The gear (11) is fixedly connected to the right end of the right rotating shaft (10). The hydraulic press (12) is fixedly installed on the top of the polishing frame (1). The toothed plate (13) is fixedly installed on the output end of the hydraulic press (12). The toothed plate (13) meshes with the gear (11). The opposite ends of the two rotating shafts (10) are fixedly connected to a fixed clamping plate (14). The interior of the two fixed clamping plates (14) is slidably connected to a rubber pressure plate (15). The interior of the two fixed clamping plates (14) is threadedly connected to a second threaded rod (16).

2. A bevel polishing apparatus for glass processing according to claim 1, characterized in that: The top of the polishing frame (1) is fixedly connected to two guide rods (2), and a slide (3) is slidably mounted on the surface of the two guide rods (2).

3. A bevel polishing apparatus for glass processing according to claim 2, characterized in that: A hydraulic lift (4) is fixedly installed on the upper end of the two guide rods (2), and the output end of the hydraulic lift (4) is fixedly installed on the top of the slide (3).

4. The bevel polishing apparatus for glass processing according to claim 3, characterized by: The slide (3) has a slider (5) slidably installed inside, and a polishing machine (6) is fixedly installed at the lower end of the slider (5).

5. A bevel polishing apparatus for glass processing according to claim 4, characterized in that: The slider (5) is internally threaded with a first threaded rod (7), which is rotatably mounted inside the slide (3).

6. A bevel polishing apparatus for glass processing according to claim 5, characterized in that: A bidirectional motor (8) is fixedly installed inside the slide (3), and the output end of the bidirectional motor (8) is fixedly connected to the right end of the first threaded rod (7).

7. The bevel polishing apparatus for glass processing according to claim 1, characterized by: The lower ends of the two second threaded rods (16) are rotatably connected to the surfaces of the two rubber pressure plates (15), and the upper ends of the two second threaded rods (16) are fixedly connected to the rotating wheels (17).