Polishing buffing structure for polishing curved glass

By designing a polishing and abrasion structure for curved glass, and using the combination of electric telescopic rods and push rods for clamping, along with a robotic arm driving the polishing disc, the problem of unstable fixation of curved glass during the polishing process was solved, resulting in better polishing effect and glass protection.

CN223917580UActive Publication Date: 2026-02-17SHENZHEN LITE NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520628496.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-02-17
Estimated Expiration
2035-04-01

AI Technical Summary

Technical Problem

Existing polishing equipment is not effective at fixing curved glass, which makes the curved glass easy to move during the polishing process and affects the polishing effect.

Method used

The polishing and abrasion structure includes a worktable, clamping components, and polishing components. The curved glass is securely fixed by the cooperation of electric telescopic rods, electric push rods, and slides, and polishing is performed by a mechanical arm and a motor-driven polishing disc.

Benefits of technology

It improves the fixation of curved glass, avoids movement during the polishing process, ensures the stability of the polishing effect and protects the glass from damage.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223917580U_ABST
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Abstract

The utility model relates to the technical field of curved glass polishing, in particular to a polishing buffing structure for curved glass polishing, which comprises a workbench, a polishing component is arranged at the top of the workbench, a clamping component is arranged at the top of the workbench and positioned in an inner cavity of the polishing component, and the clamping component comprises a placing plate. The bottom of the placing plate is fixedly connected with the workbench, through holes are formed in the two ends of an inner cavity of the placing plate, electric telescopic rods are fixedly connected to inner cavities of the through holes, and pressing plates are arranged at the output ends of the electric telescopic rods. When curved glass needs to be fixed, the curved glass is firstly placed in the placing plate, at the moment, the electric telescopic rod is controlled by the external controller to operate, the pressing plate is driven by the electric telescopic rod to move downwards, the top of the curved glass is fixed through the pressing plate, and at the moment, the electric push rod is controlled by the external controller to operate; and the electric push rod drives the baffle to move.
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Description

Technical Field

[0001] This utility model relates to the field of curved glass polishing technology, specifically a polishing and abrasive structure for polishing curved glass. Background Technology

[0002] Glass structures are increasingly used in electronic devices, such as phone covers or back covers, smartwatch casings, and appliance covers. With the maturation of manufacturing technology for curved glass with large curvature, many electronic devices are also turning to use more complex curved glass for their covers or housings.

[0003] When polishing curved glass, polishing equipment is required. However, the polishing equipment does not hold the curved glass in place well, causing the glass to move during polishing and resulting in poor polishing results. Utility Model Content

[0004] To address the shortcomings of existing technologies, this utility model provides a polishing and abrasive structure for polishing curved glass, which has advantages such as good fixation effect on curved glass and solves the problem of poor fixation effect of polishing equipment on curved glass.

[0005] This utility model discloses a polishing and abrasion structure for polishing curved glass, comprising a worktable, a polishing assembly at the top of the worktable, and a clamping assembly at the top of the worktable and within the inner cavity of the polishing assembly. The clamping assembly includes a placement plate, the bottom of which is fixedly connected to the worktable. Through holes are formed at both ends of the inner cavity of the placement plate, and an electric telescopic rod is fixedly connected to the inner cavity of each through hole. A pressure plate is provided at the output end of the electric telescopic rod. Baffles are provided on both sides of the placement plate, and electric push rods are provided at both ends of the outer sides of each baffle. Slider blocks are provided at both ends of the bottom of each baffle. Sliding grooves adapted to the sliders are formed at both ends of the top sides of the worktable. This utility model... When curved glass needs to be fixed, it is first placed in the placement plate. At this time, the electric telescopic rod is controlled by an external controller to move. The electric telescopic rod moves the pressure plate downward, fixing the top of the curved glass. Then, the electric push rod is controlled by the external controller to move, moving the baffle. The baffle moves in conjunction with the slide and slider in the worktable, fixing the two sides of the curved glass in the placement plate again. This makes the curved glass more effective during polishing and avoids the situation where the polishing equipment does not fix the curved glass well, which would cause the curved glass to move during polishing and result in poor polishing effect.

[0006] This invention relates to a polishing and abrasion structure for polishing curved glass. The polishing component includes a frame, the bottom of which contacts the worktable. A robotic arm body is located at the top of the inner cavity of the frame. A motor is located at the moving end of the robotic arm body, and a polishing disc is located at the output end of the motor. When polishing curved glass, this invention first controls the movement of the robotic arm body through an external controller. Then, the motor is controlled to run through the external controller. The motor drives the polishing disc to rotate, and the curved glass can be polished through the polishing disc.

[0007] The present invention relates to a polishing and abrasive structure for polishing curved glass, wherein mounting plates are fixedly connected to the bottom of both the front and back sides of the frame, and the inner cavity of the mounting plates is fixedly connected to the worktable by fixing bolts. The mounting plates and fixing bolts can fix the frame, making the components inside the frame more stable during use and avoiding the frame from shaking during use, which would lead to instability in the use of the components inside the frame.

[0008] The present invention relates to a polishing and abrasion structure for polishing curved glass, wherein a rubber pad is provided on the inner side of the bottom of the pressure plate, and the top of the rubber pad is fixedly connected to the pressure plate by an adhesive. The rubber pad can protect the curved glass when the pressure plate is fixing it, thus preventing damage to the curved glass.

[0009] The present invention relates to a polishing and abrasive structure for polishing curved glass, wherein both sides of the surface of the electric push rod are fixedly fitted with limiting plates, and the bottom of the limiting plates are fixedly connected to the worktable. The limiting plates can fix the electric push rod, thus improving the performance of the electric push rod during use and avoiding jamming.

[0010] The present invention relates to a polishing and abrasion structure for polishing curved glass, wherein the four corners of the bottom of the worktable are provided with support columns, and the bottom of the support columns is provided with anti-slip pads.

[0011] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0012] 1. When it is necessary to fix curved glass, the curved glass is first placed in the placement plate. At this time, the electric telescopic rod is controlled by the external controller to move. The electric telescopic rod drives the pressure plate to move downward, and the pressure plate fixes the top of the curved glass. Then, the electric push rod is controlled by the external controller to move. The electric push rod drives the baffle to move. The slide and slider in the worktable move in conjunction with the baffle. The baffle can fix the two sides of the curved glass in the placement plate again. In this way, the curved glass has a better polishing effect and avoids the situation where the polishing equipment does not fix the curved glass well, which leads to the curved glass moving during polishing and resulting in poor polishing effect.

[0013] 2. When it is necessary to polish curved glass, the present invention first controls the movement of the main body of the robotic arm through an external controller, and then controls the motor to run through the external controller. The motor drives the polishing disc to rotate, and the curved glass can be polished through the polishing disc.

[0014] The frame can be fixed by mounting plates and fixing bolts, which makes the components inside the frame more stable during use and avoids the frame shaking during use, which would lead to instability of the components inside the frame.

[0015] The limiting plate can fix the electric push rod, which makes the electric push rod work better and avoids jamming during use.

[0016] The rubber pads protect the curved glass when the pressure plate is used to fix it, preventing damage to the curved glass during the fixing process. Attached Figure Description

[0017] The accompanying drawings, which are included to provide a further understanding of this application and form part of this application, illustrate exemplary embodiments and are used to explain this application, but do not constitute an undue limitation of this application. In the drawings:

[0018] Figure 1 This is a schematic diagram of the structure of this utility model;

[0019] Figure 2 This is a schematic diagram of the clamping component structure of this utility model;

[0020] Figure 3 This is a partial cross-sectional view of the placement plate of this utility model;

[0021] Figure 4 This is a schematic diagram of the electric telescopic rod and pressure plate structure of this utility model;

[0022] Figure 5This is a schematic diagram of the polishing component structure of this utility model.

[0023] In the diagram: 1. Workbench; 2. Slide; 3. Support column; 4. Anti-slip mat; 5. Clamping assembly; 501. Placement plate; 502. Baffle; 503. Slider; 504. Electric push rod; 505. Limiting plate; 506. Through hole; 507. Electric telescopic rod; 508. Pressure plate; 509. Rubber pad; 6. Polishing assembly; 601. Frame; 602. Motor; 603. Polishing disc; 604. Mounting plate; 605. Fixing bolt; 606. Main body of robotic arm. Detailed Implementation

[0024] The following drawings will disclose several embodiments of this utility model. For clarity, many practical details will be described in the following description. However, it should be understood that these practical details should not be used to limit this utility model. That is, in some embodiments of this utility model, these practical details are not essential. In addition, for the sake of simplicity, some conventional structures and components will be shown in the drawings in a simple schematic manner.

[0025] Please see Figure 1-5 This utility model discloses a polishing and abrasion structure for polishing curved glass, comprising a worktable 1, a polishing assembly 6 on the top of the worktable 1, and a clamping assembly 5 located on the top of the worktable 1 and within the inner cavity of the polishing assembly 6. The clamping assembly 5 includes a placement plate 501, the bottom of which is fixedly connected to the worktable 1. Through holes 506 are provided at both ends of the inner cavity of the placement plate 501, and an electric telescopic rod 507 is fixedly connected to the inner cavity of the through holes 506. A pressure plate 508 is provided at the output end of the electric telescopic rod 507. Baffles 502 are provided on both sides of the placement plate 501, and electric push rods 504 are provided at both ends of the outer sides of the baffles 502. Slider blocks 503 are provided at both ends of the bottom of the baffles 502. Slide grooves 2 adapted to the sliders 503 are provided at both ends of the top sides of the worktable 1. This utility model can be used in situations where... To fix curved glass, first place the curved glass in the placement plate 501. Then, control the operation of the electric telescopic rod 507 through the external controller. The electric telescopic rod 507 drives the pressure plate 508 to move downward, fixing the top of the curved glass. Then, control the operation of the electric push rod 504 through the external controller. The electric push rod 504 drives the baffle 502 to move. The slide groove 2 and the slider 503 in the worktable 1 cooperate with the baffle 502 to move. The baffle 502 can then fix the two sides of the curved glass in the placement plate 501 again. This makes the curved glass more effective during polishing and avoids the situation where the polishing equipment does not fix the curved glass well, which would cause the curved glass to move during polishing and result in poor polishing effect.

[0026] The polishing assembly 6 includes a frame 601, the bottom of which contacts the worktable 1. A robotic arm body 606 is provided at the top of the inner cavity of the frame 601. A motor 602 is provided at the moving end of the robotic arm body 606, and a polishing disc 603 is provided at the output end of the motor 602. When it is necessary to polish curved glass, the present invention first controls the movement of the robotic arm body 606 through an external controller. Then, the motor 602 is controlled to run through the external controller. The motor 602 drives the polishing disc 603 to rotate, and the curved glass can be polished through the polishing disc 603.

[0027] Mounting plates 604 are fixedly connected to the bottom of both the front and back sides of the frame 601. The inner cavity of the mounting plate 604 is fixedly connected to the workbench 1 by fixing bolts 605. The mounting plate 604 and fixing bolts 605 can fix the frame 601, making the components inside the frame 601 more stable during use and preventing the frame 601 from shaking during use, which would lead to instability in the use of the components inside the frame 601.

[0028] A rubber pad 509 is provided on the inner side of the bottom of the pressure plate 508, and the top of the rubber pad 509 is fixedly connected to the pressure plate 508 by adhesive. The rubber pad 509 can protect the curved glass when the pressure plate 508 fixes the curved glass, and avoid damage to the curved glass when the pressure plate 508 fixes the curved glass.

[0029] Limiting plates 505 are fixedly fitted on both sides of the surface of the electric push rod 504, and the bottom of the limiting plates 505 is fixedly connected to the worktable 1. The limiting plates 505 can fix the electric push rod 504, so that the electric push rod 504 performs better when used and avoids jamming when the electric push rod 504 is used.

[0030] The workbench 1 has four support columns 3 at the bottom corners, and the bottom of the support columns 3 is provided with anti-slip pads 4.

[0031] When using this utility model: When it is necessary to fix curved glass, first place the curved glass in the placement plate 501. At this time, the electric telescopic rod 507 is controlled by the external controller to move. The electric telescopic rod 507 drives the pressure plate 508 to move downward. The pressure plate 508 fixes the top of the curved glass. At this time, the electric push rod 504 is controlled by the external controller to move. The electric push rod 504 drives the baffle 502 to move. The slide groove 2 and the slider 503 in the worktable 1 cooperate with the baffle 502 to move. The baffle 502 can fix the two sides of the curved glass in the placement plate 501 again. In this way, the curved glass has a better polishing effect and avoids the situation where the polishing equipment does not fix the curved glass well, which leads to the movement of the curved glass during polishing and the poor polishing effect of the curved glass.

[0032] When it is necessary to polish curved glass, the main body 606 of the robotic arm is first moved by the peripheral controller. Then, the motor 602 is run by the peripheral controller. The motor 602 drives the polishing disc 603 to rotate, and the polishing disc 603 can polish the curved glass.

[0033] The above are merely embodiments of this utility model and are not intended to limit the scope of this utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principle of this utility model should be included within the scope of the claims of this utility model.

Claims

1. A polishing skin structure for polishing curved glass, comprising a worktable (1), characterized in that: The top of the workbench (1) is provided with a polishing assembly (6), and the top of the workbench (1) and the inner cavity of the polishing assembly (6) are provided with a clamping assembly (5), the clamping assembly (5) comprises a placement plate (501), and the bottom of the placement plate (501) is fixedly connected with the workbench (1), both ends of the inner cavity of the placement plate (501) are provided with through holes (506), the inner cavity of the through hole (506) is fixedly connected with an electric telescopic rod (507), the output end of the electric telescopic rod (507) is provided with a pressing plate (508), both sides of the placement plate (501) are provided with a baffle (502), both ends of the outer side of the baffle (502) are provided with an electric push rod (504), both ends of the bottom of the baffle (502) are provided with a sliding block (503), and both ends of the top of the workbench (1) are provided with a sliding groove (2) matched with the sliding block (503).

2. The polishing abrasive structure for polishing a curved glass according to claim 1, wherein: The polishing assembly (6) comprises a frame (601), and the bottom of the frame (601) is in contact with the workbench (1), the top of the inner cavity of the frame (601) is provided with a mechanical arm body (606), the moving end of the mechanical arm body (606) is provided with a motor (602), and the output end of the motor (602) is provided with a polishing disc (603).

3. The abrasive skin structure for polishing of curved glass according to claim 2, wherein: The bottom of the front and back of the frame (601) is fixedly connected with a mounting plate (604), and the inner cavity of the mounting plate (604) is fixedly connected with the workbench (1) through fixing bolts (605).

4. The polishing abrasive structure for polishing a curved glass according to claim 1, wherein: The inner side of the bottom of the pressing plate (508) is provided with a rubber pad (509), and the top of the rubber pad (509) is fixedly connected with the pressing plate (508) through an adhesive.

5. The abrasive skin structure for polishing of curved glass according to claim 1, wherein: The surface of the electric push rod (504) is fixedly provided with a limiting plate (505) on both sides, and the bottom of the limiting plate (505) is fixedly connected with the workbench (1).

6. The abrasive skin structure for polishing of curved glass according to claim 1, wherein: The bottom of the workbench (1) is provided with a supporting column (3) at four corners, and the bottom of the supporting column (3) is provided with an anti-skid pad (4).