Glass surface processing device capable of synchronously adjusting multiple brushing widths

By using a servo motor-driven reciprocating track and coating assembly, combined with a lifting assembly, an angle swing mechanism, and a width position holding assembly, the shortcomings of existing devices in coating width adjustment and angle control are solved. This enables synchronous adjustment of multiple coating widths and precise angle control, improving the quality and efficiency of glass surface processing.

CN223888321UActive Publication Date: 2026-02-10ZHONGSHAN YUANBO GLASS TECH CO LTD
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Patent Information

Application Number
CN202520355795.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-03
Publication Date
2026-02-10
Estimated Expiration
2035-03-03

AI Technical Summary

Technical Problem

Existing glass surface processing equipment cannot flexibly and synchronously adjust multiple brush widths, has difficulty accurately controlling the brush bar tilt angle, and lacks an effective width position holding mechanism, which affects processing quality and efficiency.

Method used

The system employs a servo motor-driven reciprocating track and painting assembly, combined with a lifting assembly, an angle swing mechanism, and a width position holding assembly, to achieve synchronous adjustment of multiple painting widths and precise angle control. By adjusting the movement and angle control of the side brush rod assembly on the transverse guide rail, the system can achieve synchronous adjustment and holding of multiple painting widths.

Benefits of technology

It enables flexible adjustment of the coating width and precise control of the coating angle, improving processing quality and efficiency, adapting to the processing needs of glass surfaces of different sizes and thicknesses, and enhancing the versatility and stability of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glass surface processing device capable of synchronously adjusting a plurality of brushing widths, which comprises a glass panel fixing seat, a reciprocating track and a servo motor are arranged on the glass panel fixing seat, the servo motor drives the reciprocating track to reciprocate, a reciprocating brushing component is movably arranged on the reciprocating track, and the reciprocating brushing component is arranged on the reciprocating track. Two lifting assemblies are arranged on the reciprocating brushing assembly in a left-right spaced mode, the lifting assemblies can control the height of the angle swing mechanism and the height of the brushing rod component so as to adapt to glass surfaces with different thicknesses or different machining requirements, and the machining flexibility of the device is improved. The width position keeping assembly can keep the multiple adjusting side brush rod assemblies to adjust the brushing width at different inclination angle positions, synchronous adjustment of the multiple brushing widths and keeping of the width position are achieved, the machining efficiency and stability are improved, the consistency of glass surface machining is guaranteed, and the product quality is improved. And meanwhile, reciprocating driving through the servo motor is more stable.
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Description

Technical Field

[0001] This utility model relates to a glass panel surface treatment device, and in particular to a glass surface processing device that can simultaneously adjust multiple coating widths. Background Technology

[0002] In the field of glass surface processing, coating is a common operation, such as applying protective or decorative coatings. Currently, existing glass surface coating devices have limitations in adjusting the coating width. They may not be able to flexibly and synchronously adjust multiple coating widths, making it difficult to meet the processing needs of glass of different sizes and with different coating requirements. For glass surface processing scenarios requiring precise control of coating width and angle, existing devices may not be able to accurately control the brush arm tilt angle, resulting in poor coating effects and affecting the processing quality and aesthetics of the glass surface. Furthermore, existing devices may lack an effective width position holding mechanism, making it difficult to ensure that multiple brush arms maintain stable coating work at different tilt angles after adjusting the coating width, reducing processing efficiency and stability. In summary, to overcome the shortcomings of existing glass surface processing devices in coating width adjustment and control, a glass surface processing device is needed that can simultaneously adjust multiple coating widths and accurately control the brush arm tilt angle and maintain stable coating width position.

[0003] Therefore, existing glass panel surface treatment equipment needs further improvement. Utility Model Content

[0004] The purpose of this invention is to provide a glass surface processing device that can simultaneously adjust multiple coating widths, flexibly adjust the coating width, precisely control the coating angle, and simultaneously adjust and maintain multiple coating widths.

[0005] To achieve the above objectives, the present invention adopts the following solution:

[0006] A glass surface processing device capable of simultaneously adjusting multiple coating widths includes a glass panel fixing base, a reciprocating track and a servo motor mounted on the glass panel fixing base, the servo motor driving the reciprocating track to reciprocate, a reciprocating coating assembly movably mounted on the reciprocating track, two lifting components spaced apart on the left and right sides of the reciprocating coating assembly, an angle swing mechanism at the lower end of the lifting components, a first side brush rod mounted on the angle swing mechanism, an adjusting side brush rod assembly mounted inside the first side brush rod that can move along the lateral direction of the first side brush rod to adjust the coating width, an angle control mechanism for controlling the inward or outward tilt of the first side brush rod and the adjusting side brush rod assembly on the reciprocating coating assembly, and a width position holding component for maintaining the coating width adjustment at different tilt angle positions of the multiple adjusting side brush rod assemblies.

[0007] Furthermore, the lifting assembly includes a vertical push rod motor mounted on the reciprocating brush assembly, with the output end of the vertical push rod motor facing downwards.

[0008] Furthermore, the angle swing mechanism includes a horizontal shaft hole disposed at the lower end of the vertical push rod motor, and a horizontal adjustment shaft is rotatably disposed in the horizontal shaft hole, and the first side brush rod is connected to the horizontal adjustment shaft.

[0009] Furthermore, the adjustable side brush rod assembly includes a transverse guide rail inside the first side brush rod, and a second side brush rod is movably disposed on the transverse guide rail.

[0010] Furthermore, the angle control mechanism includes a first hinge seat disposed on the reciprocating brush assembly, an angle control push rod motor hinged to the first hinge seat, a second hinge seat disposed on the middle section of the first side brush rod, and the output end of the angle control push rod motor hinged to the second hinge seat.

[0011] Furthermore, the width position holding component includes an inner shaft hole disposed in the middle of the lateral adjustment shaft, a telescopic shaft movably disposed in the inner shaft hole, a lateral electric track disposed at the bottom of the reciprocating brush component, a connecting rod fixedly disposed between the outer end of the telescopic shaft and a corresponding second side brush rod, a synchronous drive frame movably disposed on the lateral electric track, a synchronous shaft hole disposed on each side of the synchronous drive frame, the outer end of the telescopic shaft movably inserted into a corresponding synchronous shaft hole, and limit blocks disposed on the telescopic shaft on both sides of the synchronous shaft hole, the two limit blocks keeping the telescopic shaft moving laterally synchronously with the synchronous drive frame.

[0012] In summary, the advantages of this utility model over the prior art are:

[0013] This invention addresses the shortcomings of existing glass panel surface treatment devices. Through its structural design, it offers the following advantages: Flexible adjustment of the coating width: By adjusting the movement of the side brush rod assembly on the transverse guide rail inside the first side brush rod, the coating width can be flexibly changed, adapting to the processing needs of glass surfaces of different sizes, thus improving the device's versatility and applicability. Precise control of the coating angle: The angle swing mechanism allows the first side brush rod to rotate around the transverse adjustment axis. The angle control push rod motor in the angle control mechanism can further adjust the tilt angle of the first side brush rod, achieving precise control of the angle between the brush rod and the glass surface. This meets the tilting coating needs of special locations such as glass edges, improving the coating effect and glass surface processing quality. The lifting component can control the height of the angle swing mechanism and brush rod components to adapt to glass surfaces of different thicknesses or processing requirements, increasing the device's processing flexibility. The width position holding component can maintain multiple adjustable side brush rod assemblies at different tilt angle positions, achieving synchronous adjustment and width position holding of multiple coating widths, improving processing efficiency and stability, ensuring the consistency of glass surface processing, and the reciprocating drive of the servo motor further enhances stability. Attached Figure Description

[0014] To more clearly illustrate the technical solutions in the embodiments of this application, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0015] Figure 1 This is a perspective view of the present utility model;

[0016] Figure 2 This utility model Figure 1 A magnified view of part A;

[0017] Figure 3 This is a schematic diagram of the internal structure of the present invention;

[0018] Figure 4 This utility model Figure 3 A magnified view of section B. Detailed Implementation

[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0020] Please see Figures 1-4 This utility model provides a glass surface processing device capable of simultaneously adjusting multiple coating widths, including a glass panel fixing base 1. The glass panel fixing base 1 is provided with a reciprocating track 2 and a servo motor 3. The servo motor 3 drives the reciprocating track 2 to perform reciprocating motion. A reciprocating coating assembly 4 is movably arranged on the reciprocating track 2. Two lifting assemblies 5 are arranged at intervals on the left and right sides of the reciprocating coating assembly 4. An angle swing mechanism 6 is provided at the lower end of the lifting assembly 5. A first side brush rod 7 is provided on the angle swing mechanism 6. An adjusting side brush rod assembly 8 is provided on the inner side of the first side brush rod 7, which can move along the lateral direction of the first side brush rod 7 to adjust the coating width. An angle control mechanism 9 is provided on the reciprocating coating assembly 4 for controlling the inward or outward tilt of the first side brush rod 7 and the adjusting side brush rod assembly 8. A width position holding assembly 10 is provided on the reciprocating coating assembly 4 for maintaining the coating width adjustment at different tilt angle positions of the multiple adjusting side brush rod assemblies 8.

[0021] Overall driving principle: Servo motor 3 drives reciprocating track 2 to reciprocate, providing reciprocating movement power for the entire coating assembly on the glass panel mounting base 1, enabling the reciprocating coating assembly 4 to perform back-and-forth coating operations on the glass surface.

[0022] Lifting principle: When it is necessary to adjust the height of the brush rod to adapt to glass of different thicknesses or to adjust the brushing requirements of different heights according to the reciprocating motion direction, the vertical push rod motor 501 works, and its output end performs telescopic movement. The output end pushes or lifts the connected parts downward, thereby driving the angle swing mechanism 6, the first side brush rod 7 and the adjusting side brush rod assembly 8 to rise or fall as a whole.

[0023] Principle of angle swing: The horizontal adjustment shaft 602 can rotate within the horizontal shaft hole 601. When the angle control push rod motor 902 is working, its output end extends and retracts. Since one end of it is hinged to the first hinge seat 901 and the other end is hinged to the second hinge seat 903 in the middle of the first side brush rod 7, the extension and retraction of the output end will drive the first side brush rod 7 to rotate around the horizontal adjustment shaft 602, thereby changing the tilt angle of the first side brush rod 7 and realizing angle swing.

[0024] The principle of brush width adjustment: The second side brush 802 in the adjustment side brush assembly 8 can move on the transverse guide rail 801 inside the first side brush 7. By controlling the position of the second side brush 802 on the transverse guide rail 801, the relative positional relationship between the second side brush 802 and the first side brush 7 is changed, thereby adjusting the overall brush width.

[0025] Width Position Holding and Synchronization Principle: In the width position holding assembly 10, the telescopic shaft 102 moves within the inner shaft hole 101 of the transverse adjustment shaft 602, and the outer end of the telescopic shaft 102 is fixedly connected to the second side brush rod 802 via the connecting rod 104. The synchronous drive frame 105 on the transverse electric track 103 can move on the track, and the outer end of the telescopic shaft 102 moves through the synchronous shaft holes 106 on both sides of the synchronous drive frame 105, and the telescopic shaft 102 on both sides of the synchronous shaft hole 106 is provided with a limiting block 107. When the synchronous drive frame 105 moves on the transverse electric track 103, the limiting block 107 drives the telescopic shaft 102 to move synchronously laterally, and then drives the second side brush rod 802 to move synchronously via the connecting rod 104, so as to realize the synchronous adjustment and maintenance of the coating width of multiple adjusting side brush rod assemblies 8 in a set position. At the same time, the telescopic shaft 102 can rotate with the angular displacement of the first side brush rod 7, corresponding to different tilt angles for angle holding control.

[0026] The lifting assembly 5 of this utility model includes a vertical push rod motor 501 disposed on the reciprocating brush assembly 4, with the output end of the vertical push rod motor 501 facing downward.

[0027] The angle swing mechanism 6 of this utility model includes a horizontal shaft hole 601 disposed at the lower end of the vertical push rod motor 501, and a horizontal adjustment shaft 602 is rotatably disposed in the horizontal shaft hole 601. The first side brush rod 7 is connected to the horizontal adjustment shaft 602.

[0028] The adjustable side brush rod assembly 8 of this utility model includes a transverse guide rail 801 inside the first side brush rod 7, and a second side brush rod 802 is movably disposed on the transverse guide rail 801.

[0029] The angle control mechanism 9 of this utility model includes a first hinge seat 901 disposed on the reciprocating brush assembly 4, an angle control push rod motor 902 hinged on the first hinge seat 901, a second hinge seat 903 disposed in the middle section of the first side brush rod 7, and the output end of the angle control push rod motor 902 hinged to the second hinge seat 903.

[0030] The width position holding component 10 of this utility model includes an inner shaft hole 101 disposed in the middle of the transverse adjustment shaft 602, a telescopic shaft 102 movably disposed in the inner shaft hole 101, a transverse electric track 103 disposed at the bottom of the reciprocating brush component 4, a connecting rod 104 fixedly disposed between the outer end of the telescopic shaft 102 and a corresponding second side brush rod 802, a synchronous drive frame 105 movably disposed on the transverse electric track 103, a synchronous shaft hole 106 disposed on each side of the synchronous drive frame 105, the outer end of the telescopic shaft 102 movably inserted into a corresponding synchronous shaft hole 106, and a limit block 107 disposed on the telescopic shaft 102 on both sides of the synchronous shaft hole 106, the two limit blocks 107 keep the telescopic shaft 102 moving laterally synchronously with the synchronous drive frame 105.

[0031] The foregoing has shown and described the basic principles and main features of this utility model, as well as its advantages. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of this utility model. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claimed utility model. The scope of protection of this utility model is defined by the appended claims and their equivalents.

Claims

1. A glass surface processing device capable of simultaneously adjusting multiple coating widths, comprising a glass panel fixing base (1), characterized in that: The glass panel mounting base (1) is provided with a reciprocating track (2) and a servo motor (3). The servo motor (3) drives the reciprocating track (2) to reciprocate. A reciprocating brush assembly (4) is movably arranged on the reciprocating track (2). Two lifting assemblies (5) are arranged on the reciprocating brush assembly (4) at intervals on the left and right. An angle swing mechanism (6) is provided at the lower end of the lifting assembly (5). A first side brush rod (7) is provided on the angle swing mechanism (6). An adjusting side brush rod assembly (8) is provided on the inner side of the first side brush rod (7) so as to move along the lateral direction of the first side brush rod (7) to adjust the brushing width. An angle control mechanism (9) for controlling the inward or outward tilt of the first side brush rod (7) and the adjusting side brush rod assembly (8) is provided on the reciprocating brush assembly (4). A width position holding assembly (10) for maintaining and controlling the different tilt angle positions of multiple adjusting side brush rod assemblies (8) to adjust the brushing width is provided on the reciprocating brush assembly (4).

2. The glass surface processing device capable of simultaneously adjusting multiple coating widths according to claim 1, characterized in that: The lifting assembly (5) includes a vertical push rod motor (501) mounted on the reciprocating brush assembly (4), with the output end of the vertical push rod motor (501) facing downwards.

3. The glass surface processing device capable of simultaneously adjusting multiple coating widths according to claim 2, characterized in that: The angle swing mechanism (6) includes a horizontal shaft hole (601) located at the lower end of the vertical push rod motor (501), and a horizontal adjustment shaft (602) is rotatably disposed in the horizontal shaft hole (601). The first side brush rod (7) is connected to the horizontal adjustment shaft (602).

4. The glass surface processing device capable of simultaneously adjusting multiple coating widths according to claim 3, characterized in that: The adjustable side brush rod assembly (8) includes a transverse guide rail (801) inside the first side brush rod (7), and a second side brush rod (802) is movably disposed on the transverse guide rail (801).

5. A glass surface processing device capable of simultaneously adjusting multiple coating widths according to claim 4, characterized in that: The angle control mechanism (9) includes a first hinge seat (901) disposed on the reciprocating brush assembly (4), an angle control push rod motor (902) is hinged on the first hinge seat (901), a second hinge seat (903) is disposed in the middle section of the first side brush rod (7), and the output end of the angle control push rod motor (902) is hinged on the second hinge seat (903).

6. The glass surface processing apparatus capable of simultaneously adjusting multiple coating widths according to claim 5, characterized in that: The width position holding component (10) includes an inner shaft hole (101) disposed in the middle of the transverse adjustment shaft (602), a telescopic shaft (102) movably disposed in the inner shaft hole (101), a transverse electric track (103) disposed at the bottom of the reciprocating brush component (4), a connecting rod (104) fixedly disposed between the outer end of the telescopic shaft (102) and a corresponding second side brush rod (802), a synchronous drive frame (105) movably disposed on the transverse electric track (103), a synchronous shaft hole (106) disposed on each side of the synchronous drive frame (105), the outer end of the telescopic shaft (102) movably inserted into a corresponding synchronous shaft hole (106), and a limit block (107) disposed on the telescopic shaft (102) on both sides of the synchronous shaft hole (106), and the telescopic shaft (102) is kept moving laterally synchronously with the synchronous drive frame (105) by the two limit blocks (107).