Glass fiber product surface treatment mechanism
By designing the cleaning components and clamping components in the box, and using a linear motor to drive the brush to move horizontally to clean the bubbles, the problem that the surface treatment mechanism of the fiberglass cloth in the prior art cannot be fully cleaned, and the coating effect of the surface treatment agent is improved.
Patent Information
- Application Number
- CN202422162510.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-04
AI Technical Summary
The existing fiberglass cloth surface treatment mechanism cannot fully clean the bubbles, resulting in poor coating effect of the surface treatment agent.
A fiberglass product surface treatment mechanism including a box, cleaning assembly and clamping assembly is designed to drive the brush to move laterally to clean the bubbles, and ensure stable transport and clamping of the fiberglass fabric by rotating the motor and clamping assembly.
Effectively clean the bubbles on the surface of glass fiber cloth, improve the coating effect of the surface treatment agent, prevent the overflow of the treatment agent and enhance the structural stability of the equipment.
Smart Images

Figure CN223074406U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of glass fiber cloth production equipment, in particular to a surface treatment mechanism for glass fiber products. Background Technique
[0002] During the processing of glass fiber cloth, a surface treatment mechanism is required to coat a surface treatment agent on the surface of the glass fiber cloth. The existing surface treatment mechanisms usually make the glass fiber cloth contact with a brush during the conveying process, thereby cleaning the bubbles on the surface of the glass fiber cloth and improving the effect of coating the surface treatment agent on the glass fiber cloth. However, the bubbles on the surface of the glass fiber cloth cannot be fully cleaned, reducing the effect of the surface treatment mechanism coating the surface treatment agent on the surface of the glass fiber cloth.
[0003] In the related technology, through retrieval, it is found that a solution for a surface treatment mechanism of a glass fiber product (publication number CN216473964U) includes an impregnation tank. Both sides of the inner wall of the impregnation tank are slidably installed with mounting seats. Chutes are opened on the sides of the mounting seats away from the impregnation tank. Bolts are threadedly installed at both ends of the mounting seats. One end of the bolt is located along the inside of the chute and is rotatably connected to a bearing seat. The bearing seat is slidably installed inside the chute. Two symmetrically arranged brushes are slidably installed between the two mounting seats through the bearing seat. A locking nut is threadedly installed on the outer side of the bolt. A suspension mechanism for floating the brush is arranged on the outer side of the mounting seat. It can realize sweeping the bubbles attached to the cloth by the brush, reducing the situation that some areas of the cloth are covered by bubbles and cannot be infiltrated by the surface treatment agent. However, this mechanism does not consider that the bubbles on the surface of the glass fiber cloth cannot be fully cleaned, reducing the effect of the surface treatment mechanism coating the surface treatment agent on the surface of the glass fiber cloth. Content of the Utility Model
[0004] The purpose of the utility model is to provide a surface treatment mechanism for glass fiber products to solve the problems raised in the background technique.
[0005] To achieve the above purpose, the utility model provides the following technical solution: A surface treatment mechanism for glass fiber products includes a box body for storing a surface treatment agent for surface treatment of glass fiber cloth and a cleaning component for cleaning bubbles on the surface of the glass fiber cloth. An inverted U-shaped support plate is welded on the top surface of the box body. The cleaning component includes a linear motor and a connecting plate. The fixed end of the linear motor is installed on the inner top wall of the support plate. The moving part of the linear motor is detachably connected to the connecting plate through a bolt. Moving plates are arranged on both sides of the box body. Two moving rods are welded on the side surface of the moving plate. A sealing ring is sleeved on the side surface of the moving rod. The outer ring surface of the sealing ring is fixedly connected to the inside of the box body. A brush plate is welded on the adjacent side of the two moving rods. Brushes are fixedly connected to the adjacent sides of the two brush plates. The top surface of the upper brush plate is welded to the connecting plate.
[0006] Preferably, two fixed rollers for conveying fiberglass cloth are rotatably connected to the inner side wall of the box body, and the two fixed rollers are rotatably connected through the meshing of gears.
[0007] Preferably, the output shaft of a rotary motor is detachably connected to the end face of one of the fixed rollers through bolts, and the fixed end of the rotary motor is installed on the outer side wall of the box body.
[0008] Preferably, a clamping assembly is arranged on the inner bottom wall of the box body. The clamping assembly includes two fixed frames and two moving rollers for clamping and tensioning the fiberglass cloth.
[0009] Preferably, two threaded blocks with reverse threads are slidably connected to the inner side wall of the fixed frame, and the two vertically arranged threaded blocks are threadedly connected to a threaded rod with reverse threads.
[0010] Preferably, both end faces of the threaded rod are rotatably connected to the fixed frame, and the adjacent sides of the two horizontally arranged threaded blocks are rotatably connected to the moving rollers.
[0011] Preferably, a driving motor is installed on the top surface of the fixed frame, and the output shaft of the driving motor is detachably connected to the threaded rod through bolts.
[0012] Preferably, one side of the two fixed frames away from the center is welded to the inner side wall of the box body.
[0013] Compared with the prior art, the technical effects and advantages of the present utility model are as follows:
[0014] In this surface treatment mechanism for fiberglass products, the fiberglass cloth is immersed in the surface treatment agent stored inside the box body to achieve the surface treatment and processing of the fiberglass cloth. During the movement of the moving part of the linear motor, the connecting plate is driven to move horizontally. At the same time, under the connection provided by the four moving rods and the two moving plates, the two brush plates move synchronously in the same direction, so that both the top and bottom surfaces of the fiberglass cloth are in contact with the bristles, and the bristles move horizontally back and forth to clean the bubbles on the surface of the fiberglass cloth, improving the cleaning effect of the bubbles on the surface of the fiberglass cloth. Furthermore, the effect of the surface treatment agent coated on the surface of the fiberglass cloth by the surface treatment mechanism is improved. The provided sealing ring provides a sealing function to prevent the surface treatment agent inside the box body from overflowing and improves the structural stability of the mechanism components.
[0015] The surface treatment mechanism of the glass fiber product rotates the output shaft of the rotating motor. Under the meshing action of the gears, the two fixed rollers rotate to convey the glass fiber cloth located adjacent to the two fixed rollers. Meanwhile, the clamping assembly arranged clamps the glass fiber cloth, thereby realizing the tensioning effect on the glass fiber cloth, preventing the glass fiber cloth from becoming loose during the conveying process, reducing the cleaning effect of the air bubbles on the surface of the glass fiber cloth, and further reducing the effect of the surface treatment mechanism on coating the surface treatment agent on the surface of the glass fiber cloth. When the output shaft of the driving motor rotates, it drives the threaded rod to rotate, and then the threaded block with reverse threads moves downward along the threaded path of the threaded rod. During the transmission process, the two moving rollers move towards the center, strengthening the clamping force of the moving rollers on the glass fiber cloth. Brief Description of the Drawings
[0016] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0017] Figure 1 is a structural schematic diagram of the present invention;
[0018] Figure 2 is a structural schematic diagram of the cleaning assembly of the present invention;
[0019] Figure 3 is a structural schematic diagram of the clamping assembly of the present invention;
[0020] Figure 4 is of the present invention Figure 1 is an enlarged view of the structure at A in
[0021] Description of the Reference Numerals in the Drawings:
[0022] In the figure: 1, box body; 2, support plate; 3, cleaning assembly; 4, linear motor; 5, connecting plate; 6, brush plate; 7, brush; 8, moving rod; 9, sealing ring; 10, moving plate; 11, fixed roller; 12, rotating motor; 13, clamping assembly; 14, fixing frame; 15, moving roller; 16, threaded block; 17, threaded rod; 18, driving motor. Detailed Embodiments
[0023] In the following description, numerous specific details are set forth to provide a more thorough understanding of the present utility model. However, it will be apparent to those skilled in the art that the present utility model may be practiced without one or more of these details. In other instances, some well-known technical features are not described to avoid obscuring the present utility model.
[0024] Unless otherwise defined, the directions such as up, down, left, right, front, back, inner, and outer referred to herein are based on the up, down, left, right, front, back, inner, and outer directions in the figures shown by the present utility model. This is hereby explained together.
[0025] The connection method can adopt existing methods such as bonding, welding, bolt connection, etc., depending on actual needs.
[0026] In order to solve the problem that during the use of the surface treatment mechanism for glass fiber products, the air bubbles on the surface of the glass fiber cloth cannot be fully cleaned, reducing the effect of the surface treatment agent coated on the surface of the glass fiber cloth by the surface treatment mechanism, please refer to Figures 1 to 4 , the structure of the device body is a box body 1 for storing the surface treatment agent for surface treatment of the glass fiber cloth and a cleaning component 3 for cleaning the air bubbles on the surface of the glass fiber cloth. By immersing the glass fiber cloth in the surface treatment agent stored inside the box body 1, the surface treatment mechanism coats the surface treatment agent on the surface of the glass fiber cloth. An inverted U-shaped support plate 2 is welded to the top surface of the box body 1, and the cleaning component 3 is arranged on the bottom surface of the support plate 2. The cleaning component 3 includes a linear motor 4 and a connecting plate 5. The fixed end of the linear motor 4 is installed on the inner top wall of the support plate 2, and the inner top wall of the support plate 2 is detachably connected to the fixed end of the linear motor 4 by bolts. The moving part of the linear motor 4 is detachably connected to the connecting plate 5 by bolts, so that the connecting plate 5 is driven to move horizontally back and forth during the movement of the moving part of the linear motor 4. Moving plates 10 are arranged on both sides of the box body 1.
[0027] Two moving plates 10 are distributed on both sides of the box body 1. Two moving rods 8 are welded to the side surface of the moving plate 10. A sealing ring 9 is sleeved on the side surface of the moving rod 8. The outer ring surface of the sealing ring 9 is fixedly connected with the inner embedding of the box body 1. The arranged sealing ring 9 provides a sealing function to prevent the surface treatment agent inside the box body 1 from overflowing, and improves the structural stability of the equipment components. Two brush plates 6 are welded to the adjacent sides of the two moving rods 8. The adjacent sides of the two moving rods 8 on the same horizontal plane are welded to the brush plate 6. Furthermore, under the connection effect provided by the four moving rods 8 and the two moving plates 10, the synchronous reciprocating movement of the two brush plates 6 is realized. Fixedly connected with the brush 7 on the adjacent sides of the two brush plates 6. The top surface of the upper brush plate 6 is welded to the connecting plate 5, so that the top and bottom surfaces of the fiberglass cloth are in contact with the brush 7, which is convenient for the brush 7 to fully clean the bubbles on the surface of the fiberglass cloth during the horizontal reciprocating movement, thereby improving the effect of the surface treatment mechanism on coating the surface treatment agent on the surface of the fiberglass cloth.
[0028] Two fixed rollers 11 for conveying the fiberglass cloth are rotatably connected to the inner side wall of the box body 1, so that the fiberglass cloth is located on the adjacent sides of the two fixed rollers 11. The two fixed rollers 11 are rotatably connected by the meshing of gears on the side surfaces. The output shaft of a rotary motor 12 is detachably connected to the end face of one of the fixed rollers 11 by bolts. The fixed end of the rotary motor 12 is installed on the outer side wall of the box body 1. The fixed end of the rotary motor 12 is detachably connected to the outer side wall of the box body 1 by bolts, so that the output shaft of the rotary motor 12 rotates, and then the two fixed rollers 11 rotate to provide a conveying effect on the fiberglass cloth. A clamping assembly 13 is arranged on the inner bottom wall of the box body 1. The arranged clamping assembly 13 clamps the fiberglass cloth, thereby realizing the clamping and tensioning effect on the fiberglass cloth, preventing the fiberglass cloth from loosening, and facilitating the cleaning of the bubbles on the surface of the fiberglass cloth by the cleaning assembly 3, and improving the effect of the surface treatment mechanism on coating the surface treatment agent on the surface of the fiberglass cloth. The clamping assembly 13 includes two fixed frames 14 and two moving rollers 15 for clamping and tensioning the fiberglass cloth.
[0029] Two threaded blocks 16 with reverse threads are slidably connected to the inner side wall of the fixing frame 14. The provided fixing frame 14 fixes the moving paths of the two threaded blocks 16. The two vertically arranged threaded blocks 16 are threadedly connected to a threaded rod 17 with reverse threads. By rotating the threaded rod 17, the two threaded blocks 16 with reverse threads move in opposite directions along the threaded path of the threaded rod 17. Both end faces of the threaded rod 17 are rotatably connected to the fixing frame 14. The provided fixing frame 14 fixes the rotation position of the threaded rod 17. The adjacent sides of the two horizontally arranged threaded blocks 16 are rotatably connected to the moving rollers 15. A driving motor 18 is installed on the top surface of the fixing frame 14. The fixed end of the driving motor 18 is detachably connected to the top surface of the fixing frame 14 by bolts, and the output shaft of the driving motor 18 is detachably connected to the threaded rod 17 by bolts. By rotating the output shafts of the two driving motors 18, the two moving rollers 15 move centripetally during the transmission process, thereby realizing the clamping and tensioning of the fiberglass cloth, preventing the fiberglass cloth from becoming loose, and further improving the effect of the surface treatment mechanism on coating the surface treatment agent on the surface of the fiberglass cloth. One side of the two fixing frames 14 away from the center is welded to the inner side wall of the box body 1.
[0030] The linear motor 4, the rotary motor 12, and the driving motor 18 are all prior arts. Their working principles, dimensions, and models are irrelevant to the functions of this application, so no more description will be given. The control mode of this utility model is controlled by a controller. The control circuit of the controller can be realized by simple programming by those skilled in the art. The provision of power also belongs to the common knowledge in this field. And this utility model is mainly used to protect mechanical devices, so the control mode and circuit connection of this utility model will not be explained in detail.
[0031] Working principle
[0032] When using this surface treatment mechanism for fiberglass products, the user immerses the fiberglass cloth in the surface treatment agent stored inside the box body 1, makes the top and bottom surfaces of the fiberglass cloth contact with the brush 7, and drives the connecting plate 5 to move horizontally back and forth during the movement of the moving part of the linear motor 4. The provided four moving rods 8 and two moving plates 10 provide a connecting function, thereby realizing the synchronous movement of the two brush plates 6. During the transmission process, the brushes 7 on the top and bottom surfaces of the fiberglass cloth move back and forth synchronously, realizing the full cleaning of the bubbles on the surface of the fiberglass cloth and improving the effect of the surface treatment mechanism on coating the surface treatment agent on the surface of the fiberglass cloth.
[0033] Place the fiberglass cloth adjacent to the two fixed rollers 11. Powered by the rotating motor 12, the two fixed rollers 11 provide a conveying effect on the fiberglass cloth during rotation. The provided clamping assembly 13 provides a clamping and tensioning effect on the fiberglass cloth to prevent the fiberglass cloth from becoming loose, thereby facilitating the cleaning of air bubbles on the surface of the fiberglass cloth and improving the effect of coating the surface treatment agent on the fiberglass cloth. Rotate the two drive motors 18. During the transmission process, the two threaded blocks 16 move downward along the threaded path of the threaded rod 17, and then the two moving rollers 15 move centripetally to achieve the clamping effect on the fiberglass cloth.
[0034] It should be noted that in this article, relational terms such as "one" and "two" are only used to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Moreover, the term "comprising", "including" or any other variant thereof is intended to cover non-exclusive inclusion, so that a process, method, article or device comprising a series of elements not only includes those elements, but also includes other elements not expressly listed, or further includes elements inherent to such process, method, article or device. Without further limitation. An element defined by the statement "comprising one..." does not exclude the presence of additional identical elements in the process, method, article or device comprising the element.
[0035] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A surface treatment mechanism for glass fiber products, comprising a box body (1) for storing a surface treatment agent for surface treatment of glass fiber cloth and a cleaning assembly (3) for cleaning air bubbles on the surface of the glass fiber cloth, characterized in that: The top surface of the box body (1) is welded with an inverted U-shaped support plate (2). The cleaning component (3) includes a linear motor (4) and a connecting plate (5). The fixed end of the linear motor (4) is installed on the inner top wall of the support plate (2). The moving part of the linear motor (4) is detachably connected to the connecting plate (5) by bolts. Moving plates (10) are arranged on both side surfaces of the box body (1). Two moving rods (8) are welded to the side surface of the moving plate (10). A sealing ring (9) is sleeved on the side surface of the moving rod (8). The outer ring surface of the sealing ring (9) is fixedly connected to the inner embedding of the box body (1). A brush plate (6) is welded to the adjacent side of the two moving rods (8). Brushes (7) are fixedly connected to the adjacent sides of the two brush plates (6). The top surface of the upper brush plate (6) is welded to the connecting plate (5).
2. The surface treatment mechanism for a glass fiber product according to claim 1, wherein: Two fixed rollers (11) for conveying fiberglass cloth are rotatably connected to the inner side wall of the box body (1). The two fixed rollers (11) are rotatably connected by the meshing of gears on the side surfaces.
3. The surface treatment mechanism for a glass fiber product according to claim 2, characterized in that: The output shaft of a rotary motor (12) is detachably connected to the end surface of one of the fixed rollers (11) by bolts. The fixed end of the rotary motor (12) is installed on the outer side wall of the box body (1).
4. A surface treatment mechanism for glass fiber products according to claim 3, characterized in that: A clamping component (13) is arranged on the inner bottom wall of the box body (1). The clamping component (13) includes two fixed frames (14) and two moving rollers (15) for clamping and tensioning the fiberglass cloth.
5. A surface treatment mechanism for a glass fiber product according to claim 4, characterized in that: Two threaded blocks (16) with reverse threads are slidably connected to the inner side wall of the fixed frame (14). The two vertically arranged threaded blocks (16) are threadedly connected to a threaded rod (17) with reverse threads.
6. The surface treatment mechanism for a glass fiber product according to claim 5, characterized in that: Both end surfaces of the threaded rod (17) are rotatably connected to the fixed frame (14). The adjacent sides of the two horizontally arranged threaded blocks (16) are rotatably connected to the moving roller (15).
7. A surface treatment mechanism for glass fiber products according to claim 6, characterized in that: A driving motor (18) is installed on the top surface of the fixed frame (14). The output shaft of the driving motor (18) is detachably connected to the threaded rod (17) by bolts.
8. A surface treatment mechanism for glass fiber products according to claim 7, characterized in that: One side of the two fixed frames (14) away from the center is welded to the inner side wall of the box body (1).