An electronic glass fiber sizing slurry coating and sizing machine
By designing an electronic glass fiber slurry coating and slurry preparation machine, a drive motor is used to rotate a uniform roller, which solves the problem of uneven glass fiber slurry coating, achieves uniform contact between the fiber slurry and the carrier surface, and reduces production waste.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- TONGCHENG GLASS FIBER OF ANHUI DANFENG GROUP
- Filing Date
- 2025-06-27
- Publication Date
- 2026-08-04
AI Technical Summary
In existing technologies, uneven coating of glass fiber slurry with the carrier necessitates cutting the glass fiber cloth after production, resulting in waste.
An electronic glass fiber slurry coating and slurry preparation machine is used. The drive motor drives the uniform roller to rotate. After the uniform roller contacts the carrier, it applies the fiber slurry along the threaded groove to both ends of the carrier. The contact protrusions apply the fiber slurry as the roller rotates, ensuring that the fiber slurry is in uniform contact with the carrier surface.
It improves the uniformity of fiber pulp and carrier surface, and reduces waste in the production process.
Smart Images

Figure CN224591187U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electronic-grade glass fiber cloth technology, and in particular to an electronic glass fiber slurry coating and slurry preparation machine. Background Technology
[0002] Fiberglass cloth is a geosynthetic material. Based on its alkali content, fiberglass cloth is classified into high-alkali cloth, medium-alkali cloth, and alkali-free cloth. The lower the alkali content, the better the flexural and tensile strength. These types of cloth can also be distinguished by their conductivity: high-alkali cloth is a conductor and can be used as electrical wires; medium-alkali cloth is a semiconductor; and alkali-free cloth is an insulator. Optical fiber for signal transmission uses glass fiber and belongs to high-alkali cloth. Medium-alkali cloth is suitable for magnesium oxide cement building materials, while alkali-free cloth is suitable for circuit boards and electronic applications.
[0003] In the production process of fiberglass cloth, fiberglass slurry needs to be attached to the carrier. Currently, when the slurry is attached to the carrier, the application is not uniform, which requires cutting the fiberglass cloth at the edges after production, resulting in some waste. Utility Model Content
[0004] The purpose of this invention is to address the aforementioned problems and deficiencies by proposing an electronic glass fiber slurry coating and slurry preparation machine: the drive motor starts and drives the uniform roller to rotate on the drive plate. After the uniform roller contacts the carrier, it applies the fiber slurry along the threaded groove to both ends of the carrier. The contact protrusions apply the fiber slurry as the machine rotates, so that the fiber slurry is evenly in contact with the surface of the carrier, improving uniformity and solving the uniformity problem.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] An electronic glass fiber slurry coating and sizing machine includes a processing tank. Bearing seats are installed on the top outer walls of both ends of the processing tank, and support rollers are installed in the bearing seats. Equally spaced insertion slots are opened on both sides of the top of one end of the processing tank, and guide rollers are rotatably connected to the insertion slots. A uniform structure is installed on one end of the top outer wall of the processing tank. The uniform structure includes a mounting frame installed on the top outer wall of the processing tank, an electric push rod installed at the center of both ends of the top of the mounting frame, a drive plate installed on the outer wall of the bottom end of the electric push rod, and uniform rollers rotatably connected to both ends of the inner outer wall of the drive plate.
[0007] Preferably, the outer wall of the uniform roller is provided with contact protrusions distributed at equal intervals, and the two ends of the outer wall of the uniform roller are symmetrically provided with threaded grooves.
[0008] Preferably, a drive motor is installed on one side of the outer wall of the drive plate, and the output shaft of the drive motor is connected to one end of the uniform roller. An adjustment hole is provided on the outer wall of the mounting frame at the drive motor.
[0009] Preferably, an extension plate is installed at the center of one top end of the mounting frame, and a uniform tube is installed at the other end of the extension plate. The uniform tube has equidistantly distributed discharge ports on one outer wall, and a flange is installed at the top of the uniform tube.
[0010] The drive motor starts and drives the uniform roller to rotate on the drive plate. After the uniform roller contacts the carrier, it spreads the fiber pulp along the threaded groove to both ends of the carrier. The contact protrusion spreads the fiber pulp as it rotates, so that the fiber pulp is in uniform contact with the surface of the carrier, thus improving uniformity.
[0011] Preferably, the bottom inner wall of the treatment tank is provided with anti-sucking grooves distributed at equal intervals, and a drain pipe is connected to the bottom of one side outer wall of the treatment tank, with a valve installed in the drain pipe.
[0012] Preferably, the drive motor and the electric push rod are connected to a switch via wires, and the switch is connected to a power source via wires.
[0013] The beneficial effects of this utility model are as follows:
[0014] The drive motor starts and drives the uniform roller to rotate on the drive plate. After the uniform roller contacts the carrier, it spreads the fiber pulp along the threaded groove to both ends of the carrier. The contact protrusion spreads the fiber pulp as it rotates, so that the fiber pulp is in uniform contact with the surface of the carrier, thus improving uniformity. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of an electronic glass fiber slurry coating and slurry preparation machine proposed in this utility model;
[0016] Figure 2 This is a schematic diagram of the processing tank structure of an electronic glass fiber slurry coating and slurry preparation machine proposed in this utility model;
[0017] Figure 3 This is a schematic diagram of the uniform roller structure of an electronic glass fiber slurry coating and slurry preparation machine proposed in this utility model.
[0018] In the diagram: 1. Processing tank, 2. Anti-suction tank, 3. Drainage pipe, 4. Bearing seat, 5. Support roller, 6. Insertion groove, 7. Guide roller, 8. Uniform structure, 9. Mounting frame, 10. Electric push rod, 11. Drive plate, 12. Uniform roller, 13. Contact protrusion, 14. Threaded groove, 15. Adjustment hole, 16. Drive motor, 17. Extension plate, 18. Uniform tube, 19. Discharge port. 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 of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0020] Example:
[0021] Reference Figure 1-3 An electronic glass fiber slurry coating and slurry preparation machine includes a treatment tank 1. Both ends of the treatment tank 1 are equipped with bearing seats 4 on their top outer walls, and support rollers 5 are installed in the bearing seats 4. The top of one end of the treatment tank 1 has equally spaced insertion slots 6, and guide rollers 7 are rotatably connected in the insertion slots 6. A uniform structure 8 is installed on one end of the top outer wall of the treatment tank 1. The guide rollers 7 rotatably installed in the insertion slots 6 on the treatment tank 1 are installed in the insertion slots 6 at different positions as needed. The two sets of uniform structures 8 on the treatment tank 1 further improve uniformity and reduce waste.
[0022] The uniform structure 8 includes a mounting frame 9 installed on the top outer wall of the processing tank 1, an electric push rod 10 installed at the center of both ends of the top of the mounting frame 9, a drive plate 11 installed on the bottom outer wall of the electric push rod 10, and uniform rollers 12 rotatably connected to both ends of the inner outer wall of the drive plate 11. The electric push rod 10 in the mounting frame 9 drives the drive plate 11 and uniform rollers 12 to descend, which is convenient for adjustment and use.
[0023] The outer wall of the uniform roller 12 is provided with contact protrusions 13 distributed at equal intervals, and the two ends of the outer wall of the uniform roller 12 are symmetrically provided with threaded grooves 14. When the drive motor 16 starts, it drives the uniform roller 12 to rotate on the drive plate 11. After the uniform roller 12 contacts the carrier, it spreads the fiber pulp along the threaded grooves 14 to both ends of the carrier. The contact protrusions 13 spread the fiber pulp as the roller rotates, so that the fiber pulp is in uniform contact with the surface of the carrier, thereby improving uniformity.
[0024] A drive motor 16 is installed on one side of the outer wall of the drive plate 11, and the output shaft of the drive motor 16 is connected to one end of the uniform roller 12. An adjustment hole 15 is provided on the outer wall of the mounting frame 9 at the drive motor 16.
[0025] An extension plate 17 is installed at the center of one end of the top of the mounting frame 9, and a uniform tube 18 is installed at the other end of the extension plate 17. The uniform tube 18 has equidistantly distributed discharge ports 19 on one side of its outer wall. A flange is installed at the top of the uniform tube 18. The uniform tube 18 has a "T" shaped structure, which improves the uniformity of the slurry by uniformly discharging the material.
[0026] The bottom inner wall of the treatment tank 1 is provided with anti-suction grooves 2 distributed at equal intervals, and a drain pipe 3 is connected to the bottom of one side of the outer wall of the treatment tank 1. A valve is installed in the drain pipe 3. The anti-suction grooves 2 at the bottom of the treatment tank 1 prevent the carrier from adsorbing each other when it slides on the bottom inner wall of the treatment tank 1. The drain pipe 3 facilitates the discharge of excess slurry.
[0027] The drive motor 16 and the electric push rod 10 are connected to the switch via wires, and the switch is connected to the power supply via wires.
[0028] Working principle: In use, fiber pulp is added to the treatment tank 1 in advance through the uniform tube 18. Then, the carrier is wrapped around the support rollers 5 and guide rollers 7 at both ends of the treatment tank 1. The electric push rod 10 on the mounting frame 9 and the drive motor 16 at one end of the drive plate 11 are started. The electric push rod 10 drives the drive plate 11 and the uniform roller 12 to descend and contact the carrier. The drive motor 16 starts and drives the uniform roller 12 to rotate on the drive plate 11. After the uniform roller 12 contacts the carrier, it spreads the fiber pulp along the threaded groove 14 to both ends of the carrier. The contact protrusions 13 spread the fiber pulp with the rotation, so that the fiber pulp is evenly contacted with the surface of the carrier, improving uniformity. The two sets of uniform structures 8 on the treatment tank 1 further improve uniformity and reduce waste.
[0029] The exemplary embodiments of the present invention have been described in detail herein with reference to examples. However, those skilled in the art will understand that various modifications and alterations can be made to the specific embodiments described above without departing from the spirit of the present invention, and various combinations can be made to the various technical features and structures proposed in the present invention without exceeding the protection scope of the present invention, which is determined by the appended claims. The foregoing description of specific exemplary embodiments of the present invention is not intended to limit the present invention to the precise forms disclosed, and it is obvious that many changes and variations can be made based on the above teachings. The exemplary embodiments were chosen and described in order to explain the specific principles of the present invention and its practical applications, thereby enabling those skilled in the art to implement and utilize various different exemplary embodiments of the present invention, as well as various different choices and variations. The scope of the present invention is intended to be defined by the claims and their equivalents.
Claims
1. An electronic glass-fiber thread sizing paste application and sizing machine comprising a treatment tank (1), characterized in that, Both ends of the processing tank (1) are equipped with bearing seats (4) on the top outer wall, and support rollers (5) are installed in the bearing seats (4). Both sides of the top of one end of the processing tank (1) are provided with equally spaced insertion slots (6), and guide rollers (7) are rotatably connected in the insertion slots (6). A uniform structure (8) is installed on one end of the top outer wall of the processing tank (1). The uniform structure (8) includes a mounting frame (9) installed on the top outer wall of the processing tank (1), an electric push rod (10) installed at the center of both ends of the top of the mounting frame (9), a drive plate (11) installed on the bottom outer wall of the electric push rod (10), and uniform rollers (12) rotatably connected to both ends of the inner outer wall of the drive plate (11).
2. An electronic glass fiber thread paste coating and sizing machine according to claim 1, characterized in that, The outer wall of the uniform roller (12) is provided with contact protrusions (13) distributed at equal intervals, and threaded grooves (14) are symmetrically opened at both ends of the outer wall of the uniform roller (12).
3. An electronic glass fiber thread paste coating and sizing machine according to claim 1, characterized in that, A drive motor (16) is installed on one side of the outer wall of the drive plate (11), and the output shaft of the drive motor (16) is connected to one end of the uniform roller (12). An adjustment hole (15) is provided on the outer wall of the mounting frame (9) at the drive motor (16).
4. An electronic glass fiber thread paste coating and sizing machine according to claim 1, characterized in that, An extension plate (17) is installed at the center of one end of the top of the mounting bracket (9), and a uniform tube (18) is installed at the other end of the extension plate (17). The uniform tube (18) has equidistantly distributed discharge ports (19) on one side of its outer wall, and a flange is installed at the top of the uniform tube (18).
5. An electronic glass fiber thread paste coating and sizing machine according to claim 1, characterized in that, The bottom inner wall of the treatment tank (1) is provided with anti-suction grooves (2) distributed at equal intervals, and a drain pipe (3) is connected to the bottom of one side outer wall of the treatment tank (1), and a valve is installed in the drain pipe (3).
6. An electronic glass fiber sizing slurry coating and sizing machine according to claim 3, characterized in that, The drive motor (16) and the electric push rod (10) are connected to the switch via wires, and the switch is connected to the power supply via wires.