Glass fiber reinforced plastic pole winding machine
By introducing a cleaning drive motor, cleaning roller, and limit roller into the fiberglass pole winding machine, the problem of uneven winding was solved, achieving uniform winding of fiberglass and improving the practicality of the equipment, as well as enhancing cleanliness and ease of maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- HENGSHUI XIANGRUI ENVIRONMENTAL PROTECTION TECH CO LTD
- Filing Date
- 2025-06-12
- Publication Date
- 2026-06-19
AI Technical Summary
Existing fiberglass pole winding machines lack effective constraint on the glass fibers during the winding process, resulting in uneven winding, imperfect functionality, and insufficient practicality.
The design incorporates a glass fiber surface cleaning and outer limiting structure, including a cleaning drive motor, cleaning roller, limiting roller, and constraint shaft. The reciprocating drive mechanism enables uniform winding of the glass fiber, and a vacuum cleaner and oiling device are provided to improve cleanliness and ease of maintenance.
It achieves uniform winding of glass fiber, avoids cuts and damage, improves the practicality of the winding machine, and enhances the convenience and functionality of the equipment by cleaning dust with a vacuum cleaner and maintaining lubrication with an oil injection device.
Smart Images

Figure CN224374939U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of winding machines, specifically a fiberglass utility pole winding machine. Background Technology
[0002] Fiberglass utility poles are composite material poles made of glass fiber reinforced plastic (FRP) as the core material. They are made by combining glass fiber as the reinforcing material and synthetic resin (such as polyester resin or polyurethane resin) as the matrix through processes such as pultrusion or winding.
[0003] In its processing, a winding machine is used for auxiliary winding. For example, the fiberglass pole winding machine with patent publication number CN209756051U has a pull plate designed on the lower surface of the first slide rail, and a connecting plate and a sweeping plate designed on the lower surface of the pull plate. This avoids the problem of dust and waste materials easily accumulating at the bottom of the slide rail due to prolonged fixation between the slide rail and the ground, making cleaning difficult. The pull plate can be pulled by holding the handle and continuously rolling the rollers inside the rolling groove. During this pulling process, the sweeping plate continuously cleans the ground. The angle between the connecting plate and the sweeping plate is changed by rotating the first connecting shaft to clean back and forth. The pull plate is then returned to its original position for fixation, thus solving the problem of dust and waste materials accumulating at the bottom of the slide rail.
[0004] However, due to the lack of constraint on the glass fiber, the uniform winding of the fiber still requires the assistance of an external mechanism, resulting in imperfect functionality and insufficient practicality. Utility Model Content
[0005] (a) Technical problems to be solved
[0006] To address the shortcomings of existing technologies, this utility model provides a fiberglass pole winding machine with a glass fiber surface cleaning and outer limiting structure to prevent cuts and damage, enabling uniform winding and improving practicality.
[0007] (II) Technical Solution
[0008] To achieve the above objectives, this utility model provides the following technical solution: a fiberglass pole winding machine, comprising a base and a winding machine body, wherein the rear top of the base is connected to the bottom of the winding machine body, and further comprising a transverse slide, a slider, a support, a through frame, a constraint shaft, a limiting roller, a sliding sleeve, a sliding rod, a pull plate, a spring, a shaft bracket, a cleaning drive motor, and a cleaning roller, wherein the front top of the base is connected to the bottom of the transverse slide, the inner side of the transverse slide is laterally slidably connected to the outer side of the slider, and a reciprocating drive mechanism is provided between the transverse slide and the slider, wherein the top of the slider is connected to the through frame via the support. The bottom side is connected to the middle. A set of constraint shafts is rotatably set at the upper and lower ends of the rear side inside the frame. The outer wall of each set of constraint shafts is connected to the inner wall of a set of limit rollers. A set of sliding sleeves is connected to the middle front part of the left and right sides of the frame. A sliding rod is slidably set on the inner side of the sliding sleeve. The outer side of the sliding rod is connected to the middle of the inner side of the pull plate. A spring is connected to the outer side of each set of sliding sleeves on the outside of the frame and the outer side of the inner side of the pull plate. The inner side of each set of sliding rods is connected to the middle of the outer side of a set of shafts. A cleaning drive motor is connected to the top of the shaft. A cleaning roller is installed inside the shaft inside the shaft.
[0009] Preferably, the reciprocating drive mechanism includes a reciprocating drive motor, a threaded rod, and an internal threaded sleeve. One side of the transverse slide is connected to the inner side of the reciprocating drive motor, the output end of the reciprocating drive motor is connected to the same side of the threaded rod, the inner side of the slide block is connected to the outer side of the internal threaded sleeve, and the inner wall of the internal threaded sleeve is screwed to the outer wall of the threaded rod.
[0010] Preferably, it also includes an oil injection nozzle, which is provided on the outer side of the internal threaded sleeve, and the output end of the oil injection nozzle is connected to the inner wall of the internal threaded sleeve.
[0011] Preferably, it also includes an oil filling cap, wherein the outer side of the oil filling nozzle and the inner side of the oil filling cap are detachably installed.
[0012] Preferably, it also includes a connecting frame, a vacuum cleaner, and a dustbin. The front middle side of the connecting frame is connected to the rear side of the vacuum cleaner via the connecting frame. The vacuum cleaner input end is provided with a dustbin, which is placed on the lower front side of the frame.
[0013] Preferably, it also includes an information board, with the outer side of the frame connected to the inner side of the information board.
[0014] (III) Beneficial Effects
[0015] Compared with the prior art, the present invention provides a fiberglass utility pole winding machine, which has the following advantages:
[0016] In the preparation stage, hold the two sets of pull tabs and slide the slide bar inside the sliding sleeve to move the two sets of cleaning rollers away from each other. Pass the glass fiber through the two sets of cleaning rollers and two sets of limiting rollers inside the frame and fix it on the corresponding material inside the winding machine. Then release the pull tabs. Under the elastic action of the spring, the two sets of cleaning rollers make close contact with the outer side of the glass fiber at this point. Then the material inside the winding machine rotates and winds the glass fiber. At the same time, the reciprocating drive mechanism causes the slider to slide back and forth in the transverse slide. Then, the support drives the frame to move synchronously, allowing the glass fiber to pass through the frame and move backward. During this process, the corresponding cleaning drive motor drives the cleaning roller to rotate in the opposite direction of the glass limiting movement, thereby cleaning its surface and limiting it on both sides. The corresponding set of limiting rollers contacts the glass fiber and is constrained by the constraint shaft to follow the rotation, thereby limiting the up and down movement and making the glass fiber evenly wound. It is equipped with a glass fiber surface cleaning and outer limiting structure to avoid cuts and damage, can wind evenly, and improves practicality. Attached Figure Description
[0017] Figure 1 This is an axial view illustrating the structure of this utility model.
[0018] Figure 2 This utility model Figure 1 Rear view;
[0019] Figure 3 This utility model Figure 1 The right view;
[0020] Figure 4 This utility model Figure 1 A magnified view of A.
[0021] The following components are labeled in the attached diagram: 1. Base; 2. Winding machine body; 3. Transverse slide; 4. Slider; 5. Bracket; 6. Through frame; 7. Constraint shaft; 8. Limiting roller; 9. Sliding sleeve; 10. Sliding rod; 11. Pull plate; 12. Spring; 13. Shaft bracket; 14. Cleaning drive motor; 15. Cleaning roller; 16. Reciprocating drive motor; 17. Threaded rod; 18. Internal threaded sleeve; 19. Oiling nozzle; 20. Oiling cap; 21. Connecting frame; 22. Vacuum cleaner; 23. Vacuum hopper; 24. Information board. Detailed Implementation
[0022] 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.
[0023] Example
[0024] Please see Figure 1-4 The fiberglass pole winding machine includes a base 1 and a winding machine body 2. The top rear side of the base 1 is connected to the bottom side of the winding machine body 2. It also includes a transverse slide 3, a slider 4, a bracket 5, a through frame 6, a constraint shaft 7, a limiting roller 8, a sliding sleeve 9, a slide rod 10, a pull plate 11, a spring 12, a shaft bracket 13, a cleaning drive motor 14, and a cleaning roller 15. The top front side of the base 1 is connected to the bottom end of the transverse slide 3. The inner side of the transverse slide 3 is laterally slidably connected to the outer side of the slider 4. A reciprocating drive mechanism is provided between the transverse slide 3 and the slider 4. The end bracket 5 is connected to the middle of the bottom side of the through frame 6. A set of constraint shafts 7 are rotatably installed at the upper and lower ends of the rear side inside the through frame 6. The outer wall of each set of constraint shafts 7 is connected to the inner wall of a set of limiting rollers 8. A set of sliding sleeves 9 are connected to the middle front part of the left and right sides of the through frame 6. A sliding rod 10 is laterally slidably installed on the inner side of the sliding sleeve 9. The outer side of the sliding rod 10 is connected to the middle of the inner side of the pull piece 11. A spring 12 is connected to the outer side of each set of sliding sleeves 9 on the outer side of the through frame 6 and the outer side of the inner side of the pull piece 11. The inner side of each set of sliding rods 10 is connected to the middle of the outer side of a set of shaft brackets 13. A cleaning drive motor 14 is connected to the top of the frame 13. The output end of the cleaning drive motor 14 is located inside the frame 13, where a cleaning roller 15 is installed. During the preparation stage, the two sets of pull tabs 11 are held to slide the slide rod 10 outward inside the sliding sleeve 9, so that the two sets of cleaning rollers 15 are far apart. The glass fiber is passed through the two sets of cleaning rollers 15 and the two sets of limiting rollers 8 inside the frame 6 and fixed to the corresponding material inside the winding machine body 2. Then the pull tabs 11 are released, and under the elastic action of the spring 12, the two sets of cleaning rollers 15 are brought into close contact with the outer side of the glass fiber at that point. Then the winding machine body is fixed to the corresponding material inside the winding machine body 2. The material inside the machine body 2 rotates and winds, while the reciprocating drive mechanism causes the slider 4 to slide back and forth in the transverse slide 3. Then, the bracket 5 drives the through frame 6 to move synchronously, allowing the glass fiber to pass through the through frame 6 and move backward. During this process, the corresponding cleaning drive motor 14 drives the cleaning roller 15 to rotate in the opposite direction of the glass limiting movement, thereby cleaning its surface and limiting it on both sides. The corresponding set of limiting rollers 8 contact the glass fiber, and the constraint shaft 7 constrains the limiting rollers 8 to follow the rotation, thereby limiting the up and down movement and making the glass fiber evenly wound.
[0025] The reciprocating drive mechanism includes a reciprocating drive motor 16, a threaded rod 17, and an internal threaded sleeve 18. One side of the transverse slide 3 is connected to the inner side of the reciprocating drive motor 16, and the output end of the reciprocating drive motor 16 is connected to the same side of the threaded rod 17. The inner side of the slider 4 is connected to the outer side of the internal threaded sleeve 18, and the inner wall of the internal threaded sleeve 18 is screwed to the outer wall of the threaded rod 17. When the reciprocating drive motor 16 runs, the threaded rod 17 can rotate. The threaded rod 17 can be screwed into the internal threaded sleeve 18, and the slider 4 can move synchronously through the internal threaded sleeve 18.
[0026] It also includes an oil injection nozzle 19. An oil injection nozzle 19 is provided on the outer side of the internal threaded sleeve 18. The output end of the oil injection nozzle 19 is connected to the inner wall of the internal threaded sleeve 18. Oil can be injected into the inner wall of the internal threaded sleeve 18 through the oil injection nozzle 19 for convenient lubrication and maintenance.
[0027] It also includes an oil filling cap 20, and the outer side of the oil filling nozzle 19 and the inner side of the oil filling cap 20 can be detachably installed; after the oil filling cap 20 is installed on the outer side of the oil filling nozzle 19, the inside of the oil filling nozzle 19 can be sealed and protected, improving reliability.
[0028] It also includes a connecting frame 21, a vacuum cleaner 22, and a dustbin 23. The front middle side of the connecting frame 21 is connected to the rear side of the vacuum cleaner 22. The vacuum cleaner 22 is provided with a dustbin 23 at its input end, and the dustbin 23 is placed on the lower front side of the through frame 6. The position of the vacuum cleaner 22 is fixed by the connecting frame 21. When the vacuum cleaner 22 is running, negative pressure can be created outside the dustbin 23 to collect dust.
[0029] It also includes an information board 24, which is connected to the inside of the frame 6 on the outside. The information board 24 can be used to display information about the device, making it easier to read and use, and improving convenience.
[0030] In summary, during the preparation stage of using the FRP (fiberglass reinforced plastic) pole winding machine, hold the two sets of pull tabs 11 and slide the slide rod 10 outward inside the sliding sleeve 9, so that the two sets of cleaning rollers 15 are far apart. Pass the fiberglass through the two sets of cleaning rollers 15 and the two sets of limiting rollers 8 inside the frame 6 and fix it to the corresponding material inside the winding machine body 2. Then release the pull tabs 11. Under the elastic action of the spring 12, the two sets of cleaning rollers 15 make close contact with the outer side of the fiberglass at that point. Then, the material inside the winding machine body 2 rotates and winds the fiberglass. Simultaneously, the reciprocating drive motor 16 runs, causing the threaded rod 17 to rotate. The threaded rod 17 is screwed into the inner threaded sleeve 18, which connects to the slider 4 for synchronous movement. This causes the slider 4 to reciprocate and slide laterally within the transverse slide 3, and then the frame 6 moves synchronously via the bracket 5. After the glass fiber passes through the frame 6, it moves backward. During this process, the cleaning roller 15 is driven by the corresponding cleaning drive motor 14 to rotate in the opposite direction of the glass limiting movement, thereby cleaning its surface and limiting it on both sides. The position of the vacuum cleaner 22 is fixed by the connecting frame 21. When the vacuum cleaner 22 is running, it can create negative pressure on the outside of the dust collection hopper 23, thereby collecting dust. The glass fiber is also contacted by a set of limiting rollers 8, and the limiting rollers 8 are constrained by the constraint shaft 7 to follow the rotation, thereby limiting the up and down movement and making the glass fiber evenly wrapped. In addition, oil can be injected into the inner wall of the inner threaded sleeve 18 through the oiling nozzle 19 for convenient lubrication and maintenance. After the oiling cap 20 is installed on the outside of the oiling nozzle 19, the inside of the oiling nozzle 19 can be sealed and protected. The information of this device can be displayed through the information board 24, which is convenient for reading and assisting in use, improving convenience.
[0031] The winding body 2, the cleaning drive motor 14, and the reciprocating drive motor 16 are commercially available devices known to those skilled in the art. We are simply using them here without making any structural or functional improvements, and we will not elaborate further on them here.
[0032] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A winding machine for glass steel electric pole, comprising a base (1) and a winding machine body (2), the top rear side of the base (1) is connected with the bottom side of the winding machine body (2), characterized in that, It also includes a transverse slide (3), a slider (4), a bracket (5), a through frame (6), a constraint shaft (7), a limiting roller (8), a sliding sleeve (9), a sliding rod (10), a pull plate (11), a spring (12), a shaft frame (13), a cleaning drive motor (14), and a cleaning roller (15). The front top of the base (1) is connected to the bottom of the transverse slide (3), the inner side of the transverse slide (3) is laterally slidably connected to the outer side of the slider (4), and a reciprocating drive mechanism is provided between the transverse slide (3) and the slider (4). The top of the slider (4) is connected to the middle of the bottom side of the through frame (6) via the bracket (5). A set of constraint shafts is rotatably provided at the upper and lower ends of the rear side inside the through frame (6). (7) The outer wall of each set of constraint shafts (7) is connected to the inner wall of a set of limiting rollers (8). A set of sliding sleeves (9) are connected to the middle front part of the left and right sides of the through frame (6). A sliding rod (10) is slidably arranged on the inner side of the sliding sleeve (9). The outer side of the sliding rod (10) is connected to the middle part of the inner side of the pull plate (11). A spring (12) is connected to the outer side of each set of sliding sleeves (9) on the outside of the through frame (6) and the outer side of the inner side of the pull plate (11). The inner side of each set of sliding rods (10) is connected to the middle part of the outer side of a set of shaft frames (13). A cleaning drive motor (14) is connected to the top of the shaft frame (13). A cleaning roller (15) is installed inside the shaft frame (13) at the output end of the cleaning drive motor (14).
2. The fiberglass pole winding machine of claim 1, wherein: The reciprocating drive mechanism includes a reciprocating drive motor (16), a threaded rod (17), and an internal threaded sleeve (18). One side of the transverse slide (3) is connected to the inner side of the reciprocating drive motor (16), and the output end of the reciprocating drive motor (16) is connected to the same side of the threaded rod (17). The inner side of the slider (4) is connected to the outer side of the internal threaded sleeve (18), and the inner wall of the internal threaded sleeve (18) is screwed to the outer wall of the threaded rod (17).
3. The fiberglass pole winding machine of claim 2, wherein: It also includes an oil injection nozzle (19), which is provided on the outer side of the internal threaded sleeve (18), and the output end of the oil injection nozzle (19) is connected to the inner wall of the internal threaded sleeve (18).
4. The fiberglass pole winding machine of claim 3, wherein: It also includes an oil filling cap (20), the outer side of the oil filling nozzle (19) and the inner side of the oil filling cap (20) can be detachably installed.
5. The fiberglass pole winding machine according to claim 1, characterized in that: It also includes a connecting frame (21), a vacuum cleaner (22) and a dustbin (23). The front middle side of the connecting frame (21) is connected to the rear side of the vacuum cleaner (22) via the connecting frame (21). The vacuum cleaner (22) has a dustbin (23) at its input end, and the dustbin (23) is located on the lower front side of the through frame (6).
6. The fiberglass pole winding machine according to claim 1, characterized in that: It also includes an information board (24), with the outer side of the frame (6) connected to the inner side of the information board (24).
Citation Information
Patent Citations
Glass fiber reinforced plastic telegraph pole winding machine
CN209756051U