Glass fiber reinforced plastic grating wire winding device

By introducing a stabilizing adjustment and positioning mechanism into the fiberglass grating winding device, the problem of insufficient winding stability under different fiberglass filament roller sizes and specifications is solved, achieving higher stability and ease of operation.

CN223533043UActive Publication Date: 2025-11-11SHANDONG YIBO ENVIRONMENTAL PROTECTION MACHINERY CO LTD
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Patent Information

Application Number
CN202423183820.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-24
Publication Date
2025-11-11
Estimated Expiration
2034-12-24

AI Technical Summary

Technical Problem

Existing fiberglass grating winding devices suffer from insufficient winding stability and adaptability due to the fixed position of the pressure frame when dealing with fiberglass filament rollers of different sizes and specifications.

Method used

A fiberglass grating winding device was designed, which includes a stabilizing adjustment mechanism and an adjusting positioning mechanism. Through components such as a stabilizing frame, stabilizing rod, adjusting groove, screw hole and stud, the device achieves stable adjustment and positioning of the fiberglass filament roller, thereby improving the winding stability and adaptability of the support roller.

Benefits of technology

It enhances the winding stability and adaptability of the glass fiber filament roller, ensures the tension stability of the glass fiber filament during processing, and improves the ease of operation and flexibility of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a glass fiber reinforced plastic grating wire winding device, and belongs to the technical field of glass fiber reinforced plastic grating machining. The glass fiber reinforced plastic grating wire winding device comprises a rack and a stable adjusting mechanism, a motor is installed on the left side of the rack, a supporting roller located on the inner side of the rack is installed at the output end of the motor, a stabilizing frame is installed on the rear side of the rack, a stabilizing rod is movably connected into the stabilizing frame, and an adjusting groove is formed in the bottom of the front side of the stabilizing frame. By arranging the stable adjusting mechanism, the glass fiber yarn roller supported by the surface of the supporting cylinder can be subjected to yarn winding, abutting and stabilizing, a user can conveniently adjust the stabilizing range and position according to the stabilizing requirement of the external glass fiber yarn roller, the stability of the glass fiber yarn roller is improved, and the stability of the glass fiber yarn roller is improved. Therefore, different stability requirements of the external glass fiber yarn roller in use are met, and the yarn winding supporting stability, flexibility and adaptability of the supporting roller are improved.
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Description

Technical Field

[0001] This utility model relates to the field of fiberglass grating processing technology, and more specifically, to a fiberglass grating winding device. Background Technology

[0002] A fiberglass grating winding device is a piece of equipment used to manufacture fiberglass grating structures. It is widely used in various fields such as construction, transportation, and chemical industry. Fiberglass grating is a composite material, mainly made of glass fiber and resin through a specific process. It has excellent corrosion resistance, lightweight and high strength, and wear resistance. Due to its outstanding performance, fiberglass grating is widely used in industrial, commercial, and civil buildings. First, the required glass fiber and resin are prepared, ensuring that the material quality meets production requirements. The glass fiber is then evenly immersed in resin using an impregnation device, ensuring that each fiber is coated with resin. During the fiberglass grating processing, the winding device supports and winds the glass fiber filaments. Since the tension of the glass fiber filaments directly affects their stability during operation, it is necessary to ensure stable operation of the glass fiber filaments.

[0003] In related technologies, during the use of fiberglass grating winding devices, pressure frames are generally installed on the top of the motor-driven support rollers to apply force to stabilize the fiberglass filament rollers supported on the surface of the support rollers, thereby ensuring the stability of the fiberglass filaments during operation.

[0004] However, in the current use of fiberglass grating winding devices, due to the different sizes of different fiberglass rollers and the different specifications of the fiberglass filaments being wound, and the fact that the pressure frame is generally fixed, it is difficult for the pressure frame to apply stable winding force to different fiberglass rollers, which affects the winding stability, flexibility and adaptability of the fiberglass grating winding device. Utility Model Content

[0005] To overcome the above deficiencies, this utility model provides a fiberglass grating winding device that overcomes or at least partially solves the above technical problems.

[0006] This utility model is implemented as follows:

[0007] This utility model provides a fiberglass grating winding device, including a frame, a motor installed on the left side of the frame, and a support roller located inside the frame installed at the output end of the motor.

[0008] A stabilizing adjustment mechanism, comprising:

[0009] Stabilizer; the stabilizer is mounted on the rear side of the frame, and a stabilizer bar is movably connected inside the stabilizer;

[0010] Adjustment slot; the adjustment slot is located at the bottom of the front side of the stabilizer, and an adjustment bar that is fixedly connected to the frame is movably connected inside the adjustment slot;

[0011] Adjust the positioning mechanism; the adjustment positioning mechanism is fixedly connected to the front side of the top of the stabilizer.

[0012] In a preferred embodiment, the adjustment and positioning mechanism includes a positioning post, a screw hole, and a stud. The positioning post is fixedly connected to the front side of the top of the stabilizer. The screw hole is opened inside the positioning post, and the stud is threadedly connected to the inside of the screw hole. The bottom of the stud contacts the top of the adjustment bar.

[0013] In a preferred embodiment, a through hole communicating with a screw hole is provided on the front side of the top of the stabilizer frame, and the stud passes through the through hole to penetrate the stabilizer frame.

[0014] In a preferred embodiment, the stabilizer bar has a sliding opening inside, and a slider is movably connected inside the sliding opening. The outer side of the slider is fixedly connected to the inner wall of the stabilizer frame.

[0015] In a preferred embodiment, a force-applying groove is provided on the front side of the inner wall of the slide, and a spring is provided inside the force-applying groove. One end of the spring is connected to the inner wall of the force-applying groove, and the other end of the spring is connected to the surface of the slider.

[0016] In a preferred embodiment, the top of the stabilizer is movably connected to a plate, the bottom front of the plate is fixedly connected to a post, and the top front of the stabilizer bar has a slot.

[0017] In a preferred embodiment, the top of the stabilizer is provided with a lifting groove located at the bottom of the insert plate, and a lifting column is movably connected inside the lifting groove. The top of the lifting column is fixedly connected to the bottom of the insert plate.

[0018] In a preferred embodiment, a retaining plate is movably connected to the bottom of the lifting trough, and the top of the retaining plate is fixedly connected to the bottom of the lifting column.

[0019] The fiberglass grating winding device provided by this utility model has the following advantages:

[0020] 1. By setting a stabilizing adjustment mechanism, the fiberglass filament roller supported on the surface of the support cylinder can be wound and tightened for stability. This allows users to adjust the stabilization range and position according to the stabilization requirements of the external fiberglass filament roller, thus meeting different stabilization needs of the external fiberglass filament roller. This improves the flexibility and adaptability of the winding support stability of the support roller.

[0021] 2. By setting up an adjustment and positioning mechanism, a medium can be provided for users to tighten and position the stabilizer and the adjustment bar after the move, so that users can perform stable operation between the adjusted stabilizer and the frame, avoiding the situation where the stabilizer is difficult to adjust and position during use, thus improving the convenience of adjusting and positioning the stabilizer.

[0022] 3. By setting through holes, the stud can pass through the stabilizer and enter the adjustment slot to contact and abut against the adjustment strip, thus avoiding the situation where the stud is difficult to pass through the stabilizer during use, thereby improving the smoothness of the stud's abutment force application. Attached Figure Description

[0023] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the embodiments will be briefly introduced below. It should be understood that the following drawings only show some embodiments of this utility model and should not be regarded as a limitation of the scope. For those skilled in the art, other related drawings can be obtained from these drawings without creative effort.

[0024] Figure 1 This is an overall perspective view provided by an embodiment of the present utility model;

[0025] Figure 2 A left-side three-dimensional structural diagram of the stabilizer provided for an embodiment of this utility model;

[0026] Figure 3 A three-dimensional cross-sectional structural diagram of the stabilizer bar provided for an embodiment of this utility model;

[0027] Figure 4 A three-dimensional cross-sectional structural diagram of the stabilizer provided for an embodiment of this utility model;

[0028] In the diagram: 1. Frame; 2. Motor; 3. Support roller; 4. Stabilizer; 5. Stabilizer bar; 6. Adjustment groove; 7. Adjustment strip; 8. Positioning post; 9. Screw hole; 10. Screw; 11. Through hole; 12. Sliding port; 13. Slider; 14. Force application groove; 15. Spring; 16. Insert plate; 17. Insert post; 18. Slot; 19. Lifting groove; 20. Lifting post; 21. Clamping plate. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of the embodiments of this utility model clearer, the technical solutions of the embodiments of this utility model will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this utility model, not all embodiments. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.

[0030] Reference Figures 1-4 This utility model provides a technical solution: a fiberglass grating winding device, including a frame 1 and a stabilizing adjustment mechanism. A motor 2 is installed on the left side of the frame 1, and a support roller 3 located inside the frame 1 is installed at the output end of the motor 2. This device can wind and tighten the fiberglass grating supported on the surface of the support cylinder to stabilize it. It also allows the user to adjust the stabilization range and position according to the stabilization requirements of the external fiberglass grating to meet different stabilization needs of the external fiberglass grating. Therefore, it improves the winding support stability, flexibility, and adaptability of the support roller 3.

[0031] Reference Figures 1-4 In a preferred embodiment, the stabilization adjustment mechanism includes a stabilizing frame 4, which is mounted on the rear side of the frame 1. A stabilizing rod 5 is movably connected inside the stabilizing frame 4. An adjustment groove 6 is formed at the bottom front side of the stabilizing frame 4, and an adjustment strip 7, which is fixedly connected to the frame 1, is movably connected inside the adjustment groove 6. The adjustment positioning mechanism is fixedly connected to the front top of the stabilizing frame 4. First, according to the size of the external glass fiber roller and the specifications of the internal glass fiber filaments, the stabilizing frame 4 is moved to move the stabilizing rod 5, adjusting the stable position of the stabilizing rod 5. At this time, the adjustment strip 7 moves inside the adjustment groove 6, adjusting the connection between the stabilizing frame 4 and the frame 1. Then, the stabilizing rod 5 cooperates with the stabilizing frame 4 to support the top of the support roller 3. The support glass fiber roller is subjected to force for stable operation, ensuring the tightness and stability of the glass fiber filaments inside the roller during use. The adjustment and positioning mechanism includes a positioning post 8, a screw hole 9, and a stud 10. The positioning post 8 is fixedly connected to the front side of the top of the stabilizer 4. The screw hole 9 is opened inside the positioning post 8. The stud 10 is threaded into the screw hole 9. The bottom of the stud 10 contacts the top of the adjustment bar 7, providing a medium for the user to tighten and position the stabilizer 4 and the adjustment bar 7 after movement. This allows the user to perform stable operation between the adjusted stabilizer 4 and the frame 1, avoiding situations where the stabilizer 4 is difficult to adjust and position during use, thus improving the convenience of adjusting and positioning the stabilizer 4.

[0032] Reference Figures 2-4In a preferred embodiment, a through hole 11 communicating with the screw hole 9 is provided on the front side of the top of the stabilizer 4. The stud 10 passes through the through hole 11 through the stabilizer 4, which provides a movable space for the stud 10 to enter the adjustment groove 6 and contact and abut against the adjustment strip 7. This avoids the situation where the stud 10 is difficult to pass through the stabilizer 4 during use, thus improving the smoothness of the abutting force of the stud 10. The stabilizer 5 has a sliding opening 12 inside, and a slider 13 is movably connected inside the sliding opening 12. The outer side of the slider 13 is fixedly connected to the inner wall of the stabilizer 4, which can limit the sliding connection between the stabilizer 5 and the stabilizer 4, thus improving the sliding connection effect between the stabilizer 5 and the stabilizer 4.

[0033] Reference Figures 2-4 In a preferred embodiment, a force-applying groove 14 is provided on the front side of the inner wall of the sliding opening 12. A spring 15 is provided inside the force-applying groove 14. One end of the spring 15 is connected to the inner wall of the force-applying groove 14, and the other end of the spring 15 is connected to the surface of the slider 13. The slider 13 can apply a forward thrust to the stabilizing rod 5, ensuring that the stabilizing rod 5 is always in contact with the external glass fiber roller to apply a stabilizing force. The top of the stabilizing frame 4 is movably connected to the insert plate 16. The front side of the bottom of the insert plate 16 is fixedly connected to the insert post 17. The front side of the top of the stabilizing rod 5 is provided with a slot 18, which can provide the user with a medium for positioning and stabilizing the stabilizing rod 5 and the stabilizing frame 4, thus improving the convenience of positioning and stabilizing the stabilizing frame 4.

[0034] Reference Figures 2-4 In a preferred embodiment, a lifting groove 19 is provided at the top of the stabilizer 4 and at the bottom of the insert plate 16. A lifting column 20 is movably connected inside the lifting groove 19. The top of the lifting column 20 is fixedly connected to the bottom of the insert plate 16, which allows for lifting and lowering of the insert plate 16 and the stabilizer 4, thus improving the connection effect between the insert plate 16 and the stabilizer 4. A locking plate 21 is movably connected at the bottom inside the lifting groove 19. The top of the locking plate 21 is fixedly connected to the bottom of the lifting column 20, which allows for lifting and lowering of the insert plate 16 and the stabilizer 4 to prevent separation, thus improving the stability of the lifting and lowering connection between the insert plate 16 and the stabilizer 4.

[0035] Specifically, the working process or principle of this fiberglass grating winding device is as follows: During use, when the fiberglass filament roller used for fiberglass grating processing is installed on the surface of the support roller 3, based on the size of the fiberglass filament roller and the specifications of the fiberglass filament on the support roller 3, and the requirement for processing stability, the stabilizer 4 is held to move the stabilizer rod 5, adjusting its stable position. At this time, the adjusting strip 7 moves inside the adjusting groove 6, adjusting the connection between the stabilizer 4 and the frame 1. Then, the stud 10 is held to rotate and move downwards along the screw hole 9, allowing the stud 10 to pass through the through hole 11, penetrate the stabilizer 4, and enter the adjusting groove 6 to contact and abut against the adjusting strip 7. The adjusting strip 7 then secures and positions the adjusted stabilizer 4 against the frame 1. Subsequently, the insert plate 16 is held to move the insert 17 towards... When the upper movement separates from the slot 18, the lifting column 20 and the card plate 21 move inside the lifting groove 19 following the insertion plate 16, performing lifting connection and anti-disengagement work between the insertion plate 16 and the stabilizer 4. The spring 15, which is retracted inside the force application groove 14, applies a forward thrust to the stabilizer 5 through the slider 13, so that the front side of the stabilizer 5 contacts and abuts against the glass fiber inside the glass fiber roller, performing a pressing and stabilizing work on the glass fiber, ensuring the stability of the glass fiber during use. During this process, the slider 13 moves inside the sliding opening 12, and the stabilizer 5 and the stabilizer 4 perform a sliding connection, ensuring the stability of the connection force between the stabilizer 5 and the stabilizer 4, and promoting the stable actual tension stabilization force of the stabilizer 5 on the glass fiber, preventing the glass fiber from becoming too loose during use.

[0036] It should be noted that the frame 1, motor 2 and support roller 3 are all existing devices or equipment, or devices or equipment that can be implemented with existing technology. Their power supply, specific composition and principle are clear to those skilled in the art, so they will not be described in detail.

Claims

1. A fiberglass grating winding device, comprising a frame (1), wherein a motor (2) is mounted on the left side of the frame (1), and a support roller (3) located inside the frame (1) is mounted on the output end of the motor (2), characterized in that... ; A stabilizing adjustment mechanism, comprising: Stabilizer (4); The stabilizer (4) is installed on the rear side of the frame (1), and a stabilizer rod (5) is movably connected inside the stabilizer (4). Adjustment slot (6); The adjustment slot (6) is located at the bottom of the front side of the stabilizer (4), and the adjustment slot (6) is movably connected to the adjustment strip (7) which is fixedly connected to the frame (1). Adjust the positioning mechanism; the adjustment positioning mechanism is fixedly connected to the front side of the top of the stabilizer (4).

2. The fiberglass grating winding device according to claim 1, characterized in that, The adjustment and positioning mechanism includes a positioning post (8), a screw hole (9) and a stud (10). The positioning post (8) is fixedly connected to the front side of the top of the stabilizer (4). The screw hole (9) is opened inside the positioning post (8). The stud (10) is threadedly connected inside the screw hole (9). The bottom of the stud (10) contacts the top of the adjustment bar (7).

3. The fiberglass grating winding device according to claim 2, characterized in that, The front side of the top of the stabilizer (4) is provided with a through hole (11) that communicates with the screw hole (9), and the stud (10) passes through the stabilizer (4) through the through hole (11).

4. The fiberglass grating winding device according to claim 1, characterized in that, The stabilizer bar (5) has a sliding opening (12) inside, and a slider (13) is movably connected inside the sliding opening (12). The outer side of the slider (13) is fixedly connected to the inner wall of the stabilizer frame (4).

5. A fiberglass grating winding device according to claim 4, characterized in that, A force-applying groove (14) is provided on the front side of the inner wall of the sliding mouth (12). A spring (15) is provided inside the force-applying groove (14). One end of the spring (15) is connected to the inner wall of the force-applying groove (14), and the other end of the spring (15) is connected to the surface of the slider (13).

6. The fiberglass grating winding device according to claim 1, characterized in that, The top of the stabilizer (4) is movably connected to a plate (16), and the front side of the bottom of the plate (16) is fixedly connected to a post (17). The front side of the top of the stabilizer (5) is provided with a slot (18).

7. A fiberglass grating winding device according to claim 6, characterized in that, The top of the stabilizer (4) is provided with a lifting groove (19) located at the bottom of the insert plate (16). A lifting column (20) is movably connected inside the lifting groove (19). The top of the lifting column (20) is fixedly connected to the bottom of the insert plate (16).

8. A fiberglass grating winding device according to claim 7, characterized in that, The bottom of the lifting groove (19) is movably connected to a card plate (21), and the top of the card plate (21) is fixedly connected to the bottom of the lifting column (20).