Wire guiding device for steel wire winding
By designing an adjustable wire winding device, the problem of inconvenient adjustment of traditional devices was solved, enabling stable winding of steel wires of different specifications and materials, thereby improving production efficiency and product quality.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2026-04-03
AI Technical Summary
Traditional wire winding devices are complex in structure and inconvenient to adjust, making it difficult to adapt to the winding requirements of wires of different specifications and materials. This results in unstable wires, wires that are prone to knotting or wear, affecting production efficiency and product quality.
A wire guide device is designed, which includes a slide that can move left and right and a guide assembly. The assembly includes an adjustable pressure roller and a guide roller. The slide is precisely adjusted through an eccentric wheel and a sleeve structure. Combined with a pulley and a sliding motor drive, the stability and smoothness of the wire during the winding process are ensured.
It achieves a simple structure and flexible adjustment, suitable for winding steel wires of different specifications and materials, ensuring stable and smooth winding of steel wires, and improving production efficiency and product quality.
Smart Images

Figure CN224076817U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of steel wire winding, and in particular relates to a wire winding device for steel wire winding. Background Technology
[0002] In the production process of steel wire mesh reinforced plastic composite pipe (hereinafter referred to as steel-plastic composite pipe), the winding of steel wire is a crucial step. Steel-plastic composite pipes, with their advantages of high strength, corrosion resistance, and lightweight, are widely used in water supply and drainage, gas transmission, and electrical cable protection. As the reinforcing material of the steel-plastic composite pipe, the quality of its winding directly affects the performance and service life of the final product. To achieve this goal, the wire winding device in the steel wire winding equipment plays a key role.
[0003] Traditional wire winding devices are often complex in structure, inconvenient to adjust, and difficult to adapt to the winding requirements of wires of different specifications and materials. In actual operation, problems such as unstable wires, easy knotting or wear of wires are frequently encountered, which not only affect production efficiency but also increase the product defect rate. Utility Model Content
[0004] In view of the above problems, the purpose of this utility model is to provide a wire winding device for steel wire winding, which aims to solve the above problems.
[0005] The present invention adopts the following technical solution:
[0006] The wire guiding device includes a carrier frame with a slide seat that can move left and right. A base plate is mounted on the slide seat, and two sets of wire guiding assemblies are mounted on the base plate. The two sets of guide assemblies are vertically arranged. Each guide assembly includes a main board with a slide plate. A pressure roller and a guide roller are rotatably mounted on the main board and the slide plate, respectively, with each pressure roller located between two adjacent guide rollers. The main board has an adjustment assembly for adjusting the slide plate's movement. The adjustment assembly includes a rotating shaft mounted on the slide plate, with an eccentric wheel rotatably mounted on the shaft. A sleeve is located at the eccentric position of the eccentric wheel, and the rotating shaft is located inside the sleeve. The eccentric wheel is supported by the slide plate. A groove is formed on the rotating shaft, and a locking screw is screwed into the sleeve, with the bottom of the locking screw abutting against the groove.
[0007] Furthermore, the motherboard has a sliding groove, in which a slider is slidably mounted. The pressure roller is rotatably mounted on the side wall of the motherboard. A connecting screw is screwed into the top of the motherboard, and the bottom of the connecting screw is screwed into the sliding groove and rotatably connected to the slider.
[0008] Furthermore, the base plate is rotatably mounted on the slide block, the slide block is provided with a short plate, the short plate has an oval groove, the base plate is rotatably provided with an adjusting screw, the adjusting screw passes through the oval groove and is locked to the short plate by a pair of upper and lower adjusting nuts.
[0009] Furthermore, the bottom surface of the carrier is provided with a connecting plate, and pulleys are rotatably provided on both the left and right sides of the carrier on the connecting plate. A belt is sleeved between the pulleys, and a sliding motor for driving the rotation of any pulley is also provided on the connecting plate.
[0010] Furthermore, the sleeve is provided with a rotating handle at its tail end.
[0011] Furthermore, both the pressure roller and the guide roller have a ring of guide grooves.
[0012] The beneficial effects of this utility model are:
[0013] 1. Simple structure, flexible adjustment, suitable for the winding needs of steel wires of different specifications and materials.
[0014] 2. The combined action of the pressure roller and the guide roller ensures that the steel wire maintains a stable and smooth flow during the winding process.
[0015] 3. The design of the adjustment components makes the adjustment of the skateboard's sliding position more precise and convenient. Attached Figure Description
[0016] Figure 1 This utility model provides an overall drawing of a wire winding device for steel wire.
[0017] Figure 2 This utility model provides a schematic diagram of the base plate installation.
[0018] Figure 3 This is a schematic diagram of the guide component provided by this utility model.
[0019] Figure 4 This utility model provides a schematic diagram of a rotating shaft structure. Detailed Implementation
[0020] To make the objectives, technical solutions, and advantages of this utility model patent clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the scope of the present utility model.
[0021] To illustrate the technical solution described in this utility model, specific embodiments are described below.
[0022] For ease of explanation, only the parts relevant to the embodiments of this utility model are shown.
[0023] Combination Figure 1-4 As shown, the wire guiding device includes a carrier frame 1, on which a slide block 2 that can move left and right is provided. A base plate 3 is provided on the slide block 2. Two sets of wire guiding assemblies are provided on the base plate 3. The two sets of guiding assemblies are arranged vertically. The guiding assembly includes a main board 4, on which a slide plate 5 is provided. A set of pressure rollers 6 and a set of guide rollers 7 are rotatably provided on the main board 4 and the slide plate 5, respectively. Each pressure roller 6 is located between two adjacent guide rollers 7. An adjustment assembly for adjusting the sliding of the slide plate 5 is provided on the main board 4. The adjustment assembly includes a rotating shaft 8 installed on the slide plate 5. An eccentric wheel 9 is rotatably provided on the rotating shaft 8. A sleeve 10 is provided at the eccentric position of the eccentric wheel 9, and the rotating shaft 8 is located inside the sleeve 10. The eccentric wheel 9 is supported on the slide plate 5. A groove 11 is formed on the rotating shaft 8. A locking screw 12 is screwed into the sleeve 10, and the bottom of the locking screw 12 abuts against the groove 11.
[0024] As the reinforcing material of steel-plastic composite pipes, the quality of steel wire winding directly affects the performance and service life of the final product. To achieve this goal, the wire guide device in the steel wire winding equipment plays a crucial role.
[0025] This device is mainly installed on the frame of a wire winding machine. As shown in the figure, the base plate 3 is provided with a pair of front and rear guide wheel sets 13, and the guide assembly is located between the two guide wheel sets. When the wire winding machine is used to wind the wire, the wire first passes through the front guide wheel set, the two guide assemblies, the rear guide wheel set in sequence, and is finally fixed on the take-up reel on the winding machine.
[0026] The two sets of guide components are arranged vertically. During the winding process of the steel wire, the two sets of guide components can guide and limit the steel wire in both the horizontal and vertical directions, prevent the steel wire from falling off during the winding process, and improve the stability of the steel wire during winding.
[0027] The guiding assembly includes a main board with a sliding plate slidably mounted on it. A set of pressure rollers and a set of guide rollers are rotatably mounted on both the main board and the sliding plate, with each pressure roller positioned between two adjacent guide rollers. When the steel wire is passed through the guiding assembly, the position of the sliding plate can be adjusted using the adjusting component, moving the guide rollers a short distance away from the pressure rollers. This facilitates the wire's exit from the guiding assembly. After the wire has exited the guiding assembly, the position of the sliding plate is adjusted again using the adjusting component. Once the sliding plate is adjusted, the pressure rollers and guide rollers come into contact with the steel wire. The combined action of the pressure rollers and guide rollers ensures stable and smooth flow of the steel wire during winding, and it is suitable for winding steel wires of different specifications and materials.
[0028] Since both the pressure roller 6 and the guide roller 7 have a ring of guide grooves 14, the steel wire must be aligned with the guide grooves during the process of passing through the guide assembly, and the steel wire must be located between the upper and lower sets of guide grooves. After the slide plate is adjusted, the steel wire is located within the upper and lower sets of guide grooves. In this structure, the guide grooves limit the movement of the steel wire, further improving the stability of the steel wire during the winding process.
[0029] When adjusting the position of the slide plate, first loosen the locking screw, ensuring the bottom of the screw is away from the slot. Because the sleeve 10 has a rotating handle 24 at its tail, rotating the sleeve via this handle causes the eccentric wheel to rotate as well. The eccentric wheel then pushes the slide plate along the main board, thus adjusting the slide plate. After adjustment, tighten the locking screw again, ensuring the bottom of the screw engages with the slot and abuts against it, thus positioning the sleeve. This design of the adjustment assembly makes adjusting the slide plate's position more precise and convenient.
[0030] As a specific structure, such as Figure 3-4 The main board 4 has a sliding groove 15, and a slider 16 is slidably disposed in the sliding groove 15. The pressure roller 6 is rotatably disposed on the side wall of the main board 4. A connecting screw 17 is screwed into the top of the main board 4, and the bottom of the connecting screw 17 is screwed into the sliding groove 15 and rotatably connected to the slider 16.
[0031] In this embodiment, the installation position of each pressure roller can be finely adjusted individually. When it is necessary to finely adjust the installation position of the pressure roller, simply turn the connecting screw. The connecting screw moves up and down in the slide groove, thereby driving the slider to slide up and down in the slide groove, and the pressure roller is finely adjusted accordingly.
[0032] In this device, such as Figure 2 The base plate 3 is rotatably mounted on the slide block 2. The slide block 2 is provided with a short plate 18. The short plate 18 has an oval groove 19. The base plate 3 is rotatably provided with an adjusting screw 20. The adjusting screw 20 passes through the oval groove 19 and is locked to the short plate 18 by a pair of upper and lower adjusting nuts 21.
[0033] In the above structure, the pitch angle of the base plate can be adjusted up and down slightly. If the front end of the base plate is to be adjusted downwards by a certain angle, first turn the lower adjusting nut downwards a short distance, the front end of the base plate will rotate downwards, the short plate will contact the lower adjusting nut, and then turn the upper adjusting nut downwards until the upper and lower adjusting nuts lock the adjusting screw on the short plate again.
[0034] Furthermore, as a preferred structure, such as Figure 1-2The bottom surface of the carrier 1 is provided with a connecting plate 22. Pulleys 23 are rotatably provided on the left and right sides of the carrier 1 on the connecting plate 22. A belt (not shown in the figure) is sleeved between the pulleys 23. The slide 2 is mounted on the belt. The connecting plate 22 is also provided with a sliding motor 25 for driving the rotation of any pulley.
[0035] During the winding process, the slide block slides uniformly left and right on the carrier, changing the winding direction of the wire. This allows the wire to be evenly wound on the take-up reel, improving the winding quality. During winding, the sliding motor drives the pulley connected to it to rotate clockwise or counterclockwise, at which time the belt also rotates clockwise or counterclockwise synchronously, thereby causing the slide block to slide left and right.
[0036] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. A wire winding device for winding steel wire, characterized in that: The wire guiding device includes a carrier frame with a slide seat that can move left and right. A base plate is mounted on the slide seat, and two sets of wire guiding assemblies are mounted on the base plate. The two sets of guide assemblies are vertically arranged. Each guide assembly includes a main board with a slide plate. A pressure roller and a guide roller are rotatably mounted on the main board and the slide plate, respectively, with each pressure roller located between two adjacent guide rollers. The main board has an adjustment assembly for adjusting the slide plate's movement. The adjustment assembly includes a rotating shaft mounted on the slide plate, with an eccentric wheel rotatably mounted on the shaft. A sleeve is located at the eccentric position of the eccentric wheel, and the rotating shaft is located inside the sleeve. The eccentric wheel is supported by the slide plate. A groove is formed on the rotating shaft, and a locking screw is screwed into the sleeve, with the bottom of the locking screw abutting against the groove.
2. The wire winding device for steel wire as described in claim 1, characterized in that: The main board has a sliding groove, in which a slider slides. The pressure roller is rotatably mounted on the side wall of the main board. A connecting screw is screwed into the top of the main board, and the bottom of the connecting screw is screwed into the sliding groove and rotatably connected to the slider.
3. The wire winding device for steel wire as described in claim 2, characterized in that: The base plate is rotatably mounted on the slide block, and the slide block is provided with a short plate. The short plate has an oval groove. The base plate is rotatably provided with an adjusting screw. The adjusting screw passes through the oval groove and is locked to the short plate by a pair of upper and lower adjusting nuts.
4. The wire winding device for steel wire as described in claim 3, characterized in that: The bottom surface of the carrier is provided with a connecting plate, and pulleys are rotatably provided on both the left and right sides of the connecting plate. A belt is sleeved between the pulleys, and a sliding motor for driving the rotation of any pulley is also provided on the connecting plate.
5. The wire winding device for steel wire as described in claim 4, characterized in that: The sleeve is equipped with a rotating handle at its tail end.
6. The wire winding device for steel wire as described in claim 5, characterized in that: Both the pressure roller and the guide roller have a ring of guide grooves.