Auxiliary winding equipment for composite fiber net

The design of clamping the rolling roller and motor drive of the threaded rod drive of the mobile plate is solved, and the winding equipment cannot adapt to the rolling roller of different lengths is improved, which improves the suitability of the equipment and the stability of the fiber web rolling.

CN223175369UActive Publication Date: 2025-08-01HEZE HENGRAN WINDOW DECORATION MATERIAL TECH CO LTD
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Patent Information

Application Number
CN202422195110.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-09
Publication Date
2025-08-01
Estimated Expiration
2034-09-09

AI Technical Summary

Technical Problem

The existing winding equipment cannot fully adapt to the reels of different lengths, resulting in the reels of mismatch with the fiber mesh size, affecting the limit mesh transportation after subsequent winding.

Method used

A composite fiber web auxiliary winding device is designed to achieve clamping and release of the winding roller through a threaded rod, combining the motor drive and the use of limit blocks to ensure the stable rotation of the winding roller, and avoid loosening of the fiber web through torsion springs and press rollers.

Benefits of technology

The equipment adapts to rolling rollers of different lengths, improves the suitability of the equipment, and ensures the stability of rolling of the fiber web and the overall transportation effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses auxiliary winding equipment for a composite fiber net, and relates to the field of winding equipment, the auxiliary winding equipment comprises a machine main body, the machine main body is internally provided with a channel, the interior of the channel is movably connected with a moving plate, the interior of the channel is rotatably connected with a threaded rod, and the threaded rod is in threaded connection with the moving plate. According to the winding device, the winding roller with the proper length is arranged between the driving shaft and the linkage shaft, the threaded rod is twisted to drive the two movable plates to move in the opposite direction or the opposite direction till the limiting blocks installed at the ends of the driving shaft and the linkage shaft are located in the installation grooves, and meanwhile the two movable plates have the clamping effect on the winding roller; the motor can be started to drive the winding roller to rotate and wind the fiber net, the inclined plate drives the pressing roller to abut against the wound fiber net under the pressure effect of the torsional spring, the fiber net is prevented from loosening, and therefore the whole equipment can be matched with the winding rollers of different lengths, and the overall adaptability of the machine is improved.
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Description

Technical Field

[0001] The utility model relates to the field of winding equipment, in particular to a composite fiber mesh auxiliary winding equipment. Background Technique

[0002] Product 1 is made of polypropylene as raw material through special processing technology, and can also be made of other materials such as glass fiber and basalt fiber. After the fiber mesh is produced, a winding device is used to wind the fiber mesh uniformly, which is convenient for subsequent transportation and use.

[0003] The existing winding equipment still has the following problems when in use: the existing winding equipment cannot fully adapt to the take-up shafts of different lengths during use, so it is impossible to select a take-up shaft of appropriate length according to the size of the fiber mesh to wind the fiber mesh, resulting in a mismatch between the take-up shaft and the fiber mesh size, thus affecting the transportation of the limiting mesh after winding.

[0004] Therefore, it is necessary to invent a composite fiber mesh auxiliary winding equipment to solve the above problems. Content of the Utility Model

[0005] The purpose of the utility model is to provide a composite fiber mesh auxiliary winding equipment to solve the problem that the existing winding equipment cannot fully adapt to the take-up shafts of different lengths during use, so it is impossible to select a take-up shaft of appropriate length according to the size of the fiber mesh to wind the fiber mesh, resulting in a mismatch between the take-up shaft and the fiber mesh size, thus affecting the transportation of the limiting mesh after winding as mentioned in the above background technique.

[0006] To achieve the above purpose, the utility model provides the following technical solution: a composite fiber mesh auxiliary winding equipment, including a machine main body, a channel is opened inside the machine main body, and a moving plate is movably connected inside the channel, a threaded rod is rotatably connected inside the channel, and the threaded rod is in threaded connection with the moving plate, an electric motor is fixedly connected to the outer wall of the moving plate, and the output shaft of the electric motor is in transmission connection with a driving shaft, and the driving shaft and the linkage shaft are distributed oppositely, the linkage shaft is rotatably connected with another moving plate, limiting blocks are fixedly connected to the outer walls of the driving shaft and the linkage shaft, and the driving shaft and the linkage shaft are movably connected with a winding roller, a notch is opened inside the machine main body, and a rotating rod is rotatably connected to the inner wall of the notch, and an inclined plate is movably sleeved on the outer ring of the rotating rod, a notch is opened at the end of the inclined plate, and a pressing roller is rotatably connected inside the notch through an auxiliary shaft.

[0007] Preferably, two moving plates are provided, and the two moving plates are symmetrically arranged with reference to the vertical central axis of the channel. The two moving plates can clamp the winding roller to ensure the stability of the winding roller during use.

[0008] Preferably, the moving plate is composed of a horizontal plate body and an inclined plate body. A convex block is fixedly connected to the end of the horizontal plate body. The horizontal plate body is in a horizontal "T" shape, and the outer wall of the horizontal plate body is attached to and slidably connected to the inner wall of the channel. The channel is in a horizontal "T" shape, ensuring the stability of the movement of the moving plate during the rotation of the threaded rod.

[0009] Preferably, an installation groove is formed inside the winding roller. The installation groove is a groove that penetrates from left to right. The inner walls of the installation groove are respectively attached to and slidably connected to the outer walls of the ends of the driving shaft and the linkage shaft provided with limiting blocks. In this way, during the rotation of the driving shaft, the winding roller is driven to rotate synchronously to wind the fiber web.

[0010] The left and right ends of the winding roller are respectively attached to the outer walls of the inclined plate bodies of the two moving plates.

[0011] Preferably, a torsion spring is arranged on the outer ring of the rotating rod. The two ends of the torsion spring are respectively fixedly connected to the inner walls of the inclined plate and the notch. Under the action of the pressure applied by the torsion spring, the pressure roller always presses against the fiber web wound around the outer ring of the winding roller that has been wound, preventing the wound fiber web from loosening.

[0012] Preferably, the pressure roller is located above the winding roller, and in the initial state, the pressure roller is attached to the winding roller, facilitating the pressure roller to always press against the fiber web wound around the outer ring of the winding roller and preventing the wound fiber web from loosening.

[0013] Preferably, two sections of threads with opposite helical directions are arranged on the outer ring of the threaded rod. The two sections of threads on the outer ring of the threaded rod are respectively in threaded connection with two symmetrically arranged moving plates. By rotating the threaded rod in different directions, it is ensured that the two moving plates move towards or away from each other, thereby realizing the clamping and releasing of the moving plates.

[0014] In the above technical solution, the technical effects and advantages provided by the present utility model are as follows:

[0015] By arranging a winding roller of appropriate length between the driving shaft and the linkage shaft, twisting the threaded rod drives the two moving plates to move towards or away from each other until the limiting blocks installed at the ends of the driving shaft and the linkage shaft are located inside the installation groove. At the same time, the two moving plates clamp the winding roller. Starting the motor can drive the rotation of the winding roller and wind the fiber web. Under the pressure of the torsion spring, the inclined plate drives the pressure roller to press against the wound fiber web, preventing it from loosening. In this way, the entire device is adapted to winding rollers of different lengths, improving the overall applicability of the machine. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present utility model. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.

[0017] Figure 1 Is a three-dimensional view of the overall structure of the present utility model;

[0018] Figure 2 Is a three-dimensional view of the internal structure of the machine body (in a partially cut-away state) of the present utility model;

[0019] Figure 3 Is a three-dimensional view of the relative positions of the pressure roller and the winding roller of the present utility model;

[0020] Figure 4 Is an exploded view of the connection structure between the winding roller and the moving plate of the present utility model.

[0021] Explanation of reference numerals:

[0022] 1. Machine body; 2. Channel; 3. Moving plate; 4. Convex block; 5. Motor; 6. Driving shaft; 7. Linkage shaft; 8. Limiting block; 9. Winding roller; 10. Installation groove; 11. Notch; 12. Rotating rod; 13. Inclined plate; 14. Gap; 15. Auxiliary shaft; 16. Pressure roller; 17. Threaded rod. Detailed implementation manners

[0023] In order to enable those skilled in the art to better understand the technical solutions of the present utility model, the following will further introduce the present utility model in detail in conjunction with the drawings.

[0024] The present utility model provides a composite fiber mesh auxiliary winding device as Figures 1-4 shown, including a machine body 1. A channel 2 is opened inside the machine body 1, and a moving plate 3 is movably connected inside the channel 2. A threaded rod 17 is rotatably connected inside the channel 2, and the threaded rod 17 is in threaded connection with the moving plate 3. An outer wall of the moving plate 3 is fixedly connected with a motor 5, and an output shaft of the motor 5 is in transmission connection with a driving shaft 6, and the driving shaft 6 and a linkage shaft 7 are relatively distributed. The linkage shaft 7 is rotatably connected with another moving plate 3. Limiting blocks 8 are fixedly connected to outer walls of the driving shaft 6 and the linkage shaft 7, and the driving shaft 6 and the linkage shaft 7 are movably connected with a winding roller 9. A notch 11 is opened inside the machine body 1, and a rotating rod 12 is rotatably connected to an inner wall of the notch 11, and an inclined plate 13 is movably sleeved on an outer ring of the rotating rod 12. A gap 14 is opened at an end of the inclined plate 13, and a pressure roller 16 is rotatably connected inside the gap 14 through an auxiliary shaft 15.

[0025] There are two moving plates 3 in number, and the two moving plates 3 are symmetrically arranged with reference to the vertical central axis of the channel 2. The two moving plates 3 can clamp the winding roller 9 to ensure the stability of the use of the winding roller 9.

[0026] The moving plate 3 is composed of a horizontal plate body and an inclined plate body. A convex block 4 is fixedly connected to the end of the horizontal plate body. The horizontal plate body is in a horizontal "T" shape, and the outer wall of the horizontal plate body is in contact with and slidably connected to the inner wall of the channel 2. The channel 2 is in a horizontal "T" shape to ensure the stability of the movement of the moving plate 3 during the rotation of the threaded rod 17.

[0027] An installation groove 10 is formed inside the winding roller 9. The installation groove 10 is a groove that penetrates from left to right. The inner walls of the installation groove 10 are respectively in contact with and slidably connected to the outer walls of the ends of the driving shaft 6 and the linkage shaft 7 provided with the limiting blocks 8. In this way, during the rotation of the driving shaft 6, the winding roller 9 is driven to rotate synchronously to wind the fiber web.

[0028] The left and right ends of the winding roller 9 are respectively in contact with the outer walls of the inclined plate bodies of the two moving plates 3.

[0029] A torsion spring is arranged on the outer ring of the rotating rod 12. The two ends of the torsion spring are respectively fixedly connected to the inner walls of the inclined plate 13 and the notch 11. Under the action of the pressure exerted by the torsion spring, the pressure roller 16 always presses against the fiber web wound around the outer ring of the winding roller 9 that has been wound to prevent the wound fiber web from loosening.

[0030] The pressure roller 16 is located above the winding roller 9, and in the initial state, the pressure roller 16 is in contact with the winding roller 9, which is convenient for the pressure roller 16 to always press against the fiber web wound around the outer ring of the winding roller 9 to prevent the wound fiber web from loosening.

[0031] Two sections of threads with opposite helical directions are arranged on the outer ring of the threaded rod 17. The two sections of threads on the outer ring of the threaded rod 17 are respectively in threaded connection with the two symmetrically arranged moving plates 3. By rotating the threaded rod 17 in different directions, it is ensured that the two moving plates 3 move towards or away from each other, so as to realize the clamping and release of the moving plates 3.

[0032] Working principle: When using a composite fiber mesh auxiliary winding device, first place a winding roller 9 of appropriate length between the drive shaft 6 and the linkage shaft 7, and twist the threaded rod 17. Under the restrictive action of the channel 2 and the convex block 4, the rotation of the threaded rod 17 drives two moving plates 3 that are respectively threadedly connected to the two sections of the outer circle of the threaded rod 17 to move towards each other or away from each other. Assuming that the winding roller 9 is located between the two moving plates 3, align the two openings of the installation groove 10 inside the winding roller 9 with the ends of the drive shaft 6 and the linkage shaft 7 provided with limit blocks 8 respectively. The two moving plates 3 move towards each other until the limit blocks 8 installed at the ends of the drive shaft 6 and the linkage shaft 7 are located inside the installation groove 10. At the same time, the two moving plates 3 clamp the two ends of the winding roller 9. Starting the motor 5 can drive the rotation of the drive shaft 6, thereby driving the rotation of the winding roller 9 and winding the fiber mesh.

[0033] At the same time, under the pressure of the torsion spring, the inclined plate 13 drives the pressure roller 16 to press against the wound fiber mesh to prevent it from loosening. In this way, the entire device is adapted to winding rollers 9 of different lengths, improving the overall applicability of the machine.

[0034] Only some exemplary embodiments of the present invention have been described by way of illustration above. Without doubt, for those of ordinary skill in the art, the described embodiments can be modified in various different ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.

Claims

1. A composite fiber web auxiliary winding device, comprising a machine body (1), characterized in that, A channel (2) is formed inside the machine body (1), and a moving plate (3) is movably connected inside the channel (2). A threaded rod (17) is rotatably connected inside the channel (2), and the threaded rod (17) is in threaded connection with the moving plate (3). An electric motor (5) is fixedly connected to the outer wall of the moving plate (3), and the output shaft of the electric motor (5) is drivingly connected to a driving shaft (6). The driving shaft (6) and a linkage shaft (7) are distributed oppositely. The linkage shaft (7) is rotatably connected to another moving plate (3). Limiting blocks (8) are fixedly connected to the outer walls of the driving shaft (6) and the linkage shaft (7), and the driving shaft (6) and the linkage shaft (7) are movably connected to a winding roller (9). A notch (11) is formed inside the machine body (1), and a rotating rod (12) is rotatably connected to the inner wall of the notch (11). An inclined plate (13) is movably sleeved on the outer ring of the rotating rod (12). A notch (14) is formed at the end of the inclined plate (13), and a pressing roller (16) is rotatably connected inside the notch (14) through an auxiliary shaft (15).

2. The auxiliary winding device for a composite fiber web according to claim 1, characterized in that, There are two moving plates (3) in number, and the two moving plates (3) are symmetrically arranged with reference to the vertical central axis of the channel (2).

3. The auxiliary winding device for a composite fiber web according to claim 1, characterized in that, The moving plate (3) is composed of a horizontal plate body and an inclined plate body. A convex block (4) is fixedly connected to the end of the horizontal plate body. The horizontal plate body is in a horizontal "T" shape, and the outer wall of the horizontal plate body is in contact with and slidably connected to the inner wall of the channel (2). The channel (2) is in a horizontal "T" shape.

4. The auxiliary winding device for a composite fiber web according to claim 1, characterized in that, An installation groove (10) is formed inside the winding roller (9). The installation groove (10) is a groove that penetrates left and right. The inner walls of the installation groove (10) are in contact with and slidably connected to the outer walls of the ends of the driving shaft (6) and the linkage shaft (7) provided with limiting blocks (8). The left and right ends of the winding roller (9) are respectively in contact with the outer walls of the inclined plate bodies of the two moving plates (3).

5. The composite fiber web auxiliary winding device according to claim 1, characterized in that, A torsion spring is arranged on the outer ring of the rotating rod (12), and the two ends of the torsion spring are respectively fixedly connected to the inclined plate (13) and the inner wall of the notch (11).

6. The auxiliary winding device for a composite fiber web according to claim 1, characterized in that, The pressing roller (16) is located above the winding roller (9), and in the initial state, the pressing roller (16) is in contact with the winding roller (9).

7. A composite fiber web auxiliary winding device according to claim 1, characterized in that, Two sections of threads with opposite helical directions are arranged on the outer ring of the threaded rod (17), and the two sections of threads on the outer ring of the threaded rod (17) are respectively in threaded connection with the two symmetrically arranged moving plates (3).