Metal net winding device
By designing the coordination of the clamping part and the fixing part, combined with the structure of the slider and the positioning rod, the problem of inconvenient operation of the roll roll is solved, and the convenient installation and disassembly of the roll roll is achieved, and the processing efficiency of the metal mesh is improved.
Patent Information
- Application Number
- CN202422134610.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-30
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-30
AI Technical Summary
After the existing metal mesh winding device is completed, the installation and removal of the roll rolls are inconvenient, resulting in low machining efficiency.
A metal mesh winding device is designed, including a clamping part and a fixing part. The clamping part is set on the rotating shaft. Through the cooperation of the slider and the positioning rod, the roll is easily installed and removed, and a cutting device is equipped to facilitate the cutting of the metal mesh.
It realizes convenient installation and disassembly of rolls, improves the processing efficiency of the metal mesh, and facilitates the winding and storage and cutting of the metal mesh.
Smart Images

Figure CN223113858U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of metal mesh processing equipment, in particular to a metal mesh winding device. Background Art
[0002] A metal mesh, also known as a wire mesh, is a combination of metal and wire mesh. The wire mainly refers to wire processed from metal or non-metal materials; the mesh is made of wire and woven into different shapes, densities and specifications according to requirements. After processing, the metal mesh usually needs to be wound around a roller for storage and transportation. For example, the patent with publication number CN110369644A discloses a metal wire mesh weaving machine and its weaving method. The second motor is connected to and drives the rotating shaft to rotate through the second transmission mechanism. The roller is fixedly sleeved on the rotating shaft coaxial with it. The rotating shaft drives the roller to rotate. Both ends of the rotating shaft are installed on the frame through bearings, and winding is carried out through the roller. However, in the prior art, the roller is usually integrally installed on the rotating shaft. When the winding is completed, the rotating shaft and the roller need to be integrally removed, which is inconvenient to operate and has low use efficiency. Summary of the Utility Model
[0003] In order to solve the problems of the prior art, the utility model provides a metal mesh winding device that can facilitate the installation and removal of the roller, is convenient to operate, and improves the processing efficiency.
[0004] The specific technical solution is as follows: A metal mesh winding device includes a clamping part and a fixing part. The clamping part and the fixing part are arranged opposite to each other, and a clamping space is formed between the clamping part and the fixing part. The clamping part is sleeved on a rotating shaft. The rotating shaft is located in the middle of the clamping part. A convex block is arranged at the end of the rotating shaft. A slider is arranged on the rotating shaft. The slider is arranged on one side of the clamping part. A positioning rod is arranged on the slider. The positioning rod is arranged parallel to the rotating shaft. One end of the positioning rod is connected to the slider, and the other end is a free end. The positioning rod is arranged corresponding to the through hole of the clamping part. The slider is arranged on a mounting plate. The rotating shaft passes through the mounting plate. The mounting plate is connected to a driving rod. The driving rod drives the mounting plate to move along the axial direction of the rotating shaft. When the slider abuts against the clamping part, one end of the positioning rod abuts against the fixing part. A conveying part is arranged on one side of the fixing part. The discharge port of the conveying part is arranged corresponding to the clamping space.
[0005] In some embodiments, a cutting device is arranged above the discharge port.
[0006] In some embodiments, the cutting device includes a knife plate which is arranged vertically.
[0007] In some embodiments, the cutting device includes a driving cylinder and a base. The knife plate is arranged on the base, and the base is connected to the driving cylinder.
[0008] In some embodiments, the driving cylinder is arranged at both ends of the base.
[0009] In some embodiments, the driving rod passes through the mounting plate and is locked by a locking nut.
[0010] In some embodiments, the conveying part includes a conveying platform and a pressure roller, and the pressure roller is arranged above the conveying platform.
[0011] In some embodiments, both the fixing part and the clamping part are circular, and the positioning rod is eccentrically arranged.
[0012] The technical effects of the present utility model: A metal mesh winding device of the present utility model can facilitate the installation and disassembly of the winding roller, facilitate the winding and storage of the metal mesh. At the same time, it can facilitate the cutting of the metal mesh and improve the processing efficiency. Description of the Drawings
[0013] Figure 1 is a schematic diagram of a metal mesh winding device according to an embodiment of the present utility model.
[0014] Figure 2 is another schematic diagram of a metal mesh winding device according to an embodiment of the present utility model.
[0015] Figure 3 is a schematic diagram of a slider according to an embodiment of the present utility model. Detailed Embodiments
[0016] Next, in combination with examples, the substantial features and advantages of the present utility model will be further described, but the present utility model is not limited to the listed embodiments.
[0017] Such as Figures 1 to 3As shown in the figure, a metal mesh winding device according to this embodiment includes a clamping portion 1 and a fixing portion 2. The clamping portion 1 and the fixing portion 2 are arranged opposite to each other, and a clamping space 3 is formed between the clamping portion 1 and the fixing portion 2. The fixing portion 2 is fixed at one end, and the roller 4 is clamped in the clamping space 3 by the clamping portion 1, and then the metal mesh 10 is wound by the rotation of the roller 4. The clamping portion 1 is sleeved on the rotating shaft 5, and the clamping portion 1 is driven to rotate by the rotating shaft 5. The rotating shaft 5 is located in the middle of the clamping portion 1, and a convex block 51 is provided at the end of the rotating shaft 5 to facilitate the positioning of the end of the roller 4 sleeved on the convex block 51. A sliding block 52 is provided on the rotating shaft 5. The sliding block 52 is arranged on one side of the clamping portion 1, and the sliding block 52 can slide relative to the rotating shaft 52. A positioning rod 6 is provided on the sliding block 52. The positioning rod 6 is arranged parallel to the rotating shaft 5. One end of the positioning rod 6 is connected to the sliding block 52, and the other end is a free end. The positioning rod 6 is arranged corresponding to the through hole 11 of the clamping portion 1. The sliding block 52 is arranged on the mounting plate 7, and the rotating shaft 5 passes through the mounting plate 7. The mounting plate 7 is connected to the driving rod 71, and the driving rod 71 drives the mounting plate 7 to move along the axial direction of the rotating shaft 5. The driving rod 71 is the telescopic rod of a cylinder, so that the mounting plate 7 can be driven to move through the driving rod 71, and then the sliding block 52 can be driven to move. When the sliding block 52 abuts against the clamping portion 1, one end of the positioning rod 6 abuts against the fixing portion 2. A conveying portion 8 is provided on one side of the fixing portion 2, and the discharge port 81 of the conveying portion 8 is arranged corresponding to the clamping space 3. In the above technical solution, one end of the roller 4 abuts against the fixing portion 2, and the other end is sleeved on the convex block 51. The driving rod 71 drives the sliding block 52 to move towards the clamping portion 1. The sliding block 52 abuts against the clamping portion 1, and the clamping portion 1 is pressed to clamp the roller 4. At the same time, the positioning rod 6 passes through the through hole 11 and is arranged parallel to the roller 4. The metal mesh 10 is output through the discharge port 81 and enters between the positioning rod 6 and the roller 4. By the rotation of the rotating shaft 5, the metal mesh is wound on the roller 4. When the winding is completed, the sliding block 52 is reset, and the positioning rod 6 and the clamping portion 1 are reset, which is convenient for unloading the roller 4. Through the above technical solution, it is convenient to wind and store the metal mesh. At the same time, it is convenient to position, install and unload the roller.
[0018] In this embodiment, a cutting device 9 is provided above the discharge port 81. After winding is completed, the metal mesh is cut by the cutting device 9. The cutting device 9 includes a knife plate 91 which is vertically arranged and can quickly cut through. The cutting device 9 further includes a driving cylinder 92 and a base 93. The knife plate 91 is arranged on the base 93, and the base 93 is connected to the driving cylinder 92. The driving cylinder 92 drives the base 93 to move up and down, thereby driving the knife plate 91 to move up and down for cutting. The driving cylinders 92 are arranged at both ends of the base 93, so that the base 93 can move up and down stably. The driving rod 71 passes through the mounting plate 7 and is locked by a locking nut 72, so that the assembly or disassembly of the driving rod 71 and the mounting plate can be facilitated. The conveying part 8 includes a conveying platform 82 and a pressure roller 83. The pressure roller 83 is arranged above the conveying platform 82. The metal mesh is conveyed by the conveying platform 82, and the pressure roller 83 can prevent the metal mesh from shaking during conveying. Both the fixing part 2 and the clamping part 1 are circular, and the positioning rod 6 is eccentrically arranged, so as to facilitate the synchronous rotation of the fixing part and the clamping part 1 to wind the metal mesh.
[0019] A metal mesh winding device in this embodiment can facilitate the installation and disassembly of the winding roller, facilitate the winding and storage of the metal mesh. At the same time, it can facilitate the cutting of the metal mesh and improve the processing efficiency.
[0020] It should be noted that the above-mentioned preferred embodiment is only used to illustrate the technical concept and features of the present invention, and its purpose is to enable those who are familiar with this technology to understand the content of the present invention and implement it accordingly, and it cannot be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.
Claims
1. A metal mesh winding device, comprising a clamping part and a fixing part, the clamping part and the fixing part are arranged opposite to each other, and a clamping space is formed between the clamping part and the fixing part, characterized in that, The clamping part is sleeved on the rotating shaft. The rotating shaft is located in the middle of the clamping part. The end of the rotating shaft is provided with a convex block. A slider is arranged on the rotating shaft. The slider is arranged on one side of the clamping part. A positioning rod is arranged on the slider. The positioning rod is arranged parallel to the rotating shaft. One end of the positioning rod is connected to the slider, and the other end is a free end. The positioning rod is arranged corresponding to the through hole of the clamping part. The slider is arranged on the mounting plate. The rotating shaft passes through the mounting plate. The mounting plate is connected to the driving rod. The driving rod drives the mounting plate to move along the axial direction of the rotating shaft. When the slider abuts against the clamping part, one end of the positioning rod abuts against the fixing part. A conveying part is arranged on one side of the fixing part. The discharge port of the conveying part is arranged corresponding to the clamping space.
2. The metal mesh winding device according to claim 1, characterized in that, A cutting device is arranged above the discharge port.
3. The metal mesh winding device according to claim 2, characterized in that, The cutting device includes a knife plate, and the knife plate is arranged vertically.
4. The metal mesh winding device according to claim 3, characterized in that, The cutting device includes a driving cylinder and a base. The knife plate is arranged on the base, and the base is connected to the driving cylinder.
5. The metal mesh winding device according to claim 4, characterized in that, The driving cylinder is arranged at both ends of the base.
6. The metal mesh winding device according to claim 1, characterized in that, The driving rod passes through the mounting plate and is locked by a locking nut.
7. The metal mesh winding device according to claim 1, wherein, The conveying part includes a conveying platform and a pressure roller. The pressure roller is arranged above the conveying platform.
8. The wire mesh coiling device according to claim 1, characterized in that, Both the fixing part and the clamping part are circular, and the positioning rod is eccentrically arranged.
Citation Information
Patent Citations
Metal wire mesh knitting machine and knitting method thereof
CN110369644A