Glass fiber cloth winding device with edge cutting structure
By designing a glass fiber cloth winding device with a cutting structure, automatic cutting and slitting is achieved, solving the problems of uneven cutting and low slitting efficiency, enhancing practicality, being able to handle exhaust gas and dust, and supporting rolling of different widths.
Patent Information
- Application Number
- CN202510630200.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-16
- Publication Date
- 2025-07-08
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The existing fiberglass fabrics are prone to unevenness when cutting edges, and need to be moved to the slitting device for slitting, which affects processing efficiency, and cannot wind up fiberglass fabrics of different widths as needed.
A glass fiber cloth winding device with a cutting structure is designed, including a cutting structure, a waste gas treatment structure, a leveling cutting structure and a winding structure. It uses a laser slitting knife and a moving component to achieve automatic cutting and slitting, combines a UV photolysis waste gas treatment machine and a vacuum cleaner to treat exhaust gas and dust, and achieves winding of different widths through the winding component.
Automatic cutting and slitting of fiberglass fabrics is realized, processing efficiency is improved, cutting edges are ensured, exhaust gas and dust are processed, and fabrics of different widths can be rolled as needed, enhancing practicality.
Smart Images

Figure CN120270834A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fiberglass cloth, and specifically to a winding device for fiberglass cloth with a trimming structure. Background Technique
[0002] Glass fiber square cloth is a plain weave fabric of roving, and it is an important base material for hand lay-up fiberglass. The strength of the square cloth is mainly in the warp and weft directions of the fabric. For occasions where high strength in the warp or weft direction is required, unidirectional cloth can also be woven. It can arrange more roving in the warp or weft direction, single warp cloth, single weft cloth. When trimming the existing fiberglass cloth, it is easy to have an uneven trimming situation, which affects the processing effect of the fiberglass cloth. And when the existing fiberglass cloth needs to be slit, it needs to be moved to the slitting device for processing, which affects the processing efficiency. At the same time, when the fiberglass cloth is wound, it cannot wind fiberglass cloth of different widths according to needs, and the practicability is not strong. Summary of the Invention
[0003] The purpose of the present invention is to provide a winding device for fiberglass cloth with a trimming structure to solve the problems raised in the above background technique, that is, when trimming the existing fiberglass cloth, it is easy to have an uneven trimming situation, which affects the processing effect of the fiberglass cloth. And when the existing fiberglass cloth needs to be slit, it needs to be moved to the slitting device for processing, which affects the processing efficiency. At the same time, when the fiberglass cloth is wound, it cannot wind fiberglass cloth of different widths according to needs, and the practicability is not strong.
[0004] To achieve the above purpose, the present invention provides the following technical solution: A winding device for fiberglass cloth with a trimming structure, the trimming structure is connected to the waste gas treatment structure, and a leveling and cutting structure is rotatably connected to the trimming structure, and the leveling and cutting structure is located on the left side of the winding structure;
[0005] The trimming structure includes a bottom box, on which a first support plate and a U-shaped plate are fixed. The first support plate is located on the right side of the U-shaped plate. A second support plate is fixed on the U-shaped plate. A first moving component is slidably connected to the second support plate. A first laser cutting knife is fixed on the first moving component. A partition plate is arranged on the right side of the first moving component, and the partition plate is fixed on the second support plate. A second moving component and a third moving component are fixed between the partition plate and the second support plate. The third moving component is located between the second moving components. First laser cutting knives are fixed on the lower sides of the second moving component and the third moving component;
[0006] The first moving component includes a first motor box. A motor in the first motor box drives a first lead screw to rotate, and the rotation of the first lead screw drives the first slider to move back and forth;
[0007] The third moving component includes a second motor box. A motor inside the second motor box drives a gear set to rotate. The rotation of the gear set drives a second lead screw to rotate, and the rotation of the second lead screw drives a second slider to adjust its position.
[0008] Preferably, the waste gas treatment structure includes a first air inlet hood. The first air inlet hood is connected to a waste gas treatment component through a first air pipe. A second baffle is arranged on the right side of the first baffle. The second baffle adjusts the position of an adjusting plate through a telescopic structure. Dust suction components are embedded on both the adjusting plate and the first baffle. Guide material components are fixed on both the adjusting plate and the first baffle. The guide material component includes a spring shaft. A connecting block is fixed on the spring shaft. Guide rollers are rotatably connected between the connecting blocks. The dust suction component includes a dust suction hood. The dust suction hood is connected to a small dust collector through a waste pipe and a material conveying pipe.
[0009] By adopting the above technical solution, dust is treated through the arrangement of the dust suction component.
[0010] Preferably, the waste gas treatment component includes a UV photolysis waste gas treatment machine. The UV photolysis waste gas treatment machine is connected to a filter box. An adsorption net is slidably connected to the filter box.
[0011] By adopting the above technical solution, waste gas is treated through the arrangement of the waste gas treatment component.
[0012] Preferably, the leveling and cutting structure includes a guide roller. The guide roller is located on the left side of the leveling roller. A third support plate is arranged at the upper right end of the leveling roller. A fourth moving component is slidably connected to the third support plate. A second laser cutting knife is fixed on the fourth moving component. A second air inlet hood is fixed on the left side of the second laser cutting knife. The second air inlet hood is connected to a second air pipe.
[0013] By adopting the above technical solution, the fiberglass cloth is leveled through the arrangement of the leveling and cutting structure.
[0014] Preferably, the winding structure includes a first fixing plate. A second fixing plate is arranged at the rear side of the first fixing plate. The second fixing plate is rotatably connected to a winding component through a first rotating component. A connecting plate is fixed on the winding component. A third rotating rod is rotatably connected to the connecting plate. A limiting component is fixed between the third rotating rod and the winding component. A winding roller component is snap-fitted between the limiting components.
[0015] Preferably, the first rotating component includes a third motor box. A motor inside the third motor box drives a first rotating rod to rotate. The rotation of the first rotating rod drives a limiting plate on a third fixing plate to rotate.
[0016] By adopting the above technical solution, the position of the first rotating component is adjusted through the arrangement of the first rotating component.
[0017] Preferably, the winding assembly includes a support frame, in which a fourth motor box is embedded, and a motor in the fourth motor box drives a second rotating rod to rotate.
[0018] By adopting the above technical solution, the winding roller assembly is driven to rotate through the setting of the winding assembly.
[0019] Preferably, the limiting assembly includes a rotating block. The position of a limiting block is adjusted by telescopic structure in a hollow groove formed in the rotating block, and the limiting block is located in a limiting groove.
[0020] By adopting the above technical solution, the winding roller assembly is disassembled and assembled through the setting of the limiting assembly.
[0021] Preferably, the winding roller assembly includes a fourth support plate, and a winding roller body is fixed between the fourth support plates.
[0022] By adopting the above technical solution, glass fiber cloths with different widths are wound through the setting of the winding roller assembly.
[0023] Compared with the prior art, the beneficial effects of the present invention are as follows: The glass fiber cloth winding device with a trimming structure
[0024] (1) The present invention automatically trims the glass fiber cloth, cuts the glass fiber cloth, automatically treats the waste gas and dust generated by trimming and cutting, automatically levels and cuts the glass fiber cloth, and separately winds the glass fiber cloth according to its length. By setting the first moving assembly, the distance between the first laser cutting knives is adjusted, so as to trim the two sides of the glass fiber cloth as required to ensure smooth trimming. By setting the second moving assembly and the third moving assembly, the position of the lower first laser cutting knife is adjusted, so as to facilitate directly cutting the glass fiber cloth as required in the later stage, improving the overall processing efficiency.
[0025] (2) The present invention treats the waste gas through the settings of a UV photolysis waste gas treatment machine, a filter box and an adsorption net, and simultaneously treats the waste chips with the assistance of a dust suction hood, a waste pipe, a feeding pipe and a small dust suction machine to ensure the surface cleanliness of the glass fiber cloth.
[0026] (3) The present invention levels and automatically cuts the glass fiber cloth with the assistance of a flattening roller, a fourth moving assembly and a second laser cutting knife, improving the overall winding efficiency. Five groups of winding assemblies are arranged between the third fixing plates, and different lengths of winding roller assemblies are rotatably connected to the five groups of winding assemblies, so that glass fiber cloths with different widths can be wound as required in the later stage, increasing the practicability. And through the setting of the limiting assembly, the winding roller assembly can be disassembled and assembled quickly, increasing the practicability. Description of the Drawings
[0027] Figure 1 Schematic front view structure of the present invention;
[0028] Figure 2 Schematic rear view structure of the present invention;
[0029] Figure 3 Schematic left view structure of the present invention;
[0030] Figure 4 Schematic structure of the third moving component of the present invention;
[0031] Figure 5 Schematic structure of the first rotating component of the present invention;
[0032] Figure 6 Schematic structure of the winding component of the present invention;
[0033] Figure 7 For the present invention Figure 1 Schematic enlarged structure at position A in;
[0034] Figure 8 For the present invention Figure 5 Schematic enlarged structure at position B in;
[0035] Figure 9 Schematic three-dimensional structure of the distribution of the winding roller assembly of the present invention between the limiting components.
[0036] In the figure: 1. Edge trimming structure; 11. Bottom box; 12. First support plate; 13. U-shaped plate; 14. Second support plate; 15. First moving component; 151. First motor box; 152. First lead screw; 153. First slider; 16. First laser slitter; 17. Second moving component; 18. Third moving component; 181. Second motor box; 182. Gear set; 183. Second lead screw; 184. Second slider; 2. Waste gas treatment structure; 21. First air intake hood; 22. First air duct; 23. Waste gas treatment component; 231. UV photolysis waste gas treatment machine; 232. Filter box; 233. Adsorption net; 24. First baffle; 25. Second baffle; 26. Feeding component; 261. Spring shaft; 262. Connecting block; 263. Guide roller; 27. Dust collection component; 271. Dust collection hood; 272. Waste pipe; 273. Feeding pipe; 274. Small dust collector; 3. Flattening and cutting structure; 31. Guide roller; 32. Flattening roller; 33. Third support plate; 34. Fourth moving component; 35. Second laser slitter; 36. Second air intake hood; 37. Second air duct; 4. Rewinding structure; 41. First fixing plate; 42. Second fixing plate; 43. First rotating component; 431. Third motor box; 432. First rotating rod; 433. Third fixing plate; 434. Limiting plate; 44. Winding component; 441. Support frame; 442. Fourth motor box; 443. Second rotating rod; 45. Limiting component; 451. Rotating block; 452. Hollow groove; 453. Limiting block; 454. Limiting groove; 46. Connecting plate; 47. Third rotating rod; 48. Winding roller component; 481. Fourth support plate; 482. Winding roller body. Detailed implementation manners
[0037] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0038] Please refer to Figure 1-9 , the present invention provides a technical solution: a glass fiber cloth rewinding device with an edge trimming structure, as shown in Figure 1 , Figure 2 and Figure 4As shown in the figure, the edge trimming structure 1 is connected to the waste gas treatment structure 2. The edge trimming structure 1 includes a bottom box 11. A first support plate 12 and a U-shaped plate 13 are fixed on the bottom box 11. The first support plate 12 is located on the right side of the U-shaped plate 13. A second support plate 14 is fixed on the U-shaped plate 13. A first moving component 15 is slidably connected to the second support plate 14. A first laser cutting knife 16 is fixed on the first moving component 15. A partition plate is arranged on the right side of the first moving component 15. The partition plate is fixed on the second support plate 14. A second moving component 17 and a third moving component 18 are fixed between the partition plate and the second support plate 14. The third moving component 18 is located between the second moving components 17. First laser cutting knives 16 are fixed on the lower sides of the second moving component 17 and the third moving component 18. The first moving component 15 includes a first motor box 151. A motor in the first motor box 151 drives a first lead screw 152 to rotate. The rotation of the first lead screw 152 drives a first slider 153 to move back and forth. The third moving component 18 includes a second motor box 181. A motor in the second motor box 181 drives a gear set 182 to rotate. The rotation of the gear set 182 drives a second lead screw 183 to rotate. The rotation of the second lead screw 183 drives a second slider 184 to adjust its position;
[0039] Among them, a control device for controlling the overall equipment is fixed on the edge trimming structure 1. The telescopic structure in this application is a hydraulic cylinder, and the hydraulic cylinder is a prior art;
[0040] Specifically, the first moving component 15, the second moving component 17 and the fourth moving component 34 have the same structure. There are two groups of the first moving component 15 and the second moving component 17. The two groups of the first moving component 15 and the second moving component 17 are symmetrically arranged about the central axis of the second support plate 14. There are two groups of the third moving component 18. The two groups of the third moving component 18 are symmetrically arranged;
[0041] Furthermore, an infrared distance sensor is embedded on the first slider 153. The model of the infrared distance sensor is GP2Y0A21YK0F. The setting of the infrared distance sensor accurately measures the fiberglass cloth, thereby ensuring the edge trimming and cutting quality of the fiberglass cloth;
[0042] In the above solution, the fiberglass cloth to be cut is moved to the required position below the second support plate 14 inside the U-shaped plate 13 with the assistance of the conveyor belt on the bottom box 11. Driven by the stepping motor in the first motor box 151, the first lead screw 152 rotates. The rotation of the first lead screw 152 drives the first slider 153 to slide relatively or in opposite directions on the second support plate 14, thereby adjusting the position of the first laser slitting knife 16 below the first slider 153. Under the action of the first laser slitting knife 16 below the first slider 153, edge trimming is performed on both sides of the fiberglass cloth. With the assistance of the second moving assembly 17, the position of the first laser slitting knife 16 below the second moving assembly 17 is adjusted. Driven by the stepping motor in the second motor box 181, the gear set 182 rotates. The rotation of the gear set 182 drives the second slider 184 on the second lead screw 183 to move back and forth, thereby adjusting the position of the first laser slitting knife 16 below the second slider 184. With the assistance of multiple groups of first laser slitting knives 16, the fiberglass cloth is slit as required.
[0043] As Figure 1 , Figure 2 , Figure 3 and Figure 7 shown, the exhaust gas treatment structure 2 includes a first air inlet hood 21. The first air inlet hood 21 is connected to the exhaust gas treatment assembly 23 through a first air pipe 22. A second baffle 25 is arranged on the right side of the first baffle 24. The second baffle 25 adjusts the position of the adjusting plate through a telescopic structure. Dust suction components 27 are embedded on both the adjusting plate and the first baffle 24. Guide material components 26 are fixed on both the adjusting plate and the first baffle 24. The guide material component 26 includes a spring shaft 261. A connecting block 262 is fixed on the spring shaft 261. A guide roller 263 is rotatably connected between the connecting blocks 262. The dust suction component 27 includes a dust suction hood 271. The dust suction hood 271 is connected to a small dust collector 274 through a waste pipe 272 and a material conveying pipe 273. The exhaust gas treatment assembly 23 includes a UV photolysis exhaust gas treatment machine 231. The UV photolysis exhaust gas treatment machine 231 is connected to a filter box 232. An adsorption net 233 is slidably connected to the filter box 232;
[0044] Among them, two groups of first air inlet hoods 21 are provided. The two groups of first air inlet hoods 21 are arranged on both sides of the first moving assembly 15. Multiple groups of first air inlet hoods 21 are equidistantly distributed below the second support plate 14;
[0045] Specifically, the adsorption net 233 includes an activated carbon adsorption net and a honeycomb zeolite molecular sieve, so as to ensure the exhaust gas treatment effect;
[0046] Further, three sets of material guiding components 26 are provided between the adjusting plate and the first baffle 24. The three sets of material guiding components 26 guide fiberglass cloths of different thicknesses. Multiple sets of dust suction covers 271 are provided on the adjusting plate and the first baffle 24, and the multiple sets of dust suction covers 271 are evenly distributed on the adjusting plate and the first baffle 24;
[0047] In the above solution, with the assistance of the air blower in the first air delivery pipe 22, the waste gas enters the interior of the UV photolysis waste gas treatment machine 231 through the first air inlet cover 21 and the first air delivery pipe 22. With the assistance of the UV photolysis waste gas treatment machine 231, the waste gas is treated. The treated waste gas enters the interior of the filter box 232 and is further treated with the assistance of the activated carbon adsorption net and the honeycomb zeolite molecular sieve in the filter box 232 to ensure the waste gas treatment effect. Manually pull the adsorption net 233, and the adsorption net 233 is separated from the filter box 232, so as to facilitate later replacement. With the assistance of the material guiding roller 31, the fiberglass cloth is guided. The hydraulic cylinder on the second baffle 25 drives the adjusting plate to adjust its position through the hydraulic rod, so as to drive the guide roller 263 to move through the spring shaft 261 and the connecting block 262, so as to ensure that the guide roller 263 on the first baffle 24 and the adjusting plate fits the fiberglass cloth. With the assistance of the air blower in the waste material pipe 272, the waste fiber is stored in the small dust collector 274 through the dust suction cover 271, the waste material pipe 272 and the material delivery pipe 273, improving the operation environment quality.
[0048] As Figure 1 、 Figure 2 、 Figure 5 、 Figure 6 、 Figure 8 and Figure 9 As shown in
[0049] Among them, multiple sets of leveling rollers 32 are provided, and the multiple sets of leveling rollers 32 are rotatably connected to the bottom box 11 and the first support plate 12;
[0050] Further, electric heating wires and temperature sensors are embedded on the leveling roller 32, and the model of the temperature sensor is CWDZ11, so as to adjust the temperature as required;
[0051] In the preferred solution of this embodiment, with the assistance of the leveling roller 32, the fiberglass cloth is leveled. After leveling, the fiberglass cloth moves to the lower side of the second laser cutting knife 35. With the assistance of the fourth moving component 34 on the third support plate 33, the position of the second laser cutting knife 35 is adjusted, so as to cut the fiberglass cloth. With the assistance of the air blower in the second air pipe 37, the waste gas enters the interior of the UV photolysis waste gas treatment machine 231 through the second air inlet hood 36 and the second air pipe 37.
[0052] As Figure 1 , Figure 2 , Figure 4 and Figure 8 shown, the leveling and cutting structure 3 is located on the left side of the winding structure 4. The winding structure 4 includes a first fixing plate 41. A second fixing plate 42 is arranged at the rear of the first fixing plate 41. The second fixing plate 42 is rotationally connected with a winding component 44 through a first rotating component 43. A connecting plate 46 is fixed on the winding component 44. A third rotating rod 47 is rotationally connected to the connecting plate 46. A limiting component 45 is fixed between the third rotating rod 47 and the winding component 44. A winding roller component 48 is snap-connected between the limiting components 45. The first rotating component 43 includes a third motor box 431. The motor in the third motor box 431 drives the first rotating rod 432 to rotate. The rotation of the first rotating rod 432 drives the limiting plate 434 on the third fixing plate 433 to rotate. The winding component 44 includes a support frame 441. A fourth motor box 442 is embedded on the support frame 441. The motor in the fourth motor box 442 drives the second rotating rod 443 to rotate. The limiting component 45 includes a rotating block 451. The position of the limiting block 453 is adjusted by telescopic structure through the hollow groove 452 opened on the rotating block 451. The limiting block 453 is located in the limiting groove 454. The winding roller component 48 includes a fourth support plate 481. A winding roller body 482 is fixed between the fourth support plates 481;
[0053] Among them, two groups of the first rotating components 43 are provided. Five groups of winding components 44 are arranged between the two groups of the first rotating components 43. The five groups of winding components 44 are equidistantly distributed between the first rotating components 43. Each group of support frames 441 is respectively provided with eight groups of winding roller components 48, four groups of winding roller components 48, two groups of winding roller components 48 and two winding roller components 48 in a group, so as to wind fiberglass cloths with different widths according to needs, increasing the practicability;
[0054] Further, the hydraulic cylinder on the second fixing plate 42 drives the auxiliary limiting plate 434 through the hydraulic rod to assist in limiting the third fixing plate 433, so as to play an auxiliary limiting role. A conveyor belt is arranged under the winding structure 4, so as to convey the winding roller body 482 after unloading;
[0055] In the preferred solution of this embodiment, the fourth support plate 481 is attached to the rotating block 451. The hydraulic cylinder in the hollow groove 452 drives the limiting block 453 to move through the hydraulic rod. The limiting block 453 finally limits and fixes in the limiting groove 454 opened on the fourth support plate 481, so as to limit and fix the winding roller body 482 on the fourth support plate 481. Driven by the stepping motor in the third motor box 431 on the second fixing plate 42, the first rotating rod 432 rotates. The rotation of the first rotating rod 432 drives the third fixing plate 433 to rotate. The rotation of the third fixing plate 433 drives the third fixing plate 433 on the first fixing plate 41 to rotate through the winding assembly 44, the limiting assembly 45, the connecting plate 46, the third rotating rod 47 and the winding roller assembly 48. Driven by the stepping motor in the fourth motor box 442 on the support frame 441, the second rotating rod 443 rotates. The rotation of the second rotating rod 443 drives the winding roller assembly 48 between the limiting assemblies 45 to rotate, so as to wind the fiberglass cloth. When a group of winding assemblies 44 finish winding, the first rotating assembly 43 rotates to drive the winding assemblies 44 to rotate to other positions, which is convenient for other winding roller assemblies 48 to wind the fiberglass cloth.
[0056] Working principle: When using the fiberglass cloth winding device with a trimming structure, connect to an external power supply. With the assistance of the trimming structure 1, trimming and slitting are carried out. Through the setting of the waste gas treatment structure 2, waste gas and waste chips are treated. Through the setting of the leveling and cutting structure 3, the fiberglass cloth is leveled and cut. Through the setting of the winding structure 4, the fiberglass cloth is wound. The content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0057] The orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of simplifying the description of the present invention, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus cannot be construed as a limitation on the protected content of the present invention.
[0058] Although the present invention has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.
Claims
1. A winding device for fiberglass cloth with a trimming structure, characterized in that, The edge trimming structure (1) is connected to the waste gas treatment structure (2). A leveling and cutting structure (3) is rotatably connected to the edge trimming structure (1), and the leveling and cutting structure (3) is located on the left side of the winding structure (4). The edge trimming structure (1) includes a bottom box (11). A first support plate (12) and a U-shaped plate (13) are fixed on the bottom box (11). The first support plate (12) is located on the right side of the U-shaped plate (13). A second support plate (14) is fixed on the U-shaped plate (13). A first moving component (15) is slidably connected to the second support plate (14). A first laser slitting knife (16) is fixed on the first moving component (15). A partition plate is arranged on the right side of the first moving component (15), and the partition plate is fixed on the second support plate (14). A second moving component (17) and a third moving component (18) are fixed between the partition plate and the second support plate (14). The third moving component (18) is located between the second moving components (17). First laser slitting knives (16) are fixed on the lower sides of the second moving component (17) and the third moving component (18). The first moving component (15) includes a first motor box (151). A motor in the first motor box (151) drives a first lead screw (152) to rotate, and the rotation of the first lead screw (152) drives a first slider (153) to move back and forth. The third moving component (18) includes a second motor box (181). A motor in the second motor box (181) drives a gear set (182) to rotate, the rotation of the gear set (182) drives a second lead screw (183) to rotate, and the rotation of the second lead screw (183) drives a second slider (184) to adjust its position.
2. The winding device for fiberglass cloth with a trimming structure according to claim 1, characterized in that: The waste gas treatment structure (2) includes a first air inlet hood (21). The first air inlet hood (21) is connected to a waste gas treatment component (23) through a first air pipe (22). A second baffle (25) is arranged on the right side of a first baffle (24). The second baffle (25) adjusts the position of an adjusting plate through a telescopic structure. Dust suction components (27) are embedded on both the adjusting plate and the first baffle (24). Guide components (26) are fixed on both the adjusting plate and the first baffle (24). The guide component (26) includes a spring shaft (261). A connecting block (262) is fixed on the spring shaft (261). Guide rollers (263) are rotatably connected between the connecting blocks (262). The dust suction component (27) includes a dust suction hood (271). The dust suction hood (271) is connected to a small dust collector (274) through a waste pipe (272) and a feed pipe (273).
3. The winding device for fiberglass cloth with a trimming structure according to claim 2, characterized in that: The waste gas treatment component (23) includes a UV photolysis waste gas treatment machine (231). The UV photolysis waste gas treatment machine (231) is connected to a filter box (232). An adsorption net (233) is slidably connected to the filter box (232).
4. A winding device for a fiberglass cloth with a trimming structure according to claim 1, characterized in that: The leveling and cutting structure (3) includes a material guiding roller (31), the material guiding roller (31) is located on the left side of the leveling roller (32), a third support plate (33) is arranged at the upper right end of the leveling roller (32), a fourth moving component (34) is slidably connected to the third support plate (33), a second laser cutting knife (35) is fixed on the fourth moving component (34), a second air inlet hood (36) is fixed on the left side of the second laser cutting knife (35), and the second air inlet hood (36) is communicated with a second air pipe (37).
5. A winding device for fiberglass cloth with a trimming structure according to claim 1, characterized in that: The winding structure (4) includes a first fixing plate (41), a second fixing plate (42) is arranged at the rear side of the first fixing plate (41), the second fixing plate (42) is rotatably connected with a winding component (44) through a first rotating component (43), a connecting plate (46) is fixed on the winding component (44), a third rotating rod (47) is rotatably connected to the connecting plate (46), a limiting component (45) is fixed between the third rotating rod (47) and the winding component (44), and a winding roller component (48) is snap-connected between the limiting components (45).
6. The rewinding device for fiberglass cloth with a trimming structure according to claim 5, characterized in that: The first rotating component (43) includes a third motor box (431), a motor in the third motor box (431) drives a first rotating rod (432) to rotate, and the rotation of the first rotating rod (432) drives a limiting plate (434) on a third fixing plate (433) to rotate.
7. A winding device for fiberglass cloth with a trimming structure according to claim 5, characterized in that: The winding component (44) includes a support frame (441), a fourth motor box (442) is embedded in the support frame (441), and a motor in the fourth motor box (442) drives a second rotating rod (443) to rotate.
8. The winding device for fiberglass cloth with a trimming structure according to claim 5, characterized in that: The limiting component (45) includes a rotating block (451), the position of a limiting block (453) is adjusted by telescopic adjustment through a hollow groove (452) formed in the rotating block (451), and the limiting block (453) is located in a limiting groove (454).
9. A winding device for a fiberglass cloth with a trimming structure according to claim 5, characterized in that: The winding roller component (48) includes a fourth support plate (481), and a winding roller body (482) is fixed between the fourth support plates (481).