Gluing and drying integrated equipment for glass fiber gridding cloth preparation

By introducing a scraper and a drying lamp into the fiberglass mesh production unit, the problem of uneven distribution of the base adhesive was solved, ensuring uniform adhesive coating and product quality, and reducing the scrap rate.

CN223832724UActive Publication Date: 2026-01-27NANTONG FIRST FIBER CO LTD
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Patent Information

Application Number
CN202423125880.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-18
Publication Date
2026-01-27
Estimated Expiration
2034-12-18

AI Technical Summary

Technical Problem

Existing fiberglass mesh production equipment lacks a uniform adhesive distribution device, resulting in uneven distribution of the base adhesive, which affects product quality and increases the scrap rate.

Method used

Design an integrated adhesive coating and drying device that includes a scraper and adjustment components. The scraper removes excess adhesive from the top and bottom sides of the fiberglass mesh, ensuring uniform adhesive coating, and the device is then efficiently dried by a drying lamp.

Benefits of technology

This ensures uniform glue application, avoids poor curing or uneven surfaces, and improves the overall quality and pass rate of the product.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of fiberglass gridding cloth production, in particular to gluing and drying integrated equipment for fiberglass gridding cloth preparation, which comprises a shell, tension rollers, a gluer, an adjusting component, a drying lamp and a glue scraping component, the tension rollers are symmetrically connected to the inner wall of the shell, the gluer is mounted on one side of the shell, and the adjusting component is mounted on the other side of the shell. At least three adjusting assemblies are arranged in the shell, drying lamps are symmetrically installed on the inner wall of the upper portion of the shell, and glue scraping assemblies are arranged on the adjusting assemblies. According to the utility model, the first scraping plate and the second scraping plate are mounted, so that when glass fiber gridding cloth passes through the first scraping plate and the second scraping plate, the two scraping plates can respectively remove redundant glue on the upper side and the lower side of the glass fiber gridding cloth, the glue is ensured to be uniformly coated, and the phenomenon of poor solidification or uneven surface is avoided; therefore, the overall quality of the product is guaranteed, and the qualified rate of the glass fiber gridding cloth is improved.
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Description

Technical Field

[0001] This utility model relates to the field of glass fiber mesh production technology, and more specifically, to an integrated equipment for coating and drying glass fiber mesh preparation. Background Technology

[0002] Fiberglass mesh is a commonly used building material, primarily used to enhance the strength and stability of walls, floors, and other surfaces. It possesses excellent tensile strength, corrosion resistance, and high-temperature resistance, and is widely used in construction, decoration, road construction, and many other fields.

[0003] According to a glass fiber mesh production device with patent publication number CN109049962B, the device is characterized by comprising an unwinding roller group, a tension adjusting roller group, a bottom adhesive tank, a drying tower mechanism, a non-adhesive tank, a labeling mechanism, and a take-up roller. The glass fiber mesh unwound from the unwinding roller group passes through the pressure rollers in the bottom adhesive tank and is coated with bottom adhesive. The glass fiber mesh output from the bottom adhesive tank first passes through a first lower reversing roller group, then along the inner wall of the drying chamber, upwards around a first upper reversing roller, then downwards through the first lower reversing roller group, exits the drying chamber, wraps around the brush roller in the non-adhesive tank, and then enters the second lower reversing roller group inside the drying chamber. It then along the inner wall of the drying chamber, upwards around the second upper reversing roller, then downwards through the second lower reversing roller group, and is output. After being labeled by the labeling mechanism, it is stored and air-dried via a storage rack, and finally wound onto the take-up roller. The entire production equipment has a simple structure and reasonable design, making it suitable for mass production. However, this equipment does not have a uniform adhesive distribution device. Uneven distribution of the base adhesive can lead to unstable performance of the fiberglass mesh. Some areas may not achieve the expected bonding strength due to insufficient base adhesive, while other areas may experience poor curing or uneven surfaces due to excessive base adhesive, affecting the overall quality of the product. Products with uneven base adhesive distribution are more prone to defects in subsequent processing, such as blistering, cracking, and delamination, which will increase the scrap rate and production costs.

[0004] Therefore, it is necessary to design an integrated coating and drying equipment for preparing glass fiber mesh. Utility Model Content

[0005] In order to overcome the shortcomings of the prior art, this utility model provides an integrated equipment for coating and drying glass fiber mesh fabric.

[0006] The technical implementation scheme of this utility model is as follows: A coating and drying integrated device for preparing glass fiber mesh cloth includes a shell, tension rollers, a coating applicator, an adjusting component, a drying lamp, and a scraping component. Tension rollers are symmetrically connected to the inner wall of the shell. A coating applicator is installed on one side of the shell. At least three adjusting components are provided inside the shell. Drying lamps are symmetrically installed on the upper inner wall of the shell. A scraping component is provided on the adjusting component. The scraping component includes a first scraper, a slide rod, a second scraper, a connecting spring, a first connecting block, and a second connecting block. Second connecting blocks are symmetrically connected between the adjusting components. The second connecting blocks on the same side are all locked together with the first connecting block. The first scraper is connected between the inner walls of the shell. Slide rods are symmetrically connected to the first scraper. A fixing ring is connected to the middle of each slide rod. The second scraper is slidably connected to the slide rod. The second scraper is connected to the first connecting block. A connecting spring is connected between the second scraper and the slide rod. The initial state of the connecting spring is a compressed state.

[0007] More preferably, the adjustment assembly includes an electric slide rail and an adjustment roller. The electric slide rail is symmetrically installed on the inner wall of the housing, and the adjustment roller is slidably connected to the electric slide rail. The second connecting blocks are symmetrically connected to the sides of the adjustment rollers that are close to each other.

[0008] More preferably, drying lamps are also symmetrically installed on the lower inner wall of the outer casing.

[0009] More preferably, it also includes a collection frame, which is slidably connected to the inside of the housing.

[0010] More preferably, it also includes a protective cover, which is hinged to the outer casing.

[0011] More preferably, it also includes a transparent panel, which is connected to the front side of the outer casing.

[0012] Compared with the prior art, the present invention has the following advantages:

[0013] This invention, by installing a first scraper and a second scraper, removes excess adhesive from the upper and lower sides of the fiberglass mesh as it passes through, ensuring uniform adhesive application and preventing poor curing or uneven surfaces. This guarantees the overall quality of the product and improves the pass rate of the fiberglass mesh. Attached Figure Description

[0014] Figure 1 This is a three-dimensional structural diagram of the present invention.

[0015] Figure 2 This is a three-dimensional structural diagram of the outer shell, tension roller, and glue applicator of this utility model.

[0016] Figure 3 This is a cross-sectional view of the outer casing of this utility model.

[0017] Figure 4 This is a three-dimensional structural diagram of the slide bar, the second scraper, and the connecting spring of this utility model.

[0018] The meanings of the reference numerals in the figure are as follows: 1. Outer shell, 2. Tension roller, 3. Glue applicator, 4. Electric slide rail, 5. Adjusting roller, 6. Drying lamp, 7. First scraper, 8. Slide bar, 9. Second scraper, 10. Connecting spring, 11. First connecting block, 12. Second connecting block, 13. Collection frame, 14. Protective cover, 15. Transparent plate. Detailed Implementation

[0019] The technical solutions in the embodiments of this utility model will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of this utility model, and not all of them. Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of this utility model.

[0020] Example: An integrated coating and drying device for preparing glass fiber mesh, such as... Figures 1-4 As shown, the device includes a housing 1, a tension roller 2, a glue applicator 3, an adjusting assembly, a drying lamp 6, and a scraping assembly. Tension rollers 2 are symmetrically connected to the inner wall of the housing 1. The glue applicator 3 is mounted on one side of the housing 1 via a fixing component. Three adjusting assemblies are located inside the housing 1. Drying lamps 6 are symmetrically mounted on the upper and lower inner walls of the housing 1. Each adjusting assembly has a scraping assembly, which includes a first scraper 7, a slide bar 8, a second scraper 9, a connecting spring 10, a first connecting block 11, and a second connecting block 12. The adjusting assemblies are connected by symmetrically connected second connecting blocks 12 on the left and right sides. The second connecting blocks 12 on the same side are all engaged with each other. A first scraper 7 is connected between the first connecting block 11 and the inner wall of the outer shell 1. A sliding rod 8 is symmetrically connected to the first scraper 7. A fixing ring is connected to the middle of each sliding rod 8. A second scraper 9 is slidably connected to the sliding rod 8. The second scraper 9 is welded to the first connecting block 11. A connecting spring 10 is connected between the second scraper 9 and the sliding rod 8 through a spring seat. The initial state of the connecting spring 10 is a compressed state. When the glass fiber mesh passes through the first scraper 7 and the second scraper 9, the two scrapers will remove excess glue from the upper and lower sides of the glass fiber mesh respectively to ensure that the glue is evenly coated.

[0021] like Figures 1-4As shown, the adjustment assembly includes an electric slide rail 4 and an adjustment roller 5. The electric slide rail 4 is symmetrically installed on the inner wall of the outer casing 1 through a connector. The adjustment roller 5 is slidably connected to the electric slide rail 4. The second connecting blocks 12 are symmetrically connected to the sides of the adjustment roller 5 that are close to each other. During the downward movement of the adjustment roller 5, the second connecting blocks 12 will also move downward. The connecting spring 10 will gradually rebound with the first connecting block 11 as the second connecting block 12 moves downward. When the first connecting block 11 contacts the fixing ring on the slide rod 8, it indicates that the connecting spring 10 has returned to its original state, and the distance between the first scraper 7 and the second scraper 9 is shortened.

[0022] like Figures 1-3 As shown, it also includes a collection frame 13, a protective cover 14, and a transparent plate 15. The collection frame 13 is slidably connected to the inside of the outer shell 1. Adhesive dripping from the fiberglass mesh cloth when it moves, or adhesive scraped off by the first scraper 7 and the second scraper 9, will drip into the collection frame 13 for easy collection and processing later. The protective cover 14 is hinged to the outer shell 1 for dust prevention and to facilitate maintenance of the internal components of the outer shell 1. The transparent plate 15 is connected to the front of the outer shell 1, allowing workers to observe the working conditions inside the outer shell 1 through the transparent plate 15.

[0023] When using this device, firstly, drive the electric slide rail 4 to move the adjusting roller 5 down to the desired position, thereby increasing the distance between the tension roller 2 and the adjusting roller 5, thus increasing the stretching distance of the glass fiber mesh and effectively improving the drying efficiency of this device. During the downward movement of the adjusting roller 5, the second connecting block 12 will also move down together. The connecting spring 10 will gradually rebound along with the first connecting block 11 as the second connecting block 12 moves down. When the first connecting block 11 contacts the fixing ring on the slide rod 8, it indicates that the connecting spring 10 has returned to its original position, and the distance between the first scraper 7 and the second scraper 9 has shortened. Next, turn on the protective cover 14 to expose the internal component structure of the outer shell 1. First, pass the end of the glass fiber mesh through the glue applicator 3, then pull the end of the glass fiber mesh through the space between the first scraper 7 and the second scraper 9. Then, make the glass fiber mesh alternately wound around the tension roller 2 and the adjusting roller 5 along the path between the tension roller 2 and the adjusting roller 5. After completion, let the end of the glass fiber mesh pass out of the outer shell 1 and be fixed with the external winding assembly. Cover 14, then start the glue applicator 3 and the winding assembly. The winding assembly will wind up the fiberglass mesh, which will be pulled along by the winding assembly. The glue applicator 3 will apply glue to the fiberglass mesh. When the fiberglass mesh passes the first scraper 7 and the second scraper 9, these two scrapers will remove excess glue from the top and bottom sides of the fiberglass mesh, ensuring uniform glue application and avoiding poor curing or uneven surface, thereby ensuring the overall quality of the product and improving the pass rate of the fiberglass mesh. After passing the first scraper 7 and the second scraper 9, the fiberglass mesh will continue to be pulled along. During this process, the drying lamps 6, which are symmetrically installed inside the outer casing 1, will efficiently dry the glue on the fiberglass mesh, ensuring that the glue is completely dry when the fiberglass mesh is wound up. The glue dripping from the fiberglass mesh during its movement, or the glue scraped off by the first scraper 7 and the second scraper 9, will drip into the collection frame 13 for subsequent centralized processing. The above operation steps can be repeated for subsequent work.

[0024] The technical principles of the present invention have been described above with reference to specific embodiments. These descriptions are merely for explaining the principles of the present invention and should not be construed as limiting the scope of protection of the present invention in any way. Based on this explanation, those skilled in the art can conceive of other specific embodiments of the present invention without creative effort, and these embodiments will all fall within the scope of protection of the present invention.

Claims

1. An integrated coating and drying device for preparing glass fiber mesh, comprising: Outer shell (1); Tension rollers (2) are symmetrically connected to the inner wall of the outer casing (1); An adhesive applicator (3) is installed on one side of the housing (1); An adjustment assembly, comprising at least three components, all disposed inside the housing (1), is used to adjust the stretching distance of the glass fiber mesh cloth; Drying lamps (6) are symmetrically installed on the upper inner wall of the outer casing (1); Its characteristic is that it further includes: A scraper assembly, disposed on the adjusting assembly, is used to scrape off the adhesive from the fiberglass mesh fabric. The scraper assembly includes: The second connecting block (12) is symmetrically connected between the adjustment components; The first connecting block (11) is respectively snapped between the second connecting blocks (12) on the same side; The first scraper (7) is connected between the inner walls of the outer casing (1); The slide rod (8) is symmetrically connected to the first scraper plate (7), and a fixing ring is connected to the middle of each slide rod (8); The second scraper (9) is slidably connected to the slide rod (8), and the second scraper (9) is connected to the first connecting block (11); A connecting spring (10) is connected between the second scraper (9) and the slide bar (8), and the initial state of the connecting spring (10) is a compressed state.

2. The integrated coating and drying equipment for preparing glass fiber mesh according to claim 1, characterized in that, The adjustment component includes: Electric slide rails (4) are symmetrically installed on the inner wall of the outer casing (1); The adjusting rollers (5) are slidably connected to the electric slide rail (4), and the second connecting blocks (12) are symmetrically connected to the sides of the adjusting rollers (5) that are close to each other.

3. The integrated coating and drying equipment for preparing glass fiber mesh fabric according to claim 2, characterized in that: The drying lamps (6) are also symmetrically installed on the lower inner wall of the outer casing (1).

4. The integrated coating and drying equipment for preparing glass fiber mesh fabric according to claim 3, characterized in that, Also includes: The collection box (13) is slidably connected inside the housing (1).

5. The integrated coating and drying equipment for preparing glass fiber mesh according to claim 4, characterized in that, Also includes: The protective cover (14) is hinged to the outer shell (1).

6. The integrated coating and drying equipment for preparing glass fiber mesh fabric according to claim 5, characterized in that, Also includes: A transparent plate (15) is attached to the front side of the outer casing (1).

Citation Information

Patent Citations

  • A fiberglass mesh production apparatus

    CN109049962B