Glass fiber reinforced plastic plate material surface impurity removal device
By combining modular dust collection units and adjustable flow guiding mechanisms, the complex installation and insufficient adjustment of FRP (fiberglass reinforced plastic) sheet cleaning devices have been solved, achieving convenient installation and efficient cleaning, and adapting to the cleaning needs of different sheet structures.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YICHANG GREEN STATE NEW MATERIAL DEV
- Filing Date
- 2025-03-21
- Publication Date
- 2026-04-21
AI Technical Summary
Existing fiberglass sheet impurity removal devices have a fixed structure, are complex to install, and cannot be adjusted according to the material thickness, resulting in inconvenient maintenance and poor impurity removal effect.
It adopts a modular dust collection unit, an adjustable airflow guiding mechanism, and a quick-connect mechanism, combined with a flexible sealing skirt and a laser rangefinder, to achieve convenient installation, adaptive adjustment, and efficient dust removal.
It simplifies the installation process, reduces maintenance costs, improves impurity removal efficiency, reduces damage to material surfaces, and adapts to the impurity removal needs of different panel structures.
Smart Images

Figure CN224143056U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of fiberglass processing equipment, and in particular to a device for removing impurities from the surface of fiberglass sheets. Background Technology
[0002] Fiberglass sheets are a new type of sheet material, characterized by their lightweight, high strength, corrosion resistance, and good insulation. They are made from fiber products such as fiberglass yarn, fiberglass mat, and mesh cloth, as well as various resins, through processes such as extrusion and molding.
[0003] Currently, fiberglass sheets require cutting and grinding during processing, which results in a lot of powder adhering to the surface of the finished fiberglass sheets. It is necessary to use impurity removal equipment to clean the surface. However, the existing impurity removal devices have a fixed structure, which makes the installation work complicated and cannot be adjusted according to the thickness of the material. Utility Model Content
[0004] To address the shortcomings of existing technologies, this utility model provides a surface impurity removal device for fiberglass sheets. The modular design makes installation convenient, maintenance easy, and it also features adaptive adjustment capabilities.
[0005] According to an embodiment of this utility model, a surface cleaning device for fiberglass sheet includes a modular dust collection unit, an adjustable flow guiding mechanism, a quick-connect mechanism, and a conveying mechanism. The modular dust collection unit includes at least two sets of vertically and parallelly arranged dust collection chambers. Multiple dust collection chambers are horizontally connected by the quick-connect mechanism and arranged above the conveying mechanism. The adjustable flow guiding mechanism is connected to the outlet at the bottom of the dust collection chamber and faces the surface of the conveying mechanism. The quick-connect mechanism includes a support component arranged above the conveying mechanism, a magnetic suction component connecting the support component and the modular dust collection unit, and a positioning component for fixing the modular dust collection unit.
[0006] Preferably, the bottom of the dust collection chamber is provided with a multi-layered flexible sealing skirt, which includes an inner flexible contact layer, a middle sound insulation and shock absorption layer, and an outer elastic support layer.
[0007] More preferably, the bottom of the flexible contact layer extends beyond the elastic support layer.
[0008] More preferably, the modular vacuuming unit further includes a base fixedly connected to the vacuuming chamber, the adjustable flow guiding mechanism is rotatably connected to the base, the adjustable flow guiding mechanism is connected to the vacuuming chamber through a hose, and the base is provided with an adjustment component that is pulsatorically connected to the adjustable flow guiding mechanism.
[0009] More preferably, the adjustment assembly includes a first telescopic member fixed on the base, the telescopic cylinder of the first telescopic member extending downward through the base and rotatably connected to a transmission rod, the transmission rod being rotatably connected to the adjustable flow guiding mechanism.
[0010] More preferably, the support assembly includes a bracket fixedly disposed above the conveying mechanism, a second telescopic member fixedly disposed on the bracket, a mounting base connected to the second telescopic member, and a laser rangefinder fixedly disposed at the bottom of the mounting base, wherein the mounting base is connected to the base via the magnetic suction assembly.
[0011] More preferably, the magnetic suction assembly includes a guide hole disposed on the base, a plurality of magnets fixed around the guide hole, a guide rod fixed on the mounting base, and a magnetic suction seat fixed on the guide rod.
[0012] In a further preferred embodiment, the positioning component includes a wedge-shaped positioning hole disposed on the side of the guide rod and a third telescopic member fixed on the base, wherein the telescopic rod of the third telescopic member extends vertically into the guide hole and is connected to a wedge-shaped positioning block.
[0013] Compared with the prior art, the present invention has the following beneficial effects:
[0014] It is equipped with modular vacuuming units, and multiple modular vacuuming units are connected by a quick-connect mechanism, which has the advantages of convenient installation and disassembly, and can effectively reduce maintenance costs;
[0015] Flexible edge sealing ensures the cleaning effect of the modular vacuum unit and reduces damage to the material surface;
[0016] The adjustable flow guiding mechanism can adapt to the impurity removal work of different plate structures, and has better adaptability. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of a fiberglass sheet surface impurity removal device according to the present invention.
[0018] Figure 2 This is a schematic diagram of the flexible sealing skirt structure in a fiberglass sheet surface impurity removal device of this utility model.
[0019] Figure 3 This utility model Figure 1 A magnified schematic diagram of part A in the middle.
[0020] In the above figures: 1. Modular vacuuming unit; 110. Vacuuming chamber; 111. Base; 120. Flexible sealing skirt; 121. Flexible contact layer; 122. Sound insulation and vibration damping layer; 123. Elastic support layer; 2. Adjustable airflow guiding mechanism; 210. Adjustment component; 211. First telescopic component; 212. Transmission rod; 3. Quick-connect mechanism; 310. Support component; 311. Bracket; 312. Second telescopic component; 313. Mounting base; 314. Laser rangefinder; 320. Magnetic component; 321. Guide hole; 322. Magnet; 323. Guide rod; 324. Magnetic base; 330. Positioning component; 331. Positioning hole; 332. Third telescopic component; 333. Positioning block. Detailed Implementation
[0021] The technical solution of this utility model will be further described below with reference to the accompanying drawings and embodiments.
[0022] This utility model provides an embodiment, such as Figure 1 As shown, a surface cleaning device for fiberglass sheet includes a modular dust collection unit 1, an adjustable flow guiding mechanism 2, a quick-connect mechanism 3, and a conveying mechanism 4. The modular dust collection unit 1 includes at least two sets of vertically and parallelly arranged dust collection chambers 110. In this embodiment, two sets of dust collection chambers 110 are provided. The inner sidewall of the dust collection chamber 110 is provided with spiral flow guiding patterns. Multiple dust collection chambers 110 are horizontally connected by the quick-connect mechanism 3 and are arranged above the conveying mechanism 4. The adjustable flow guiding mechanism 2 is connected to the outlet at the bottom of the dust collection chamber 110 and faces the surface of the conveying mechanism 4. The quick-connect mechanism 3 includes a support component 310 arranged above the conveying mechanism 4, a magnetic suction component 320 connecting the support component 310 and the modular dust collection unit 1, and a positioning component 330 fixing the modular dust collection unit 1.
[0023] The modular vacuum unit 1 is installed onto the support component 310 via the magnetic suction component 320 and its position is fixed by the positioning component 330, which simplifies the installation work and ensures the stability of the modular vacuum unit 1.
[0024] In order to improve the suction effect of the suction chamber 110, in a further embodiment, the bottom of the suction chamber 110 is provided with a multi-layer flexible sealing skirt 120. The flexible sealing skirt 120 includes an inner flexible contact layer 121, a middle sound insulation and vibration damping layer 122, and an outer elastic support layer 123. The flexible contact layer 121 is microfiber cloth, the sound insulation and vibration damping layer 122 is silicone foam, and the elastic support layer 123 is elastic steel sheet.
[0025] To prevent debris from leaking out during the suction process, in a further embodiment, the bottom of the flexible contact layer 121 extends to the outside of the elastic support layer 123. During the suction process, the flexible contact layer 121 is in full contact with the surface of the fiberglass sheet, preventing debris from leaking out.
[0026] To facilitate adjustment of the orientation angle of the adjustable flow guiding mechanism 2, in a further embodiment, the modular dust collection unit 1 further includes a base 111 fixedly connected to the dust collection chamber 110, the adjustable flow guiding mechanism 2 being rotatably connected to the base 111, the adjustable flow guiding mechanism 2 being connected to the dust collection chamber 110 via a hose, and the base 111 being provided with an adjustment component 210 that is pulsatorically connected to the adjustable flow guiding mechanism 2, which drives the adjustable flow guiding mechanism 2 to rotate.
[0027] Specifically, the adjustable flow guiding mechanism 2 includes a housing with a V-shaped flow guiding groove, and the adjustment component 210 includes a first telescopic member 211 fixed on the base 111. The telescopic cylinder of the first telescopic member 211 extends downward through the base 111 and is rotatably connected to a transmission rod 212. The transmission rod 212 is rotatably connected to the adjustable flow guiding mechanism 2.
[0028] To facilitate adjusting the height of the modular dust collection unit 1 according to the thickness of the fiberglass sheet, in a further embodiment, the support assembly 310 includes a bracket 311 fixedly mounted above the conveying mechanism 4, a second telescopic member 312 fixed on the bracket 311, a mounting base 313 connected to the second telescopic member 312, and a laser rangefinder 314 fixed to the bottom of the mounting base 313. The mounting base 313 is connected to the base 111 via the magnetic suction assembly 320. The second telescopic member 312 is a servo telescopic cylinder, which is connected to the laser rangefinder 314 and has a control system that can adaptively adjust according to the detected height.
[0029] Specifically, the magnetic suction assembly 320 includes a guide hole 321 disposed on the base 111, a plurality of magnets 322 fixed around the guide hole 321, a guide rod 323 fixed on the mounting base 313, and a magnetic suction seat 324 fixed on the guide rod 323.
[0030] In order to stably fix the position of the vacuum chamber 110, in a further embodiment, the positioning component 330 includes a wedge-shaped positioning hole 331 disposed on the side of the guide rod 323 and a third telescopic member 332 fixed on the base 111. The telescopic rod of the third telescopic member 332 extends vertically into the guide hole 321 and is connected to a wedge-shaped positioning block 333.
[0031] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model and are not intended to limit it. Although this utility model has been described in detail with reference to preferred embodiments, those skilled in the art should understand that modifications or equivalent substitutions can be made to the technical solutions of this utility model without departing from the spirit and scope of the technical solutions of this utility model, and all such modifications or substitutions should be covered within the scope of the claims of this utility model.
Claims
1. A glass fiber reinforced plastic sheet surface impurity removing device, characterized in that, The system includes a modular vacuuming unit (1), an adjustable flow guiding mechanism (2), a quick-connect mechanism (3), and a conveying mechanism (4). The modular vacuuming unit (1) includes at least two sets of vertically and parallelly arranged vacuuming chambers (110). Multiple vacuuming chambers (110) are horizontally connected by the quick-connect mechanism (3) and arranged above the conveying mechanism (4). The adjustable flow guiding mechanism (2) is connected to the outlet at the bottom of the vacuuming chamber (110) and faces the surface of the conveying mechanism (4). The quick-connect mechanism (3) includes a support component (310) arranged above the conveying mechanism (4), a magnetic suction component (320) connecting the support component (310) and the modular vacuuming unit (1), and a positioning component (330) fixing the modular vacuuming unit (1).
2. The glass fiber reinforced plastic sheet surface impurity removing device according to claim 1, characterized in that, The bottom of the vacuum chamber (110) is provided with a multi-layer flexible sealing skirt (120), which includes an inner flexible contact layer (121), a middle sound insulation and shock absorption layer (122), and an outer elastic support layer (123).
3. The device according to claim 2, characterized in that, The bottom of the flexible contact layer (121) extends to the outside of the elastic support layer (123).
4. The device for removing impurities from the surface of a glass fiber reinforced plastic sheet according to claim 3, wherein The modular vacuum unit (1) also includes a base (111) fixedly connected to the vacuum chamber (110), an adjustable flow guiding mechanism (2) rotatably connected to the base (111), the adjustable flow guiding mechanism (2) is connected to the vacuum chamber (110) through a hose, and the base (111) is provided with an adjustment component (210) that is drivenly connected to the adjustable flow guiding mechanism (2).
5. The device for removing impurities from the surface of a glass fiber reinforced plastic sheet according to claim 4, wherein The adjustment assembly (210) includes a first telescopic member (211) fixed on the base (111). The telescopic cylinder of the first telescopic member (211) passes through the base (111) downward and is rotatably connected to a transmission rod (212). The transmission rod (212) is rotatably connected to the adjustable flow guiding mechanism (2).
6. The device for removing impurities from the surface of a glass fiber reinforced plastic sheet according to claim 5, wherein The support assembly (310) includes a bracket (311) fixedly mounted above the conveying mechanism (4), a second telescopic member (312) fixed on the bracket (311), a mounting base (313) connected to the second telescopic member (312), and a laser rangefinder (314) fixed to the bottom of the mounting base (313). The mounting base (313) is connected to the base (111) through the magnetic suction assembly (320).
7. The device according to claim 6, characterized in that, The magnetic suction assembly (320) includes a guide hole (321) disposed on the base (111), a plurality of magnets (322) fixed around the guide hole (321), a guide rod (323) fixed on the mounting base (313), and a magnetic suction seat (324) fixed on the guide rod (323).
8. The device according to claim 7, characterized in that, The positioning component (330) includes a wedge-shaped positioning hole (331) disposed on the side of the guide rod (323) and a third telescopic member (332) fixed on the base (111). The telescopic rod of the third telescopic member (332) extends vertically into the guide hole (321) and is connected to a wedge-shaped positioning block (333).