Anti-seepage glass fiber mat processing device

By designing an anti-leakage glass fiber felt processing device and using an automatic moving system driven by a transmission belt and a motor, the problem of low container utilization during the impregnation of glass fiber felt in existing equipment is solved, efficient processing and solution reflux are achieved, and the overall use effect is improved.

CN223033651UActive Publication Date: 2025-06-27JIAXING HONGYU NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202421654861.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-13
Publication Date
2025-06-27
Estimated Expiration
2034-07-13

AI Technical Summary

Technical Problem

When used, the existing glass fiber felt impregnation processing equipment needs to be taken out and transferred from the impregnation container, resulting in a decrease in the utilization rate of the container and it is difficult to meet the usage needs.

Method used

An anti-leakage fiberglass felt processing device is designed, including a dipping box, a moving assembly and a dipping frame. Driven by the drive belt and motor, the automatic movement of the immersion frame and the reflux of the treatment solution are achieved, improving the processing efficiency and solution utilization.

Benefits of technology

This device can timely put the unimpregnated glass fiber mat into the treatment solution and reflux the excess solution, improving the processing efficiency of the glass fiber mat, avoiding the waste of solution, and having good use effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an anti-leakage glass fiber mat processing device, which relates to the technical field of anti-leakage of glass fiber mats, and comprises a dipping box, a moving component, a rotating shaft, a transmission wheel, a transmission belt, a motor, a dipping component, a glass fiber mat and a dipping frame, a driving belt is arranged at the upper end of the dipping box, swing rods are arranged in the middles of the two sides of the upper end of the dipping box respectively, one end of each swing rod is rotationally connected with the driving belt, and a supporting table is arranged on one side of an opening of the dipping box. Meanwhile, when the treated glass fiber mats in the dipping frame are taken out, redundant treatment solutions in the dipping frame and on the glass fiber mats can flow back into the dipping box, the treatment efficiency of the glass fiber mats is improved, waste of the treatment solutions can be avoided, and the use effect is good.
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Description

Technical Field

[0001] The utility model relates to the technical field of anti-leakage of glass fiber mats, and specifically relates to a processing device for anti-leakage glass fiber mats. Background Technique

[0002] The glass fiber mat is impregnated in a specific waterproof coating or solution to make it completely soaked, and then dried and cured to form a dense waterproof layer, thereby improving the anti-leakage ability of the glass fiber mat. When the glass fiber mat is impregnated, impregnation processing equipment is required. When the existing impregnation processing equipment is used, it is necessary to first take out the glass fiber mat from the impregnation container and transfer it out before the unprocessed glass fiber mat can be placed in the container for impregnation. Due to the long transfer time, the utilization rate of the container is reduced, making it difficult to meet the use requirements. Content of the Utility Model

[0003] The purpose of the utility model is to provide a processing device for anti-leakage glass fiber mats, aiming to solve the problems mentioned in the above background technique.

[0004] To achieve the above purpose, the utility model adopts the following technical scheme: the processing device for anti-leakage glass fiber mats includes an impregnation tank. An opening is provided at the upper end of the impregnation tank. Moving components are symmetrically arranged on the inner wall of the impregnation tank. The moving components include three rotating shafts rotatably connected to the inner wall of the impregnation tank. The three rotating shafts are arranged in an inverted equilateral triangle distribution. Transmission wheels are arranged on all three rotating shafts. The three transmission wheels are connected by a transmission belt. A motor for driving one of the rotating shafts is provided on the outer surface of the impregnation tank. Three groups of impregnation components are evenly arranged between the two groups of moving components. The impregnation components include impregnation frames for placing glass fiber mats. Mesh holes are provided on the surface of the impregnation frames. Swing rods are respectively arranged at the middle positions on both sides of the upper end of the impregnation frames. One end of each swing rod is rotatably connected to the transmission belt. A support platform is provided on one side of the opening of the impregnation tank.

[0005] Preferably, a valve is provided on the outer side of the bottom of the impregnation tank, and the valve is connected to the inside of the impregnation tank in a through manner.

[0006] Preferably, when the impregnation frame moves to the bottom in the impregnation tank, there is a gap between the lower end surface of the impregnation frame and the inner bottom surface of the impregnation tank.

[0007] Preferably, a treatment solution is poured into the inner bottom of the impregnation tank. When the impregnation frame containing the glass fiber mat is completely immersed in the treatment solution, the liquid level of the treatment solution is lower than the bottom surface of the transmission belt.

[0008] Preferably, through grooves are symmetrically provided on the outer surface of the impregnation frame.

[0009] The beneficial effects of the utility model are:

[0010] When the device is in use, after removing the impregnated fiberglass mat from the treatment solution, it can promptly put the non-impregnated fiberglass mat into the treatment solution. At the same time, when taking out the treated fiberglass mat in the impregnation frame, it can also make the excess treatment solution in the impregnation frame and on the fiberglass mat flow back into the impregnation tank, which not only improves the treatment efficiency of the fiberglass mat but also avoids waste of the treatment solution, and has a good use effect. Brief Description of the Drawings

[0011] Figure 1 is a schematic structural view of a specific embodiment of the present invention.

[0012] Figure 2 is a schematic structural view of the interior of the impregnation tank of a specific embodiment of the present invention.

[0013] Figure 3 is a schematic structural view of the swing rod of a specific embodiment of the present invention.

[0014] Figure 4 is another schematic structural view of the impregnation frame of a specific embodiment of the present invention.

[0015] In the figure: 1. Impregnation tank; 2. Fiberglass mat; 3. Rotating shaft; 4. Driving wheel; 5. Transmission belt; 6. Motor; 7. Impregnation frame; 8. Swing rod; 9. Support platform; 10. Valve; 11. Through groove. Detailed Embodiment

[0016] The following further describes the specific embodiments of the present invention with reference to the accompanying drawings.

[0017] As Figures 1-4 shown, a leak-proof fiberglass mat processing device includes an impregnation tank 1. The upper end of the impregnation tank 1 is provided with an opening. The inner wall of the impregnation tank 1 is symmetrically provided with moving components. The moving components include three rotating shafts 3 rotatably connected to the inner wall of the impregnation tank 1. The three rotating shafts 3 are arranged in an inverted equilateral triangle distribution. Driving wheels 4 are arranged on all three rotating shafts 3. The three driving wheels 4 are connected by a transmission belt 5. The outer surface of the impregnation tank 1 is provided with a motor 6 for driving one of the rotating shafts 3. Three groups of impregnation components are evenly arranged between the two groups of moving components. The impregnation components include an impregnation frame 7 for placing the fiberglass mat 2. The surface of the impregnation frame 7 is provided with mesh holes. Swing rods 8 are respectively arranged at the middle positions on both sides of the upper end of the impregnation frame 7. One end of the swing rod 8 is rotatably connected to the transmission belt 5. A support platform 9 is arranged on one side of the opening of the impregnation tank 1.

[0018] When the driving wheel 4 is a gear type and the drive belt 5 is a toothed belt, or when the driving wheel 4 is a sprocket wheel and the drive belt 5 is a chain, one of the rotating shafts 3 can be controlled to rotate by the motor 6. The driving wheel 4 fixedly connected to the rotating shaft 3 can be driven to rotate by the rotating shaft 3, and then three driving wheels 4 can be driven to rotate simultaneously through the drive belt 5. The two motors 6 drive the two drive belts 5 to move at the same speed, so as to drive the impregnation frame 7 to move synchronously with the two drive belts 5.

[0019] The upper end of the swing rod 8 is rotatably connected to the drive belt 5. The lower end of the swing rod 8 can be rotatably connected to the impregnation frame 7 or fixedly connected to the impregnation frame 7. No matter where the swing rod 8 moves following the drive belt 5, under the action of the gravity of the swing rod 8 and the impregnation frame 7 itself, the impregnation frame 7 can maintain a horizontal state. When the glass fiber mat 2 is placed in the impregnation frame 7, the impregnation frame 7 will not tip over. When the glass fiber mat 2 is placed in the impregnation frame 7, the glass fiber mat 2 needs to be placed in the center of the impregnation frame 7 to improve the stability of the impregnation frame 7 moving with the drive belt 5 in the impregnation tank 1. When the impregnation frame 7 moves in the impregnation tank 1, the impregnation frame 7 will not come into contact with the inner wall of the impregnation tank 1, thus ensuring the stability of the impregnation frame 7.

[0020] During processing, a certain number of glass fiber mats 2 are installed in all three impregnation frames 7. The glass fiber mat 2 in the impregnation frame 7 located at the bottom inside the impregnation tank 1 is immersed in the treatment solution, while the glass fiber mat 2 in the impregnation frame 7 located above the impregnation tank 1 and far from the opening of the impregnation tank 1 is in a waiting state. In this waiting state, the excess treatment solution on the glass fiber mat 2 and inside the impregnation frame 7 flows back to the bottom of the impregnation tank 1 through the mesh holes on the impregnation frame 7. For the glass fiber mat 2 in the impregnation frame 7 located above the impregnation tank 1 and close to the opening of the impregnation tank 1, most of the treatment solution on its surface has flowed back to the bottom of the impregnation tank 1. Therefore, when the impregnation frame 7 moves to this position, the glass fiber mat 2 in the impregnation frame 7 at this place can be taken out of the impregnation frame 7 through the upper opening of the impregnation tank 1, and then the unimpregnated glass fiber mat 2 is re-placed in this impregnation frame 7. By controlling the start of the motor 6, the drive belt 5 can be driven to move, so as to facilitate the subsequent movement of this impregnation frame 7 and perform the impregnation and anti-leakage treatment on the glass fiber mat 2 in this impregnation frame 7.

[0021] Furthermore, a valve 10 is provided on the outer side of the bottom of the impregnation tank 1. The valve 10 is connected to the inside of the impregnation tank 1 in a through manner. Through the valve 10, it is convenient to add the anti-leakage treatment solution into the impregnation tank 1 and also convenient to extract the treatment solution in the impregnation tank 1 from the impregnation tank 1.

[0022] Further, when the impregnation frame 7 moves to the bottom in the impregnation tank 1, there is a gap between the lower end surface of the impregnation frame 7 and the inner bottom surface of the impregnation tank 1, which avoids the contact between the bottom of the impregnation frame 7 and the inner bottom of the impregnation tank 1 and affects the entry of the treatment solution into the impregnation frame 7 through the bottom of the impregnation frame 7, and also facilitates the effective impregnation treatment of the fiberglass mat 2 located below in the impregnation frame 7.

[0023] Further, the inner bottom of the impregnation tank 1 is filled with a treatment solution. When the impregnation frame 7 containing the fiberglass mat 2 is completely immersed in the treatment solution, the liquid level of the treatment solution is lower than the bottom surface of the conveyor belt 5, which avoids the conveyor belt 5 being soaked in the treatment solution, is beneficial to protecting the conveyor belt 5, and can also control the quantity of the treatment solution, avoiding the situation that a large amount of the treatment solution is used at one time and the treatment solution fails due to long-term exposure.

[0024] Further, through grooves 11 are symmetrically formed on the outer surface of the impregnation frame 7. Through the through grooves 11, it is convenient to take and place the fiberglass mat 2 in the impregnation frame 7, and the taking and placing efficiency of the fiberglass mat 2 in the impregnation frame 7 is improved.

[0025] When the device is in use, after the impregnated fiberglass mat 2 is removed from the treatment solution, the unimpregnated fiberglass mat 2 can be timely put into the treatment solution. At the same time, when the treated fiberglass mat 2 in the impregnation frame 7 is taken out, the excess treatment solution in the impregnation frame 7 and on the fiberglass mat 2 can also flow back into the impregnation tank 1, which not only improves the treatment efficiency of the fiberglass mat 2 but also avoids the waste of the treatment solution, and has a good use effect.

[0026] In the description of the present utility model, unless otherwise clearly defined and limited, the terms "installation", "connection" and "connection" shall be understood in a broad sense. For example, it may be a fixed connection, a detachable connection or an integral connection; it may be a mechanical connection or an electrical connection; it may be a direct connection or an indirect connection through an intermediate medium, and it may be the communication inside two components. For those of ordinary skill in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

Claims

1. A leakage-proof glass fiber felt processing device, characterized in that: The invention comprises an impregnation box (1), wherein the upper end of the impregnation box (1) is provided with an opening, and the inner wall of the impregnation box (1) is symmetrically provided with a moving assembly, wherein the moving assembly comprises three rotating shafts (3) rotatably connected to the inner wall of the impregnation box (1), and the three rotating shafts (3) are arranged in an inverted equilateral triangle distribution, and each of the three rotating shafts (3) is provided with a transmission wheel (4), and the three transmission wheels (4) are connected by a transmission belt (5), and the outer surface of the impregnation box (1) is provided with a motor (6) for driving one of the rotating shafts (3), and three groups of impregnation assemblies are evenly arranged between two groups of moving assemblies, and the impregnation assembly comprises an impregnation frame (7) for placing glass fiber felt (2), and the surface of the impregnation frame (7) is provided with mesh holes, and swing rods (8) are respectively arranged at the middle positions of both sides of the upper end of the impregnation frame (7), and one end of the swing rod (8) is rotatably connected to the transmission belt (5), and a support platform (9) is arranged on one side of the opening of the impregnation box (1).

2. The anti-leakage glass fiber mat processing device according to claim 1 is characterized in that: A valve (10) is provided on the outer side of the bottom of the impregnation box (1), and the valve (10) is connected to the inside of the impregnation box (1).

3. The anti-leakage glass fiber mat processing device according to claim 1 is characterized in that: When the dipping frame (7) moves to the bottom in the dipping box (1), there is a gap between the lower end surface of the dipping frame (7) and the inner bottom surface of the dipping box (1).

4. The anti-leakage glass fiber mat processing device according to claim 3 is characterized in that: The inner bottom of the impregnation box (1) is filled with a treatment solution. When the impregnation frame (7) containing the glass fiber felt (2) is completely immersed in the treatment solution, the liquid level of the treatment solution is lower than the bottom surface of the transmission belt (5).

5. The anti-leakage glass fiber mat processing device according to any one of claims 1 to 4, characterized in that: The outer surface of the impregnation frame (7) is symmetrically provided with through grooves (11).