Machining tool for hard graphite felt

By designing a hard graphite felt processing tooling including processing box, vacuum cover, operating rod and limiting components, the problems of poor and low efficiency in the prior art are solved, and efficient and comprehensive decomposition removal effects are achieved.

CN222919150UActive Publication Date: 2025-05-30LIAOYUAN YIDA CARBON
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Patent Information

Application Number
CN202421776631.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-25
Publication Date
2025-05-30
Estimated Expiration
2034-07-25

AI Technical Summary

Technical Problem

The existing hard graphite felt processing tooling is not effective in removing impurities, is inefficient, and is troublesome in operation.

Method used

A machining tooling including a machining box, a vacuum cover, a operating rod and a limiting assembly is designed. Through the sliding of the operating rod and the elasticity of the compression spring, the brush is tightly attached to the surface of the graphite felt, the vacuum pump generates suction force, and the impurities swept off the brush are sucked into the collection box, achieving all-round removal of impurities.

Benefits of technology

It realizes efficient and comprehensive decomposition removal of hard graphite felts, improves the efficiency and effect of decomposition, ensures the cleanliness of graphite felts, and is suitable for graphite felts of different thicknesses.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a hard graphite felt processing tool in the technical field of graphite felt processing, which comprises a processing box body, the left side wall and the right side wall of the processing box body are both provided with limiting components, the front side wall and the rear side wall of the processing box body are both connected with operating rods in a sliding manner, and the bottoms of the two groups of operating rods are both provided with dust hoods; the outer wall of the operating rod is further sleeved with a compression spring, the face, close to the hard graphite felt, of each dust suction hood is provided with multiple sets of dust suction holes and a first brush, the front outer wall and the rear outer wall of the machining box are each provided with a collecting box, dust suction mechanisms are arranged on the collecting boxes, hoses are installed on the side walls of the two dust suction hoods, and a lower cleaning pipe and an upper cleaning pipe are installed at the other ends of the two hoses correspondingly. And a plurality of groups of suction holes and brushes II are arranged on the surfaces, close to the hard graphite felt, of the lower cleaning pipe and the upper cleaning pipe. According to the hard graphite felt impurity removal device, all-directional impurity removal processing of the hard graphite felt is achieved, the impurity removal efficiency is high, the impurity removal effect is good, and the neatness of the hard graphite felt is effectively guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of graphite felt processing, in particular to a processing tool for hard graphite felt. Background Technique

[0002] Hard graphite felt is a high-performance building waterproof material, usually used for waterproof treatment of roofs and basements. It is mainly composed of a mixture of graphite and cellulose fibers, has excellent weather resistance and chemical corrosion resistance, and can effectively prevent water penetration. During the production and preparation process of hard graphite felt, a lot of lint and impurities will be generated on the felt body. In order to ensure the health of workers and the quality of products, it is necessary to use a processing tool to remove impurities from the felt body.

[0003] When most of the existing processing tools remove impurities from the surface of hard graphite felt, they usually remove impurities from one side of the hard graphite felt by suction. However, the impurity removal effect of only using suction is not good, and the impurities tightly adhered to the hard graphite felt cannot be sucked out. Moreover, after removing impurities from one side, it is necessary to change the position of the hard graphite felt to remove impurities from the other side, which is troublesome to operate and has low impurity removal efficiency. Therefore, we propose a processing tool for hard graphite felt. Content of the Utility Model

[0004] The purpose of the utility model is to provide a processing tool for hard graphite felt to solve the problems of poor impurity removal effect and low impurity removal efficiency of hard graphite felt proposed in the above background technique.

[0005] To achieve the above purpose, the utility model provides the following technical solutions:

[0006] A processing tool for hard graphite felt includes a processing box body. Openings for passing hard graphite felt are provided on the left and right side walls of the processing box body, and limiting components for limiting the passage of hard graphite felt are installed outside both groups of openings;

[0007] Operating rods are slidably connected to the front and rear side walls of the processing box body. Suction hoods are installed at the bottoms of both groups of operating rods. Compression springs are also sleeved on the outer walls of the operating rods, and the compression springs are located between the inner wall of the processing box body and the suction hoods;

[0008] On the side of the suction hood close to the hard graphite felt, a plurality of suction holes and a first brush are provided. Collection boxes are installed on the front and rear outer walls of the processing box body, and a dust suction mechanism for extracting impurities in the suction hood is provided on the collection boxes. Hoses are installed on the side walls of both groups of suction hoods, and the other ends of the two hoses are respectively installed with a lower cleaning pipe and an upper cleaning pipe. A plurality of suction holes and a second brush are provided on the sides of the lower cleaning pipe and the upper cleaning pipe close to the hard graphite felt.

[0009] Further: The dust suction mechanism includes a dust suction pump, which is installed on the collection box. The dust inlet and dust outlet of the dust suction pump are respectively connected with a dust inlet pipe and a dust outlet pipe. The other end of the dust inlet pipe is communicated with a dust suction hood, and the other end of the dust outlet pipe is communicated with the collection box.

[0010] Further: The limiting component includes four groups of fixed plates installed on the side wall of the processing box body. Servo motors are arranged on the upper two groups of fixed plates, and the output ends of the servo motors are connected with driving rollers. The limiting component further includes L-shaped plates connected to both ends of the rear side wall of the processing box body. Electric telescopic rods are arranged on the two groups of L-shaped plates, and the telescopic ends of the electric telescopic rods are installed with frames. Moving rollers are rotatably connected to the inner walls of the frames.

[0011] Further: The outer walls of the two collection boxes are movably connected with sealing doors through hinges, and handles are arranged on the sealing doors.

[0012] Further: A pull ring is installed at the end of the operating rod away from the dust suction hood, and an anti-slip rubber sleeve is sleeved on the hand-held end of the pull ring.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows:

[0014] Through the sliding of the operating rod and the elasticity of the compression spring, multiple groups of brush one on the outer walls of the two dust suction hoods can be closely attached to the side wall of the hard graphite felt. After the dust suction pump on the dust suction mechanism works, suction can be generated at multiple dust suction holes on the dust suction hood. As the hard graphite felt moves, brush one contacts the outer surface of the hard graphite felt, and the impurities swept off by brush one can be sucked into the collection box. Multiple suction holes and brush two on the upper cleaning pipe and the lower cleaning pipe clean the top and bottom of the hard graphite felt, realizing the all-round impurity removal processing of the hard graphite felt, with high impurity removal efficiency and good impurity removal effect, effectively ensuring the cleanliness of the hard graphite felt; through the telescoping of the electric telescopic rod, the frame can be pushed to move, and the distance between the driving roller and the moving roller can be adjusted, which can be used to limit the passage of hard graphite felts of different thicknesses, ensuring that hard graphite felts of different thicknesses can contact brush one and brush two, improving the impurity removal effect on the hard graphite felt. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a schematic structural diagram of the present utility model;

[0016] Figure 2 is a schematic structural diagram of the other side of the present utility model;

[0017] Figure 3 is a partially sectional schematic view of the side structure of the processing box body of the present utility model.

[0018] In the figure: 1. Processing box body; 2. L-shaped plate; 3. Frame body; 4. Moving roller; 5. Driving roller; 6. Operating rod; 7. Collection box; 8. Dust suction pump; 9. Dust outlet pipe; 10. Dust inlet pipe; 11. Electric telescopic rod; 12. Fixed plate; 13. Servo motor; 14. Opening; 15. Compression spring; 16. Dust suction hood; 17. Dust suction hole; 18. First brush; 19. Hose; 20. Lower cleaning pipe; 21. Upper cleaning pipe; 22. Suction hole; 23. Second brush. Specific implementation manner

[0019] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to 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 making creative efforts shall fall within the protection scope of the present invention.

[0020] Embodiment 1:

[0021] Please refer to Figures 1-3 , the present invention provides a technical solution: a processing tool for hard graphite felt, including a processing box body 1. Openings 14 for passing hard graphite felt are provided on the left and right side walls of the processing box body 1. Limiting components for limiting the passage of hard graphite felt are installed outside both groups of openings 14. Before use, the electrical ends of each electrical device are electrically connected to the electrical end of an external power source and a controller. The hard graphite felt is input from the left opening 14 and output from the right opening 14, and the hard graphite felt passing through the opening 14 is limited by the limiting component;

[0022] Operating rods 6 are slidably connected to the front and rear side walls of the processing box body 1. Dust suction hoods 16 are installed at the bottoms of both groups of operating rods 6. Compression springs 15 are also sleeved on the outer walls of the operating rods 6, and the compression springs 15 are located between the inner wall of the processing box body 1 and the dust suction hoods 16. Through the pulling of the operating rods 6 and the elasticity of the compression springs 15, multiple first brushes 18 on the side of the two dust suction hoods 16 close to the hard graphite felt can always be tightly attached to the outer surface of the hard graphite felt, and the positions of the dust suction hoods 16 can be adjusted, which can be used to remove impurities from hard graphite felts of different thicknesses;

[0023] On one side of the dust suction hood 16 close to the hard graphite felt, there are multiple groups of dust suction holes 17 and the first brush 18. Collection boxes 7 are installed on the front and rear outer walls of the processing box body 1, and a dust suction mechanism for extracting impurities in the dust suction hood 16 is provided on the collection box 7. Hoses 19 are installed on the side walls of the two dust suction hoods 16, and the other ends of the two hoses 19 are respectively installed with a lower cleaning pipe 20 and an upper cleaning pipe 21. On the side close to the hard graphite felt of the lower cleaning pipe 20 and the upper cleaning pipe 21, there are multiple groups of suction holes 22 and the second brush 23. The operation of the dust suction mechanism can generate suction in the multiple groups of dust suction holes 17 on the dust suction hood 16. As the hard graphite felt moves, the first brush 18 contacts the outer surface of the hard graphite felt, and the multiple groups of dust suction holes 17 can suck the impurities swept off by the first brush 18 into the collection box 7. The multiple groups of suction holes 22 and the second brush 23 on the upper cleaning pipe 21 and the lower cleaning pipe 20 clean the top and bottom of the hard graphite felt, realizing the all-round impurity removal processing of the hard graphite felt, with high impurity removal efficiency and good impurity removal effect, effectively ensuring the cleanliness of the hard graphite felt.

[0024] Among them, preferably, the dust suction mechanism includes a dust suction pump 8. The dust suction pump 8 is installed on the collection box 7. The dust inlet and dust outlet of the dust suction pump 8 are respectively connected with a dust inlet pipe 10 and a dust outlet pipe 9. The other end of the dust inlet pipe 10 is communicated with the dust suction hood 16, and the other end of the dust outlet pipe 9 is communicated with the collection box 7. After the dust suction pump 8 works, it makes the dust inlet pipe 10, the dust suction hood 16, the multiple groups of dust suction holes 17, and the multiple groups of suction holes 22 generate suction, and sucks the swept-off impurities into the collection box 7.

[0025] Preferably, the limiting component includes four fixing plates 12 installed on the side wall of the processing box body 1. Servo motors 13 are provided on the two upper fixing plates 12, and the output ends of the servo motors 13 are connected with driving rollers 5. The limiting component further includes L-shaped plates 2 connected to both ends of the rear side wall of the processing box body 1. Electric telescopic rods 11 are provided on the two L-shaped plates 2, and a frame body 3 is installed at the telescopic end of the electric telescopic rod 11. A moving roller 4 is rotatably connected to the inner wall of the frame body 3. The operation of the servo motor 13 can drive the driving roller 5 to rotate. Cooperating with the rotation of the moving roller 4, it can limit the hard graphite felt entering the processing box body 1. The operation of the electric telescopic rod 11 can drive the moving roller 4 in the frame body 3 to move, and can adjust the distance between the driving roller 5 and the moving roller 4, which can be used to limit the passage of hard graphite felts of different thicknesses.

[0026] Preferably, the outer walls of the two collection boxes 7 are movably connected with sealing doors through hinges, and there are handles on the sealing doors. Later, after opening the sealing doors, it is convenient to clean the impurities collected in the collection boxes 7.

[0027] Embodiment 2:

[0028] Refer to Figure 1, what is different about this embodiment from the first embodiment is that a pull ring is installed at one end of the operating rod 6 away from the dust suction hood 16, and an anti-slip rubber sleeve is sleeved on the hand-held end of the pull ring; the pull ring facilitates the pulling of the operating rod 6, and the anti-slip rubber sleeve plays an anti-slip role to prevent the hand from slipping off when holding the pull ring.

[0029] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A tooling for processing hard graphite felt, comprising a processing box (1), characterized in that: The left and right side walls of the processing box (1) are both provided with openings (14) through which the hard graphite felt passes, and the outer sides of the two groups of openings (14) are both provided with limit assemblies through which the limit hard graphite felt passes; The front and rear side walls of the processing box (1) are both slidably connected with operating rods (6), and the bottoms of the two sets of operating rods (6) are both installed with dust hoods (16). The outer walls of the operating rods (6) are also covered with compression springs (15), and the compression springs (15) are located between the inner wall of the processing box (1) and the dust hood (16); The dust hood (16) is provided with a plurality of dust suction holes (17) and a brush (18) on one side close to the hard graphite felt. The front and rear outer walls of the processing box (1) are both provided with a collecting box (7), and the collecting box (7) is provided with a dust suction mechanism for extracting impurities in the dust hood (16). The side walls of the two dust hoods (16) are both provided with a hose (19), and the other ends of the two hoses (19) are respectively provided with a lower cleaning pipe (20) and an upper cleaning pipe (21), and the lower cleaning pipe (20) and the upper cleaning pipe (21) are both provided with a plurality of suction holes (22) and a brush (23) on one side close to the hard graphite felt.

2. The tooling for processing hard graphite felt according to claim 1, characterized in that: The dust suction mechanism comprises a dust suction pump (8), which is mounted on a collection box (7), and a dust inlet and a dust outlet of the dust suction pump (8) are respectively connected to a dust inlet pipe (10) and a dust outlet pipe (9).

3. The tooling for processing hard graphite felt according to claim 2, characterized in that: The other end of the dust inlet pipe (10) is in communication with the dust hood (16), and the other end of the dust outlet pipe (9) is in communication with the collection box (7).

4. The tooling for processing hard graphite felt according to claim 1, characterized in that: The position limiting assembly comprises four groups of fixed plates (12) mounted on the side walls of the processing box (1), the upper two groups of fixed plates (12) are each provided with a servo motor (13), and the output end of the servo motor (13) is connected to a driving roller (5).

5. The tooling for processing hard graphite felt according to claim 1, characterized in that: The position limiting assembly also includes L-shaped plates (2) connected to the two ends of the rear side wall of the processing box (1), and the two sets of L-shaped plates (2) are both provided with electric telescopic rods (11), and the telescopic ends of the electric telescopic rods (11) are installed with frames (3), and the inner wall of the frame (3) is rotatably connected to the moving roller (4).

6. The tooling for processing hard graphite felt according to claim 1, characterized in that: The outer walls of the two groups of collecting boxes (7) are both movably connected with sealed doors via hinges, and handles are provided on the sealed doors.

7. The tooling for processing hard graphite felt according to claim 1, characterized in that: A pull ring is installed at one end of the operating rod (6) away from the dust cover (16), and the handheld end of the pull ring is covered with an anti-slip rubber sleeve.