Carbon fiber material processing cuttings collecting device
By designing a chip collection device for carbon fiber material processing and utilizing a combination of a dust hood and a dust collector, the problem of chip pollution in the carbon fiber processing process is solved, and efficient dust cleaning and waste recycling are achieved.
Patent Information
- Application Number
- CN202422689907.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-05
- Publication Date
- 2025-09-26
- Estimated Expiration
- 2034-11-05
AI Technical Summary
The powdery chips generated during the processing of carbon fiber materials pollute the environment and the discharge method is time-consuming and labor-intensive, affecting processing efficiency.
A chip collection device for processing carbon fiber materials is designed, including a dust hood component and a dust collector. The dust hood components are installed on both sides of the processing table and are connected to the dust collector through a hose. The dust collector uses the suction force of the dust collector to inhale the chip dust and filter the dust and exhaust gas through a PTFE-coated filter element. The dust hood component can be adjusted to feed synchronously with the processing table.
The machine tool working area is kept clean and the waste is collected and recycled, which prevents chips from polluting the environment and improves processing efficiency.
Smart Images

Figure CN223383127U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of carbon fiber material processing, in particular to a carbon fiber material processing chip collection device. Background Art
[0002] Carbon fiber is a special fiber composed of carbon elements. It has the characteristics of high temperature resistance, friction resistance, electrical conductivity, thermal conductivity and corrosion resistance. It is fibrous, soft and can be processed into various fabrics. Because its graphite microcrystalline structure is preferentially oriented along the fiber axis, it has high strength and modulus along the fiber axis. The density of carbon fiber is small, so the specific strength and specific modulus are high. The main use of carbon fiber is as a reinforcing material and is compounded with resins, metals, ceramics and carbon to manufacture advanced composite materials.
[0003] The drilling process of carbon fiber composite materials produces a large amount of powdered chips, which pollute the environment and affect the health of workers. The current method of chip discharge is to manually suck the chips away with a vacuum cleaner, which is time-consuming and labor-intensive, affecting processing efficiency. Utility Model Content
[0004] The utility model provides a carbon fiber material processing chip collection device to solve the problems in the background technology.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: a carbon fiber material processing chip collection device, comprising a processing table, a dust collection cover component and a dust collector, the dust collection cover component being installed on both sides of the processing table, and the dust collection cover component being connected to the dust collector through a hose; the dust collection cover component comprising a lower cover shell, an intermediate cover shell, an upper cover shell and a flat metal shaped hose, one end of the intermediate cover shell is connected to the lower cover shell through a flat metal shaped hose, and the other end of the intermediate cover shell is connected to the upper cover shell through a flat metal shaped hose; the dust collector comprises a shell, a centrifugal fan, a PTFE-coated filter element and a collection box, an electrical room, a filter chamber and a storage bin are respectively provided in the shell, and the filter chamber and the storage bin are connected to each other, the centrifugal fan is installed in the electrical room, and an air guide cover is installed at the air inlet of the centrifugal fan, one end of the air guide cover extends into the filter chamber, one end of the PTFE-coated filter element is tightly fitted and snap-fitted to the air guide cover, and the collection box is snap-fitted into the storage bin.
[0006] Furthermore, slots are provided on both sides of the processing table, and a clamping block is provided on the dust collecting cover component, and the dust collecting cover component is clamped on the processing table through the clamping block and the slots.
[0007] Furthermore, a pipe interface is provided at the bottom of the dust collecting cover component, and the pipe interface is connected to the vacuum cleaner through a hose.
[0008] Furthermore, an air outlet is provided on the side wall of the electrical room, and an air inlet is provided on the top of the filter room.
[0009] Furthermore, one end of the PTFE membrane filter element is open, and the other end is closed.
[0010] Furthermore, one end of the air guide cover is provided with an annular interface, and one end of the PTFE coated filter element is clamped on the annular interface.
[0011] Compared with the prior art, the present invention provides a carbon fiber material processing chip collection device, which has the following beneficial effects:
[0012] The carbon fiber material processing chip collection device uses the suction force generated by the vacuum cleaner to suck metal chip dust from the dust hood component into the device, filters out dust and exhaust gas, keeps the machine tool working area clean at all times, and can collect and recycle waste materials. The dust hood components are located on both sides of the processing table and can be bent and adjusted. They can be fed synchronously with the processing table to extract and collect the chip dust generated during the processing in time to prevent the generated chips from polluting the environment. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 It is a structural diagram of the utility model;
[0014] Figure 2 This is a side view of the dust collecting cover component of the present utility model;
[0015] Figure 3 This is a cross-sectional view of the vacuum cleaner of the present invention.
[0016] In the figure: 1. Processing table; 11. Card slot; 2. Dust cover component; 21. Lower cover shell; 22. Middle cover shell; 23. Upper cover shell; 24. Flat metal shaped hose; 25. Card block; 26. Pipe interface; 3. Vacuum cleaner; 31. Shell; 32. Centrifugal fan; 33. PTFE-coated filter element; 34. Collection box; 35. Electrical room; 36. Filter room; 37. Storage compartment; 38. Air guide cover; 39. Air outlet; 310. Air inlet; 311. Ring interface. DETAILED DESCRIPTION
[0017] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0018] See also Figure 1-Figure 3The utility model discloses a chip collection device for processing carbon fiber materials, comprising a processing table 1, a dust collecting cover component 2 and a dust collector 3, characterized in that the dust collecting cover component 2 is installed on both sides of the processing table 1, and the dust collecting cover component 2 is connected to the dust collector 3 through a hose, and the suction force generated by the dust collector 3 is used to suck metal chips and dust from the dust collecting cover component 2 into the dust collecting cover component 2, filtering out dust and exhaust gas, so that the working area of the machine tool is always kept clean, and waste materials can be collected and recycled, the dust collecting cover components 2 are located on both sides of the processing table 1, and can be bent and adjusted, and can be fed synchronously with the processing table 1, so that the chips and dust generated during the processing are timely extracted and collected, and the generated chips are prevented from polluting the environment;
[0019] The dust collecting cover component 2 includes a lower cover shell 21, an intermediate cover shell 22, an upper cover shell 23 and a flat metal shaped hose 24. One end of the intermediate cover shell 22 is connected to the lower cover shell 21 through the flat metal shaped hose 24, and the other end of the intermediate cover shell 22 is connected to the upper cover shell 23 through the flat metal shaped hose 24.
[0020] The vacuum cleaner 3 includes a shell 31, a centrifugal fan 32, a PTFE-coated filter element 33 and a collection box 34. The shell 31 is respectively provided with an electrical chamber 35, a filter chamber 36 and a storage bin 37, and the filter chamber 36 and the storage bin 37 are interconnected. The centrifugal fan 32 is installed in the electrical chamber 35, and an air guide cover 38 is installed at the air inlet 310 of the centrifugal fan 32. One end of the air guide cover 38 extends into the filter chamber 36. One end of the PTFE-coated filter element 33 is tightly fitted and snapped onto the air guide cover 38. The collection box 34 is snapped into the storage bin 37.
[0021] Specifically, the processing table 1 is provided with a card slot 11 on both sides, and the dust collecting cover component 2 is provided with a card block 25 and is connected to the processing table 1 through the card block 25 and the card slot 11.
[0022] In this embodiment, the dust collecting cover component 2 is conveniently installed on the processing table 1 through the cooperation of the clamping block 25 and the clamping slot 11.
[0023] Specifically, a pipe interface 26 is provided at the bottom of the dust collecting cover component 2, and the pipe interface 26 is connected to the vacuum cleaner 3 through a hose.
[0024] In this embodiment, the pipe interface 26 is a connecting structure for connecting to the vacuum cleaner 3 through a hose.
[0025] Specifically, an air outlet 39 is provided on the side wall of the electrical room 35 , and an air inlet 310 is provided on the top of the filter room 36 .
[0026] In this embodiment, the introduced dust gas enters the vacuum cleaner 3 from the air inlet 310, and the particles and impurities in the gas are filtered by the PTFE membrane filter element 33, which can effectively purify the air. After purification, the gas is discharged from the air outlet 39.
[0027] Specifically, one end of the PTFE membrane filter element 33 is open, and the other end is closed.
[0028] In this embodiment, the PTFE coated filter element 33 is a high-efficiency filter material. Its main function is to filter impurities and particles in liquid or gas, thereby improving the purity and quality of the liquid or gas. The PTFE filter element has many advantages, such as corrosion resistance, high temperature resistance, wear resistance, and not easy to age.
[0029] Specifically, an annular interface 311 is provided at one end of the air guide cover 38 , and one end of the PTFE membrane filter element 33 is clamped on the annular interface 311 .
[0030] In this embodiment, the annular interface 311 is a connection structure, which facilitates the installation and removal of the PTFE membrane filter element 33.
[0031] During use, the suction force generated by the vacuum cleaner 3 is used to suck metal chips and dust into the dust hood component 2, filtering out dust and exhaust gas, so that the working area of the machine tool is always kept clean, and waste materials can be collected and recycled. The dust hood component 2 is located on both sides of the processing table 1 and can be bent and adjusted. It can be fed synchronously with the processing table 1, and the chips and dust generated during the processing are extracted and collected in time to avoid the chips from polluting the environment.
[0032] To sum up, the carbon fiber material processing chip collection device uses the suction force generated by the vacuum cleaner 3 to suck metal chip dust from the dust hood component 2, filter out dust and exhaust gas, so that the machine tool working area is always kept clean, and can collect and recycle waste materials. The dust hood component 2 is located on both sides of the processing table 1 and can be bent and adjusted. It can be fed synchronously with the processing table 1, and the chip dust generated during the processing can be extracted and collected in time to avoid the generated chips polluting the environment.
[0033] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A carbon fiber material processing chip collection device, comprising a processing table (1), a dust collecting cover component (2) and a dust collector (3), characterized in that: The dust collecting cover component (2) is installed on both sides of the processing table (1), and the dust collecting cover component (2) is connected to the dust collector (3) through a hose; The dust collecting cover component (2) comprises a lower cover shell (21), an intermediate cover shell (22), an upper cover shell (23) and a flat metal shaped hose (24); one end of the intermediate cover shell (22) is connected to the lower cover shell (21) through the flat metal shaped hose (24), and the other end of the intermediate cover shell (22) is connected to the upper cover shell (23) through the flat metal shaped hose (24); The vacuum cleaner (3) comprises a shell (31), a centrifugal fan (32), a PTFE-coated filter element (33) and a collection box (34); the shell (31) is provided with an electrical chamber (35), a filter chamber (36) and a storage bin (37), and the filter chamber (36) and the storage bin (37) are interconnected; the centrifugal fan (32) is installed in the electrical chamber (35), and an air guide cover (38) is installed at the air inlet (310) of the centrifugal fan (32); one end of the air guide cover (38) extends into the filter chamber (36); one end of the PTFE-coated filter element (33) is tightly connected to the air guide cover (38), and the collection box (34) is connected to the storage bin (37).
2. The carbon fiber material processing chip collection device according to claim 1, characterized in that: Both sides of the processing table (1) are provided with card slots (11); the dust collecting cover component (2) is provided with a card block (25) and is connected to the processing table (1) via the card block (25) and the card slots (11).
3. The carbon fiber material processing chip collection device according to claim 1, characterized in that: A pipe interface (26) is provided at the bottom of the dust collecting cover component (2), and the pipe interface (26) is connected to the dust collector (3) via a hose.
4. The carbon fiber material processing chip collection device according to claim 1, characterized in that: An air outlet (39) is provided on the side wall of the electrical room (35), and an air inlet (310) is provided on the top of the filter room (36).
5. The carbon fiber material processing chip collection device according to claim 1, characterized in that: One end of the PTFE membrane filter element (33) is open, and the other end is closed.
6. The carbon fiber material processing chip collection device according to claim 1, characterized in that: One end of the air guide cover (38) is provided with an annular interface (311), and one end of the PTFE membrane filter element (33) is clamped on the annular interface (311).