Modular dust collection device for carbon production
The modular dust collection device solves the problem of inconvenience in the use of existing devices, and realizes modular combination and efficient dust collection, with better adaptability and easier cleaning.
Patent Information
- Application Number
- CN202521569184.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-25
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-07-25
AI Technical Summary
Existing spray dust removal devices for carbon product manufacturing cannot be modularly combined and are poorly adaptable, resulting in inconvenience in use.
A modular dust collection device was designed, which uses components such as cover plate, dust collection box, suction pipe, and connecting pipe. The modular combination is achieved through positioning buckles and splicing slots. The suction pipe interface can be sealed and the dust collection bag can be quickly disassembled and assembled.
It achieves the convenience of modular combination use, improves the dust collection efficiency and dust collection effect, is easy to clean, and has better adaptability.
Smart Images

Figure CN224672308U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of carbon production technology, specifically a modular dust collection device for carbon production. Background Technology
[0002] Carbon and graphite materials are non-metallic solid materials primarily composed of carbon. Carbon materials are mainly composed of non-graphitic carbon, while graphite materials are mainly composed of graphitic carbon. Not only graphite, but also diamond, fullerenes, carbene, and all other carbon-containing materials are called carbon materials. During the production process, dust is generated and needs to be treated.
[0003] There is an existing spray dust removal device for carbon product production (CN202022366505.3) that is easy to operate, has low manufacturing cost, and can be recycled, effectively avoiding secondary pollution. However, it has shortcomings: the existing equipment cannot be modularly combined, has poor adaptability, and is inconvenient to use. Therefore, a modular dust collection device for carbon production is needed to solve the above problems. Utility Model Content
[0004] The purpose of this utility model is to provide a modular dust collection device for carbon production, so as to solve the problems mentioned in the background art that the spray dust removal device for carbon product production cannot be used in a modular combination, has poor adaptability, and is inconvenient to use.
[0005] To achieve the above objectives, this utility model provides the following technical solution: a modular dust collection device for carbon production, comprising a conveyor belt, a cover plate placed on the upper end of the conveyor belt, and dust collection boxes distributed along the front side of the conveyor belt. A positioning buckle is fixedly connected to one side of the cover plate, and a positioning buckle groove is formed on the other side of the cover plate. A dust suction port is connected to the lower end of the cover plate, and a guide groove is connected to the upper end of the cover plate. Splicing slots are formed on both sides of the guide groove, and splicing blocks are inserted into the inner walls of the splicing slots. A connecting conduit is connected between the splicing blocks. A suction pipe interface is connected to the upper end of the guide groove, and a sealing cap is fixedly connected to the suction pipe interface and the upper end face of the splicing slot. One end of the suction pipe interface is inserted into and connected to... The dust collection box has a suction pipe, the lower end of which is connected to the upper end of the dust collection box. An auxiliary splicing slot is fixedly connected to the upper end of the inner wall of the dust collection box, and the auxiliary splicing slot is connected to the suction pipe. An auxiliary splicing block is inserted into the inner wall of the auxiliary splicing slot, and a dust collection bag is connected to the lower end of the auxiliary splicing block. A suction fan is embedded in the lower end of the inner wall of the dust collection box, and a one-way through hole is opened at the lower front side of the dust collection box. A universal wheel is fixedly connected to the lower corner of the dust collection box, and a box cover is flipped to the upper front side of the dust collection box. Pull-out sliding grooves are opened on the front and rear edges of the inner wall of the cover, and an extension rod is inserted into the inner wall of the pull-out sliding groove. A placement block is vertically fixed to one end of the extension rod, and a locking knob is inserted into the upper edge of the pull-out sliding groove.
[0006] Preferably, the cover plate is distributed in a covering position with the upper end of the conveyor belt, and the cover plates are installed in a fastening combination by positioning fasteners and positioning fastener grooves.
[0007] Preferably, the cover plates are connected by guide grooves and connecting conduits, the suction pipe is connected to the suction pipe interface by a suction fan, and the sealing cover is connected to the suction pipe interface and the splicing slot in a sealing cover manner.
[0008] Preferably, the dust collection bag is connected to the dust collection box by an auxiliary splicing slot and an auxiliary splicing block in a sliding insertion splicing connection.
[0009] Preferably, the dust suction ports are distributed at equal and parallel positions at the lower end of the cover plate, and the dust suction ports are elongated opening structures.
[0010] Preferably, the placement block is slidably pulled to the cover plate via an extension rod and a pull-out groove, and the extension rod is locked to the cover plate via a locking knob.
[0011] Compared with the prior art, the beneficial effects of this utility model are: the modular dust collection device for carbon production can be installed by fitting the cover plate with the placement block, and can be used in multiple combinations through positioning buckles and positioning slots. It can also be connected by connecting pipes, splicing blocks, and splicing slots for convenient linkage suction. When the suction pipe interface and splicing slot are not in use, they can be sealed with a sealing cover and can be quickly combined for use, making it more convenient to use. Attached Figure Description
[0012] Figure 1 This is a front view of a modular dust collection device for carbon production according to this utility model; Figure 2 This is a schematic diagram of the internal structure of a modular dust collection device for carbon production according to this utility model. Figure 3 This is a top view of the internal structure of the cover plate of a modular dust collection device for carbon production according to this utility model. Figure 4 This utility model relates to a modular dust collection device for carbon production. Figure 2 Enlarged view of point A in the middle; Figure 5 This utility model relates to a modular dust collection device for carbon production. Figure 2 Enlarged view at point B in the middle; Figure 6 This utility model relates to a modular dust collection device for carbon production. Figure 2 Enlarged view at point C; Figure 7 This utility model relates to a modular dust collection device for carbon production. Figure 3 Enlarged view of point D in the middle.
[0013] In the diagram: 1. Conveyor belt, 2. Cover plate, 3. Dust collection box, 4. Box cover, 5. Guide groove, 6. Suction pipe interface, 7. Connecting conduit, 8. Suction pipe, 9. Casters, 10. Dust collection bag, 11. One-way through hole, 12. Suction fan, 13. Dust suction port, 14. Placement block, 15. Extension rod, 16. Sealing cover, 17. Splicing block, 18. Splicing slot, 19. Positioning buckle block, 20. Positioning buckle groove, 21. Auxiliary splicing slot, 22. Auxiliary splicing block, 23. Pull-out slide, 24. Locking knob. Detailed Implementation
[0014] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0015] Please see Figure 1-7This utility model provides a technical solution: a modular dust collection device for carbon production, including a conveyor belt 1, a cover plate 2, a dust collection box 3, a box cover 4, a guide groove 5, a suction pipe interface 6, a connecting conduit 7, a suction pipe 8, universal wheels 9, a dust collection bag 10, a one-way through hole 11, a suction fan 12, a dust suction port 13, a placement block 14, an extension rod 15, a sealing cover 16, a splicing block 17, a splicing slot 18, a positioning buckle block 19, a positioning buckle groove 20, an auxiliary splicing slot 21, an auxiliary splicing block 22, a pull-out slide 23, and a locking knob 24. The cover plate 2 is placed on the upper end of the conveyor belt 1, and the dust collection box 3 is distributed close to the front side of the conveyor belt 1. The cover plate 2 is distributed in a covering position with the upper end of the conveyor belt 1, and the cover plates 2 are connected by positioning buckles 19. The positioning slots 20 are fastened together, allowing for multiple combinations of cover plates 2 for modular installation and convenient use. Cover plates 2 are connected via guide grooves 5 and connecting conduits 7. The suction pipe 8 is connected to the suction pipe interface 6 via a suction fan 12. The sealing cover 16 is sealed to the suction pipe interface 6 and the splicing slot 18, enabling interconnected operation of the cover plates 2 for excellent dust collection and sealing of the through holes. A positioning buckle 19 protrudes and is fixedly connected to one side of the cover plate 2, while a positioning slot 20 is provided on the other side. A dust collection port 13 is connected to the lower end of the cover plate 2, and a guide groove 5 is connected to the upper end. The dust collection ports 13 are equidistantly distributed parallel to each other at the lower end of the cover plate 2, and the dust collection... The suction port 13 has a long, narrow opening structure, which allows for more efficient and effective dust collection. The guide groove 5 has splicing slots 18 on both sides, and splicing blocks 17 are inserted into the inner walls of the splicing slots 18. A connecting conduit 7 connects the splicing blocks 17. A suction pipe interface 6 is connected to the upper end of the guide groove 5, and a sealing cap 16 is fixedly connected to the upper end face of the suction pipe interface 6 and the splicing slot 18. A suction pipe 8 is inserted into one end of the suction pipe interface 6, and the lower end of the suction pipe 8 is connected to the upper end of the dust collection box 3. An auxiliary splicing slot 21 is fixedly connected to the upper inner wall of the dust collection box 3, and the auxiliary splicing slot 21 is connected to the suction pipe 8. An auxiliary splicing block 22 is inserted into the inner wall of the auxiliary splicing slot 21. 2. A dust collection bag 10 is connected to the lower end of the dust collection box 3. The dust collection bag 10 is slidably connected to the dust collection box 3 via an auxiliary splicing slot 21 and an auxiliary splicing block 22. This allows the dust collection bag 10 to be easily and quickly disassembled and installed independently for easy cleaning. A suction fan 12 is embedded in the lower end of the inner wall of the dust collection box 3. A one-way through hole 11 is opened at the lower front side of the dust collection box 3. Universal wheels 9 are fixedly connected to the lower corner of the dust collection box 3. A box cover 4 is flipped to the upper front side of the dust collection box 3. Pull-out sliding grooves 23 are opened on the front and rear edges of the inner wall of the cover plate 2. An extension rod 15 is inserted into the inner wall of the pull-out sliding groove 23. A placement block 14 is vertically fixed to one end of the extension rod 15. The placement block 14 is slidably pulled to the cover plate 2 via the extension rod 15 and the pull-out sliding groove 23.Furthermore, the extension rod 15 is fixedly connected to the cover plate 2 via the locking knob 24, which allows for convenient extension and retraction adjustment of the placement block 14, enabling efficient and effective installation. The upper edge of the pull-out slide groove 23 is also fitted with a locking knob 24.
[0016] Working principle: When using this modular dust collection device for carbon production, firstly, the cover plate 2 of the device is mounted on the upper end of the conveyor belt 1 by the placement block 14, and the cover plates 2 are installed by interlocking and assembling with positioning buckles 19 and positioning buckle slots 20. Then, the cover plates 2 are connected by interlocking and connecting conduits 7, splicing blocks 17, and splicing slots 18. Next, the unconnected suction pipe interface 6 and splicing slot 18 are sealed with sealing caps 16. Then, the dust collection box 3 is moved to one side of the conveyor belt 1, and then connected by interlocking and connecting the suction pipe 8 with the suction pipe interface 6. Then, the suction fan 12 is started, and the dust on the transported carbon is sucked out through the dust suction port 13 and introduced into the dust collection bag 10 through the suction pipe 8 for collection. After processing, the box cover 4 can be flipped open, and then the dust collection bag 10 can be pulled out through the auxiliary splicing block 22. This is the usage process of this modular dust collection device for carbon production.
[0017] It should be noted that this utility model is a modular dust collection device for carbon production. All components are standard parts or parts known to those skilled in the art. Its structure and principle can be learned by those skilled in the art through technical manuals or conventional experimental methods. Furthermore, all electrical components mentioned above refer to power elements, electrical components, and the matching monitoring computer and power supply connected by wires. The specific connection method should refer to the working principle described above, and the electrical connection between each electrical component should be completed in the order of operation. The detailed connection method is a well-known technology in the field.
[0018] Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A modular dust collection device for carbon production, comprising a conveyor belt (1), a cover plate (2) placed on the upper end of the conveyor belt (1), and dust collection boxes (3) attached to the front side of the conveyor belt (1), characterized in that: One side of the cover plate (2) is fixedly connected to a positioning buckle (19), and the other side of the cover plate (2) is provided with a positioning buckle groove (20). The lower end of the cover plate (2) is connected to a dust suction port (13), and the upper end of the cover plate (2) is connected to a guide groove (5). The guide groove (5) is provided with splicing slots (18) on both sides, and splicing blocks (17) are inserted into the inner wall of the splicing slot (18). A connecting conduit (7) is connected between the splicing blocks (17). The upper end of the guide groove (5) is connected to a suction pipe interface (6), and a sealing cap (16) is fixedly connected to the upper end of the suction pipe interface (6) and the end face of the splicing slot (18). One end of the suction pipe interface (6) is inserted into a suction pipe (8), and the lower end of the suction pipe (8) is connected to the upper end of the dust collection box (3). An auxiliary splicing device is fixedly connected to the upper end of the inner wall of the dust collection box (3). The auxiliary splicing slot (21) is connected to the suction pipe (8). The inner wall of the auxiliary splicing slot (21) is connected to the auxiliary splicing block (22). The lower end of the auxiliary splicing block (22) is connected to the dust collection bag (10). The lower end of the inner wall of the dust collection box (3) is inlaid with the suction fan (12). The lower end of the front side of the dust collection box (3) is provided with a one-way through hole (11). The lower corner of the dust collection box (3) is fixedly connected with a universal wheel (9). The upper end of the front side of the dust collection box (3) is flipped and connected with a box cover (4). The inner wall of the cover plate (2) is provided with a pull-out slide groove (23). The inner wall of the pull-out slide groove (23) is connected to an extension rod (15). One end of the extension rod (15) is vertically fixedly connected to a placement block (14). The upper edge of the pull-out slide groove (23) is connected to a locking knob (24).
2. The modular dust collection device for carbon production according to claim 1, characterized in that: The cover plate (2) is positioned to cover the upper end of the conveyor belt (1), and the cover plates (2) are connected by a fastening combination through a positioning buckle (19) and a positioning buckle groove (20).
3. The modular dust collection device for carbon production according to claim 2, characterized in that: The cover plates (2) are connected by guide grooves (5) and connecting conduits (7). The suction pipe (8) is connected to the suction pipe interface (6) by a suction fan (12). The sealing cover (16) is connected to the suction pipe interface (6) and the splicing slot (18) in a sealing cover manner.
4. A modular dust collection device for carbon production according to claim 3, characterized in that: The dust collection bag (10) is connected to the dust collection box (3) by sliding splicing through the auxiliary splicing slot (21) and the auxiliary splicing plug (22).
5. A modular dust collection device for carbon production according to claim 4, characterized in that: The dust suction port (13) is distributed at equal and parallel positions at the lower end of the cover plate (2), and the dust suction port (13) is a long strip opening structure.
6. A modular dust collection device for carbon production according to claim 5, characterized in that: The placement block (14) is slidably pulled to the cover plate (2) via the extension rod (15) and the pull-out groove (23), and the extension rod (15) is locked to the cover plate (2) via the locking knob (24).
Citation Information
Patent Citations
Spraying dust removal device for carbon product production
CN213761110U