A graphite product surface processing scrap suction device

CN224765804UActive Publication Date: 2026-09-18HUIXIAN WEIYE GRAPHITE PRODUCTS CO LTD
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Patent Information

Application Number
CN202522212301.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-10-20
Publication Date
2026-09-18
Estimated Expiration
2035-10-20

AI Technical Summary

Technical Problem

传统加工设备多缺乏有效的碎屑收集功能,导致碎屑四处飞扬,不仅污染作业环境、影响操作人员健康,还增加清洁难度和人工维护成本

Benefits of technology

[0018]1. This utility model discloses a debris collection device for surface processing of graphite products. By installing a processing table inside a cabinet and surrounding it with a ring-shaped collection box, debris generated during graphite processing can fall into the collection box immediately, achieving initial debris collection. The top of the collection box has an opening structure with a grille, allowing debris to enter smoothly while preventing accidental contact by operators or the falling of large foreign objects, thus improving safety and practicality. This reasonable structural design achieves rapid debris collection, laying the foundation for subsequent efficient suction processing.

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Abstract

The utility model relates to the field of graphite product processing, specifically speaking is a kind of graphite product surface processing with scrap suction device, including cabinet, the inside of cabinet is provided with processing platform, the cabinet of processing platform side part is fixedly arranged with the collecting box of collecting scrap, the side part of cabinet is provided with the collecting cabinet being linked with collecting box, the upper portion of cabinet is linked with collecting cabinet, the cleaning unit of being set up on the cabinet is blown to its inside, the graphite product surface processing with scrap suction device of the utility model can effectively collect the scrap generated when processing, prevent diffusion pollution, improve cleaning efficiency, can realize automatic blowing cleaning simultaneously, reduce subsequent artificial maintenance cost, improve the working environment of overall process, guarantee the security of operation, prolong the service life of equipment.
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Description

Technical Field

[0001] This utility model relates to the field of graphite product processing, specifically a debris removal device for surface processing of graphite products. Background Technology

[0002] During the surface processing of graphite products, a large amount of fine, easily dispersed carbon debris is generated. Traditional processing equipment often lacks effective debris collection capabilities, causing debris to fly everywhere. This not only pollutes the working environment and affects the health of operators, but also increases cleaning difficulty and maintenance costs. Furthermore, residual debris can affect processing accuracy and equipment operational stability, and long-term accumulation can lead to component wear and shorten equipment lifespan. Therefore, overcoming these technical problems and defects is a key issue that needs to be addressed. Utility Model Content

[0003] The purpose of this invention is to overcome the defects described in the background art, thereby realizing a debris collection device for surface processing of graphite products. This device can effectively collect debris generated during processing, prevent the spread of pollution, improve cleaning efficiency, and achieve automatic blowing and cleaning, reducing subsequent manual maintenance costs, improving the overall working environment, ensuring operational safety, and extending the service life of the equipment.

[0004] To achieve the above-mentioned objectives, the technical solution of this utility model is: a debris collection device for surface processing of graphite products, comprising a cabinet, a processing table inside the cabinet, a collection box for collecting debris fixedly installed on the side of the cabinet on the processing table, a collection cabinet connected to the collection box on the side of the cabinet, a collection cabinet connected to the upper part of the cabinet, and a cleaning unit for blowing air into the cabinet.

[0005] In the above-mentioned chip removal device for processing graphite products, the front side of the cabinet is provided with a cabinet door that can swing outwards, and the processing table has a rectangular structure with a support column fixedly installed at its bottom.

[0006] In the above-mentioned chip removal device for surface processing of graphite products, the collection box is a rectangular ring-shaped box with an open top. The outer side of the collection box is fixedly installed with the cabinet, and the inner side of the collection box is fixedly installed with the outer side of the processing table, and the collection box surrounds the processing table.

[0007] In the above-mentioned chip collection device for processing graphite products, the top of the collection box is provided with a detachable fence that allows chips to pass through, and the top of the collection box is lower than the top surface of the processing table.

[0008] In the above-mentioned chip removal device for surface processing of graphite products, a filter plate is horizontally arranged in the middle of the inside of the collection cabinet, and the filter plate divides the inside of the collection cabinet into a storage chamber and an exhaust chamber in the vertical direction.

[0009] The storage cavity is connected to a multi-head suction pipe on its side. Each of the multi-head suction pipes has a fixed gas collection hood at its air inlet end. The gas collection hoods are connected to the side of the corresponding collection box.

[0010] In the above-mentioned chip removal device for processing graphite products, a cover plate that can swing outward is hinged to the collection cabinet on the side of the storage cavity.

[0011] An exhaust vent is provided on the collection cabinet on the side of the exhaust chamber, and a first exhaust fan with a motor is installed inside the exhaust vent.

[0012] In the above-mentioned chip removal device for surface processing of graphite products, an air vent is provided on the inner side wall of the cabinet. The air vent is located at the upper part of the cabinet, and a second row of fans with motors are installed inside the air vent.

[0013] A single-ended suction pipe is connected to the vent, and the other end of the single-ended suction pipe is connected to the storage cavity of the collection cabinet.

[0014] In the above-mentioned chip removal device for surface processing of graphite products, the cleaning unit includes an air pump fixedly installed on the side of the cabinet. The air pump has at least one air jet pipe connected to its outlet end. The end of the air jet pipe is connected to a multi-head air blowing pipe. The outlet ends of the multi-head air blowing pipe are respectively connected to air jet heads that penetrate the side of the cabinet. The ends of the air jet heads are located above the processing table.

[0015] The side of the cabinet is vertically provided with multiple through slots that are adapted to the corresponding jet heads. The jet heads are rotatably disposed inside the through slots. The side of the cabinet is vertically fixed with multiple electric actuators that are adapted to the corresponding jet heads. The telescopic ends of the electric actuators are hinged to the jet heads.

[0016] The side of the cabinet is fixedly equipped with a dust cover that can cover the through slot, air jet head, and electric push rod. The outer side of the dust cover is detachably covered.

[0017] Compared with the prior art, the chip removal device for surface processing of graphite products of this utility model has at least the following beneficial effects:

[0018] 1. This utility model discloses a debris collection device for surface processing of graphite products. By installing a processing table inside a cabinet and surrounding it with a ring-shaped collection box, debris generated during graphite processing can fall into the collection box immediately, achieving initial debris collection. The top of the collection box has an opening structure with a grille, allowing debris to enter smoothly while preventing accidental contact by operators or the falling of large foreign objects, thus improving safety and practicality. This reasonable structural design achieves rapid debris collection, laying the foundation for subsequent efficient suction processing.

[0019] 2. This utility model discloses a debris extraction device for surface processing of graphite products. A multi-headed exhaust pipe is installed on the side of the collection box, which, together with multiple air collection hoods, connects to the collection box, forming a multi-point synchronous suction negative pressure system. This design effectively covers the area surrounding the processing table, avoiding airflow dead zones caused by single-point suction, and ensuring that debris is quickly sucked into the storage chamber of the collection cabinet after it is generated. Simultaneously, a filter plate divides the collection cabinet into a storage chamber and an exhaust chamber, separating debris from the airflow. Larger debris particles are trapped in the storage chamber, extending the service life of the fan, improving system stability, and facilitating subsequent debris removal. An air vent and a second row of fans are installed at the top of the cabinet, connected to the storage chamber of the collection cabinet via a single-headed exhaust pipe, forming a dual air intake path of "side + top". This combined top-bottom airflow organization effectively enhances the overall negative pressure environment inside the cabinet, improves airflow efficiency, and is particularly beneficial for capturing suspended fine graphite dust during processing, significantly improving the air quality in the working area and reducing environmental pollution and occupational health risks.

[0020] 3. This utility model discloses a debris removal device for surface processing of graphite products. It includes a cleaning unit consisting of an air pump, a jet pipe, a multi-head air blowing pipe, and jet heads. This unit can perform directional blowing on the processing table and surrounding area during and after processing. The jet heads are driven by an electric actuator to rotate within the through-slot, flexibly adjusting the blowing angle to precisely remove residual debris. This reduces the workload of manual cleaning, improves the automation level and ease of use of the equipment, and is particularly suitable for continuous production scenarios.

[0021] 4. This utility model discloses a debris collection device for surface processing of graphite products. The top of the collection box is equipped with a removable grille for convenient periodic cleaning of internal debris. The storage chamber of the collection cabinet has an openable cover on the side, facilitating inspection and maintenance of the filter plate and internal deposits. Meanwhile, key components such as the jet nozzle and electric actuator are housed within a dust cover, which is removable, protecting the actuator from dust corrosion while ensuring convenient maintenance. The overall structure balances functionality and maintainability, extending the equipment's service life. Attached Figure Description

[0022] Figure 1This is a schematic diagram of the overall structure of the debris removal device for surface processing of graphite products according to this utility model;

[0023] Figure 2 This is a schematic diagram of the internal structure of the cabinet of the chip removal device for surface processing of graphite products according to this utility model;

[0024] Figure 3 This is a schematic diagram of the cleaning unit structure of the debris suction device for surface processing of graphite products according to this utility model;

[0025] Figure 4 This is a schematic diagram of the internal structure of the collection cabinet of the chip removal device for surface processing of graphite products according to this utility model.

[0026] In the diagram: 1. Cabinet; 2. Processing table; 3. Collection box; 4. Collection cabinet;

[0027] 5. Cleaning unit; 51. Air pump; 52. Air jet pipe; 53. Multi-head air blowing pipe; 54. Air jet head; 55. Through slot; 56. Electric actuator; 57. Dust cover; 58. Cover;

[0028] 6. Cabinet door; 7. Support column; 8. Fence; 9. Filter plate; 10. Storage chamber; 11. Exhaust chamber; 12. Multi-head exhaust pipe; 13. Gas collection hood; 14. Cover plate; 15. Exhaust vent; 16. First row fan; 17. Vent; 18. Second row fan; 19. Single-head exhaust pipe. Detailed Implementation

[0029] The following description, in conjunction with the accompanying drawings and specific embodiments, provides a more detailed description of the debris-collecting device for surface processing of graphite products according to this utility model.

[0030] In the description of this utility model, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this utility model and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this utility model.

[0031] See Figures 1-4The graphite product surface processing debris collection device of this embodiment can effectively collect debris generated during processing, prevent the spread of pollution, improve cleaning efficiency, and achieve automatic blowing and cleaning, reducing subsequent manual maintenance costs, improving the overall working environment, ensuring operational safety, and extending the service life of the equipment. In this embodiment, it mainly includes a cabinet 1, with an outwardly swinging cabinet door 6 on the front side for easy loading, unloading, and processing of products. A processing table 2 is provided inside the cabinet 1 for processing graphite products. The processing table 2 has a rectangular structure and a support column 7 is fixedly installed at its bottom to support the processing table 2.

[0032] For the collection of debris. See also Figures 1-4 In this embodiment, a collection box 3 for collecting debris is fixedly installed on the cabinet 1 on the side of the processing table 2, and a collection cabinet 4 connected to the collection box 3 is provided on the side of the cabinet 1, and the upper part of the cabinet 1 is connected to the collection cabinet 4.

[0033] The collection box 3 is a rectangular ring-shaped box with an open top. The outer side of the collection box 3 is fixedly installed to the cabinet 1, and the inner side of the collection box 3 is fixedly installed to the outer side of the processing table 2, thus surrounding the processing table 2. The top of the collection box 3 is equipped with a detachable fence 8 that allows debris to pass through. The top of the collection box 3 is lower than the top surface of the processing table 2. The collection box 3 allows debris generated during graphite processing to fall into it immediately, achieving initial collection of the debris. The opening structure with the fence 8 at the top of the collection box 3 allows debris to enter smoothly while preventing accidental contact by operators or the falling of large foreign objects, improving safety and practicality. It also enables rapid collection of debris, laying the foundation for subsequent efficient suction processing.

[0034] A filter plate 9 is horizontally positioned in the middle of the interior of the collection cabinet 4, dividing the interior of the collection cabinet 4 vertically into a storage chamber 10 and an exhaust chamber 11. A multi-head exhaust pipe 12 is connected to the side of the storage chamber 10, and each of the air inlets of the multi-head exhaust pipe 12 is fixedly equipped with a gas collection hood 13. Multiple gas collection hoods 13 are respectively connected to the side of the corresponding collection box 3. A hinged cover plate 14 that can swing outwards is mounted on the side of the collection cabinet 4 of the storage chamber 10. An exhaust port 15 is provided on the side of the collection cabinet 4 of the exhaust chamber 11, and a first exhaust fan 16 with a motor is installed inside the exhaust port 15. Controlling the motor to drive the first exhaust fan 16 creates a negative pressure inside the collection cabinet 4, thereby drawing debris falling from the collection box 3 into the storage chamber 10 through the multi-head exhaust pipe 12 and the gas collection hood 13. The gas is filtered by the filter plate 9 and then discharged through the exhaust chamber and the exhaust port 15.

[0035] A vent 17 is provided on the inner side wall of the cabinet 1, located at the top of the cabinet 1. A second row of fans 18 with a motor is installed inside the vent 17. A single-ended suction pipe 19 is connected to the vent 17, with the other end of the single-ended suction pipe 19 connected to the storage chamber 10 of the collection cabinet 4. The motor drives the second row of fans 18 to extract suspended fine graphite dust from inside the cabinet 1 during processing. The dust then enters the storage chamber 10 through the single-ended suction pipe 19.

[0036] To clean the processing table 2. In this embodiment, see... Figure 2 and Figure 3 The cabinet 1 is equipped with a cleaning unit 5 for blowing air into its interior. The cleaning unit 5 includes an air pump 51 fixedly mounted on the side of the cabinet 1. At least one jet pipe 52 is connected to the air outlet of the air pump 51. A multi-head air blowing pipe 53 is connected to the end of each of the jet pipes 52. Each of the multi-head air blowing pipes 53 has a jet nozzle 54 penetrating the side of the cabinet 1, with the end of the jet nozzle 54 positioned above the processing table 2. Multiple vertical slots 55 are vertically formed on the side of the cabinet 1, each corresponding to a jet nozzle 54. The jet nozzle 54 is rotatably disposed within the slots 55. Multiple electric actuators 56, each corresponding to a jet nozzle 54, are vertically fixedly mounted on the side of the cabinet 1. The telescopic ends of the electric actuators 56 are hinged to the jet nozzles 54. A dust cover 57 is fixedly installed on the side of the cabinet 1 to cover the through slot 55, the air jet head 54, and the electric actuator 56, protecting the electric actuator 56 and preventing dust from being discharged through the through slot 55. A cover 58 is detachably installed on the outside of the dust cover 57 for easy cleaning.

[0037] The air pump 51 is controlled to operate, directing air through the jet pipe 52 into the multi-head air blowing pipe 53, and then through the jet head 54 to blow air onto the processing table 2 inside the cabinet 1. During this process, the electric actuator 56 is controlled to operate, causing the air blowing pipe to rotate within the through slot 55, thereby changing the jet direction of the jet head 54, flexibly adjusting the blowing angle, and accurately removing residual debris. This reduces the workload of manual dust removal, improves the automation level and ease of use of the equipment, and is particularly suitable for continuous production scenarios.

[0038] The method of using the debris collection device for surface processing of graphite products according to this utility model is as follows: First, during the processing of graphite products, the debris generated during the graphite processing is collected in the collection box 3, which is surrounded by the processing table 2, so as to achieve initial collection of debris. The top of the collection box 3 is provided with an opening structure with a fence 8, which allows debris to enter smoothly while preventing accidental contact by operators or the falling of large foreign objects, thus improving safety and practicality. At the same time, it realizes the rapid collection of debris, laying the foundation for subsequent efficient suction processing.

[0039] During this process, the control motor drives the first row of fans 16 to operate, creating a negative pressure inside the collection cabinet 4. This draws debris falling from the collection box 3 into the storage chamber 10 through the multi-head exhaust pipe 12 and the gas collection hood 13. The gas is then filtered through the filter plate 9 and discharged through the exhaust chamber and the exhaust port 15. Simultaneously, the control motor drives the second row of fans 18 to operate, thereby sucking up the suspended fine graphite dust inside the cabinet 1 during the processing. At this time, the dust enters the storage chamber 10 through the single-head exhaust pipe 19.

[0040] Simultaneously, the air pump 51 is activated, directing air through the jet pipe 52 into the multi-head air blowing pipe 53, and then through the jet head 54 to blow air onto the processing table 2 inside the cabinet 1. During this process, the electric actuator 56 is activated to change the jet direction of the jet head 54, flexibly adjusting the blowing angle to precisely remove residual debris, reducing the workload of manual dust removal, improving the automation level and ease of use of the equipment, and making it particularly suitable for continuous production scenarios.

[0041] Unless otherwise defined, the technical or scientific terms used herein shall have the ordinary meaning as understood by one of ordinary skill in the art to which this invention pertains. The use of terms such as "a" or "an" in this specification and claims does not necessarily indicate a limitation on quantity. Terms such as "comprising" or "including" mean that the element or object preceding the word encompasses the element or object listed following the word and its equivalents, without excluding other elements or objects. Terms such as "connected" or "linked" are not limited to physical or mechanical connections, but may include electrical connections, whether direct or indirect.

[0042] The exemplary embodiments of the present invention have been described in detail above with reference to preferred embodiments. However, those skilled in the art will understand that various modifications and alterations can be made to the above specific embodiments without departing from the concept of the present invention, and various combinations can be made to the various technical features and structures proposed by the present invention without exceeding the protection scope of the present invention.

Claims

1. A debris suction device for surface processing of a graphite product, characterized by: Includes a cabinet (1), inside which a processing table (2) is provided, and a collection box (3) for collecting debris is fixedly provided on the side of the cabinet (1) of the processing table (2), and a collection cabinet (4) connected to the collection box (3) is provided on the side of the cabinet (1), and the upper part of the cabinet (1) is connected to the collection cabinet (4), and a cleaning unit (5) for blowing air into the cabinet (1) is provided on the cabinet (1).

2. The graphite product surface processing debris extraction apparatus according to claim 1, characterized by: The cabinet (1) is provided with a cabinet door (6) that can swing outward on the front side, and the processing table (2) is a rectangular structure with a support column (7) fixedly installed at its bottom.

3. The graphite product surface processing debris extraction apparatus of claim 1, wherein: The collection box (3) is a rectangular ring-shaped box with an open top. The outer side of the collection box (3) is fixedly installed with the cabinet (1), and the inner side of the collection box (3) is fixedly installed with the outer side of the processing table (2) and the collection box (3) surrounds the processing table (2).

4. The graphite product surface processing debris extraction apparatus according to claim 3, characterized by: The top of the collection box (3) is provided with a detachable fence (8) that allows debris to pass through, and the top of the collection box (3) is lower than the top surface of the processing table (2).

5. The graphite product surface processing debris extraction apparatus of claim 4, wherein: A filter plate (9) is horizontally arranged in the middle of the inside of the collection cabinet (4). The filter plate (9) divides the inside of the collection cabinet (4) into a storage chamber (10) and an exhaust chamber (11) in the vertical direction. The storage cavity (10) is connected to a multi-head suction pipe (12) on its side. Each of the multi-head suction pipes (12) has a fixed gas collection hood (13) at its air inlet end. The multiple gas collection hoods (13) are respectively connected to the side of the corresponding collection box (3).

6. The graphite product surface processing debris extraction apparatus of claim 5, wherein: The storage chamber (10) has a hinged cover (14) on the side of the collection cabinet (4) that can swing outwards; An exhaust port (15) is provided on the collection cabinet (4) on the side of the exhaust cavity (11), and a first exhaust fan (16) with a motor is provided inside the exhaust port (15).

7. The graphite product surface processing debris extraction apparatus of claim 5, wherein: The cabinet (1) has an air vent (17) on its inner side wall. The air vent (17) is located at the top of the cabinet (1). A second row of fans (18) with a motor is installed inside the air vent (17). A single-ended suction pipe (19) is connected to the vent (17), and the other end of the single-ended suction pipe (19) is connected to the storage cavity (10) of the collection cabinet (4).

8. The graphite product surface processing debris extraction apparatus of claim 1, wherein: The cleaning unit (5) includes an air pump (51) fixedly installed on the side of the cabinet (1). The air outlet of the air pump (51) is connected to at least one jet pipe (52). The end of the jet pipe (52) is connected to a multi-head air blowing pipe (53). The air outlet of the multi-head air blowing pipe (53) is connected to a jet head (54) that penetrates the side of the cabinet (1). The end of the jet head (54) is located above the processing table (2). The side of the cabinet (1) is vertically provided with multiple through slots (55) adapted to the corresponding jet head (54). The jet head (54) is rotatably disposed inside the through slot (55). The side of the cabinet (1) is vertically fixed with multiple electric push rods (56) adapted to the corresponding jet head (54). The telescopic end of the electric push rod (56) is hinged to the jet head (54). The side of the cabinet body (1) is fixedly provided with a dust cover (57) capable of covering the through slot (55) and the air jet head (54), and the electric push rod (56), and the outer side of the dust cover (57) is detachably provided with a cover (58).