Graphite pipe whole-row cutting dust falling device

The dust suppression device for whole-row graphite tube cutting solves the problem of dust scattering during graphite tube cutting, achieving efficient dust removal and improved cutting efficiency.

CN223701305UActive Publication Date: 2025-12-23NANTONG HENGRUI GRAPHITE TECH CO LTD
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Patent Information

Application Number
CN202423302038.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-23
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

The cutting process of graphite tubes generates a large amount of dust, which affects the health of workers and results in low cutting efficiency.

Method used

A dust collection device for cutting a row of graphite tubes is designed. By combining a conveying platform, a dust conveying pipe and a cutting mechanism, the device can clamp and convey a row of graphite tubes and collect dust. The dust can then be removed using a dust collection device.

Benefits of technology

It effectively reduces dust dispersion, improves cutting efficiency, and promotes the production efficiency of graphite equipment.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223701305U_ABST
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Abstract

The utility model relates to a graphite pipe whole row cutting dust fall device which comprises a conveying table, a dust conveying pipe and a cutting mechanism, a moving assembly and a fixing assembly are installed on the conveying table, the moving assembly linearly moves relative to the fixing assembly, and after a plurality of graphite pipes in a whole row are clamped, the whole row of graphite pipes are conveyed to the graphite pipe output end of the conveying table as a whole; the cutting mechanism is mounted at the graphite pipe output end of the conveying table and is used for cutting the conveyed graphite pipe; the dust conveying pipe is installed at the output end of the cutting mechanism through a dust collecting cover and connected with dust collecting equipment to collect dust. According to the scheme, the effect of reducing flying of graphite dust can be achieved, the cutting efficiency of the graphite pipe can be improved, and production and manufacturing of graphite equipment are facilitated.
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Description

TECHNICAL FIELD

[0001] The utility model relates to graphite pipe cutting technical field especially relates to a graphite pipe whole row cutting dust falling device. BACKGROUND

[0002] Graphite pipe is by graphite material smash after mixing, add adhesive and carry out fusion one kind hollow pipe, mainly applies to corrosion liquid in the equipment of heat exchange. Graphite pipe is relatively long, the conventional cutting in one root is very time -consuming, and the efficiency is also low, and a large amount of chippings and dust will be produced in the cutting process, and the chippings fall down due to gravity, and the scattered dust is not beneficial to the respiration of workers. SUMMARY

[0003] The utility model discloses a graphite pipe whole row cutting dust falling device to solve the problems encountered in the above background.

[0004] To achieve the above object, the technical scheme of the utility model is as follows:

[0005] A graphite pipe whole row cutting dust falling device, including conveying table, dust pipe and cutting mechanism, the conveying table is installed with motion subassembly and fixed component, the motion subassembly linear motion relative to the fixed component, after clamping the whole row of multiple graphite pipes, the whole is conveyed to the graphite pipe output end of the conveying table, the cutting mechanism is installed at the graphite pipe output end of conveying table, and the graphite pipe is cut to the conveying.

[0006] In the above scheme, the graphite pipe output end of the conveying table is fixed with a support table, the top of the support table is provided with a conveying assembly, and the conveying assembly is in transmission connection with the cutting mechanism.

[0007] Among them, the conveying assembly includes a screw nut mechanism and a servo motor, the screw nut mechanism is installed on the top of the support table, the servo motor is in transmission connection with the screw rod in the screw nut mechanism, and the cutting mechanism is installed on the nut seat in the screw nut mechanism.

[0008] Among them, the cutting mechanism includes a first drive motor and a gear piece, the base of the first drive motor is installed on the nut seat in the screw nut mechanism, and the output end of the first drive motor is in transmission connection with the gear piece.

[0009] In the above scheme, the linear slide rail is installed between the motion subassembly and the fixed component, the linear slide rail is arranged in parallel with the conveying direction of the graphite pipe, and the motion subassembly is in transmission connection with the fixed component through the linear slide rail.

[0010] Specifically, in this embodiment, the motion assembly includes a first cylinder mounting plate, a first cylinder, and a first pull plate. The first cylinder is mounted on one side of the conveying platform via the first cylinder mounting plate, and its output end is connected to the first pull plate. The conveying direction of the first cylinder is perpendicular to the conveying direction of the graphite tube. A second drive motor is also mounted on the first cylinder mounting plate, and the second drive motor is connected to the fixing assembly via a transmission assembly and the guide of the linear slide rail. As a preferred embodiment, a first pressure strip is mounted on the top of the first cylinder mounting plate and the top of the first pull plate.

[0011] Specifically, in this embodiment, the fixing assembly includes a second cylinder mounting plate, a second cylinder, and a second pull plate. The second cylinder is mounted on the side of the conveying platform near the discharge end via the second cylinder mounting plate. The output end of the second cylinder is connected to the second pull plate for transmission. The conveying direction of the second cylinder is perpendicular to the conveying direction of the graphite tube. As a preferred embodiment, a second pressure strip is installed on the top of the second cylinder mounting plate and the top of the second pull plate.

[0012] In addition, to provide protection, protective plates are provided on both sides of the entire row of graphite tubes. These protective plates separate the entire row of graphite tubes.

[0013] Compared with the prior art, the beneficial effects of this utility model are as follows: In this solution, the conveying table clamps a row of multiple graphite tubes with the help of moving components and fixing components and then conveys them as a whole to the graphite tube output end of the conveying table. The cutting mechanism cuts the graphite tubes one by one, and the dust conveying pipe is connected to the dust collection device to collect the graphite dust generated during the cutting process. This method can reduce the dispersion of graphite dust and improve the cutting efficiency of graphite tubes, which is beneficial to the production and manufacturing of graphite equipment. Attached Figure Description

[0014] The disclosure of this utility model is illustrated with reference to the accompanying drawings. It should be understood that the drawings are for illustrative purposes only and are not intended to limit the scope of protection of this utility model. In the drawings, the same reference numerals are used to refer to the same parts. Wherein:

[0015] Figure 1 This is a front view structural diagram of the present utility model;

[0016] Figure 2 This is a top view of the structure of this utility model.

[0017] Numbering in the diagram: 1-Conveying platform; 11-Linear slide rail; 12-Protective plate; 13-Support platform; 2-Motion component; 21-First cylinder mounting plate; 22-First cylinder; 23-First pull plate; 24-First pressure bar; 3-Fixing component; 31-Second cylinder mounting plate; 32-Second cylinder; 33-Second pull plate; 34-Second pressure bar; 4-Dust conveying pipe; 41-Dust collection hood; 5-Cutting mechanism; 6-Conveying component; 61-Screw and nut mechanism. Detailed Implementation

[0018] To make the technical means, creative features, achieved objectives and effects of this utility model easier to understand, the utility model will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic diagrams, illustrating only the basic structure of this utility model, and therefore only show the relevant components of this utility model.

[0019] Based on the technical solution of this utility model, without changing the essential spirit of this utility model, those skilled in the art can propose various interchangeable structural methods and implementation methods. Therefore, the following detailed embodiments and accompanying drawings are merely illustrative descriptions of the technical solution of this utility model, and should not be regarded as the entirety of this utility model or as a limitation or restriction of the technical solution of this utility model.

[0020] The technical solution of this utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0021] like Figure 1 As shown, a graphite tube cutting and dust suppression device includes a conveying platform 1, a dust conveying pipe 4, and a cutting mechanism 5. The conveying platform 1 is equipped with a moving component 2 and a fixing component 3. The moving component 2 moves linearly relative to the fixing component 3, clamping multiple graphite tubes in a row and conveying them as a whole to the graphite tube output end of the conveying platform 1.

[0022] Specifically, a linear slide rail 11 is installed between the motion component 2 and the fixed component 3. Multiple linear slide rails 11 can be set. The linear slide rail 11 is set parallel to the conveying direction of the graphite tube. The motion component 2 is connected to the fixed component 3 through the linear slide rail 11.

[0023] Furthermore, the motion assembly 2 includes a first cylinder mounting plate 21, a first cylinder 22, and a first pull plate 23. The first cylinder 22 is mounted on one side of the conveying table 1 via the first cylinder mounting plate 21. The output end of the first cylinder 22 is connected to the first pull plate 23 for transmission. The conveying direction of the first cylinder 22 is perpendicular to the conveying direction of the graphite tubes. The first cylinder 22 drives the first pull plate 23 to move back and forth, thereby clamping the entire row of graphite tubes for easy collection and conveying. The conveying is achieved through the linear slide rail 11.

[0024] In linear conveying, a second drive motor is also installed on the first cylinder mounting plate 21. The second drive motor is connected to the fixed component 3 via a transmission assembly and the guide of the linear slide rail 11. The transmission assembly can be a gear and rack transmission assembly or a common screw and nut transmission assembly, which is installed on the internal support of the conveying table 1 and drives the motion assembly 2 to move linearly relative to the fixed component 3.

[0025] As a preferred embodiment, a first pressure strip 24 is installed on the top of the first cylinder mounting plate 21 and the top of the first pull plate 23. The first pressure strip 24 mainly uses its own weight to press down the entire row of graphite tubes, making it easier for the moving component 2 to clamp the entire row of graphite tubes.

[0026] Furthermore, the fixing component 3 includes a second cylinder mounting plate 31, a second cylinder 32, and a second pull plate 33. The second cylinder 32 is mounted on the side of the conveying table 1 near the discharge end via the second cylinder mounting plate 31. The output end of the second cylinder 32 is connected to the second pull plate 33 for transmission. The conveying direction of the second cylinder 32 is perpendicular to the conveying direction of the graphite tubes. The second cylinder 32 drives the second pull plate 33 to move back and forth, thereby clamping the entire row of graphite tubes, making it easier for them to be cut together by the cutting mechanism 5, thus improving the stability of cutting the graphite tubes.

[0027] As a preferred embodiment, a second pressure strip 34 is installed on the top of the second cylinder mounting plate 31 and the top of the second pull plate 33. Like the first pressure strip 24, the second pressure strip 34 also uses its own weight to press down the entire row of graphite tubes, so that the cutting mechanism 5 can cut the graphite tubes stably and avoid large-scale vibration.

[0028] In order to better convey the cutting mechanism 5 in a straight line, a support platform 13 is fixed to the output end of the graphite tube of the conveying table 1. A conveying component 6 is installed on the top of the support platform 13. The conveying component 6 is connected to the cutting mechanism 5 in a transmission. Under the drive of the conveying component 6, the cutting mechanism 5 is driven to move in a straight line, so as to cut the graphite tubes in sequence on a line, thereby completing the cutting of the entire row of graphite tubes.

[0029] The conveying assembly 6 includes a lead screw and nut mechanism 61 and a servo motor. The lead screw and nut mechanism 61 is mounted on the top of the support platform 13. The servo motor is connected to the lead screw in the lead screw and nut mechanism 61. The cutting mechanism 5 is mounted on the nut seat in the lead screw and nut mechanism 61. During the rotation of the lead screw driven by the servo motor, the nut seat moves linearly along the lead screw, and the cutting mechanism 5 moves linearly along with it, thereby cutting the entire row of graphite tubes one by one.

[0030] The cutting mechanism 5 is installed at the graphite tube output end of the conveying table 1 to cut the incoming graphite tubes. The cutting mechanism 5 includes a first drive motor and a gear. The base of the first drive motor is mounted on the nut seat in the lead screw and nut mechanism 61, and the output end of the first drive motor is connected to the gear. The first drive motor drives the gear to rotate at high speed, thereby cutting the graphite tubes one by one by means of the linear motion of the conveying component 6.

[0031] In the above scheme, the dust conveying pipe 4 is installed at the output end of the cutting mechanism 5 through the dust collection hood 41, and is connected to a dust collection device to collect dust. The dust conveying pipe 4 is subjected to negative pressure adsorption by the connected dust collection device, just like a vacuum cleaner. When working, it draws air from the output end of the cutting mechanism 5. When cutting the graphite tube, the graphite dust generated will be collected by the dust conveying pipe 4, while the dust collection hood 41 prevents the graphite dust from scattering and also facilitates the dust collection operation of the dust conveying pipe 4.

[0032] In addition, to provide protection, protective plates 12 are installed on both sides of the feed end of the conveyor table 1. The protective plates 12 separate the entire row of graphite tubes and limit the movement of multiple graphite tubes transported from other conveying equipment. The protective plates 12 on both sides can be designed with an oblique opening to facilitate guidance, thereby concentrating the graphite tubes in the middle of the conveyor table 1 and arranging them neatly.

[0033] In summary, in this solution, the conveying platform 1 clamps multiple graphite tubes in a row and transports them as a whole to the graphite tube output end of the conveying platform 1 with the help of the moving component 2 and the fixing component 3. The cutting mechanism 5 cuts the graphite tubes one by one, and the dust conveying pipe 4 is connected to the dust collection device to collect the graphite dust generated during the cutting process. This method can reduce the dispersion of graphite dust and improve the cutting efficiency of graphite tubes, which is beneficial to the production and manufacturing of graphite equipment.

[0034] It should be noted that, in this document, relational terms such as "first" and "second" are used merely to distinguish one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between these entities or operations. Furthermore, the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such a process, method, article, or apparatus. These undisclosed elements are all prior art known to those skilled in the art.

[0035] The specific embodiments described above further illustrate the purpose, technical solution, and beneficial effects of this utility model. It should be understood that the above description is only a specific embodiment of this utility model and is not intended to limit the scope of protection of this utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the scope of protection of this utility model.

Claims

1. A graphite tube whole row cutting dust falling device, characterized in that: The graphite pipe conveying device comprises a conveying table (1), a dust conveying pipe (4) and a cutting mechanism (5), the conveying table (1) is provided with a moving assembly (2) and a fixed assembly (3), the moving assembly (2) moves linearly relative to the fixed assembly (3), and a plurality of graphite pipes in an array are clamped and then conveyed to the graphite pipe output end of the conveying table (1) as a whole; the cutting mechanism (5) is installed at the graphite pipe output end of the conveying table (1) and cuts the conveyed graphite pipes; and the dust conveying pipe (4) is installed at the output end of the cutting mechanism (5) through a dust collecting cover (41) and is connected with a dust collecting device to collect dust.

2. The graphite tube whole row cutting dust falling device according to claim 1, characterized in that: A support table (13) is fixed to the graphite pipe output end of the conveying table (1), a conveying assembly (6) is installed at the top of the support table (13), and the conveying assembly (6) is in transmission connection with the cutting mechanism (5).

3. The graphite tube whole row cutting dust falling device according to claim 2, characterized in that: The conveying assembly (6) comprises a screw nut mechanism (61) and a servo motor, the screw nut mechanism (61) is installed at the top of the support table (13), the servo motor is in transmission connection with a screw rod in the screw nut mechanism (61), and the cutting mechanism (5) is installed on a nut seat in the screw nut mechanism (61).

4. The graphite tube whole row cutting dust falling device according to claim 3, characterized in that: The cutting mechanism (5) comprises a first driving motor and a gear piece, a base of the first driving motor is installed on the nut seat in the screw nut mechanism (61), and an output end of the first driving motor is in transmission connection with the gear piece.

5. The graphite tube whole row cutting dust falling device according to claim 1, characterized in that: A linear slide rail (11) is installed between the moving assembly (2) and the fixed assembly (3), the linear slide rail (11) is arranged in parallel with the conveying direction of the graphite pipes, and the moving assembly (2) is in transmission connection with the fixed assembly (3) through the linear slide rail (11).

6. The graphite tube whole row cutting dust falling device according to claim 5, characterized in that: The moving assembly (2) comprises a first cylinder mounting plate (21), a first cylinder (22) and a first pull plate (23), the first cylinder (22) is installed on one side of the conveying table (1) through the first cylinder mounting plate (21), an output end of the first cylinder (22) is in transmission connection with the first pull plate (23), the conveying direction of the first cylinder (22) is arranged perpendicularly to the conveying direction of the graphite pipes, and a second driving motor is further installed on the first cylinder mounting plate (21), the second driving motor is in transmission connection with the fixed assembly (3) through a transmission assembly and the guidance of the linear slide rail (11).

7. The graphite tube whole row cutting dust falling device according to claim 6, characterized in that: First pressing strips (24) are installed at the top of the first cylinder mounting plate (21) and the top of the first pull plate (23).

8. The graphite tube whole row cutting dust falling device according to claim 5, characterized in that: The fixed assembly (3) comprises a second cylinder mounting plate (31), a second cylinder (32) and a second pull plate (33), the second cylinder (32) is installed on one side of the conveying table (1) close to the discharge end through the second cylinder mounting plate (31), an output end of the second cylinder (32) is in transmission connection with the second pull plate (33), and the conveying direction of the second cylinder (32) is arranged perpendicularly to the conveying direction of the graphite pipes.

9. The graphite tube whole row cutting dust falling device according to claim 8, characterized in that: Second pressing strips (34) are installed at the top of the second cylinder mounting plate (31) and the top of the second pull plate (33).

10. The graphite tube whole-bank cutting dust reduction device according to claim 1, characterized in that: Protective plates (12) are arranged on both sides of the conveying table (1), and the protective plates (12) block the graphite pipes in an array.