A cleaning tool for a carbonization furnace for carbon fiber production

CN122605751APending Publication Date: 2026-08-21SINOSTEEL JIANGCHENG CARBON FIBER CO LTD +1
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Patent Information

Application Number
CN202510195495.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-08-21

AI Technical Summary

Technical Problem

[0003]现有技术中专利公告号为CN216606234U的一种用于碳纤维生产设备碳纤维生产用碳化炉的新型清理工具,上述专利包括手柄,手柄的右端内部活动套入有套杆,套杆的右面固定连接有盛油斗,盛油斗的内部镂空且盛油斗的顶端呈开口状,盛油斗的右内壁顶端设置有第一刮刀,盛油斗的前后内壁顶端分别设置有第二刮刀,盛油斗的右端底部开设有排油孔,盛油斗底部的排油孔处设置有排油底盖,排油底盖的左端铰接在盛油斗的底面上,排油底盖的前后两端分别通过螺栓与盛油斗连接,结构简单,使用方便,可以迅速清理碳纤维生产用碳化炉内的沉积焦油,并避免将焦油滴漏至炉膛底部,但在实际使用中仍存在以下不足:从实际出发,该装置在使用时,无法对碳纤维生产用碳化炉内部的不同深度进行清理,降低了工作效率,无法满足工作人员的需求,缺乏实用性

Benefits of technology

[0054] 1. The cleaning tool for the carbonization furnace for carbon fiber production of the present invention, by setting an adjustment mechanism, drives the cleaning component to move along the axial direction of the carbonization furnace for carbon fiber production, thereby cleaning different depths inside the carbonization furnace for carbon fiber production, meeting the needs of the staff and improving the efficiency of cleaning inside the carbonization furnace for carbon fiber production.

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Abstract

The application discloses a cleaning tool for carbonization furnace for carbon fiber production and belongs to the technical field of cleaning tools. The cleaning tool for carbonization furnace for carbon fiber production comprises a first mounting base with a certain extension length, an adjusting mechanism arranged on the first mounting base, and a cleaning piece used for cleaning the inner wall of the carbonization furnace for carbon fiber production. The cleaning piece is movably arranged on the first mounting base through the adjusting mechanism and moves along the length direction of the first mounting base under the driving of the adjusting mechanism. The cleaning tool for carbonization furnace for carbon fiber production can drive the cleaning piece to move along the axial direction of the carbonization furnace for carbon fiber production through the adjusting mechanism, so that the cleaning tool can clean different depths inside the carbonization furnace for carbon fiber production, the demand of workers is met, and the cleaning efficiency of the carbonization furnace for carbon fiber production is improved.
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Description

Technical Field

[0001] This invention belongs to the field of cleaning tool technology, specifically, it relates to a cleaning tool for a carbonization furnace used in carbon fiber production. Background Technology

[0002] In existing technology, carbonization furnaces for carbon fiber production are devices used to carbonize combustible waste. Their working principle involves adding a small amount of magnetized air into the furnace, causing the combustible solid waste to thermally decompose. The heat generated is used for the continuous carbonization of the solid waste. This process reduces the energy required for the entire process, improves efficiency, and eliminates the need for fossil fuels, making it an environmentally friendly and energy-saving device.

[0003] The prior art patent publication number CN216606234U describes a novel cleaning tool for a carbonization furnace used in carbon fiber production equipment. This patent includes a handle, with a sleeve rod movably fitted inside the right end of the handle. An oil hopper is fixedly connected to the right side of the sleeve rod. The oil hopper is hollow inside, with an open top. A first scraper is provided at the top of the right inner wall of the oil hopper, and second scrapers are provided at the top of the front and rear inner walls of the oil hopper. An oil drain hole is provided at the bottom of the right end of the oil hopper. The device is equipped with an oil drain cover, the left end of which is hinged to the bottom of the oil hopper. The front and rear ends of the drain cover are connected to the oil hopper via bolts. While simple in structure and easy to use, it can quickly clean deposited tar inside the carbonization furnace used in carbon fiber production and prevent tar from dripping to the bottom of the furnace. However, in practical use, it has the following shortcomings: It cannot clean different depths inside the carbonization furnace, reducing work efficiency and failing to meet the needs of operators, thus lacking practicality. Therefore, a cleaning tool for carbonization furnaces used in carbon fiber production is needed to solve the problem of the existing technology's inability to clean different depths inside the furnace.

[0004] In view of this, the present invention is proposed. Summary of the Invention

[0005] The technical problem to be solved by the present invention is to overcome the shortcomings of the prior art. The purpose is to provide a cleaning tool for carbonization furnaces used in carbon fiber production. Through the adjustment mechanism, the cleaning parts are moved along the axial direction of the carbonization furnace, thereby cleaning different depths inside the carbonization furnace, meeting the needs of the staff and improving the efficiency of cleaning inside the carbonization furnace.

[0006] To solve the above-mentioned technical problems, the basic concept of the technical solution adopted by the present invention is as follows:

[0007] A cleaning tool for a carbonization furnace used in carbon fiber production, comprising:

[0008] The first mounting base has a certain extension length;

[0009] An adjustment mechanism is provided on the first mounting base;

[0010] Cleaning components are used to clean the inner walls of carbonization furnaces used in carbon fiber production.

[0011] The cleaning component is movably mounted on the first mounting base via the adjustment mechanism, and moves along the length of the first mounting base under the drive of the adjustment mechanism.

[0012] Furthermore, it also includes

[0013] Support module for installing the cleaning component;

[0014] The adjustment mechanism includes

[0015] The first adjustment module is mounted on the first mounting base;

[0016] The support module is movably mounted on the first mounting base via the first adjustment module and is connected to the first adjustment module via a transmission connection. Under the drive of the first adjustment module, it reciprocates along the length direction of the first mounting base.

[0017] Furthermore, the first adjustment module includes

[0018] A transmission component extends along the length of the first mounting base and converts rotation into linear motion. The support module moves along the length of the first mounting base under the drive of the transmission component, thereby driving the cleaning component to move.

[0019] Preferably, the first adjustment module further includes

[0020] The first drive unit is mounted on the first mounting base and is connected to the transmission assembly to drive the cleaning component to move.

[0021] Furthermore, the transmission assembly includes

[0022] It is connected to the first drive unit via a transmission.

[0023] The second transmission unit is connected to the first transmission unit at one end, and the support module is connected to the second transmission unit.

[0024] The first drive unit achieves reversing transmission with the second transmission unit through the first transmission unit, so as to flexibly install the first drive unit;

[0025] Preferably, the first mounting base has independent mounting slots and mounting cavities;

[0026] The first transmission unit is located in the mounting groove, and the support module is located in the mounting cavity;

[0027] The support module is located within the mounting cavity and reciprocates along the length of the mounting cavity.

[0028] Furthermore, the first transmission unit is a bevel gear set;

[0029] The second transmission unit includes

[0030] The first transmission component is connected to one of the bevel gears in the bevel gear set;

[0031] The first transmission component is threadedly connected to the support module to drive the cleaning component to reciprocate.

[0032] Preferably, the second transmission unit further includes

[0033] The first guide member is fixed on the first mounting base and slidably connected to the support module to restrict the rotation of the support module.

[0034] Furthermore, the support module includes

[0035] The second mounting base is used to install the second adjustment module and has a certain extension length;

[0036] A linkage is located at the bottom of the second mounting base;

[0037] The linkage is fitted onto the first adjustment module and is movably connected to the first adjustment module.

[0038] Furthermore, the adjustment mechanism also includes

[0039] The second adjustment module is disposed on the support module;

[0040] The cleaning component is movably mounted on the support module via the second adjustment module and is connected to the second adjustment module in a transmission manner. Under the drive of the second adjustment module, it moves along the width direction of the first mounting base.

[0041] Furthermore, the second adjustment module includes

[0042] The telescopic unit is at least partially movably disposed on the second mounting base and has a telescopic structure that extends or shortens along the width direction of the second mounting base;

[0043] The cleaning component moves along the width direction of the second mounting base under the action of the telescopic unit;

[0044] Preferably, the telescopic unit includes

[0045] The second drive unit is disposed on the support module;

[0046] The second transmission component is rotatably mounted on the support module and is connected to the second drive unit in a transmission manner.

[0047] The cleaning component is telescopically connected to two sliding components via connectors;

[0048] The sliding member is provided in two parts, and at least one of the sliding members is threadedly connected to the second transmission member.

[0049] Furthermore, there are two cleaning components, located on both sides of the width direction of the second mounting base, and both are connected to the telescopic unit in a transmission manner;

[0050] The two cleaning components move closer to or further away from each other as driven by the telescopic unit.

[0051] Furthermore, the first mounting base is provided with a hand-held portion along its length extension direction;

[0052] Preferably, the peripheral surface of the handheld part is provided with an anti-slip structure.

[0053] By adopting the above technical solution, the present invention has the following beneficial effects compared with the prior art.

[0054] 1. The cleaning tool for the carbonization furnace for carbon fiber production of the present invention, by setting an adjustment mechanism, drives the cleaning component to move along the axial direction of the carbonization furnace for carbon fiber production, thereby cleaning different depths inside the carbonization furnace for carbon fiber production, meeting the needs of the staff and improving the efficiency of cleaning inside the carbonization furnace for carbon fiber production.

[0055] 2. The cleaning tool for carbonization furnaces used in carbon fiber production of the present invention, by setting a telescopic unit, can drive the cleaning parts to extend and retract, thereby cleaning the inside of carbonization furnaces used in carbon fiber production of different diameters, with a wide range of applications and greatly improving the practicality of the equipment.

[0056] 3. The cleaning tool for the carbonization furnace used in carbon fiber production of the present invention, by setting two cleaning components, can clean the furnace walls on both sides at the same time, thereby improving cleaning efficiency.

[0057] At the same time, the present invention has a simple structure, a concise method, and significant effects, making it suitable for widespread use.

[0058] The specific embodiments of the present invention will now be described in further detail with reference to the accompanying drawings. Attached Figure Description

[0059] The accompanying drawings, as part of this invention, are used to provide a further understanding of the invention. The illustrative embodiments and descriptions of the invention are used to explain the invention, but do not constitute an undue limitation of the invention. Obviously, the drawings described below are merely some embodiments, and those skilled in the art can obtain other drawings based on these drawings without creative effort. In the drawings:

[0060] Figure 1 This is a schematic diagram of the cleaning tool for the carbonization furnace used in carbon fiber production according to the present invention;

[0061] Figure 2 This is a schematic diagram of the adjustment mechanism of the present invention;

[0062] Figure 3 This is a schematic diagram of the telescopic unit of the present invention;

[0063] Figure 4 yes Figure 1 Enlarged view of point A in the middle;

[0064] In the diagram: 1. First mounting base; 11. Handheld part; 12. Anti-slip structure; 13. Mounting groove; 14. Mounting cavity; 2. Cleaning component; 3. Adjustment mechanism; 31. First adjustment module; 311. First drive unit; 312. Transmission assembly; 3121. First transmission unit; 3122. Second transmission unit; 31221. First transmission component; 31222. First guide component; 32. Second adjustment module; 321. Telescopic unit; 3211. Second drive unit; 3212. Second transmission component; 3213. Sliding component; 3214. Second guide component; 4. Connecting component; 5. Mounting plate; 6. Support module; 61. Second mounting base; 62. Linkage component.

[0065] It should be noted that these accompanying drawings and textual descriptions are not intended to limit the scope of the invention in any way, but rather to illustrate the concept of the invention to those skilled in the art by referring to specific embodiments. Detailed Implementation

[0066] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. The following embodiments are used to illustrate the present invention, but are not intended to limit the scope of the present invention.

[0067] In the description of this invention, it should be noted that the terms "upper", "lower", "front", "rear", "left", "right", "vertical", "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 invention 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 limiting this invention.

[0068] In the description of this invention, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium. Those skilled in the art can understand the specific meaning of the above terms in this invention based on the specific circumstances.

[0069] like Figures 1 to 4 As shown, the cleaning tool for the carbonization furnace used in carbon fiber production of the present invention includes a first mounting base 1, a cleaning component 2, and an adjustment mechanism 3. The first mounting base 1 has a certain extension length and width. The cleaning component 2 is used to clean the inner wall of the carbonization furnace used in carbon fiber production. The adjustment mechanism 3 is disposed on the first mounting base 1, and the cleaning component 2 is movably mounted on the first mounting base 1 through the adjustment mechanism 3, and moves along the length direction of the first mounting base 1 under the drive of the adjustment mechanism 3.

[0070] The cleaning component 2 can be moved along the length of the first mounting base 1 by the adjustment mechanism 3. That is, when the device extends into the carbonization furnace for carbon fiber production along the axial direction, the cleaning component 2 can move along the axial direction of the carbonization furnace for carbon fiber production, thereby cleaning different depths inside the carbonization furnace for carbon fiber production, meeting the needs of the staff and improving the efficiency of cleaning inside the carbonization furnace for carbon fiber production.

[0071] Specifically, in this embodiment, during the cleaning process, the adjusting mechanism 3 adjusts the cleaning component 2 to different positions along the axial direction of the carbonization furnace used for carbon fiber production, so as to cover different depths and achieve a wider cleaning area. The adjusting mechanism 3 can be a telescopic drive component or a linear drive mechanism. The telescopic drive component can be an electric cylinder, a pneumatic cylinder, an electric push rod, etc.

[0072] In this embodiment, the first mounting base 1 is elongated to facilitate insertion into the carbonization furnace used for carbon fiber production. The first mounting base 1 has a mounting cavity 14, and the adjustment mechanism 3 is at least partially disposed within the mounting cavity 14. By utilizing the mounting cavity 14, the adjustment mechanism 3 is at least partially disposed inside the first mounting base 1, reducing the overall size of the device and improving convenience.

[0073] In this embodiment, the adjustment mechanism 3 can be partially or entirely located within the mounting cavity 14.

[0074] In this embodiment, the cleaning component 2 is used to clean the furnace wall (inner wall) of the carbonization furnace for carbon fiber production. The cleaning component 2 can be set as a plate structure or a scraper structure. By contacting the inner wall, the deposited tar on the inner wall of the carbonization furnace for carbon fiber production can be quickly cleaned.

[0075] Furthermore, the cleaning tool for the carbonization furnace used in carbon fiber production of the present invention also includes a support module 6, which is used to install the cleaning component 2. The adjustment mechanism 3 includes a first adjustment module 31, which is disposed on the first mounting base 1. The support module 6 is movably mounted on the first mounting base 1 through the first adjustment module 31 and is connected to the first adjustment module 31 in a transmission manner. Under the drive of the first adjustment module 31, it reciprocates along the length direction of the first mounting base 1.

[0076] By setting the first adjustment module 31, the support module 6 is moved, thereby adjusting the cleaning component 2 and changing the distance between the cleaning component 2 and the bottom of the carbonization furnace for carbon fiber production, so as to meet the need to clean different depths inside the carbonization furnace for carbon fiber production.

[0077] In this embodiment, the first adjustment module 31 includes a first drive unit 311, which is mounted on the first mounting base 1 and is connected to the support module 6 via a transmission connection. The first drive unit 311 is used to drive the support module 6 to move along the length direction of the first mounting base 1. By moving the support module 6 through the first drive unit 311, the cleaning component 2 can reach positions at different depths. The first drive unit 311 can be a linear motor or other drive component capable of forming a linear trajectory.

[0078] In this embodiment, the first adjustment module 31 may further include a transmission component 312. The transmission component 312 is disposed on the first mounting base 1 and extends along the length direction of the first mounting base 1. The first drive unit 311 is driveably connected to the transmission component 312, and the transmission component 312 is driveably connected to the support module 6. By setting the transmission component 312, the first drive unit 311 indirectly drives the cleaning component 2 to move, which allows the cleaning component 2 to move more stably and evenly, achieving a better cleaning effect. In this embodiment, the transmission component 312 may be a reduction mechanism. Of course, only the transmission component 312 may be set, and the cleaning component 2 may be adjusted manually.

[0079] In this embodiment, the transmission assembly 312 includes a first transmission unit 3121 and a second transmission unit 3122, both of which are mounted on a first mounting base 1. The first transmission unit 3121 is driveably connected to the first drive unit 311; the second transmission unit 3122 is driveably connected to the first transmission unit 3121 and the support module 6, respectively. The transmission direction of the first transmission unit 3121 is perpendicular to the transmission direction of the second transmission unit 3122, that is, the transmission direction of the first transmission unit 3121 is along the width direction of the first mounting base 1, and the transmission direction of the second transmission unit 3122 is along the length direction of the first mounting base 1. The first drive unit 311 achieves reversible transmission through the first transmission unit 3121 and the second transmission unit 3122 to flexibly mount the first drive unit 311.

[0080] By setting up a first transmission unit 3121 and a second transmission unit 3122, reverse transmission can be achieved, that is, the output shaft direction of the first drive unit 311 may not be consistent with the transmission direction of the second transmission unit 3122, thereby improving the selectivity and flexibility of installation.

[0081] In this embodiment, the first mounting base 1 is provided with a mounting groove 13, and the first transmission unit 3121 is disposed in the mounting groove 13. The mounting groove 13 and the mounting cavity 14 are separated to separate the first transmission unit 3121 and the second transmission unit 3122, and at the same time, it can also play a limiting role.

[0082] In this embodiment, the second transmission unit 3122 includes a first transmission member 31221 and a first guide member 31222. The first transmission member 31221 converts rotation into linear motion to drive the cleaning member 2 to reciprocate. The first guide member 31222 is fixed on the first mounting base 1 and is slidably connected to the support module 6. The first guide member 31222 is used to restrict the rotation of the support module 6.

[0083] In this embodiment, the first drive unit 311 is activated, and the first transmission unit 3121 reverses the transmission direction of the output shaft of the first drive unit 311 to the first transmission member 31221. Through the first transmission member 31221 and the first guide member 31222, the support module 6 is driven to move along the axial direction of the first transmission member 31221 to achieve position adjustment.

[0084] In this embodiment, the first drive unit 311 is a motor, the first transmission unit 3121 consists of two bevel gears, the first transmission component 31221 is a screw, and the first guide component 31222 is a guide rod. Further explanation of the transmission is as follows:

[0085] The motor is mounted on the first mounting base 1. One bevel gear is fixedly connected to the output shaft of the motor, and the screw is rotatably mounted on the first mounting base 1. The other bevel gear is fixedly connected to the end of the screw near the motor, and the two bevel gears mesh. The support module 6 is threadedly connected to the screw, and the guide rod is fixed on the first mounting base 1 and parallel to the screw. The support module 6 slides along the guide rod. The motor drives the screw to rotate through the two bevel gears, thereby enabling the horizontal movement of the support module 6.

[0086] In this embodiment, the reciprocating movement of the cleaning component 2 can be achieved by controlling the forward and reverse rotation of the motor.

[0087] In this embodiment, the adjustment mechanism 3 further includes a second adjustment module 32, which is disposed within the support module 6. The cleaning component 2 is movably mounted on the support module 6 via the second adjustment module 32 and moves along the width direction of the first mounting base 1 under the action of the second adjustment module 32. By providing the second adjustment module 32, the cleaning component 2 can be adjusted along the width direction of the first mounting base 1, thereby enabling the cleaning of the interior of carbonization furnaces used for producing carbon fibers of different diameters, thus broadening the application range and greatly improving the practicality of the equipment.

[0088] The support module 6 includes a second mounting base 61, which is used to mount the second adjustment module 32. The second mounting base 61 has a certain length and width. Specifically, the second mounting base 61 is also elongated to ensure that the overall structure is compact so as to be easily placed into the carbonization furnace used for carbon fiber production.

[0089] In this embodiment, the support module 6 further includes a linkage 62, located at the bottom of the second mounting base 61, and connected to the first adjustment module 31 via a transmission connection. By setting the linkage 62, adjustments in two different directions are integrated into one device, greatly improving practicality.

[0090] In this embodiment, the linkage 62 is threadedly connected to the first transmission member 31221 and slidably connected to the first guide member 31222.

[0091] The second adjustment module 32 includes a telescopic unit 321, which is at least partially movably mounted on the second mounting base 61 and has a telescopic structure that can extend or shorten along the width direction of the second mounting base 61. The cleaning component 2 moves along the width direction of the second mounting base 61 under the action of the telescopic unit 321 to adjust the distance between the cleaning component 2 and the side wall of the carbonization furnace for carbon fiber production.

[0092] The second mounting base 61 also has a mounting cavity 14, and the telescopic unit 321 is at least partially disposed within the mounting cavity 14. By providing the mounting cavity 14, at least partially disposing of the telescopic unit 321 inside the second mounting base 61, the overall size of the device is reduced. In this embodiment, the telescopic unit 321 can be a telescopic drive member or a linear drive member.

[0093] In this embodiment, two cleaning components 2 are provided, located on opposite sides of the first mounting base 1. Each cleaning component 2 is connected to a telescopic unit 321, which simultaneously moves the two cleaning components 2 closer to or further apart. By providing two cleaning components 2, both inner walls of the carbonization furnace used for carbon fiber production can be cleaned simultaneously, improving cleaning efficiency.

[0094] In this embodiment, the telescopic unit 321 includes a second drive unit 3211, a second transmission member 3212, a sliding member 3213, and a second guide member 3214. The second drive unit 3211 is disposed on the second mounting base 61. The second transmission member 3212 is rotatably disposed on the second mounting base 61, and the second transmission member 3212 is connected to the second drive unit 3211 in a transmission manner.

[0095] In this embodiment, two sliding members 3213 are provided. The cleaning member 2 is connected to the two sliding members 3213 respectively through the connecting member 4. One end of the connecting member 4 is rotatably connected to the cleaning member 2, and the other end is rotatably connected to the sliding member 3213. For ease of installation, the sliding member 3213 is provided with a mounting plate 5, that is, the end of the connecting member 4 is rotatably connected to the mounting plate 5.

[0096] In this embodiment, at least one sliding member 3213 is threadedly connected to the second transmission member 3212. The second guide member 3214 is fixedly connected to the second mounting base 61 and slidably connected to both sliding members 3213. The second guide member 3214 is used to restrict the rotation of the sliding members 3213. The second drive unit 3211 drives the second transmission member 3212, which in turn drives the two sliding members 3213 to move closer to or further away from each other. Under the action of the connecting member 4, the cleaning member 2 moves in the direction away from or closer to the sliding member 3213, thereby achieving distance adjustment.

[0097] In this embodiment, the second drive unit 3211 is a motor, the second transmission component 3212 is a screw, and the second guide component 3214 is a guide rod. Further explanation of the transmission is as follows:

[0098] The motor is mounted on the second mounting base 61. One of the bevel gears is fixedly connected to the output shaft of the motor. The screw is rotatably mounted on the first mounting base 1, and its end is fixedly connected to the output shaft of the motor. At least one sliding member 3213 is threadedly connected to the screw. A guide rod is fixed on the first mounting base 1 and parallel to the screw. The sliding member 3213 slides through the guide rod. The motor drives the screw to rotate, thereby causing the two sliding members 3213 to move closer or further apart.

[0099] When both sliding members 3213 are threadedly connected to the screw, the screw is a bidirectional screw. When one sliding member 3213 is fixed to the screw and the other sliding member 3213 is threadedly connected to the screw, the screw is a unidirectional screw. Preferably, the threaded sliding member 3213 is located between the motor and the fixed sliding member 3213, which allows for a larger range of motion.

[0100] In this embodiment, a handheld part 11 is provided on one side of the first mounting base 1, making it convenient for workers to hold the device. Of course, it can also be a fixed structure, in which the device is fixed to the carbonization furnace used for carbon fiber production.

[0101] In this embodiment, the peripheral surface of the handheld part 11 is provided with an anti-slip structure 12. The anti-slip structure 12 can be an anti-slip protrusion, anti-slip particles, anti-slip coating or anti-slip material, etc., to improve the firmness and stability when holding the hand.

[0102] The working principle of the cleaning tool for carbonization furnaces used in carbon fiber production of the present invention is as follows: By setting a first adjustment module 31, the cleaning component 2 is driven to move along the axial direction of the carbonization furnace, thereby cleaning different depths inside the carbonization furnace and improving the efficiency of cleaning the interior of the carbonization furnace. By setting a second adjustment module 32, the interior of carbonization furnaces for carbon fiber production with different diameters can be cleaned, resulting in a wide range of applications and greatly improving the practicality of the equipment.

[0103] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention in any way. Although the present invention has been disclosed above with reference to preferred embodiments, it is not intended to limit the present invention. Any person skilled in the art can make some modifications or alterations to the above-described technical content to create equivalent embodiments without departing from the scope of the present invention. The implementation schemes in the above embodiments can also be further combined or replaced. Any simple modifications, equivalent changes and alterations made to the above embodiments based on the technical essence of the present invention without departing from the scope of the present invention shall still fall within the scope of the present invention.

Claims

1. A cleaning tool for a carbonization furnace used in carbon fiber production, characterized in that: include The first mounting base (1) has a certain extension length; Adjustment mechanism (3) is provided on the first mounting base (1); Cleaning component (2) is used to clean the inner wall of the carbonization furnace used for carbon fiber production; The cleaning component (2) is movably mounted on the first mounting base (1) via the adjustment mechanism (3) and moves along the length direction of the first mounting base (1) under the drive of the adjustment mechanism (3).

2. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 1, characterized in that: Also includes Support module (6) for installing the cleaning component (2); The adjustment mechanism (3) includes The first adjustment module (31) is disposed on the first mounting base (1); The support module (6) is movably mounted on the first mounting base (1) via the first adjustment module (31) and is connected to the first adjustment module (31) in a transmission manner. Under the drive of the first adjustment module (31), it reciprocates along the length direction of the first mounting base (1).

3. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 2, characterized in that: The first adjustment module (31) includes The transmission assembly (312) extends along the length direction of the first mounting base (1) and converts rotation into linear motion. The support module (6) moves along the length direction of the first mounting base (1) under the drive of the transmission assembly (312), thereby driving the cleaning component (2) to move. Preferably, the first adjustment module (31) further includes The first drive unit (311) is disposed on the first mounting base (1) and is connected to the transmission assembly (312) to drive the cleaning component (2) to move.

4. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 3, characterized in that: The transmission assembly (312) includes It is connected to the first drive unit (311) in a transmission manner; The second transmission unit (3122) is connected to the first transmission unit (3121) at one end, and the support module (6) is connected to the second transmission unit (3122) in a transmission manner. The first drive unit (311) achieves reversing transmission with the second transmission unit (3122) through the first transmission unit (3121) so as to flexibly install the first drive unit (311); Preferably, the first mounting base (1) is provided with an independent mounting groove (13) and a mounting cavity (14); The first transmission unit (3121) is located in the mounting groove (13), and the support module (6) is located in the mounting cavity (14); The support module (6) moves back and forth within the mounting cavity (14) and along the length of the mounting cavity (14).

5. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 4, characterized in that: The first transmission unit (3121) is a bevel gear set; The second transmission unit (3122) includes The first transmission component (31221) is connected to one of the bevel gears in the bevel gear set; The first transmission component (31221) is threadedly connected to the support module (6) to drive the cleaning component (2) to reciprocate; Preferably, the second transmission unit (3122) further includes The first guide member (31222) is fixed on the first mounting base (1) and slidably connected to the support module (6) to restrict the rotation of the support module (6).

6. The cleaning tool for the carbonization furnace used in carbon fiber production according to any one of claims 2-5, characterized in that: The support module (6) includes The second mounting base (61) is used to mount the second adjustment module (32) and has a certain extension length; A linkage (62) is provided at the bottom of the second mounting base (61); The linkage (62) is sleeved on the first adjustment module (31) and is movably connected to the first adjustment module (31).

7. The cleaning tool for the carbonization furnace used in carbon fiber production according to any one of claims 2-6, characterized in that: The adjustment mechanism (3) also includes The second adjustment module (32) is disposed on the support module (6); The cleaning component (2) is movably mounted on the support module (6) via the second adjustment module (32) and is connected to the second adjustment module (32) in a transmission manner. Under the drive of the second adjustment module (32), it moves along the width direction of the first mounting base (1).

8. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 7, characterized in that: The second adjustment module (32) includes The telescopic unit (321) is at least partially movably disposed on the second mounting base (61) and has a telescopic structure that extends or shortens along the width direction of the second mounting base (61); The cleaning component (2) moves along the width direction of the second mounting base (61) under the drive of the telescopic unit (321); Preferably, the telescopic unit (321) includes The second drive unit (3211) is disposed on the support module (6); The second transmission component (3212) is rotatably mounted on the support module (6) and is connected to the second drive unit (3211) in a transmission manner; The cleaning component (2) is telescopically connected to two sliding components (3123) via connectors (4); Two sliding members (3213) are provided, and at least one of the sliding members (3123) is threadedly connected to the second transmission member (3212).

9. The cleaning tool for the carbonization furnace used in carbon fiber production according to claim 8, characterized in that: Two cleaning components (2) are provided, located on both sides of the width direction of the second mounting base (61), and both are connected to the telescopic unit (321) in a transmission manner; The two cleaning components (2) move closer to each other or further away from each other under the action of the telescopic unit (321).

10. The cleaning tool for the carbonization furnace used in carbon fiber production according to any one of claims 1-9, characterized in that: The first mounting base (1) has a hand-held part (11) in the length extension direction; Preferably, the handheld part (11) is provided with an anti-slip structure (12) on its peripheral surface.