Dust and lint removal system for textile plants

By using a plug-in connection and permanent magnet sleeve design in the air intake pipe of the textile workshop, the problem of inconvenient filter screen installation is solved, enabling convenient replacement and cleaning, and improving the efficiency of equipment use and environmental cleanliness.

CN224299496UActive Publication Date: 2026-05-29SHAOXING QINFENG TEXTILE CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHAOXING QINFENG TEXTILE CO LTD
Filing Date
2025-06-12
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

The existing filter screens of the air intake pipes in textile workshops are fixed with screws, which makes installation and disassembly inconvenient and affects the efficiency of replacement and cleaning.

Method used

The filter screen uses a plug-in connection and is fixed with a permanent magnet sleeve. The screen can be raised and lowered by lifting the bottom plate, which makes it easy to install and disassemble.

Benefits of technology

It enables convenient installation, disassembly, replacement, and cleaning of filter screens, improving equipment efficiency and environmental cleanliness.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224299496U_ABST
    Figure CN224299496U_ABST
Patent Text Reader

Abstract

The utility model discloses a kind of textile workshop is used dust flying fluff processing pipeline device, including the adsorption pipeline of transverse arrangement, left and right ends of adsorption pipeline are fixed in the top of workshop by connecting piece, and the top plate of adsorption pipeline is connected with suction connector, and suction connector is communicated with the inner chamber of adsorption pipeline, and the adsorption pipeline is rectangular tube body;Multiple adsorption through holes corresponding and aligned are formed on the front and back two side plates of adsorption pipeline;Corresponding adsorption through hole outside is covered with filter screen plate, and two filter screen plates corresponding in front and back are fixed on the same bottom plate, and bottom plate is directly below the bottom plate of adsorption pipeline.It is installed in the same bottom plate that two filter screen plates corresponding in front and back of it, and it can be lifted bottom plate to realize the lifting of filter screen plate, corresponding adsorption through hole can be covered when lifting, realize filtering blocking, and its filter screen plate uses plug-in connection, so that its installation dismounting replacement is convenient.
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Description

Technical fields:

[0001] This utility model relates to the field of textile environmental protection equipment technology, and more specifically to a dust and lint treatment pipeline device for textile workshops. Background technology:

[0002] In existing textile enterprises, various needle combing machines, doubling machines, roving machines, and other equipment are used in yarn manufacturing. During the manufacturing process, some short fibers, lint, and dust on the surface of the yarn float in the air, affecting the surrounding environment. For operators, inhaling these particles can also have an impact on their health. Therefore, operators generally wear masks. In addition, air suction pipes are installed above the factory to absorb the air in the room, thus removing short fibers, lint, and dust, thereby maintaining the cleanliness of the factory space and reducing the impact on the surrounding environment and human health.

[0003] Typically, a filter screen is installed at the air intake port of an air intake pipe to prevent large particles or long threads from entering and causing blockages. After a certain period of use, the filter screen needs to be disassembled for cleaning or replacement. However, existing filter screens are directly fixed to the side wall of the air intake pipe with screws, which is troublesome to install and remove and the effect is not ideal. Utility Model Content:

[0004] The purpose of this utility model is to overcome the shortcomings of the existing technology and provide a dust and lint treatment pipeline device for textile workshops. Its two corresponding filter screens are installed on the same bottom plate. The filter screens can be raised and lowered by lifting the bottom plate. When raised, they can cover the corresponding adsorption holes to achieve filtration and blocking. The filter screens adopt plug-in connection, which makes them easy to install, disassemble and replace.

[0005] The solution of this utility model to the aforementioned technical problem is:

[0006] A dust and lint treatment pipeline device for textile workshops includes a horizontally arranged adsorption pipeline. The left and right ends of the adsorption pipeline are fixed to the top of the factory building by connectors. An air suction connector is connected to the top plate of the adsorption pipeline and communicates with the inner cavity of the adsorption pipeline. The adsorption pipeline is a rectangular tube.

[0007] The front and rear side plates of the adsorption pipeline are formed with multiple adsorption through holes that are corresponding and aligned.

[0008] The outer side of the corresponding adsorption through-hole is covered with a filter screen plate, and the two corresponding filter screen plates are fixed on the same bottom plate, which is located directly below the bottom plate of the adsorption pipeline.

[0009] Vertical guide rails are fixed on the outer walls of the front or rear side plates of the adsorption pipes on both sides of the adsorption through holes. Vertical guide grooves are formed in the middle of the inner side walls of the vertical guide rails. The top of the vertical guide grooves extends out of the top surface of the vertical guide rails. The left and right ends of the upper connecting horizontal plates extending to the left and right are inserted into the vertical guide grooves of the two corresponding vertical guide rails, which cooperate with the vertical guide grooves. Positioning posts are fixed on the left and right sides of the upper inner wall of the filter screen plate. The positioning posts are inserted into the corresponding upper through holes formed on the left and right sides of the outer wall of the upper connecting horizontal plate. Connecting plates are fixed on the left and right sides of the top surface of the front and rear of the bottom plate. Lower through holes are formed on the connecting plates. Lower positioning posts fixed on the left and right sides of the lower inner wall of the filter screen plate are inserted into the corresponding lower through holes.

[0010] Permanent magnet sleeves are fixedly inserted into the inner walls of the upper and lower through holes. The positioning post and the lower positioning post are inserted into the corresponding permanent magnet sleeves, and their outer walls are in contact with or tightly attached to the inner walls of the corresponding permanent magnet sleeves and are attracted and fixed.

[0011] The top surface of the bottom plate is fixed with multiple iron adsorption blocks, and the bottom surface of the bottom plate of the adsorption pipeline at the corresponding position is fixed with a permanent magnet sheet, which presses against and adsorbs the corresponding iron adsorption block.

[0012] The outstanding effect of this utility model is:

[0013] Its two corresponding filter screens are installed on the same bottom plate. The filter screens can be raised and lowered by lifting the bottom plate. When raised, they can cover the corresponding adsorption holes to achieve filtration and blockage. The filter screens are connected by plug-in, making them easy to install, disassemble and replace.

[0014] At the same time, after the filter screen is lowered, the adsorption holes will not be covered. At this time, the inner wall of the adsorption pipeline around the adsorption holes can be cleaned, and the internal condition of the adsorption pipeline can also be observed through the adsorption holes. Attached image description:

[0015] Figure 1 This is a partial structural schematic diagram of the present invention;

[0016] Figure 2 yes Figure 1 A magnified view of a portion of the image;

[0017] Figure 3 This is a partial sectional view of the present invention;

[0018] Figure 4 yes Figure 3 A magnified view of a portion of the image. Detailed implementation method:

[0019] For example, see below. Figures 1 to 4As shown, a dust and lint treatment pipeline device for textile workshops includes a horizontally arranged adsorption pipeline 10. The left and right ends of the adsorption pipeline 10 are fixed to the top of the factory building via connectors. Each connector includes two vertical connecting plates, the bottoms of which are formed on the same lower horizontal plate. The left and right parts of the bottom plate of the adsorption pipeline 10 press against the top surface of the corresponding lower horizontal plate of the connector and are fixedly connected by bolts. The top of the vertical connecting plates has a bent portion, which is fixedly connected to the top of the factory building via bolts. A suction connector 11 is connected to the top plate of the adsorption pipeline 10, communicating with the inner cavity of the adsorption pipeline 10. The top of the suction connector 11 is connected to the inlet pipe of an external dust removal device. This structure is consistent with existing structures, and the dust removal device is also a conventional structure, such as a bag filter, which will not be detailed here. The adsorption pipeline 10 is a rectangular tube.

[0020] The front and rear side plates of the adsorption pipeline 10 are formed with a plurality of adsorption through holes 12 that are corresponding and aligned, and the adsorption through holes 12 are connected to the adsorption pipeline 10.

[0021] A filter screen plate 20 is covered on the outer side of the corresponding adsorption through hole 12. Two corresponding filter screen plates 20 are fixed on the same bottom plate 30. The bottom plate 30 is located directly below the bottom plate of the adsorption pipeline 10. Multiple gripping parts 310 are fixed on the bottom surface of the bottom plate 30.

[0022] Furthermore, vertical guide rails 40 are fixed on the outer walls of the front or rear side plates of the adsorption pipes 10 at both sides of the adsorption through-hole 12. A vertical guide groove 41 is formed in the middle of the inner wall of the vertical guide rail 40. The top end of the vertical guide groove 41 extends out of the top surface of the vertical guide rail 40. The left and right ends of the left and right extending upper connecting transverse plates 50 are inserted into the vertical guide grooves 41 of the two corresponding vertical guide rails 40, thus cooperating with the vertical guide grooves 41. Positioning posts 21 are fixed on the left and right sides of the upper inner wall of the filter screen plate 20. The positioning posts 21 are inserted into the corresponding upper through holes formed on the left and right sides of the outer wall of the upper connecting horizontal plate 50. Connecting plates 31 are fixed on the left and right sides of the top surface of the front and rear parts of the bottom plate 30. The connecting plates 31 are formed with lower through holes. Lower positioning posts 22 fixed on the left and right sides of the lower inner wall of the filter screen plate 20 are inserted into the corresponding lower through holes.

[0023] Permanent magnet sleeves 23 are either inserted into or fixed to the inner walls of the upper and lower through holes by means of adhesives or other methods. Positioning posts 21 and lower positioning posts 22 are inserted into the corresponding permanent magnet sleeves 23, and their outer walls are in contact with or tightly attached to the inner walls of the corresponding permanent magnet sleeves 23 and are adsorbed and fixed.

[0024] The top surface of the bottom plate 30 is fixed with a plurality of iron adsorption blocks 1, and the bottom surface of the bottom plate of the adsorption pipe 10 at the corresponding position is fixed with a permanent magnet sheet 2, which presses against and adsorbs the corresponding iron adsorption block 1.

[0025] Furthermore, the filter screen plate 20 is fixed with protective edges on its left, right, upper and lower parts. The four protective edges form a frame-shaped protrusion 24. The inner end face of the frame-shaped protrusion 24 is close to the outer wall of the front or rear side plate of the adsorption pipeline 10. The inner end face of the frame-shaped protrusion 24 is close to the wall around the corresponding adsorption through hole 12. The frame-shaped protrusion 24 can improve the coverage and sealing between the filter screen plate 20 and the corresponding adsorption through hole 12.

[0026] Multiple upper permanent magnet pieces 3 are fixed on the outer wall of the front or rear side plate of the adsorption pipe 10 above each adsorption through hole 12. The inner wall of the upper connecting horizontal plate 50 is tightly attached to the outer wall of the corresponding upper permanent magnet piece 3 and adsorbed and fixed.

[0027] The outer wall surface of the upper permanent magnet sheet 3 is covered with a rubber coating. The outer wall surface of the permanent magnet sheet 2 is covered with a rubber coating. The rubber coating can prevent the upper permanent magnet sheet 3 and the permanent magnet sheet 2 from breaking or shattering due to collisions, and has a cushioning and protective effect.

[0028] In this embodiment, when in use, the filter screen 20 is positioned above and covers the corresponding adsorption holes 12. The inner wall of the upper connecting horizontal plate 50 is tightly attached to the outer wall of the corresponding upper permanent magnet sheet 3 and is adsorbed and fixed. The permanent magnet sheet 2 is pressed against and adsorbed and fixed to the corresponding iron adsorption block 1, thus achieving connection. At this time, dust, lint, short fibers and other substances in the room are filtered by the filter screen 20 and enter the adsorption pipeline 10 along with the air. Then, they can be processed by the subsequent dust removal equipment.

[0029] Large particles or long threads are blocked outside the corresponding filter screen 20. After a certain period of use, when the filter screen 20 needs to be cleaned or replaced, simply pull the filter screen 20 outward so that the positioning post 21 and the lower positioning post 22 can be pulled out from the corresponding permanent magnet sleeve 23. The filter screen 20 can then be cleaned, replaced or repaired. Disassembly is convenient.

[0030] At the same time, simply hold the gripping part 310 and pull it down to lower the bottom plate 30, causing the two filter screen plates 20 to descend. The upper connecting horizontal plate 50 descends along the vertical guide grooves 41 of the two vertical guide rails 40, and its bottom surface presses against the bottom surface of the corresponding vertical guide groove 41. At this time, the adsorption through hole 12 is not covered. At this time, the wall plate around the inside of the adsorption through hole 12 can be cleaned, and the inside of the adsorption pipeline 10 can be inspected.

[0031] Furthermore, after the bottom plate 30 descends, the position of its filter screen 20 also decreases, making it convenient to disassemble, replace, clean, or repair and maintain, resulting in good performance.

[0032] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and modifications can be made without departing from the technical principles of the present utility model, and these improvements and modifications should also be considered within the protection scope of the present utility model.

Claims

1. A dust and lint treatment pipeline device for textile workshops, comprising a horizontally arranged adsorption pipeline (10), the left and right ends of which are fixed to the top of the workshop by connectors, and a suction connector (11) connected to the top plate of the adsorption pipeline (10), the suction connector (11) communicating with the inner cavity of the adsorption pipeline (10), characterized in that: The adsorption pipeline (10) is a rectangular tube; The front and rear side plates of the adsorption pipeline (10) are formed with a plurality of adsorption through holes (12) that are corresponding and aligned, and the adsorption through holes (12) are connected to the adsorption pipeline (10). The outer side of the corresponding adsorption through hole (12) is covered with a filter screen plate (20). The two corresponding filter screen plates (20) are fixed on the same bottom plate (30). The bottom plate (30) is located directly below the bottom plate of the adsorption pipeline (10). Multiple gripping parts (310) are fixed on the bottom surface of the bottom plate (30).

2. The dust and lint treatment pipeline device for textile workshops according to claim 1, characterized in that: Vertical guide rails (40) are fixed on the outer walls of the front or rear side plates of the adsorption pipes (10) on both sides of the adsorption through hole (12). A vertical guide groove (41) is formed in the middle of the inner wall of the vertical guide rail (40). The top of the vertical guide groove (41) extends out of the top surface of the vertical guide rail (40). The left and right ends of the left and right extending upper connecting horizontal plates (50) are inserted into the vertical guide grooves (41) of the two corresponding vertical guide rails (40), thus cooperating with the vertical guide grooves (41) to allow passage. Positioning posts (21) are fixed on the left and right sides of the upper inner wall of the filter plate (20). The positioning posts (21) are inserted into the corresponding upper through holes formed on the left and right sides of the outer wall of the upper connecting horizontal plate (50). Connecting plates (31) are fixed on the left and right sides of the top surface of the front and rear parts of the bottom plate (30). The connecting plates (31) have lower through holes formed on them. The lower positioning posts (22) fixed on the left and right sides of the lower inner wall of the filter plate (20) are inserted into the corresponding lower through holes.

3. The dust and lint treatment pipeline device for textile workshops according to claim 2, characterized in that: Permanent magnet sleeves (23) are fixedly inserted on the inner sidewalls of the upper and lower through holes. Positioning pins (21) and lower positioning pins (22) are inserted into the corresponding permanent magnet sleeves (23), and their outer sidewalls are in contact with or closely attached to the inner sidewalls of the corresponding permanent magnet sleeves (23) and are attracted and fixed.

4. The dust and lint treatment pipeline device for textile workshops according to claim 1, characterized in that: The bottom plate (30) has a number of iron adsorption blocks (1) fixed on its top surface, and the bottom surface of the bottom plate of the adsorption pipe (10) has a permanent magnet sheet (2) fixed at the corresponding position, which presses against and adsorbs the corresponding iron adsorption block (1).

5. A dust and lint treatment pipeline device for textile workshops according to claim 1, characterized in that: The filter screen (20) is fixed with protective edges on its left, right, upper and lower parts. The four protective edges form a frame-shaped protrusion (24). The inner end face of the frame-shaped protrusion (24) is close to the outer wall of the front or rear side plate of the adsorption pipeline (10).

6. A dust and lint treatment pipeline device for textile workshops according to claim 2, characterized in that: Multiple upper permanent magnet pieces (3) are fixed on the outer wall of the front or rear side plate of the adsorption pipe (10) above each adsorption through hole (12). The inner wall of the upper connecting horizontal plate (50) is closely attached to the outer wall of the corresponding upper permanent magnet piece (3) and adsorbed and fixed.

7. A dust and lint treatment pipeline device for textile workshops according to claim 6, characterized in that: The outer wall surface of the upper permanent magnet sheet (3) is covered with a rubber coating.

8. A dust and lint treatment pipeline device for textile workshops according to claim 4, characterized in that: The outer wall surface of the permanent magnet sheet (2) is covered with a rubber coating.