Dedusting and winding device for cloth processing

By combining dust removal components, suction units, and edge cleaning components, the problem of fiber breakage caused by fabric shaking and difficulty in removing fine dust is solved, achieving efficient dust removal and air purification, reducing the risk of fabric damage and energy consumption.

CN120903301APending Publication Date: 2025-11-07CHANGZHOU LINKE GARMENT CO LTD
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Patent Information

Application Number
CN202511231571.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-31
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

In existing technologies, the reciprocating shaking of fabric can easily cause fiber breakage, and it is difficult to remove fine dust embedded in the gaps between fibers, resulting in poor dust removal performance.

Method used

It adopts a combination design of dust removal components, vacuuming unit and edge cleaning components, and uses airflow and ion fan to achieve high-frequency micro-vibration and static electricity neutralization of the fabric. Combined with the suction function of the vacuuming component, it improves the cleaning effect.

Benefits of technology

It effectively reduces the risk of fabric damage, improves dust removal efficiency, reduces dust residue, purifies workshop air, reduces energy consumption, and avoids air pollution.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of dust removal and winding, in particular to a dust removal and winding device for cloth processing, which comprises a winding machine body, an outer box is fixedly arranged at the upper end of the winding machine body, a dust removal assembly is arranged between two sides of the outer box, two groups of edge cleaning assemblies are symmetrically arranged on one side of the dust removal assembly, and a dust collection part is fixedly arranged on the inner wall of the upper end of the outer box. A dust collection assembly is arranged in the dust removal assembly, the dust removal assembly comprises a fixed shell fixedly connected between the two sides of the outer box, multiple sets of first air outlet holes and air inlet holes are formed in the inclined face of the fixed shell, a mounting frame is fixedly arranged between the two sides of the fixed shell, and an air blowing part is arranged on the mounting frame in a penetrating mode. Through the arrangement of the dust removal assembly, static electricity of the cloth can be neutralized, high-frequency micro-vibration of the cloth can be achieved, the cloth cleaning effect is improved while the cloth damage risk is reduced, through the arrangement of the dust suction part and the dust suction assembly, indoor air of a processing workshop can be purified, and air pollution caused by direct emission of polluted air is avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of dust removal and winding, and particularly relates to a dust removal and winding device for cloth processing. BACKGROUND

[0002] In the cloth processing process, dust impurities such as air suspended particles, fiber debris and equipment wear particles exist in the production environment of the cloth, and under the action of electrostatic adsorption, part of the dust impurities in the air will be adsorbed to the surface of the cloth. If these dust impurities remain in the cloth after winding, they will form spots, color differences or unevenness in subsequent printing, coating and other processes, resulting in product degradation or even scrap. At the same time, part of the dust impurities may escape during the winding process and pollute the surrounding air.

[0003] A cloth winding device with a dust removal function is disclosed in Chinese Patent No. CN114772341B. The device promotes the falling of dust impurities on the cloth by pushing the cloth to reciprocate and shake, thereby achieving dust removal of the cloth. However, when the device is used to wind fragile cloths such as thin cotton and linen yarns, the reciprocating and shaking of the cloth may cause the fibers to break due to the pulling force. In addition, it is difficult to remove fine dust embedded in the gaps between the fibers by shaking alone, resulting in poor dust removal effect. SUMMARY

[0004] The present application aims to solve the problem of fiber breakage caused by the reciprocating and shaking of the cloth in the prior art, and the difficulty in removing fine dust embedded in the gaps between the fibers by shaking alone, resulting in poor dust removal effect. A dust removal and winding device for cloth processing is proposed.

[0005] To achieve the above-mentioned purpose, the present application adopts the following technical scheme: a dust removal and winding device for cloth processing, comprising a winding machine body, an outer box fixedly arranged on the upper end of the winding machine body, a dust removal assembly arranged between the two sides of the outer box, two groups of edge cleaning assemblies symmetrically arranged on one side of the dust removal assembly, a dust suction part fixedly arranged on the inner wall of the upper end of the outer box, and a dust suction assembly arranged inside the dust removal assembly.

[0006] The dust removal assembly comprises a fixed shell fixedly connected between the two sides of the outer box, and the side of the fixed shell is arranged as an inclined surface. A plurality of first air outlet holes and air inlet holes are formed on the inclined surface of the fixed shell, and the plurality of first air outlet holes and air inlet holes are arranged in rows and staggered. A first limiting rod and a second limiting rod are fixedly connected between the two sides of the outer box, and the first limiting rod and the second limiting rod are respectively arranged close to the two ends of the inclined surface of the fixed shell. A filter screen is arranged through the other side of the fixed shell. An installation frame is fixedly arranged between the two sides of the fixed shell, and a gas blowing part is arranged through the installation frame.

[0007] Preferably, the air blowing component comprises a guide housing fixedly connected on one side of the mounting frame, one end of the guide housing is fixedly connected with an ion fan, the other end of the guide housing is fixedly connected with a first connecting housing through a hose, and one side of the first connecting housing is fixedly connected with an L-shaped elbow pipe, and the L-shaped elbow pipe is symmetrically provided with multiple groups from top to bottom.

[0008] Preferably, one side of the first connecting housing is fixedly connected with a communication housing, and multiple groups of the communication housing are spaced apart from top to bottom, and the L-shaped elbow pipe and the communication housing are fixedly connected through each other, the opening of the L-shaped elbow pipe faces the length direction of the communication housing, multiple groups of second air outlets are formed on one side of the communication housing, the spacing between the multiple groups of second air outlets is twice the spacing between the multiple groups of first air outlets, and the multiple groups of second air outlets are coincident with the positions of the adjacent first air outlets.

[0009] Preferably, an electric telescopic rod is fixedly connected on one side of the mounting frame, and multiple groups of the electric telescopic rod are spaced apart, and the two sides of the multiple groups of the communication housing are fixedly connected with connecting plates, one end of the two groups of the electric telescopic rod is fixedly connected with one group of the connecting plates, and the other group of the connecting plates is fixedly connected with two groups of embedded rods on one side at intervals, and a limiting tube is fixedly connected on the other side of the mounting frame, and multiple groups of the limiting tube are spaced apart, and the two groups of the embedded rods are respectively embeddedly movably connected with the two groups of the limiting tube.

[0010] Preferably, the dust suction assembly comprises a dust suction machine fixedly connected inside the fixed housing, and the air outlet of the dust suction machine is communicated with the outside of the fixed housing through a pipeline, and a connecting component is embedded between the dust suction machine and the mounting frame, and the connecting component is symmetrically provided with two groups, and a dust suction frame is arranged on one side of the connecting component, and multiple groups of the dust suction frame are spaced apart from top to bottom, and the multiple groups of the dust suction frame are staggered with the multiple groups of the communication housing, and the multiple groups of the dust suction frame are arranged on one side of the multiple groups of the air inlets.

[0011] Preferably, the connecting component comprises a second connecting housing fixedly connected inside the mounting frame, a first connecting pipe is fixedly connected between the second connecting housing and the dust suction machine, multiple groups of the dust suction frame are fixedly connected on the other side of the second connecting housing, second connecting pipes are fixedly connected on both sides of the second connecting housing, multiple groups of the second connecting pipes are symmetrically provided from top to bottom, and one end of each of the multiple groups of the second connecting pipes is fixedly connected with one side of the dust suction frame.

[0012] Preferably, the edge cleaning assembly comprises a communication component arranged on the inclined surface of the fixed housing, a flow guiding component is arranged on one side of the communication component, a plugging component is arranged inside the communication component, and multiple groups of the plugging component are spaced apart from top to bottom, and the multiple groups of the plugging component are arranged on one side of the dust suction frame.

[0013] Preferably, the communication component comprises a fixed frame fixedly connected with the inclined surface of the fixed shell, a first sliding plate is slidingly connected to the inner side of the fixed frame, a second sliding plate is slidingly connected to the inner side of the first sliding plate, and the first sliding plate and the second sliding plate are both U-shaped plates, and the first sliding plate and the second sliding plate are both slidingly connected with the inclined surface of the fixed shell.

[0014] Preferably, the flow guide component comprises an L-shaped mounting strip fixedly connected to one side of the second sliding plate, the L-shaped mounting strip is slidingly connected with the fixed shell through a trapezoidal sliding block, a motor is fixedly connected to the upper end of the L-shaped mounting strip, an air outlet rod is rotatably connected to one side of the L-shaped mounting strip, a through hole is formed in the air outlet rod, the upper end of the air outlet rod is fixedly connected with the output end of the motor, and a fixed bolt is threadedly connected to one side of the L-shaped mounting strip, and one end of the fixed bolt is in contact with the fixed shell.

[0015] Preferably, the plugging component comprises a fixed strip fixedly connected to the inside of the fixed frame, a first sliding strip is slidingly connected to the inner side of the fixed strip, a second sliding strip is slidingly connected to the inner side of the first sliding strip, and the second sliding strip is fixedly connected with the inner wall of one side of the second sliding plate.

[0016] Compared with the prior art, the present application has the following advantages:

[0017] 1. The dust removal assembly, the dust suction part and the dust suction assembly are arranged, so that the cloth can be subjected to high-frequency micro-vibration under the action of the airflow, the risk of damage to the cloth is reduced, the dust on the surface of the cloth is removed, and the dust in the cloth fibers can also be blown out, thereby improving the cleaning effect on the cloth; the second air outlet hole is repeatedly overlapped with the two adjacent first air outlet holes through the reciprocating movement of the communication shell, so that the gas can be repeatedly sprayed in different first air outlet holes, thereby improving the vibration effect of the cloth and avoiding the same position of the cloth from being continuously subjected to the action of the wind, so as to effectively reduce the possibility of damage to the cloth due to fatigue damage;

[0018] 2. The ion fan is arranged, so that the air in contact with the cloth carries ions, the static electricity of the cloth and the dust is neutralized, the influence of static adsorption is reduced, and the dust removal effect is improved;

[0019] 3. The edge cleaning assembly is arranged, so that the edge position of the cloth can be treated in a targeted manner, the dust residue is further reduced, and the wasted wind power during the winding of cloth with different widths can be collected and utilized, thereby reducing the energy consumption and improving the environmental protection performance of the device;

[0020] 4、Through the setting of the dust suction part and the dust suction assembly, dust and impurities scattered above and below the cloth can be sucked and filtered, secondary adsorption of dust on the cloth can be avoided, dust and impurities scattered in the environment during cloth winding can be effectively reduced, indoor air of the processing workshop is purified, and air mixed with dust and impurities is prevented from being directly discharged to the outside to cause air pollution. BRIEF DESCRIPTION OF DRAWINGS

[0021] Figure 1 A schematic diagram of the overall structure of the dust removal and winding device for cloth processing is provided.

[0022] Figure 2 A sectional view of the winding machine body and the outer box structure of the dust removal and winding device for cloth processing is provided.

[0023] Figure 3 A schematic diagram of the dust removal assembly and the dust suction part structure of the dust removal and winding device for cloth processing is provided.

[0024] Figure 4 A sectional view of the dust removal assembly structure of the dust removal and winding device for cloth processing is provided.

[0025] Figure 5 A plan view of the dust removal assembly and the dust suction assembly structure of the dust removal and winding device for cloth processing is provided.

[0026] Figure 6 A schematic diagram of the mounting frame and the air blowing part structure of the dust removal and winding device for cloth processing is provided.

[0027] Figure 7 A split schematic diagram of the limiting pipe and the air blowing part structure of the dust removal and winding device for cloth processing is provided.

[0028] Figure 8 A schematic diagram of the dust suction assembly structure of the dust removal and winding device for cloth processing is provided.

[0029] Figure 9 A schematic diagram of the edge cleaning assembly structure of the dust removal and winding device for cloth processing is provided.

[0030] Figure 10 A schematic diagram of the dust removal and winding device for cloth processing is provided. Figure 9 An enlarged view of detail A in the dust removal and winding device for cloth processing is provided.

[0031] Figure 11 A split schematic diagram of the communication part and the flow guide part structure of the dust removal and winding device for cloth processing is provided.

[0032] Figure 12 A split schematic diagram of the plugging part structure of the dust removal and winding device for cloth processing is provided.

[0033] In the figure: 1, winding machine body; 2, outer box; 3, dust removal assembly; 31, fixed shell; 311, first air outlet; 312, air inlet; 32, first limiting rod; 33, second limiting rod; 34, filter screen; 35, mounting frame; 351, limiting tube; 36, blowing component; 361, ion fan; 362, guide shell; 363, electric telescopic rod; 364, connecting plate; 365, communication shell; 366, second air outlet; 367, first connecting shell; 368, L-shaped elbow; 369, embedded rod; 4, edge cleaning assembly; 41, communication component; 411, fixed frame; 412, first sliding plate; 413, second sliding plate; 42, flow guide component; 421, L-shaped mounting strip; 422, motor; 423, air outlet rod; 424, fixing bolt; 43, plugging component; 431, fixed strip; 432, first sliding strip; 433, second sliding strip; 5, dust suction part; 6, dust suction assembly; 61, dust suction machine; 62, connecting component; 621, first connecting tube; 622, second connecting shell; 623, second connecting tube; 63, dust suction frame. DETAILED DESCRIPTION

[0034] The following examples are for illustrative purposes only and are not intended to limit the scope of the present application.

[0035] EXAMPLE

[0036] REFERENCE Figures 1-12 A dust removal and winding device for cloth processing, comprising a winding machine body 1, an outer box 2 is fixedly arranged at the upper end of the winding machine body 1, a dust removal assembly 3 is arranged between the two sides of the outer box 2, two groups of edge cleaning assemblies 4 are symmetrically arranged on one side of the dust removal assembly 3, a dust suction part 5 is fixedly arranged on the inner wall of the upper end of the outer box 2, and a dust suction assembly 6 is arranged in the dust removal assembly 3; the dust removal assembly 3 is used for promoting the separation of dust on the cloth from the cloth during the winding of the cloth, and the dust suction assembly 6 and the dust suction part 5 are both used for removing the dust and impurities separated from the cloth;

[0037] The dust removal assembly 3 comprises a fixed shell 31 fixedly connected between the two sides of the outer box 2, one side of the fixed shell 31 is provided as an inclined surface, a plurality of first air outlet holes 311 and air inlet holes 312 are formed on the inclined surface of the fixed shell 31, and the plurality of first air outlet holes 311 and air inlet holes 312 are arranged in rows and staggered, a first limiting rod 32 and a second limiting rod 33 are fixedly connected between the two sides of the outer box 2, and the first limiting rod 32 and the second limiting rod 33 are respectively arranged close to the two ends of the inclined surface of the fixed shell 31, a filter screen 34 is arranged through the other side of the fixed shell 31, a mounting frame 35 is fixedly arranged between the two sides of the fixed shell 31, and a blowing component 36 is arranged through the mounting frame 35, the first limiting rod 32 and the second limiting rod 33 are used for limiting the cloth, so that the distance between the cloth and the fixed shell 31 can be kept within a proper range, the filter screen 34 is used for filtering dust and impurities in the air entering the inside of the fixed shell 31, reducing the contact possibility of the blowing component 36 and the dust, and the mounting frame 35 is used for mounting the blowing component 36 and the dust removal assembly 6, and the blowing component 36 is used for promoting the separation of the dust and impurities and the cloth.

[0038] The blowing component 36 comprises a guide shell 362 fixedly connected through one side of the mounting frame 35, one end of the guide shell 362 is fixedly connected with an ion fan 361, the other end of the guide shell 362 is fixedly connected with a first connecting shell 367 through a hose, one side of the first connecting shell 367 is fixedly connected with an L-shaped elbow pipe 368, a plurality of groups of the L-shaped elbow pipes 368 are symmetrically arranged from top to bottom, air containing positive and negative ions can be blown out through the ion fan 361, the air passes through the guide shell 362 and the first connecting shell 367 and is then discharged through the plurality of groups of L-shaped elbow pipes 368, and the hose on the guide shell 362 can adapt to the movement of the first connecting shell 367.

[0039] One side of the first connecting shell 367 is fixedly connected with a communication shell 365, a plurality of groups of the communication shells 365 are arranged at intervals from top to bottom, and the plurality of groups of L-shaped elbow pipes 368 are fixedly connected through the communication shell 365, the opening of the L-shaped elbow pipe 368 faces the length direction of the communication shell 365, a plurality of second air outlet holes 366 are formed on one side of the communication shell 365, the distance between the plurality of second air outlet holes 366 is twice the distance between the plurality of first air outlet holes 311, the plurality of second air outlet holes 366 are coincident with the first air outlet holes 311, after the air discharged from the L-shaped elbow pipe 368 enters the inside of the communication shell 365, the air can pass through the second air outlet holes 366 and the first air outlet holes 311 coincident with the second air outlet holes 366 and be discharged, and since the opening angle of the L-shaped elbow pipe 368 faces the length direction of the communication shell 365, the air flow aggregation can be effectively reduced, so that the air outlet uniformity of the plurality of second air outlet holes 366 and the first air outlet holes 311 can be improved, and damage of the cloth caused by excessive local stress can be avoided.

[0040] The installation frame 35 is fixedly connected with the electric telescopic rod 363 on one side, and two groups of electric telescopic rods 363 are arranged at intervals, a plurality of groups of communication housings 365 are fixedly connected on both sides of the electric telescopic rod 363, one end of the two groups of electric telescopic rods 363 is fixedly connected with one group of connecting plates 364, the other group of connecting plates 364 is fixedly connected with two groups of embedded rods 369 on one side at intervals, the other side of the installation frame 35 is fixedly connected with the limiting tube 351, and the limiting tube 351 is arranged at intervals. Two groups of embedded rods 369 are respectively embeddedly connected with two groups of limiting tubes 351, and the two groups of limiting tubes 351 are used for supporting the embedded rods 369, the connecting plates 364 and the electric telescopic rods 363. The two groups of electric telescopic rods 363 can push the plurality of groups of communication housings 365 to reciprocatingly move a distance, so that different first air outlets 311 can reciprocatingly move to coincide with the second air outlet 366, so that air with positive and negative ions can be discharged from different first air outlets 311, thereby expanding the contact range of the cloth and the positive and negative ions.

[0041] The dust collection assembly 6 comprises a dust collection machine 61 fixedly connected inside the fixed housing 31, and the air outlet of the dust collection machine 61 is communicated with the outside of the fixed housing 31 through a pipeline. The connecting component 62 is embedded between the dust collection machine 61 and the installation frame 35, and the connecting component 62 is symmetrically provided with two groups. The connecting component 62 is provided with a dust collection frame 63 on one side, and a plurality of groups of dust collection frames 63 are arranged at intervals from top to bottom. The plurality of groups of dust collection frames 63 are arranged alternately with the plurality of groups of communication housings 365. The plurality of groups of dust collection frames 63 are arranged on one side of the plurality of groups of air inlets 312. The connecting component 62 is used for connecting the dust collection frame 63 and the dust collection machine 61.

[0042] The connecting component 62 comprises a second connecting housing 622 fixedly connected to the inner side of the installation frame 35. The first connecting pipe 621 is fixedly connected between the second connecting housing 622 and the dust collection machine 61. A plurality of groups of dust collection frames 63 are fixedly connected to the other side of the second connecting housing 622. The second connecting pipe 623 is fixedly connected through the second connecting housing 622 on both sides. The second connecting pipe 623 is symmetrically provided with a plurality of groups from top to bottom. One end of the plurality of groups of second connecting pipes 623 is fixedly connected with one side of the dust collection frame 63. When the dust collection machine 61 is started, the dust and impurities falling from the cloth can enter the inside of the dust collection frame 63 through the plurality of groups of air inlets 312. Then the dust and impurities can enter the dust collection machine 61 through the connecting component 62 and be filtered and collected. The setting of the plurality of groups of second connecting pipes 623 can expand the air extraction range.

[0043] The edge cleaning assembly 4 comprises a communication component 41 arranged on the inclined surface of the fixed shell 31, the communication component 41 is provided with a flow guide component 42 on one side, the communication component 41 is internally provided with a plurality of sets of blocking components 43 arranged in intervals from top to bottom, the plurality of sets of blocking components 43 are arranged in intervals on one side of the dust absorption frame 63, the communication component 41 is used for collecting and guiding the gas blown out of the first air outlet hole 311, the flow guide component 42 is used for blowing the gas to the cloth from different angles, and the blocking component 43 is used for blocking the air inlet hole 312.

[0044] The communication component 41 comprises a fixed frame 411 fixedly connected with the inclined surface of the fixed shell 31, a first sliding plate 412 is slidably connected to the inner side of the fixed frame 411, a second sliding plate 413 is slidably connected to the inner side of the first sliding plate 412, and the first sliding plate 412 and the second sliding plate 413 are both U-shaped plates, the first sliding plate 412 and the second sliding plate 413 are both slidably connected with the inclined surface of the fixed shell 31, through the arrangement of the fixed frame 411, the first sliding plate 412 and the second sliding plate 413, the air discharged from the first air outlet hole 311 coinciding with the positions of the three can be collected and guided to one end of the second sliding plate 413, and through the sliding connection between the fixed frame 411, the first sliding plate 412 and the second sliding plate 413, when the width of the rolled cloth changes, the first sliding plate 412 and the second sliding plate 413 can be slid to adapt to the use of cloth with different widths.

[0045] The flow guide component 42 comprises an L-shaped mounting strip 421 fixedly connected to one side of the second sliding plate 413, the L-shaped mounting strip 421 is slidably connected with the fixed shell 31 through a trapezoidal slide block, a motor 422 is fixedly connected to the upper end of the L-shaped mounting strip 421, an air outlet rod 423 is rotatably connected to one side of the L-shaped mounting strip 421, a through hole is formed in the air outlet rod 423, the upper end of the air outlet rod 423 is fixedly connected with the output end of the motor 422, a fixed bolt 424 is threadedly connected to one side of the L-shaped mounting strip 421, and the other end of the fixed bolt 424 is in contact with the fixed shell 31, the gas in the second sliding plate 413 can be discharged through the through hole after entering the inside of the L-shaped mounting strip 421, the motor 422 can drive the air outlet rod 423 to rotate, so as to adjust the air outlet angle of the air outlet rod 423, and the L-shaped mounting strip 421 can be extruded and fixed on the surface of the fixed shell 31 through the fixed bolt 424.

[0046] The blocking component 43 comprises a fixed strip 431 fixedly connected in the fixed frame 411, a first sliding strip 432 is slidably connected to the inner side of the fixed strip 431, a second sliding strip 433 is slidably connected to the inner side of the first sliding strip 432, and the second sliding strip 433 is fixedly connected with the inner wall on one side of the second sliding plate 413, the fixed strip 431, the first sliding strip 432 and the second sliding strip 433 can block the air inlet hole 312 coinciding with the communication component 41, so as to avoid that the gas inside the fixed frame 411 is extracted.

[0047] In the present application, when winding the yarn type fragile cloth, the cloth is installed between the winding machine body 1 and the outer box 2, so that the cloth passes through the gap between the first limiting rod 32 and the second limiting rod 33 and the fixed shell 31, and then the positions of the two groups of L-shaped mounting strips 421 are adjusted, so that the air outlet rod 423 is located above the edge of the cloth, at this time the air inlet hole 312 coinciding with the communication component 41 and the flow guide component 42 are all blocked, then the winding of the cloth through the winding machine body 1 can be realized, the winding of the cloth through the winding machine body 1 is the prior art known to the public, and those skilled in the art can conceive the specific structure, during the winding process, the ion fan 361 constantly inputs air with positive and negative ions into the inside of the communication shell 365, this part of air can be discharged from the first air outlet hole 311 coinciding with the second air outlet hole 366, when the positive and negative ions in the air contact the cloth, the static electricity of the cloth and the dust can be neutralized, the influence of static adsorption is reduced, the separation of the dust and the cloth is promoted, at the same time, when the airflow blows from the first air outlet hole 311 to the cloth, an uneven jet flow is generated, so that the cloth can vibrate at high frequency, which can further promote the dust on the surface of the cloth and embedded in the deep part of the fiber to fall off, the airflow is more easily penetrated into the gap between the fibers for the porous and breathable yarn type cloth, when the air passes through the cloth, the airflow can drive the dust particles between the fibers to separate and carry away the attached dust, which can further improve the dust removal effect and reduce the damage to the cloth during dust removal, effectively reducing the possibility of damage to the cloth, in the above process, the suction force generated by the dust suction machine 61 can suck the dust between the cloth and the fixed shell 31 through the multiple air inlet holes 312 into the inside of the dust suction frame 63, the dust can pass through the dust suction frame 63, the second connecting shell 622 and the first connecting pipe 621 into the inside of the dust suction machine 61 to be filtered and collected, the dust floating above the cloth can be sucked away by the dust suction part 5, when the air blows out from the first air outlet hole 311 to make the cloth vibrate, the two groups of electric telescopic rods 363 can push the multiple communication shells 365 to reciprocatingly move, so that the second air outlet hole 366 can reciprocatingly coincide with the two groups of first air outlet holes 311 close to it, so that the gas can be reciprocatingly sprayed in different first air outlet holes 311, which not only can improve the vibration effect of the cloth, but also can avoid the same position of the cloth being continuously subjected to the action of wind, thereby effectively reducing the possibility of damage to the cloth due to fatigue damage;

[0048] In the rolling process of the cloth, the gas sprayed in the first air outlet hole 311 coinciding with the communication component 41 and the flow guide component 42 is gathered by the communication component 41 to the inside of the L-shaped mounting strip 421, and then the gas can be sprayed from the air outlet rod 423 to the cloth edge. Since the cloth edge is more likely to touch the outside world during transportation and rolling, the edge position is more likely to attach dust. The air with positive and negative ions blown out by the air outlet rod 423 can improve the cleaning effect of the cloth edge position, promote the separation of dust, and the air outlet rod 423 can be swung by the motor 422. The outflow avoids the cloth edge from being loosened due to continuous stress at the same position, and the dust on the cloth can be removed when rolling the fragile cloth such as yarn. Through the setting of the dust removal assembly 3, the cloth is subjected to high-frequency micro-vibration under the action of the airflow, which can remove the dust on the surface of the cloth while reducing the risk of damage to the cloth, and can also blow out the dust in the cloth fibers, improving the cleaning effect of the cloth. Through the setting of the ion air blower 361, the air in contact with the cloth is ionized, which can neutralize the static electricity of the cloth and dust, reduce the influence of static adsorption, thereby improving the dust removal effect. Through the setting of the edge cleaning assembly 4, the edge position of the cloth can be treated specifically, further reducing dust residues, and the wasted wind power during rolling of cloth of different widths can be collected and utilized, reducing energy consumption and improving the environmental performance of the device. Through the setting of the dust suction part 5 and the dust suction assembly 6, the dust and impurities escaping from above and below the cloth can be sucked and filtered, which can avoid secondary adsorption of dust on the cloth, effectively reduce the dust and impurities escaping from the environment during cloth rolling, purify the indoor air of the processing workshop, and avoid the air mixed with dust and impurities being directly discharged to the outside to cause air pollution.

[0049] The above only describes the preferred embodiments of the present application and does not limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principles of the present application shall be included in the protection scope of the present application.

Claims

1. A dust removing and winding device for cloth processing, comprising a winding machine body (1), characterized in that, The upper end of the winding machine body (1) is fixedly provided with an outer box (2), dust removal assemblies (3) are arranged between the two sides of the outer box (2), two groups of edge cleaning assemblies (4) are symmetrically arranged on one side of the dust removal assembly (3), a dust suction part (5) is fixedly arranged on the inner wall of the upper end of the outer box (2), and a dust suction assembly (6) is arranged in the dust removal assembly (3); The dust removal assembly (3) comprises a fixed shell (31) fixedly connected between the two sides of the outer box (2), one side of the fixed shell (31) is provided as an inclined surface, a plurality of first air outlet holes (311) and air inlet holes (312) are formed in the inclined surface of the fixed shell (31), and the plurality of first air outlet holes (311) and air inlet holes (312) are arranged in rows and staggered, first limiting rods (32) and second limiting rods (33) are fixedly connected between the two sides of the outer box (2) at intervals, and the first limiting rods (32) and the second limiting rods (33) are respectively arranged close to both ends of the inclined surface of the fixed shell (31), a filter screen (34) is penetratingly arranged on the other side of the fixed shell (31), and an installation frame (35) is fixedly arranged between the two sides of the fixed shell (31), and a gas blowing part (36) is penetratingly arranged on the installation frame (35).

2. The dust removing and winding device for cloth processing according to claim 1, characterized in that, The gas blowing part (36) comprises a guide shell (362) penetratingly and fixedly connected on one side of the installation frame (35), one end of the guide shell (362) is fixedly connected with an ion fan (361), the other end of the guide shell (362) is fixedly connected with a first connecting shell (367) through a hose, one side of the first connecting shell (367) is fixedly connected with an L-shaped elbow (368), and the L-shaped elbow (368) is symmetrically arranged in multiple groups from top to bottom.

3. The dust removing and winding device for cloth processing according to claim 2, characterized in that, One side of the first connecting shell (367) is fixedly connected with a communication shell (365), and the communication shell (365) is arranged in multiple groups at intervals from top to bottom, and the L-shaped elbow (368) is penetratingly and fixedly connected with the communication shell (365) in pairs, the opening of the L-shaped elbow (368) faces the length direction of the communication shell (365), a plurality of second air outlet holes (366) are formed in one side of the communication shell (365), the distance between the plurality of second air outlet holes (366) is twice the distance between the plurality of first air outlet holes (311), and the plurality of second air outlet holes (366) are coincident with the positions of the adjacent first air outlet holes (311).

4. The dust removing and winding device for cloth processing according to claim 3, characterized in that, One side of the installation frame (35) is penetratingly and fixedly connected with a plurality of electric telescopic rods (363), and the plurality of electric telescopic rods (363) are arranged at intervals, the two sides of the plurality of communication shells (365) are fixedly connected with a plurality of connecting plates (364), one end of the two groups of electric telescopic rods (363) is fixedly connected with one group of connecting plates (364), and the other group of connecting plates (364) is fixedly connected with two groups of embedded rods (369) at intervals, the other side of the installation frame (35) is penetratingly and fixedly connected with a limiting tube (351), and the limiting tube (351) is arranged in two groups at intervals, and the two groups of embedded rods (369) are respectively embeddedly and movably connected with the two groups of limiting tubes (351).

5. The dust removing and winding device for cloth processing according to claim 3, characterized in that, The dust suction assembly (6) comprises a dust suction machine (61) fixedly connected inside the fixed shell (31), and the air outlet of the dust suction machine (61) is communicated with the outside of the fixed shell (31) through a pipeline, a connecting component (62) is embedded between the dust suction machine (61) and the mounting frame (35), the connecting component (62) is symmetrically provided with two groups, a dust suction frame (63) is arranged on one side of the connecting component (62), and a plurality of groups of the dust suction frame (63) are arranged in the upper and lower spaces, a plurality of groups of the dust suction frame (63) are arranged on one side of a plurality of groups of the air inlet hole (312) in a staggered manner.

6. The dust removing and winding device for cloth processing according to claim 5, characterized in that, The connecting component (62) comprises a second connecting shell (622) fixedly connected to the inner side of the mounting frame (35), a first connecting pipe (621) fixedly connected between the second connecting shell (622) and the dust suction machine (61), a plurality of groups of the dust suction frame (63) fixedly connected to the other side of the second connecting shell (622), and a second connecting pipe (623) fixedly connected to the two sides of the second connecting shell (622), wherein a plurality of groups of the second connecting pipe (623) are symmetrically arranged in pairs from top to bottom, and one end of each of the plurality of groups of the second connecting pipe (623) is fixedly connected with one side of the dust suction frame (63).

7. The dust removing and winding device for cloth processing according to claim 5, characterized in that, The edge cleaning assembly (4) comprises a communication component (41) arranged on the inclined surface of the fixed shell (31), a flow guide component (42) arranged on one side of the communication component (41), and a plugging component (43) arranged inside the communication component (41), wherein a plurality of groups of the plugging component (43) are arranged on one side of the dust suction frame (63) in a spaced manner.

8. The dust removing and winding device for cloth processing according to claim 7, characterized in that, The communication component (41) comprises a fixed frame (411) fixedly connected with the inclined surface of the fixed shell (31), a first sliding plate (412) slidably connected to the inner side of the fixed frame (411), and a second sliding plate (413) slidably connected to the inner side of the first sliding plate (412), wherein the first sliding plate (412) and the second sliding plate (413) are both U-shaped plates, and the first sliding plate (412) and the second sliding plate (413) are both slidably connected with the inclined surface of the fixed shell (31).

9. The dust removal and winding device for cloth processing according to claim 8, characterized in that, The flow guide component (42) comprises an L-shaped mounting strip (421) fixedly connected to one side of the second sliding plate (413), the L-shaped mounting strip (421) is slidably connected with the fixed shell (31) through a trapezoidal sliding block, a motor (422) is fixedly connected to the upper end of the L-shaped mounting strip (421), an air outlet rod (423) is rotatably connected to one side of the L-shaped mounting strip (421), a through hole is formed in the air outlet rod (423), the upper end of the air outlet rod (423) is fixedly connected with the output end of the motor (422), a fixed bolt (424) is threadedly connected to one side of the L-shaped mounting strip (421), and one end of the fixed bolt (424) is in contact with the fixed shell (31).

10. The dust removing and winding device for cloth processing according to claim 8, characterized in that, The blocking component (43) comprises a fixed strip (431) fixedly connected inside a fixed frame (411), a first sliding strip (432) slidably connected inside the fixed strip (431), a second sliding strip (433) slidably connected inside the first sliding strip (432), and the second sliding strip (433) is fixedly connected with an inner wall of one side of a second sliding plate (413).

Citation Information

Patent Citations

  • A fabric winding device with dust removal function

    CN114772341B