Textile dust collecting device for textile production
By designing a textile dust collection device using rotary adhesive cylinder and deflector panel set, the problems of low textile dust collection efficiency and high maintenance cost in textile production are solved, and efficient, economical and sustainable textile dust collection effect is achieved.
Patent Information
- Application Number
- CN202510426419.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-07
- Publication Date
- 2025-06-03
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In the existing textile production process, the collection of textile dust depends on fan suction and filter screen filtration. There are problems such as the filter screen being easily blocked, requiring frequent cleaning and regular replacement, resulting in low collection efficiency and high maintenance costs.
A textile dust collection device for textile production is designed, using a rotary adhesion cylinder, a rotary groove, atomization spray head and a deflector group. It is sprayed in the rotary adhesion cylinder through water atomization to increase surface tension, improve the adhesion and capture efficiency of dust particles, and maintain the air wall thinness through the deflector group to enhance the contact area with the wet rotor surface.
It significantly improves the collection efficiency of textile dust, avoids the problems of clogging and replacement of traditional filters, reduces maintenance costs, and achieves efficient, economical and sustainable collection of textile dust.
Smart Images

Figure CN120079190A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of air filtration treatment, and particularly relates to a textile dust collection device for textile production. Background Art
[0002] In the modern industrialization process, air pollution has become a global environmental problem, and the fine particulate matter emitted by industries is one of the main pollution sources. These tiny particles not only affect air quality but also cause damage to the human respiratory system. Among many industries, the textile industry is considered one of the pollution sources that are easily overlooked but cannot be ignored because a large amount of fine fiber dust is generated during the production process. As a part of atmospheric particulate pollutants, textile dust is mainly released from materials such as cotton, wool, chemical fibers, etc. during processing, spinning, weaving, and cutting processes. It is suspended in the air for a long time, not only polluting the environment inside and outside the factory but also potentially affecting the health of workers and even causing occupational diseases such as byssinosis. Therefore, effectively collecting and treating textile dust is not only a necessary measure to ensure the cleanliness inside the factory and the health of workers but also an important link in reducing local air pollution and improving air quality.
[0003] Textile dust refers to the tiny fiber particles generated from textile materials such as cotton, wool, chemical fibers, and silk threads during processes such as processing, cutting, spinning, weaving, and dyeing and finishing in the textile production process. These particles are usually suspended in the air or deposited on the surface of equipment, workshop floors, etc. Textile dust not only affects the production environment but also may have an adverse impact on the health of workers, the service life of equipment, and the quality of finished products;
[0004] In the existing textile production process, the collection of textile dust mostly relies on the method of sucking air by a fan, and then filtering and collecting the textile dust in the air through a filter screen. However, this traditional method has many drawbacks: First, the surface of the filter screen is prone to clogging and needs to be cleaned frequently to ensure its normal operation; Second, the sundries clogged in the filter screen holes are difficult to completely remove, which not only affects the collection efficiency of textile dust but also shortens the service life of the filter screen, resulting in the need to replace the filter screen regularly, thus causing unnecessary economic losses and resource waste.
[0005] Based on this, the present invention designs a textile dust collection device for textile production to solve the above problems. Summary of the Invention
[0006] The purpose of the present invention is to provide a textile dust collection device for textile production to solve the problems in the above background art.
[0007] To achieve the above purpose, the present invention adopts the following technical solutions:
[0008] A textile dust collection device for textile production, comprising a mobile trolley, a connection pump fixedly connected to the mobile trolley, a first intermediate pipe and a second intermediate pipe communicating with the right side of the connection pump, a suction head arranged on the mobile trolley communicating with the left end of the first intermediate pipe, a collection box communicating with the bottom end of the second intermediate pipe, a water pipe communicating with the side of the collection box, a water pump communicating with the bottom end of the water pipe, a water tank arranged on the mobile trolley communicating with the water pump, a rotation groove opened in the collection box, a rotation adhesion cylinder rotatably connected in the rotation groove, a rotation shaft penetrating through the rotation adhesion cylinder, a rotation control mechanism fixedly connected to one end of the front surface of the rotation shaft, a movable adjustment mechanism slidably connected to the right side of the rotation control mechanism, the movable adjustment mechanism arranged in the collection box, a movable bearing mechanism connected to the movable adjustment mechanism and arranged under the rotation adhesion cylinder, and a mobile cleaning mechanism arranged on the side of the movable bearing mechanism.
[0009] As a further description of the above technical solution:
[0010] A filter barrel arranged on the mobile trolley communicates with the front surface of the collection box, a control door is hinged to the left side surface of the collection box, an atomizing nozzle communicating with the water pipe is arranged in the collection box, two storage baskets are connected to the mobile trolley, and a second elastic rod arranged in the collection box is connected under the movable bearing mechanism.
[0011] As a further description of the above technical solution:
[0012] A guide plate group is arranged on the arc part of the inner wall of the collection box, the guide plate group is composed of four guide plates with different inclination angles and an arc strip, a bearing is sleeved outside the rotation shaft, the bearing penetrates through and is connected outside the collection box, and the middle position of the rotation adhesion cylinder is set as a silica gel cylinder.
[0013] As a further description of the above technical solution:
[0014] The rotation control mechanism includes a first turntable and a second turntable, a connection shaft penetrates through the front surface of the first turntable, the connection shaft is fixedly connected to the front surface of the rotation shaft, six extrusion grooves and connection grooves are opened outside the first turntable, the second turntable is rotatably connected in the connection groove, and an extension extrusion rod is fixedly connected to the front surface of the second turntable.
[0015] As a further description of the above technical solution:
[0016] An extrusion column is fixedly connected to the back surface of the extension extrusion rod, the extension extrusion rod is arranged outside the movable adjustment mechanism, a first driving component is connected to the axial center position of the back surface of the second turntable, the first driving component is fixedly connected to the front surface of the collection box, and the extrusion column rotates into the extrusion groove to drive the first turntable to rotate.
[0017] As a further description of the above technical solution:
[0018] The movable adjustment mechanism includes a contact frame slidably connected to the extended extrusion rod. A middle rod is fixedly connected to the right side surface of the contact frame. The other end of the middle rod is fixedly connected to two extrusion blocks. A vertical rod is slidably connected to the outside of the extrusion blocks, and the top end of the vertical rod is fixedly connected to the movable bearing mechanism.
[0019] As a further description of the above technical solution:
[0020] A guide sleeve is slidably connected to the outside of the middle rod. The guide sleeve penetrates and is connected to the right side surface of the collection box. A first elastic rod is fixedly connected to the left side surface of the extrusion block, and the first elastic rod is fixedly connected inside the collection box. The contact surface between the extrusion block and the vertical rod is an inclined surface.
[0021] As a further description of the above technical solution:
[0022] The movable bearing mechanism includes a bearing frame slidably arranged under the rotary adhesion cylinder. Water storage frames are arranged on both the front and rear sides of the bearing frame. A drain valve is communicated under the water storage frame. A sliding hole is formed in the right side surface of the bearing frame. The second elastic rod and the vertical rod are both connected under the bearing frame. The movable cleaning mechanism is arranged in the sliding hole.
[0023] As a further description of the above technical solution:
[0024] The movable cleaning mechanism includes a scraping plate slidably connected inside the bearing frame. The scraping plate is arranged under the rotary adhesion cylinder. An extension plate slidable in the sliding hole is connected to the right side surface of the scraping plate. A lead screw penetrates and is threadedly connected to the front surface of the extension plate.
[0025] As a further description of the above technical solution:
[0026] The back surface of the lead screw is connected to a second driving component, and the second driving component is connected to the right side surface of the bearing frame.
[0027] In summary, due to the adoption of the above technical solution, the beneficial effects of the present invention are:
[0028] 1. In the present invention, a rotating adhesion cylinder, a rotating groove, and an atomizing nozzle are adopted. After the atomizing nozzle atomizes water, it is evenly sprayed into the rotating adhesion cylinder, and a film is formed on the surface of the wet silica gel, significantly increasing the surface tension. As a result, dust particles, especially fine fiber dust, are more likely to adhere to and be captured. In addition, the device is ingeniously designed. After the air containing textile dust enters the collection box through the second intermediate pipe, due to the expansion of the space, the air flow rate slows down. When the air flows through the gap between the rotating adhesion cylinder and the collection box, a relatively thin air wall will be formed. The deflector plate group with different inclination angles disturbs the air wall, maintaining the thinness of the air wall and enhancing its contact area with the surface of the wet rotating cylinder. This design not only ensures the full adhesion of textile dust but also avoids the problems of easy clogging and the need for regular replacement of traditional filter meshes, thus greatly improving the collection efficiency of textile dust, reducing the maintenance cost, and achieving the high efficiency, economy, and sustainability of textile dust collection.
[0029] 2. In the present invention, a contact frame, a bearing frame, a water storage frame, a second driving component, a scraper, a pressing block, and a vertical rod are adopted to achieve the efficient and clean collection of textile dust. When the pressing column separates from the pressing groove and the rotating adhesion cylinder remains stable, the extending extrusion rod precisely controls the rightward movement of the contact frame and the pressing block to ensure that the pressing block is closely attached to the vertical rod and the bearing frame on the surface of the rotating adhesion cylinder. At this time, the second driving component is activated to control the rotation of the lead screw, and the extending plate drives the scraper to move orderly to thoroughly scrape the position under the rotating adhesion cylinder, so that the textile dust can smoothly fall into the water storage frame. This process is in a relatively closed state, effectively avoiding the random dispersion of textile dust and ensuring the cleanliness of the working environment. In addition, the device is uniquely designed, enabling the surface of the rotating adhesion cylinder to continuously maintain the ability to adhere textile dust, and the cleaned and fallen textile dust automatically falls into the water, further avoiding the dispersion problem. This not only improves the collection efficiency of textile dust but also greatly reduces the maintenance cost.
[0030] 3. In the present invention, a first turntable, a second turntable, a pressing column, a pressing groove, and a rotating shaft are adopted. By intermittently inserting the pressing column into the pressing groove, the intermittent rotation of the first turntable, the rotating shaft, and the rotating adhesion cylinder is cleverly controlled, ensuring that the surface of the rotating adhesion cylinder can be evenly and comprehensively sprayed with water mist. In addition, this design enables the surface of the rotating adhesion cylinder in contact with the air containing textile dust to always be in a state after being cleaned, effectively improving the adhesion effect. Different positions on the surface of the rotating adhesion cylinder can be rotated to the lowermost side, facilitating the scraping and cleaning operation, ensuring that the rotating adhesion cylinder can continuously and effectively maintain the ability to adhere textile dust. The present invention significantly improves the adhesion and collection efficiency of textile dust. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 is a three-dimensional structural schematic diagram of a textile dust collection device for textile production proposed by the present invention;
[0032] Figure 2 Schematic three-dimensional structure diagram of the collection box of a textile dust collection device for textile production proposed by the present invention;
[0033] Figure 3 Schematic three-dimensional structure diagram of the water tank of a textile dust collection device for textile production proposed by the present invention;
[0034] Figure 4 Schematic three-dimensional sectional structure diagram of the collection box of a textile dust collection device for textile production proposed by the present invention;
[0035] Figure 5 Schematic front sectional structure diagram of the collection box of a textile dust collection device for textile production proposed by the present invention;
[0036] Figure 6 Schematic three-dimensional structure diagram of the rotating adhesion cylinder of a textile dust collection device for textile production proposed by the present invention;
[0037] Figure 7 Schematic three-dimensional structure diagram of the rotation control mechanism of a textile dust collection device for textile production proposed by the present invention;
[0038] Figure 8 Schematic three-dimensional sectional structure diagram of the movable bearing mechanism of a textile dust collection device for textile production proposed by the present invention;
[0039] Figure 9 Schematic three-dimensional structure diagram of the movable adjustment mechanism of a textile dust collection device for textile production proposed by the present invention.
[0040] Legend:
[0041] 1. Mobile trolley; 2. Storage basket; 3. Connecting pump; 4. First intermediate pipe; 5. Suction head; 6. Second intermediate pipe; 7. Collection box; 8. Filter barrel; 9. Water pipe; 10. Water pump; 11. Water tank; 12. Control door; 13. Rotation groove; 14. Rotating adhesion cylinder; 15. Deflector group; 16. Atomizing nozzle; 17. Rotating shaft; 18. Bearing; 19. Rotation control mechanism; 191. First turntable; 192. Second turntable; 193. Connecting shaft; 194. Extrusion groove; 195. Connecting groove; 196. Extended extrusion rod; 197. Extrusion column; 198. First driving assembly; 20. Movable adjustment mechanism; 201. Contact frame; 202. Intermediate rod; 203. Guide sleeve; 204. Extrusion block; 205. First elastic rod; 206. Vertical rod; 21. Movable bearing mechanism; 211. Bearing frame; 212. Water storage frame; 213. Drain valve; 214. Sliding hole; 22. Mobile cleaning mechanism; 221. Scraper; 222. Extension plate; 223. Lead screw; 224. Second driving assembly; 23. Second elastic rod. Detailed implementation mode
[0042] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present invention.
[0043] Please refer to the attached Figure 1 - attached Figure 9 , the present invention provides a technical solution: a textile dust collection device for textile production, including a mobile cart 1, a connection pump 3 is fixedly connected to the mobile cart 1, a first intermediate pipe 4 and a second intermediate pipe 6 are communicated with the right side surface of the connection pump 3, the left end of the first intermediate pipe 4 is communicated with a suction head 5 arranged on the mobile cart 1, the bottom end of the second intermediate pipe 6 is communicated with a collection box 7, a water pipe 9 is communicated with the side surface of the collection box 7, the bottom end of the water pipe 9 is communicated with a water pump 10, the water pump 10 is communicated with a water tank 11 arranged on the mobile cart 1, a rotation groove 13 is opened in the collection box 7, a rotation adhesion cylinder 14 is rotationally connected in the rotation groove 13, a rotation shaft 17 penetrates through the rotation adhesion cylinder 14, one end of the front surface of the rotation shaft 17 is fixedly connected with a rotation control mechanism 19, a movable adjustment mechanism 20 is slidably connected to the right side surface of the rotation control mechanism 19, the movable adjustment mechanism 20 is arranged in the collection box 7, a movable bearing mechanism 21 arranged under the rotation adhesion cylinder 14 is connected to the movable adjustment mechanism 20, and a movable cleaning mechanism 22 is arranged on the side surface of the movable bearing mechanism 21.
[0044] The second elastic rod 23 is used to apply a downward elastic force to the bearing frame 211 and ensure that the bearing frame 211 will not shake randomly. After the vertical rod 206 loses extrusion, it will automatically control the bearing frame 211 to move downward and separate from the rotation adhesion cylinder 14, and enable the bearing frame 211 to move stably in the vertical direction; the connection pump 3 sucks the water in the water tank 11 and sprays it on the surface of the rotation adhesion cylinder 14 through the atomizing nozzle 16. After the wetted silica gel, water can form a film on the surface of the silica gel, increasing the surface tension, making it easier for dust particles to adhere. Especially for fine fiber dust, it can be more easily captured on the surface, realizing the full adhesion and collection of textile dust by the rotation adhesion cylinder 14;
[0045] The gap between the rotation adhesion cylinder 14 and the collection box 7 is small, and the gap part is arc-shaped. After the air containing textile dust enters the collection box 7 through the second intermediate pipe 6, due to the expansion of the space, the air flow rate slows down. When the air flows through the gap between the rotation adhesion cylinder 14 and the collection box 7, a thinner air wall will be formed, and the air wall is disturbed by the deflector plate group 15 with different inclination angles. The air wall itself is thin and disturbed, maintaining the thinness of the air wall and enhancing its contact area with the surface of the wet rotating cylinder.
[0046] Specifically, as Figures 1-5 shown, the front of the collection box 7 is connected to a filter barrel 8 provided on the mobile trolley 1. A control door 12 is hinged to the left side of the collection box 7. An atomizing nozzle 16 communicated with a water pipe 9 is provided in the collection box 7. Two storage baskets 2 are connected to the mobile trolley 1. A second elastic rod 23 provided in the collection box 7 is connected below the movable bearing mechanism 21.
[0047] Specifically, as Figures 4-5 shown, a deflector plate group 15 is provided on the arc-shaped part of the inner wall of the collection box 7. The deflector plate group 15 is composed of four deflector plates with different inclination angles and an arc-shaped strip. A bearing 18 is sleeved outside the rotating shaft 17. The bearing 18 is connected through the outside of the collection box 7. The middle position of the rotating adhesion cylinder 14 is set as a silica gel cylinder.
[0048] The bearing 18 supports and limits the rotating shaft 17 and the rotating adhesion cylinder 14, so that the rotating adhesion cylinder 14 can stably and smoothly perform rotational adjustment.
[0049] Specifically, as Figures 6-7 shown, the rotation control mechanism 19 includes a first turntable 191 and a second turntable 192. A connecting shaft 193 penetrates and is connected to the front of the first turntable 191. The connecting shaft 193 is fixedly connected to the front of the rotating shaft 17. Six extrusion grooves 194 and connection grooves 195 are formed outside the first turntable 191. The second turntable 192 is rotatably connected in the connection groove 195. An extending extrusion rod 196 is fixedly connected to the front of the second turntable 192.
[0050] An extrusion column 197 is fixedly connected to the back of the extending extrusion rod 196. The extending extrusion rod 196 is provided outside the movable adjustment mechanism 20. A first driving component 198 is connected to the center position of the back of the second turntable 192. The first driving component 198 is fixedly connected to the front of the collection box 7. The extrusion column 197 rotates into the extrusion groove 194, thereby driving the first turntable 191 to rotate.
[0051] The first driving component 198 controls the rotation of the second turntable 192, the extending extrusion rod 196 and the extrusion column 197. The extrusion column 197 will enter the extrusion groove 194 once in a rotation, so as to control the extrusion groove 194 and the first turntable 191 to rotate a certain angle. After the extrusion column 197 is separated from the extrusion groove 194, the second turntable 192 cooperates with the connection groove 195 to limit the rotating shaft 17 and the rotating adhesion cylinder 14. After the rotating adhesion cylinder 14 is stable, the extending extrusion rod 196 will contact the contact frame 201, so that the rotating adhesion cylinder 14 can perform stable and smooth intermittent rotation.
[0052] Specifically, as Figures 6-7 and Figure 9As shown in the figure, the movable adjustment mechanism 20 includes a contact frame 201 slidably connected to the outside of the extending extrusion rod 196. A middle rod 202 is fixedly connected to the right side surface of the contact frame 201. The other end of the middle rod 202 is fixedly connected to two extrusion blocks 204. A vertical rod 206 is slidably connected to the outside of the extrusion blocks 204. The top end of the vertical rod 206 is fixedly connected to the movable bearing mechanism 21.
[0053] A guide sleeve 203 is slidably connected to the outside of the middle rod 202. The guide sleeve 203 is connected through the right side surface of the collection box 7. A first elastic rod 205 is fixedly connected to the left side surface of the extrusion block 204. The first elastic rod 205 is fixedly connected inside the collection box 7. The contact surface between the extrusion block 204 and the vertical rod 206 is set as an inclined surface.
[0054] The guide sleeve 203 and the first elastic rod 205 guide and limit the horizontal movement of the middle rod 202 and the extrusion block 204, so that the extrusion block 204 stably extrudes the vertical rod 206 to move. The extending extrusion rod 196 extrudes the contact frame 201 and the middle rod 202 to move to the right. At this time, the extrusion block 204 moves to the right to extrude the vertical rod 206 and the bearing frame 211 to fit upward on the surface of the rotating adhesion cylinder 14. At this time, the rotating adhesion cylinder 14 has already remained stationary. After the contact frame 201 is separated from the extending extrusion rod 196, the elastic force of the first elastic rod 205 will control the extrusion block 204 to move to the left, releasing the extrusion limit on the vertical rod 206 and the bearing frame 211.
[0055] Specifically, as Figure 6 and Figure 8 shown in the figure, the movable bearing mechanism 21 includes a bearing frame 211 slidably arranged under the rotating adhesion cylinder 14. Water storage frames 212 are arranged on both the front and rear sides of the bearing frame 211. A drain valve 213 is communicated with the lower part of the water storage frame 212. A sliding hole 214 is formed in the right side surface of the bearing frame 211. The second elastic rod 23 and the vertical rod 206 are both connected to the lower part of the bearing frame 211. The moving cleaning mechanism 22 is arranged in the sliding hole 214.
[0056] When the water in the water storage frame 212 collects the textile dust, the textile dust enters the water to avoid the situation of the textile dust floating again. The bearing frame 211 shields the contact position between the scraper 221 and the rotating adhesion cylinder 14, so that the scraper 221 is in a relatively closed environment when scraping and cleaning the surface of the rotating adhesion cylinder 14.
[0057] Specifically, as Figures 6-7 and Figure 9 shown in the figure, the moving cleaning mechanism 22 includes a scraper 221 slidably connected in the bearing frame 211. The scraper 221 is arranged under the rotating adhesion cylinder 14. An extension plate 222 slidable in the sliding hole 214 is connected to the right side surface of the scraper 221. A lead screw 223 penetrates and is threadedly connected to the front surface of the extension plate 222.
[0058] The back of the lead screw 223 is connected to a second drive assembly 224, and the second drive assembly 224 is connected to the right side of the carrier frame 211.
[0059] The upper surface of the scraper 221 is arc-shaped and can be attached to the outside of the rotating adhesion cylinder 14. When the second drive assembly 224 works to control the rotation of the lead screw 223, at this time, the extension plate 222 drives the scraper 221 to move, and the scraper 221 scrapes the position below the rotating adhesion cylinder 14 to remove textile dust, so that the textile dust falls into the water storage frame 212.
[0060] Working principle, when in use:
[0061] When it is necessary to collect textile dust, directly control the connection pump 3 and the first drive assembly 198 to work. When the connection pump 3 works, it sucks the textile dust in the textile environment through the first intermediate pipe 4 and the suction head 5, and passes the air containing textile dust into the collection box 7 through the second intermediate pipe 6. After entering the collection box 7 with a larger space from the second intermediate pipe 6, the air flow rate slows down. At this time, the air flows downward along the gap between the collection box 7 and the surface of the rotating adhesion cylinder 14. Since the surface of the rotating adhesion cylinder 14 is in a wet state and the gap between the collection box 7 and the rotating adhesion cylinder 14 is small, the air flow will present a relatively thin air wall when flowing through. And when passing through the deflector plate group 15, the deflector plates with different inclination angles disturb the flowing air wall, making the air wall in a relatively thin state and being disturbed. The air wall fully contacts the surface of the wet rotating cylinder of the rotating adhesion cylinder 14;
[0062] The rotating adhesion cylinder 14 adheres to the textile dust in the air. When the first rotating assembly controls the rotation of the second turntable 192, it will drive the first turntable 191, the rotating shaft 17 and the rotating adhesion cylinder 14 to rotate through the extrusion column 197 entering the extrusion groove 194. At this time, the rotating adhesion cylinder 14 rotates by a certain angle. When the extrusion column 197 is separated from the extrusion groove 194, at this time, the extension extrusion rod 196 squeezes the contact frame 201 and the intermediate rod 202 to move to the right. At this time, the extrusion block 204 moves to the right to squeeze the vertical rod 206 and the carrier frame 211 to fit upward on the surface of the rotating adhesion cylinder 14. The second drive assembly 224 works to control the rotation of the lead screw 223. At this time, the extension plate 222 drives the scraper 221 to move, and the scraper 221 scrapes the position below the rotating adhesion cylinder 14 to remove textile dust, so that the textile dust falls into the water storage frame 212. The removal of textile dust is in a relatively closed state to avoid the situation of random dispersion of textile dust;
[0063] The air after passing through the rotating adhesion cylinder 14 is adhered to treat the textile dust, and finally the air enters the filter barrel 8 for filtration treatment and is discharged.
[0064] The above are only the preferred specific embodiments of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution and inventive concept of the present invention, making equivalent substitutions or changes, shall be covered by the protection scope of the present invention.
Claims
1. A textile dust collecting device for textile production, comprising a mobile cart (1), characterized in that: The mobile cart (1) is fixedly connected with a connecting pump (3), the right side of the connecting pump (3) is connected with a first intermediate pipe (4) and a second intermediate pipe (6), the left end of the first intermediate pipe (4) is connected with a suction head (5) arranged on the mobile cart (1), the bottom end of the second intermediate pipe (6) is connected with a collecting box (7), the side of the collecting box (7) is connected with a water pipe (9), the bottom end of the water pipe (9) is connected with a water pump (10), the lower part of the water pump (10) is connected with a water tank (11) arranged on the mobile cart (1), and a rotating groove (11) is provided in the collecting box (7). 3), a rotating adhesive cylinder (14) is rotatably connected in the rotating groove (13), a rotating shaft (17) is connected through the rotating adhesive cylinder (14), a rotating control mechanism (19) is fixedly connected to one end of the front side of the rotating shaft (17), a movable adjustment mechanism (20) is slidably connected to the right side of the rotating control mechanism (19), the movable adjustment mechanism (20) is arranged in the collection box (7), a movable bearing mechanism (21) arranged under the rotating adhesive cylinder (14) is connected to the movable adjustment mechanism (20), and a movable cleaning mechanism (22) is arranged on the side of the movable bearing mechanism (21).
2. A textile dust collecting device for textile production according to claim 1, characterized in that: The front of the collecting box (7) is connected to a filter barrel (8) arranged on the mobile cart (1), the left side of the collecting box (7) is hinged with a control door (12), an atomizing nozzle (16) connected to a water pipe (9) is arranged in the collecting box (7), two storage baskets (2) are connected to the mobile cart (1), and a second elastic rod (23) arranged in the collecting box (7) is connected below the movable supporting mechanism (21).
3. A textile dust collecting device for textile production according to claim 1, characterized in that: The arc-shaped portion of the inner wall of the collection box (7) is provided with a guide plate group (15), the guide plate group (15) is composed of four guide plates with different inclination angles and an arc-shaped strip, the outer sleeve of the rotating shaft (17) is provided with a bearing (18), the bearing (18) is connected to the outside of the collection box (7), and the middle position of the rotating adhesive cylinder (14) is set as a silicone cylinder.
4. A textile dust collecting device for textile production according to claim 2, characterized in that: The rotation control mechanism (19) comprises a first rotating disk (191) and a second rotating disk (192); a connecting shaft (193) is connected through the front of the first rotating disk (191); the connecting shaft (193) is fixedly connected to the front of the rotating shaft (17); six extrusion grooves (194) and a connecting groove (195) are provided on the outside of the first rotating disk (191); the second rotating disk (192) is rotatably connected in the connecting groove (195); and an extension extrusion rod (196) is fixedly connected to the front of the second rotating disk (192).
5. A textile dust collecting device for textile production according to claim 4, characterized in that: The back of the extended extrusion rod (196) is fixedly connected to an extrusion column (197), and the extended extrusion rod (196) is arranged outside the movable adjustment mechanism (20). The axial position of the back of the second turntable (192) is connected to a first drive component (198), and the first drive component (198) is fixedly connected to the front of the collection box (7). The extrusion column (197) rotates into the extrusion groove (194), thereby driving the first turntable (191) to rotate.
6. A textile dust collecting device for textile production according to claim 5, characterized in that: The movable adjustment mechanism (20) comprises a contact frame (201) slidably connected to the outside of the extended extrusion rod (196); the right side of the contact frame (201) is fixedly connected to an intermediate rod (202); the other end of the intermediate rod (202) is fixedly connected to two extrusion blocks (204); the outside of the extrusion block (204) is slidably connected to a vertical rod (206); the top end of the vertical rod (206) is fixedly connected to the movable bearing mechanism (21).
7. A textile dust collecting device for textile production according to claim 6, characterized in that: The middle rod (202) is slidably connected to a guide sleeve (203) outside, the guide sleeve (203) penetrates and is connected to the right side of the collection box (7), the left side of the extrusion block (204) is fixedly connected to a first elastic rod (205), the first elastic rod (205) is fixedly connected inside the collection box (7), and the contact surface between the extrusion block (204) and the vertical rod (206) is set as an inclined surface.
8. A textile dust collecting device for textile production according to claim 7, characterized in that: The movable bearing mechanism (21) comprises a bearing frame (211) slidably arranged under the rotating adhesive cylinder (14); water storage frames (212) are arranged on both the front and rear sides of the bearing frame (211); a drainage valve (213) is connected below the water storage frame (212); a sliding hole (214) is opened on the right side of the bearing frame (211); the second elastic rod (23) and the vertical rod (206) are both connected under the bearing frame (211); and the movable cleaning mechanism (22) is arranged in the sliding hole (214).
9. A textile dust collecting device for textile production according to claim 8, characterized in that: The mobile cleaning mechanism (22) comprises a scraper (221) slidably connected in the bearing frame (211), the scraper (221) being arranged under the rotating adhesion cylinder (14), the right side of the scraper (221) being connected to an extension plate (222) sliding in the sliding hole (214), the front side of the extension plate (222) being penetrated by and threadedly connected to a screw rod (223).
10. A textile dust collecting device for textile production according to claim 9, characterized in that: The back side of the screw rod (223) is connected to a second driving assembly (224), and the second driving assembly (224) is connected to the right side of the carrying frame (211).